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Effect of plasticity on cleavage crack growth resistance at an interface

机译:可塑性对界面抗劈裂裂纹扩展性的影响

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The mixed mode toughness of an interface joining an elastic-plastic metal to a solid which does not yield plastically is studied numerically for cases where fracture occurs by atomic separation. Thus, the length scale of the fracture process is typically much smaller than the isolation spacing on the metal side of the interface. But even though the crack growth mechanism is brittle, the interface shows crack growth resistance due to plastic flow at some distance form the crack tip. It is assumed that the crack tip does not emit dislocations. Therefore, the numerical technique employed makes use of a thin elastic strip of material along the metal side of the crack tip, while the metal outside the strip is described by continuum plasticity. Most of the computations use an infinitely long elastic strip to represent the elastic core region around the tip, but the approximation of using a long strip is tested by comparison with a few analyses for a short strip.
机译:对于通过原子分离发生断裂的情况,通过数值研究了将弹塑性金属与不会产生塑性屈服的固体结合的界面的混合模式韧性。因此,断裂过程的长度尺度通常远小于界面金属侧的隔离间距。但是,即使裂纹扩展机制很脆,界面也会由于在距裂纹尖端一定距离处的塑性流动而显示出抗裂纹扩展的能力。假定裂纹尖端不发射位错。因此,所采用的数值技术沿裂纹尖端的金属侧使用了一条薄的弹性材料条,而条外的金属则由连续可塑性描述。大多数计算使用无限长的弹性条来表示尖端周围的弹性芯区域,但是通过与短条的一些分析进行比较,测试了使用长条的近似值。

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