Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
“A spiral groove is cut in the circumference of the cylinder, from one
end to the other, each spiral of the groove being separated from its
neighbour by about one-tenth of an inch. The shaft or axis is also cut
by a screw thread corresponding to the spiral groove of the cylinder,
and works in screw bearings; consequently when the cylinder is caused
to revolve, by means of a crank that is fitted to the axis for this
purpose, it receives a forward or backward movement of about one-tenth
of an inch for every turn of the same, the direction, of course,
depending upon the way the crank is turned. The diaphragm is firmly
supported by an upright casting capable of adjustment, and so arranged
that it may be removed altogether when necessary. When in use, however,
it is clamped in a fixed position above or in front of the cylinder,
thus bringing the stylus always opposite the groove as the cylinder is
turned. A small, flat spring attached to the casting extends underneath
the diaphragm as far as its centre and carries the stylus, and between
the diaphragm and spring a small piece of india-rubber is placed
to modify the action, it having been found that better results are
obtained by this means than when the stylus is rigidly attached to the
diaphragm itself.
[Illustration: Fig. 194.—Mode of using the Telephone.]
“The action of the apparatus will now be readily understood from what
follows. The cylinder is first very smoothly covered with tin-foil, and
the diaphragm securely fastened in place by clamping its support to the
base of the instrument. When this has been properly done, the stylus
should lightly press against that part of the foil over the groove.
The crank is now turned, while, at the same time, someone speaks into
the mouthpiece of the instrument, which will cause the diaphragm to
vibrate, and as the vibrations of the latter correspond with the
movements of the air producing them, the soft and yielding foil will
become marked along the line of the groove by a series of indentations
of different depths, varying with the amplitude of the vibrations of
the diaphragm; or in other words, with the inflections or modulations
of the speaker’s voice. These inflections may therefore be looked upon
as a sort of visible speech, which, in fact, they really are. If now
the diaphragm is removed, by loosening the clamp, and the cylinder
then turned back to the starting point, we have only to replace the
diaphragm and turn in the same direction as at first, to hear repeated
all that has been spoken into the mouthpiece of the apparatus; the
stylus, by this means, being caused to traverse its former path, and
consequently, rising and falling with the depressions in the foil,
its motion is communicated to the diaphragm, and thence through the
intervening air to the ear, where the sensation of sound is produced.
[Illustration: Fig. 195.—BELL’S LONG-DISTANCE TELEPHONE
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