The Steam Engine Explained and Illustrated (Seventh Edition): With an Account of Its Invention and Progressive Improvement, and Its Application to Navigation and Railways; Including Also a Memoir of WattLardner, Dionysius
History
The Steam Engine Explained and Illustrated (Seventh Edition): With an Account of Its Invention and Progressive Improvement, and Its Application to Navigation and Railways; Including Also a Memoir of Watt
Lardner, Dionysius
Steam-engines; Watt, James, 1736-1819
(185.) It is a singular fact, that in the history of this
invention considerable time and great ingenuity were vainly
expended in attempting to overcome a difficulty, which in the end
turned out to be purely imaginary. To comprehend distinctly the
manner in which a wheel carriage is propelled by steam, suppose
that a pin or handle is attached to the spoke of the wheel at some
distance from its centre, and that a force is applied to this pin
in such a manner as to make the wheel revolve. If the tire of the
wheel and the surface of the road were absolutely smooth and free
from friction, so that the face of the tire would slide without
resistance upon the road, then the effect of the force thus
applied would be merely to cause the wheel to turn round, the
carriage being stationary, the surface of the tire slipping or
sliding upon the road as the wheel is made to revolve. But if, on
the other hand, the pressure of the face of the tire upon the road
is such as to produce between them such a degree of adhesion as
will render it impossible for the wheel to slide or slip upon the
road by [Pg336] the force which is applied to it, the consequence
will be, that the wheel can only turn round in obedience to the
force which moves it by causing the carriage to advance, so that
the wheel will roll upon the road, and the carriage will be moved
forward, through a distance equal to the circumference of the
wheel, each time it performs a complete revolution.
It is obvious that both of these effects may be partially produced;
the adhesion of the wheel to the road may be insufficient to prevent
slipping altogether, and yet it may be sufficient to prevent the
wheel from slipping as fast as it revolves. Under such circumstances
the carriage would advance and the wheel would slip. The progressive
motion of the carriage during one complete revolution of the wheel
would be equal to the difference between the complete circumference
of the wheel and the portion through which in one revolution it has
slipped.
When the construction of travelling steam engines first engaged
the attention of engineers, and for a considerable period
afterwards, a notion was impressed upon their minds that the
adhesion between the face of the wheel and the surface of the road
must necessarily be of very small amount, and that in every
practical case the wheels thus driven would either slip
altogether, and produce no advance of the carriage, or that a
considerable portion of the impelling power would be lost by the
partial slipping or sliding of the wheels. It is singular that it
should never have occurred to the many ingenious persons who for
several years were engaged in such experiments and speculations,
to ascertain by experiment the actual amount of adhesion in any
particular case between the wheels and the road. Had they done so,
we should probably now have found locomotive engines in a more
advanced state than that to which they have attained.
Public-domain text, read in full here on John Shaqi.
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