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Role of hybrid tool pin profile on enhancing welding speed and mechanical properties of AA2219-T6 friction stir welds

机译:混合工具引脚轮廓对AA2219-T6摩擦焊焊焊接速度和力学性能的作用

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摘要

The friction stir welds o thick precipitation-hardenable aluminum alloys suffer from reduced joint strength due to dissolution/coarsening of the strengthening precipitates. The article portray hybrid pin profiled tool that enables sound welds at speeds 7-times faster than a conventional tool (a conical threaded tool), without pin breakage. The conical threaded and triangular cross-section in the upper and lower pin half-lengths of the hybrid tool facilitate material flow in a downward direction and shear deformation at a faster rate, respectively. The paper brings out the process mechanism responsible for the enhanced welding speed and mechanical properties obtainable with the hybrid tool through a case of 13-mm thick aluminum alloy AA2219-T6. The hybrid tool facilitates a 26% improvement in weld strength by reducing TMAZ softening, as evidenced by the microhardness and mechanical properties and supported by microstructural investigation and fractography.
机译:由于强化沉淀物的溶解/粗化,摩擦搅拌焊缝厚沉淀型铝合金遭受降低的关节强度。 本文描绘了混合销型工具,使速度快7倍的速度比传统工具(锥形螺纹工具),没有针断裂。 混合工具的上下销半长度和下销半长的锥形螺纹和三角形横截面便于以向下方向和剪切变形以更快的速率流动。 本文通过13毫米厚的铝合金AA2219-T6,带出负责增强焊接速度和可获得的杂交工具的焊接速度和机械性能的过程机制。 通过减少TMAZ软化,杂交工具促进焊接强度的26%提高,如微硬度和机械性能证明,并由微观结构调查和Fractography支持。

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