The vibrating segments and nodes of a bell are similar to those of
a disk. When a bell sounds its deepest note, the coalescence of its
pulses causes it to divide into four vibrating segments, separated from
each other by four nodal lines, which run up from the sound-bow to the
crown of the bell. The place where the hammer strikes is always the
middle of a vibrating segment; the point diametrically opposite is also
the middle of such a segment. Ninety degrees from these points, we have
also vibrating segments, while at 45 degrees right and left of them we
come upon the nodal lines. Supposing the strong, dark circle in Fig. 77
to represent the circumference of the bell in a state of quiescence,
then when the hammer falls on any one of the segments _a_, _c_, _b_, or
_d_, the sound-bow passes periodically through the changes indicated
by the dotted lines. At one moment it is an oval, with _a b_ for its
longest diameter; at the next moment it is an oval, with _c d_ for its
longest diameter. The changes from one oval to the other constitute,
in fact, the vibrations of the bell. The four points _n, n, n, n_,
where the two ovals intersect each other, are the nodes. As in the case
of a disk, the number of vibrations executed by a bell in a given time
varies directly as the thickness, and inversely as the square of the
bell’s diameter.
Like a disk, also, a bell can divide itself into any even number of
vibrating segments, but not into an odd number. By damping proper
points in succession the bell can be caused to divide into 6, 8, 10,
and 12 vibrating parts. Beginning with the fundamental note, the number
of vibrations corresponding to the respective divisions of a bell, as
of a disk, is as follows:
Number of divisions 4, 6, 8, 10, 12
Numbers the squares of which express the }
rates of vibration } 2, 3, 4, 5, 6
Thus, if the vibrations of the fundamental tone be 40, that of the next
higher tone will be 90, the next 160, the next 250, the next 360, and
so on. If the bell be thin, the tendency to subdivision is so great
that it is almost impossible to bring out the pure fundamental tone
without the admixture of the higher ones.
Public-domain text, read in full here on John Shaqi.
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