The Romance of War Inventions: A Description of Warships, Guns, Tanks, Rifles, Bombs, and Other Instruments and Munitions of Warfare, How They Were Invented & How They Are EmployedCorbin, Thomas W.
History
The Romance of War Inventions: A Description of Warships, Guns, Tanks, Rifles, Bombs, and Other Instruments and Munitions of Warfare, How They Were Invented & How They Are Employed
Corbin, Thomas W.
Inventions; Military art and science; Naval art and science
For example, suppose a hole is required to be nominally an inch in
diameter it may be specified that it shall not exceed an inch plus
one-thousandth or fall short of an inch minus one-thousandth. In such a
case a variation of a thousandth of an inch either way is permitted.
The permitted variation may be more than that, or it may be less and be
measured in ten-thousandths, it all depends upon circumstances. Clearly
in every case it is desirable to permit as large a variation as is
consistent with a good result.
Now to make measures with the degree of accuracy just mentioned is not
easy. One can just about see through a crack a thousandth of an inch
wide if held up to a bright light. How then can dimensions such as these
be dealt with easily and quickly in the rough conditions of a large
workshop?
Let us again think of that one-inch hole and we shall see how simply and
easily it is done. The gauge in such a case would be shaped somewhat
like a dumb-bell, one end being the "go" end and the other the "not-go"
end. The former is made to agree as nearly as possible with the lower
limit, the other with the higher limit, and all the inspector has to do
is to try first one end in the hole and then the other. One must "go" in
and the other must "not-go." So long as that happens he knows that the
hole is correct within the prescribed limits. If, on the other hand,
both go in, then he knows the hole is too large, or if neither goes in
he knows it is too small. It may be urged by some acute reader that the
gauges themselves cannot be correct, and that is quite true, but it is
possible, by great care and laborious methods, to produce gauges which
are correct to within far narrower limits than those mentioned.
In the case of outside dimensions the gauges take the form of a thumb
and finger capable of spanning the object to be measured, and in that
case also two are used, one of which must "go" and the other "not-go."
By methods such as these the shells are measured and examined.
One of the most important features of a shell is its driving band. In
the old days of round cannon balls it is said that the gunners used to
wrap greasy rag round each so as to make it fit the cannon and to
prevent the force of the explosion to some extent wasting itself by
blowing past the ball. That is one of the functions of the driving band.
It is made of copper which is comparatively soft, and it forms a fairly
tight fit in the bore of the gun, so that while the shell is free enough
to slide out of the gun it is tight enough to prevent the loss of any of
the driving force of the explosive.
Public-domain text, read in full here on John Shaqi.
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