Pyrometry: A Practical Treatise on the Measurement of High TemperaturesDarling, Charles R. (Charles Robert)
Science
Pyrometry: A Practical Treatise on the Measurement of High Temperatures
Darling, Charles R. (Charles Robert)
Pyrometry
=Special Features of Indicators.=—All moving-coil instruments,
whether suspended or pivoted, are liable to alteration of the zero
point owing to what is termed “creep.” The suspension strip, when first
fixed in position, generally possesses a certain amount of initial
torsion, which comes into operation gradually and causes a slight
movement of the coil. Similarly, in a pivoted instrument, the strength
or shape of the control-spring undergoes a gradual alteration at first,
causing the pointer to move away from the zero position. For this
reason adjusting arrangements are fitted by means of which the spot of
light or pointer may be brought back to the zero. This creeping ceases
after a time—often requiring twelve months—and if not subjected to
any strain, error from this cause does not recur to any notable extent.
With a mirror galvanometer it is better to move the scale, or turn the
galvanometer round on its axis to restore the correct zero, rather than
to twist the coil back; but with a fixed scale and pointer the only
remedy is to turn the coil bodily round. In a single-pivot indicator
constantly used in the author’s laboratory, the creep amounted to a
movement of the end of the pointer through an angle of 2 degrees in
the first few months, since when, after the lapse of several years, no
further alteration has occurred. It is advisable to test the zero point
of an indicator from time to time by breaking the circuit, and if an
error be discovered the pointer should be re-set, or an allowance made
in taking a reading.
The resistance of an indicator should be so high that the readings
should not be perceptibly altered by any fluctuations in the resistance
of the circuit which may arise in practice. If leads of considerable
length were used to connect the pyrometer with the indicator, and were
subject to fairly large alterations of temperature, the consequent
changes in the resistance of such leads would be noticeable on a
low-resistance indicator; and similarly, if a pyrometer were inserted
at different depths in a furnace at separate times, thus heating up
varying lengths of the junction wires, a discrepancy would arise for
the same reason. The resistance of an indicator, however, cannot be
raised beyond a certain point without reducing the sensitiveness below
the required limit. A mirror galvanometer of the type described may
have a resistance—partly in the coil and partly in an added series
resistance—of 1000 ohms or more, and still be sufficiently sensitive;
and in the latest types of instruments provided with pointers the
resistance may be made as high as 1000 ohms, although it is more
usually 400 to 500 ohms. Many indicators are in use, however, in which
the resistance is 100 ohms or less. As, from Ohm’s law, the current
varies inversely as the total resistance in the circuit, any alteration
in resistance should be small relatively to the total to render the
error negligible. This point is made clear in the following example:—
Public-domain text, read in full here on John Shaqi.
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