Kuo Chil-Chyuan, Tsai Qing-Zhou, Li Ding-Yang, Lin Yong-Xhi, Chen Wen-Xiong
Department of Mechanical Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Research Center for Intelligent Medical Devices, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Polymers (Basel). 2022 Jun 13;14(12):2388. doi: 10.3390/polym14122388.
Ultrasonic welding (UW) is a joining of plastics through the use of heat generated from high-frequency mechanical motion, which is known as an efficient process in many applications, such as textile, packaging, or automotive. UW of thermoplastics has been widely employed in industry since no polymer degradations are found after UW. However, the trial-and-error approach is frequently used to study optimum UW process parameters for new 3C plastic power cases in current industry, resulting in random efforts, wasted time, or energy consumption. In this study, Taguchi methods are used to study optimum UW process parameters for obtaining high weld strength of a plastic power case. The most important control factor influencing the weld strength is amplitude, followed by weld pressure, hold time, and trigger position. The optimum UW process parameters are amplitude of 43.4 µm, weld pressure of 115 kPa, hold time of 0.4 s, and trigger position of 69.95 mm. Finally, the confirmation experiments are performed to verify the optimum process parameters obtained in this study.
超声波焊接(UW)是通过利用高频机械运动产生的热量来连接塑料,在纺织、包装或汽车等许多应用中,这是一种高效的工艺。由于热塑性塑料在超声波焊接后未发现聚合物降解,因此超声波焊接在工业中得到了广泛应用。然而,在当前行业中,对于新型3C塑料电源外壳,通常采用试错法来研究最佳的超声波焊接工艺参数,这导致了盲目努力、时间浪费或能源消耗。在本研究中,采用田口方法来研究获得塑料电源外壳高焊接强度的最佳超声波焊接工艺参数。影响焊接强度的最重要控制因素是振幅,其次是焊接压力、保压时间和触发位置。最佳的超声波焊接工艺参数为振幅43.4 µm、焊接压力115 kPa、保压时间0.4 s和触发位置69.95 mm。最后,进行了验证实验,以验证本研究中获得的最佳工艺参数。