American Horological Journal, Vol. I, No. 1, July 1869: Devoted to Pratical Horology
Science
American Horological Journal, Vol. I, No. 1, July 1869: Devoted to Pratical Horology
Clocks and watches -- Periodicals
A very ingenious device is used for dividing the leaves under the
cutter, which revolves at a moderate speed over a slide, carrying a
pair of centres, between which the turned up piece of pinion wire is
placed. The slide is now pushed up to and under the cutter, and in
its passage as much of a cut is taken as is desirable; in drawing
back the slide the fresh cut space passes under a flat piece of thin
steel, screwed on the frame, and set at a slight angle to the axis of
the centres. On moving the slide towards the cutter for a fresh cut,
the steel plate takes the last cut, and in passing by it the pinion
is turned just as much as the angularity of the plate, which must be
just one leaf. By this very clever device the division is effected
without an index plate. This process, however, is not good enough for
work intended to be very accurate--the pinion wire not being always, or
indeed rarely correctly divided, the original error will be perpetuated
in all the subsequent processes. These are all milled, with oil or soda
water for a lubricator, and it follows that the speed of the cutter is
regulated to get the greatest cut without dulling the tool. When dull,
however, the mill is sharpened on the _face_ of the cutting tooth by
means of small grinders of iron, using Arkansas oil-stone dust for the
first grinding, and giving the necessary delicacy of the edge by means
of crocus, or sharp, followed, when fine work is needed, by rouge.
It is necessary that this care should be taken, for if the edge is
left coarse it will become speedily dulled, and leave a very unequal
and rough surface on the cut of the pinion, which in the subsequent
grinding gives rise to error in shape and size. The pinions, thus cut
to gauge, are dried in sawdust, hardened, and tempered; the staff and
pivots are now turned up to size, and then pass to the polishers. In
the factory they are finished by means of what are called _Wig-Wags_,
which it may be interesting to the reader to have a general description
of.
Two Vs are arranged as centres, the pinion is placed between them,
the circular parts resting in each V, but free to turn on its own
axis. Immediately above the Vs is a frame on which a slide, carrying
the polisher, may traverse--generally about two inches. This slide is
movable vertically so as to accommodate itself to the pinion; attached
to the slide is a connection which leads to a vertical lever, which
is put in motion from a crank on the counter shaft. The grinding is
effected by bringing the grinder, charged with oil-stone dust in oil,
in one of the spaces of the pinion, which, of course, is so arranged
as to bring it parallel and central with the grinder. The power being
applied, the slide takes a very rapid reciprocatory motion, and the
face of the grinder, so charged, rapidly reduces the uneven surface
left by the cutter to what is called the _gray_.
Public-domain text, read in full here on John Shaqi.
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