Inventors at Work, with Chapters on DiscoveryIles, George
History
Inventors at Work, with Chapters on Discovery
Iles, George
Inventions -- History; Inventors
[Illustration: Human hip joint in section. From “The Human Body,” by H.
N. Martin. Copyright, Henry Holt & Co., New York, 1884. Reproduced by
their permission.]
[Illustration: Valves of veins.
C, a capillary; H, the heart end of the vessel. From “The Human Body,”
by H. N. Martin. Copyright, 1884, Henry Holt & Co., New York, and
reproduced by their permission.]
[Illustration: Built-up gun.]
The Heart and the Built-up Gun.
Examination of the heart brings out a principle in its structure closely
paralleled in modern invention. Guns of old were cast or forged as
ordinary columns or shafts are to-day, the strength of the metal being
virtually uniform throughout when the guns were at rest on their
trunnions. As explosive charges more and more powerful were employed,
these guns gave way, the pressure of the exploding gases stretching the
metal at the bore to rupture, before the outer metal could add its
resistance. A modern built-up gun is made up of a series of, let us
say, four cylinders: the first, of comparatively small bore and
thickness, is innermost. It is cooled to as low a temperature as
possible, when a second cylinder is slipped over it red-hot to form a
tight fit. Both masses of metal are now slowly cooled, when a third
red-hot, closely fitting cylinder is passed over them. All three united
masses are now cooled, when the fourth and widest cylinder of all,
red-hot, is passed over these three inner tubes, and the whole gun is
allowed gradually to fall in temperature. When this process is completed
the inner parts of the gun, by virtue of the shrinkage in the metal as
it cooled, are under severe compression, while the outer parts are in as
extreme a state of stretch or tension. When such a gun is fired its
inner cylinders oppose much greater resistance to the outward pressure
of the exploding gases than did the walls of the old-time guns. The
strength of the old guns was uniform throughout when they were doing
nothing, and very far from uniform at the instant of firing; a built-up
gun, on the contrary, has uniform strength in its every part just when
that uniformity is wanted, at the moment of explosion. The built-up gun
therefore uses projectiles vastly heavier and swifter than those of
former times. Its structure, made up of cylinders successively shrunk
one upon another, resembles that of the heart, whose two inner parts
have their fibres wound somewhat like balls of twine, these in turn
being tightly compressed by a covering of other fibres. The heart has to
resist no such explosive force as arises within a gun, but in its
propulsion of blood through the arteries and veins it has to exert great
pressure, with no rest throughout a lifetime. This pressure is uniformly
distributed throughout the muscular tissue by a structure which, as
engineers would say, has its outer layers in tension and its inner
layers in compression. During twenty-four hours the labor of an average
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