A system of pyrotechny : $b Comprehending the theory and practice, with the application of chemistry; designed for exhibition and for war.Cutbush, James
History
A system of pyrotechny : $b Comprehending the theory and practice, with the application of chemistry; designed for exhibition and for war.
Cutbush, James
Fireworks; Military fireworks
The whole machine is so simple, easy, and expeditious, that, as Dr.
Hutton remarks, the weighing of the powder is the chief part of the
trouble; and so accurate and uniform, that the successive repetition,
or firings, with the same quantity of the same sort of powder, hardly
ever make a difference in the recoil of the one-hundredth part of
itself.
Gregory (_Treatise of Mechanics_, vol. ii, p. 178) has given a more
particular description of the eprouvette of Dr. Hutton; namely, that
it is a small brass gun, 2-1/2 feet long, suspended by a metallic
stem, or rod, turning, by an axis, on a firm and strong frame, by
means of which, the piece oscillates in a circular arch. A little
below the axis, the stem divides into two branches, reaching down to
the gun, to which the lower ends of the branches are fixed, the one
near the muzzle, the other near the breech of the piece. The upper
end of the stem is firmly attached to the axis, which turns very
freely by its extremities in the sockets of the supporting frame; by
which means, the gun and stem vibrate together in a vertical plane,
with a very small degree of friction. The charge is the same we have
mentioned, usually about two ounces, without any ball, and then
fired; by the force of the explosion, the piece is made to recoil or
vibrate, describing an arch or angle, which will be greater or less,
according to the quantity or strength of the powder.
To measure the quantity of recoil, and consequently the strength of
the powder, a circular brazen or silver arch of a convenient extent,
and of a radius equal to its distance below the axis, is fixed
against the descending two branches of the stem, and graduated into
divisions, according to the purpose required by the machine: _viz._
1st. Into equal parts, or _degrees_, for the purpose of determining
the angle actually described in the vibration.
2nd. Into equal parts, according to the _chords_, being, in fact, 100
times the double sines of the half angles, and running up to 100, as
equivalent to 90 degrees.
3d. Into unequal parts, according to the versed sines; they are,
in truth, 100 times the versed sines of our common tables, 141-1/2
corresponding with 90 degrees. These serve to compare the forces.
The divisions in these scales are pointed out by an index, which is
carried on the arch during the oscillation, and then, stopping there,
shows the actual extent of the vibration. Two ounces of powder, give,
on an average, according to the experiments of professor Gregory,
about 36 on the chords, or about 21° on the arch. A more detailed
account, with diagrams, may be seen, by consulting Hutton's Tracts,
vol. iii, p. 153.
Public-domain text, read in full here on John Shaqi.
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