Inventors at Work, with Chapters on DiscoveryIles, George
History
Inventors at Work, with Chapters on Discovery
Iles, George
Inventions -- History; Inventors
in such relation as to permit the commercial production of the metal.
Aluminium as constructive material has disappointed some of its earlier
advocates. It is difficult to work, gumming the teeth of files and
resisting cutting and drilling tools by virtue of the very toughness
which makes it desirable for tubes, columns, and the like. Its
excellences, however, are manifold: the German army on investigation
found that helmets of aluminium, as light as felt, turned the glancing
impact of a bullet. For soldiers’ use it now forms not only helmets, but
cooking vessels, cartridge cases, buttons, sword and bayonet scabbards.
It gives the photographer as well as the surveyor instruments which
unite strength with lightness. It has furthermore the quality which has
long given value to the lithographic stone of Hohenlofen in Bavaria.
Aluminium takes a sketch as perfectly as does the stone, with the
inestimable advantages that the metal may be readily curved for a
cylinder press, that it is compact and light in storage, while without
the brittleness which has made stone so costly a servant to both artists
and printers. To produce a deep color from stone it may be necessary to
print one impression over another again and again; from aluminium a
single impression is enough, as severe pressure may be safely applied.
Aluminium has so great an affinity for oxygen as to play a conspicuous
part in the metallurgy of other metals. In the casting of iron, steel or
brass, the addition to each ton of two to five pounds of aluminium
greatly improves the product; the aluminium by combining with the
occluded gases reduces the blowholes and renders the molten metal more
fluid and therefore more homogeneous. A second use for aluminium turns
on the same quality; it was devised by Dr. Goldschmidt for producing
high temperatures, and is especially useful in welding steel rails and
pipes. A mixture of iron oxide and aluminium finely divided is ignited
by a magnesium ribbon; a very high temperature results as the aluminium
combines with the oxygen derived from the iron oxide.
Aluminium by reason of its lightness occupies a large field in naval and
military equipments, in motor-car construction, and the like, where the
reduction of weight is of paramount importance. For cooking utensils the
use of aluminium is constantly extending; the metal is a capital
conductor of heat, is not liable to deteriorate in use, and gives rise,
if dissolved, to harmless compounds. The chief objection to aluminium is
its low tensile strength, which, for the cast metal is only 10,000 to
16,000 pounds per square inch. An improvement is effected by adding as
an alloy a small quantity of some other metal, such as nickel or copper.
When one part of aluminium is joined with nine parts of copper we have
aluminium bronze, the strongest and handsomest of copper alloys, much
resembling gold in its lustre.
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