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首页> 外文期刊>International Journal of Plasticity >Numerically robust spectral methods for crystal plasticity simulations of heterogeneous materials
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Numerically robust spectral methods for crystal plasticity simulations of heterogeneous materials

机译:用于非均质材料晶体塑性模拟的数值鲁棒光谱方法

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摘要

Efficient spectral methods are developed to predict the micromechanical behaviour of plastically deforming heterogeneous materials. The direct and mixed variational conditions for mechanical equilibrium and strain compatibility are formulated in a framework that couples them to a general class of non-linear solution methods. Locally evolving micromechanical fields in a sheared polycrystalline material governed by a phenomenological crystal plasticity constitutive law are used to validate the methods, and their performance at varying material heterogeneities is benchmarked. The results indicate that the solution method has a dominant influence on performance and stability at large material heterogeneities, and significant improvements over the conventional fixed-point approach are obtained when higher-order solution methods are employed. Optimal solution strategies are devised based on this and applied to an idealised dual-phase polycrystalline aggregate. (C) 2014 Elsevier Ltd. All rights reserved.
机译:开发了有效的光谱方法来预测塑性变形异质材料的微机械行为。机械平衡和应变相容性的直接和混合变化条件在一个框架中制定,将它们耦合到一类非线性解决方法。使用受现象学晶体可塑性本构关系控制的剪切多晶材料中局部演化的微机械场来验证该方法,并以其在不同材料异质性下的性能为基准。结果表明,求解方法对材料异质性较大时的性能和稳定性具有主要影响,当采用高阶求解方法时,与常规定点方法相比,有了显着的改进。在此基础上设计了最佳的解决方案,并将其应用于理想的双相多晶聚集体。 (C)2014 Elsevier Ltd.保留所有权利。

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