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首页> 外文期刊>Engineering Fracture Mechanics >Analysis of the effect of a micro-crack on plastic zone of the edge macro-crack tip by macroscopic and microscopic methods
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Analysis of the effect of a micro-crack on plastic zone of the edge macro-crack tip by macroscopic and microscopic methods

机译:微裂纹对边缘宏观裂纹尖端塑性区的效果分析宏观和微观方法

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The effect of the micro-crack on plastic zone ahead of the macro-crack tip (PZMA) is analyzed based on macroscopic and microscopic methods. From the macroscopic perspective, the plastic deformation is due to the local stress near crack tip is more than the yielding limit. So the complete stress field is calculated based on the distributed dislocation technique (DDT) and the plastic zone (PZ) is determined by von Mises yielding criterion (MYC). On the other hand, the crack tip plasticity is simulated by finite element method (FEM). From the microscopic perspective, the plastic deformation is caused by dislocations emitted from crack tip. So PZ is represented by dislocations, and it is determined based on DDT and dislocation-free zone (DFZ) model. The results show the micro-crack located in front of PZMA has the amplifying effect on PZMA. PZMA is separated by the micro-crack located in PZMA. The micro-crack behind PZMA has no effect on PZMA. PZMA has the shielding effect on the macro-crack propagation, and the shielding effect increases with PZMA increasing. The micro-crack has the amplifying effect on PZMA at aboutx0/a?>?0.5, while it has the shielding effect at aboutx0/a?
机译:基于宏观和微观方法,分析了微裂纹对宏裂纹尖端(PZMA)前方的塑料区的影响。从宏观的角度来看,塑性变形是由于局部应力附近的裂纹尖端大于产量极限。因此,基于分布式位错技术(DDT)计算完全应力场,塑料区(PZ)由von MISS产生标准(MYC)确定。另一方面,通过有限元方法(FEM)模拟裂缝尖塑状。从微观角度来看,塑性变形是由裂缝尖端发射的位错引起的。因此PZ由位错表示,并且基于DDT和无位分区(DFZ)模型来确定。结果表明,位于PZMA前面的微裂纹对PZMA的放大作用。 PZMA被位于PZMA的微裂纹分开。 PZMA后面的微裂纹对PZMA没有影响。 PZMA对宏观裂纹传播具有屏蔽效果,屏蔽效果随PZMA增加而增加。微裂纹对PZMA的放大效果在约0 / A?0.5,而在约x0 / a / a的屏蔽效果上具有屏蔽效果。<Δ0.5。这些结果对于预测和解释裂缝尖端处的塑性行为非常有用。

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