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Effect of Heat Treatment on the Microstructure and Mechanical Properties of a Composite Made of Al-Si-Cu-Mg Aluminum Alloy Reinforced with SiC Particles

机译:热处理对用SiC颗粒加固的基于Al-Si-Cu-Mg铝合金制成的复合材料微观结构和力学性能

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摘要

In this paper, the effect of heat treatment (solution treatment and artificial aging) on the microstructure and properties of as-cast Al5Si1Cu0.5Mg aluminum alloy and its composite reinforced with 1.5 wt.% SiC particles was studied. The results showed that at 520 °C the optimal solution time for the aluminum alloy and its composite is 9 h and 6 h, respectively. After solution treatment, the microstructure of these two materials consists of a uniform distribution of nearly spherical eutectic Si and skeletal γ phase, furthermore, the composite eutectic Si phase is smaller and γ phase is more dispersed. After artificial aging at 175 °C for 6 h, the microstructure of the composite is more dispersed and finer than that of the aluminum alloy on the whole and Al2Cu is precipitated. After heat treatment, the microhardness, ultimate tensile strength, and elongation of the aluminum alloy and its composite are higher than those of the as-casts. At the same time, the morphology of tensile fracture surface changes very much from a large area of cleavage plane to a large number of dimples and the tearing ridges become thicker for both the aluminum alloy and its composite.
机译:本文研究了热处理(溶液处理和人工衰老)对铸铝铝合金的微观结构和性能及其用1.5重量%加固的效果。研究了%SiC颗粒。结果表明,在520℃下,铝合金及其复合材料的最佳溶液时间分别为9小时和6小时。溶液处理后,这两种材料的微观结构包括均匀分布的几乎球形共晶Si和骨骼γ相,此外,复合共晶Si相较小,γ相更加分散。在175℃下人工老化6小时后,复合材料的微观结构更加分散并比整个铝合金更精细,沉淀出Al2Cu。热处理后,微硬度,极限拉伸强度和铝合金的伸长和其复合材料高于铸件的伸长率。同时,拉伸裂缝表面的形态从大量的裂解平面变化到大量凹槽,撕裂脊对于铝合金和其复合材料变厚。

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