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Nonlocal phase field approach for modeling damage in brittle materials

机译:脆性材料损伤的非局部相场现场方法

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摘要

In this work, we present a nonlocal phase field model for damage in brittle materials. We define a nonconservative order parameter for representing the damage. The Helmholtz free energy functional of the Ginzburg-Landau type that incorporates a new degradation function for the elastic strain energy is considered. The hypothesis of strain equivalence and strain energy equivalence from continuum damage mechanics are adopted to predict the evolution of damage. A conjugate force to damage is derived for both these hypothesis to arrive at a damage criterion. The strong interrelation between phase field models and gradient damage models has been brought out. The solution of the nonlinear system of coupled equation is achieved by a change in the modified Arc-length method and considering a staggered approach. In this approach a linearization of the Crisfield Arc-length quadratic equation for calculation of load increment factor results in an unique root. Numerical examples are presented to demonstrate the usefulness of the proposed damage model.
机译:在这项工作中,我们提出了一个非局部相场模型,用于脆性材料损坏。我们为代表损坏定义非服务命令参数。考虑了包括用于弹性应变能量的新的降解功能的Ginzburg-Landau型的Helmholtz自由能功能。采用连续损伤力学的应变当量和应变能量等效性的假设来预测损害的演变。对于这些假设来得出与损伤的缀合力达到损坏标准。已经提出了相场模型和梯度损坏模型之间的强烈相互关系。通过改进的弧长方法的变化和考虑交错的方法来实现非线性系统的耦合方程的解决方案。在这种方法中,CrisField弧长二次方程的线性化,用于计算负载增量因子导致唯一的根。提出了数值例证以证明所提出的损伤模型的有用性。

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