The Popular Science Monthly, September, 1900: Vol. 57, May, 1900 to October, 1900Various
Science
The Popular Science Monthly, September, 1900: Vol. 57, May, 1900 to October, 1900
Various
Science -- Periodicals; Technology -- Periodicals
[Illustration: FIG. 5. SINGLE MOTOR EQUIPMENTS.]
If a compensating gear is placed upon the axle the latter, instead of
supporting its end of the vehicle, will itself have to be supported,
for as it is cut in two at the center, it has no supporting strength.
By placing the compensating gear on another shaft this difficulty can
be overcome. Fig. 5 shows the construction used by the Columbia Company
in its single motor equipment. In this arrangement the motor casing is
made of sufficient length to reach from one side of the vehicle to the
other. The armature and field magnets of the motor, which are the parts
that develop the power, are located at _A_ and the compensating gear
is placed at _B_. The motor armature is mounted upon a hollow shaft,
which is connected with the compensating gear. The shafts _D_ and _C_,
upon which are mounted the pinions _E_ and _F_, are turned by the
side wheels of the compensating gear, and therefore will run at such
velocities as the motion of the carriage wheels may require.
[Illustration: FIG. 6. A COLUMBIA VICTORIA.]
[Illustration: FIG. 7. COLUMBIA VEHICLE WITH DOUBLE MOTOR EQUIPMENT.]
Fig. 6 shows a Columbia Victoria provided with a single motor equipment
arranged in accordance with the diagram, Fig. 5. Fig. 7 shows another
Columbia vehicle in which a double motor equipment is employed. The
position of the motor, with reference to the carriage wheel, in the
single motor design, is shown in Fig. 8. The gear attached to the
carriage wheel is used also as a brake wheel, a friction band being
located so as to bear against the periphery, while the pinion on the
end of the motor shaft meshes into teeth on the inner side of the
rim. This single motor design is also used in the omnibus made by the
Columbia Company, a number of which are now in regular service on Fifth
avenue, New York. These omnibuses, which are illustrated in Fig. 9,
seat eight passengers, and are able to carry as many as are willing
to crowd into them. One feature of the electric motor which fits it
admirably for automobile service is the fact that for a short time it
can put forth an effort far greater than its normal capacity, and it
can do this at all times, without any special preparation. Owing to
this feature it is practically impossible to stall the vehicle. If the
wheels run into a rut or sink into a mud hole, the motor will be able
to turn them around, and if they do not slip the carriage will be moved
ahead.
[Illustration: FIG. 8. POSITION OF MOTOR IN THE SINGLE MOTOR DESIGN.]
The management of the vehicle is exceedingly simple and entirely free
from care, the driver having nothing to tax his mind but the steering
lever and the handle of the controlling switch. As the moving parts
all have a rotatory motion and are perfectly balanced, there is no
possibility of vibration, and there is an entire absence of heat or
disagreeable odors.
[Illustration: FIG. 9. A COLUMBIA OMNIBUS.]
Public-domain text, read in full here on John Shaqi.
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