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Continuous local material model for the mechanical stress-dependency of magnetic properties in non-oriented electrical steel

机译:连续局部材料模型用于无取向电工钢中磁性能的机械应力依赖性

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摘要

Purpose Magnetic properties of electrical steel are affected by mechanical stress. In electrical machines, influences because of manufacturing and assembling and because of operation cause a mechanical stress distribution inside the steel lamination. The purpose of this study is to analyse the local mechanical stress distribution and its consequences for the magnetic properties which must be considered when designing electrical machines. Design/methodology/approach In this paper, an approach for modelling stress-dependent magnetic material properties such as magnetic flux density using a continuous local material model is presented. Findings The presented model shows a good approximation to measurement results for mechanical tensile stress up to 100 MPa for the studied material. Originality/value The presented model allows a simple determination of model parameters by using stress-dependent magnetic material measurements. The model can also be used to determine a scalar mechanical stress distribution by using a known magnetic flux density distribution.
机译:目的电工钢的磁性能受机械应力的影响。在电机中,由于制造和装配以及由于操作而产生的影响会在钢叠层内部产生机械应力分布。这项研究的目的是分析在设计电机时必须考虑的局部机械应力分布及其对磁性能的影响。设计/方法/方法在本文中,提出了一种使用连续局部材料模型对应力相关磁性材料特性(例如磁通密度)建模的方法。结果对于所研究材料,机械拉伸应力高达100 MPa时,给出的模型显示出与测量结果的良好近似。独创性/价值通过使用与应力有关的磁性材料测量,本模型可以轻松确定模型参数。该模型还可以用于通过使用已知的磁通密度分布来确定标量机械应力分布。

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