Nitro-Explosives: A Practical TreatiseSanford, P. Gerald (Percy Gerald)
Science
Nitro-Explosives: A Practical Treatise
Sanford, P. Gerald (Percy Gerald)
Celluloid; Explosives
of the measurements.
[Illustration: FIG. 59.--NOBLE'S PRESSURE GAUGE.]
~Noble's Pressure Gauge.~--The original explosive vessels used by Captain
Sir A. Noble in his first experiments were practically exactly similar to
those that he now employs, which consists of a steel barrel A (Fig. 59),
open at both ends, which are closed by carefully fitted screw plugs,
furnished with steel gas checks to prevent any escape past the screw. The
action of the gas checks is exactly the same as the leathers used in
hydraulic presses. The pressure of the gas acting on both sides of the
annular space presses these sides firmly against the cylinder and against
the plug, and so effectually prevents any escape. In the firing plug F is
a conical hole closed by a cone fitting with great exactness, which, when
the vessel is prepared for firing, is covered with fine tissue paper to
act as an insulator. The two firing wires GG, one in the insulated cone,
the other in the firing plug, are connected by a very fine platinum wire
passing through a glass tube filled with meal powder. The wire becomes
red-hot when connection is made with a Leclanche battery, and the charge
which has previously been inserted into the vessel is fired. The crusher
plug is fitted with a crusher gauge H for determining the pressure of the
gases at the moment of explosion, and in addition there is frequently a
second crusher gauge apparatus screwed into the cylinder. When it is
desired to allow the gases to escape for examination, the screw J is
slightly withdrawn. The gases then pass into the passage I, and can be led
to suitable apparatus in which their volume can be measured, or in which
they can be sealed for subsequent chemical analysis.
The greatest care must be exercised in carrying out experiments with this
apparatus; it is particularly necessary to be sure that all the joints are
perfectly tight before exploding the charge. Should this not be the case,
the gases upon their generation will cut their way out, or completely blow
out the part improperly secured, in either case destroying the apparatus.
The effect produced upon the apparatus when the gas has escaped by cutting
a passage for itself is very curious. The surface of the metal where the
escape occurred presents the appearance of having been washed away in a
state of fusion by the rush of the highly heated products.
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