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Effect of ultrasonic vibration exerted at the tool on friction stir welding process and joint quality

机译:工具上的超声波振动对搅拌摩擦焊接过程和接头质量的影响

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摘要

To employ acoustic energy efficiently in friction stir welding, ultrasonic vibration was transmitted onto the tool along a direction perpendicular to the tool axis by a specially manufactured horn with a pair of rollers. The experimental results showed that the ultrasonic vibration exerted in this way decreased the torque and axial force acted on the tool, increased the welding speed, eliminated tunnel defects in welds, and improved the mechanical properties of the weld joints. The peak temperature of the thermal cycles was almost not changed by ultrasound except for a slight increase in heating rate and a slight decrease in cooling rate, which indicates that thermal effect due to ultrasonic vibration plays a minor role. The simultaneous interaction between the exerted ultrasonic vibration on the tool and the tool induced thermo-mechanical behavior intensifies the plastic deformation and material flow in the shear layer, which is the main reason why both the process and weld quality are improved.
机译:为了在搅拌摩擦焊接中有效地利用声能,通过带有一对滚子的特殊制造的变幅杆沿垂直于工具轴线的方向将超声波振动传递到工具上。实验结果表明,以这种方式施加的超声振动减小了作用在工具上的扭矩和轴向力,提高了焊接速度,消除了焊缝中的隧道缺陷,并改善了焊接接头的机械性能。除了略微提高加热速率和略微降低冷却速率外,超声几乎不会改变热循环的峰值温度,这表明超声振动引起的热效应起着很小的作用。施加在工具上的超声波振动与工具引起的热机械行为之间的同时相互作用会增强剪切层中的塑性变形和材料流动,这是同时改善工艺和焊接质量的主要原因。

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