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Identifying Combination of Friction Stir Welding Parameters to Maximize Strength of Lap Joints of AA2014-T6 Aluminum Alloy

机译:确定摩擦搅拌焊接参数的组合以最大化AA2014-T6铝合金搭接接头的强度

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AA2014 aluminum alloy (Al-Cu alloy) has been widely utilized in fabrication of lightweight structures like aircraft structures, demanding high strength to weight ratio and good corrosion resistance. The fusion welding of these alloys will lead to solidification problems such as hot cracking. Friction stir welding is a new solid state welding process, in which the material being welded does not melt and recast. Lot of research works have been carried out by many researchers to optimize process parameters and establish empirical relationships to predict tensile strength of friction stir welded butt joints of aluminum alloys. However, very few investigations have been carried out on friction stir welded lap joints of aluminum alloys. Hence, in this investigation, an attempt has been made to optimize friction stir lap welding (FSLW) parameters to attain maximum tensile strength using statistical tools such as design of experiment (DoE), analysis of variance (ANOVA), response graph and contour plots. By this method, it is found that maximum tensile shear fracture load of 12.76 kN can be achieved if a joint is made using tool rotational speed of 900 rpm, welding speed of 110 mm/min, tool shoulder diameter of 12 mm and tool tilt angle of 1.5°.
机译:AA2014铝合金(Al-Cu合金)已广泛用于制造轻质结构,如飞机结构,要求高强度重量比和良好的耐腐蚀性。这些合金的熔焊将导致凝固问题,例如热裂纹。搅拌摩擦焊是一种新的固态焊接工艺,其中被焊接的材料不会熔化和重铸。许多研究人员已经进行了大量研究工作,以优化工艺参数并建立经验关系,以预测铝合金搅拌摩擦对接接头的抗拉强度。但是,对铝合金的搅拌摩擦焊接搭接接头的研究很少。因此,在这项研究中,我们尝试使用统计工具(例如实验设计(DoE),方差分析(ANOVA),响应图和轮廓图)来优化搅拌摩擦搭焊(FSLW)参数以获得最大抗拉强度。通过这种方法发现,如果使用900 rpm的工具转速,110 mm / min的焊接速度,12 mm的刀肩直径和工具倾斜角进行接合,则可实现12.76 kN的最大拉伸剪切断裂载荷。 1.5°

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