首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of ultrasonic vibration on welding load, macrostructure, and mechanical properties of Al/Mg alloy joints fabricated by friction stir lap welding
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Effect of ultrasonic vibration on welding load, macrostructure, and mechanical properties of Al/Mg alloy joints fabricated by friction stir lap welding

机译:超声振动对摩擦搅拌液焊焊焊接载荷,宏观结构和机械性能的影响

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摘要

An initial study is proposed in order to evaluate the outcomes of ultrasonic vibration in friction stir welding of Al and Mg alloys for lap configuration. A novel ultrasonic assembly is designed and developed such that ultrasonic vibrations could be enforced along the welding direction into the weldment via the welding tool. Various sets of welding parameters are picked out for experimentation and thereafter optimum are evaluated. With ultrasonic assistance during pin and shoulder plunging, a substantial diminution in welding load, up to 30 and 19.75% are obtained while the noteworthy reduction in tool torque and input power is also perceived at optimum parameters. Additionally, lap shear tests result into an improvement of 37.88 and 39.24%, respectively, in context to failure load and weldment elongation. Macrostructure analysis portrays elimination of defects, enhanced material mixing, and broadening of the stirred zone with acoustic assistance.
机译:提出了一种初步研究,以评估Al和Mg合金的摩擦搅拌焊接中超声振动的结果,用于搭接构型。 设计并开发了一种新型超声组件,使得可以通过焊接工具沿焊接方向沿焊接方向强制执行超声波振动。 挑选各种焊接参数以进行实验,此后评估最佳。 通过在销和肩部插入期间的超声援助,在焊接载荷中大幅度减少,最高可达30和19.75%,而刀具扭矩和输入功率的值得注意也在最佳参数中感知。 此外,LAP剪切测试分别在上下文中分别提高了37.88和39.24%的失效负载和焊接伸长率。 宏观结构分析描绘了消除缺陷,增强材料混合,并通过声学辅助扩大搅拌区。

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