Scientific American Supplement, No. 324, March 18, 1882 — John Shaqi
Scientific American Supplement, No. 324, March 18, 1882Various
Science
Scientific American Supplement, No. 324, March 18, 1882
Various
Science -- Periodicals
The French land service (_De Bange_) arrangement requires no cutting
into the gun, and no enlargement of the breech screw beyond the size of
the chamber, while it is renewable in a few minutes, merely requiring a
fresh asbestos pad when worn. As regards durability, there is probably
no great difference. I have been informed that with a light gun as many
as 3,000 rounds have been fired with one asbestos pad. But usually
it may be considered that a renewal will be required of the wearing
surfaces of any breech-loader after a number of rounds, varying from six
or seven hundred, with a field gun, to a hundred or a hundred and fifty
with a very heavy gun. Full information is wanting on this point.
Having now decided on the material of which the gun is to be composed,
and the manner in which it is to be constructed, and having, moreover,
settled the knotty point of how it is to be loaded, we come to the
general principles on which a gun is designed. It must not be overlooked
that a gun is a machine which has to perform a certain quantity of work
of a certain definite kind, and, like all other machines, must be formed
specially for its purpose. The motive power is gunpowder, and the
article to be produced is perhaps a hole in an armor-plate, perhaps a
breach in a concealed escarp, or perhaps destructive effect on troops.
These articles are quite distinct, and though all guns are capable of
producing them all to some extent, no gun is capable of producing more
than one in the highest state of excellence.
Thus, for armor piercing, a long pointed bolt, nearly solid, is
required. It must strike with great velocity, and must therefore be
propelled by a very large charge of powder. Hence an armor-piercing gun
should have a large chamber and a comparatively small bore of great
length.
For breaching fortifications, on the other hand, curved fire is
necessary; the escarps of modern fortresses are usually covered from
view by screens of earth or masonry in front, so that the projectiles
must pass over the crest of the screen, and drop sufficiently to strike
the wall about half-way down, that is to say, at an angle of 15° to 20°.
To destroy the wall, shell containing large bursting charges of powder
are found to be particularly well adapted. Now it is clear that, for a
shell to drop at an angle of 15° or 20° at the end of a moderate range,
the velocity at starting must be low. Hence, for pieces intended for
breaching no enlarged powder chamber is wanted; the effect on the wall
is due to the shell, which must be made of a shape to hold the most
powder for a given weight; and, therefore, rather short and thick. This
gives us a large bore, which need not be long, as little velocity is
required.
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