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Influence of Extrusion Temperature on the Aging Behavior and Mechanical Properties of an AA6060 Aluminum Alloy

机译:挤压温度对AA6060铝合金时效行为和力学性能的影响

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Processing of AA6060 aluminum alloys for semi-products usually includes hot extrusion with subsequent artificial aging for several hours. Processing below the recrystallization temperature allows for an increased strength at a significantly reduced annealing time by combining strain hardening and precipitation hardening. In this study, we investigate the potential of cold and warm extrusion as alternative processing routes for high strength aluminum semi-products. Cast billets of the age hardening aluminum alloy AA6060 were solution annealed and then extruded at room temperature, 120 or 170 °C, followed by an aging treatment. Electron microscopy and mechanical testing were performed on the as-extruded as well as the annealed materials to characterize the resulting microstructural features and mechanical properties. All of the extruded profiles exhibit similar, strongly graded microstructures. The strain gradients and the varying extrusion temperatures lead to different stages of dynamic precipitation in the as-extruded materials, which significantly alter the subsequent aging behavior and mechanical properties. The experimental results demonstrate that extrusion below recrystallization temperature allows for high strength at a massively reduced aging time due to dynamic precipitation and/or accelerated precipitation kinetics. The highest strength and ductility were achieved by extrusion at 120 °C and subsequent short-time aging.
机译:用于半成品的AA6060铝合金的加工通常包括热挤压和随后的人工时效几个小时。通过结合应变硬化和沉淀硬化,在低于重结晶温度的条件下进行加工可在显着减少的退火时间内提高强度。在这项研究中,我们调查了冷挤压和热挤压作为高强度铝半成品替代加工路线的潜力。对时效硬化铝合金AA6060的铸坯进行固溶退火,然后在室温,120或170°C下挤出,然后进行时效处理。对挤压后的材料和退火后的材料进行电子显微镜和力学测试,以表征所得的微观结构特征和力学性能。所有挤出的型材均表现出相似的强梯度组织。应变梯度和变化的挤出温度导致挤出材料中动态沉淀的不同阶段,这显着改变了随后的时效行为和机械性能。实验结果表明,由于动态沉淀和/或加速的沉淀动力学,在低于重结晶温度的条件下挤出可在大幅降低的老化时间下实现高强度。最高的强度和延展性是通过在120°C下挤出和随后的短时老化而实现的。

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