Discoveries and Inventions of the Nineteenth CenturyRoutledge, Robert
History
Discoveries and Inventions of the Nineteenth Century
Routledge, Robert
Inventions -- History -- 19th century
Artillerists had long carried on a warm controversy as to the relative
merits of wrought iron and steel in gun construction, the latter
material being regarded with shyness on account of its want of
uniformity as formerly produced. Krupp however began as early as 1847 to
make guns of his excellent crucible steel, and through bad report and
good report confined himself to this material until, it is asserted, by
1878 he had supplied over 17,000 steel guns of all calibres. He began by
making a 3–pounder gun, but soon produced pieces of larger size, all of
which were bored and turned out of solid masses of metal. At a later
period the plan of shrinking on strengthening hoops of steel was
adopted. The Krupp guns have found extensive favour, and many very heavy
ones have been made, some indeed of greater weight than the 110–ton
Armstrong; but the excess of weight is due to the mass of metal which
the Krupp construction of the breech mechanism requires. Thus Krupp’s
120–ton gun has a muzzle energy of but 45,796 foot-tons, while that of
the Elswick piece is 55,105 foot-tons.
[Illustration:
FIG. 105.—_The Citadel of Strasburg after the Prussian Bombardment._
]
The breech arrangement in the Krupp guns consists of a lateral slot into
which slides a closing block after the charge has been inserted from the
rear. An obsolete form of this breech piece is seen in Fig. 104, which
represents a 32–pounder gun such as was used in sieges by the Prussians
in the Franco-German War. It will be observed here that the slot and
breech piece are of rectangular form; but this shape, causing the piece
to be weak where most strength was required, was afterwards altered into
a D-shaped section, the curved side being of course to the rear. That
difficulty which baffled the earliest attempts at breech-loading is the
same that has given much trouble to modern gunmakers. It consists in so
closing the breech that no escape of the powder gases can take place
there at the moment of discharge. When we remember that the momentary
pressure of the gases in the powder chamber may amount to more than 40
tons on the square inch, we can well understand the enormous velocity
with which they will rush forth from even the smallest interspace
between the base of the gun and the breech block, but we can hardly
realise without actual inspection the mechanical action they produce in
their passage: when once the escape occurs, a channel is cut in the
metal as if part had been removed by an instrument, and the piece in
that condition is disabled for further use. Several devices are in use
obtaining perfect closure of the breech, which is technically called
_obturation_ (Latin, _obturare_, to close up). One of these consists in
fitting closely into the circumference of the bore a ring of very
elastic steel, turned up at the edges towards the powder chamber. The
gas pressure forces the edge of this ring still more closely against the
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