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A model for magnetostriction in coupled nonlinear finite element magneto-elastic problems in electrical machines

机译:电机中耦合非线性有限元磁弹性问题的磁致伸缩模型

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A model has been developed for magnetostriction in coupled nonlinear finite element magneto-elastic problems in electrical devices. The formulation for this numerical model has been detailed and the all force components including those due to magnetostriction were developed. An expansion of the field and force formulation, for direct implementation in a finite element program, was also developed. This expansion was shown for both first order and second order triangular elements. The force formulation utilized the virtual work technique. Due to the lack of experimental data of the magnetostrictive phenomenon for electrical steels (used in the manufacture of electrical machines and transformers), an analytical model was also developed. This analytical model directly creates the magnetostriction curve /spl lambda/(H) utilizing the magnetization curve data. The analytical model provided the expected behavior of ferrous substances as published in the literature. The curves created by this analytical model can be used as needed in numerical computation of fields and forces.
机译:一种模型已经开发用于电气设备中的耦合非线性有限元磁弹性问题的磁致伸缩。已经详细说明了该数值模型的制剂,并且开发了包括磁致伸缩引起的所有力分量。还开发了用于在有限元程序中直接实施的领域和力制剂的扩展。为第一阶和二阶三角形元素显示了这种扩展。力制剂利用虚拟工作技术。由于磁致伸缩现象缺乏电气钢的实验数据(用于制造电机和变压器),还开发了分析模型。该分析模型利用磁化曲线数据直接产生磁致伸缩曲线/ SPL Lambda /(h)。分析模型提供了在文献中公布的亚铁物质的预期行为。该分析模型产生的曲线可以根据字段和力的数值计算中的需要使用。

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