Online visual monitoring and ultrasonic feedback detection in the ultrasonic precision bonding of polymers

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Advanced Composites Letters Pub Date : 2020-06-25 DOI:10.1177/2633366X20932584
Yibo Sun, Yuqi Feng, Pengfei Hu, Xingbai Zhao, Xinhua Yang, Guoxiong Wu
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引用次数: 1

Abstract

Ultrasonic bonding is a convenient bonding technology, which features sufficient cleanliness, high efficiency, no need for additional bonding aids, and other outstanding advantages. In recent years, it has been introduced into the field of the micro–nano assembly of polymer micro–nano devices, but it is still difficult for current ultrasonic bonding technology to meet the accuracy requirements of the micro–nano assembly. To improve the control accuracy of the hot-melt interface in the process of ultrasonic bonding, an online hot-melt interface monitoring method and an online ultrasonic transmission efficiency detection method are proposed in this article. With these detection methods, the real-time monitoring of the hot-melt interface can be realized on the basis of machine vision, while high-frequency dynamic force sensors can be used to detect the ultrasonic vibration transmitted from the ultrasonic horn to the anvil. Based on these methods, a functional anvil based on visual monitoring and ultrasonic detection is developed, the finite element method has been used to analyze the transmission characteristics of ultrasonic vibration, and experiments are carried out regarding online detection in the process of ultrasonic bonding. The results show that this system can realize the online detection of the hot-melt interface and ultrasonic transmission information, providing a new control method for ultrasonic bonding technology.
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聚合物超声精密粘接中的在线视觉监测和超声反馈检测
超声波粘接是一种方便的粘接技术,具有清洁度高、效率高、不需要额外的粘接助剂等突出优点。近年来,它已被引入聚合物微纳器件的微纳组装领域,但目前的超声键合技术仍难以满足微纳组装的精度要求。为了提高超声波粘接过程中热熔界面的控制精度,本文提出了一种热熔界面在线监测方法和超声波传输效率在线检测方法。通过这些检测方法,可以在机器视觉的基础上实现对热熔界面的实时监测,同时可以使用高频动态力传感器来检测从超声波变幅杆传递到砧座的超声波振动。基于这些方法,开发了一种基于视觉监测和超声波检测的功能性砧座,利用有限元方法分析了超声波振动的传输特性,并对超声波粘接过程中的在线检测进行了实验。结果表明,该系统可以实现热熔界面和超声波传输信息的在线检测,为超声波粘接技术提供了一种新的控制方法。
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来源期刊
Advanced Composites Letters
Advanced Composites Letters 工程技术-材料科学:复合
自引率
0.00%
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0
审稿时长
4.2 months
期刊介绍: Advanced Composites Letters is a peer reviewed, open access journal publishing research which focuses on the field of science and engineering of advanced composite materials or structures.
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