Bhudolia Somen K, Gohel Goram, Leong Kah Fai, Islam Aminul
School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50, Nanyang Avenue, Singapore 639798, Singapore.
Institute for Sports Research, Nanyang Technological University, 50, Nanyang Avenue, Singapore 639798, Singapore.
Materials (Basel). 2020 Mar 12;13(6):1284. doi: 10.3390/ma13061284.
The ultrasonic welding (UW) technique is an ultra-fast joining process, and it is used to join thermoplastic composite structures, and provides an excellent bonding strength. It is more cost-efficient as opposed to the conventional adhesive, mechanical and other joining methods. This review paper presents the detailed progress made by the scientific and research community to date in the direction of the UW of thermoplastic composites. The focus of this paper is to review the recent development of the ultrasonic welding technique for thermoplastic composites to thermoplastic composites, and to dissimilar materials. Different ultrasonic welding modes and their processing parameters, namely, weld time, weld pressure, amplitude, type of energy directors (EDs) affecting the welding quality and the advantages and disadvantages of UW over other bonding techniques, are summarized. The current state of the ultrasonic welding of thermoplastic composites and their future perspectives are also deliberated.
超声焊接(UW)技术是一种超快速连接工艺,用于连接热塑性复合材料结构,并提供优异的粘结强度。与传统的粘合剂、机械和其他连接方法相比,它更具成本效益。这篇综述文章介绍了迄今为止科研界在热塑性复合材料超声焊接方向上取得的详细进展。本文的重点是回顾热塑性复合材料与热塑性复合材料以及与异种材料之间超声焊接技术的最新发展。总结了不同的超声焊接模式及其工艺参数,即焊接时间、焊接压力、振幅、能量导向器(EDs)类型对焊接质量的影响以及超声焊接相对于其他粘结技术的优缺点。还讨论了热塑性复合材料超声焊接的现状及其未来前景。