The Story of Great InventionsBurns, Elmer Ellsworth
History
The Story of Great Inventions
Burns, Elmer Ellsworth
Inventions -- History
In a two-cycle gas-engine there is an explosion for every two strokes of
the piston, or one explosion for every revolution of the crank-shaft.
During one stroke the mixture of gas and air on one side of the piston
is compressed and a new mixture enters on the opposite side of the
piston. At the end of this stroke the compressed mixture is exploded,
and power is applied to the piston during about one-fourth of the next
stroke. During the remainder of the second stroke the burned-out gas
escapes, and the fresh mixture passes over from one side of the piston
to the other ready for compression. The two-cycle engine is simpler in
construction than the four-cycle, having no valves. It also has less
weight per horse-power. The cylinder of a two-cycle engine is shown in
Fig. 78.
[Illustration: FIG. 78--TWO-CYCLE GAS-ENGINE. CRANK AND CONNECTING-ROD
ARE ENCLOSED WITH THE PISTON]
A steam-engine is self-starting. The engineer has only to turn the steam
into the cylinder, but the gas-engine requires to be turned until at
least one explosion takes place, for until there is an explosion of gas
and air in the cylinder there is no power.
A gas-engine may have a number of cylinders. Four-cylinder and
six-cylinder engines are common. In a four-cylinder, four-cycle engine,
while one cylinder is on the power stroke the next is on the compression
stroke, the third on the admission stroke, and the fourth on the exhaust
stroke. Fig. 79 shows the Selden "explosion buggy" propelled by a
gas-engine. This machine was the forerunner of the modern automobile.
[Illustration: FIG. 79--SELDEN "EXPLOSION BUGGY." FORERUNNER OF THE
MODERN AUTOMOBILE]
The Steam Locomotive
Late in the eighteenth century a mischievous boy put some water in a
gun-barrel, rammed down a tight wad, and placed the barrel in the fire
of a blacksmith's forge. The wad was thrown out with a loud report, and
the boy's play-mate, Oliver Evans, thought he had discovered a new
power. The prank with the gun-barrel set young Evans thinking about the
power of steam. It was not long until he read a description of a
Newcomen engine. In the Newcomen engine, you will remember, it was the
pressure of air, not the pressure of steam, that lifted the weight.
Evans soon set about building an engine in which the pressure of steam
should do the work. He is sometimes called the "Watt of America," for he
did in America much the same work that Watt did in Scotland. Evans built
the first successful non-condensing engine--that is, an engine in which
the steam, after driving the piston, escapes into the air instead of
into a condenser. The non-condensing engine made the locomotive
possible, for a locomotive could not conveniently carry a condenser.
Evans made a locomotive which travelled very slowly. He said, however:
"The time will come when people will travel in stages moved by
steam-engines from one city to another, almost as fast as birds can fly,
fifteen or twenty miles an hour."
Public-domain text, read in full here on John Shaqi.
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