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Keyhole refilled friction stir spot welding of aluminum alloy to advanced high strength steel

机译:匙孔再填充摩擦搅拌搅拌搅拌点焊铝合金以先进的高强度钢

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摘要

A keyhole refilled Friction Stir Spot Welding (FSSW) process is developed, which consists of two steps. Regular FSSW is performed in the first step. After that, the tool travels along a circular path to refill the original keyhole. The process is applied for joining aluminum alloy 6061 to Transformation Induced Plasticity (TRIP) steel. It increases the joint strength by 56.33% compared with that of conventional FSSW joints. A ductile failure mode is observed. The process can be implemented in any universal CNC machine and needs only one simple FSSW tool. An additional pure circular path welding process shows the enhanced performance of the keyhole refilled FSSW joints relies on three bonding mechanisms: the refilled original keyhole, the increased bonding area between steel and aluminum as well as the hook structure generated from the regular FSSW process. Three distinct layers of grain structures can be observed on the hook, which reveal the material flow pattern during the process.
机译:开发了钥匙孔再填充搅拌搅拌点焊(FSSW)工艺,其包括两个步骤。 常规FSSW在第一步中执行。 之后,该工具沿着圆形路径行进以重新填充原始锁孔。 该方法应用于将铝合金6061连接到转化诱导的塑性(跳闸)钢。 与传统的FSSW关节相比,它将关节强度提高56.33%。 观察到延展性故障模式。 该过程可以在任何通用CNC机器中实现,只需要一个简单的FSSW工具。 额外的纯圆形路径焊接工艺示出了匙孔再填充的FSSW接头的增强性能依赖于三个粘接机构:重新填充的原始钥匙孔,钢和铝之间的增加的粘接区域以及从常规FSSW过程产生的钩结构。 在钩子上可以观察到三层不同的晶粒结构层,其在该过程中揭示了材料流动模式。

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