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Degradation Monitoring of Insulation Systems Used in Low-Voltage Electromagnetic Coils under Thermal Loading Conditions from a Creep Point of View

机译:从蠕变视图下热负荷条件下低压电磁线圈中使用的绝缘系统的降解监测

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摘要

Electromagnetic coils are a key component in a variety of systems and are widely used in many industries. Because their insulation usually fails suddenly and can have catastrophic effects, degradation monitoring of coil insulation systems plays a vital role in avoiding unexpected machine shutdown. The existing insulation degradation monitoring methods are based on assessing the change of coil high-frequency electrical parameter response, whereas the effects of the insulation failure mechanisms are not considered, which leads to inconsistency between experimental results. Therefore, this paper investigates degradation monitoring of coil insulation systems under thermal loading conditions from a creep point of view. Inter-turn insulation creep deformation is identified as a quantitative index to manifest insulation degradation changes at the micro level. A method is developed to map coil high-frequency electrical monitoring parameters to inter-turn insulation creep deformation in order to bridge the gap between the micro-level and macro-level changes during the incipient insulation degradation process. Thermally accelerated tests are performed to validate the developed method. The mapping method helps to determine the physical meaning of coil electrical monitoring parameters and presents opportunities for predictive maintenance of machines that incorporate electromagnetic coils.
机译:电磁线圈是各种系统中的关键部件,并且广泛用于许多行业。由于他们的绝缘通常突然失败并且可以具有灾难性的影响,因此线圈绝缘系统的降解监测在避免意外的机器关闭方面起着至关重要的作用。现有的绝缘降解监测方法是基于评估线圈高频电学参数响应的变化,而不考虑绝缘失效机制的效果,这导致实验结果之间的不一致。因此,本文从蠕变的观点来调查热负荷条件下的线圈绝缘系统的降解监测。变形间绝缘蠕变变形被识别为定量指数,以便在微观水平处清单绝缘降解变化。开发了一种方法以将线圈高频电监测参数映射到匝间绝缘蠕变变形,以便在初期绝缘降解过程中弥合微级和宏观水平变化之间的间隙。进行热加速测试以验证开发方法。映射方法有助于确定线圈电监测参数的物理含义,并为包含电磁线圈的机器提供预测性的机会。

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