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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:
Precast concrete walls
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Are made in a controlled plant
Environment,
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Where weather can't interfere
With the curing process.
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They're cast with insulation
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Before they arrive
At the construction site.
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All that's needed is a crane
To do the heavy lifting.
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Precast concrete walls
Have a tough exterior
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That holds up to all kinds
Of weather,
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But making these structural wall
Panels is an inside job.
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By manufacturing them indoors,
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They can better prepare them
For the outdoors.
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Production starts with a mix
Of crushed rock and sand.
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This collection
Is limestone-based.
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The mineral mix can be altered
For different strengths
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And finishes.
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A conveyor delivers
The collection of minerals
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To a huge mixer.
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They inject cement, water,
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And additives to improve
The flow of the concrete,
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Accelerate the cure,
And give it a brownish hue.
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Beaters whip the ingredients
Into a thick, gritty mix.
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They cast some of the concrete
Into cylindrical shapes
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For testing.
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After a one-day cure, they
Crush the cylinders with a ram.
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The amount of force
It takes to crush the cylinders
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00:02:14,172 --> 00:02:16,827
Is a measure of the concrete
Batch's strength.
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Before they cast the wall,
A crew
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Arranges giant foam letters
To make an imprint in the mold.
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They position the letters in
The center of the casting form
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And secure them with silicone.
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A release agent is sprayed onto
The casting form and letters.
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00:02:51,275 --> 00:02:56,586
High-strength steel cables
Are strung throughout the form.
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With a hydraulic device,
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They pull each cable
To a specific tension.
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00:03:05,172 --> 00:03:07,827
Then, they bend a rebar rod
Into a loop.
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The rebar loops are linked,
Creating long cages.
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They place one cage
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At the top of the form
And one at the bottom.
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Then, the team inserts a sheet
Of welded wire mesh.
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It's been cut to fit the size
Of the form.
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They're now ready
To pour concrete.
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A truck dispenses the concrete
Directly into the form.
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The concrete flows
Around the steel reinforcement.
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The steel will keep
The wall strong
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When the concrete expands
And contracts
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As the weather changes.
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The team spreads the concrete
And levels
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It with a tool called a screed.
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00:04:17,689 --> 00:04:19,655
This first layer
Of the wall panel
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Is essentially one side
Of a sandwich.
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It will be the exterior part
Of the wall.
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At the center of the sandwich
Is this rigid foam insulation.
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It's studded with protrusions
To secure to the concrete.
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More steel-reinforced concrete
Completes the wall sandwich.
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This final layer will face
The inside of the building...
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...So the crew takes extra care
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To ensure that there are no pits
Or crevices.
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After about 12 hours, the wall
Is solid enough to be handled.
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They take it outdoors,
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Where a worker
Sandblasts a small section
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Of the exterior side.
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This removes the surface cement
To expose the aggregate,
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Creating a decorative band
Next to the embossed lettering.
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After a three-day cure,
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The precast concrete wall is
Ready for the construction site.
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A crew guides it onto footings.
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They align its design
To the one on the next wall.
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When the two walls
Match up perfectly,
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They bolt it down.
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The concrete
Continues to cure over time,
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So these precast walls will
Stand strong for many years.
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Narrator: would you like to
Print a toy, a circuit board,
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Or a replica
Of a famous work of art?
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Thanks to the development
Of the 3d printer,
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What used to be the stuff
Of science fiction
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Is now a reality.
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These objects were produced
By 3d printers, proof that,
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For printing technology,
The world is no longer flat.
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To make 3d printers,
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This company
Actually uses 3d printers.
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A technician starts by loading
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A reel of plastic filament
Into a printer.
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The printer melts the plastic
Into a thick goo.
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The 3d printer
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Layers the plastic, following
A pattern from a digital file.
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This particular part
Is the extruder body.
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In real time, it takes about an
Hour to print the extruder.
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Even complex patterns,
Like this octopus,
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Can be made with a 3d printer.
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40 different components
Of this 3d printer
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Are produced using 3d printers.
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At this facility, 135 printers
Run nonstop, producing gears,
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Brackets,
And mechanism housings.
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This technology
Is truly self-replicating.
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Now, a worker drills a hole
In the extruder body.
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It serves as a conduit
For the plastic filament
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During printing.
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He bolts a gear
To the extruder body.
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He screws the motor
To the extruder body
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And installs a second,
Smaller gear on the drive shaft.
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A part called the hot end
Is installed next.
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It contains a heater for melting
The plastic filament.
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The worker attaches the hot end
To a 3d-printed plastic mount
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And extruder.
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This completes
The 3d printer tool head.
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Another worker feeds glass
To rubber rollers.
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The rollers gently apply
Adhesive-backed polyester film
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To the glass.
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The glass will serve
As the printer bed,
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And the film will protect
It from scratches during use.
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To build
The printer's aluminum frame,
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The worker secures the joints
With 3d-printed plastic parts.
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He installs two rods
Horizontally.
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They'll serve as rails
For the printer tool head
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To move across.
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He clips the tool head
To the rails.
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Then, he loops a rubber belt
Around the motor
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On the side of the frame
And links it to the tool head.
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The belt will drive the tool
Head along the carriage.
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00:09:03,000 --> 00:09:04,931
He confirms the tension is good
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00:09:04,931 --> 00:09:09,034
And that the tool head
Moves freely.
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00:09:09,034 --> 00:09:11,965
Next, he attaches the print bed
And its sliding support
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00:09:11,965 --> 00:09:14,241
Structure
To the base of the frame.
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00:09:21,965 --> 00:09:24,068
He connects a cord
To the power supply
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00:09:24,068 --> 00:09:25,793
And links it to the tool head.
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It will power both the motor
And the hot end.
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00:09:34,206 --> 00:09:36,000
He clips the glass
To the print bed
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00:09:36,000 --> 00:09:38,379
And tightens the clips
With screws.
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He connects the print bed
To the electronics
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00:09:42,689 --> 00:09:45,034
And confirms
That it slides freely.
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In the testing department,
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A technician pushes the end
Of a plastic filament reel
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Into a drilled channel
In the tool head.
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00:10:00,517 --> 00:10:04,379
He snaps a retainer
Around the feed point.
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00:10:04,379 --> 00:10:07,482
Now, he is ready
To activate the 3d printer.
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00:10:13,896 --> 00:10:16,586
He prints a test pattern
To confirm that the printer bed
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00:10:16,586 --> 00:10:19,827
Is level and the tool head
Prints consistently.
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00:10:23,896 --> 00:10:26,655
For two-tone printing,
They use two filament reels
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That feed into a double extruder
Tool head.
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The tool head layers the
Plastic, one color at a time.
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This process
Takes about an hour,
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00:10:43,793 --> 00:10:45,137
But that's not too long
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00:10:45,137 --> 00:10:48,310
When you consider
That it's printing a 3d object.
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Talk about generating
Solid results.
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Narrator:
Tower cranes can be found at
Most large construction sites,
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But they're usually secured
In a concrete slab
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00:11:13,586 --> 00:11:15,793
That can take days to set up.
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00:11:15,793 --> 00:11:18,206
If you need a crane
For some quick maintenance work,
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00:11:18,206 --> 00:11:20,034
A truck-mounted
Telescopic crane
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Might be a better solution.
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00:11:26,758 --> 00:11:30,517
Telescopic cranes can support
Loads of up to 6 tons
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00:11:30,517 --> 00:11:34,655
And lift objects over 30 feet
In the air.
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00:11:34,655 --> 00:11:37,241
The steel cable
Or wire rope winds
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00:11:37,241 --> 00:11:41,482
And unwinds
On a hydraulic winch.
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00:11:41,482 --> 00:11:45,275
The crane operator can extend
Or retract the boom extensions
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00:11:45,275 --> 00:11:48,379
And adjust the angle
Of the main boom.
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00:11:48,379 --> 00:11:50,413
Stowing the crane
In the travel position
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00:11:50,413 --> 00:11:53,413
Takes just a few minutes.
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Assembly begins
When a carbon steel sheet
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Is loaded
Into a cnc laser cutter.
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00:11:58,310 --> 00:12:01,068
A high-energy light beam
Cuts through the steel plate
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To make several parts
Of the crane assembly.
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A computer program
Maximizes the number
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Of pieces cut
Out of a single sheet of steel.
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00:12:13,517 --> 00:12:16,689
A welder places parts
On a position fixture.
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00:12:23,724 --> 00:12:27,068
Then, a cnc weld robot bonds
The side plates
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To the winch mounting plate
And base plate.
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00:12:33,586 --> 00:12:37,172
The welded crane mast
Goes to the machining center.
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00:12:37,172 --> 00:12:41,517
A machinist positions it
On the horizontal mill jig.
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00:12:41,517 --> 00:12:43,034
The cnc mill drills
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00:12:43,034 --> 00:12:46,379
Holes around the base plate
With a carbide drill bit
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00:12:46,379 --> 00:12:50,413
And sprays coolant to prevent
The piece from overheating.
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Then, the machine levels
The surface under the base plate
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With an end mill to fit it
To the crane mast bearing.
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00:13:01,655 --> 00:13:05,655
Another worker bends tubes
With a hydraulic press brake.
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00:13:05,655 --> 00:13:07,137
He makes boom segments
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00:13:07,137 --> 00:13:11,448
By forming high-strength carbon
Steel plates into open c shapes.
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00:13:15,275 --> 00:13:17,965
Grounded electrostatic paint
Racks carry the parts
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Into the painting department.
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A worker applies a coating
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00:13:27,206 --> 00:13:30,310
Of anti-rust, low-friction
Electrostatic paint.
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00:13:30,310 --> 00:13:34,379
The paint eases the movement
Of the crane parts.
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00:13:34,379 --> 00:13:37,034
As the boom extensions
Come out of the paint shop,
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00:13:37,034 --> 00:13:40,620
The painted mast is ready to go
To the assembly department.
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00:13:43,379 --> 00:13:48,137
A worker positions the mast
On the base bearing assembly.
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00:13:48,137 --> 00:13:50,034
He attaches the mast
To the bearing
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00:13:50,034 --> 00:13:53,551
With high-strength steel bolts
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00:13:53,551 --> 00:13:57,310
And uses a pneumatic torque
Wrench to tighten the bolts.
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00:13:57,310 --> 00:14:00,862
These bolts bear most
Of the load of the crane.
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00:14:07,103 --> 00:14:09,482
A worker positions the winch
On the mount plate
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00:14:09,482 --> 00:14:11,310
And tightens the bolts.
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00:14:13,379 --> 00:14:15,482
He rotates the mast
To check its movement
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00:14:15,482 --> 00:14:18,448
On the base bearing.
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00:14:18,448 --> 00:14:23,241
He inserts a bushing
And fits it with an arbor.
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00:14:23,241 --> 00:14:24,655
He applies lubricant
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00:14:24,655 --> 00:14:28,517
Inside the bushing before he
Brings in the main cylinder.
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00:14:28,517 --> 00:14:31,655
The worker positions the
Cylinder between the side plates
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00:14:31,655 --> 00:14:34,172
And pins it to the mast.
201
00:14:34,172 --> 00:14:36,551
The pin allows the cylinder
To move vertically
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00:14:36,551 --> 00:14:38,241
When elevating the boom.
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00:14:40,413 --> 00:14:44,586
Hydraulic actuators are now
Installed inside the mast.
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00:14:44,586 --> 00:14:48,344
The actuators direct oil flow
To the cylinders and motors,
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00:14:48,344 --> 00:14:51,758
Controlling the movement
Of the crane.
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00:14:51,758 --> 00:14:56,517
A worker installs the boom
Extensions into the main boom.
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00:14:56,517 --> 00:15:00,000
He pushes them all the way in
Before assembling the main boom
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00:15:00,000 --> 00:15:02,448
To the crane base.
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00:15:02,448 --> 00:15:07,586
The main boom fits right
Between the mast side plates.
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00:15:07,586 --> 00:15:11,206
Workers insert a pin to connect
The mast to the main boom.
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00:15:11,206 --> 00:15:14,137
They gently tap it in place
With a soft mallet
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00:15:14,137 --> 00:15:16,793
And bolt it
On with a pneumatic wrench.
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00:15:22,758 --> 00:15:25,448
A worker threads the wire rope
Along the boom
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00:15:25,448 --> 00:15:29,586
And around the top pulley,
Then pulls the cable down
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00:15:29,586 --> 00:15:32,931
And runs it
Through the snatch block.
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00:15:32,931 --> 00:15:35,448
He closes a safety pin
On the snatch block
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00:15:35,448 --> 00:15:39,034
And pins the eye of the cable
Under the top pulley.
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00:15:39,034 --> 00:15:41,000
Another worker
Activates the winch motor
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00:15:41,000 --> 00:15:44,137
To roll the cable in.
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00:15:44,137 --> 00:15:48,000
The main cylinder elevates the
Crane into operating position.
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00:15:54,034 --> 00:15:56,517
The extension cylinder
Extends the boom,
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00:15:56,517 --> 00:15:58,965
And stabilizers support the back
Of the truck
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00:15:58,965 --> 00:16:01,344
For safe operation of the crane.
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00:16:15,206 --> 00:16:17,137
Narrator: in a world lit
By incandescent,
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00:16:17,137 --> 00:16:20,413
Fluorescent, halogen,
And l.E.D.S,
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00:16:20,413 --> 00:16:22,517
There are some people
Who still like their lighting
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00:16:22,517 --> 00:16:25,172
The old-fashioned way.
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00:16:25,172 --> 00:16:29,137
Nothing quite matches the warm
Glow of a kerosene lamp.
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00:16:38,448 --> 00:16:41,620
Kerosene lamps date back
Centuries.
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00:16:41,620 --> 00:16:46,034
They're fueled by kerosene,
With a wick as the light source.
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00:16:46,034 --> 00:16:47,034
To light the lamp,
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00:16:47,034 --> 00:16:48,965
You remove the glass chimney,
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00:16:48,965 --> 00:16:51,896
Light the wick, then turn a key
Attached to the burner
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00:16:51,896 --> 00:16:54,551
To raise or lower the wick.
235
00:16:54,551 --> 00:16:58,344
The height of the wick
Adjusts the height of the flame.
236
00:16:58,344 --> 00:17:01,172
This burner's components
Are made of brass.
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00:17:01,172 --> 00:17:04,551
Many of them are stamped
By a press.
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00:17:04,551 --> 00:17:08,758
The press rams the lubricated
Brass sheet against the die,
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00:17:08,758 --> 00:17:11,275
Forming the metal
To the required shape.
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00:17:13,655 --> 00:17:17,172
The component passes
Through a second stamping press,
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00:17:17,172 --> 00:17:20,413
This time receiving
Five successive strikes.
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00:17:23,758 --> 00:17:27,551
This component is the midsection
Of the burner's gallery,
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00:17:27,551 --> 00:17:28,931
The ornate support fixture
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00:17:28,931 --> 00:17:32,862
That holds the glass chimney
Over the flame.
245
00:17:32,862 --> 00:17:35,931
After the component passes
Through the first two presses,
246
00:17:35,931 --> 00:17:38,724
Workers
Mount it on a third press.
247
00:17:38,724 --> 00:17:41,620
This one punches ventilation
Holes around the perimeter,
248
00:17:41,620 --> 00:17:45,137
Allowing air to feed the flame.
249
00:17:45,137 --> 00:17:47,275
Workers mount the gallery's
Bottom section
250
00:17:47,275 --> 00:17:49,620
Onto another punch press.
251
00:17:49,620 --> 00:17:54,724
It cuts an intricate design
Along the perimeter.
252
00:17:54,724 --> 00:17:56,344
This machine cuts out the bottom
253
00:17:56,344 --> 00:17:59,448
So the part can fit around
The burner mechanism.
254
00:18:05,379 --> 00:18:07,896
The next machine
Carves threads into it.
255
00:18:07,896 --> 00:18:10,206
The threads enable the gallery
To screw
256
00:18:10,206 --> 00:18:12,551
Onto the burner mechanism.
257
00:18:16,275 --> 00:18:19,517
Now it's time to assemble
The gallery sections.
258
00:18:24,793 --> 00:18:27,862
It has grips to hold the bottom
Of the chimney.
259
00:18:27,862 --> 00:18:31,758
Next, they fasten the bottom
Section to the middle section.
260
00:18:31,758 --> 00:18:34,275
This method of joining parts
By compressing one
261
00:18:34,275 --> 00:18:36,931
Against the other is known
As a press fit.
262
00:18:39,413 --> 00:18:41,655
They also stamp
The brass adjustment key
263
00:18:41,655 --> 00:18:44,103
That raises and lowers the wick.
264
00:18:44,103 --> 00:18:46,517
The die stamps
The manufacturer's name
265
00:18:46,517 --> 00:18:48,551
And cuts teeth
Along the perimeter,
266
00:18:48,551 --> 00:18:50,896
Making the key easier to grip.
267
00:18:53,482 --> 00:18:55,379
To build the burner mechanism,
268
00:18:55,379 --> 00:18:57,655
They solder a notch plate,
Called a shutter,
269
00:18:57,655 --> 00:19:00,586
To a component
They refer to as the candle.
270
00:19:00,586 --> 00:19:04,689
It's called the candle because
The wick will run through it.
271
00:19:04,689 --> 00:19:07,931
They attach the adjustment key
To a pair of gears...
272
00:19:12,344 --> 00:19:14,482
...And solder
That to the shutter.
273
00:19:18,448 --> 00:19:21,896
They turn the key to make sure
The gears rotate freely.
274
00:19:24,344 --> 00:19:26,896
They place a base
Into an assembly tool
275
00:19:26,896 --> 00:19:30,344
And insert the candle containing
The adjustment key assembly.
276
00:19:34,034 --> 00:19:36,758
Then,
They solder on a wick guide.
277
00:19:41,206 --> 00:19:44,931
They check the gears again
To make sure they rotate freely.
278
00:19:47,206 --> 00:19:49,413
The burner mechanism
Is finished.
279
00:19:49,413 --> 00:19:51,793
Now, they dip it
Into a chemical degreaser
280
00:19:51,793 --> 00:19:54,896
To remove any lubricant
Or soldering residue.
281
00:19:58,103 --> 00:20:03,586
Next, they submerge it in a vat
Of acids to brighten the brass.
282
00:20:10,103 --> 00:20:12,931
Then, they rinse it
In water three times.
283
00:20:19,241 --> 00:20:22,206
Now, they assemble all
Of the burner parts.
284
00:20:22,206 --> 00:20:23,551
They insert a cotton wick
285
00:20:23,551 --> 00:20:25,931
Into the guide
At the bottom of the mechanism
286
00:20:25,931 --> 00:20:28,586
And turn the key to feed it up
Through the burner.
287
00:20:32,137 --> 00:20:35,482
They screw on the gallery
And complete the burner
288
00:20:35,482 --> 00:20:40,586
By inserting a disk
That will help shape the flame.
289
00:20:40,586 --> 00:20:41,793
To install the burner
290
00:20:41,793 --> 00:20:44,379
In a lamp, the insert
The wick into the font
291
00:20:44,379 --> 00:20:47,413
And screw the burner
To the font's threaded collar.
292
00:20:51,724 --> 00:20:54,758
The glass chimney
Is the finishing touch.
293
00:20:58,137 --> 00:21:01,448
To fill the lamp with fuel,
Remove the chimney,
294
00:21:01,448 --> 00:21:05,068
Unscrew the burner,
Pour kerosene into the font,
295
00:21:05,068 --> 00:21:08,137
Then screw the burner back on.
296
00:21:08,137 --> 00:21:10,620
This lamp is now ready to light.
297
00:21:20,034 --> 00:21:22,172
If you have any comments
About the show,
298
00:21:22,172 --> 00:21:24,344
Or if you'd like to suggest
Topics for future shows,
299
00:21:24,344 --> 00:21:26,034
Drop us a line at...
24710
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