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首页> 外文期刊>Journal of Materials Research and Technology >Microstructure, mechanical properties and machinability of particulate reinforced Al matrix composites: a comparative study between SiC particles and high-entropy alloy particles
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Microstructure, mechanical properties and machinability of particulate reinforced Al matrix composites: a comparative study between SiC particles and high-entropy alloy particles

机译:颗粒增强Al基复合材料的微观结构,机械性能和可加工性:SiC颗粒和高熵合金颗粒的比较研究

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In this study, 2024Al matrix composites reinforced by SiC particles (SiC-2024Al) and nanocrystalline high-entropy alloy particles (HEA-2024Al) fabricated by powder metallurgy were systematically compared for the first time. There is a significant difference in microstructure and mechanical properties as well as machinability between two kinds of composites. In term of microstructure, when the volume fraction of reinforcements was 10%, both SiC-2024Al and HEA-2024Al composites showed a homogeneous particle distribution in the matrix. With the increase of reinforcement content, HEA-2024Al composites presented denser microstructure than that of SiC-2024Al composites. The composites with 10, 20 and 30?vol.% HEA reinforcements all showed better plasticity than that of the SiC-2024Al composites with same volume fraction of reinforcements, which was related with better particle distribution and interface bonding. However, the strength showed the opposite tendency in the two kinds of composites. Selecting 10SiC-2024Al and 10HEA-2024Al composites as examples to explore the difference in the yield strength of two kinds of composites, it is ascribed to the dislocation punched zones around interface between the Al matrix and reinforcements, which was analyzed in detail by a combination of calculation, nanoindentation tests and finite element analysis. Additionally, HEA-2024Al composites showed better machinability than those of SiC-2024Al composites. This work provides insight into the application of particulate reinforced Al matrix composites.
机译:在该研究中,通过SiC颗粒(SiC-2024AL)和由粉末冶金制备的粉末冶金制造的纳米晶高熵合金颗粒(Hea-2024al)加强的2024A1族基复合材料。微观结构和机械性能的显着差异以及两种复合材料之间的可加工性。在微观结构的术语中,当增强率的体积分数为10%时,SiC-2024Al和Hea-2024al复合材料都显示出基质中的均匀颗粒分布。随着增强含量的增加,HEA-2024AL复合材料呈现比SiC-2024AL复合材料的更密集的微观结构。具有10,20和30的复合材料,Vol。%HEA增强剂均显示出比具有相同增强体积分数的SiC-2024A1复合材料的可塑性,这与更好的颗粒分布和界面粘合有关。然而,强度显示了两种复合材料的相反趋势。选择10SIC-2024AL和10HEA-2024AL复合材料作为实施例,以探讨两种复合材料的屈服强度的差异,它归因于Al基质和增强件之间的界面周围的位错打孔区域,其通过组合详细分析计算,纳米凸缘试验和有限元分析。另外,HEA-2024AL复合材料显示出比SIC-2024AL复合材料更好的可加工性。这项工作提供了洞察颗粒增强Al基质复合材料的应用。

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