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
If the crank were absolutely at rest in either of the positions
above described, it is apparent that the engine could not be put
in motion by the steam; but if the engine has been previously in
motion, then the mass of matter forming the crank, and the axle on
which the crank is formed, having already had a motion of
rotation, will have a tendency to preserve the momentum it has
received, and this tendency will be sufficient to throw the crank
K I out of either of those critical positions which have been
described. Having once escaped these dead points, then the
connecting rod forming an angle, however obtuse or acute, with the
crank, the pressure or pull upon the former will have a tendency
to produce rotation in the latter. As the crank revolves, however,
the influence [Pg205] of the connecting rod upon it will vary
according to the angle formed by the connecting rod and crank.
When that angle is a right angle, then the effect of the
connecting rod on the crank is greatest, since the force upon it
has the advantage of the whole leverage of the crank; but
according as the angle formed by the crank and connecting rod
becomes more or less acute or obtuse in the successive attitudes
which they assume in the revolution of the crank, the influence of
the connecting rod over the crank varies, changing from nothing at
the two dead points already described, to the full effect produced
in the two positions where they are at right angles. In
consequence of this varying leverage, by which the force with
which the connecting rod is driven by the steam is transmitted to
the axle on which the crank revolves, a corresponding variation of
speed would necessarily be produced in the motion imparted to the
crank. The speed at the dead points would be least, being due
altogether to the momentum already imparted to the revolving mass
of the crank and axle; and it would gradually increase and be
greatest at the points where the effect of the crank on the
connecting rod is greatest. Although this change of speed would
not affect the actual mechanical efficacy of the machine, and
although the same quantity of steam would perform the same work at
the varying velocity as it would do if the velocity were
regulated, yet this variation of speed would be incompatible with
the purposes to which it was now proposed that the steam engine
should be applied in manufactures. In these a regular uniform
motion should be imparted to the main axle.
(123.) One of the expedients which Watt proposed for the
attainment of this end was, by placing two cranks on the same
axle, in different positions, to be worked by different cylinders,
so that while one crank should be at its dead points, the other
should be in the attitude most favourable for its action. This
expedient has since, as we shall see, been carried into effect in
steam vessels; but one more simple and efficient presented itself
in the use of a _fly-wheel_.
Public-domain text, read in full here on John Shaqi.
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