In shunt machines the variation of current due to a varying number
of lamps in use occasions a rise and fall in the brightness of the
lamps which is undesirable, and hence a third class of dynamo has
been devised, which combines the principles of both the series and
shunt machines. This is the "compound-wound" machine, in which the
magnets are wound partly in shunt and partly in series with the
armature, in such a manner that the strength of the field-magnets
and the electromotive force of the current do not vary much,
whatever be the number of lamps in circuit. In alternate current
machines the electromotive force keeps constant, as the field-
magnets are excited by a separate machine, giving a continuous
current.
We have already seen that the action of the dynamo is reversible,
and that just as a wire moved across a magnetic field supplies an
electric current, so a wire at rest, but conducting a current
across a magnetic field, will move. The electric motor is
therefore essentially a dynamo, which on being traversed by an
electric current from an external source puts itself in motion.
Thus, if a current be sent through the armature of the Gramme
machine, shown in figure 41, the armature will revolve, and the
spindle, by means of a belt on the pulley P, can communicate its
energy to another machine.
Hence the electric motor can be employed to work lathes, hoists,
lifts, drive the screws of boats or the wheels of carriages, and
for many other purposes. There are numerous types of electric
motor as of the dynamo in use, but they are all modifications of
the simple continuous or alternating current dynamo.
Obviously, since mechanical power can be converted into
electricity by the dynamo, and reconverted into mechanical power
by the motor, it is sufficient to connect a dynamo and motor
together by insulated wire in order to transmit mechanical power,
whether it be derived from wind, water, or fuel, to any reasonable
distance.
CHAPTER V.
ELECTROLYSIS.
Having seen how electricity can be generated and stored in
considerable quantity, let us now turn to its practical uses. Of
these by far the most important are based on its property of
developing light and heat as in the electric spark, chemical
action as m the voltameter, and magnetism as in the electromagnet.
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.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account