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$75 electric wheel

updated wed 17 may 00

 

Linda Stauffer on tue 16 may 00


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I finally found the old issue of ceramics monthly, April 1988 with the
plans. I scanned them in.

Build A $75 Electric Wheel
by Jolyon Hofsted


BUILDING your own equipment can drastically cut the cost of
establishing or expanding a studio. The electric wheel depicted here can
handle up to 20 pounds of clay as well as most commercial wheels.
I don=92t claim to have invented it; it simply came to be one day in a
junkyard. Twenty years ago, I had a new teaching job, with no equipment
to speak of, and had gone to a wrecked auto yard looking for an
inexpensive way to make kick wheels. The mechanic at the yard and I
talked, and the idea for an electric wheel was born. I've been showing
people how to make them ever since.
Based on the front wheel assembly of a car, this potter=92s wheel is
compact, quite easily constructed and will give many years of trouble
free use. The first step is to go to an auto junkyard and pur-chase a
complete front wheel assembly (prices vary but the cost should be well
under $50). Have them cut it just behind the mounting bracket connecting
it to the car. This will be used to mount the wheel, complete with rim
but without tire. Be sure the bearings in the wheel assembly are not
frozen, and that they are in good condition.
Next, you'll need to find an electric motor from _ to _ hp. If, after a
little scouting around you can=92t come up with one, a rebuilt motor can
be purchased.
Then you'll need to find a heavy industrial plug, the kind with a metal
clamp around the back used to secure it to an electrical cord. This will
become the rubber drive for the motor. The plug's male prongs are
removed either by unscrewing or just snipping them off. The plug is then
slid onto the motor's drive shaft and secured in place with its own
metal clamp.
Standard wooden 2X4s are used for the wheel's framework. The width will
be determined by the diameter of the front wheel assembly. Plan for at
least a 2-inch clearance around the wheel as-sembly. Once this is laid
out, the frame s length is constructed from 3-foot-long 2X4s, standing
on edge.
The front wheel assembly is mounted in place, using the existing
brackets se-cured to 2X4s running across the frame. Make sure the
assembly is mounted lev-el. Next, secure two 2X4s on each end ~f the
frame to raise the wheel off the Floor. At this point, you should have a

frame constructed of 2X4s with a free spinning wheel head (car wheel
without tire) secured in place.
The next step is to fill the top of the tire rim with plaster. Clay can
be used to plug any holes from which the plaster might leak out. The
plaster provides the necessary weight, as well as a good throwing
surface. Pots can also be thrown on bats attached to the plaster.
To mount the motor, secure a 2x4 across the frame directly in line with
the back of the wheel assembly. Attach a 12-inch square of plywood to
this cross member with the use of a hinge. Secure the motor to the
plywood. Some motors come with mounting brackets; if yours has none,
metal straps can be used to bolt it in place. Position the motor so that
the rubber (plug) drive shaft just clears the bottom of the wheel rim.
By lifting the hinged plywood, the rubber will make contact with the rim
and the wheel will go around.
Speed will be controlled by a pedal. Drill a vertical hole, in line with
the
center of the hinged plywood square, through the right side of the 2x4
frame. With two nuts, secure a long bolt through the frame and a 3-foot
length of 1 X2. This should be a very loose connection so that the pedal
lever has lots of play. One end of this lever will be under the hinged
plywood; the other will project from the right side of the wheel.
Step-ping on the lever raises the hinged ply-wood, thus touching the
rubber drive shaft to the wheel rim. Removing your foot from the lever
will disengage the drive shaft, thus slowing the speed.
The last step is to build a plywood box around the frame to enable you
to sit (over the motor) at your $75 variable speed electric potter's
wheel, and work comfortably. A

BELOW Average skills, a front
wheel assembly from a junked car, a scrounged or rebuilt motor, some
2x4s, plywood, and standard hardware are all it takes to put together
the potter=92s wheel shown in this cutaway drawing.
[Image]



--
Linda P. Stauffer
Quakertown, PA
Stauffer Ceramics


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I finally found the old issue of ceramics monthly, April 1988 with the
plans. I scanned them in.

 Build A $75 Electric Wheel

by Jolyon Hofsted

 

 BUILDING your own equipment can drastically cut the cost of esta=
blishing
or expanding a studio. The electric wheel depicted here can handle up to
20 pounds of clay as well as most commercial wheels.

I don=92t claim to have invented it; it simply came to be one day in
a junkyard. Twenty years ago, I had a new teaching job, with no equipment=

to speak of, and had gone to a wrecked auto yard looking for an inexpensi=
ve
way to make kick wheels. The mechanic at the yard and I talked, and the
idea for an electric wheel was born. I've been showing people how to make=

them ever since.

Based on the front wheel assembly of a car, this potter=92s wheel is
compact, quite easily constructed and will give many years of trouble fre=
e
use. The first step is to go to an auto junkyard and pur-chase a complete=

front wheel assembly (prices vary but the cost should be well under $50).=

Have them cut it just behind the mounting bracket connecting it to the
car. This will be used to mount the wheel, complete with rim but without
tire. Be sure the bearings in the wheel assembly are not frozen, and that=

they are in good condition.

Next, you'll need to find an electric motor from _ to _ hp. If, after=

a little scouting around you can=92t come up with one, a rebuilt motor ca=
n
be purchased.

Then you'll need to find a heavy industrial plug, the kind with a met=
al
clamp around the back used to secure it to an electrical cord. This will
become the rubber drive for the motor. The plug's male prongs are removed=

either by unscrewing or just snipping them off. The plug is then slid ont=
o
the motor's drive shaft and secured in place with its own metal clamp.

Standard wooden 2X4s are used for the wheel's framework. The width
will be determined by the diameter of the front wheel assembly. Plan for
at least a 2-inch clearance around the wheel as-sembly. Once this is laid=

out, the frame s length is constructed from 3-foot-long 2X4s, standing
on edge.

The front wheel assembly is mounted in place, using the existing brac=
kets
se-cured to 2X4s running across the frame. Make sure the assembly is moun=
ted
lev-el. Next, secure two 2X4s on each end ~f the frame to raise the wheel=

off the Floor. At this point, you should have a

frame constructed of 2X4s with a free spinning wheel head (car wheel
without tire) secured in place.

The next step is to fill the top of the tire rim with plaster. Clay
can be used to plug any holes from which the plaster might leak out. The
plaster provides the necessary weight, as well as a good throwing surface=
=2E
Pots can also be thrown on bats attached to the plaster.

To mount the motor, secure a 2x4 across the frame directly in line
with the back of the wheel assembly. Attach a 12-inch square of plywood
to this cross member with the use of a hinge. Secure the motor to the ply=
wood.
Some motors come with mounting brackets; if yours has none, metal straps
can be used to bolt it in place. Position the motor so that the rubber
(plug) drive shaft just clears the bottom of the wheel rim. By lifting
the hinged plywood, the rubber will make contact with the rim and the whe=
el
will go around.

Speed will be controlled by a pedal. Drill a vertical hole, in line
with the

 center of the hinged plywood square, through the right side of
the 2x4 frame. With two nuts, secure a long bolt through the frame and
a 3-foot length of 1 X2. This should be a very loose connection so that
the pedal lever has lots of play. One end of this lever will be under the=

hinged plywood; the other will project from the right side of the wheel.
Step-ping on the lever raises the hinged ply-wood, thus touching the rubb=
er
drive shaft to the wheel rim. Removing your foot from the lever will dise=
ngage
the drive shaft, thus slowing the speed.

The last step is to build a plywood box around the frame to enable
you to sit (over the motor) at your $75 variable speed electric potter's
wheel, and work comfortably. A

BELOW Average skills, a front

wheel assembly from a junked car, a scrounged or rebuilt motor, some
2x4s, plywood, and standard hardware are all it takes to put together the=

potter=92s wheel shown in this cutaway drawing.

=3D306>

 

 

--

Linda P. Stauffer

Quakertown, PA

Stauffer Ceramics<x.html">http://members.aol.com/staufferl/index.html>

 

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