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Implementation of Fictitious Crack Model Using Contact Finite Element Method for the Crack Propagation in Concrete under Cyclic Load

机译:接触有限元法在循环荷载作用下混凝土裂纹扩展的虚拟裂纹模型的实现。

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The mixed freedom finite element method proposed for contact problems was extended to simulate the fracture mechanics of concrete using the fictitious crack model. Pairs of contact points were set along the potential developing path of the crack. The displacement of structure was chosen as the basic variable, and the nodal contact force in contact region under local coordinate system was selected as the iteration variable to confine the nonlinear iteration process in the potential contact surface which is more numerically efficient. The contact forces and the opening of the crack were obtained explicitly enabling the softening constitutive relation for the concrete to be introduced conveniently by the fictitious crack model. According to the states of the load and the crack, the constitutive relation of concrete under cyclic load is characterized by six contact states with each contact state denoting its own displacement-stress relation. In this paper, the basic idea of the mixed freedom finite element method as well as the constitutive relation of concrete under cyclic load is presented. A numerical method was proposed to simulate crack propagation process in concrete. The accuracy and capability of the proposed method were verified by a numerical example against experiment data.
机译:提出了一种针对接触问题的混合自由度有限元方法,利用虚拟裂纹模型模拟了混凝土的断裂力学。沿裂纹的潜在发展路径设置了成对的接触点。选择结构的位移作为基本变量,选择局部坐标系下接触区域的节点接触力作为迭代变量,以将非线性迭代过程限制在潜在接触表面上,这在数值上更为有效。明确获得了接触力和裂缝的开度,从而可以通过虚拟裂缝模型方便地引入混凝土的软化本构关系。根据荷载和裂缝的状态,混凝土在循环荷载下的本构关系以六个接触状态为特征,每个接触状态表示其自身的位移-应力关系。提出了混合自由度有限元方法的基本思想以及循环荷载作用下混凝土的本构关系。提出了一种数值模拟混凝土裂纹扩展过程的方法。通过数值例子验证了所提方法的准确性和能力。

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