♪♪
Narrator:
today on "how it's made"...
Together, the mortar and pestle
form some of the oldest
And most useful
of humanity's inventions.
Their image adorns
many pharmacology symbols
Because pharmacists have been
Using them to prepare medicine
for centuries.
But it's with food
that this simple tool
Is most closely associated.
The basic principle is
simple enough --
Put the object you want
to crush in a bowl,
Then take a stick
and grind it down.
But not all mortars and pestles
are alike.
For one thing,
The material used
can make all the difference.
Wooden and ceramics work well.
But for many,
nothing beats stone.
Granite provides a tough,
non-porous surface.
A craftsman prepares to carve.
He starts by using
a masonry compass
And a liquid called chinese ink
to draw the mortar's
Inner and outer circumference.
He can easily remove the ink
if there are any errors.
He roughs out the shape
with a hammer and chisel.
He then works with a grinder
which is equipped
With an extremely hard
diamond-tipped blade,
Making it possible
to cut through solid stone.
Once's he's defined
the outside edge,
He begins to work
the inner bowl,
Carving out the perimeter
before cutting a grid.
He turns again
to his hammers and chisels
To remove material
from the inside of the mortar.
He uses the grinder
to cut the last chunks
And fine-tune the surface,
Giving it the smooth,
consistent shape of a bowl.
He uses a square
to transfer a mark
To the bottom of the stone.
He marks the based
with his compass.
The circumference of the base
Must be slightly smaller
than the top.
He quickly roughs out the base
with one of his chisels.
Then it's back to the grinder,
Which he uses to clean up
the circumference
And begin making a series
of angle cuts into the sides.
With hammer and chisel,
He knocks off the pieces
left between the angle cuts.
Thanks to years of experience,
he makes it look easy.
With the grinder, he works away
at all of the surfaces,
Smoothing them
to a consistent finish.
One wrong move with this tool
Could mean being
forced to start over,
But this is
a highly skilled artisan.
More than 10 years of training
Make it possible
for him to work
With unhesitating speed
and assurance,
Completing a finished mortar
In less than an hour
and a half.
But, of course,
there's something missing.
A mortar isn't much good
without a pestle.
Once again working with
The confident swiftness
of an expert,
The artisan uses his grinder
to hone a chunk of granite
Down to the shape
of a well-balanced pestle.
Wide and blunt on one end
And narrow enough
to easily grasp on the other,
The stone is perfectly
calibrated to do its job.
In the days before power tools,
It would have taken
a craftsman a full day
To carve a mortar and pestle.
But a carved mortar and pestle
Isn't necessarily
a finished one.
Here, a painter
adds the final touches.
Using a small brush
and special varnish,
He paints a lotus flower design
on the lip of the mortar.
He leaves the bowl itself
untouched
So that no food products
Will mix with the varnish
when crushed.
He then varnishes the exterior
of the mortar.
The varnishing process
is purely decorative.
Hard stone like granite
needs no protective coating
To help it endure.
After all, some granite has been
around for millions of years.
It takes just 15 to 20 minutes
for the varnish to dry.
And with that, the mortar
is completely finished.
The lotus flower design
isn't the only one available.
This facility
produces a wide range
Of mortars and pestles.
These mortars and pestles
may be attractive.
But their appearance
is secondary to their function.
There are few tools in a kitchen
more durable or more useful
Than a good mortar and pestle.
♪♪
Narrator:
in the early days of bowling,
Shellac-based conditioners
were applied to wooden lanes
To protect the surface.
Today, robotic machines
apply conditioners
In different patterns
to mainly synthetic lanes,
Easier ones
for the average bowler
And more challenging ones
for tournament players.
At most bowling alleys,
lane cleaning and condition
Are done automatically
by roaming robots.
They apply
different conditioners
In specific patterns.
The pattern selections
are made by league organizers.
It's all about ensuring
consistent scoring.
Computerized tools
with different bits
Produce many
of the robot's parts.
Here, they carve a block
of aluminum into a mounting part
For a handle.
This is the blank before
and after.
An employee assembles
two of the mounting parts
To a handle.
He secures them
with heavy duty bolts,
Ensuring that these pressure
points will hold up
To the job of lifting
the 370-pound robotic machine.
He attaches one handle
to each of the two side panels.
He installs a sprocket
sensor system
On one of the side panels.
This sprocket sensor will detect
Where the robot
is and communicate
That information to is computer.
He links it to the front wheel
with a second sprocket chain,
And closes the loop
with a master link.
He now lowers the oil buffer
brush assembly into the machine.
He inserts the main drive more
And then secures it
to an aluminum partition
With the shaft protruding
through the other side.
He then wraps the drive chain
Around the sprockets
of the shaft.
He loops a rubber belt
in front of the buffer brush
And connects it
to the oil applicator.
The applicator
will slide on the belt,
Dispensing small amounts
of conditioner.
He installs whisker sensors
to the front on each side.
When these whiskers
brush the sides of the lane,
They'll send a signal
to the computer,
Which will then direct the robot
to move more to the center.
The conditioning solution tanks
have been equipped
With metering pumps
and pressure gauges.
He bolts the assembly
to the rear wall of the machine.
He pops in
the rechargeable battery
And connects it to the motor.
The machine is ready
for the computerized system
That runs it.
This system includes
the control panel.
He installs it in the center
of the machine,
Just above the battery.
He then runs the hose
from the conditioning tank
Over to the applicator
and connects it.
Moving to the front,
Another employee unwinds fabric
from one roller and attaches
The end to the next.
This is part
of the cleaning system.
The cloth will scrub
the bowling lane
After the robot sprays
a cleaning solution onto it.
A suctioning squeegee
will vacuum up dirt
And leftover cleaner
And deposit them
in this recovery tank.
He then plugs the wiring harness
Into the computer at the back
of the control panel.
It's time for a dry run.
With no cleaner or conditioner
in the system yet,
The technician powers
up the robot
And puts it through its paces.
He confirms that every part
is in good working order.
He adds cleaning solution
to the tank,
And it's time prepare
the lane conditioners.
They mix the mineral
oil-based conditioners
In big blenders.
There are nine different
recipes,
With up to 16 ingredients
in each one.
They test each mixture
extensively.
They measure the viscosity
because it can affect
How the conditioner flows
on the lane.
And they evaluate
the surface tension.
That's its ability
to bond to the lane.
With the conditioners approved,
it's time to test the robot
In special quality
control lanes.
During 50 trips
down the lanes,
A technician evaluates
the robot's performance.
He inspects its turning radius
And the effectiveness
of the sensors.
He also scrutinizes the cleaning
and conditioning job.
Satisfied
that the conditioning robot
Works well on its own,
he approves it for shipping.
This bowling lane conditioner
should be a real game changer
And ensure that the path
to victory is a well-oiled one.
♪♪
Narrator:
a crematory is a machine
Used to cremate bodies
swiftly and safely.
Even though the cremated remains
Are commonly
referred to as ashes,
They're actually bone fragments.
The family may choose
to inter them,
Preserve them in an urn,
Or scatter them
in a meaningful place.
This pet crematory
has three small chambers.
The human version
has a single chamber
Large enough
to accommodate a casket.
Inside, flames from a gas burner
engulf the deceased,
And the burning body
releases fluids and gases
Which flow to
a secondary chamber in the back,
Where another burner
incinerates them.
The crematory's frame is made
of ultra-strong tubular steel,
Because the structure
Must withstand expansion
and contraction,
As the chamber heats up
To more than 1,800 degrees
fahrenheit during cremation,
Then cools down afterward.
Once workers have cut steel
tubing to the lengths required,
They place the pieces in a jig,
Which configures them correctly
for assembly.
After ensuring
the tubes are flush,
Workers clamp them to the jig
To prevent them from shifting
out of position.
Then they weld the tubes
together,
Assembling then connecting
The multiple sections
of the frame.
Next, thick sheets of steel
For the crematory's floor
and walls.
Workers clamp the sheets
in position,
Then fuse them to the frame
With just over 5-inch long welds
on the outside
And full-length welds
along the inside seams
To completely seal the unit.
They weld steel airlines
for oxygenating the the fire
In the chambers.
Now, workers begin
insulating the chambers
To shield the steel structure
from the intense heat.
First, they apply
adhesive-backed steel pins
To the steel walls
And affix insulation boards
Made of heat-resistant
ceramic fibers.
They secure the boards
to the pins with steel disks.
Workers nail in a second layer
of insulation.
These stiffer boards are made
of a higher concentration
Of ceramic fibers,
Making them
even more heat resistant
Than the first layer.
After insulating the top
of the machine the same way,
They install an exhaust chimney
above the secondary chamber,
Then a motorized fan that
blows air through a long shaft.
The shaft functions
as an air supply highway,
With exit pipes
going to the airlines
And to the gas burners
in the chambers.
Workers apply two coats
of high temperature paint
To the machine's steel exterior.
And then it's time
to line the chambers
With a third and final layer
of insulation.
This insulation material
is refractory brick.
The term "refractory"
means "heat resistant."
The bricks are made
Of a ceramic material
called alumina silica,
And can withstand temperatures
As high
as 2,900 degrees, fahrenheit.
The three layers of insulation
absorb the intense heat
Of the cremation process,
Which can take 1 to 2 hours,
Depending on the weight
of the body.
They protect the machine's
steel structure
So that it doesn't
degrade and weaken.
Once the mortar dries, workers
pour the floor and ceiling,
Then hang
the machine's steel door,
Which operates on
a hydraulically powered
Chain and sprocket.
The door is lined
with insulated refractory brick,
Which, unlike the chamber brick,
Reflects rather than
absorbs heat.
This prevents the door
from getting too hot to handle.
The final step is to wire
the chamber heat sensors
And other electronics
to the electrical panel.
The cremation is automated.
Some machines have gauges
and indicator lights
Which enable the operator
to monitor combustion
And adjust fuel and airflow
as required.
Other machines have a computer,
Which runs, monitors,
And regulates the process
from start to finish.
The crematory incinerates
all but 5% of the body.
What remains are bone fragments,
Which are then ground
into a powder
And returned in a container
to the family.
♪♪
Narrator: computer game systems
may be the rage,
But kids still love to play
the old fashioned way --
Outside, in the fresh air,
on a playset.
And today's playsets
are quite often elaborate,
With a slew of apparatuses
that provide a lot more exercise
Than a game controller does.
Many playsets
are modular systems,
Which let you choose
the components
And configuration.
This set combines forts,
ladders, monkey bars,
A climbing wall, swings,
Rope, and a slide.
The wood is redwood,
A species that's safe
for little hands
Because it's splinter-free.
It's also naturally
weather resistant,
So it doesn't need
to be treated with chemicals
To prevent rotting.
Workers first cut out
any knots and defects.
Then they saw the wood
To the lengths required
for different parts.
They load several
of the same part
Onto a computer-guided router.
These are the sides
for several ladder kits.
The router cuts slots
for the ladder's wooden steps
And drills holes for the bolts
that attach the ladders
To their respective playset.
Worker's manually sand
every piece of wood
That goes into a playset
So that the entire surface
is smooth
For little hands and knees.
When pieces need to be shaped
a certain way,
Workers run them through
this machine.
It's called a wood molder.
Inside, it has four spindles
with rotary knives
That trim the wood
on all sides
To specific pre-set dimensions
And shape.
A wood molder can make
relatively complex cuts
To make
decorative crown moldings.
However, for these playsets,
The molder primarily
curves edges
And shapes adjoining components
To fit together
like puzzle pieces.
Here's what a piece looks like
before and after
It's put through the wood molder
for sizing
And to round the corners.
Several wood components also go
through this piece of equipment,
Called the double-end
cut-off machine.
As the name implies,
It saws off a preset amount
of wood on each end
To standardize length
and smooth the surface.
The playset's structure
has angled braces in the corners
For extra reinforcement.
To make these braces, workers
notch the wood pieces
On this machine.
Then they round the edges
with a router
And sand the surface.
Once all the wood parts
are shaped and sanded, workers
Put them on a conveyor belt,
Which ferries them
through a machine
Called a vacuum coater.
It saturates the part
with a non-toxic,
Water-based reddish stain,
Then suctions off the excess.
Workers staple an identification
label on every part.
Then they bundle together
all the parts for the module --
This is the ladder kit --
And put them through
a plastic banding machine
To tie them together.
The bander works by feeding
a continuous plastic strap
Off a spool.
When the operator steps
on a foot pedal,
The machine shoots the strap
tightly around the bundle,
Then cuts and heat seals
the ends.
Swing, slides,
and climbing wall footings
Are made of molded polyethylene,
A flexible
and durable type of plastic.
To assemble this baby swing,
workers bend it to shape
And clamp it
in an assembly fixture.
Then, one side at a time,
They position
the galvanized steel hardware
And insert the rivets
that will fasten it.
They transfer this assembly
to a vice,
Then drive in the rivets
with an air-powered impact g*n.
The swing hangs on
plastic-coated steel chains.
This module is what they call
the split ladder.
It combines a wood step ladder
With a more challenging
chain ladder.
Plastic-coated steel pipes
At the top
and bottom link the two.
The galvanized steel chain
ladder is coated with plastic
To make it softer to the touch.
They complete the unit
with a wooden side rail,
Then place the split ladder
on a large vertical press,
Which forces the parts
tightly together.
The unit will be
further secured with bolts,
Once assembled to the playset,
Along with a selection of
additional climbing,
Dangling, sliding,
and swinging options
For active little monkeys.
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