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Micromechanical modeling of polycrystalline high manganese austenitic steel subjected to abrasive contact

机译:多晶高锰奥氏体钢的微机械建模对磨蚀接触进行

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This study focuses on microstructural and micromechanical modeling of abrasive sliding contacts of wear-resistant Hadfield steel. 3D finite element representation of the microstructure was employed with a crystal plasticity model including dislocation slip, deformation twinning, and their interactions. The results showed that deformation twinning interacting with dislocations had a key role in the surface hardening of the material, and it was also important for the early hardening process of the sub-surface grains beyond the heavily distorted surface grains. The effects of grain orientation and microstructural features were discussed and analyzed according to the micromechanical model to give a perspective to the anisotropy of the material and the feasibility of using micromechanics in virtual material design.
机译:本研究侧重于耐磨HATFIELD钢磨料滑动触点的微观结构和微机械建模。 3D微观结构的有限元表示与晶体塑性模型,包括位错滑滑,变形孪生及其相互作用。结果表明,与脱位相互作用的孪生相互作用在材料的表面硬化中具有关键作用,对于超出扭曲的表面颗粒的亚表面颗粒的早期硬化过程也很重要。根据微机械模型讨论和分析了晶粒取向和微观结构特征的影响,以透视材料的各向异性以及在虚拟材料设计中使用微机械的可行性。

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