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Phase-field study of crack nucleation and propagation in elastic-perfectly plastic bodies

机译:弹性完美塑料体中裂纹成核和繁殖的相位场研究

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Crack initiation and propagation in elastic-perfectly plastic bodies is studied in a phase-field or variational gradient damage formulation. A rate-independent formulation that naturally couples elasticity, perfect plasticity and fracture is presented, and used to study crack initiation in notched specimens and crack propagation using a surfing boundary condition. Both plane strain and plane stress are addressed. It is shown that in plane strain, a plastic zone blunts the notch or crack tip which in turn inhibits crack nucleation and propagation. Sufficient load causes the crack to nucleate or unpin, but the crack does so with a finite jump. Therefore the propagation is intermittent or jerky leaving behind a rough surface. In plane stress, failure proceeds with an intense shear zone ahead of the notch or crack tip and the fracture process is not complete. (C) 2019 Elsevier B.V. All rights reserved.
机译:在相场或变分梯度损伤配方中研究了弹性 - 完美塑料体中的裂纹启动和传播。一种独立于自然耦合弹性,完美的可塑性和裂缝的速率无关的制剂,并用于研究缺口标本中的裂纹引发和使用冲浪边界条件的裂纹传播。解决了两个平面应变和平面应力。结果表明,在平面应变中,塑料区钝化凹口或裂纹尖端,这反过来抑制裂纹成核和传播。足够的载荷导致裂缝到核心或取消键,但裂缝具有有限的跳跃。因此,传播是间歇性的或生涩的留在粗糙的表面后面。在平面应力下,故障在凹口或裂纹尖端前面采用强烈的剪切区域,裂缝过程不完整。 (c)2019 Elsevier B.v.保留所有权利。

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