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Dynamic analysis of three-dimensional polycrystalline materials using the boundary element method

机译:边界元法动态分析三维多晶材料

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A new computational framework to analyse the microscale dynamic behaviour of three-dimensional polycrystalline materials with different lattice structures is presented. The absence of analytical solutions for these stochastic materials has been a challenge in validating the numerical results. In macroscale analysis, when the number of crystal aggregates in the microscale is large, polycrystalline aggregates exhibit an effective isotropic nature. To model the elastodynamic effects, random crystalline orientations and morphology configurations are used for each polycrystalline aggregate. The recently proposed fundamental solution based on double Fourier series for general anisotropy coupled to the dual-reciprocity boundary element method is used. A drastic reduction in the degrees of freedom is achieved owing to the nature of the boundary mesh. The stochastic time-dependent displacement wave under various boundary conditions is evaluated, and the validation is carried out using homogenisation over the grain surfaces. An assessment of the effective macroscopic properties of the available analytical isotropic models is proposed, wherein the convergence is evaluated using statistical samples. Numerical results are presented using a large number of simulations to obtain a good confidence interval. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种新的计算框架,用于分析具有不同晶格结构的三维多晶材料的微观动力学行为。这些随机材料的分析解决方案的缺乏一直是验证数值结果的挑战。在宏观分析中,当微观上的晶体聚集体数量大时,多晶聚集体表现出有效的各向同性性质。为了模拟弹性动力效应,对每种多晶聚集体使用随机的晶体取向和形态构型。使用了最近提出的基于双傅里叶级数的基本各向异性的基本解,并结合了双可逆边界元法。由于边界网格的性质,极大地降低了自由度。评估了在各种边界条件下随时间变化的随机位移波,并使用晶粒表面的均质化进行了验证。提出了对可用分析各向同性模型的有效宏观特性的评估,其中使用统计样本评估了收敛性。使用大量的仿真来给出数值结果以获得良好的置信区间。 (C)2018 Elsevier Ltd.保留所有权利。

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