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Analysis of Localized Plastic Strain in Heterogeneous Cast Iron Microstructures Using 3D Finite Element Simulations

机译:三维有限元模拟中异质铸铁微观结构局部塑性应变分析

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The design and production of light structures in cast iron with high static and fatigue performance is of major interest in e.g. the automotive area. Since the casting process inevitably leads to heterogeneous solidification conditions and variations in microstructural features and material properties, the effects on multiple scale levels needs to be considered in the determination of the local fatigue performance. In the current work, microstructural features of different cast irons are captured by use of micro X-ray tomography, and 3D finite element models generated. The details of the 3D microstructure differ from the commonly used 2D representations in that the actual geometry is captured and that there is not a need to compensate for 3D-effects. The first objective with the present study is to try and highlight certain aspects at the micro scale that might be the underlying cause of fatigue crack initiation, and ultimately crack propagation, under fatigue loading for cast iron alloys. The second objective is to incorporate the gained knowledge about the microstructural behavior into multi-scale simulations at a structural length scale, including the local damage level obtained in the heterogeneous structure subjected to fatigue load.
机译:具有高静态和疲劳性能的铸铁中光结构的设计和生产是主要的兴趣。汽车区域。由于铸造过程不可避免地导致多均匀的凝固条件和微观结构特征和材料特性的变化,因此需要考虑对局部疲劳性能的测定来考虑对多种比例水平的影响。在当前的工作中,通过使用微X射线断层扫描来捕获不同铸造熨斗的微观结构特征,并产生3D有限元模型。 3D微结构的细节与常用的2D表示不同,因为捕获实际几何形状并且不需要补偿3D效果。与本研究的第一个目的是尝试突出微尺度的某些方面,这可能是疲劳裂纹引发的潜在原因,最终裂致繁殖,铸铁合金的疲劳负荷。第二个目的是将关于微观结构的微观结构的获得知识纳入结构长度的多尺度模拟,包括在经受疲劳负荷的异质结构中获得的局部损伤水平。

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