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Effect of Homogenization Treatment on the Microstrueture and Mechanical Property Evolutions of As-Cast Al-Cu Alloy during High-Pressure Torsion

机译:均质处理对铸态Al-Cu合金高压扭转过程中微观组织和力学性能演变的影响

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摘要

As-cast and homogenization treated as-cast Al-Cu (3 mass% Cu) alloy samples were processed via high-pressure torsion (HPT) under an applied pressure of 8 GPa with 5 revolutions at room temperature. Microstrueture, mechanical properties, and fracture surface morphology of the HPT-processed Al-Cu were investigated, demonstrating that the HPT process successfully resulted in distinct grain refinements in both samples. Significant improvements in the microhardness, tensile properties, and deformation homogeneity due to fine grains, high gram boundary misorientation angle, and homogeneous distribution of the 6 phase were achieved after the HPT process of the homogenized sample. The homogenization treatment of the as-cast Al-Cu has a significant effect on the fracture surface morphology and fracture mode of the HPT-processed samples.
机译:铸态和均质化处理的铸态Al-Cu(3质量%Cu)合金样品在室温下经过5转,8 GPa的高压扭力(HPT)处理。对HPT处理的Al-Cu的微观结构,力学性能和断裂表面形态进行了研究,表明HPT处理成功地导致了两个样品中晶粒的细化。在均质样品的HPT处理之后,由于细晶粒,高克边界误取向角和6相的均匀分布,在显微硬度,拉伸性能和变形均质性方面有了显着改善。铸态Al-Cu的均质化处理对HPT处理的样品的断裂表面形态和断裂模式有重大影响。

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