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首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Tool Geometry on Material Flow Behavior of Refill Friction Stir Spot Welding
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Effect of Tool Geometry on Material Flow Behavior of Refill Friction Stir Spot Welding

机译:刀具几何对综合摩擦搅拌点焊材料流动性能的影响

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摘要

Using LY12 aluminum alloy as the research object, material flow behavior of refill friction stir spot welding process is simulated. The simulation results are investigated by studying the macrostructure and microstructure of the refill friction stir spot welding joints. Effects of tool geometries on material flow are mainly discussed. Results show that bonding ligament and grains in different regions of the stir zone are affected by the material flow behavior. Rational groove on the sleeve can increase the material flow velocity. From the viewpoint of reducing the unfavorable bonding ligament, the groove on the sleeve inner wall is better than the smaller width groove on the sleeve outer wall. Compared with the concentric circle grooves on the sleeve bottom, the scrolled groove is more beneficial to decrease the bonding ligament thickness and increase the welding spot area. Disregarding the higher heat input, sleeve with bigger outer diameter greatly increases the flow velocity and the welding spot area compared to changing the groove geometry.
机译:使用LY12铝合金作为研究对象,模拟了再填充摩擦搅拌点焊接过程的材料流动性能。通过研究再填充摩擦搅拌点焊接接头的宏观结构和微观结构来研究模拟结果。工具几何对物质流动的影响主要讨论。结果表明,搅拌区不同区域中的粘合韧带和晶粒受材料流动行为的影响。套筒上的合理凹槽可以增加材料流速。从减少不利的粘合韧带的观点来看,套筒内壁上的凹槽优于套筒外壁上的较小宽度槽。与套筒底部上的同心圆槽相比,滚动的凹槽更有益于降低粘合韧带厚度并增加焊接点区域。与更换槽几何形状相比,透视外径较大的套筒,具有更大的外径大大增加了流速和焊接点区域。

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