SPRING-TESTING INSTRUMENT.
USED IN THE MANUFACTURE OF THE RICHARDS INDICATOR.
Designed by Charles T. Porter.
LONGITUDINAL SECTION.
SCALE, HALF SIZE.
END VIEW]
The second problem was to insure the accuracy of the springs. This was
more serious than the first one. The brass heads of the springs were
provided with three wings instead of two, which mine had. The spring,
after being coiled and tempered, was brazed into the grooves in the
first two wings, and the third wing was hammered firmly to it. This
prevented the stress on the spring from reaching the brazed joints,
and these heads never worked loose. One head was made fast at once;
the other was left free to be screwed backward or forward until the
proper length of the spring was found. To insure freedom from friction,
I determined to adjust and test the springs in the open air, quite
apart from the instrument. For this purpose I had a stout cast-iron
plate made, with a bracket cast on it, in which the slides were held
in a vertical groove, and bolted this plate on the bench, where it was
carefully leveled. The surface of the plate had been planed, a small
hole drilled through it at the proper point, and a corresponding hole
was bored through the bench. A seating for the scales also was planed
in the bracket, normal to the surface of the block. The spring to be
tested, in its heads as above described, was set on the block, and a
rod which was a sliding fit in the hole was put up through the bench,
block, and spring. This rod had a head at the lower end, and was
threaded at the upper end. Under the bench a sealed weight, equal to
one half the extreme pressure on the square inch to be indicated by the
spring, was placed on the rod.
Between the spring and the scale I employed a lever, representing that
used in the indicator, but differing from it in two respects. It was of
twice its length, for greater convenience of observation, and it was
a lever of the first order, so that the weight acting downward should
represent the steam pressure in the indicator acting upward.
The weight was carried by a steel nut screwed on the end of the rod and
resting on the upper head of the spring to be tested. This nut carried
above it a hardened stirrup, with a sharp inner edge, which intersected
the axis of the rod, produced. A delicate steel lever was pivoted to
turn about a point at one fifth of the distance from the axis of the
rod to the farther side of the scale seat. The upper edge of this lever
was a straight line intersecting the axis of its trunnions. The short
arm of the lever passed through the stirrup, in which it slid as the
spring was compressed, while the long arm swung upward in front of the
scale. The latter was graduated on its farther side, and the reading
was taken at the point of intersection of the upper edge of the lever
with this edge of the scale.
Public-domain text, read in full here on John Shaqi.
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