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热塑性复合材料连续超声焊接中全厚度加热的研究

A Study on Through-the-Thickness Heating in Continuous Ultrasonic Welding of Thermoplastic Composites.

作者信息

Jongbloed Bram C P, Teuwen Julie J E, Benedictus Rinze, Villegas Irene Fernandez

机构信息

Aerospace Structures and Materials Department, Faculty of Aerospace Engineering, Delft University of Technology, Kluyverweg 1, 2629 HS Delft, The Netherlands.

出版信息

Materials (Basel). 2021 Nov 3;14(21):6620. doi: 10.3390/ma14216620.

Abstract

Continuous ultrasonic welding is a promising technique for joining thermoplastic composites structures together. The aim of this study was to gain further insight into what causes higher through-the-thickness heating in continuous ultrasonic welding of thermoplastic composites as compared to the static process. Thermocouples were used to measure temperature evolutions at the welding interface and within the adherends. To understand the mechanisms causing the observed temperature behaviours, the results were compared to temperature measurements from an equivalent static welding process and to the predictions from a simplified heat transfer model. Despite the significantly higher temperatures measured at the welding interface for the continuous process, viscoelastic bulk heat generation and not thermal conduction from the interface was identified as the main cause of higher through-the-thickness heating in the top adherend. Interestingly the top adherend seemed to absorb most of the vibrational energy in the continuous process as opposed to a more balanced energy share between the top and bottom adherend in the static process. Finally, the higher temperatures at the welding interface in continuous ultrasonic welding were attributed to pre-heating of the energy director due to the vibrations being transmitted downstream of the sonotrode, to reduced squeeze-flow of energy director due to the larger adherend size, and to heat flux originating downstream as the welding process continues.

摘要

连续超声焊接是一种将热塑性复合材料结构连接在一起的很有前景的技术。本研究的目的是进一步深入了解与静态工艺相比,热塑性复合材料连续超声焊接中导致更高的厚度方向加热的原因。使用热电偶测量焊接界面处和被粘物内部的温度变化。为了理解导致观察到的温度行为的机制,将结果与等效静态焊接工艺的温度测量结果以及简化传热模型的预测结果进行了比较。尽管连续工艺在焊接界面处测得的温度明显更高,但在顶部被粘物中,粘弹性体热生成而非来自界面的热传导被确定为更高的厚度方向加热的主要原因。有趣的是,在连续工艺中,顶部被粘物似乎吸收了大部分振动能量,而在静态工艺中,顶部和底部被粘物之间的能量分配更为平衡。最后,连续超声焊接中焊接界面处较高的温度归因于由于振动传递到超声焊极下游而导致的能量导向器的预热、由于被粘物尺寸较大而导致的能量导向器挤压流动减少以及随着焊接过程继续而从下游产生的热通量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/308d/8586931/745b74dead17/materials-14-06620-g001.jpg

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