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Systematic practical approach to the study of bearing damage in a large oil-ring-lubricated induction machine

机译:研究大型油环润滑感应电机轴承损坏的系统实用方法

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The demand for self-contained hydrodynamic bearing assemblies has increased as a result of their lower cost and increased reliability compared to bearings with an external lubrication system. The oil-ring lubrication system is the most popular lubricant circulating system used in self-contained bearings. Motors with such a lubrication system tend to experience bearing damage when the shaft current is sufficiently large. An industry-university research partnership program was instituted to study the shaft current phenomenon in an eight-pole 2611-kW oil-ring-lubricated sleeve bearing induction machine. The study reviewed all the possible causes of the bearing damage. A series of experimental tests was carried out to determine the cause(s) of the shaft current. These tests included oil analysis, bearing damage analysis, and no-load running tests. The tests were conducted using a novel method of shaft current measurement. In addition to the test results, this paper presents a simplified pictorial representation of the significance of joints due to lamination segmentation on the occurrence of shaft current. The paper also includes shaft voltage prediction rules.
机译:与具有外部润滑系统的轴承相比,由于其成本较低且可靠性更高,因此对自包含式动压轴承组件的需求有所增加。油环润滑系统是用于独立轴承的最流行的润滑剂循环系统。当轴电流足够大时,带有这种润滑系统的电动机往往会遭受轴承损坏。建立了一个工业-大学研究合作计划,以研究八极2611 kW油环润滑套筒轴承感应电机中的轴电流现象。该研究回顾了轴承损坏的所有可能原因。为了确定轴电流的原因,进行了一系列实验测试。这些测试包括机油分析,轴承损坏分析和空载运行测试。使用轴电流测量的新方法进行了测试。除测试结果外,本文还提供了简化的图形表示法,该图形表示了由于轴电流发生时的分层分割而导致的接头的重要性。本文还包括轴电压预测规则。

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