When very powerful motors are necessary, the field magnet is so
arranged that it has four or more poles instead of two; the armature
likewise consists of several portions, and even the commutator may be
very complex. But no matter how complex these various parts may seem
to be, the principle is always that stated in Section 309, and the
parts are limited to field magnet, commutator, and armature.
[Illustration: FIG. 231.--A modern power plant.]
[Illustration: FIG. 232.--The electric street car.]
The motor is of value because by means of it motion, or mechanical
energy, is obtained from an electric current. Nearly all electric
street cars (Fig. 232), are set in motion by powerful motors placed
under the cars. As the armature rotates, its motion is communicated by
gears to the wheels, the necessary current reaching the motor through
the overhead wires. Small motors may be used to great advantage in the
home, where they serve to turn the wheels of sewing machines, and to
operate washing machines. Vacuum cleaners are frequently run by
motors.
CHAPTER XXXIV
HOW ELECTRICITY MAY BE MEASURED
312. Danger of an Oversupply of Current. If a small toy motor is
connected with one cell, it rotates slowly; if connected with two
cells, it rotates more rapidly, and in general, the greater the number
of cells used, the stronger will be the action of the motor. But it is
possible to send too strong a current through our wire, thereby
interfering with all motion and destroying the motor. We have seen in
Section 288 that the amount of current which can safely flow through a
wire depends upon the thickness of the wire. A strong current sent
through a fine wire has its electrical energy transformed largely into
heat; and if the current is very strong, the heat developed may be
sufficient to burn off the insulation and melt the wire itself. This
is true not only of motors, but of all electric machinery in which
there are current-bearing wires. The current should not be greater
than the wires can carry, otherwise too much heat will be developed
and damage will be done to instruments and surroundings.
The current sent through our electric stoves and irons should be
strong enough to heat the coils, but not strong enough to melt them.
If the current sent through our electric light wires is too great for
the capacity of the wires, the heat developed will injure the wires
and may cause disastrous results. The overloading of wires is
responsible for many disastrous fires.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account