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Multi-scale energy release rate in dynamic crack growth of strain-softening materials

机译:菌株软化材料动态裂纹生长中的多尺度能量释放率

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摘要

Dynamic crack growth in an elastic-plastic solid containing damage has been studied under mode-I plane strain conditions from a multi-scale viewpoint. A modified Dugdale model is used to define the transition from stable to spontaneous fracture. The non-linear zone consists of two parts: a specified plastic zone and a fracture process zone (FPZ) resulting from two distinct mechanisms due to strain hardening and strain softening, respectively. The length ratio between the FPZ and the whole cohesive zone determines the crack growth stability. In the softening FPZ zone, a rate-dependent power-law traction-separation relationship, expressed in terms of the ultimate tensile strength, softening index and viscosity, controls the constitutive relationship of the damaged material. The governing integral equation and the auxiliary conditions are given. Numerical solutions for fracture toughness are obtained based on a critical crack-tip opening angle criterion. The results show that the fracture toughness increases at high crack velocities and low crack-tip constraints. But it is insensitive to the size of the damage zone and the strain-softening index. The constraint effect due to specimen geometry and crack speed can influence significantly the toughness and the length ratio.
机译:在多尺度观点的模式-I平面应变条件下研究了弹性塑料固体损伤中的动态裂纹生长。修改后的Dugdale模型用于定义从稳定到自发骨折的过渡。非线性区域由两部分组成:指定的塑料区和由菌株硬化和菌株软化引起的两个不同机制产生的裂缝处理区(FPZ)。 FPZ和整个内聚区之间的长度比决定了裂缝的生长稳定性。在柔软的FPZ区中,以极限拉伸强度,软化指数和粘度表达的速率依赖的电力 - 法牵引关系,控制损坏材料的本构关系。给出了控制整体方程和辅助条件。基于临界裂缝尖端打开角度标准获得裂缝韧性的数值溶液。结果表明,断裂速度在高裂缝速度和低裂纹尖端约束下增加。但它对损伤区的大小和应变软化指数不敏感。由于样品几何和裂缝速度引起的约束效果可以显着影响韧性和长度比。

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