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ON THE MODELING OF DISSIPATIVE MECHANISMS IN A DUCTILE SOFTENING BAR

机译:球杆软化棒中耗散机理的模型研究

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The computational modeling of softening materials is still a challenging subject. An interesting way to deal with this problem is to adopt a variational framework. However, there are appealing features in using a classical approach. We explore the possibilities of both frameworks to include dissipative mechanisms. We start with a one-dimensional variational plastic-damage model rewritten in a classical framework, where regularization through viscoplasticity is applied. We highlight the appearance of an implicit internal length in the plastic strain field during the damage phase, allowing plasticity to evolve over a region before concentrating. Then, a consistent variational approach is adopted. A plastic strain gradient term is added to the global energy functional, with variable internal length coupled to the damage level. This model is further enriched by the addition of a hardening variable to the plastic evolution. A comparative analysis of the computational implementation of the different alternatives is performed.
机译:软化材料的计算建模仍然是一个充满挑战的主题。解决此问题的一种有趣方法是采用变体框架。但是,使用经典方法具有吸引人的功能。我们探索了两个框架包含耗散机制的可能性。我们从在经典框架中重写的一维变化塑性损伤模型开始,其中通过粘塑性应用规则化。我们强调了在破坏阶段塑性应变场中隐含的内部长度的出现,从而使可塑性在集中之前在一个区域内演化。然后,采用一致的变分方法。将塑性应变梯度项添加到全局能量函数中,并将可变的内部长度耦合到损伤级别。通过向塑料演变过程中添加硬化变量,进一步丰富了该模型。对不同替代方案的计算实现方式进行了比较分析。

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