Dielectric Properties of Resin Rich Stator Coil of High Voltage Motor during Processing

S. Boonsathitthavorn, N. Phumipunepon, P. Kitcharoen, N. Pattanadech
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引用次数: 1

Abstract

One of the non-destructive test methods commonly used to characterize the electrical properties of power equipment is polarization and depolarization current testing. The objective of this paper is to study of the change of dielectric properties during the manufacturing stages of a stator coil used in 6.6 kV 260 kW motor. There were five steps to manufacture the resin rich stator coil. The first step, the copper coil was wound around by NOMEX paper. Then the slot portion of the stator coil was wound by KREMICAL tape as the second process and by the conductive tape as the third process. Then, the insulation and conductive layer of the stator coil were pressed and cured at 160°C for one and a half hour as the fourth process. The pressing and curing will combine the multi insulation to be homogeneous insulation of the stator coil. The final step, the end winding portion was wounded by Filosam tape and polyester tape. The polarization and depolarization currents were measured and recorded after finishing each manufacturing process. From the test results, the polarization currents and depolarization currents obtained from each step were clearly different. Then the polarization and depolarization currents, conduction current and capacitance of the test results were analyzed and reported in this paper.
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高压电机富树脂定子线圈在加工过程中的介电性能
通常用于表征电力设备电性能的无损检测方法之一是极化和去极化电流检测。本文的目的是研究6.6 kV 260 kW电机定子线圈在制造过程中介电性能的变化。富树脂定子线圈的制作分为五个步骤。第一步,用NOMEX纸缠绕铜线圈。然后用KREMICAL胶带作为第二道工序,用导电胶带作为第三道工序缠绕定子线圈的槽部。然后,定子线圈的绝缘和导电层被压制,在160℃下固化一个半小时,作为第四道工序。压制和固化将多重绝缘结合在一起,使定子线圈的绝缘均匀。最后一步,末端缠绕部分由菲罗森胶带和聚酯胶带包扎。每道工序完成后,测量并记录极化电流和去极化电流。从试验结果来看,每一步得到的极化电流和去极化电流有明显的不同。然后对极化、去极化电流、传导电流和电容的测试结果进行了分析和报告。
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