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Energy dissipation associated with crack extension in an elastic-plastic material

机译:弹塑性材料中与裂纹扩展相关的能量耗散

摘要

Crack extension in elastic-plastic material involves energy dissipation through the creation of new crack surfaces and additional yielding around the crack front. An analytical procedure, using a two-dimensional elastic-plastic finite element method, was developed to calculate the energy dissipation components during a quasi-static crack extension. The fracture of an isotropic compact specimen was numerically simulated using the critical crack-tip-opening-displacement (CTOD) growth criterion. Two specimen sizes were analyzed for three values of critical CTOD. Results from the analyses showed that the total energy dissipation rate consisted of three components: the crack separation energy rate, the plastic energy dissipation rate, and the residual strain energy rate. All three energy dissipation components and the total energy dissipation rate initially increased with crack extension and finally reached constant values.
机译:弹塑性材料中的裂纹扩展涉及通过创建新的裂纹表面以及在裂纹前沿周围产生额外的屈服来消耗能量。开发了一种使用二维弹塑性有限元方法的分析程序,以计算准静态裂纹扩展过程中的能量耗散分量。使用临界裂纹尖端张开位移(CTOD)增长准则对各向同性致密试样的断裂进行了数值模拟。分析了两个样本尺寸的三个关键CTOD值。分析结果表明,总耗能率由三部分组成:裂纹分离能率,塑性耗能率和残余应变能率。这三个消能成分和总消能率最初随着裂纹扩展而增加,最终达到恒定值。

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