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Modification of Mechanical Properties of Aluminum Alloy Rods via Friction-Extrusion Method

机译:通过摩擦挤出方法改变铝合金棒的力学性能

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摘要

The elaboration of a modified friction-extrusion method aimed at obtaining 2017A aluminum rods of gradient microstructure is described. This was achieved by cutting spiral grooves on the face of the stamp used for alloy extrusion. The experiments were carried out at a constant material feed (~10 mm/min) and a range of tool rotation speeds (80 to 315 rpm). The microstructure observations were carried out using light microscopy (LM) and both scanning and transmission electron microscopy (SEM and TEM). The mechanical properties were assessed through hardness measurements and static tensile tests. The performed investigations show that material simultaneous radial and longitudinal flow, enforced by friction of the rotating tool head and extrusion, results in the formation of two zones of very different microstructures. At the perpendicular section, the outer zone stands out from the core due to circumferential elongation of strings of particles, while in the inner zone the particles are arranged in a more uniform way. Simultaneously, the grain size of the outer zone is refined by two to four times as compared with the inner one. The transfer from the outer zone to the core area is of gradient type. The hardness of the outer zone was found to be ~10% to ~20% higher than that of the core.
机译:描述了旨在获得梯度微观结构获得2017A铝棒的改进的摩擦挤出方法。这是通过切割用于合金挤出的戳的螺旋槽来实现的。实验在恒定材料进料(〜10mm / min)和一系列刀具转速(80至315rpm)下进行。使用光学显微镜(LM)和扫描和透射电子显微镜(SEM和TEM)进行微观结构观察。通过硬度测量和静态拉伸试验评估机械性能。所进行的调查表明,通过旋转工具头和挤出的摩擦强制执行的材料同时径向和纵向流动,导致形成两个非常不同的微观结构的区域。在垂直部分处,由于颗粒的周向伸长型串的周向伸长,外部区域从芯中脱颖而出,而在内部区域中,颗粒以更均匀的方式布置。同时,与内部一个相比,外区的晶粒尺寸由两到四倍改进。从外部区域转移到核心区域是梯度类型。发现外部区的硬度比核心高约10%至约20%。

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