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首页> 外文期刊>International Journal of Fracture >Modelling cohesive crack growth using a two-step finite element-scaled boundary finite element coupled method
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Modelling cohesive crack growth using a two-step finite element-scaled boundary finite element coupled method

机译:使用两步有限元缩放边界有限元耦合方法模拟内聚裂纹扩展

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摘要

A two-step method, coupling the finite element method (FEM) and the scaled boundary finite element method (SBFEM), is developed in this paper for modelling cohesive crack growth in quasi-brittle normal-sized structures such as concrete beams. In the first step, the crack trajectory is fully automatically predicted by a recently-developed simple reme-shing procedure using the SBFEM based on the linear clastic fracture mechanics theory. In the second step, interfacial finite elements with tension-softening constitutive laws are inserted into the crack path to model gradual energy dissipation in the fracture process zone, while the elastic bulk material is modelled by the SBFEM. The resultant nonlinear equation system is solved by a local arc-length controlled solver. Two concrete beams subjected to mode-I and mixed-mode fracture respectively are modelled to validate the proposed method. The numerical results demonstrate that this two-step SBFEM-FEM coupled method can predict both satisfactory crack trajectories and accurate load-displacement relations with a small number of degrees of freedom, even for crack growth problems with strong snap-back phenomenon. The effects of the tensile strength, the mode-I and mode-II fracture energies on the predicted load-displacement relations are also discussed.
机译:本文提出了一种将有限元方法(FEM)与比例边界有限元方法(SBFEM)耦合的两步法,用于模拟准脆性正常尺寸结构(如混凝土梁)中的内聚裂纹扩展。第一步,通过基于线性碎裂断裂力学理论的SBFEM,使用SBFEM通过最近开发的简单修补程序完全自动预测裂纹轨迹。第二步,将具有拉伸软化本构律的界面有限元插入裂缝路径,以模拟断裂过程区域中的逐渐能量消散,而弹性体材料则由SBFEM建模。最终的非线性方程组由局部弧长控制的求解器求解。分别模拟了两种分别经受I型和混合模式断裂的混凝土梁,以验证该方法的有效性。数值结果表明,这种两步SBFEM-FEM耦合方法可以预测满意的裂纹轨迹,并以较小的自由度预测准确的载荷-位移关系,即使对于具有强烈回跳现象的裂纹扩展问题也是如此。还讨论了抗拉强度,I型和II型断裂能对预测的载荷-位移关系的影响。

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