It may be amusing, if not useful, to spend a moment in reviewing of the
efforts of men to utilize the power of the electrical current in
mechanics before the day of the dynamo and a motor, and while yet the
electric light was an infant in the nursery of the laboratory. They knew
then, about 1835 to 1870, of the laws of induction as applied to the
electro-magnet, or in small machines the generating power, so called, of
the magneto-electric arrangement embodied, as a familiar example, in
Kidder's medical battery. There is a long list of those inventors,
American and European. The first patent issued for an American
electro-motor was in 1837, to a man named Thomas Davenport, of Brandon,
Vt. He was a man far ahead of his times. He built the first electric
railroad ever seen, at Springfield, Mass., in 1835, and considering the
means, whose inadequacy is now better understood by any reader of these
lines than it then was by the deepest student of electricity, this first
railroad was a success. Davenport came as near to solving the problem of
an electric motor as was possible without the invention of Pacinotti.
Following this there were many patents issued for electro-magnetic
motors to persons residing in all parts of the country, north and south.
One was made by C. G. Page, of the Smithsonian Institute, in which the
motive power consisted in a round rod, acting as a plunger, being pulled
into the space where the core would be in an ordinary electro-magnet,
and thereby working a crank. [Footnote: The _National
Intelligencer_, a prominent Washington newspaper, said with reference
to Page's motor "He has shown that before long electro-magnetic action
will have dethroned steam and will be the adopted motor," etc. This was
an enthusiasm not based upon any fact then known about a machine not
even in the line of the present facts of electro-dynamics.] A large
motor of this kind is alleged, in 1850, to have developed ten horse
power. It was actually applied to outdoor experiment as a car-motor on
an actual railroad track, and was efficient for several miles. But it
carried with it its battery-cells, and they were disarranged and stirred
by the jolting, and being made of crockeryware were broken. The
chemicals cost much more than fuel for steam, and there could be no
economical motive for further experiment. It was a huge toy, as the
entire sum of electrical science was until it was made useful first in
the one instance of the telegraph, and long after that date the use of
the electro-magnet, with a cam to cut off and turn on again the current
at proper intervals, which was the one principle of all attempts, was a
repeated and invariable failure. That which was wanted and lacking was
not known, and was finally discovered and successively developed as has
been described.
Public-domain text, read in full here on John Shaqi.
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