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Multi-particle Unit Cell Models for Particulate-reinforced Titanium Matrix Composites

机译:颗粒增强钛基复合材料的多粒子晶胞模型

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摘要

Fixed point iteration method for multi-particle unit cell's boundary condition is presented. On the basis of this method, the macroscopic effective material parameters can be obtained from a microscopic point of view. Multi-particle unit cell models containing some important microstructure characteristics of TP-650 titanium matrix composites are established. The real displacement constrained conditions are applied on the multi-particle unit cell using this method, and the mechanical properties and fracture behaviors of the composites under tensile loading are simulated. A good agreement was obtained between the experimental results and the numerical predictions, which verifying the rationality of the FE models based on fixed point iteration method.
机译:提出了多粒子晶胞边界条件的不动点迭代方法。基于该方法,可以从微观角度获得宏观有效材料参数。建立了包含一些重要的TP-650钛基复合材料微观结构特征的多粒子晶胞模型。使用该方法将实际位移约束条件应用于多粒子晶胞,并模拟了复合材料在拉伸载荷下的力学性能和断裂行为。实验结果与数值预测结果吻合良好,验证了基于定点迭代法的有限元模型的合理性。

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