Industrial arts -- Biography; Inventors -- Biography
But the great work of his life was his marine chronometer. He found it
necessary, in the first place, to alter the first mover of his clock to
a spring wound up, so that the regularity of the motion might be
derived from the vibrations of balances, instead of those of a pendulum
as in a standing clock. Mr. Folkes, President of the Royal Society,
when presenting the gold medal to Harrison in 1749, thus describes the
arrangement of his new machine. The details were obtained from
Harrison himself, who was present. He had made use of two balances
situated in the same plane, but vibrating in contrary directions, so
that the one of these being either way assisted by the tossing of the
ship, the other might constantly be just so much impeded by it at the
same time. As the equality of the times of the vibrations of the
balance of a pocket-watch is in a great measure owing to the spiral
spring that lies under it, so the same was here performed by the like
elasticity of four cylindrical springs or worms, applied near the upper
and lower extremities of the two balances above described.
Then came in the question of compensation. Harrison's experience with
the compensation pendulum of his clock now proved of service to him.
He had proceeded to introduce a similar expedient in his proposed
chronometer. As is well known to those who are acquainted with the
nature of springs moved by balances, the stronger those springs are,
the quicker the vibrations of the balances are performed, and vice
versa; hence it follows that those springs, when braced by cold, or
when relaxed by heat, must of necessity cause the timekeeper to go
either faster or slower, unless some method could be found to remedy
the inconvenience.
Public-domain text, read in full here on John Shaqi.
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