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Electrical Resistivity of Additively Manufactured Silicon Steel for Electrical Machine Fabrication

机译:电机制造用增材制造的硅钢的电阻率

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Additive manufacturing, commonly labeled as 3D printing is an essential component of the next industrial revolution, enabling both unprecedented fabrication freedom and streamlined production and logistics. Traditionally, the electrical machine cores are stacked from varnished soft magnetic laminations, which deliver reduced eddy and hysteresis losses during machine operation. Presently, dedicated metal printing platforms can produce industrial grade homo-material metal components, promoting the fabrication of machines with highly complex topologies, but also increasing the eddy current induced in these components, due to lack of laminated structure. In this paper, we present experimental resistivity measurement results of 3% and 6.5% silicon content steel fabricated with selective laser melting.
机译:增材制造通常被称为3D打印,是下一次工业革命的重要组成部分,既实现了空前的制造自由,又简化了生产和物流。传统上,电机铁心是由涂有清漆的软磁叠片堆叠而成的,这些叠片在电机运行期间减少了涡流和磁滞损耗。目前,专用的金属印刷平台可以生产工业级的均质金属部件,从而促进了具有高度复杂拓扑结构的机器的制造,但由于缺少层压结构,还增加了在这些部件中引起的涡电流。在本文中,我们介绍了通过选择性激光熔化制备的3%和6.5%硅含量钢的实验电阻率测量结果。

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