Langley Memoir on Mechanical Flight, Parts I and II: Smithsonian Contributions to Knowledge, Volume 27 Number 3, Publication 1948, 1911Langley, S. P. (Samuel Pierpont)
History
Langley Memoir on Mechanical Flight, Parts I and II: Smithsonian Contributions to Knowledge, Volume 27 Number 3, Publication 1948, 1911
Langley, S. P. (Samuel Pierpont)
Aeronautics; Flight
The completed frame, which is perhaps best shown in Plates 49, 50
and 51, and Plate 60, Figs. 1, 2 and 3, in spite of its size gave an
appearance of grace and strength which is inadequately represented
in the photographs. In making the designs for the large aerodrome no
data were available for use in calculating the strains that would
come on the different parts of the frame while in the air, and the
size and thickness of the tubes and the strength of the guy-wires
were consequently determined almost entirely by “rule of thumb,”
backed by experience with the models. Although the dimensions, shape,
and arrangement of most of the auxiliary parts of the machine were
considerably changed during the course of construction in accordance
with the indications of the exhaustive series of shop tests, the
fundamental features of the construction were practically unaltered,
but the changes in the guy-wire system and in the fittings by which
they were attached, made the frame as a whole several times as strong
as it was originally, and it was felt that the direction of further
improvements in it would be shown only by actual test of it in flight
where any weaknesses would be certain to manifest themselves.
It may be well to remark here that even with the data which were
later obtained, judgment based on experience proved after all to
be the safest guide for proportioning the strength of the various
parts. It can be assumed that a live stress will produce a strain
ten times as great as that due to a static stress on the part when
the machine is stationary. For greater safety, it would be still
better to assume a strain twenty times as great. If one is building
bridges, houses, and similar structures, where weight is not a prime
consideration, it would be criminal negligence to fail to provide a
sufficient “factor of safety,” or what in many instances may be more
properly termed a “factor of ignorance,” while at the present time
the insistence on large factors of safety in machines intended to
fly would so enormously increase the weight that, before one-half
the necessary parts were provided, the weight would be many times
what could possibly be supported in the air. Later, no doubt, as
experience is gained in properly handling the machine in the air,
increased strength entailing [p187] increased weight may be added
in proportion to the skill acquired; and there is no doubt that man
will acquire this skill with marvelous rapidity, approaching, if not
equaling, that exhibited by him in the use of the bicycle, which,
when first ridden, requires not only all of the rider’s skill but
that of a couple of assistants, but when once mastered requires
hardly more thought for its proper manipulation than even the act of
walking involves, the balancing and guiding being done intuitively
merely by the motion of the body and with practically no exertion.
[p188]
CHAPTER VI
CONSTRUCTION OF SUPPORTING SURFACES
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