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Reduced order homogenization for viscoplastic composite materials including dissipative imperfect interfaces

机译:包括耗散不完善界面在内的粘塑性复合材料的有序均质化降低

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摘要

The computational effort of homogenization schemes based on full-field simulations is prohibitively high for many applications and motivates the use of model order reduction techniques. A reduced order homogenization scheme is presented which allows for a coupled treatment of dissipative mechanisms both in the bulk and on imperfect interfaces within the microstructure. Extending the key idea of the nonuniform transformation field analysis (NTFA), reduced bases are introduced for all fields of internal variables and also for the displacement discontinuities at the interfaces. In the online phase, an initial value problem is solved, which is derived from a mixed incremental variational principle. The variational formulation requires that the underlying constitutive models are given by two potentials, as known from the framework of generalized standard materials. As an example, a unidirectional fiber composite with a viscoplastic matrix and a viscoelastic interface is studied. It is demonstrated that the reduced order model can be used to analyze the rate-dependence of the overall behavior as well as the interface-induced size effect and the impact of varying interface parameters. At a significantly reduced computational effort, good quantitative agreement with finite element reference solutions is found for predictions of global quantities such as the effective stress and the effective mechanical work. For this is a rather simple training strategy sufficient. It is found that the reduced model provides good approximations of the local stress field and of the internal variables within the microstructure, which can benefit from a more comprehensive training. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于许多应用,基于全场模拟的均质化方案的计算工作量高得令人望而却步,并激发了模型阶数缩减技术的使用。提出了一种降低级的均质化方案,该方案允许在主体中以及在微结构内不完善的界面上对耗散机制进行耦合处理。扩展了非均匀变换场分析(NTFA)的关键思想,为内部变量的所有场以及界面处的位移不连续性引入了简化的基数。在在线阶段,解决了初始值问题,该问题源于混合增量变分原理。从通用标准材料的框架中可以知道,变体公式要求基本的本构模型由两个电位给出。例如,研究了具有粘塑性基质和粘弹性界面的单向纤维复合材料。结果表明,降阶模型可用于分析整体行为的速率依赖性,以及界面引起的尺寸效应和变化的界面参数的影响。以显着减少的计算工作量,可以找到与有限元参考解决方案的良好定量协议,以预测诸如有效应力和有效机械功之类的整体数量。因为这是一个相当简单的培训策略就足够了。发现简化模型提供了局部应力场和微观结构内部变量的良好近似,这可以受益于更全面的训练。 (C)2016 Elsevier Ltd.保留所有权利。

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