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 process by which the iron is converted into steel is as follows,
and fully accounts for that peculiar quality for which the Indian
steel is valued.
The iron is cut into pieces and packed closely in a crucible of clay,
containing about 1 lb. only of the iron, mixed with a tenth part of
dried wood cut small, the whole covered over with green leaves. The
crucible is then stopped, by covering the mouth with tempered clay, so
as to effectually exclude the air. After a time that is, as soon as
the clay-plugs are sufficiently hard, from twenty to thirty of the
crucibles are built up in an arched form placed in a small blast
furnace, and kept covered with charcoal; thus being subjected to the
heat of the furnace for two or three hours. The process is then
complete.
As soon as the crucibles are cool, they are broken open and the cakes
of steel are found rounded at the bottom.
The top of the cakes should be found covered with striæ, radiating
from a centre, and be free from holes or rough projections. If the
cakes are honeycombed, the process has been imperfect and incomplete.
When re-melted and tilted into rods, a very superior article has been
the result.
The natives prepare the cakes for being drawn into bars, by annealing
them for several hours in a small charcoal furnace, excited by
bellows; the current of air being made to play upon the cakes while
turned over before it, whereby a portion of the combined carbon is
dissipated and the steel probably softened: without which operation
the cakes would break in drawing them. They are drawn by a hammer of
only a very few pounds weight, but the repeated hammering greatly
tends to the production of a highly condensed and perfect article.
Foreseeing the difficulty that would eventually beset us in obtaining a
sufficient supply of old horse nails from Germany and elsewhere, I
directed my experiments to steel entirely, having formerly perceived
that where the greatest quantity of steel existed in the mixture
necessary to form material for their best gun barrels, there also
existed the greatest tenuous strength. I had at that time a decided
objection to all steel, as the following quotation from “The Gun” will
show:--
“We recommend hammer-hardening in all mixtures containing iron. If you
throw the iron aside, and confine your manufacture wholly to steel, it
would be an evil, from this simple cause:--steel is of itself close
enough in the grain; hammering it, therefore, in a cold state, only
tends to make it more brittle. But the reverse is the case with iron:
the more it is beaten the greater becomes its tenacity; and when mixed
with steel in the way the stubs-composition is, it prevents the
particles of steel from becoming too hard.”
Public-domain text, read in full here on John Shaqi.
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