基于超声辐射的电机绕组绝缘成分解聚分析

A. Kashin, A. Nemirovsky
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引用次数: 0

摘要

这项工作是对利用超声波修复电机的创新方法的基础研究的延续。为了节能环保,减少电机定子绕组的拆除时间,研究了基于超声的电机绕组拆除方法。与现有的拆卸电机绕组的方法相比,所研究的拆卸方法在许多技术问题上是最佳的。在工作中,主要关注的是绕组绝缘的材料。对世界各地主要的工业电动机的漆绝缘和复合绝缘进行了分析。分析了电动机定子绕组的浸渍电绝缘成分,以及在不同程度的超声作用时间和功率、工作溶液浓度和温度的影响下,超声波对电动机绕组拆除过程中定子绕组的影响。应用数学软件系统进行计算和建模,保证了工作中得到的实验结果的可靠性和合理性。建立了一套方程,建立了各有用因素相互影响的模型,并对所得结果进行了优化,确定了清漆和复合保温系统的最优参数。所研究的各种类型的保温材料的最佳参数在许多重要方面都显示出令人鼓舞的结果:持续时间、能耗、环境友好性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of depolymerization of insulating compositions of electric motor windings based on ultrasonic radiation
This work is a continuation of the fundamental study on implementing an innovative method of repairing electric motors using ultrasound. A study of the method of dismantling windings based on ultrasound has been carried out for the purpose of energy efficiency, environmental friendliness and less time spent on the repair cycle of electric motors in terms of removing the stator winding. The investigated dismantling method is optimal for a number of technical issues in comparison with the existing methods for dismantling electric motor windings. In the work, the main focus is on the material of the winding insulation. Lacquer and compound types of insulation of industrial electric motors, which are the main ones everywhere, have been analyzed. The analysis of the impregnating electrical insulating compositions of the stator windings of electric motors and the influence of ultrasound on them during dismantling of the windings of electric motors at different levels of influence of forcing factors: duration and power of ultrasonic action, concentration and temperature of the working solution. The applied mathematical software systems for calculation and modeling guarantee the reliability and rationality of the results of the experiments obtained during the work. A system of equations has been modeled and models of the effect of useful factors relative to each other have been constructed, the results obtained have been optimized and the optimal parameters of both varnish and compound insulation systems have been identified. The optimal parameters of the investigated types of insulation show encouraging results on many important points: duration, energy consumption, environmental friendliness.
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