Scientific American Supplement, No. 363, December 16, 1882Various
Science
Scientific American Supplement, No. 363, December 16, 1882
Various
Science -- Periodicals
To calibrate a glass tube with this instrument, the tube is laid upon
the table, the gauge is inserted, and the buttons are introduced into
the section desired. The flat side of the head, B, being laid on the
table, arranges, as shown in the figure, the buttons perpendicular to
it. Then the measuring wedge is introduced until a stoppage occurs
through the contact of the buttons with the sides of the tube. Finally,
their distance apart is read on the scale. Such distance apart will be
the measure of a diameter or a chord of the tube's section, according as
the buttons have been kept in the diametral plane or moved out of it. In
order that the operator shall not be obliged to watch the position of
the line of calibrating buttons in obtaining the diameter, the following
arrangement has been devised: The sides of the measuring wedge are filed
off to a certain angle, and the ends of the corresponding strips, d and
d', are bent inward in the form of hooks, whose extremities always rest
on the faces of the directing wedges. The length of these hooks and the
angle of the wedge are such that the distance apart of the rounded backs
of the directing strips is everywhere less, by about one-thirtieth, than
that of the calibrating buttons. From this it will be seen that if the
wedge be drawn back, and inserted again after the tube has been turned,
we shall measure the diameter that is actually vertical. It becomes
possible, then, to determine the greatest and smallest diameters in a
few minutes; and, supposing the section elliptical, its area will be
obtained by multiplying the product of these two diameters by pi/4.
From the description here given it will be seen that Colonel Goulier's
apparatus is not only convenient to use, but also permits of obtaining
as accurate results as are necessary. Two sizes of the instrument are
made, one for diameters of from 7 to 10.5 mm., and the other for those
of from 10 to 15.5 mm. It is the former of these that is shown, of
actual size, in the cuts.
* * * * *
SOLDERING WITHOUT AN IRON.
The following method for soldering without the use of a soldering iron
is given in the _Techniker_:
The parts to be joined are made to fit accurately, either by filing
or on a lathe. The surfaces are moistened with the soldering fluid, a
smooth piece of tin foil laid on, and the pieces pressed together and
tightly wired. The article is then heated over the fire or by means of
a lamp until the tin foil melts. In this way two pieces of brass can be
soldered together so nicely that the joint can scarcely be found.
Public-domain text, read in full here on John Shaqi.
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