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Optimization of tensile strength during ultrasonic lap welding of dissimilar metals using Taguchi's philosophy

机译:用Taguchi哲学的超声波圈焊接期间的抗拉强度优化

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Ultrasonic welding (USW) is a solid-state joining process in which the joint is created between the workpieces by the application of high frequency ultrasonic waves under pressure. Poor weld strength is one of the major problem experienced in the application of such weldments. It is mainly due to improper selection of process parameters. In order to achieve satisfactory weld strength optimization of welding process parameters is indeed essential. In this present context, the USW has been carried out to join dissimilar materials like A1100 aluminum alloy and CuZn37 brass plates of thickness 0.1 mm using Taguchi's L16 orthogonal array design of experiments. The process parameters like amplitude, weld pressure and weld time have been taken into consideration. Taguchi's S/N ratio concept has been employed to study the effect of different process parameters on the response like tensile strength and finally, the optimum setting of process parameters has been decided in view of maximizing tensile strength. The predicted result of the optimized tensile strength has been validated by conducting a confirmatory test. This analysis shows that the high quality and efficient joints can be generated by exploring optimized setting of process parameters which is fruitful in mass production as well as off-line quality control of such a welding practice.
机译:超声波焊接(USW)是固态连接过程,其中通过在压力下的高频超声波在工件之间形成接头。焊缝差是在这种焊接中施加的主要问题之一。它主要是由于过程参数选择不当。为了实现令人满意的焊接强度优化,焊接过程的参数确实是必不可少的。在本文中,USW已经进行了使用Taguchi的L16正交阵列设计,如A1100铝合金和Cuzn37黄铜板等不同材料加入不同的材料。已经考虑了像幅度,焊接压力和焊接时间的过程参数。 Taguchi的S / N比概念已经采用了研究不同工艺参数对拉伸强度等响应的影响,最后,考虑到最大化拉伸强度,已经确定了工艺参数的最佳设定。通过进行确认测试验证了优化拉伸强度的预测结果。该分析表明,可以通过探索批量生产富有成效的过程参数的优化设置来产生高质量和高效的关节,以及这种焊接实践的离线质量控制。

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