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Fracture Parameters On Three-dimensional Sliding Mode Fracture

机译:三维滑动模式骨折的断裂参数

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In the recent years three-dimensional (3D) elastic-plastic analyses have been conducted extensively for the opening mode (mode I) fracture and the constraint effects are discussed in detail. However less work is focused on other modes as sliding mode (mode II), tearing mode (mode III) or the mixed mode fracture in three-dimensional. In this paper the thickness effect on pure mode II case is discussed by the finite element method (FEM). Modified Boundary Layer (MBL) model is used, which has the ability to take into account the combined effects of the in-plane constraint (T-stress) and the out-of-plane constraint (finite thickness). The result demonstrates the weak thickness dependence on the near tip stress and strain fields under mode II loading. And the size of the 3D zone at mode II loading is determined to range from 1.0 to 1.2 times the thickness. Two fracture parameters of J integral and crack tip sliding displacement (CTSD) are discussed, which are almost same at different thickness planes except those very near the surface. It is interesting to find that the relations between J and CTSD keep linear at different thickness planes. T-stress is symmetry on stress and strain distributions along the crack plane. However its effects indicate weak thickness dependent on the CTSD and J integral fracture parameter.
机译:在近年来,三维(3D)弹性塑料分析已经广泛地进行了开口模式(模式I)裂缝,并详细讨论约束效果。然而,较少的工作在其他模式上专注于滑动模式(模式II),撕裂模式(模式III)或三维混合模式骨折。本文通过有限元方法(FEM)讨论了对纯模式II壳体的厚度效应。使用修改的边界层(MBL)模型,其能够考虑面内约束(T应力)和面外约束(有限厚度)的组合效果。结果表明,在模式II负载下,对近尖端应力和应变场的弱厚度依赖性。在模式II负载下的3D区的大小确定为厚度的1.0至1.2倍。讨论了J积分和裂纹尖端滑动位移(CTSD)的两个断裂参数,除了表面附近的不同厚度平面几乎相同。有趣的是发现J和CTSD之间的关系保持线性在不同的厚度平面上。 T-应力是对裂缝平面应力和应变分布的对称性。然而,它的影响表明厚度依赖于CTSD和J积分裂缝参数。

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