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首页> 外文期刊>Journal of Materials Engineering and Performance >Equation for the Density of Particle-Reinforced Metal Matrix Composites: A New Approach
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Equation for the Density of Particle-Reinforced Metal Matrix Composites: A New Approach

机译:颗粒增强金属基复合材料密度的方程:一种新方法

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This paper presents a novel equation for the density of ceramic particle reinforced metal matrix composites. An overall density change occurs in composites due to the thermal mismatch between the metal matrix and the reinforcement. The thermal mismatch occurs because the coefficient of thermal expansion and the elastic properties are different for the matrix and the reinforcement. The values obtained using the proposed equation for density were compared with both the rule of mixtures for density and the experimental values obtained for aluminium and zinc alloy composites. The composite specimens were fabricated using compocasting technique (one of the types of liquid metallurgy route). The proposed mathematical model is found have better agreement with the experimental results at lower volume fractions of the reinforcement; however, some deviations were observed at higher volume fractions of the reinforcement. The proposed equation yields agreeable results for aluminium composites and fairly agreeable results for zinc alloy composites.
机译:本文提出了陶瓷颗粒增强金属基复合材料密度的新方程。由于金属基质和增强材料之间的热失配,复合材料中发生了整体密度变化。发生热失配是因为基体和增强材料的热膨胀系数和弹性特性不同。使用提议的密度方程式获得的值与混合物的密度规则以及铝和锌合金复合材料获得的实验值进行了比较。使用复合浇铸技术(液态冶金路线的一种)制造了复合材料试样。在较低的钢筋体积分数下,发现所提出的数学模型与实验结果具有更好的一致性。但是,在钢筋的较高体积分数下观察到一些偏差。所提出的方程对于铝复合材料产生令人满意的结果,而对于锌合金复合材料产生相当令人满意的结果。

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