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
To measure the mean efficient force of the piston, taking into
account these circumstances, Mr. Watt invented an instrument,
which, like all his mechanical inventions, has answered its
purpose perfectly, and is still in general use. This instrument,
called an _indicator_, consists of a cylinder of about 1-3/4 inch
in diameter, and 8 inches in length. It is bored with great
accuracy, and fitted with a solid piston moving steam-tight in it
with very little friction. The rod of this piston is guided in the
direction of the axis of the cylinder through a collar in the top,
so as not to be subject to friction in any part of its play. At
the bottom of the cylinder is a pipe governed by a stop-cock and
turned in a screw, by which the instrument may be screwed on the
top of the steam-cylinder of the engine. In this position, if the
stop-cock of the indicator be opened, a free communication will be
made between the cylinder of the indicator and that of the engine.
The piston-rod of the indicator is attached to a spiral spring,
which is capable of extension and compression, and which by its
elasticity is capable of measuring the force which extends or
compresses it in the same manner as a spring steel-yard or
balance. If a scale be attached to the instrument at any point on
the piston-rod to which an index might be attached, then the
position of that index upon the scale would be governed by the
position of the indicator-piston in its cylinder. If any force
pressed the indicator-piston upwards, so as to compress the
spring, [Pg275] the index would rise upon the scale; and if, on
the other hand, a force pressed the indicator-piston downwards,
then the spiral spring would be extended, and the index on the
piston-rod descend upon the scale. In each case the force of the
spring, whether compressed or extended, would be equal to the
force urging the indicator-piston, and the scale might be so
divided as to show the amount of this force.
Now, let the instrument be supposed to be screwed upon the top of
the cylinder of a steam-engine, and the stop-cock opened so as to
leave a free communication between the cylinder of the indicator
below its piston and the cylinder of the steam-engine above the
steam-piston. At the moment the upper steam-valve is opened, the
steam rushing in upon the steam-piston will also pass into the
indicator, and press the indicator-piston upwards: the index upon
its piston-rod will point upon the scale to the amount of pressure
thus exerted. As the steam-piston descends, the indicator-piston
will vary its position with the varying pressure of the steam in
the cylinder, and the index on the piston-rod will play upon the
scale, so as to show the pressure of the steam at each point
during the descent of the piston.
Public-domain text, read in full here on John Shaqi.
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