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Impact of residual stress evoked by pyramidal embossing on the magnetic material properties of non-oriented electrical steel

机译:金字塔内压花对非导向电钢磁性材料特性引起的残余应力的影响

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Targeted magnetic flux guidance in the rotor cross section of rotational electrical machines is crucial for the machine's efficiency. Cutouts in the electrical steel sheets are integrated in the rotor sheets for magnetic flux guidance. These cutouts create thin structures in the rotor sheets which limit the maximum achievable rotational speed under centrifugal forces and the maximum energy density of the rotating electrical machine. In this paper, embossing-induced residual stress, employing the magneto-mechanical Villari effect, is studied as an innovative and alternative flux barrier design with negligible mechanical material deterioration. The overall objective is to replace cutouts by embossings, increasing the mechanical strength of the rotor. The identification of suitable embossing geometries, distributions and methodologies for the local introduction of residual stress is a major challenge. This paper examines finely distributed pyramidal embossings and their effect on the magnetic material behavior. The study is based on simulation and measurements of specimen with a single line of twenty embossing points performed with different punch forces. The magnetic material behavior is analyzed using neutron grating interferometry and a single sheet tester. Numerical examinations using finite element analysis and microhardness measurements provide a more detailed understanding of the interaction of residual stress distribution and magnetic material properties. The results reveal that residual stress induced by embossing affects magnetic material properties. Process parameters can be applied to adjust the magnetic material deterioration and the effect of magnetic flux guidance.
机译:旋转电机转子横截面中的有针对性的磁通引导对于机器的效率至关重要。电钢板中的切口集成在转子板中,用于磁通引导。这些切口在转子板中产生薄结构,其限制了离心力下可实现的旋转速度和旋转电机的最大能量密度。本文研究了采用磁力机械米兰效应的压花诱导的残余应力作为一种创新和替代的助焊剂屏障设计,具有可忽略的机械材料劣化。整体目标是通过压纹取代切口,提高转子的机械强度。识别适当的压花几何形状,分布和局部突出压力引入的方法是一个重大挑战。本文审查了精细分布的金字塔形压纹及其对磁性材料行为的影响。该研究基于标本的模拟和测量,具有用不同冲击力进行的单线二十凸起点。使用中子光栅干涉法和单板测试仪分析磁性材料行为。使用有限元分析和微硬度测量的数值检查提供了对残余应力分布和磁性材料特性的相互作用的更详细了解。结果表明,压花诱导的残余应力影响磁性材料特性。可以应用工艺参数来调节磁性材料劣化和磁通引导的效果。

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