The Library of Work and Play: Electricity and Its Everyday UsesWoodhull, John F. (John Francis)
Science
The Library of Work and Play: Electricity and Its Everyday Uses
Woodhull, John F. (John Francis)
Electricity -- Juvenile literature
Then he explained how she might calculate its speed by looking at the
pulleys, and she found that the counter shaft was going four times as
fast as the shaft _L_ and that the emery wheel was going four times as
fast as _K_. Hence it was going sixteen times as fast as _L_, or 3840
r. p. m. His mother said she thought that it was fascinating to stand
in the middle of the room with the slowly moving grindstone on one hand
and emery wheel moving sixty-four times as fast on the other hand and
think that they were propelled by the same water-wheel. I handed Harold
a speed indicator which I had just received, (Fig. 142), the mechanism
of which was all visible. Harold looked at it for a minute and found
stated upon it that the wheel _B_ had 100 cogs, and he very quickly
inferred that the axle _A_, whose screw threads fitted into these
cogs, must revolve one hundred times each time the wheel _B_ revolves
once. The tip end of this axle had a soft rubber cap _C_. Without
suggestion from me he soon held this rubber shoe against the end of the
axle of the emery wheel and counted, not thirty-eight, but thirty-six
revolutions of the wheel of the speed indicator in one minute. This
puzzled him and he inquired how it happened that the emery wheel made
only 3600 rather than 3840 revolutions per minute.
[Illustration: Fig. 142]
"Well," said I, "we always have to count on belts slipping some,
particularly upon very fast moving pulleys and upon very small pulleys.
Here are two belts to slip, and still you are losing only the effect
of one revolution of the counter shaft _L_ in a minute. Grind something
on the emery wheel and you will find that the belts will slip more.
In fact, grinding upon the emery wheel will compel the water-wheel to
go more slowly until its governor opens and gives it more water. The
water-wheel makes fifteen revolutions per minute and the emery wheel
goes 256 times as fast as that. One pound of resistance at the emery
wheel is like 256 pounds of resistance at the water-wheel. You notice
the same thing when you use the saw or planer, or even present a chisel
to a piece of soft wood in the turning lathe.
"The only machine here that it is important to keep running at constant
speed is the dynamo. We shall probably notice the dimming of our lights
at the cottage every time you saw a block or grind with the emery wheel
or even polish with the felt buffer, because the speed of the dynamo
will slacken for a moment and the voltage will drop a little."
In addition to sending electric current to the cottage the dynamo
was to keep the battery stored all the time. Each machine had an
appropriate motor attached to it which could run it by drawing current
directly from the battery when the water-wheel was not running. Thus
if one wanted to sharpen his pocket knife he merely closed a switch at
the lathe and used the small stone, or if he wished to sharpen his lead
pencil he put it in the lathe and applied a chisel to it.
Public-domain text, read in full here on John Shaqi.
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