Scientific American Supplement, No. 711, August 17, 1889Various
History
Scientific American Supplement, No. 711, August 17, 1889
Various
Science -- Periodicals
When copper bars of 1 inch diameter are traversed by currents of
40,000 to 60,000 amperes, as in welding them, the magnetic forces just
referred to become so enormous that very heavy masses of iron brought
up to the bar are firmly held, even though the current be of an
alternating character, changing direction many times a second.
[Illustration: Fig. 5]
[Illustration: Fig. 6]
When a conductor is surrounded by a cast iron ring, as in Fig. 5, the
current in such conductor has an excellent magnetic medium surrounding
it. A large amount of energy is then abstracted on the first impulse
of current, which goes to develop strong and dense magnetic lines
through the iron ring and across the gap in it. On taking off the
current the energy is returned as extra current, and its force is many
times what would be found with air alone surrounding the conductor. We
have then greatly increased the self-induction, the storing of energy
and opposition to current flow at the beginning, the giving back of
energy and assistance to the current flow on attempting to remove or
stop the current. Let us now complete the ring, by making it of iron,
endless, Fig. 6, with the conductor in the middle.
We now find that on passing current through the conductor it meets
with a very strong opposing effect or counter potential. The evolution
of magnetic lines, or the opening out of magnetic circuits, goes on at
a very rapid rate. Each line or magnetic circuit evolved, and cutting
the conductor, flies at once outward, and locates itself in the iron
ring. This ring can carry innumerable lines, and they do not crowd one
another. It permits the lines even to lengthen in reaching it, and
yet, on account of its low resistance to their passage, the
lengthening is equivalent to their having shortened in other media. We
will suppose the current not sufficient to exhaust this peculiar
capacity for lines which the iron has. Equilibrium is reached, the
conductor has opened up innumerable closed circuits, and caused them
to exist in the ring still closed; but in iron, not space or ether
merely. The current passing has continued its action and storage of
energy until to emit another line in view of the resistance now found
in the crowded iron ring is impossible.
Now let us cut off the current. We are surprised to find a very weak
extra current, a practical absence of self-induction on breaking, or,
at least, a giving out of energy in nowise comparable to that on
making. Let us put on the current as it was before. Another curious
result. But little self-induction now on making energy not absorbed.
Now cut off the current again. Same effect as before. Now let us put
on the current reversed in direction. At once we find a very strong
counter potential or opposing self-induction developed.
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