Mechanics: The Science of MachineryBond, A. Russell (Alexander Russell)
History
Mechanics: The Science of Machinery
Bond, A. Russell (Alexander Russell)
Machinery; Mechanical engineering; Mechanics
Of course, the underlying cause of gyroscopic action is inertia; _i.
e._, the tendency of a body to retain its state of rest or uniform
motion. A bullet is forced out of a gun by the sudden expansion of
gases behind it, but after it leaves the muzzle and the influence of
the gases, why does it keep on traveling? We may just as well reverse
the question and ask why it should ever stop. Having once acquired
a certain velocity it keeps that velocity because of its inertia or
mechanical helplessness, and it would keep on going forever were it not
for the resistance offered by the air and the pull of gravity, which
gradually draws it down to earth. It takes a deal of energy to divert
the bullet from its course. In a gyroscope we have a similar condition.
FORCES DEVELOPED IN A GYROSCOPE
We may conceive of a gyroscope as consisting of a stream of bullets all
tied to a center, so that they fly around in a circle. Any effort to
deflect the bullets out of their course will be resisted by each bullet
as it comes to the deflector. Here each bullet acts individually, but
in a gyroscope wheel the equivalent of the stream of bullets is a
solid rim, each particle of which is rigidly connected to every other
particle, and so the whole wheel immediately feels the deflecting force
and resists it. As long as the wheel is maintained in its own plane
of rotation, or moved into parallel planes, there is such a perfect
balance of all forces that no more resistance is offered to the motion
of the wheel as a whole than would be offered by any other object of
equal mass. But when the wheel’s plane of rotation is moved angularly,
a complicated series of forces is developed.
[Illustration: FIG. 77.--SOME OF THE FORCES DEVELOPED IN A GYROSCOPE
WHEN ITS PLANE OF ROTATION IS SUBJECTED TO ANGULAR MOTION]
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