The air-pipes passing through the wall of the calorimeter are of
standard 1-inch piping. The insulation from the copper wall is made by a
rubber stopper through which this piping is passed, the stopper being
crowded into a brass ferule which is stoutly soldered to the copper
wall. This is shown in detail in fig. 25, in which N is the brass ferule
and M the rubber stopper through which the air-pipe passes. The closure
is absolutely air-tight and a minimum amount of heat is conducted out of
the chamber, owing to the insulation of the rubber stopper M. The
water-current enters and leaves the chamber through two pipes insulated
in two similar brass ferules soldered to the copper and zinc walls. The
insulation between the water-pipe and the brass ferule has been the
subject of much experimenting and is discussed on page 24. The best
insulation was secured by a vacuum-jacketed glass tube, although the
special hard-rubber tubes surrounding the electric-resistance
thermometers have proven very effective as insulators in the bed
calorimeter.
A series of small brass tubes, from 10 to 15 millimeters in diameter,
are soldered into the copper wall in the vicinity of the water-pipes.
These are used for electrical connections and for connections with the
manometer, stethoscope, and pneumograph. All of these openings are
tested carefully and shown to be absolutely air-tight before being put
in use.
In the dome of the calorimeter, and directly over the head of the
subject, is the opening for the weighing apparatus. This consists of a
hard-rubber tube, threaded at one end and screwed into a brass flange
heavily soldered to the copper wall (fig. 9). When not in use, a solid
rubber stopper on a brass rod is drawn into this opening, thus
producing an air-tight closure. When in actual use during the process of
weighing, a thin rubber diaphragm prevents leakage of air through this
opening. The escape of heat through the weighing-tube is minimized by
having this tube of hard rubber.
VENTILATING AIR-CURRENT.
[Illustration: FIG. 27.--Diagram of ventilation of respiration
calorimeter. The air is taken out at lower right-hand corner and forced
by the blower through the apparatus for absorbing water and carbon
dioxide. It returns to the calorimeter at the top. Oxygen can be
introduced into the chamber itself as need is shown by the tension
equalizer.]
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