Solving Bearing Current Problems in AC Motors(解决交流电机轴承电流问题).pdfVIP

Solving Bearing Current Problems in AC Motors(解决交流电机轴承电流问题).pdf

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Solving Bearing Current Problems in AC Motors(解决交流电机轴承电流问题)

Solving Bearing Current Problems in AC Motors Numerous bearing current technical papers have been published over the last 10 years. This report does not address the sources of bearing currents in great detail, but rather provides an overview of the problem with practical solutions. What causes bearing currents? There are two chief sources of shaft voltage in an induction motor: An electrostatic charge introduced from outside the motor and electromagnetic unbalance within the motor itself. Whenever an induction motor’s electromagnetic circuit becomes unbalanced, a stray flux path will link the stator and rotor across the air gap. This flux linkage will induce a stray voltage (40 V peak) in the rotor circuit, which will build up until the insulating capability of the bearings lubricating oil film is exceeded. At that moment the voltage collapses and a pulse of current will pass through the bearing. The extreme heat produced during this event blasts a minute pit in the bearings, and repeated discharges will permanently damage the bearings. The races and rolling elements of current-damaged bearings will have a frosted appearance as shown in Figure 1, below. Frosted bearings are still serviceable and may last for more than 5 years in an installation. However, if mechanical vibration is present the rolling elements will bounce during rotation and create a fluting pattern (see Figure 2) on the outer raceway. This greatly increases friction and vibration and such bearings may catastrophically fail in less than 6 weeks. A 9 year life test at Regal Beloit confirmed the relationship between vibration and fluting. Figure 1 Figure 2 Common sources of electromagnetic unbalance are out-of round or off-center rotors, open rotor bars, magnetically non-symmetrical iron, or windings that are not symmetrically placed in the stator. Because the source of unbalance is internal, cur

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