Gunnery in 1858: Being a Treatise on Rifles, Cannon, and Sporting Arms: Explaining the Principles of the Science of Gunnery, and Describing the Newest Improvements in Fire-ArmsGreener, William
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Gunnery in 1858: Being a Treatise on Rifles, Cannon, and Sporting Arms: Explaining the Principles of the Science of Gunnery, and Describing the Newest Improvements in Fire-Arms
Greener, William
Firearms; Gunnery
The grains afterwards undergo a process of _glazing_, by friction
against each other, in barrels containing nearly 200 lbs., making forty
revolutions in a minute, and lasting several hours, according to the
fancy of the purchaser. This part of the business we entirely disagree
with, as injurious to the quick and _certain ignition_. Gunpowder is
finally dried by an artificial temperature of 140° Fahrenheit, which is
suffered gradually to decline. The last process is sifting it clear of
dust, and then packing it in canisters or otherwise.
The utility of the process of granulation results from the impossibility
of firing mealed powder sufficiently simultaneously to effect an
explosion; and also from the fact that gunpowder, in a mass, does not
explode. Fire a solid piece of mill-cake, and it does not flash off like
unto granulated powder, but burns gradually, though with an extreme
fury, until the whole is consumed. This arises from its density, the
compression in the press; it also teaches us one fact, that to be of the
greatest service, the time each grain should occupy in burning should be
proportioned to the size of the gun for which it is required; since it
is clear that the explosion of a heap of gunpowder is but the rapid
combustion of all its parts. This action, as is well known, is so rapid,
even in a large quantity of powder, that it appears to be a sudden and
simultaneous burst of flame; though philosophically and actually it is
not so.
Fine grain, when unconfined, explodes quicker than large, or is sooner
burnt out, and consequently generates more force in the same period of
time; but when it comes to large quantities, its very quickness is
detrimental to its force, by condensing the air around the exterior of
the mass of fluid which thus constrains its bound. In small quantities,
the proportion of condensation is not so apparent, and hence the reason
why greater velocities can be obtained with small arms than with cannon.
There exists a diversity of opinion in regard to the strength or
projectile force of gunpowder. Dr. Ure remarks--“If we inquire how the
maximum gaseous volume is to be produced from the chemical reaction of
the elements of nitre on charcoal and sulphur, we shall find it to be by
the generation of carbonic oxide and sulphurous acid, with the
disengagement of nitrogen. This will lead us to the following
proportions of these constituents:
Hydrogen 1. Per Cent.
1 prime equivalent of nitre 102 75·00
1 „ „ sulphur 16 11·77
3 „ „ charcoal 18 13·23
--- ------
136 100·00
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