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--captions by vitac--
Www.Vitac.Com
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Captions paid for by
Discovery communications
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Narrator: glass faucets elevate
Indoor plumbing to an art form.
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The glass is hand-crafted in
A range of shapes and patterns
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For visual effect.
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00:01:01,620 --> 00:01:04,517
Metal components
Are fused into the glass
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To deliver one of
The necessities of modern life,
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Running water.
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Glass faucets are about
Both form and function.
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Glass faucets have
A delicate beauty,
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00:01:16,793 --> 00:01:18,827
But they're stronger
Than they look.
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The glass is very thick,
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00:01:21,000 --> 00:01:25,482
Allowing the faucets
To hold up to heavy use.
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00:01:25,482 --> 00:01:29,206
Making a glass faucet starts
With chunks of clear glass.
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A glass worker loads the glass
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00:01:31,655 --> 00:01:35,793
Into an oven
At 2,190 degrees fahrenheit.
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00:01:35,793 --> 00:01:39,206
Another worker selects black
And white billets of glass
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To add stripes and patterns
To the clear glass.
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He preheats them so the glass
Won't shock and fracture
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00:01:46,344 --> 00:01:48,896
When exposed
To higher temperatures.
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With a metal rod,
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00:01:50,310 --> 00:01:52,413
He gathers a clump
Of the clear glass
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From the main oven.
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With the chunk of glass,
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He picks up the preheated
White cylinder,
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00:01:58,586 --> 00:02:02,000
Simultaneously exposing both
To the flames.
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00:02:02,000 --> 00:02:05,068
This process makes the glass
Flexible.
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00:02:05,068 --> 00:02:07,379
Using a curved wood tool,
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00:02:07,379 --> 00:02:10,517
The glass worker gathers
The clear glass at the base
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00:02:10,517 --> 00:02:12,862
And wraps it around
The white billet,
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Encapsulating it.
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00:02:14,827 --> 00:02:19,000
He attaches the other end of
The glass to a second metal rod.
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00:02:19,000 --> 00:02:24,758
This allows the glass to stretch
As he pulls it across the room.
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The glass is now
Over 35 feet long
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00:02:27,482 --> 00:02:29,275
And pencil-thin.
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It starts to cool
And solidify immediately
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00:02:32,103 --> 00:02:33,620
As it's set down.
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00:02:33,620 --> 00:02:37,413
The glass workers tap the glass
Against a piece of metal
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00:02:37,413 --> 00:02:41,931
To break it into
8-inch pieces called canes.
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00:02:41,931 --> 00:02:44,103
They shape another piece
Of clear glass
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00:02:44,103 --> 00:02:48,413
By rolling it on a metal table
Called a marver.
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00:02:48,413 --> 00:02:51,034
The glass worker blows through
The metal rod,
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Causing the glass on the end
To bubble.
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00:02:53,655 --> 00:03:00,310
It will eventually become
The faucet and two handles.
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He adds a layer of black
Molten glass to the bubble.
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00:03:06,448 --> 00:03:07,758
Another glass technician
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00:03:07,758 --> 00:03:11,172
Arranges the striped canes
On a grooved iron plate
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00:03:11,172 --> 00:03:15,448
And heats them with a torch.
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00:03:15,448 --> 00:03:18,793
Meanwhile, a glass worker rolls
The hot glass bubble
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00:03:18,793 --> 00:03:21,689
Onto the canes,
Which stick together.
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00:03:21,689 --> 00:03:23,827
Then it's back into the furnace,
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00:03:23,827 --> 00:03:28,344
And the white-striped canes
Melt into the black bubble.
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Next, the craftsman
Rolls the glass
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00:03:30,931 --> 00:03:33,655
Across the marver repeatedly.
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He pinches the canes at the top,
Closing them around the bubble.
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The glass is reheated
To keep it pliable
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As the craftsman
Continues to form it.
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00:03:43,551 --> 00:03:46,206
The craftsman
Transforms the bubble
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00:03:46,206 --> 00:03:48,793
Into a hollow glass tube
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00:03:48,793 --> 00:03:54,862
Then elongating the tube
To its desired length.
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00:03:54,862 --> 00:03:56,620
Using a pincer-leg tool,
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00:03:56,620 --> 00:03:59,655
He forms the end
Into a round handle shape
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00:03:59,655 --> 00:04:01,827
While another glass worker
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00:04:01,827 --> 00:04:04,517
Applies heat to the glass
With a torch.
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00:04:04,517 --> 00:04:07,413
This keeps the glass pliable.
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00:04:07,413 --> 00:04:11,034
He then creates a hole
For a piece of metal hardware.
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00:04:11,034 --> 00:04:14,413
Then he applies molten glass
To the metal hardware
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00:04:14,413 --> 00:04:18,000
And inserts the hardware
Into the round faucet handle.
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00:04:18,000 --> 00:04:22,482
This cuts the handle free
From the rest of the glass.
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00:04:22,482 --> 00:04:24,172
Using a forming tool,
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00:04:24,172 --> 00:04:29,137
The craftsman refines
The shape of the glass.
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00:04:29,137 --> 00:04:32,827
Next, he preheats a metal mold.
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00:04:32,827 --> 00:04:36,068
This stops the hot glass tube
From fracturing
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00:04:36,068 --> 00:04:40,862
As he bends it around the mold
To shape it into the faucet.
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00:04:40,862 --> 00:04:43,275
Once the faucet has taken shape,
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It's ready to go
Into the annealing oven.
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The glass is placed in the oven
At a low temperature
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00:04:54,310 --> 00:04:56,344
And then cooled.
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00:04:56,344 --> 00:05:01,724
This process removes stresses
And strengthens the glass.
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00:05:01,724 --> 00:05:04,241
Meanwhile,
Using high-pressure water
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00:05:04,241 --> 00:05:06,655
That contains
Fragments of garnet,
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A craftsman cuts
Steel trim rings
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00:05:09,000 --> 00:05:14,379
And a display plate
For the showroom.
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00:05:14,379 --> 00:05:17,620
Next, the craftsman installs
The glass faucet
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On the display plate
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00:05:19,103 --> 00:05:22,172
By threading a nut
To the faucet valve.
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00:05:22,172 --> 00:05:25,586
He installs the trim rings
At the base of the handles
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00:05:25,586 --> 00:05:28,034
And assembles them
To the display plate
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Using the hardware
That's been fused
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To the inside of the glass.
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00:05:33,137 --> 00:05:34,862
The craftsman uses a rag
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00:05:34,862 --> 00:05:38,413
To clean the faucet
Of any fingerprints and smudges.
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Finally, construction
Is complete.
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00:05:41,172 --> 00:05:44,931
This unique glass faucet
Is ready to make a statement.
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Narrator: short fire trucks
Can easily access tight spaces
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Around the scene of a fire.
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That's because they're lighter
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00:06:00,758 --> 00:06:03,275
And can carry more water
And equipment.
99
00:06:03,275 --> 00:06:06,137
However, it's difficult
For smaller fire trucks
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To support the weight
Of long ladders.
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00:06:08,551 --> 00:06:11,000
To compensate,
Manufacturers have built
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Longer ladders
On shorter trucks.
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This 108-foot-long ladder
Can be mounted
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00:06:18,172 --> 00:06:20,827
On a single
Rear-axle fire truck.
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00:06:20,827 --> 00:06:23,655
Typically, a ladder
Longer than 75 feet
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00:06:23,655 --> 00:06:27,241
Requires a tandem-axle truck
To support its weight.
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00:06:27,241 --> 00:06:30,137
The secret to the design
Of this ladder
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00:06:30,137 --> 00:06:33,275
Is that it's lighter,
Stronger, and durable.
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The components are cut
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From sheets and tubes
Of high-strength steel.
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00:06:37,965 --> 00:06:41,620
Using a press brake,
The machinist bends the parts,
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00:06:41,620 --> 00:06:47,413
Verifying the accuracy
Of each bend.
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Once all the components
Are prepped,
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The parts are welded together,
Then smoothed.
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00:06:55,310 --> 00:06:58,068
This welded part
Is the turntable base.
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It rotates the ladder
360 degrees
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00:07:01,965 --> 00:07:06,758
And provides a platform for
The firefighter at the controls.
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00:07:06,758 --> 00:07:08,620
This is the torque box.
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00:07:08,620 --> 00:07:10,965
It supports the aerial pedestal
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00:07:10,965 --> 00:07:14,448
To which both the ladder
And turntable are bolted.
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00:07:14,448 --> 00:07:18,241
To construct the ladder,
Technicians weld tubular rungs
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00:07:18,241 --> 00:07:21,862
To vertical side rails
Called base beams.
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00:07:21,862 --> 00:07:23,655
They reinforce the rungs
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00:07:23,655 --> 00:07:26,379
With diagonal tubes
Called k-braces,
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00:07:26,379 --> 00:07:30,965
Which provide
Lateral structural strength.
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00:07:30,965 --> 00:07:35,620
Welders fuse steel tubes between
The base beam and the handrail
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To provide structural support.
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00:07:39,448 --> 00:07:43,034
Next, an inspector from
An independent testing company
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00:07:43,034 --> 00:07:47,620
Examines the integrity
Of the welding.
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00:07:47,620 --> 00:07:49,965
Once the ladder
Passes inspection,
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00:07:49,965 --> 00:07:52,241
It's put through
A shot-blasting chamber,
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00:07:52,241 --> 00:07:55,689
Which pummels the surface
With steel pellets.
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00:07:55,689 --> 00:07:58,448
This process
Removes metal impurities
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00:07:58,448 --> 00:08:01,137
And preps the surface
For painting.
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00:08:01,137 --> 00:08:03,586
Craftsmen apply
Two coats of primer,
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00:08:03,586 --> 00:08:07,068
One top coat of color,
Then two clear coats of paint,
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00:08:07,068 --> 00:08:12,344
Sanding by hand
Between each application.
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00:08:12,344 --> 00:08:14,965
Next, a three-part
Anti-skid treatment
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00:08:14,965 --> 00:08:17,586
Is applied
To the turntable surface --
140
00:08:17,586 --> 00:08:22,172
First, a coat of glue,
Then an abrasive material,
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00:08:22,172 --> 00:08:29,482
Then a coat of sealant, which is
Baked in an oven for 90 minutes.
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00:08:29,482 --> 00:08:33,379
The ladder rungs are covered
With snap-on non-slip covers
143
00:08:33,379 --> 00:08:36,551
Made of fiberglass-reinforced
Plastic.
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00:08:36,551 --> 00:08:38,448
The ladders are stacked
145
00:08:38,448 --> 00:08:43,068
In four or five
Compact sections.
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00:08:43,068 --> 00:08:44,724
Technicians install a cable
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00:08:44,724 --> 00:08:48,206
That enables the sections
To extend and retract.
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00:08:48,206 --> 00:08:54,793
The cable is attached
To a hydraulic cylinder.
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00:08:54,793 --> 00:08:58,137
Three telescopic sections
Of the aerial waterway
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00:08:58,137 --> 00:08:59,724
Are attached.
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00:08:59,724 --> 00:09:03,413
This tube transfers water
Up to the top of the ladder
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00:09:03,413 --> 00:09:10,758
So when the ladder extends,
So does the waterway.
153
00:09:10,758 --> 00:09:13,206
This valve at the top
Of the waterway
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00:09:13,206 --> 00:09:15,655
Allows firefighters
To hook up a hose
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00:09:15,655 --> 00:09:18,379
To bring inside the building.
156
00:09:18,379 --> 00:09:22,000
The water monitor,
Driven by an electric motor,
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00:09:22,000 --> 00:09:24,620
Directs the water flow
In all directions
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00:09:24,620 --> 00:09:29,689
When the aerial waterway
Is being used without a hose.
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00:09:29,689 --> 00:09:33,413
Next, the machinists install
The turntable controls,
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00:09:33,413 --> 00:09:35,482
Which run the electrical power
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00:09:35,482 --> 00:09:38,413
And the hydraulics
That move the ladder.
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00:09:38,413 --> 00:09:41,275
Then they attach the ladder
To the aerial pedestal
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With a huge pin.
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00:09:46,206 --> 00:09:48,724
A large bolt is inserted,
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00:09:48,724 --> 00:09:56,000
Which prevents the pin
From sliding out of place.
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00:09:56,000 --> 00:09:58,965
This is what's referred to
As a rear-mount ladder,
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00:09:58,965 --> 00:10:02,827
Meaning it's installed
On the back of the fire truck.
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00:10:02,827 --> 00:10:05,724
When a ladder is installed
Behind the cab,
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00:10:05,724 --> 00:10:09,379
It's called a mid-mount ladder.
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00:10:09,379 --> 00:10:12,275
Assembly of the ladder
Is almost complete.
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00:10:12,275 --> 00:10:17,068
Technicians bolt the turntable
To the truck,
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00:10:17,068 --> 00:10:21,344
Then hook up the hydraulic line
That operates the ladder.
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00:10:27,448 --> 00:10:29,344
They install a swivel mechanism
174
00:10:29,344 --> 00:10:31,586
Which enables
The aerial waterway
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00:10:31,586 --> 00:10:34,068
To move with the ladder
And turntable.
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00:10:42,241 --> 00:10:44,241
Before it leaves the factory,
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00:10:44,241 --> 00:10:46,896
The ladder is put
Through a test run
178
00:10:46,896 --> 00:10:50,931
To ensure it meets
The highest standards.
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00:11:06,724 --> 00:11:10,448
Narrator: an antique clock can
Only be repaired by an expert.
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00:11:10,448 --> 00:11:13,896
This person would have either
Apprenticed under a clockmaker
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00:11:13,896 --> 00:11:17,758
Or studied timekeeping
At a horology school.
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00:11:17,758 --> 00:11:20,000
In today's digital landscape,
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00:11:20,000 --> 00:11:26,655
Horologists are becoming
A vanishing breed.
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00:11:26,655 --> 00:11:30,172
When your grandfather clock
Is struggling through old age,
185
00:11:30,172 --> 00:11:34,034
It's time for a visit
To the master clockmaker.
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00:11:34,034 --> 00:11:36,827
First step -- the dial
And the mechanism
187
00:11:36,827 --> 00:11:39,689
Are placed on a stand
For observation.
188
00:11:43,172 --> 00:11:47,172
Two horologists inspect
The clock for worn-down parts.
189
00:11:47,172 --> 00:11:49,965
The mechanism contains
Two gear trains --
190
00:11:49,965 --> 00:11:51,551
One for keeping time,
191
00:11:51,551 --> 00:11:53,862
And another to regulate
The hammer
192
00:11:53,862 --> 00:11:56,655
That strikes a bell
On the hour.
193
00:11:56,655 --> 00:11:59,000
After the paperwork
Is completed,
194
00:11:59,000 --> 00:12:01,758
The clockmaker gets to work.
195
00:12:01,758 --> 00:12:03,655
He detaches the hands and dial
196
00:12:03,655 --> 00:12:05,896
To gain access
To the gear trains
197
00:12:05,896 --> 00:12:08,172
And their linked components.
198
00:12:08,172 --> 00:12:11,310
He removes tiny screws
To release the hands.
199
00:12:11,310 --> 00:12:15,379
Then he removes pins that
Release the dial's four feet,
200
00:12:15,379 --> 00:12:18,551
Located within
Holes in the front plate.
201
00:12:18,551 --> 00:12:20,862
An artist restores the dial.
202
00:12:20,862 --> 00:12:24,379
The clockmaker unscrews
The cast-iron bell
203
00:12:24,379 --> 00:12:27,586
And begins disassembling
The assortment of parts,
204
00:12:27,586 --> 00:12:29,310
Starting with the pallets.
205
00:12:29,310 --> 00:12:33,689
The pallets receive power from
The clock's suspended weights
206
00:12:33,689 --> 00:12:36,310
And connect with
The timekeeping gear train,
207
00:12:36,310 --> 00:12:38,862
Which moves the pendulum.
208
00:12:38,862 --> 00:12:42,034
The shafts of the hour,
Minute, and second wheels
209
00:12:42,034 --> 00:12:44,344
Converge at the center
Of the largest wheel
210
00:12:44,344 --> 00:12:46,896
On the front plate
Of the mechanism.
211
00:12:46,896 --> 00:12:50,931
The clockmaker disassembles
These and other components.
212
00:12:50,931 --> 00:12:54,517
He lifts off the front plate
To strip down the inner parts.
213
00:12:54,517 --> 00:12:56,689
The cables suspending
The weights
214
00:12:56,689 --> 00:12:58,413
Are made of woven brass.
215
00:12:58,413 --> 00:13:01,448
The craftsman cleans
All the metal parts
216
00:13:01,448 --> 00:13:03,241
In an ultrasonic machine.
217
00:13:03,241 --> 00:13:05,379
Its high-frequency sound waves
218
00:13:05,379 --> 00:13:09,551
Force the chemical solution
Into all the nooks and crannies.
219
00:13:09,551 --> 00:13:14,862
He rinses the parts and dries
Them in jeweler's sawdust.
220
00:13:14,862 --> 00:13:17,896
Each part is inspected
Under a magnifying glass
221
00:13:17,896 --> 00:13:20,896
To assess their condition.
222
00:13:20,896 --> 00:13:22,103
If a part is worn,
223
00:13:22,103 --> 00:13:24,344
The craftsman
Tries to restore it
224
00:13:24,344 --> 00:13:26,068
To its original shape.
225
00:13:26,068 --> 00:13:29,931
If it's too badly worn,
He has to make a replacement
226
00:13:29,931 --> 00:13:33,620
With a computer-guided
Milling machine.
227
00:13:33,620 --> 00:13:36,689
The pin at the end of a gear
Is called a pivot.
228
00:13:36,689 --> 00:13:40,034
After measuring its diameter
With a digital caliper,
229
00:13:40,034 --> 00:13:43,103
The clockmaker sets the disk
Of a filing machine
230
00:13:43,103 --> 00:13:45,655
To its corresponding
Measurement.
231
00:13:45,655 --> 00:13:48,344
He places the pivot
Between the disk
232
00:13:48,344 --> 00:13:54,724
And a fine-grinding disk,
Filing away any rough surfaces.
233
00:13:57,586 --> 00:14:03,758
Next, the craftsman works
On the rear plate,
234
00:14:03,758 --> 00:14:06,620
Hammering in brass sleeves
Called bushings
235
00:14:06,620 --> 00:14:08,551
Into multiple gear holes.
236
00:14:08,551 --> 00:14:11,931
He widens the bushing just
Enough to insert the pivot
237
00:14:11,931 --> 00:14:15,413
And smooths out the hole.
238
00:14:15,413 --> 00:14:19,103
He inserts one end of the pivot
In the rear-plate bushing,
239
00:14:19,103 --> 00:14:21,827
The other end
In the front-plate bushing,
240
00:14:21,827 --> 00:14:25,551
And checks that
The gear rotates smoothly.
241
00:14:25,551 --> 00:14:31,448
He does the same
For each pivot hole.
242
00:14:31,448 --> 00:14:33,586
Then, all the parts are cleaned,
243
00:14:33,586 --> 00:14:36,034
And the mechanism
Is reassembled.
244
00:14:36,034 --> 00:14:39,965
This gear on the front plate
Is the hour wheel.
245
00:14:44,655 --> 00:14:47,310
The clockmaker attaches
The hour rack,
246
00:14:47,310 --> 00:14:49,620
Which connects
To the gear train.
247
00:14:49,620 --> 00:14:51,034
This system regulates
248
00:14:51,034 --> 00:14:53,586
The striking of the bell
On the hour.
249
00:14:53,586 --> 00:14:56,517
Once the mechanism
Is reassembled,
250
00:14:56,517 --> 00:15:01,965
The horologist attaches the dial
To the front plate.
251
00:15:01,965 --> 00:15:05,379
The dial of this clock
Required no restoration.
252
00:15:05,379 --> 00:15:11,482
Even the original steel hands
Are still in good condition.
253
00:15:11,482 --> 00:15:16,068
When hands are in bad shape,
The clockmaker creates replicas.
254
00:15:16,068 --> 00:15:17,413
When hands are missing,
255
00:15:17,413 --> 00:15:21,689
He makes new ones
In the style of the period.
256
00:15:21,689 --> 00:15:23,517
During the entire reassembly,
257
00:15:23,517 --> 00:15:25,241
The clockmaker wears gloves
258
00:15:25,241 --> 00:15:27,965
To protect the steel
And brass components
259
00:15:27,965 --> 00:15:32,379
From the natural oils
In his hands.
260
00:15:32,379 --> 00:15:34,206
Restoring an antique clock
261
00:15:34,206 --> 00:15:38,137
Can take several weeks
Of meticulous work.
262
00:15:38,137 --> 00:15:39,448
When it's done,
263
00:15:39,448 --> 00:15:42,482
The clockmaker mounts the clock
Back on the stand,
264
00:15:42,482 --> 00:15:45,655
Connecting the weights and
Pendulum, and runs a test.
265
00:15:48,241 --> 00:15:51,724
The job is complete
When the clock keeps time
266
00:15:51,724 --> 00:15:54,827
And the hammer strikes the bell
To announce the hour.
267
00:16:06,620 --> 00:16:08,344
Narrator:
Cooking over an open flame
268
00:16:08,344 --> 00:16:10,793
Calls for
A serious set of tools.
269
00:16:10,793 --> 00:16:12,896
Barbecue utensils are durable
270
00:16:12,896 --> 00:16:15,206
And designed
To withstand the heat.
271
00:16:15,206 --> 00:16:17,758
Built longer than
Regular kitchen utensils,
272
00:16:17,758 --> 00:16:19,413
These tools enable the chef
273
00:16:19,413 --> 00:16:21,862
To keep an arm's distance
From the flame,
274
00:16:21,862 --> 00:16:27,448
Making barbecuing a safe
And gratifying experience.
275
00:16:27,448 --> 00:16:31,137
When barbecuing, it's important
To go big on tools.
276
00:16:31,137 --> 00:16:33,103
These substantial utensils
277
00:16:33,103 --> 00:16:35,655
Will hold up to
The intensity of the flame
278
00:16:35,655 --> 00:16:39,241
While also offering
Precision and control.
279
00:16:39,241 --> 00:16:41,275
Making barbecue utensils
280
00:16:41,275 --> 00:16:45,482
Starts with a sheet of
High-carbon stainless steel.
281
00:16:45,482 --> 00:16:51,137
A laser cuts out several parts,
Creating turner blades.
282
00:16:51,137 --> 00:16:52,965
Turner blades are broad,
283
00:16:52,965 --> 00:16:55,965
Enabling the user
To flip burgers and fillets
284
00:16:55,965 --> 00:16:58,000
Without breaking them.
285
00:16:58,000 --> 00:17:02,103
They also have slots for
Draining grease and juices.
286
00:17:02,103 --> 00:17:07,172
A technician extracts
The blades from the matrix
287
00:17:07,172 --> 00:17:14,206
And punches out
The pre-cut drainage slots.
288
00:17:14,206 --> 00:17:16,965
The turner blades
Are placed on a rack
289
00:17:16,965 --> 00:17:23,275
Which lowers the blades
Between two coarse rollers.
290
00:17:23,275 --> 00:17:26,793
An operator applies polishing
Compound to the rollers.
291
00:17:26,793 --> 00:17:28,344
As the rollers turn,
292
00:17:28,344 --> 00:17:32,344
The friction rubs off stamped
Information from the steel mill
293
00:17:32,344 --> 00:17:35,896
And other blemishes.
294
00:17:35,896 --> 00:17:41,034
Technicians buff the blades
To a smooth, matte texture.
295
00:17:41,034 --> 00:17:44,379
This gives the blades
A consistent polished finish.
296
00:17:49,379 --> 00:17:52,620
Next, the blade is clamped
To a special carriage
297
00:17:52,620 --> 00:17:54,827
Moving the blade back and forth
298
00:17:54,827 --> 00:17:57,931
As a grinding wheel carves
A thin beveled edge.
299
00:17:57,931 --> 00:18:00,413
The beveled edge
Will make it easier
300
00:18:00,413 --> 00:18:04,896
To lift meat off the grill.
301
00:18:04,896 --> 00:18:08,586
An operator clamps
The turner blade in a fixture.
302
00:18:08,586 --> 00:18:12,931
A hydraulic press
Bends the neck of the blade.
303
00:18:12,931 --> 00:18:15,344
High-grade walnut
Is the material used
304
00:18:15,344 --> 00:18:17,655
To make the utensil handles.
305
00:18:17,655 --> 00:18:19,379
It's a hard, durable wood
306
00:18:19,379 --> 00:18:23,068
With a grain that adds
Visual interest.
307
00:18:23,068 --> 00:18:24,586
Using a bandsaw,
308
00:18:24,586 --> 00:18:26,758
The operator carves
The walnut block
309
00:18:26,758 --> 00:18:28,620
Into smaller chunks.
310
00:18:28,620 --> 00:18:31,896
Each one will become
A handle blank.
311
00:18:31,896 --> 00:18:34,275
He places the blanks
On a conveyer
312
00:18:34,275 --> 00:18:37,931
That takes them through
A spinning cutting head.
313
00:18:37,931 --> 00:18:41,724
The cutting head carves a taper
Into the end of the handle
314
00:18:41,724 --> 00:18:46,965
That will hold the blade tang.
315
00:18:46,965 --> 00:18:48,689
To refine the shape,
316
00:18:48,689 --> 00:18:53,103
A craftsman locks two handle
Blanks on a revolving table.
317
00:18:53,103 --> 00:18:55,413
Moving the handles
Against a router
318
00:18:55,413 --> 00:19:00,275
Can make the handles smoother
For gripping.
319
00:19:00,275 --> 00:19:06,482
It's quite a transformation.
320
00:19:06,482 --> 00:19:10,172
Multiple drill heads
Carve rivet holes on one side.
321
00:19:10,172 --> 00:19:12,551
The holes have
A graduated profile
322
00:19:12,551 --> 00:19:16,172
To allow the rivets
To sit flush to the wood.
323
00:19:16,172 --> 00:19:18,344
The craftsman drills
Corresponding holes
324
00:19:18,344 --> 00:19:20,379
On the other side.
325
00:19:20,379 --> 00:19:23,034
Using a circular saw,
He cuts a slot
326
00:19:23,034 --> 00:19:25,620
For the tang -- or stem --
Of the barbecue utensil
327
00:19:25,620 --> 00:19:29,206
To be inserted
328
00:19:29,206 --> 00:19:30,896
And drills one last hole
329
00:19:30,896 --> 00:19:35,206
For a piece of rawhide
That will hang up the tool.
330
00:19:38,206 --> 00:19:40,689
Next, the craftsman
Inserts the tang
331
00:19:40,689 --> 00:19:42,413
Into the slot in the handle
332
00:19:42,413 --> 00:19:45,620
And slides a post
Through one of the holes.
333
00:19:45,620 --> 00:19:46,827
This positions it
334
00:19:46,827 --> 00:19:53,379
For a female rivet to be
Installed from the front.
335
00:19:53,379 --> 00:19:56,586
Male rivets are installed
On the other side.
336
00:19:56,586 --> 00:19:58,551
This completes
The riveting steps
337
00:19:58,551 --> 00:20:02,206
And secures the handle
To the turner blade.
338
00:20:05,862 --> 00:20:07,758
Using a coarse sanding belt,
339
00:20:07,758 --> 00:20:10,793
The craftsman smooths
The rivets to the wood
340
00:20:10,793 --> 00:20:18,068
And sands off the metal tang
At the protruding sides.
341
00:20:18,068 --> 00:20:21,689
Another technician rubs mineral
Oil into the wooden handle
342
00:20:21,689 --> 00:20:25,000
To give it luster
And enhance the grain.
343
00:20:25,000 --> 00:20:27,965
A mixture of ground corn
And mineral spirits
344
00:20:27,965 --> 00:20:31,413
Serves as
A gentle abrasive cleaner.
345
00:20:31,413 --> 00:20:33,551
The technician
Dries off the blade
346
00:20:33,551 --> 00:20:37,206
By plunging it
Into just the ground corn.
347
00:20:37,206 --> 00:20:38,896
With a compressed air gun,
348
00:20:38,896 --> 00:20:42,103
She blasts off
The corn-cob remnants,
349
00:20:42,103 --> 00:20:44,551
Examines the tool for defects,
350
00:20:44,551 --> 00:20:49,655
And props up the utensil
Under an engraving laser.
351
00:20:49,655 --> 00:20:55,206
The laser etches the company
Name into the metal.
352
00:20:55,206 --> 00:20:58,275
This barbecue turner
Will become part of a set
353
00:20:58,275 --> 00:21:01,724
Which will act as an extension
Of the chef's hands,
354
00:21:01,724 --> 00:21:04,620
Making it possible
To cook over an open flame
355
00:21:04,620 --> 00:21:06,448
Without getting burned.
28424
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