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首页> 外文期刊>Magnetics, IEEE Transactions on >An Inner-Constrained Separation Technique for 3-D Finite-Element Modeling of Grain-Oriented Silicon Steel Laminations
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An Inner-Constrained Separation Technique for 3-D Finite-Element Modeling of Grain-Oriented Silicon Steel Laminations

机译:晶粒定向硅钢叠片的3D有限元建模的内部约束分离技术

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摘要

Grain-oriented (GO) silicon steel laminations are widely used in iron cores and shielding structures of power equipments. When the leakage magnetic flux is very strong and enters the lamination plane perpendicularly, the eddy current loss induced there must be taken into account in electromagnetic design. It is preferable to accurately compute three-dimensional (3-D) eddy currents at least in a few outer sheets of the lamination stack. Since the coating film applied to each sheet is only 2–5 $mu{rm m}$ thick, finite element modeling of 3-D eddy currents is very difficult in GO silicon steel laminations of large electromagnetic devices. This paper proposes an inner-constrained separation technique (ICST) to compute the 3-D eddy currents. Instead of the coating film, the ICST introduces an inner constraint into the A-formulation to separate the laminations from each other. By the ICST, the 3-D eddy currents can be computed accurately without meshing the coating film. Numerical experiments are carried out on the TEAM (Testing Electromagnetic Analysis Methods) benchmark model ${rm P}21^{rm c}-{rm M}1$ and the numerical results show good agreement with the measured data.
机译:晶粒取向(GO)硅钢叠片广泛用于电力设备的铁芯和屏蔽结构。当漏磁通非常强并且垂直进入叠片平面时,在电磁设计中必须考虑到那里引起的涡流损耗。优选的是至少在叠片堆的一些外片中精确地计算三维(3-D)涡流。由于涂在每张薄板上的涂膜厚度仅为2–5μm·rm·m,因此在大型电磁装置的GO硅钢片中很难对3D涡流进行有限元建模。本文提出了一种内部约束分离技术(ICST)来计算3-D涡流。 ICST代替涂膜,将内部约束条件引入A配方中,以使叠层彼此分离。通过ICST,可以在不使涂膜啮合的情况下精确计算3-D涡流。在TEAM(测试电磁分析方法)基准模型$ {rm P} 21 ^ {rm c}-{rm M} 1 $上进行了数值实验,数值结果与实测数据吻合良好。

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