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Electromagnetic Properties of Soft Magnetic Composites and Electrical Steels at High Frequencies Considering Material Manufacturing Techniques

机译:考虑材料制造技术的软磁复合材料和电工钢的高频电磁性能

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A comprehensive magnetic comparison study is conducted on ring samples comprised of Soft Magnetic Composite (SMC) and electrical steel materials. The testing is performed under DC and AC conditions in an effort to characterize the materials magnetic compatibility for use in the increasingly prevalent research area that is high-speed electrical machines. DC tests show the improved magnetization characteristics for electrical steels emerging from their smooth, unimpeded microstructure. The measured DC characteristics and data obtained from simulation software can be vastly different. The magnitude of which is shown to be over 100 %. High-frequency AC loss measurements find that SMC and particularly thin electrical steel materials maintain a superior performance over thicker laminations at frequencies commonly encountered in high-speed machines. Hysteresis loop measurements highlight the extent of deterioration due to mechanical cutting of each material and a discussion on the possible underlying causes based on material properties is given. Cross-over frequencies of SMC grades over laminations are found to be as low as 68 Hz. AC loss results are compared with Finite Element Analysis (FEA) simulations and highlight the tendency for machine designers to employ a build factor when calculating iron loss during the design stages of a machine. A build factor is simply an error between simulated and measured loss. Errors are shown to be as high as 70 % for lamination materials and 2 % for SMC. FEA clearly does not account for the degradation of materials during cutting. This problem can be addressed with the proposal of new loss coefficients chosen according to the cutting technique and should also be a function of frequency and induction. This is a potential research area for future work.
机译:对由软磁复合材料(SMC)和电工钢材料组成的环形样品进行了全面的磁比较研究。该测试是在直流和交流条件下进行的,目的是表征材料的磁兼容性,以供越来越多的高速电机研究领域使用。直流测试表明,由于其光滑,无阻碍的微观结构,电工钢的磁化特性得到了改善。从仿真软件获得的测得的直流特性和数据可能有很大的不同。显示其幅度超过100%。高频交流损耗测量发现,SMC和特别是薄电工钢材料在高速电机中通常遇到的频率下,与较厚的叠片相比,仍具有出色的性能。磁滞回线测量突出了由于每种材料的机械切削而导致的劣化程度,并针对基于材料特性的可能的潜在原因进行了讨论。发现SMC牌号在叠片上的交叉频率低至68 Hz。将交流损耗的结果与有限元分析(FEA)模拟进行了比较,并突出了机器设计人员在计算机器设计阶段的铁损时采用构建系数的趋势。构建因子只是模拟损失与测量损失之间的误差。层压材料的误差高达70%,SMC的误差高达2%。 FEA显然不考虑切割过程中材料的降解。可以通过根据切割技术选择新的损耗系数来解决该问题,并且该损耗系数还应该是频率和感应的函数。这是未来工作的潜在研究领域。

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