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首页> 外文期刊>Journal of Materials Processing Technology >Effect of rolling and heat treatment on tensile behaviour of wrought Al-SiCp composites prepared by stir-casting
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Effect of rolling and heat treatment on tensile behaviour of wrought Al-SiCp composites prepared by stir-casting

机译:轧制和热处理对搅拌铸造Al-SiCp变形复合材料拉伸性能的影响

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摘要

Al 6061- and Al 7108-SiCp composites (Al-PMMC) were prepared by stir-casting with SiCp size of 8 and 15 μm and volume fraction (Vf) of 0-20%. These composites were then subjected to successive hot rolling at 450℃ using a strain rate of 1 s~(-1) while the intermediate period of heating between each two successive rolling steps was 1 min to 1 h. Tensile test was conducted on the as-rolled composite strips with 3.0, 1.1 and 0.4 mm thicknesses using 81, 94 and 98% reductions, subsequently, with a tensile rate of 10 MPa s~(-1). Different tensile properties including ultimate tensile strength UTS, Young's modulus and elongation, were determined. The tensile behaviour was analysed in view of matrix alloy type and SiCp size and Vf. The effect of T6 treatment on the microstructure and tensile properties was also presented. Generally, successive hot rolling resulted in decreasing casting defects such as void and SiCp agglomeration present in the as-cast composites and hence enhanced mechanical properties were achieved. Almost 240 and 390% improvement in ultimate tensile strength (UTS) for 6061 and 7108 composite was obtained, respectively. The improvement in strength was remarkable for composites rolled to 0.4 mm. Annealing improved the elongation% at break of the 10-15% Vf composite more than 3 times. UTS of rolled composite was enhanced by T6 treatment at 176℃ and 120℃ for 6061 and 7108 composites. The effect of T6 treatment on the composite tensile behaviour was discussed.
机译:通过搅拌浇铸制备SiCp尺寸为8和15μm,体积分数(Vf)为0-20%的Al 6061和Al 7108-SiCp复合材料(Al-PMMC)。然后将这些复合材料在450℃下以1 s〜(-1)的应变速率进行连续热轧,而每两个连续轧制步骤之间的加热中间时间为1分钟至1小时。在厚度为3.0、1.1和0.4mm的轧制复合材料带材上进行拉伸试验,减少率分别为81、94和98%,拉伸速率为10 MPa s〜(-1)。确定了不同的拉伸性能,包括极限拉伸强度UTS,杨氏模量和伸长率。根据基体合金类型,SiCp尺寸和Vf分析了拉伸性能。还介绍了T6处理对组织和拉伸性能的影响。通常,连续的热轧可减少铸态复合材料中存在的铸造缺陷(如空隙和SiCp团聚),从而提高机械性能。 6061和7108复合材料的极限拉伸强度(UTS)分别提高了近240%和390%。对于轧制至0.4 mm的复合材料,强度的提高非常明显。退火将10-15%Vf复合材料的断裂伸长率提高了3倍以上。 6061和7108复合材料通过176℃和120℃的T6处理提高了轧制复合材料的UTS。讨论了T6处理对复合材料拉伸性能的影响。

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