A feature of Farman’s biplane was the landing gear, as shown in Fig. 46.
It comprised two long skids, which projected in front of the main-planes
beneath the machine, and continued some distance rearward; while mounted
upon each of these skids, at a point below the front edge of the lower
main-plane, was a short metal axle which bore two small bicycle wheels,
fitted with pneumatic tyres. Holding the axle to the skid were thick
india-rubber bands, and the working of this apparatus was as follows:
when the machine moved across the ground, the bicycle wheels bore its
weight, and the skids were prevented from making contact with the
surface. But when alighting from a flight, should the biplane strike
ground heavily, then the wheels were pushed up by the yielding of the
elastic bands, and the skids took the shock of the impact. Light, and
with no complications, this form of gear proved remarkably efficient;
and by degrees it came to be used, not only in the Farman, but upon
other types as well. The necessity in any such device was lightness;
when the machine was in the air, and until it landed from its flight,
the alighting gear was so much dead weight--and not only this, but the
air-pressure on struts and stays acted as a check upon the speed of the
machine. Any landing gear to be useful and efficient, therefore, must
be light and yet strong, and have few parts which can offer resistance
to the air.
[Illustration: PLATE VII.--A FARMAN IN FLIGHT.
Here, using the biplane with which he first flew in England, Mr.
Grahame-White is seen ascending from a field near Rugby during his
attempts to win the £10,000 London-Manchester prize.]
Farman planned to win prizes at the Rheims flying meeting, and he
succeeded. But the flights he made would hardly have been possible had
not he obtained the use of a new motor--one destined to play a vital
part in the development of flying. This was the Gnome; and to understand
its triumph an explanation is necessary. Before Farman fitted the first
of these motors to his biplane, engines in aeroplanes had been
troublesome and unreliable. The difficulty was that they must be very
light, and yet capable of running at high speeds and under heavy loads.
Working, say, at 1000 revolutions a minute or even more, they drove the
propeller of an aeroplane at full speed for the whole of the time it was
in the air, and enjoyed no occasional rest, or slackening of power, as
was the case with motor-car engines on the road. The result was that,
being light and experimental--and at the same time so heavily
worked--they either broke small but vital parts, such as a valve or
connecting-rod, or became over-heated and failed to deliver their power.
Public-domain text, read in full here on John Shaqi.
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