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watch you welcome back um a little bit
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watch you welcome back um a little bit
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watch you welcome back um a little bit
of a classroom setup on this one I just
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of a classroom setup on this one I just
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of a classroom setup on this one I just
want to show you something quite simple
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want to show you something quite simple
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want to show you something quite simple
that's been asked time and time again
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that's been asked time and time again
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that's been asked time and time again
it's as it says in the title threadlock
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it's as it says in the title threadlock
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it's as it says in the title threadlock
and antise when to use them what they
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and antise when to use them what they
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and antise when to use them what they
both do and what they're for and they
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both do and what they're for and they
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both do and what they're for and they
are surprisingly similar to each other
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are surprisingly similar to each other
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are surprisingly similar to each other
I'll show you what I mean welcome back
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I'll show you what I mean welcome back
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I'll show you what I mean welcome back
to the boys
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to the boys
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to the boys
[Music]
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[Music]
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[Music]
[Applause]
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[Applause]
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[Applause]
garage up dude
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garage up dude
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garage up dude
[Music]
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[Music]
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[Music]
all right okay um never done this whole
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all right okay um never done this whole
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all right okay um never done this whole
desktop thing before but bear with me
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desktop thing before but bear with me
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desktop thing before but bear with me
right going to show you first of all
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right going to show you first of all
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right going to show you first of all
what the two different things are um
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what the two different things are um
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what the two different things are um
threadlock and antise now one of them
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threadlock and antise now one of them
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threadlock and antise now one of them
should we start with threadlock let's do
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should we start with threadlock let's do
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should we start with threadlock let's do
that one first of all um if you have to
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that one first of all um if you have to
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that one first of all um if you have to
put a bolt or a nut into something like
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put a bolt or a nut into something like
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put a bolt or a nut into something like
a suspension unit whatever you always
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a suspension unit whatever you always
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a suspension unit whatever you always
see them recommend use threadlock and
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see them recommend use threadlock and
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see them recommend use threadlock and
you'll hear the word Loctite quite a lot
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you'll hear the word Loctite quite a lot
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you'll hear the word Loctite quite a lot
Loctite don't be confused that's a brand
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Loctite don't be confused that's a brand
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Loctite don't be confused that's a brand
name it's a bit like like Hoover a
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name it's a bit like like Hoover a
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name it's a bit like like Hoover a
Hoover is a vacuum cleaner Hoover is a
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Hoover is a vacuum cleaner Hoover is a
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Hoover is a vacuum cleaner Hoover is a
brand name same thing loctip is a brand
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brand name same thing loctip is a brand
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brand name same thing loctip is a brand
name it's actually thread loock um you
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name it's actually thread loock um you
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name it's actually thread loock um you
know what I mean so this is thread loock
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know what I mean so this is thread loock
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know what I mean so this is thread loock
number 248 that's their product number
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number 248 that's their product number
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number 248 that's their product number
248 it is a thread locking compound show
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248 it is a thread locking compound show
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248 it is a thread locking compound show
you use it very simple take a thread you
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you use it very simple take a thread you
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you use it very simple take a thread you
need to stick in place get a little bit
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need to stick in place get a little bit
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need to stick in place get a little bit
of that on the bolt
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of that on the bolt
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of that on the bolt
head wipe it into the
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head wipe it into the
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head wipe it into the
grooves or whether it's a hole if you
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grooves or whether it's a hole if you
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grooves or whether it's a hole if you
doing it inside the hole instead and
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doing it inside the hole instead and
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doing it inside the hole instead and
then do the two up now when you do the
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then do the two up now when you do the
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then do the two up now when you do the
two up in place you put a bolt in place
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two up in place you put a bolt in place
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two up in place you put a bolt in place
whatever do it all the way up I've seen
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whatever do it all the way up I've seen
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whatever do it all the way up I've seen
people in the past that they do the belt
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people in the past that they do the belt
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people in the past that they do the belt
up halfway and then forget and I'll T it
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up halfway and then forget and I'll T it
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up halfway and then forget and I'll T it
up in a minute if you do a bolt up
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up in a minute if you do a bolt up
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up in a minute if you do a bolt up
that's got threadlock on it do it all
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that's got threadlock on it do it all
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that's got threadlock on it do it all
the way up and torque it up to its final
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the way up and torque it up to its final
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the way up and torque it up to its final
torque setting there and then don't wait
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torque setting there and then don't wait
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torque setting there and then don't wait
because this stuff takes about 5 minutes
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because this stuff takes about 5 minutes
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because this stuff takes about 5 minutes
to set and once it's set it's a glue
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to set and once it's set it's a glue
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to set and once it's set it's a glue
that's what locktite is or thread light
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that's what locktite is or thread light
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that's what locktite is or thread light
there's me doing it now
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there's me doing it now
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there's me doing it now
threadlock is a glue it simply glues a
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threadlock is a glue it simply glues a
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threadlock is a glue it simply glues a
bolt in place there are other methods of
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bolt in place there are other methods of
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bolt in place there are other methods of
sticking nuts and bolts together so they
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sticking nuts and bolts together so they
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sticking nuts and bolts together so they
don't wash and come undone one is the
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don't wash and come undone one is the
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don't wash and come undone one is the
Old Spring washer shap proof washers
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Old Spring washer shap proof washers
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Old Spring washer shap proof washers
there's all those things you can use but
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there's all those things you can use but
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there's all those things you can use but
if you want a little something extra
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if you want a little something extra
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if you want a little something extra
threadlock is brilliant it's just a
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threadlock is brilliant it's just a
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threadlock is brilliant it's just a
product that you lay on always use the
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product that you lay on always use the
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product that you lay on always use the
blue if you're doing your home projects
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blue if you're doing your home projects
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blue if you're doing your home projects
things like your shock absorber bolts
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things like your shock absorber bolts
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things like your shock absorber bolts
because the blue is temporary meaning
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because the blue is temporary meaning
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because the blue is temporary meaning
that you can get it undone again there
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that you can get it undone again there
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that you can get it undone again there
is a red and I believe once there was
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is a red and I believe once there was
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is a red and I believe once there was
even a Green version and the principle
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even a Green version and the principle
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even a Green version and the principle
of those they were permanent red
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of those they were permanent red
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of those they were permanent red
permanent locktite is exactly what it
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permanent locktite is exactly what it
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permanent locktite is exactly what it
says so don't use that unless you want
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says so don't use that unless you want
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says so don't use that unless you want
it to be permanent OD is it I'm going to
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it to be permanent OD is it I'm going to
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it to be permanent OD is it I'm going to
leave that for a few minutes to set
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leave that for a few minutes to set
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leave that for a few minutes to set
while I'll show you this there is
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while I'll show you this there is
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while I'll show you this there is
something else you can use if you
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something else you can use if you
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something else you can use if you
haven't got
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haven't got
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haven't got
threadlock and that's to find a Nylock
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threadlock and that's to find a Nylock
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threadlock and that's to find a Nylock
nut most bolts nuts and screws go into a
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nut most bolts nuts and screws go into a
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nut most bolts nuts and screws go into a
metal thread so if you've got a bolt
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metal thread so if you've got a bolt
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metal thread so if you've got a bolt
bolting of shop absorber on it's a metal
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bolting of shop absorber on it's a metal
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bolting of shop absorber on it's a metal
bolt into a steel frame thread so you
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bolt into a steel frame thread so you
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bolt into a steel frame thread so you
haven't got that option but if you've
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haven't got that option but if you've
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haven't got that option but if you've
got um hang on if you've got a naked
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got um hang on if you've got a naked
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got um hang on if you've got a naked
bolt head like that and you're nutting
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bolt head like that and you're nutting
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bolt head like that and you're nutting
something onto it that's when you use a
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something onto it that's when you use a
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something onto it that's when you use a
Nylock nut it's a simple look it's just
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Nylock nut it's a simple look it's just
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Nylock nut it's a simple look it's just
a little ring of
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a little ring of
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a little ring of
nylon that sits in the top manufactured
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nylon that sits in the top manufactured
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nylon that sits in the top manufactured
into the top of the nut and it locks up
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into the top of the nut and it locks up
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into the top of the nut and it locks up
Nylock ever so easy is it okay you can
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Nylock ever so easy is it okay you can
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Nylock ever so easy is it okay you can
also use those and the washers but
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also use those and the washers but
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also use those and the washers but
that's the supplementary thing now the
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that's the supplementary thing now the
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that's the supplementary thing now the
not the thread loock itself will take
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not the thread loock itself will take
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not the thread loock itself will take
about 5 minutes to start its process
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about 5 minutes to start its process
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about 5 minutes to start its process
that's already started now that's that's
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that's already started now that's that's
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that's already started now that's that's
gone firm already 45 minutes from it
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gone firm already 45 minutes from it
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gone firm already 45 minutes from it
it's actually warm as well it's a little
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it's actually warm as well it's a little
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it's actually warm as well it's a little
chemical reaction going on I think when
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chemical reaction going on I think when
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chemical reaction going on I think when
you put it on and you squeeze it down
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you put it on and you squeeze it down
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you put it on and you squeeze it down
the chemical reaction is set off and it
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the chemical reaction is set off and it
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the chemical reaction is set off and it
starts to glue itself in place it cures
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starts to glue itself in place it cures
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starts to glue itself in place it cures
45 minutes later that will be tight
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45 minutes later that will be tight
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45 minutes later that will be tight
that's it it will not come undone it
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that's it it will not come undone it
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that's it it will not come undone it
will certainly not Shake itself undone
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will certainly not Shake itself undone
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will certainly not Shake itself undone
you'll need a proper tool on it and undo
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you'll need a proper tool on it and undo
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you'll need a proper tool on it and undo
it and what it leaves behind is a
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it and what it leaves behind is a
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it and what it leaves behind is a
white it's glued up already just in that
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white it's glued up already just in that
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white it's glued up already just in that
time talking just undo that
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hang here we
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hang here we
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hang here we
are so when it's undone you'll get this
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are so when it's undone you'll get this
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are so when it's undone you'll get this
business this white
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business this white
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business this white
cor well this kind of that's the the
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cor well this kind of that's the the
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cor well this kind of that's the the
thread lock when it's all been undone if
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thread lock when it's all been undone if
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thread lock when it's all been undone if
that's on the end of the thread if
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that's on the end of the thread if
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that's on the end of the thread if
you're going to use this stuff and
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you're going to use this stuff and
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you're going to use this stuff and
you're in practice and you take
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you're in practice and you take
231
00:04:08,239 --> 00:04:10,110
you're in practice and you take
something off and you see that clean it
232
00:04:10,110 --> 00:04:10,120
something off and you see that clean it
233
00:04:10,120 --> 00:04:11,990
something off and you see that clean it
off don't use that again because that
234
00:04:11,990 --> 00:04:12,000
off don't use that again because that
235
00:04:12,000 --> 00:04:13,710
off don't use that again because that
will not glue a second time it's already
236
00:04:13,710 --> 00:04:13,720
will not glue a second time it's already
237
00:04:13,720 --> 00:04:15,830
will not glue a second time it's already
cured so it won't work a second time
238
00:04:15,830 --> 00:04:15,840
cured so it won't work a second time
239
00:04:15,840 --> 00:04:18,990
cured so it won't work a second time
take a little spark plug brush brush off
240
00:04:18,990 --> 00:04:19,000
take a little spark plug brush brush off
241
00:04:19,000 --> 00:04:20,909
take a little spark plug brush brush off
all of the excess get rid of that clean
242
00:04:20,909 --> 00:04:20,919
all of the excess get rid of that clean
243
00:04:20,919 --> 00:04:23,070
all of the excess get rid of that clean
the thread completely and put some more
244
00:04:23,070 --> 00:04:23,080
the thread completely and put some more
245
00:04:23,080 --> 00:04:25,790
the thread completely and put some more
on um and then when you put the fresh
246
00:04:25,790 --> 00:04:25,800
on um and then when you put the fresh
247
00:04:25,800 --> 00:04:27,430
on um and then when you put the fresh
stuff on it will glue a second time
248
00:04:27,430 --> 00:04:27,440
stuff on it will glue a second time
249
00:04:27,440 --> 00:04:29,230
stuff on it will glue a second time
don't use old threadlock don't think
250
00:04:29,230 --> 00:04:29,240
don't use old threadlock don't think
251
00:04:29,240 --> 00:04:30,590
don't use old threadlock don't think
that the the remnants of the old
252
00:04:30,590 --> 00:04:30,600
that the the remnants of the old
253
00:04:30,600 --> 00:04:32,029
that the the remnants of the old
threadlock will work they won't once
254
00:04:32,029 --> 00:04:32,039
threadlock will work they won't once
255
00:04:32,039 --> 00:04:33,790
threadlock will work they won't once
it's cured it won't glue again it is
256
00:04:33,790 --> 00:04:33,800
it's cured it won't glue again it is
257
00:04:33,800 --> 00:04:36,350
it's cured it won't glue again it is
glue glue doesn't stick a second time so
258
00:04:36,350 --> 00:04:36,360
glue glue doesn't stick a second time so
259
00:04:36,360 --> 00:04:37,990
glue glue doesn't stick a second time so
that's really what the thread loock is
260
00:04:37,990 --> 00:04:38,000
that's really what the thread loock is
261
00:04:38,000 --> 00:04:41,110
that's really what the thread loock is
you use it in um cold applications
262
00:04:41,110 --> 00:04:41,120
you use it in um cold applications
263
00:04:41,120 --> 00:04:43,029
you use it in um cold applications
things that don't get hot I'll come to
264
00:04:43,029 --> 00:04:43,039
things that don't get hot I'll come to
265
00:04:43,039 --> 00:04:44,830
things that don't get hot I'll come to
that in a minute with the other stuff so
266
00:04:44,830 --> 00:04:44,840
that in a minute with the other stuff so
267
00:04:44,840 --> 00:04:47,749
that in a minute with the other stuff so
if it's it's bolting on mud guards um
268
00:04:47,749 --> 00:04:47,759
if it's it's bolting on mud guards um
269
00:04:47,759 --> 00:04:50,790
if it's it's bolting on mud guards um
steering dampers uh shock absorber bolts
270
00:04:50,790 --> 00:04:50,800
steering dampers uh shock absorber bolts
271
00:04:50,800 --> 00:04:51,990
steering dampers uh shock absorber bolts
anything to do with the steering on the
272
00:04:51,990 --> 00:04:52,000
anything to do with the steering on the
273
00:04:52,000 --> 00:04:54,029
anything to do with the steering on the
front not into an aluminium thread steel
274
00:04:54,029 --> 00:04:54,039
front not into an aluminium thread steel
275
00:04:54,039 --> 00:04:55,629
front not into an aluminium thread steel
to Steel threads generally speaking
276
00:04:55,629 --> 00:04:55,639
to Steel threads generally speaking
277
00:04:55,639 --> 00:04:58,749
to Steel threads generally speaking
because normally a steel zinc bolt into
278
00:04:58,749 --> 00:04:58,759
because normally a steel zinc bolt into
279
00:04:58,759 --> 00:05:00,390
because normally a steel zinc bolt into
an aluminium thread doesn't need
280
00:05:00,390 --> 00:05:00,400
an aluminium thread doesn't need
281
00:05:00,400 --> 00:05:02,110
an aluminium thread doesn't need
threadlock the reason for that is that
282
00:05:02,110 --> 00:05:02,120
threadlock the reason for that is that
283
00:05:02,120 --> 00:05:03,950
threadlock the reason for that is that
the mismatch between the zinc and the
284
00:05:03,950 --> 00:05:03,960
the mismatch between the zinc and the
285
00:05:03,960 --> 00:05:05,909
the mismatch between the zinc and the
aluminum causes a chemical reaction when
286
00:05:05,909 --> 00:05:05,919
aluminum causes a chemical reaction when
287
00:05:05,919 --> 00:05:07,710
aluminum causes a chemical reaction when
water gets involved and you get this
288
00:05:07,710 --> 00:05:07,720
water gets involved and you get this
289
00:05:07,720 --> 00:05:09,710
water gets involved and you get this
white powdery stuff that sticks one into
290
00:05:09,710 --> 00:05:09,720
white powdery stuff that sticks one into
291
00:05:09,720 --> 00:05:13,150
white powdery stuff that sticks one into
the other but if you're going to upgrade
292
00:05:13,150 --> 00:05:13,160
the other but if you're going to upgrade
293
00:05:13,160 --> 00:05:15,950
the other but if you're going to upgrade
to stainless Fasteners if you're going
294
00:05:15,950 --> 00:05:15,960
to stainless Fasteners if you're going
295
00:05:15,960 --> 00:05:18,790
to stainless Fasteners if you're going
to go buy yourself a lot of lovely Posh
296
00:05:18,790 --> 00:05:18,800
to go buy yourself a lot of lovely Posh
297
00:05:18,800 --> 00:05:21,710
to go buy yourself a lot of lovely Posh
stainless bolts like that to enhance
298
00:05:21,710 --> 00:05:21,720
stainless bolts like that to enhance
299
00:05:21,720 --> 00:05:23,710
stainless bolts like that to enhance
your bike then one thing a stainless
300
00:05:23,710 --> 00:05:23,720
your bike then one thing a stainless
301
00:05:23,720 --> 00:05:25,430
your bike then one thing a stainless
steel bolt will do is it's more likely
302
00:05:25,430 --> 00:05:25,440
steel bolt will do is it's more likely
303
00:05:25,440 --> 00:05:27,749
steel bolt will do is it's more likely
to shake out and rattle loose than a
304
00:05:27,749 --> 00:05:27,759
to shake out and rattle loose than a
305
00:05:27,759 --> 00:05:30,590
to shake out and rattle loose than a
zinc bolt because the zinc is s on the
306
00:05:30,590 --> 00:05:30,600
zinc bolt because the zinc is s on the
307
00:05:30,600 --> 00:05:33,550
zinc bolt because the zinc is s on the
plating of a basic cheap Bolt such as
308
00:05:33,550 --> 00:05:33,560
plating of a basic cheap Bolt such as
309
00:05:33,560 --> 00:05:36,309
plating of a basic cheap Bolt such as
that one that's just a cheap
310
00:05:36,309 --> 00:05:36,319
that one that's just a cheap
311
00:05:36,319 --> 00:05:39,110
that one that's just a cheap
Bolt that will stay in place because you
312
00:05:39,110 --> 00:05:39,120
Bolt that will stay in place because you
313
00:05:39,120 --> 00:05:40,629
Bolt that will stay in place because you
get this white powdery corrosion that
314
00:05:40,629 --> 00:05:40,639
get this white powdery corrosion that
315
00:05:40,639 --> 00:05:42,390
get this white powdery corrosion that
will stick it in place that's fine but
316
00:05:42,390 --> 00:05:42,400
will stick it in place that's fine but
317
00:05:42,400 --> 00:05:44,710
will stick it in place that's fine but
stainless bolts I always use a bit of
318
00:05:44,710 --> 00:05:44,720
stainless bolts I always use a bit of
319
00:05:44,720 --> 00:05:46,430
stainless bolts I always use a bit of
loc type because they are they don't
320
00:05:46,430 --> 00:05:46,440
loc type because they are they don't
321
00:05:46,440 --> 00:05:47,749
loc type because they are they don't
corrode being stainless there's no
322
00:05:47,749 --> 00:05:47,759
corrode being stainless there's no
323
00:05:47,759 --> 00:05:49,469
corrode being stainless there's no
corrosion so effectively they are more
324
00:05:49,469 --> 00:05:49,479
corrosion so effectively they are more
325
00:05:49,479 --> 00:05:51,230
corrosion so effectively they are more
prone to Rattle out little bit comp
326
00:05:51,230 --> 00:05:51,240
prone to Rattle out little bit comp
327
00:05:51,240 --> 00:05:53,189
prone to Rattle out little bit comp
straightforward Common Sense there uh
328
00:05:53,189 --> 00:05:53,199
straightforward Common Sense there uh
329
00:05:53,199 --> 00:05:55,909
straightforward Common Sense there uh
there's other versions of the product um
330
00:05:55,909 --> 00:05:55,919
there's other versions of the product um
331
00:05:55,919 --> 00:05:57,749
there's other versions of the product um
this is just a little bottle of it it's
332
00:05:57,749 --> 00:05:57,759
this is just a little bottle of it it's
333
00:05:57,759 --> 00:05:59,830
this is just a little bottle of it it's
a different stuff but look it's no
334
00:05:59,830 --> 00:05:59,840
a different stuff but look it's no
335
00:05:59,840 --> 00:06:02,590
a different stuff but look it's no
different hang on Lean Forward they are
336
00:06:02,590 --> 00:06:02,600
different hang on Lean Forward they are
337
00:06:02,600 --> 00:06:04,430
different hang on Lean Forward they are
just a little drip that's the stuff it's
338
00:06:04,430 --> 00:06:04,440
just a little drip that's the stuff it's
339
00:06:04,440 --> 00:06:07,029
just a little drip that's the stuff it's
just like an oily uh it's about the
340
00:06:07,029 --> 00:06:07,039
just like an oily uh it's about the
341
00:06:07,039 --> 00:06:09,150
just like an oily uh it's about the
consistence of oil engine oil you know
342
00:06:09,150 --> 00:06:09,160
consistence of oil engine oil you know
343
00:06:09,160 --> 00:06:10,990
consistence of oil engine oil you know
as opposed to that which is just a
344
00:06:10,990 --> 00:06:11,000
as opposed to that which is just a
345
00:06:11,000 --> 00:06:12,550
as opposed to that which is just a
different product that's the consistency
346
00:06:12,550 --> 00:06:12,560
different product that's the consistency
347
00:06:12,560 --> 00:06:15,270
different product that's the consistency
of kind of wax soft wax it makes no
348
00:06:15,270 --> 00:06:15,280
of kind of wax soft wax it makes no
349
00:06:15,280 --> 00:06:16,870
of kind of wax soft wax it makes no
difference they're all basically the
350
00:06:16,870 --> 00:06:16,880
difference they're all basically the
351
00:06:16,880 --> 00:06:19,270
difference they're all basically the
same thing they both are a glue that
352
00:06:19,270 --> 00:06:19,280
same thing they both are a glue that
353
00:06:19,280 --> 00:06:20,710
same thing they both are a glue that
glues a thread in place that's
354
00:06:20,710 --> 00:06:20,720
glues a thread in place that's
355
00:06:20,720 --> 00:06:23,870
glues a thread in place that's
threadlock now your manual that you're
356
00:06:23,870 --> 00:06:23,880
threadlock now your manual that you're
357
00:06:23,880 --> 00:06:25,309
threadlock now your manual that you're
using to do whatever job you should be
358
00:06:25,309 --> 00:06:25,319
using to do whatever job you should be
359
00:06:25,319 --> 00:06:27,070
using to do whatever job you should be
using a manual or handbook certainly if
360
00:06:27,070 --> 00:06:27,080
using a manual or handbook certainly if
361
00:06:27,080 --> 00:06:28,550
using a manual or handbook certainly if
it's a Harley-Davidson you get your big
362
00:06:28,550 --> 00:06:28,560
it's a Harley-Davidson you get your big
363
00:06:28,560 --> 00:06:30,670
it's a Harley-Davidson you get your big
blue Bible it will tell you when to use
364
00:06:30,670 --> 00:06:30,680
blue Bible it will tell you when to use
365
00:06:30,680 --> 00:06:33,230
blue Bible it will tell you when to use
it and that's the best part of it the
366
00:06:33,230 --> 00:06:33,240
it and that's the best part of it the
367
00:06:33,240 --> 00:06:34,430
it and that's the best part of it the
manufacturer usually gives you all the
368
00:06:34,430 --> 00:06:34,440
manufacturer usually gives you all the
369
00:06:34,440 --> 00:06:35,990
manufacturer usually gives you all the
Insight you need most of it though is
370
00:06:35,990 --> 00:06:36,000
Insight you need most of it though is
371
00:06:36,000 --> 00:06:37,309
Insight you need most of it though is
common sense if it's going to shake
372
00:06:37,309 --> 00:06:37,319
common sense if it's going to shake
373
00:06:37,319 --> 00:06:38,950
common sense if it's going to shake
loose if it's a vibrating thing it's a
374
00:06:38,950 --> 00:06:38,960
loose if it's a vibrating thing it's a
375
00:06:38,960 --> 00:06:41,189
loose if it's a vibrating thing it's a
very important safety part like a shock
376
00:06:41,189 --> 00:06:41,199
very important safety part like a shock
377
00:06:41,199 --> 00:06:44,070
very important safety part like a shock
absorber or something that will stay
378
00:06:44,070 --> 00:06:44,080
absorber or something that will stay
379
00:06:44,080 --> 00:06:45,469
absorber or something that will stay
there if you put a bit of thread look on
380
00:06:45,469 --> 00:06:45,479
there if you put a bit of thread look on
381
00:06:45,479 --> 00:06:47,189
there if you put a bit of thread look on
it but if you don't then is liable to
382
00:06:47,189 --> 00:06:47,199
it but if you don't then is liable to
383
00:06:47,199 --> 00:06:48,749
it but if you don't then is liable to
shake free then that's down at you if
384
00:06:48,749 --> 00:06:48,759
shake free then that's down at you if
385
00:06:48,759 --> 00:06:50,150
shake free then that's down at you if
you don't use it so that's when you'd
386
00:06:50,150 --> 00:06:50,160
you don't use it so that's when you'd
387
00:06:50,160 --> 00:06:51,589
you don't use it so that's when you'd
use that in anything that's liable to
388
00:06:51,589 --> 00:06:51,599
use that in anything that's liable to
389
00:06:51,599 --> 00:06:54,710
use that in anything that's liable to
shake or rattle free next the other
390
00:06:54,710 --> 00:06:54,720
shake or rattle free next the other
391
00:06:54,720 --> 00:06:58,710
shake or rattle free next the other
one three versions of it anti-seize
392
00:06:58,710 --> 00:06:58,720
one three versions of it anti-seize
393
00:06:58,720 --> 00:07:00,230
one three versions of it anti-seize
compound
394
00:07:00,230 --> 00:07:00,240
compound
395
00:07:00,240 --> 00:07:02,230
compound
rol
396
00:07:02,230 --> 00:07:02,240
rol
397
00:07:02,240 --> 00:07:07,270
rol
comma uh copper ease and Loctite c5a now
398
00:07:07,270 --> 00:07:07,280
comma uh copper ease and Loctite c5a now
399
00:07:07,280 --> 00:07:08,469
comma uh copper ease and Loctite c5a now
all of these are the same thing I'll
400
00:07:08,469 --> 00:07:08,479
all of these are the same thing I'll
401
00:07:08,479 --> 00:07:10,189
all of these are the same thing I'll
show you them all this is the antcs this
402
00:07:10,189 --> 00:07:10,199
show you them all this is the antcs this
403
00:07:10,199 --> 00:07:13,550
show you them all this is the antcs this
is the other stuff that's the waxy kind
404
00:07:13,550 --> 00:07:13,560
is the other stuff that's the waxy kind
405
00:07:13,560 --> 00:07:15,830
is the other stuff that's the waxy kind
of version of it which I love the most
406
00:07:15,830 --> 00:07:15,840
of version of it which I love the most
407
00:07:15,840 --> 00:07:17,469
of version of it which I love the most
um the only reason I like these so much
408
00:07:17,469 --> 00:07:17,479
um the only reason I like these so much
409
00:07:17,479 --> 00:07:19,670
um the only reason I like these so much
is and this one is cuz when you tread on
410
00:07:19,670 --> 00:07:19,680
is and this one is cuz when you tread on
411
00:07:19,680 --> 00:07:21,070
is and this one is cuz when you tread on
them or kneel on them on the workshop
412
00:07:21,070 --> 00:07:21,080
them or kneel on them on the workshop
413
00:07:21,080 --> 00:07:23,029
them or kneel on them on the workshop
floor inevitably they don't squirt
414
00:07:23,029 --> 00:07:23,039
floor inevitably they don't squirt
415
00:07:23,039 --> 00:07:25,589
floor inevitably they don't squirt
everywhere which they do um but that
416
00:07:25,589 --> 00:07:25,599
everywhere which they do um but that
417
00:07:25,599 --> 00:07:27,670
everywhere which they do um but that
stuff's the same this is the soft
418
00:07:27,670 --> 00:07:27,680
stuff's the same this is the soft
419
00:07:27,680 --> 00:07:29,510
stuff's the same this is the soft
version of it like a sort of toothpast
420
00:07:29,510 --> 00:07:29,520
version of it like a sort of toothpast
421
00:07:29,520 --> 00:07:32,550
version of it like a sort of toothpast
pasty sort of soft don't confuse the two
422
00:07:32,550 --> 00:07:32,560
pasty sort of soft don't confuse the two
423
00:07:32,560 --> 00:07:36,110
pasty sort of soft don't confuse the two
and this is these anti now this is the
424
00:07:36,110 --> 00:07:36,120
and this is these anti now this is the
425
00:07:36,120 --> 00:07:38,029
and this is these anti now this is the
copper version you can get a gray
426
00:07:38,029 --> 00:07:38,039
copper version you can get a gray
427
00:07:38,039 --> 00:07:39,550
copper version you can get a gray
version of it which has got graphite in
428
00:07:39,550 --> 00:07:39,560
version of it which has got graphite in
429
00:07:39,560 --> 00:07:41,710
version of it which has got graphite in
it instead and they all do the same
430
00:07:41,710 --> 00:07:41,720
it instead and they all do the same
431
00:07:41,720 --> 00:07:43,510
it instead and they all do the same
thing I want to show you something it's
432
00:07:43,510 --> 00:07:43,520
thing I want to show you something it's
433
00:07:43,520 --> 00:07:44,869
thing I want to show you something it's
a little experiment and I think this
434
00:07:44,869 --> 00:07:44,879
a little experiment and I think this
435
00:07:44,879 --> 00:07:47,309
a little experiment and I think this
will hopefully explain the difference of
436
00:07:47,309 --> 00:07:47,319
will hopefully explain the difference of
437
00:07:47,319 --> 00:07:50,629
will hopefully explain the difference of
the two now this is God's first ordinary
438
00:07:50,629 --> 00:07:50,639
the two now this is God's first ordinary
439
00:07:50,639 --> 00:07:54,550
the two now this is God's first ordinary
antias straightforward oil grease LM low
440
00:07:54,550 --> 00:07:54,560
antias straightforward oil grease LM low
441
00:07:54,560 --> 00:07:56,670
antias straightforward oil grease LM low
melting point multi-purpose grease so if
442
00:07:56,670 --> 00:07:56,680
melting point multi-purpose grease so if
443
00:07:56,680 --> 00:07:59,550
melting point multi-purpose grease so if
we take a little blob of that
444
00:07:59,550 --> 00:07:59,560
we take a little blob of that
445
00:07:59,560 --> 00:08:00,550
we take a little blob of that
on more
446
00:08:00,550 --> 00:08:00,560
on more
447
00:08:00,560 --> 00:08:03,629
on more
screwdriver and we get a lighter I'll
448
00:08:03,629 --> 00:08:03,639
screwdriver and we get a lighter I'll
449
00:08:03,639 --> 00:08:07,670
screwdriver and we get a lighter I'll
show you let's come over
450
00:08:07,670 --> 00:08:07,680
show you let's come over
451
00:08:07,680 --> 00:08:11,149
show you let's come over
here you got light boy right ligh is
452
00:08:11,149 --> 00:08:11,159
here you got light boy right ligh is
453
00:08:11,159 --> 00:08:13,070
here you got light boy right ligh is
playing up today that's
454
00:08:13,070 --> 00:08:13,080
playing up today that's
455
00:08:13,080 --> 00:08:15,909
playing up today that's
better so if I put a lighter on this
456
00:08:15,909 --> 00:08:15,919
better so if I put a lighter on this
457
00:08:15,919 --> 00:08:20,230
better so if I put a lighter on this
ordinary grease watch it just
458
00:08:20,230 --> 00:08:20,240
ordinary grease watch it just
459
00:08:20,240 --> 00:08:23,550
ordinary grease watch it just
200° it just flows it just
460
00:08:23,550 --> 00:08:23,560
200° it just flows it just
461
00:08:23,560 --> 00:08:25,430
200° it just flows it just
melts and it's
462
00:08:25,430 --> 00:08:25,440
melts and it's
463
00:08:25,440 --> 00:08:29,589
melts and it's
useless just drips away so if I put
464
00:08:29,589 --> 00:08:29,599
useless just drips away so if I put
465
00:08:29,599 --> 00:08:32,149
useless just drips away so if I put
grease like that in my brake calipers
466
00:08:32,149 --> 00:08:32,159
grease like that in my brake calipers
467
00:08:32,159 --> 00:08:33,949
grease like that in my brake calipers
they're going to get well over 200° in
468
00:08:33,949 --> 00:08:33,959
they're going to get well over 200° in
469
00:08:33,959 --> 00:08:35,949
they're going to get well over 200° in
the first few applications and that
470
00:08:35,949 --> 00:08:35,959
the first few applications and that
471
00:08:35,959 --> 00:08:37,909
the first few applications and that
grease is going to do that it's going to
472
00:08:37,909 --> 00:08:37,919
grease is going to do that it's going to
473
00:08:37,919 --> 00:08:40,550
grease is going to do that it's going to
run and dribble and find its way
474
00:08:40,550 --> 00:08:40,560
run and dribble and find its way
475
00:08:40,560 --> 00:08:42,750
run and dribble and find its way
everywhere usually onto the front of the
476
00:08:42,750 --> 00:08:42,760
everywhere usually onto the front of the
477
00:08:42,760 --> 00:08:44,149
everywhere usually onto the front of the
brakes and that will mean they won't
478
00:08:44,149 --> 00:08:44,159
brakes and that will mean they won't
479
00:08:44,159 --> 00:08:46,310
brakes and that will mean they won't
work anymore which is a bit Dar isn't it
480
00:08:46,310 --> 00:08:46,320
work anymore which is a bit Dar isn't it
481
00:08:46,320 --> 00:08:47,670
work anymore which is a bit Dar isn't it
and that's any part of your brake
482
00:08:47,670 --> 00:08:47,680
and that's any part of your brake
483
00:08:47,680 --> 00:08:49,470
and that's any part of your brake
calipers never put regular grease on
484
00:08:49,470 --> 00:08:49,480
calipers never put regular grease on
485
00:08:49,480 --> 00:08:51,590
calipers never put regular grease on
your brake calipers ever you don't need
486
00:08:51,590 --> 00:08:51,600
your brake calipers ever you don't need
487
00:08:51,600 --> 00:08:53,230
your brake calipers ever you don't need
it there it's pointless because it will
488
00:08:53,230 --> 00:08:53,240
it there it's pointless because it will
489
00:08:53,240 --> 00:08:55,910
it there it's pointless because it will
heat up 200° which is nothing is it it's
490
00:08:55,910 --> 00:08:55,920
heat up 200° which is nothing is it it's
491
00:08:55,920 --> 00:08:57,910
heat up 200° which is nothing is it it's
only twice boiling point and your brakes
492
00:08:57,910 --> 00:08:57,920
only twice boiling point and your brakes
493
00:08:57,920 --> 00:08:58,910
only twice boiling point and your brakes
are certainly going to get that hot
494
00:08:58,910 --> 00:08:58,920
are certainly going to get that hot
495
00:08:58,920 --> 00:09:00,710
are certainly going to get that hot
under use you will find that they'll
496
00:09:00,710 --> 00:09:00,720
under use you will find that they'll
497
00:09:00,720 --> 00:09:02,710
under use you will find that they'll
effectively melt the grease and it will
498
00:09:02,710 --> 00:09:02,720
effectively melt the grease and it will
499
00:09:02,720 --> 00:09:04,150
effectively melt the grease and it will
run all over your pads and you won't
500
00:09:04,150 --> 00:09:04,160
run all over your pads and you won't
501
00:09:04,160 --> 00:09:05,990
run all over your pads and you won't
have any breaking power at all on the
502
00:09:05,990 --> 00:09:06,000
have any breaking power at all on the
503
00:09:06,000 --> 00:09:08,870
have any breaking power at all on the
other hand so let me show the same
504
00:09:08,870 --> 00:09:08,880
other hand so let me show the same
505
00:09:08,880 --> 00:09:12,470
other hand so let me show the same
experiment again with a bit of this so
506
00:09:12,470 --> 00:09:12,480
experiment again with a bit of this so
507
00:09:12,480 --> 00:09:14,430
experiment again with a bit of this so
this is forward
508
00:09:14,430 --> 00:09:14,440
this is forward
509
00:09:14,440 --> 00:09:19,030
this is forward
straightforward and this is interesting
510
00:09:19,030 --> 00:09:19,040
511
00:09:19,040 --> 00:09:22,870
watch there we go now that is the copper
512
00:09:22,870 --> 00:09:22,880
watch there we go now that is the copper
513
00:09:22,880 --> 00:09:25,670
watch there we go now that is the copper
slip antise
514
00:09:25,670 --> 00:09:25,680
slip antise
515
00:09:25,680 --> 00:09:30,509
slip antise
compound it's a dust it's copper dust
516
00:09:30,509 --> 00:09:30,519
compound it's a dust it's copper dust
517
00:09:30,519 --> 00:09:32,710
compound it's a dust it's copper dust
um you can see
518
00:09:32,710 --> 00:09:32,720
um you can see
519
00:09:32,720 --> 00:09:34,710
um you can see
it but there's a bit of that this
520
00:09:34,710 --> 00:09:34,720
it but there's a bit of that this
521
00:09:34,720 --> 00:09:37,310
it but there's a bit of that this
glowing orange on the
522
00:09:37,310 --> 00:09:37,320
glowing orange on the
523
00:09:37,320 --> 00:09:40,190
glowing orange on the
end easiest way to blow it out right
524
00:09:40,190 --> 00:09:40,200
end easiest way to blow it out right
525
00:09:40,200 --> 00:09:42,350
end easiest way to blow it out right
there's an oil in there like a carrier
526
00:09:42,350 --> 00:09:42,360
there's an oil in there like a carrier
527
00:09:42,360 --> 00:09:44,990
there's an oil in there like a carrier
grease um something that carries the
528
00:09:44,990 --> 00:09:45,000
grease um something that carries the
529
00:09:45,000 --> 00:09:47,710
grease um something that carries the
copper powder if you imagine that as a
530
00:09:47,710 --> 00:09:47,720
copper powder if you imagine that as a
531
00:09:47,720 --> 00:09:50,670
copper powder if you imagine that as a
tin of powdered copper powdered so
532
00:09:50,670 --> 00:09:50,680
tin of powdered copper powdered so
533
00:09:50,680 --> 00:09:52,990
tin of powdered copper powdered so
finely almost like colloidal copper
534
00:09:52,990 --> 00:09:53,000
finely almost like colloidal copper
535
00:09:53,000 --> 00:09:55,150
finely almost like colloidal copper
something that would be like dust cement
536
00:09:55,150 --> 00:09:55,160
something that would be like dust cement
537
00:09:55,160 --> 00:09:57,389
something that would be like dust cement
dust or talcon powder really really
538
00:09:57,389 --> 00:09:57,399
dust or talcon powder really really
539
00:09:57,399 --> 00:09:59,389
dust or talcon powder really really
really fine and then mix it with GRE
540
00:09:59,389 --> 00:09:59,399
really fine and then mix it with GRE
541
00:09:59,399 --> 00:10:01,870
really fine and then mix it with GRE
greas and that's what you get copper
542
00:10:01,870 --> 00:10:01,880
greas and that's what you get copper
543
00:10:01,880 --> 00:10:05,069
greas and that's what you get copper
grease ain't odd is it ever so easy so
544
00:10:05,069 --> 00:10:05,079
grease ain't odd is it ever so easy so
545
00:10:05,079 --> 00:10:08,030
grease ain't odd is it ever so easy so
what happens to that it's cooled off now
546
00:10:08,030 --> 00:10:08,040
what happens to that it's cooled off now
547
00:10:08,040 --> 00:10:09,069
what happens to that it's cooled off now
it's
548
00:10:09,069 --> 00:10:09,079
it's
549
00:10:09,079 --> 00:10:12,550
it's
still smooth bit warm now but that's
550
00:10:12,550 --> 00:10:12,560
still smooth bit warm now but that's
551
00:10:12,560 --> 00:10:14,509
still smooth bit warm now but that's
still a soft grease and it still
552
00:10:14,509 --> 00:10:14,519
still a soft grease and it still
553
00:10:14,519 --> 00:10:17,069
still a soft grease and it still
lubricates absolutely fine even though
554
00:10:17,069 --> 00:10:17,079
lubricates absolutely fine even though
555
00:10:17,079 --> 00:10:19,269
lubricates absolutely fine even though
it's been burnt so what we're saying
556
00:10:19,269 --> 00:10:19,279
it's been burnt so what we're saying
557
00:10:19,279 --> 00:10:21,910
it's been burnt so what we're saying
here is it's heat proof it doesn't melt
558
00:10:21,910 --> 00:10:21,920
here is it's heat proof it doesn't melt
559
00:10:21,920 --> 00:10:24,350
here is it's heat proof it doesn't melt
it's heat resistant even though we
560
00:10:24,350 --> 00:10:24,360
it's heat resistant even though we
561
00:10:24,360 --> 00:10:27,069
it's heat resistant even though we
heated that till it was actually on fire
562
00:10:27,069 --> 00:10:27,079
heated that till it was actually on fire
563
00:10:27,079 --> 00:10:29,110
heated that till it was actually on fire
it didn't run and that means that when
564
00:10:29,110 --> 00:10:29,120
it didn't run and that means that when
565
00:10:29,120 --> 00:10:31,069
it didn't run and that means that when
you put it on your brake calipers or the
566
00:10:31,069 --> 00:10:31,079
you put it on your brake calipers or the
567
00:10:31,079 --> 00:10:32,430
you put it on your brake calipers or the
back of your brake pads you've heard
568
00:10:32,430 --> 00:10:32,440
back of your brake pads you've heard
569
00:10:32,440 --> 00:10:34,030
back of your brake pads you've heard
that one you smear it like a butter on a
570
00:10:34,030 --> 00:10:34,040
that one you smear it like a butter on a
571
00:10:34,040 --> 00:10:36,190
that one you smear it like a butter on a
biscuit on the back of your brake pads
572
00:10:36,190 --> 00:10:36,200
biscuit on the back of your brake pads
573
00:10:36,200 --> 00:10:37,550
biscuit on the back of your brake pads
and it stops that high frequency
574
00:10:37,550 --> 00:10:37,560
and it stops that high frequency
575
00:10:37,560 --> 00:10:39,990
and it stops that high frequency
vibration so the brakes don't squeak the
576
00:10:39,990 --> 00:10:40,000
vibration so the brakes don't squeak the
577
00:10:40,000 --> 00:10:41,910
vibration so the brakes don't squeak the
reason we use copper slip is no matter
578
00:10:41,910 --> 00:10:41,920
reason we use copper slip is no matter
579
00:10:41,920 --> 00:10:43,870
reason we use copper slip is no matter
how hot that gets it won't run off and
580
00:10:43,870 --> 00:10:43,880
how hot that gets it won't run off and
581
00:10:43,880 --> 00:10:46,190
how hot that gets it won't run off and
go round onto the brakes and compromise
582
00:10:46,190 --> 00:10:46,200
go round onto the brakes and compromise
583
00:10:46,200 --> 00:10:48,750
go round onto the brakes and compromise
your brakin it's safe to do that with
584
00:10:48,750 --> 00:10:48,760
your brakin it's safe to do that with
585
00:10:48,760 --> 00:10:51,310
your brakin it's safe to do that with
the other side of it is other Fasteners
586
00:10:51,310 --> 00:10:51,320
the other side of it is other Fasteners
587
00:10:51,320 --> 00:10:53,790
the other side of it is other Fasteners
such as the nuts that you screw onto the
588
00:10:53,790 --> 00:10:53,800
such as the nuts that you screw onto the
589
00:10:53,800 --> 00:10:55,750
such as the nuts that you screw onto the
studs to hold your exhaust on exhaust
590
00:10:55,750 --> 00:10:55,760
studs to hold your exhaust on exhaust
591
00:10:55,760 --> 00:10:57,670
studs to hold your exhaust on exhaust
manifold studs oh my goodness do they
592
00:10:57,670 --> 00:10:57,680
manifold studs oh my goodness do they
593
00:10:57,680 --> 00:11:00,110
manifold studs oh my goodness do they
not always seize in place they won't if
594
00:11:00,110 --> 00:11:00,120
not always seize in place they won't if
595
00:11:00,120 --> 00:11:01,910
not always seize in place they won't if
you use this because the melting point
596
00:11:01,910 --> 00:11:01,920
you use this because the melting point
597
00:11:01,920 --> 00:11:05,910
you use this because the melting point
of the copper itself is a,
598
00:11:05,910 --> 00:11:05,920
of the copper itself is a,
599
00:11:05,920 --> 00:11:08,829
of the copper itself is a,
185° before the Melt the actual powdered
600
00:11:08,829 --> 00:11:08,839
185° before the Melt the actual powdered
601
00:11:08,839 --> 00:11:11,629
185° before the Melt the actual powdered
copper in this melts and flows away and
602
00:11:11,629 --> 00:11:11,639
copper in this melts and flows away and
603
00:11:11,639 --> 00:11:13,829
copper in this melts and flows away and
disappears so this will remain in place
604
00:11:13,829 --> 00:11:13,839
disappears so this will remain in place
605
00:11:13,839 --> 00:11:16,110
disappears so this will remain in place
no matter that the as you saw just now
606
00:11:16,110 --> 00:11:16,120
no matter that the as you saw just now
607
00:11:16,120 --> 00:11:18,150
no matter that the as you saw just now
no matter that the oil vaporizes and
608
00:11:18,150 --> 00:11:18,160
no matter that the oil vaporizes and
609
00:11:18,160 --> 00:11:20,389
no matter that the oil vaporizes and
that oily whatever's carrying that
610
00:11:20,389 --> 00:11:20,399
that oily whatever's carrying that
611
00:11:20,399 --> 00:11:23,509
that oily whatever's carrying that
whatever makes whatever makes this soft
612
00:11:23,509 --> 00:11:23,519
whatever makes whatever makes this soft
613
00:11:23,519 --> 00:11:25,990
whatever makes whatever makes this soft
that's in it can vaporize away all it
614
00:11:25,990 --> 00:11:26,000
that's in it can vaporize away all it
615
00:11:26,000 --> 00:11:28,790
that's in it can vaporize away all it
likes but the copper remains behind the
616
00:11:28,790 --> 00:11:28,800
likes but the copper remains behind the
617
00:11:28,800 --> 00:11:31,269
likes but the copper remains behind the
copper is soft isn't it it's a soft
618
00:11:31,269 --> 00:11:31,279
copper is soft isn't it it's a soft
619
00:11:31,279 --> 00:11:33,829
copper is soft isn't it it's a soft
metal and as the tiny dust particles of
620
00:11:33,829 --> 00:11:33,839
metal and as the tiny dust particles of
621
00:11:33,839 --> 00:11:35,509
metal and as the tiny dust particles of
that copper remain in place they act
622
00:11:35,509 --> 00:11:35,519
that copper remain in place they act
623
00:11:35,519 --> 00:11:37,790
that copper remain in place they act
like a talcon powder lubricant a dry
624
00:11:37,790 --> 00:11:37,800
like a talcon powder lubricant a dry
625
00:11:37,800 --> 00:11:39,750
like a talcon powder lubricant a dry
lubricant if you wish and they'll stop
626
00:11:39,750 --> 00:11:39,760
lubricant if you wish and they'll stop
627
00:11:39,760 --> 00:11:41,629
lubricant if you wish and they'll stop
that from croing it's a non-f feris
628
00:11:41,629 --> 00:11:41,639
that from croing it's a non-f feris
629
00:11:41,639 --> 00:11:43,910
that from croing it's a non-f feris
material copper so effectively as time
630
00:11:43,910 --> 00:11:43,920
material copper so effectively as time
631
00:11:43,920 --> 00:11:45,870
material copper so effectively as time
goes on you get that water going against
632
00:11:45,870 --> 00:11:45,880
goes on you get that water going against
633
00:11:45,880 --> 00:11:47,829
goes on you get that water going against
the front of your engine and the salt
634
00:11:47,829 --> 00:11:47,839
the front of your engine and the salt
635
00:11:47,839 --> 00:11:49,710
the front of your engine and the salt
getting in there well that copper grease
636
00:11:49,710 --> 00:11:49,720
getting in there well that copper grease
637
00:11:49,720 --> 00:11:51,750
getting in there well that copper grease
is all around that thread and it's
638
00:11:51,750 --> 00:11:51,760
is all around that thread and it's
639
00:11:51,760 --> 00:11:53,710
is all around that thread and it's
protecting there it's keeping the water
640
00:11:53,710 --> 00:11:53,720
protecting there it's keeping the water
641
00:11:53,720 --> 00:11:55,870
protecting there it's keeping the water
out so the water the moisture cannot get
642
00:11:55,870 --> 00:11:55,880
out so the water the moisture cannot get
643
00:11:55,880 --> 00:11:58,389
out so the water the moisture cannot get
into that thread to rust that Bolt Solid
644
00:11:58,389 --> 00:11:58,399
into that thread to rust that Bolt Solid
645
00:11:58,399 --> 00:11:59,310
into that thread to rust that Bolt Solid
and then when you got to take your your
646
00:11:59,310 --> 00:11:59,320
and then when you got to take your your
647
00:11:59,320 --> 00:12:00,910
and then when you got to take your your
exhaust header studs off they just come
648
00:12:00,910 --> 00:12:00,920
exhaust header studs off they just come
649
00:12:00,920 --> 00:12:03,110
exhaust header studs off they just come
straight out and that's why you see take
650
00:12:03,110 --> 00:12:03,120
straight out and that's why you see take
651
00:12:03,120 --> 00:12:04,430
straight out and that's why you see take
your bike to a mechanic to have
652
00:12:04,430 --> 00:12:04,440
your bike to a mechanic to have
653
00:12:04,440 --> 00:12:05,509
your bike to a mechanic to have
practically anything done at the
654
00:12:05,509 --> 00:12:05,519
practically anything done at the
655
00:12:05,519 --> 00:12:07,310
practically anything done at the
dealership You'll Always Find little
656
00:12:07,310 --> 00:12:07,320
dealership You'll Always Find little
657
00:12:07,320 --> 00:12:09,829
dealership You'll Always Find little
smears of copper colored grease around
658
00:12:09,829 --> 00:12:09,839
smears of copper colored grease around
659
00:12:09,839 --> 00:12:11,670
smears of copper colored grease around
things cuz they use it all the time cuz
660
00:12:11,670 --> 00:12:11,680
things cuz they use it all the time cuz
661
00:12:11,680 --> 00:12:12,829
things cuz they use it all the time cuz
if they're going to get that bike back
662
00:12:12,829 --> 00:12:12,839
if they're going to get that bike back
663
00:12:12,839 --> 00:12:14,710
if they're going to get that bike back
on the bench in 5,000 mil time they
664
00:12:14,710 --> 00:12:14,720
on the bench in 5,000 mil time they
665
00:12:14,720 --> 00:12:15,949
on the bench in 5,000 mil time they
don't want the grease of stuck bolts
666
00:12:15,949 --> 00:12:15,959
don't want the grease of stuck bolts
667
00:12:15,959 --> 00:12:17,310
don't want the grease of stuck bolts
they want it all to come undone and
668
00:12:17,310 --> 00:12:17,320
they want it all to come undone and
669
00:12:17,320 --> 00:12:18,550
they want it all to come undone and
they're taken care of your bike at the
670
00:12:18,550 --> 00:12:18,560
they're taken care of your bike at the
671
00:12:18,560 --> 00:12:20,110
they're taken care of your bike at the
same time so there's the principle
672
00:12:20,110 --> 00:12:20,120
same time so there's the principle
673
00:12:20,120 --> 00:12:24,030
same time so there's the principle
copper grease copper slip copper EAS
674
00:12:24,030 --> 00:12:24,040
copper grease copper slip copper EAS
675
00:12:24,040 --> 00:12:26,269
copper grease copper slip copper EAS
whatever you choose to call it or use
676
00:12:26,269 --> 00:12:26,279
whatever you choose to call it or use
677
00:12:26,279 --> 00:12:27,829
whatever you choose to call it or use
they are heat
678
00:12:27,829 --> 00:12:27,839
they are heat
679
00:12:27,839 --> 00:12:31,990
they are heat
proof all right heat resistant to 1085
680
00:12:31,990 --> 00:12:32,000
proof all right heat resistant to 1085
681
00:12:32,000 --> 00:12:35,629
proof all right heat resistant to 1085
de materials for lubrication of threads
682
00:12:35,629 --> 00:12:35,639
de materials for lubrication of threads
683
00:12:35,639 --> 00:12:37,870
de materials for lubrication of threads
and if you really are going for it and
684
00:12:37,870 --> 00:12:37,880
and if you really are going for it and
685
00:12:37,880 --> 00:12:40,030
and if you really are going for it and
you're bolting a turbo manifold on that
686
00:12:40,030 --> 00:12:40,040
you're bolting a turbo manifold on that
687
00:12:40,040 --> 00:12:42,150
you're bolting a turbo manifold on that
will get over 1,000° so you might use
688
00:12:42,150 --> 00:12:42,160
will get over 1,000° so you might use
689
00:12:42,160 --> 00:12:43,670
will get over 1,000° so you might use
something like a graphite grease and you
690
00:12:43,670 --> 00:12:43,680
something like a graphite grease and you
691
00:12:43,680 --> 00:12:45,509
something like a graphite grease and you
won't melt graphite you really won't you
692
00:12:45,509 --> 00:12:45,519
won't melt graphite you really won't you
693
00:12:45,519 --> 00:12:47,350
won't melt graphite you really won't you
have to get that up to 5,000 de to melt
694
00:12:47,350 --> 00:12:47,360
have to get that up to 5,000 de to melt
695
00:12:47,360 --> 00:12:49,430
have to get that up to 5,000 de to melt
it uh Molly benom grease stuff like that
696
00:12:49,430 --> 00:12:49,440
it uh Molly benom grease stuff like that
697
00:12:49,440 --> 00:12:51,310
it uh Molly benom grease stuff like that
you can buy it very expensive very
698
00:12:51,310 --> 00:12:51,320
you can buy it very expensive very
699
00:12:51,320 --> 00:12:53,069
you can buy it very expensive very
exotic but don't you don't need it just
700
00:12:53,069 --> 00:12:53,079
exotic but don't you don't need it just
701
00:12:53,079 --> 00:12:54,670
exotic but don't you don't need it just
a bit of copper slips fine for a regular
702
00:12:54,670 --> 00:12:54,680
a bit of copper slips fine for a regular
703
00:12:54,680 --> 00:12:56,629
a bit of copper slips fine for a regular
bike application and here's the rub
704
00:12:56,629 --> 00:12:56,639
bike application and here's the rub
705
00:12:56,639 --> 00:12:58,509
bike application and here's the rub
something a little bit unusual here the
706
00:12:58,509 --> 00:12:58,519
something a little bit unusual here the
707
00:12:58,519 --> 00:13:01,030
something a little bit unusual here the
question I get asked so much is which is
708
00:13:01,030 --> 00:13:01,040
question I get asked so much is which is
709
00:13:01,040 --> 00:13:03,389
question I get asked so much is which is
which when do I use each well obviously
710
00:13:03,389 --> 00:13:03,399
which when do I use each well obviously
711
00:13:03,399 --> 00:13:05,550
which when do I use each well obviously
anything hot you don't use this cuz it
712
00:13:05,550 --> 00:13:05,560
anything hot you don't use this cuz it
713
00:13:05,560 --> 00:13:09,470
anything hot you don't use this cuz it
will melt it's plastic this on anything
714
00:13:09,470 --> 00:13:09,480
will melt it's plastic this on anything
715
00:13:09,480 --> 00:13:12,189
will melt it's plastic this on anything
hot if a Bolt's done up properly to its
716
00:13:12,189 --> 00:13:12,199
hot if a Bolt's done up properly to its
717
00:13:12,199 --> 00:13:15,269
hot if a Bolt's done up properly to its
correct torque on uh anything you're
718
00:13:15,269 --> 00:13:15,279
correct torque on uh anything you're
719
00:13:15,279 --> 00:13:17,790
correct torque on uh anything you're
holding on a manifold whatever or or a
720
00:13:17,790 --> 00:13:17,800
holding on a manifold whatever or or a
721
00:13:17,800 --> 00:13:20,150
holding on a manifold whatever or or a
brake caliper you can use shap proof
722
00:13:20,150 --> 00:13:20,160
brake caliper you can use shap proof
723
00:13:20,160 --> 00:13:22,389
brake caliper you can use shap proof
washers spring washers things like that
724
00:13:22,389 --> 00:13:22,399
washers spring washers things like that
725
00:13:22,399 --> 00:13:24,949
washers spring washers things like that
to hold the fers in place but you would
726
00:13:24,949 --> 00:13:24,959
to hold the fers in place but you would
727
00:13:24,959 --> 00:13:26,990
to hold the fers in place but you would
not use a threadlock because you don't
728
00:13:26,990 --> 00:13:27,000
not use a threadlock because you don't
729
00:13:27,000 --> 00:13:28,710
not use a threadlock because you don't
need it they might vibrate but if you do
730
00:13:28,710 --> 00:13:28,720
need it they might vibrate but if you do
731
00:13:28,720 --> 00:13:29,910
need it they might vibrate but if you do
them up to the the correct torque they
732
00:13:29,910 --> 00:13:29,920
them up to the the correct torque they
733
00:13:29,920 --> 00:13:31,870
them up to the the correct torque they
won't remember with exhaust headers
734
00:13:31,870 --> 00:13:31,880
won't remember with exhaust headers
735
00:13:31,880 --> 00:13:33,710
won't remember with exhaust headers
you've got that gasket ring inside
736
00:13:33,710 --> 00:13:33,720
you've got that gasket ring inside
737
00:13:33,720 --> 00:13:35,269
you've got that gasket ring inside
pushing the exhaust off so that
738
00:13:35,269 --> 00:13:35,279
pushing the exhaust off so that
739
00:13:35,279 --> 00:13:36,990
pushing the exhaust off so that
resistance means that constant
740
00:13:36,990 --> 00:13:37,000
resistance means that constant
741
00:13:37,000 --> 00:13:38,990
resistance means that constant
resistance means they won't shake off I
742
00:13:38,990 --> 00:13:39,000
resistance means they won't shake off I
743
00:13:39,000 --> 00:13:41,030
resistance means they won't shake off I
certainly have never had and never seen
744
00:13:41,030 --> 00:13:41,040
certainly have never had and never seen
745
00:13:41,040 --> 00:13:43,150
certainly have never had and never seen
a manifold bolt Shake itself free in
746
00:13:43,150 --> 00:13:43,160
a manifold bolt Shake itself free in
747
00:13:43,160 --> 00:13:44,470
a manifold bolt Shake itself free in
fact anything is always the opposite CU
748
00:13:44,470 --> 00:13:44,480
fact anything is always the opposite CU
749
00:13:44,480 --> 00:13:46,829
fact anything is always the opposite CU
they don't get lubricated uh things like
750
00:13:46,829 --> 00:13:46,839
they don't get lubricated uh things like
751
00:13:46,839 --> 00:13:48,590
they don't get lubricated uh things like
suspension Fender bolts that sort of
752
00:13:48,590 --> 00:13:48,600
suspension Fender bolts that sort of
753
00:13:48,600 --> 00:13:51,230
suspension Fender bolts that sort of
thing you can put a uh thread lock in
754
00:13:51,230 --> 00:13:51,240
thing you can put a uh thread lock in
755
00:13:51,240 --> 00:13:54,110
thing you can put a uh thread lock in
that and here's the rub the threadlock
756
00:13:54,110 --> 00:13:54,120
that and here's the rub the threadlock
757
00:13:54,120 --> 00:13:56,949
that and here's the rub the threadlock
is also an anti-seize if you think about
758
00:13:56,949 --> 00:13:56,959
is also an anti-seize if you think about
759
00:13:56,959 --> 00:14:00,470
is also an anti-seize if you think about
it because it as a plastic sealant that
760
00:14:00,470 --> 00:14:00,480
it because it as a plastic sealant that
761
00:14:00,480 --> 00:14:03,069
it because it as a plastic sealant that
goes inside the thread that thread
762
00:14:03,069 --> 00:14:03,079
goes inside the thread that thread
763
00:14:03,079 --> 00:14:04,749
goes inside the thread that thread
meshing like that there's always
764
00:14:04,749 --> 00:14:04,759
meshing like that there's always
765
00:14:04,759 --> 00:14:06,590
meshing like that there's always
microscopic air gaps in between there
766
00:14:06,590 --> 00:14:06,600
microscopic air gaps in between there
767
00:14:06,600 --> 00:14:07,990
microscopic air gaps in between there
and they're filled with this stuff as
768
00:14:07,990 --> 00:14:08,000
and they're filled with this stuff as
769
00:14:08,000 --> 00:14:10,069
and they're filled with this stuff as
you screw it in it smears it all the way
770
00:14:10,069 --> 00:14:10,079
you screw it in it smears it all the way
771
00:14:10,079 --> 00:14:12,350
you screw it in it smears it all the way
down in and it glues the two together
772
00:14:12,350 --> 00:14:12,360
down in and it glues the two together
773
00:14:12,360 --> 00:14:14,110
down in and it glues the two together
once they're all glued in place nothing
774
00:14:14,110 --> 00:14:14,120
once they're all glued in place nothing
775
00:14:14,120 --> 00:14:15,990
once they're all glued in place nothing
else can get in there no water is going
776
00:14:15,990 --> 00:14:16,000
else can get in there no water is going
777
00:14:16,000 --> 00:14:18,269
else can get in there no water is going
to get in between that thread and rust
778
00:14:18,269 --> 00:14:18,279
to get in between that thread and rust
779
00:14:18,279 --> 00:14:20,870
to get in between that thread and rust
it no oxidization can take place because
780
00:14:20,870 --> 00:14:20,880
it no oxidization can take place because
781
00:14:20,880 --> 00:14:23,389
it no oxidization can take place because
it's sealed until you're ready to undo
782
00:14:23,389 --> 00:14:23,399
it's sealed until you're ready to undo
783
00:14:23,399 --> 00:14:25,790
it's sealed until you're ready to undo
it and this is nicely breakable whether
784
00:14:25,790 --> 00:14:25,800
it and this is nicely breakable whether
785
00:14:25,800 --> 00:14:27,230
it and this is nicely breakable whether
you whichever of the two products you
786
00:14:27,230 --> 00:14:27,240
you whichever of the two products you
787
00:14:27,240 --> 00:14:29,710
you whichever of the two products you
use you can get a tool on that
788
00:14:29,710 --> 00:14:29,720
use you can get a tool on that
789
00:14:29,720 --> 00:14:31,389
use you can get a tool on that
simple wrench with spanner and you can
790
00:14:31,389 --> 00:14:31,399
simple wrench with spanner and you can
791
00:14:31,399 --> 00:14:33,470
simple wrench with spanner and you can
undo that bolt it will be a resistance
792
00:14:33,470 --> 00:14:33,480
undo that bolt it will be a resistance
793
00:14:33,480 --> 00:14:35,269
undo that bolt it will be a resistance
to it you'll feel it it'll resist right
794
00:14:35,269 --> 00:14:35,279
to it you'll feel it it'll resist right
795
00:14:35,279 --> 00:14:36,710
to it you'll feel it it'll resist right
the way until you get it off then you
796
00:14:36,710 --> 00:14:36,720
the way until you get it off then you
797
00:14:36,720 --> 00:14:38,470
the way until you get it off then you
get that blue stuff you get your brush
798
00:14:38,470 --> 00:14:38,480
get that blue stuff you get your brush
799
00:14:38,480 --> 00:14:39,870
get that blue stuff you get your brush
and you clean the thread up so what
800
00:14:39,870 --> 00:14:39,880
and you clean the thread up so what
801
00:14:39,880 --> 00:14:41,910
and you clean the thread up so what
you're doing is you are almost
802
00:14:41,910 --> 00:14:41,920
you're doing is you are almost
803
00:14:41,920 --> 00:14:43,949
you're doing is you are almost
deliberately corroding the bolt in place
804
00:14:43,949 --> 00:14:43,959
deliberately corroding the bolt in place
805
00:14:43,959 --> 00:14:46,949
deliberately corroding the bolt in place
with a plastic removable protective
806
00:14:46,949 --> 00:14:46,959
with a plastic removable protective
807
00:14:46,959 --> 00:14:48,990
with a plastic removable protective
product that can be removed so that is
808
00:14:48,990 --> 00:14:49,000
product that can be removed so that is
809
00:14:49,000 --> 00:14:50,670
product that can be removed so that is
an antise so normally I think the rule
810
00:14:50,670 --> 00:14:50,680
an antise so normally I think the rule
811
00:14:50,680 --> 00:14:52,590
an antise so normally I think the rule
of thumb is steel to Steel use
812
00:14:52,590 --> 00:14:52,600
of thumb is steel to Steel use
813
00:14:52,600 --> 00:14:55,269
of thumb is steel to Steel use
threadlock on steel to Steel that does
814
00:14:55,269 --> 00:14:55,279
threadlock on steel to Steel that does
815
00:14:55,279 --> 00:14:58,430
threadlock on steel to Steel that does
not get hot use antise on practically
816
00:14:58,430 --> 00:14:58,440
not get hot use antise on practically
817
00:14:58,440 --> 00:15:00,269
not get hot use antise on practically
everything else and you can use grease
818
00:15:00,269 --> 00:15:00,279
everything else and you can use grease
819
00:15:00,279 --> 00:15:01,710
everything else and you can use grease
on stuff but if it gets hot obviously
820
00:15:01,710 --> 00:15:01,720
on stuff but if it gets hot obviously
821
00:15:01,720 --> 00:15:03,110
on stuff but if it gets hot obviously
realize it's going to vaporize and
822
00:15:03,110 --> 00:15:03,120
realize it's going to vaporize and
823
00:15:03,120 --> 00:15:05,670
realize it's going to vaporize and
disappear now look I hope that covers it
824
00:15:05,670 --> 00:15:05,680
disappear now look I hope that covers it
825
00:15:05,680 --> 00:15:07,910
disappear now look I hope that covers it
really it is a little bit of a Dark Art
826
00:15:07,910 --> 00:15:07,920
really it is a little bit of a Dark Art
827
00:15:07,920 --> 00:15:09,430
really it is a little bit of a Dark Art
completely understanding when to use the
828
00:15:09,430 --> 00:15:09,440
completely understanding when to use the
829
00:15:09,440 --> 00:15:11,269
completely understanding when to use the
right thing but an aluminum thread
830
00:15:11,269 --> 00:15:11,279
right thing but an aluminum thread
831
00:15:11,279 --> 00:15:13,509
right thing but an aluminum thread
should never have threadlock in it
832
00:15:13,509 --> 00:15:13,519
should never have threadlock in it
833
00:15:13,519 --> 00:15:14,990
should never have threadlock in it
because it's a little bit delicate if
834
00:15:14,990 --> 00:15:15,000
because it's a little bit delicate if
835
00:15:15,000 --> 00:15:17,350
because it's a little bit delicate if
you start undoing that the grippage that
836
00:15:17,350 --> 00:15:17,360
you start undoing that the grippage that
837
00:15:17,360 --> 00:15:18,550
you start undoing that the grippage that
you're going to get out of this could
838
00:15:18,550 --> 00:15:18,560
you're going to get out of this could
839
00:15:18,560 --> 00:15:20,069
you're going to get out of this could
damage the aluminium thread they're too
840
00:15:20,069 --> 00:15:20,079
damage the aluminium thread they're too
841
00:15:20,079 --> 00:15:21,949
damage the aluminium thread they're too
soft it's a steel to Steel thread for
842
00:15:21,949 --> 00:15:21,959
soft it's a steel to Steel thread for
843
00:15:21,959 --> 00:15:24,310
soft it's a steel to Steel thread for
that and any aluminium to Steel thread
844
00:15:24,310 --> 00:15:24,320
that and any aluminium to Steel thread
845
00:15:24,320 --> 00:15:26,430
that and any aluminium to Steel thread
use antise provide especially if it gets
846
00:15:26,430 --> 00:15:26,440
use antise provide especially if it gets
847
00:15:26,440 --> 00:15:28,309
use antise provide especially if it gets
hot okay I hope that helps gives you an
848
00:15:28,309 --> 00:15:28,319
hot okay I hope that helps gives you an
849
00:15:28,319 --> 00:15:29,910
hot okay I hope that helps gives you an
Insight if you got any questions stick
850
00:15:29,910 --> 00:15:29,920
Insight if you got any questions stick
851
00:15:29,920 --> 00:15:30,870
Insight if you got any questions stick
it in the comments box underneath I'll
852
00:15:30,870 --> 00:15:30,880
it in the comments box underneath I'll
853
00:15:30,880 --> 00:15:32,350
it in the comments box underneath I'll
see what I can answer it okay there you
854
00:15:32,350 --> 00:15:32,360
see what I can answer it okay there you
855
00:15:32,360 --> 00:15:34,550
see what I can answer it okay there you
are little bit more on the simple skills
856
00:15:34,550 --> 00:15:34,560
are little bit more on the simple skills
857
00:15:34,560 --> 00:15:35,790
are little bit more on the simple skills
for you I'm going to keep these coming
858
00:15:35,790 --> 00:15:35,800
for you I'm going to keep these coming
859
00:15:35,800 --> 00:15:37,389
for you I'm going to keep these coming
we got lots more requests I don't know
860
00:15:37,389 --> 00:15:37,399
we got lots more requests I don't know
861
00:15:37,399 --> 00:15:39,030
we got lots more requests I don't know
if they'll be on a table like this quite
862
00:15:39,030 --> 00:15:39,040
if they'll be on a table like this quite
863
00:15:39,040 --> 00:15:40,710
if they'll be on a table like this quite
enjoy this there we are take EAS your
864
00:15:40,710 --> 00:15:40,720
enjoy this there we are take EAS your
865
00:15:40,720 --> 00:15:41,870
enjoy this there we are take EAS your
ride safe thanks for watching see you
866
00:15:41,870 --> 00:15:41,880
ride safe thanks for watching see you
867
00:15:41,880 --> 00:15:44,370
ride safe thanks for watching see you
next
868
00:15:44,370 --> 00:15:44,380
869
00:15:44,380 --> 00:15:48,910
[Music]
870
00:15:48,910 --> 00:15:48,920
[Music]
871
00:15:48,920 --> 00:15:51,550
[Music]
time
872
00:15:51,550 --> 00:15:51,560
time
873
00:15:51,560 --> 00:15:56,829
time
n41 baby that's for me end blow in a
874
00:15:56,829 --> 00:15:56,839
n41 baby that's for me end blow in a
875
00:15:56,839 --> 00:16:00,670
n41 baby that's for me end blow in a
each V one baby that's for me yeah
876
00:16:00,670 --> 00:16:00,680
each V one baby that's for me yeah
877
00:16:00,680 --> 00:16:02,790
each V one baby that's for me yeah
de Devil's
878
00:16:02,790 --> 00:16:02,800
de Devil's
879
00:16:02,800 --> 00:16:06,480
de Devil's
G yeah yeah
880
00:16:06,480 --> 00:16:06,490
G yeah yeah
881
00:16:06,490 --> 00:16:14,950
G yeah yeah
[Music]
882
00:16:14,950 --> 00:16:14,960
883
00:16:14,960 --> 00:16:17,350
[Applause]
884
00:16:17,350 --> 00:16:17,360
[Applause]
885
00:16:17,360 --> 00:16:19,790
[Applause]
yeah
886
00:16:19,790 --> 00:16:19,800
yeah
887
00:16:19,800 --> 00:16:23,800
yeah
Devil's yeah
81026
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