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Effect of Severe Plastic Deformation on the Mechanical Properties of A16061 Alloy

机译:严重塑性变形对A16061合金力学性能的影响

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Large plastic deformation through cold-rolling refines microstructure through the accumulation of plastic strains over multiple stages. Machining achieves similar large plastic strains (1-10) in a single stage to produce ultra-fine-grained chips. Effect of cold-rolling and machining on microstructure and mechanical properties of A16061 was investigated. As-received, solution heat-treated, and peak-aged plates were cold-rolled to 30, 50, and 70% thickness reductions. Ultra-fine-grained chips were produced from low-speed orthogonal-machining under plane-strain condition, using a restricted contact tool to minimize the chip curvature. Grains were equiaxed in as-received, solution heat-treated, and peak-aged bulk samples, while they were elongated in cold-rolled bulk. In chips, grains were elongated in one direction due to severe plastic flow. Hardness and ultimate tensile strength increased with thickness reduction. Chip hardness is 60% more than as-received material due to microstructure refinement. Metal cutting (single-stage process) and thickness reduction greater than 50% by cold-rolling (multi-stage) provide nearly the same enhancement in mechanical properties (40% more than bulk).
机译:通过冷轧产生的大塑性变形通过在多个阶段累积塑性应变来细化微观结构。机加工可在单个阶段中获得相似的大塑性应变(1-10),以生产超细晶粒的切屑。研究了冷轧和机加工对A16061组织和力学性能的影响。如所接受的,将经过固溶处理并达到时效的板冷轧至30%,50%和70%的厚度减小。在平面应变条件下,通过使用受限接触工具使切屑曲率最小化,通过低速正交加工生产了超细晶粒的切屑。在接收的,固溶热处理的和峰值时效的散装样品中等轴等轴测,而在冷轧散装中将其拉长。在切屑中,由于剧烈的塑性流动,晶粒沿一个方向拉长。硬度和极限拉伸强度随厚度的减小而增加。由于微结构的细化,切屑硬度比接受的材料高60%。金属切削(单步工艺)和通过冷轧(多步)将厚度减小50%以上,几乎可以实现机械性能的提高(比本体提高40%)。

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