How he overcame the various difficulties that faced him and constructed
a steam-engine capable of the task allotted to it forms a story in
itself, too long for recital here. His first power-driven aerodrome of
model size was begun in November of 1891, the scale of construction
being decided with the idea that it should be large enough to carry an
automatic steering apparatus which would render the machine capable of
maintaining a long and steady flight. The actual weight of the first
model far exceeded the theoretical estimate, and Langley found that a
constant increase of weight under the exigencies of construction was
a feature which could never be altogether eliminated. The machine was
made principally of steel, the sustaining surfaces being composed of
silk stretched from a steel tube with wooden attachments. The first
engines were the oscillating type, but were found deficient in power.
This led to the construction of single-acting inverted oscillating
engines with high and low pressure cylinders, and with admission and
exhaust ports to avoid the complication and weight of eccentric and
valves. Boiler and furnace had to be specially designed; an analysis
of sustaining surfaces and the settlement of equilibrium while in
flight had to be overcome, and then it was possible to set about the
construction of the series of model aerodromes and make test of their
‘lift.’
By the time Langley had advanced sufficiently far to consider it
possible to conduct experiments in the open air, even with these
models, he had got to his fifth aerodrome, and to the year 1894.
Certain tests resulted in failure, which in turn resulted in further
modifications of design, mainly of the engines. By February of 1895
Langley reported that under favourable conditions a lift of nearly
sixty per cent of the flying weight was secured, but although this was
much more than was required for flight, it was decided to postpone
trials until two machines were ready for the test. May, 1896, came
before actual trials were made, when one machine proved successful and
another, a later design, failed. The difficulty with these models was
that of securing a correct angle for launching; Langley records how, on
launching one machine, it rose so rapidly that it attained an angle of
sixty degrees and then did a tail slide into the water with its engines
working at full speed, after advancing nearly forty feet and remaining
in the air for about three seconds. Here, Langley found that he had
to obtain greater rigidity in his wings, owing to the distortion of
the form of wing under pressure, and how he overcame this difficulty
constitutes yet another story too long for the telling here.
Public-domain text, read in full here on John Shaqi.
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