Harper's Electricity Book for BoysAdams, Joseph H. (Joseph Henry)
Science
Harper's Electricity Book for Boys
Adams, Joseph H. (Joseph Henry)
Electricity -- Juvenile literature
A simple form of electro-magnet is made by winding several layers of No.
20 insulated copper wire around a stout nail or a carriage-bolt; by
connecting the ends to a battery of sufficient power, some very heavy
objects may be lifted. A single magnet, like the one shown in Fig. 1, is
made with a piece of soft iron rod six inches long and half an inch in
diameter, the ends of a large spool sawed off and worked on the rod, and
half a pound of No. 20 insulated copper wire. The spool-ends are
arranged as shown in Fig. 2. An end of the wire is passed through a hole
in one flange when you begin to wind the coils, and when finished, the
other end is passed through a hole at the outer rim of the same flange.
This magnet may be held in the hands when in use; or a hand-magnet may
be constructed of a longer piece of iron on one end of which a handle is
driven and held in place with a nut and washer, as shown in Fig. 3. The
wires from the coil pass through holes made in the handle and come out
at the butt end, where they may be attached by connectors to the
pole-wires of a battery. To protect the outer insulated coil of wire
from chafing and a possible short-circuit, it would be well to wrap
several thicknesses of stout paper around the coil and glue it fast; or
a leather cover will answer as well.
[Illustration: FIG. 1
FIG. 2
FIG. 3
FIG. 4
FIG. 5
FIG. 6
FIG. 7
SIMPLE AND HORSESHOE MAGNETS]
A more powerful magnet may be made from a stout bolt, two nuts, and a
wooden base, with about three-quarters of a pound of No. 18 insulated
copper wire to wind about the body of the bolt. A block of wood an inch
thick, four inches wide, and six inches long is provided with a hole at
the middle for the bolt to pass through. A larger hole is made at the
under side of the block so that a nut can be easily turned in it. A
three-quarter-inch machine-bolt, with a square head, and seven inches
long, is set in the block, head up, as shown in Fig. 4; and composition
or thin wooden disks or washers are placed on the bolt to hold the coils
of wire in place. The ends of the wire pass out through the bottom
washer and are made fast to binding-posts on the block, and to these
latter the battery-poles are made fast when the magnet is in use. Coils
of wire may be wound on an ordinary spool, and the hole in the middle
may be filled with lengths of soft iron wire. When a current is passing
around the spool the wires become highly magnetic, but lose the
magnetism directly the current ceases.
Horseshoe electro-magnets are made by winding coils on the ends of
[U]-shaped pieces of soft iron, but the winding must be done so that the
current will pass around them in opposite directions, otherwise you
would have two negatives instead of a negative and positive. For a small
horseshoe magnet a stout iron staple may be used, but for the larger
magnets it would be best to have a blacksmith bend a piece of round iron
in the desired shape.
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