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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of ECAP on microstructure and mechanical properties of a commercial 6061 Al alloy produced by powder metallurgy
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Effect of ECAP on microstructure and mechanical properties of a commercial 6061 Al alloy produced by powder metallurgy

机译:ECAP对粉末冶金工业6061铝合金组织和力学性能的影响

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The 6061 (Al-1.01 wt percent Mg-1.07 wt percent Si) Al alloy was fabricated by powder metallurgy, and then subjected to equal channel angular pressing. The microstructure and mechanical properties such as microhardness and tensile properties of the equal channel angular pressed P/M 6061 Al alloy were investigated. The P/M 6061 Al alloy had an initial grain size of approximately 20 mu m. After two pressings at 373 K using route A, the sample revealed microstructure of subgrain bands with a length of 0.8 mu m and a width of 0.3 mu m. The subgrain bands became larger above 1 mu m in length and width after two pressings at 573 K. An equiaxed ultra-fine grained structure with the mean grain size of approx 0.5 mu m was obtained after four repetitive equal channel angular pressings at 473 K using route A and C. The microhardness of P/M 6061 Al alloys was drastically increased from about 40 to 80 Hv by two repetitive pressings at 373 K. However, the microhardness decreased with increasing the pressing temperature. The tensile strength of 6061A1 alloy before the equal channel angular pressing was 95 MPa, whereas it increased to both 248 MPa after two pressings at 373 K and 130 MPa after four pressings at 473 K, which was superior to that of a commercial 6061-O Al alloy.
机译:通过粉末冶金制造6061(Al-1.01重量百分比的Mg-1.07重量百分比的Si)Al合金,然后对其进行等通道角挤压。研究了等通道角压P / M 6061铝合金的显微组织和力学性能,如显微硬度和拉伸性能。 P / M 6061铝合金的初始晶粒尺寸约为20微米。在使用路线A在373 K下两次压制后,样品显示出亚晶粒带的微观结构,其长为0.8微米,而宽度为0.3微米。在573 K下两次压制后,亚晶粒带的长度和宽度大于1μm。在473 K下四次重复等通道角压制后,获得平均晶粒尺寸约为0.5μm的等轴超细晶粒结构P / M 6061铝合金的显微硬度通过373 K的两次重复压制从40 Hv急剧增加到80 Hv。但是,随着压制温度的升高,显微硬度降低。 6061A1合金在等通道转角挤压前的抗拉强度为95 MPa,而在373 K下两次压制后的抗拉强度均增加到248 K,在473 K下两次压制后的抗拉强度均增加到130 MPa,这优于商用6061-O铝合金。

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