Flying Machines TodayEnnis, William D. (William Duane)
History
Flying Machines Today
Ennis, William D. (William Duane)
Aeronautics; Flying-machines
Fabrics are obtainable in various colors, painted, varnished, or wholly
uncoated. The rubber and cotton mixtures are regularly woven in France
and Germany for aeroplanes and balloons. The cars and machinery are
frequently shielded by a fabricated wall. Weights of envelope materials
range from one twenty-third to one-fourteenth pound per square foot,
and breaking stresses from twenty-eight to one hundred and thirty
pounds. Pressures (net) in the main envelope are from three-fifths to
one and a quarter _ounces_ per square inch, those in the ballonets
being somewhat less. The _Patrie_ of 1907 had an envelope guaranteed
not to allow the leakage of more than half a cubic inch of hydrogen per
square foot of surface per twenty-four hours.
[Illustration: MANUFACTURING THE ENVELOPE OF A BALLOON]
[Illustration: INSPECTING THE ENVELOPE OF ANDRÉE'S BALLOON "L'OERNEN"]
The best method of cutting the fabric is to arrange for building up the
envelope by a series of strips about the circumference, the seams being
at the bottom. The two warps of the cloth should cross at an angle so
as to localize a rip or tear. Bands of cloth are usually pasted over
the seams, inside and out, with a rubber solution; this is to prevent
leakage at the stitches.
Framing
In the _Zeppelin_, the rigid aluminum frame is braced every forty-five
feet by transverse diametral rods which make the cross-sections
resemble a bicycle wheel (page 68). This cross-section is not circular,
but sixteen-sided. The pressure is resisted by the framework itself,
the envelope being required to be impervious only. The seventeen
compartments are separated by partitions of sheet aluminum. There is a
system of complete longitudinal bracing between these partitions. Under
the main framework, the cars and machinery are carried by a truss about
six feet deep which runs the entire length. The cars are boat-shaped,
twenty feet long and six feet wide, three and one-half feet high,
enclosed in aluminum sheathing. These cars, placed about one hundred
feet from the ends, are for the operating force and machinery. The
third car, carrying passengers, is built into the keel.
[Illustration: WRECK OF THE "ZEPPELIN"]
In non-rigid balloons like the _Patrie_, the connecting frame must be
carefully attached to the envelope. In this particular machine, cloth
flaps were sewed to the bag, and nickel steel tubes then laced in
the flaps. With these tubes as a base, a light framework of tubes
and wires, covered with a laced-on waterproof cloth, was built up
for supporting the load. Braces ran between the various stabilizing
and controlling surfaces and the gas bag; these were for the most
part very fine wire cables. The weight of the car was concentrated
on about seventy feet of the total length of 200 feet. This accounts
for the deformation of the envelope shown in the illustration (page
77). The frame and car of this balloon were readily dismantled for
transportation.
Public-domain text, read in full here on John Shaqi.
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