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Feasibility Study for Enameled Round Copper Wire Compression within Slots of Electrical Machines

机译:电机槽内搪瓷圆形铜线压缩的可行性研究

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This paper discusses the compression of round magnet wires. The feasibility of forming operations within grooves of electrical machines after the winding process is investigated using a scientific methodology. This approach is motivated with the need for higher fill factors, comparable to the ones of hairpin technology. By using individual parallel conductors with higher number of turns, however, it is also possible to reduce frequency-dependent losses in higher drive speed ranges. In addition, the insulation layer quality for round wires is superior to the ones of profile wire due to the coating process, with the exception of extrusion insulations. This results in a better applicability of round wires for compression and higher voltage applications as well. At first, current state of technology is presented and applicable winding test procedures as well as a test setup is introduced. For experimental validation a model groove was designed and built. Possible groove design parameters are introduced and chosen according to a Design of Experiment approach (DoE). Different metrology approaches for the characterization of the insulation quality after processing and the resulting wire deformations are discussed. Significant input variables are pressing force, wire insulation thickness (measured in grades), number of turns per coil as well as wire diameter. Key output variables are the achieved fill factor improvement, the partial discharge voltage and the electrical resistance of the coil. The experimental plan, according to a full- factorial DoE, the chosen methodology and concluding results are being discussed based on main effect diagrams. In the outlook, the further investigation topics are outlined. It can be shown that the compression process of enameled round copper wires is well suited, up to a quality critical limit, for the production improvement of coils in grooves of electrical machines. The process therefore represents a promising approach to increase the fill factor, taking into account the electrical insulation properties of the winding. This first investigation can show that some electrical properties, such as partial discharge features, can even be improved in certain areas.
机译:本文讨论了圆形磁铁电线的压缩。使用科学方法研究了在绕组过程之后在电机凹槽内形成操作的可行性。这种方法具有较高的填充因子的动力,与发夹技术的需要相当。然而,通过使用具有较高匝数的单独的平行导体,也可以降低更高驱动速度范围的频率相关的损耗。另外,挤出绝缘除外,圆线的绝缘层质量优于型材线的型材线。这导致圆线适用于压缩和更高的电压应用。首先,提出了当前技术状态,并介绍了适用的绕组测试程序以及测试设置。对于实验验证,设计并构建了模型凹槽。根据实验方法(DOE)的设计,引入和选择可能的凹槽设计参数。讨论了处理后的绝缘质量的不同计量方​​法以及所得到的线变形。显着的输入变量是压力,电线绝缘厚度(以等级测量),每条线圈的匝数以及线径。键输出变量是实现填充因子改进,部分放电电压和线圈的电阻。根据全源DOE,根据主要效果图讨论了实验计划,选择的方法和结论结果。在前景中,概述了进一步的调查主题。可以表明,搪瓷圆形铜线的压缩过程非常适合,达到电机凹槽中线圈的生产改进的质量临界限制。因此,该过程代表了增加填充因子的有希望的方法,考虑到绕组的电绝缘性能。第一次调查可以表明某些电气性质,例如局部放电功能,甚至可以在某些区域中得到改善。

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