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Development and application of the strain energy density criterion to three-dimensional I-II mixed-mode fracture

机译:三维I-II混合模式骨折应变能量密度标准的发展与应用

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In this paper a modified Strain Energy Density (SED) criterion is proposed to predict the initiation angle of the crack growth under three-dimensional mixed mode loading condition. Compared with several corresponding experiments, large amount of finite element analyses are implemented to give simple prescription of the modified SED. Influences of several factors such as material properties, in-plane constraint (T stress) and out-plane constraint (finite thickness) are considered. Three main conclusions are obtained: (1) The position of the characteristic distance is important in the modified SED criterion. The characteristic distance is insensitive to Poisson's ratio, hardening exponent, plate-thickness, T-stress and mode mixity on the mid-plane of a three-dimensional crack, however the initiation angle is sensitive to those parameters. (2) The modified SED criterion can be used to predict the crack initiation angle for different material properties and different mode mixity, including both the dimple failure type and the shear failure type. (3) The initiation angle determined from this criterion varies from the mid-plane to the surface plane for a three-dimensional crack. This kind of variation is larger for thicker plate and mode I predominated cases, which matches our experimental results.
机译:本文提出了一种改进的应变能量密度(SED)标准以预测三维混合模式负载条件下裂纹生长的起始角度。与几个相应的实验相比,实施了大量有限元分析,以便为改进的SED进行简单的处方。考虑了几种因素,例如材料特性,面内约束(T应力)和外平面约束(有限厚度)的影响。获得了三个主要结论:(1)特征距离的位置在改进的SED标准中很重要。特征距离对三维裂纹的中平面上的泊松比,硬化指数,板厚,T胁迫和模式混合不敏感,但是发起角对这些参数敏感。 (2)改进的SED标准可用于预测不同材料特性和不同模式混合的裂纹启动角度,包括凹坑故障类型和剪切失效类型。 (3)从该标准确定的起始角度从中平面变化到三维裂缝的表面平面。这种变化对于较厚的板和模式I优势案例较大,其与我们的实验结果相匹配。

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