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Influences of size effect and stress condition on ductile fracture behavior in micro-scaled plastic deformation

机译:尺寸效应和应力条件对微尺度塑性变形中韧性断裂行为的影响

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摘要

In macro-scaled plastic deformation, ductile fracture behaviors have been extensively investigated in terms of formation mechanism, deformation mechanics, influencing factors and fracture criteria. In micro-scaled plastic deformation, however, the fracture behaviors of materials are greatly different from those in macro-scale due to the existence of size effects. To explore the simultaneous interaction of size effect and stress condition on material fracture behavior in meso/micro-scaled plastic deformation, the tensile and compression tests of pure copper with various geometrical sizes and microstructures were conducted. The experiment results show that microvoids exist in compressed samples due to localization of shear band instead of macro fracture. Furthermore, the FE simulation is conducted by using the size dependent surface layer model, which aims to study the interaction of size effect and stress condition on material fracture behavior in multi-scaled plastic deformation. It is found that the stress triaxiality (T) generally increases with the ratio of surface grains. in compression statement. Fracture strain and fracture energy with positive T are much smaller than that with negative T regardless of geometrical and grain sizes. This research provides an in-depth understanding of the influences of size effect and stress condition on ductile fracture behavior in micro-scaled plastic deformation.
机译:在宏观塑性变形中,从形成机理,变形力学,影响因素和断裂准则等方面对延性断裂行为进行了广泛研究。然而,在微观尺度的塑性变形中,由于存在尺寸效应,材料的断裂行为与宏观尺度的断裂行为大不相同。为了探索尺寸效应和应力条件对中观/微观塑性变形中材料断裂行为的同时相互作用,进行了具有各种几何尺寸和微观结构的纯铜的拉伸和压缩测试。实验结果表明,压缩样品中存在微孔,这是由于剪切带的位置而不是宏观断裂造成的。此外,通过使用尺寸相关的表面层模型进行有限元模拟,目的是研究尺寸效应和应力条件对多尺度塑性变形中材料断裂行为的相互作用。发现应力三轴性(T)通常随着表面晶粒的比率而增加。在压缩语句中。无论几何形状和晶粒大小如何,正T值的断裂应变和断裂能都比负T值小得多。这项研究深入了解了尺寸效应和应力条件对微尺度塑性变形中延性断裂行为的影响。

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