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A newly developed tool without probe for friction stir spot welding and its performance

机译:一种新开发的无探针的搅拌摩擦点焊工具及其性能

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摘要

A newly developed tool for friction stir spot welding (FSSW) has been proposed, which has no probe, but a scroll groove on its shoulder surface (scroll tool). By use of this tool, FSSW has been performed on aluminium alloy 6061-T4 sheets and the potential of the tool was discussed in terms of weld structure and static strength of welds. The experimental observations showed that the scroll tool had comparable or superior performance to a conventional probe tool. It was confirmed that sound welding could be achieved without a probe hole, in which the scroll groove played significant roles in the stirring of the material and the shoulder plunge depth was the important processing variable. The maximum tensile-shear strength of the welds made by the scroll tool was found to be 4.6 kN that was higher than that of the welds made by the probe tool and two different fracture modes, shear fracture and plug fracture, appeared depending on processing condition. The shear fracture took place at smaller shoulder plunge depths or at shorter tool holding times, while the plug fracture occurred at larger shoulder plunge depths or at longer tool holding times. It was indicated that the tensile-shear strength and associated fracture modes were determined by two geometrical parameters in the weld zone.
机译:已经提出了一种新开发的用于搅拌摩擦点焊的工具(FSSW),该工具没有探针,但在其肩部表面上有滚动槽(滚动工具)。通过使用此工具,已在铝合金6061-T4板上进行了FSSW,并根据焊接结构和焊缝的静态强度讨论了该工具的潜力。实验观察表明,滚动工具具有与常规探针工具相当或更高的性能。可以肯定的是,没有探针孔就可以实现良好的焊接效果,其中涡旋槽在搅拌材料中起着重要作用,肩部切入深度是重要的加工变量。发现涡旋工具制成的焊缝的最大抗剪强度为4.6 kN,高于探针工具制成的焊缝的最大抗剪强度,并且根据加工条件出现两种不同的断裂模式,即剪切断裂和堵塞断裂。剪切断裂发生在较小的肩部切入深度或较短的工具夹持时间,而塞子断裂发生在较大的肩部切入深度或较长的工具夹持时间。结果表明,拉伸剪切强度和相关的断裂模式是由焊接区中的两个几何参数确定的。

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