Every-day Science: Volume 6. The Conquest of NatureWilliams, Henry Smith
Science
Every-day Science: Volume 6. The Conquest of Nature
Williams, Henry Smith
Industrial arts; Machinery
"To start the engine, the fly-wheel is pulled round, thus moving the
piston, which draws into the cylinder a mixture of gas and air through
about half its stroke; the mixture is then exploded by an electric
spark, and propels the piston to the end of its stroke, the pressure
meanwhile falling, by cooling and expansion, to that of the atmosphere
when exhaust takes place. In the return stroke the process is repeated,
the action of the engine resembling that of the double-acting steam
engine, and having a one-stroke cycle. The cylinder and covers are
cooled by circulating water. The firing electricity was supplied by two
Bunsen batteries and an induction coil, the circuit being completed at
the right intervals by contact pieces on an insulating disc on the
crank-shaft; the ignition spark leaped across the space between two
wires carried about one-sixth of an inch apart in a porcelain holder."
In 1865 Mons. P. Hugon patented an engine similar to that of Lenoir,
except that ignition was accomplished by an external flame instead of
by electricity. The ignition flame was carried to and fro in a cavity
inside a slide valve, moved by a cam so as to get a rapid cut-off, and
permanent lights were maintained at the ends of the valve to re-light
the flame-ports after each explosion. The gas was supplied to the
cylinder by rubber bellows, worked by an eccentric on the crank-shaft.
This engine could be operated satisfactorily, except as to cost, but
the heavy gas consumption made it uneconomical.
An important improvement in this regard was introduced by the Germans,
Herrn. E. Langen and N. A. Otto, who under patents bearing date of
1866 introduced a so-called "free" piston arrangement--that is to say
an arrangement by which the piston depends for its action partly upon
the momentum of a fly-wheel. This principle had been proposed for a
gas engine as early as 1857, but the first machine to demonstrate its
feasibility was that of Langen and Otto. Their engine greatly decreased
the gas consumption and hence came to be regarded as the first
commercially successful gas engine. It was, however, noisy and limited
to small sizes. The cycle of operations of an engine of this type is
described as follows:
[Illustration: GAS AND OIL ENGINES.
Lower right-hand figure, a very early type of commercially successful
gas engine. It has a "free" piston, an arrangement that was first
proposed for a gas engine in 1857, but only brought into practical form
by Langen & Otto under their patent of 1866. Upper figure, the gas
engine patented by Lenoir in 1860, one of the very first practically
successful engines. Lower left-hand figure, a sectional view of a
modern gas engine of the type used as the motor of the automobile.]
"(a) The piston is lifted about one-tenth of its travel by the momentum
of the fly-wheel, thus drawing in a charge of gas and air.
"(b) The charge is ignited by flame carried in by a slide valve.
Public-domain text, read in full here on John Shaqi.
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