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
[1] Bronze consists of 78 parts copper to 20 of tin. Bell metal--78
copper and 22 tin. Gun metal--100 copper to 8 to 10 tin. Brass--2
copper, 1 zinc and calamine stone, to harden and colour.
~Influence of shape of grain on ignition.~
If the part to which the heat is applied be of an angular shape, the
inflammation will take place quicker than if it be of a round or flat
form, on account of the greater surface that is exposed to the increased
temperature.
~The form of the grain influences the velocity of the transmission of
flame.~
If the grains are of a rounded form, there would be larger interstices,
and a greater facility will be afforded to the passage of the heated
gas, and therefore this shape is most favourable to the rapid and
complete inflammation of each grain in the whole charge. On the other
hand, particles of an angular or flat form, fitting into each other as
it were, offer greater obstruction to this motion, and the velocity of
the transmission of inflammation is thereby diminished.
~Effect of size on the velocity of transmission of inflammation.~
If the grains be small, the interstices will be small also, and the
facility to the expansion of the gas thereby diminished. In the
experiments with trains of powder, the increased surface exposed to the
heated gas was found to more than compensate for the diminished facility
to its expansion, and generally a train of small-grained powder laid
upon a surface without being enclosed, will be consumed more quickly
than a train of large-grained powder.
~Large grain best suited for heavy ordnance.~
But this is not the case in a piece of ordnance, a circumstance which
amongst others will account for the diminished initial velocity given to
the shot by a charge of small-grained musket powder, below that produced
by the large-grained usually adopted for this service.
~Velocity of the transmission of inflammation of the charge.~
~Estimate of Mr. Piobert.~
When a number of grains of powder are placed together as in the charge
of a gun, and a few of them are ignited at one end of the cartridge, a
certain quantity of gas is developed of a temperature sufficiently high
to ignite those in their immediate vicinity. This has also such
elasticity as to enable it to expand itself with considerable velocity.
Again, the grains which are so ignited continue the inflammation to
others in the same manner. The absolute velocity of expansion of this
gas is very considerable; but the grains of gunpowder in the charge
offer an obstruction to this motion, the gas having to wind its way
through the interstices, and consequently the velocity is considerably
diminished, but it is quite clear that it must be very much greater than
the velocity of combustion. Mr. Piobert estimates the velocity of
transmission of inflammation of a charge in a gun at about 38 feet per
second, and in all probability even this is much under the mark.
~Experiments made on this subject.~
Public-domain text, read in full here on John Shaqi.
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