The Steam Engine Familiarly Explained and Illustrated: With an historical sketch of its invention and progressive improvement; its applications to navigation and railways; with plain axioms for railway speculatorsLardner, Dionysius
History
The Steam Engine Familiarly Explained and Illustrated: With an historical sketch of its invention and progressive improvement; its applications to navigation and railways; with plain axioms for railway speculators
Lardner, Dionysius
Steam-engines -- Early works to 1850
A sketch of these propellers is given in fig. 53. A is the carriage
moving on the railroad, L and L´ are the legs, F and F´ the feet. The
foot F has a joint at O, which corresponds to the ankle; another joint
is placed at K, which corresponds to the knee; and a third is placed
at L, which corresponds to the hip. Similar joints are placed at the
corresponding letters in the other leg. The knee-joint K is attached
to the end of the piston of the cylinder. When the piston, which is
horizontal, is pressed outwards, the leg L presses the foot F
against the ground, and the resistance forces the carriage A onwards.
As the carriage proceeds, the angle K at the knee becomes larger, so
that the leg and thigh take a straighter position; and this continues
until the piston has reached the end of its stroke. At the hip L there
is a short lever, L M, the extremity of which is connected by a cord
or chain with a point, S, placed near the shin of the leg. When the
piston is pressed into the cylinder, the knee, K, is drawn towards the
engine, and the cord, M S, is made to lift the foot, F, from the
ground; to which it does not return until the piston has arrived at
the extremity of the cylinder. On the piston being again driven out of
the cylinder, the foot, F, being placed on the road, is pressed
backwards by the force of the piston-rod at K; but the friction of the
ground preventing its backward motion, the re-action causes the engine
to advance: and in the same manner this process is continued.
Attached to the thigh, at N, above the knee, by a joint, is a
horizontal rod, N R, which works a rack, R. This rack has beneath it a
cog-wheel. This cog-wheel acts in another rack below it. By these
means, when the knee K is driven _from_ the engine, the rack R is
moved _backwards_; but the cog-wheel, acting on the other rack beneath
it, will move the latter _in the contrary direction_. The rack R being
then moved _in the same direction with the knee_, K, it follows that
the other rack will always be moved _in a contrary direction_. The
lower rack is connected by another horizontal rod with the thigh of
the leg, L´ F´, immediately above the knee, at N´. When the piston is
forced _inwards_, the knee, K´, will thus be forced _backwards_; and
when the piston is forced _outwards_, the knee, K´, will be drawn
_forwards_. It therefore follows that the two knees, K and K´, are
pressed alternately backwards and forwards. The foot, F´, when the
knee, K´, is drawn forward, is lifted by the means already described
for the foot, F.
It will be apparent, from this description, that the piece of
mechanism here exhibited is a contrivance derived from the motion of
the legs of an animal, and resembling in all respects the fore legs of
a horse. It is however to be regarded rather as a specimen of great
ingenuity than as a contrivance of practical utility.
Public-domain text, read in full here on John Shaqi.
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