Scientific American, Volume XXIV., No. 12, March 18, 1871: A Weekly Journal of Practical Information, Art, Science,; Mechanics, Chemistry, and Manufactures.Various
Science
Scientific American, Volume XXIV., No. 12, March 18, 1871: A Weekly Journal of Practical Information, Art, Science,; Mechanics, Chemistry, and Manufactures.
Various
Science -- Periodicals; Technology -- Periodicals
A patent was granted by the United States Patent Office, Sept. 13,
1870, to J. C. Atwood, in which the inventor claims the use of iodide
of potassium in connection with the carbons and fluxes used in making
and refining iron. In his specification he states that he uses about
_fifteen grains_ of this salt to eighty pounds of the metal. This
is about 1/373 of one per cent. He uses in connection with this
exceedingly small proportion of iodide of potassium, about two ounces
of lampblack, or charcoal, and four ounces of manganese, and asserts
that steel made with these materials will be superior in quality
to that made by the old method. These claims we are inclined to
discredit. Certainly, we see no chemical reason why this small amount
of iodide should produce such an effect, and the specification itself
throws no light upon our darkness.
If the experiments in these so-called processes have no better basis
than is apparent from such information as at present can be gathered
respecting them, it is probable we shall wait some time before the
promised revolution in iron and steel manufacture is accomplished
through their use.
* * * * *
RUBBER TIRES FOR TRACTION ENGINES.
When it was first discovered that a smooth-faced driving wheel,
running on a smooth-faced rail, would "bite," the era of iron railways
and locomotive engines may be said to have fairly commenced. The
correction of a single radical error was, in this case, the dawn of a
new system of travel, so extensive in its growth and marvelous in its
results, that even the wildest dreamer could not, at that time, have
imagined the consequences of so simple a discovery.
A popular and somewhat similar error regarding the bite of wheels on
rough and uneven surfaces, has also prevailed. We say popular error,
because engineers have not shared it, and it has obtained, to any
notable extent, only among those unfamiliar with mechanical science.
The error in question is, that hard-surfaced wheels will not bite on
a moderately rough surface, sufficiently to give an efficient tractile
power. It seems strange that this error should have diffused itself
very extensively, when it is remembered that a certain degree of
roughness is essential to frictional resistance. The smoothness of the
ordinary railway track is roughness compared to that of an oiled or
unctuous metallic surface; and it has been amply demonstrated that
the resistance of friction, of two bearing surfaces depends, not
upon their extent, but upon the pressure with which they are forced
together. A traction wheel, of given weight, resting upon two square
inches of hard earth or rock, would develop the same tractile power
as though it had a bearing surface of two square feet of similar
material.
Public-domain text, read in full here on John Shaqi.
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