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Study of friction stir welding of aluminum

机译:铝的搅拌摩擦焊研究

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摘要

A half-cold hardening aluminum plate were friction-stir welded at various rotation speeds (850–1860 rpm) and travel rates of 30 to 160 mm/min with welding forces ranging between 2.5 and 10 MPa using different dimension welding heads. Experimental results show that the dimensions of the welding head are critical to produce sound welds. The microstructure of the weld is characterized by its much finer and equiaxed grains as contrasted with the coarse and band-like structure of the parent aluminum plate. Tensile strength of the welds is about 20% lower than that of the hardening aluminum plate, but about 10% higher microhardness is demonstrated by the welds in comparison with that of the aluminum plate in annealing condition. Moreover, travel rate of the welding head pin has a strong effect on microhardness and tensile strength of the FSW welds, and the ratio of rotation speed and travel rate of the head should be in a reasonable range to obtain high performance welds. The variables of the welding process are also discussed in terms of heat balance and energy input of the welds.
机译:使用不同尺寸的焊接头,以各种转速(850–1860 rpm)和30至160 mm / min的行进速度进行搅拌摩擦焊接的半冷硬化铝板,焊接力范围为2.5至10 MPa。实验结果表明,焊头的尺寸对于产生良好的焊缝至关重要。与母材铝板的粗糙和带状结构相比,焊缝的微观结构的特征在于其细小得多的等轴晶粒。焊缝的抗拉强度比硬化铝板低约20%,但与退火条件下的铝板相比,焊缝的显微硬度高出约10%。而且,焊头销的行进速度对FSW焊缝的显微硬度和抗拉强度有很大的影响,并且焊头的转速和行进速度之比应在合理范围内以获得高性能的焊缝。还根据焊接的热平衡和能量输入来讨论焊接过程的变量。

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