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Properties investigation and microstructures characterization of SiCp/6061Al composites produced by PM route

机译:PM路径生产SICP / 6061AL复合材料的特性研究和微观结构

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In this study, 35 vol.% SiC particles with different sizes reinforced 6061 aluminium alloy matrix composites were prepared by a powder metallurgy method. The Scanning Electron Microscope (SEM) images of composites were observed, the Coefficient of Thermal Expansion (CTE) and tensile strength of composites were examined, and the influences of SiC particle size on microstructures and properties of the composites were analyzed. Furthermore, the SiCp/6061Al composites with SiC particle size of 7.5 urn were selected to investigate the SiCp/Al interface microstructure and precipitated phases by the means of SEM, TEM and HRTEM. The study indicated that, with the increase of SiC particle size, the SiC particles distributed more uniformly in the matrix, the CTE of composites increased, but the tensile strength of composites decreased. The SiCp/Al interface in this experiment is clean and smooth, and the combination mechanism of SiC and Al is the formation of a half coherent interface by closely matching of atoms. Some micron-sized coarse intermetallic particles existed in the hot-pressed composites, such as random-shaped Mg2Si, long stick shaped Al_(15)(Mn, Fe, Cu)3Si2. When the composites were solution treated at 510 °C for 2 h and then aging treated at 190 °C for 9 h, except long stick shaped Al_(15)(Mn, Fe, Cu)3Si2, numerous nano-sized precipitated phases (Mg2Si) with diameters of 50-200 nm dispersively distributed in the matrix. After heat treatment, the tensile strength of composite with SiC particle size of 7.5 |im enhance from 298 MPa to 341 MPa.
机译:在这项研究中,35体积。通过粉末冶金方法制备具有不同尺寸的不同尺寸的SiC颗粒的不同尺寸的铝合金基质复合材料。观察到复合材料的扫描电子显微镜(SEM)图像,检查了热膨胀系数(CTE)和复合材料的拉伸强度,分析了SiC粒径对复合材料的微观结构和性质的影响。此外,选择具有7.5瓮的SiC粒径的SiCP / 6061AL复合材料以通过SEM,TEM和HRTEM的方式研究SiCP / Al界面微观结构和沉淀的相。该研究表明,随着SiC粒径的增加,在基质中均匀地分布的SiC颗粒,复合材料的CTE增加,但复合材料的拉伸强度降低。该实验中的SICP / AL界面清洁且光滑,SiC和Al的组合机理是通过与原子紧密匹配形成半相干界面。一些微型复合材料中存在一些微米尺寸的粗制金属间颗粒,例如随机形Mg2Si,长粘附的Al_(15)(Mn,Fe,Cu)3Si2。当复合材料在510℃下处理2小时,然后在190℃处理时在190℃处理9小时,除了长的粘附Al_(15)(Mn,Fe,Cu)3 Si 2,无数纳米尺寸的沉淀相(Mg2Si )直径为50-200nm,分散在基质中。热处理后,复合材料的拉伸强度,SiC粒径为7.5 |,增强了298MPa至341MPa。

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