Role of a Shear Planar Mesodefect in Nucleation of Crack at Grains Junction Due to Athermal Grain Boundary Sliding

V. Perevezentsev, S. Kirikov, J. Svirina
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Abstract

We consider the conditions for microcrack nucleation in a grain junction due to athermal sliding along the grain boundary, containing a strain-induced shear-type planar mesodefect. The dependences of critical external stress of microcrack nucleation on the mesodefect length, its strength and the threshold stress of athermal sliding are obtained. It is shown that the presence of the mesodefect at the grain boundary can lead to a significant decrease of the crack nucleation stress in comparison with the case of pure grain boundary sliding. It is concluded that the induced athermal grain boundary sliding, carried out by the motion of the glissile components of dislocations, accumulating at the grain boundaries during intragranular plastic deformation, can be considered as one of the possible mechanisms for microcracks nucleation in materials with fragmented structure.
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剪切平面细观缺陷在晶界非热滑动晶界裂纹成核中的作用
我们考虑了由于沿晶界的非热滑动而导致的晶界微裂纹形核的条件,其中包含应变诱导的剪切型平面介孔缺陷。得到了微裂纹形核临界外应力与中缺陷长度、中缺陷强度和非热滑动阈值应力的关系。结果表明,与纯晶界滑动相比,晶界中缺陷的存在使裂纹形核应力显著降低。结果表明,在晶内塑性变形过程中,由位错的滑块运动引起的晶界非热滑动可以被认为是碎片化结构材料微裂纹成核的可能机制之一。
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