(29.) The change of dimension of solids produced by changes of
temperature being much less than that of bodies in the liquid or
aeriform state, is not so easily observable. A remarkable instance
occurs in the process of shoeing the wheels of carriages. The rim of
iron with which the wheel is to be bound, is made in the first instance
of a diameter somewhat less than that of the wheel; but being raised by
the application of fire to a very high temperature, its volume receives
such an increase, that it will be sufficient to embrace and surround
the wheel. When placed upon the wheel it is cooled, and suddenly
contracting its dimensions, binds the parts of the wheel firmly
together, and becomes securely seated in its place upon the fellies.
(30.) It frequently happens that the stopper of a glass bottle or
decanter becomes fixed in its place so firmly, that the exertion of
force sufficient to withdraw it would endanger the vessel. In this
case, if a cloth wetted with hot-water be applied to the neck of the
bottle, the glass will expand, and the neck will be enlarged, so as to
allow the stopper to be easily withdrawn.
(31.) The contraction of metal consequent upon change of temperature
was applied some time ago in Paris to restore the walls of a tottering
building to their proper position. In the _Conservatoire des Arts
et Métiers_, the walls of a part of the building were forced out of
the perpendicular by the weight of the roof, so that each wall was
leaning outwards. M. Molard conceived the notion of applying the
irresistible force with which metals contract in cooling, to draw the
walls together. Bars of iron were placed in parallel directions across
the building, and at right-angles to the direction of the walls. Being
passed through the walls, nuts were screwed on their ends, outside the
building. Every alternate bar was then heated by lamps, and the nuts
screwed close to the walls. The bars were then cooled, and the lengths
being diminished by contraction, the nuts on their extremities were
drawn together, and with them the walls were drawn through an equal
space. The same process was repeated with the intermediate bars, and
so on alternately until the walls were brought into a perpendicular
position.
Public-domain text, read in full here on John Shaqi.
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