The Ohio Journal of Science, Vol. XVI, No. 1, November 1915 — John Shaqi
The Ohio Journal of Science, Vol. XVI, No. 1, November 1915Various
History
The Ohio Journal of Science, Vol. XVI, No. 1, November 1915
Various
Natural history -- Periodicals; Science -- Periodicals
The disks were thick enough to make two lenses each so we sawed them
into two as illustrated in Fig. 3. A is an old polishing head upon
which was mounted a pulley at one end and a copper disk, B, at the
other, the disk being held between large washers. C is a cast iron box
fastened to an arm, D, hinged at E and kept pressed against the copper
disk by a cord passing over two pulleys on the ceiling. This made a
most excellent automatic feed. The glass to be split was fastened to
a block of pine with pitch and the wood held in the iron box, C, with
wedges. Number 40 Carborundum was used with plenty of water and the
glass was cut through faster than a power hack saw would cut through
steel. The glass should be cut half way through and then reversed so
that the final break will come in the middle and thus prevent the edges
from spawling off. The chief defect of this machine was the way it
scattered emery.
[Illustration: FIG. 3]
The disks are now ready for the grinding which is done on the machine
on the right of Fig. 3, which consists simply of a vertical spindle
run by a quarter twist belt from the counter shaft against the wall.
The end of this spindle is tapered at the upper end to receive the
grinding tool or laps, shown on the table in Fig. 5 which also shows
the spindle raised so that the grinding lap is seen above the tin box,
C, which surrounds the spindle to catch the abrasive that is thrown off
in grinding. The glass is first smoothed down on a flat lap until it is
of equal thickness at all points as measured by a micrometer when it is
ready to be ground to the proper curves. For this purpose the spherical
laps, shown in Fig. 5, are turned in the special machine illustrated in
Fig. 4. The compound rest of an old Seller’s lathe was removed and in
its place, on the cross slide of the carriage, was mounted the sphere
turning rest. This consists of a base, A, in which the slide, B, is
so mounted that it can be rotated about the center, C, by turning the
milled head, D, which carries a worm at the opposite end. E is the
tool post with the cutting tool T and L the lap to be turned. A hole
was drilled at C into which was fitted a round piece of steel the
upper end being pointed and then half cut away like a center reamer.
This was used in finding the zero; the rod, pointed end up, was placed
in the hole at C and the cutting tool adjusted against the flattened
side. The zero position is then determined by measuring, with an inside
micrometer, the distance from the tool post to a stop placed at the
end of the slide B. By adding to or subtracting from the zero reading
of the micrometer the length of the radius of the grinding lap, the
tool post may be set to the proper position for either a convex or a
concave surface. This, however, is only approximate, for these laps
must be made with the highest possible accuracy. After sufficient cuts
have been taken to give a spherical surface, the radius is carefully
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