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Heat treatment and plastic deformation in Al3Ti particle reinforced 7050 aluminium alloy matrix composites

机译:Al3Ti颗粒增强7050铝合金基复合材料的热处理和塑性变形

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摘要

7050 aluminium alloy metal matrix composites reinforced with different weight fractions of Al3Ti particles were fabricated using an in situ synthesis method and subsequent rolling, solution and aging treatment. The effects of Al3Ti particle content and particle size on the microstructures and mechanical properties of the composites were investigated by means of hardness measurements, optical microscopy and electron probe. We concluded that the grain size of the composites was smaller than that of the matrix alloy, and with an increase in the plastic deformation, the dispersion of particles was more uniform and fine. It was also found that the hardness of the composites increases with increasing weight fraction and decreasing particle size. By increasing the plastic deformation, the hardness of both the composites increased first and then decreased with the following deformation. In addition, the heat treatment contributed to the hardness.
机译:采用原位合成方法,然后进行压延,固溶和时效处理,制备了以不同重量分数的Al3Ti颗粒增强的7050铝合金金属基复合材料。通过硬度测量,光学显微镜和电子探针研究了Al3Ti颗粒含量和粒径对复合材料显微组织和力学性能的影响。我们得出的结论是,复合材料的晶粒尺寸小于基体合金的晶粒尺寸,并且随着塑性变形的增加,颗粒的分散更加均匀和精细。还发现,复合材料的硬度随着重量分数的增加和粒度的减小而增加。通过增加塑性变形,两种复合材料的硬度首先增加,然后随着随后的变形而降低。另外,热处理有助于硬度。

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