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The statistical second-order two-scale analysis for dynamic thermo-mechanical performances of the composite structure with consistent random distribution of particles

机译:具有一致随机分布的复合结构动态热力学性能的统计二阶二阶分析

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摘要

This study presents a statistical second-order two-scale (SSOTS) method to predict dynamic coupled thermo-mechanical performances of 3-D composite materials with consistent random distribution of particles. In the dynamic thermo-mechanical problem considered, a mutual interaction exists between the displacement and temperature fields. The statistical second-order two-scale asymptotic formulations for calculating the effective thermal and mechanical parameters, temperatures, displacements, heat flux densities and stresses of the problem are developed firstly. And then, the procedure of numerical computation based on the SSOTS method is discussed in detail. The numerical results obtained by using the SSOTS algorithm are compared with those by FEM in a very fine mesh. It shows that the SSOTS method is not only feasible, but also accurate and efficient to predict dynamic thermo-mechanical performances of composite materials with consistent random distribution of particles. Numerical results also demonstrate that the SSOTS method can capture the microscopic characteristics effectively.
机译:这项研究提出了一种统计二阶双尺度(SSOTS)方法来预测具有一致的随机分布颗粒的3-D复合材料的动态耦合热机械性能。在所考虑的动态热力学问题中,位移场和温度场之间存在相互作用。首先建立了统计二阶二阶渐近公式,用于计算问题的有效热力学参数,温度,位移,热通量密度和应力。然后,详细讨论了基于SSOTS方法的数值计算过程。在非常细的网格中,将使用SSOTS算法获得的数值结果与通过FEM获得的数值结果进行了比较。结果表明,SSOTS方法不仅可行,而且准确,有效地预测了具有一致随机分布的复合材料的动态热机械性能。数值结果还表明,SSOTS方法可以有效地捕获微观特征。

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