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An investigation of the ultrasonic joining process parameters effect on the mechanical properties of metal-composite hybrid joints

机译:超声波连接工艺参数对金属复合杂交关节力学性能的研究

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摘要

The ultrasonic joining process was recently introduced as an alternative concept to join through-the-thickness reinforced metal-composite hybrid structures. In this work, the investigation of joining process parameters effect on the joint mechanical performance of Ti-6Al-4V-glass-fiber-reinforced polyetherimide overlap joints was carried out by Box-Behnken design of experiments. The individual and combined effects of joining energy, sonotrode oscillation amplitude, and joining pressure on the ultimate lap shear force were elucidated by response surfaces method and analysis of variance. As a result of this study, a set of optimized joining parameters were obtained to produce joints with high ultimate lap shear force. The obtained reliable reduced model (R-2 = 82%) displays a major influence of joining energy (25.3%) and sonotrode oscillation amplitude (21.2%) on the joint mechanical performance. Two-way interaction response surfaces were used to support strategies to optimize the maximum ultimate lap shear force. By comparing the optimized joint condition produced in this work with previously published results an improvement of 79% in ultimate lap shear force was attained, thereby, proving the potential of the proposed process optimization procedure.
机译:最近将超声波连接过程作为替代概念引入加入通过厚度的增强金属复合混合结构。在这项工作中,通过Box-Behnken设计进行了对Ti-6Al-4V-玻璃 - 纤维增强聚醚酰亚胺酰亚胺酰亚胺重叠接头的接合机械性能的研究。通过响应表面方法和方差分析,阐明了接合能量,超声波振荡振幅和连接压力的个体和组合效果。作为本研究的结果,获得了一组优化的连接参数以产生具有高终极LAP剪切力的关节。所得可靠的型号(R-2 = 82%)显示接合能量(25.3%)和超声波振荡幅度(21.2%)对接合机械性能的主要影响。双向交互响应表面用于支持优化最大终极膝盖剪切力的策略。通过比较这项工作中的优化关节条件,通过先前公布的结果,达到了最终膝盖剪切力的提高79%,从而证明了所提出的过程优化程序的潜力。

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