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Mechanical Behaviors of SiC Particle Reinforced Al Matrix Composites: A Study Based on Finite Element Method

机译:SiC颗粒增强Al基复合材料的机械行为:基于有限元方法的研究

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The effects of SiC particle size, volume fraction and tensile strain on the deformation behaviors of SiC particle reinforced Al matrix composites were studied by finite element method using microstructure based model. The results showed that the addition of reinforcements will result in no-uniform stress distribution in matrix. The maximum stress in the particles increases, and the minimum stress in the matrix decreases when the SiC particle volume fraction increases, indicating more load being transferred from matrix to particles with increasing the SiC particle volume fraction. It also showed that as the tensile strain and SiC particle size increase, the maximum stress in the particles increases. It can thus be concluded that small-sized SiC particles can endure more loads and improve the mechanical properties of the composites.
机译:基于微结构的模型研究了SiC粒度,体积分数和拉伸应变对SiC颗粒增强Al基质复合材料变形行为的影响。结果表明,增强物的添加将导致基质中的不均匀应力分布。颗粒中的最大应力增加,当SiC颗粒体积分数增加时,基质中的最小应力降低,表明随着SiC颗粒体积分数的增加,从基质转移到颗粒的更多负载。它还表明,随着拉伸应变和SiC粒度的增加,颗粒中的最大应力增加。因此可以得出结论,小尺寸的SiC颗粒可以忍受更多的载荷并改善复合材料的机械性能。

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