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A FFT solver for variational phase-field modeling of brittle fracture

机译:用于脆性断裂变相场建模的FFT求解器

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摘要

The variational phase-field method is an attractive non-local approach of modeling fracture in heterogeneous materials. However, these materials usually require a fine mesh to resolve the fracture process zone. Consequently, the standard finite element solver becomes cumbersome due to the large number of elements in applications with highly heterogeneous materials. Motivated by this limitation, an algorithm based on FFT methods has been introduced in this paper to solve the phase-field model of brittle fracture. Relying on a staggered update scheme, the proposed algorithm solves the fracture problem and mechanical problem separately, both using the FFT technique. It inherits the advantages of classical FFT methods in terms of simplicity of mesh generation and parallel implementation. Introduced within a FFT-based code "AMITEX", it takes the advantage of massively parallel capabilities associated with a distributed memory implementation. The characteristics of the proposed method are analyzed in a single edge notched specimen benchmark. Representative numerical examples demonstrate that the proposed FFT solver is capable of predicting different crack modes and complex crack configuration, such as crack interaction, branching and coalescence. Finally, a model of an idealized continuous fiber composite with void involving over 32 million voxels is solved, illustrating the potential of the FFT solver in large-scale problems. (C) 2019 Elsevier B.V. All rights reserved.
机译:变相场方法是一种建模非均质材料中断裂的有吸引力的非局部方法。但是,这些材料通常需要精细的网格以解决断裂过程区域。因此,由于在具有高度异质材料的应用中存在大量元素,因此标准的有限元求解器变得很麻烦。为此,本文提出了一种基于FFT的算法来求解脆性断裂的相场模型。依靠交错更新方案,该算法分别使用FFT技术解决了断裂问题和力学问题。它在简化网格生成和并行实现方面继承了经典FFT方法的优势。在基于FFT的代码“ AMITEX”中引入后,它利用了与分布式存储器实现相关的大规模并行功能。所提出的方法的特征在单边带缺口的标本基准中进行了分析。代表性数值示例表明,所提出的FFT求解器能够预测不同的裂纹模式和复杂的裂纹配置,例如裂纹相互作用,分支和合并。最后,求解了一个理想的连续纤维复合材料的模型,该模型具有超过3200万个体素的孔隙,说明了FFT解算器在大规模问题中的潜力。 (C)2019 Elsevier B.V.保留所有权利。

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