Class Book for the School of Musketry, Hythe: Prepared for the Use of OfficersWilford, Ernest Christian
History
Class Book for the School of Musketry, Hythe: Prepared for the Use of Officers
Wilford, Ernest Christian
Firearms; Gunpowder; Military education; Shooting, Military
The disadvantages of glazing consists in its polishing the surface, and
thus depriving it of those angular projections which cause the ignition
and combustion to be carried on with greater rapidity, by rendering the
interstices smaller, the consequence of which is, that there is not so
much gas produced previously to the projectile leaving the gun, and in
large charges a portion will be blown out unfired. There must be a limit
then to glazing, which it would not be proper to exceed. At an
experiment with glazed and unglazed powder, the ranges on the eprouvette
were 75 for glazed, and 98 for unglazed. This loss of power, consequent
on glazing, has caused it to be done away with in France and Russia.
With fine grain powder it is not of so much consequence, as it is, to a
certain degree, corrected by the size of the grain.
~Size of grain determined by size of charge.~
~Tight ramming bad.~
The rapidity with which a charge of gunpowder is consumed will depend
not only in a certain degree upon the size of the grain, but on the
manner in which the charge is put together, for if a charge is closely
pressed, the gases meeting resistance in their endeavours to escape
between the interstices, will not propagate the ignition so rapidly.
With large charges, there exists a positive advantage for the grains to
be rather large, so that the most distant parts of the charge should be
reached by the gases as quickly as possible; whilst with that of a
rifle, the charge being small, the fineness of the grain does not
interfere with the quantity of the gas developed. Whence it may
rationally be concluded that the dimensions of the grains should
increase in proportion to the quantity of the charges into which they
are to enter, that is to say, in proportion to the interstices. Ramming
down a charge tightly must therefore interfere with the velocity of
combustion.
NOTE--The foregoing on the explosive force of gunpowder was taken from
Lieut-Colonel E. M. Boxer’s Treatise on Artillery.
FOULING.
~Produce of decomposed gunpowder.~
The produce obtained by the decomposition of gunpowder are the gaseous
and the solid. The gaseous is chiefly nitrogen and carbonic acid. The
solid is sulphur and potassium, mixed with a little charcoal, but the
solid produce is nearly entirely volatilized at the moment of explosion
through the high temperature.
~Fouling.~
Fouling is occasioned by the deposition inside the barrel of the solid
residue proceeding from the combustion of the powder.
~Conditions of fouling depend on state of atmosphere~
One of the principal of these, namely, the sulphide of Potassa, is
deliquescent, or attracts water from the atmosphere. Hence, on a clear
day, when the air holds little moisture, the fouling does not attain
that semi-fluid state it so speedily attains in a damp day, and it is
not so easily removed, and tends to accumulate inside the barrel.
Fouling may also be increased or diminished, according to the quality of
the powder.
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