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The voltage or amplitude of the surge wave pattern also reduces due to the decrease in
inductance of a coil with a fault between turns. The following formula determines the voltage
(where the current ( i ) varies according to time ( t ):
When the insulation between turns is weak, the result is a low energy arc-over and a change
in inductance. When this happens, the wave pattern becomes unstable; it may shift rapidly to
the left, and back to the original position.
A reduction in inductance occurs due to turn-to-turn faults, phase-to-phase faults,
misconnections, or open connections. A surge test also performs partial ground wall testing
when there is a ground line to the machine frame.
The surge test is most often used to test turn-to-turn insulation of coils or single windings.
Form coils, start and run windings, and multi-tapped windings are a few examples. Surge
tests are also used to compare new windings to a standard winding to assure they conform.
Surge test display
A complete surge test screen is provided below for reference.
Figure 119.
Completed surge test screen.
NOTE
The flicker in wave patterns displayed when arcing occurs between the windings or
phases cannot be stored in the tester. As soon as you release the Test button, the
wave pattern freezes. This is the only wave pattern that is stored.
For each direction a coil is tested, check the display for the wave pattern produced in each
test. If there are two good stable patterns, the winding is good. If you see anything other
than good patterns, there is a possible fault. Refer to the “Determining a fault” section below
126
SKF Static Motor Analyzer—Baker AWA-IV User Manual
Motor testing theory and reference
Содержание AWAIV-12
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