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Effect of Extrusion and Heat Treatment on Microstructure and Mechanical Properties of Hypereutectic A390-0.3wt%Nd Alloy

机译:挤压和热处理对过共晶A390-0.3wt%Nd合金组织和力学性能的影响

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摘要

An hypereutectic aluminium alloy with a composition of 16-18wt%Si, 4-5wt%Cu, 0.45-0.65wt%Mg, 0.3wt%Nd and Al balance (A390-0.3wt%Nd alloy) was processed by extrusion and aging at 200oC for 10 hours. The effect of the thermomechanical processing and heat treatment on microstructure and mechanical properties was investigated for A390-0.3wt%Nd alloy. It was shown that the eutectic structure disappeared after the processing and heat treatment. In the meantime, the morphology of Al(Si,Mg) solid solution was transformed from dendritic to equiaxed and the Si particles were refined to have fine sizes of 1-10μm and dispersed in the Al(Si,Mg) matrix. Some of the Si particles became globular in shape, which can reduce stress concentration. The tensile strength of the A390-0.3wt%Nd alloy increased by 14.8% (211MPa to 242MPa) after extrusion and aging, and the elongation to fracture increased significantly from 0.5% to 13.3%. Thus, the mechanical properties of extruded and heat-treated A390-0.3wt%Nd alloy were improved after the extrusion and aging. The fracture mode is transformed from brittle fracture of as-cast alloy to ductile fracture of extruded and heat-treated alloy.
机译:通过挤压和时效处理,加工组成为16-18wt%Si,4-5wt%Cu,0.45-0.65wt%Mg,0.3wt%Nd和Al余量的过共晶铝合金(A390-0.3wt%Nd合金)。 200oC持续10小时。研究了A390-0.3wt%Nd合金的热机械加工和热处理对组织和力学性能的影响。结果表明,共晶结构在加工和热处理后消失了。同时,Al(Si,Mg)固溶体的形态从树枝状转变为等轴,细化了Si粒子使其具有1-10μm的细小尺寸,并分散在Al(Si,Mg)基体中。一些Si颗粒变成球形,这可以减少应力集中。挤压和时效处理后,A390-0.3wt%Nd合金的抗拉强度提高了14.8%(从211MPa升高到242MPa),断裂伸长率从0.5%显着提高到13.3%。因此,在挤压和时效处理后,经挤压和热处理的A390-0.3wt%Nd合金的机械性能得到改善。断裂方式从铸态合金的脆性断裂转变为挤压和热处理合金的韧性断裂。

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