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Crack growth with a part-through process zone in thin plates

机译:薄板中的部分贯穿工艺区导致裂纹扩展

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A cohesive zone model has been proposed to model crack growth with a part-through process zone in a thin solid. With the solid being modeled in Kirchhoff’s plate theory, the crack with a relatively long, inclined front is modeled as a line discontinuity with a finite cohesive zone within the plate. A cohesive force law is adopted to capture the effect of residual strength and residual rigidity of a plate cross-section gradually cracking through the thickness. It is derived by a plane-strain elasticity analysis of a cross section normal to the part-through crack. It is then applied in the plate formulation of a line crack to simulate its propagation within the plate plane. This model essentially resolves the originally three-dimensional crack problem in two hierarchical steps, i.e., in the thickness and in the in-plane directions. In the present study, the bending case is considered. A boundary element method is applied to numerically derive the cohesive force law and simulate the crack growth in a thin titanium-alloy plate. The computational efficiency of the model is demonstrated. The plate is shown to fracture in a nominally brittle or ductile manner depending on its thickness.
机译:有人提出了一个内聚区模型来模拟薄固体中具有部分贯通过程区的裂纹扩展。根据基尔霍夫的板理论对实体进行建模,将具有相对较长且倾斜的前沿的裂纹建模为线不连续,并在板内具有有限的内聚区。采用内聚力定律来捕获残余的强度和残余的刚度,该残余应力和残余的刚度在厚度方向上逐渐开裂。它是通过垂直于部分贯通裂纹的截面的平面应变弹性分析得出的。然后将其应用于线裂纹的板配方中,以模拟其在板平面内的传播。该模型从根本上解决了最初的三维裂纹问题的两个层次步骤,即在厚度和平面内方向上。在本研究中,考虑了弯曲情况。应用边界元方法数值推导了内聚力定律并模拟了钛合金薄板中的裂纹扩展。证明了模型的计算效率。示出的板根据其厚度以名义上的脆性或延性方式断裂。

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