Artificial and Natural FlightMaxim, Hiram S. (Hiram Stevens)
Science
Artificial and Natural Flight
Maxim, Hiram S. (Hiram Stevens)
Aeronautics; Airplanes; Flight
In 1889 I had my attention drawn to some very thin, strong, and
comparatively cheap tubes which were being made in France, and it was
only after I had seen these tubes that I seriously considered the
question of making a flying machine. I obtained a large quantity of them
and found that they were very light, that they would stand enormously
high pressures, and generate a very large quantity of steam. Upon going
into a mathematical calculation of the whole subject, I found that it
would be possible to make a machine on the aeroplane system, driven by a
steam engine, which would be sufficiently strong to lift itself into the
air. I first made drawings of a steam engine, and a pair of these
engines was afterwards made. These engines are constructed, for the most
part, of a very high grade of cast steel, the cylinders being only 3/32
of an inch thick, the crank shafts hollow, and every part as strong and
light as possible. They are compound, each having a high-pressure piston
with an area of 20 square inches, a low-pressure piston of 50·26 square
inches, and a common stroke of 1 foot. When first finished, they were
found to weigh 300 lbs. each; but after putting on the oil cups,
felting, painting, and making some slight alterations, the weight was
brought up to 320 lbs. each, or a total of 640 lbs. for the two engines,
which have since developed 362 horse-power with a steam pressure of 320
lbs. per square inch. A photograph of one of these engines is shown in
Fig. 85.
* * * * *
When first designing this engine, I did not know how much power I might
require from it. I thought that in some cases it might be necessary to
allow the high-pressure steam to enter the low-pressure cylinder direct,
but as this would involve a considerable loss, I constructed a species
of an injector. This injector may be so adjusted that when the steam in
the boiler rises above a certain predetermined point, say 300 lbs. to
the square inch, it opens a valve and escapes past the high-pressure
cylinder instead of blowing off at the safety valve. In escaping through
this valve, a fall of about 200 lbs. pressure per square inch is made to
do work on the surrounding steam and to drive it forward in the pipe,
producing a pressure on the low-pressure piston considerably higher than
the back pressure on the high-pressure piston. In this way a portion of
the work which would otherwise be lost is utilised, and it is possible,
with an unlimited supply of steam, to cause the engines to develop an
enormous amount of power.
* * * * *
Public-domain text, read in full here on John Shaqi.
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