Scientific American Supplement, No. 360, November 25, 1882Various
Science
Scientific American Supplement, No. 360, November 25, 1882
Various
Science -- Periodicals
In case of an extraordinarily large output, the author recommends a
second crane, F, for the purpose of placing the ingots in the pits
only, the crane, L, being entirely used for picking the ingots out
and swinging them round to the live rollers of the mill. The relative
position of the cranes, soaking pits, and blooming mill may of course be
variously arranged according to circumstances, and the soaking pits may
be arranged in single or more rows, or concentrically with the crane at
pleasure.
Figs. 4 and 5 also show outline plan and elevation of a Bessemer plant,
conveniently arranged for working on the soaking pit system. A A are
the converters, with a transfer crane, B. C is the casting pit with
its crane, D. E E are the two ingot cranes. F is a leading crane which
transfers the ingots from the ingot cranes to the soaking pits, K K,
commanded by the crane, L, which transfers the prepared ingots to the
mill, M. as before described.
* * * * *
TEMPERING BY COMPRESSION.
L. Clemandot has devised a new method of treating metals, especially
steel, which consists in heating to a cherry red, compressing strongly
and keeping up the pressure until the metal is completely cooled. The
results are so much like those of tempering that he calls his process
tempering by compression. The compressed metal becomes exceedingly hard,
acquiring a molecular contraction and a fineness of grain such that
polishing gives it the appearance of polished nickel. Compressed steel,
like tempered steel, acquires the coercitive force which enables it to
absorb magnetism. This property should be studied in connection with
its durability; experiments have already shown that there is no loss of
magnetism at the expiration of three months. This compression has no
analogue but tempering. Hammering and hardening modify the molecular
state of metals, especially when they are practiced upon metal that is
nearly cold, but the effect of hydraulic pressure is much greater.
The phenomena which are produced in both methods of tempering may be
interpreted in different ways, but it seems likely that there is a
molecular approximation, an amorphism from which results the homogeneity
that is due to the absence of crystallization. Being an operation which
can be measured, it may be graduated and kept within limits which are
prescribed in advance; directions may be given to temper at a
specified pressure, as readily as to work under a given pressure of
steam.--_Chron. Industr_.
* * * * *
ECONOMICAL STEAM POWER.
[Footnote: A paper read by title at a recent stated meeting of the
Franklin Institute]
By WILLIAM BARNET LE VAN.
The most economical application of steam power can be realized only by
a judicious arrangement of the plant: namely, the engines, boilers, and
their accessories for transmission.
Public-domain text, read in full here on John Shaqi.
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