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AXIAL FORCE REDUCTION IN FRICTION STIR WELDING OF AA6061-T6 AT RIGHT ANGLE

机译:直角AA6061-T6摩擦搅拌焊接中的轴向力减小

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Invented in 1991, friction stir welding (FSW) is a new solid state joining technique. This process has many advantages over fusion welding techniques including absence of filler material, shielding gas, fumes and intensive light, solid state joining, better microstructure, better strength and fatigue life, and etc. The difficulty with FSW is in the high forces involved especially in axial direction which requires use of robust fixturing and very stiff FSW machines. Reduction of FSW force would simplify implementation of the process on less stiff CNC machines and industrial robots. In this paper axial welding force reduction is investigated by use of tool design and welding parameters in FSW of 3.07 mm thick AA6061-T6 sheets at right angle. Attempt is made to reduce the required axial force while having acceptable ultimate tensile strength (UTS). It is found that shoulder working diameter and shoulder angle are the most important parameters in the axial force determination yet pin angle has minor effect. According to the developed artificial neural network (ANN) model, proper selection of shoulder diameter and angle can lead to approximately 40% force reduction with acceptable UTS. Regions of tool design and welding parameters are found which result in reduced axial force along with acceptable UTS.
机译:搅拌摩擦焊(FSW)于1991年发明,是一种新的固态连接技术。与熔融焊接技术相比,该方法具有许多优势,包括无需填充材料,保护气体,烟雾和强光,固态连接,​​更好的微观结构,更好的强度和疲劳寿命等。在轴向上,这需要使用坚固的夹具和非常坚固的FSW机器。减小FSW力将简化在刚性较低的CNC机器和工业机器人上执行该过程的过程。本文通过使用刀具设计和3.07 mm厚AA6061-T6直角FSW的焊接参数研究轴向焊接力的减小。试图减小所需的轴向力,同时具有可接受的极限抗拉强度(UTS)。已经发现,肩部工作直径和肩部角度是确定轴向力时最重要的参数,而销角的影响较小。根据已开发的人工神经网络(ANN)模型,正确选择肩部直径和角度可以在可接受的UTS情况下减少大约40%的力。发现了工具设计和焊接参数的区域,这些区域会导致轴向力降低以及可接受的UTS。

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