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研究界面温度对3D打印复合材料部件激光透射焊接过程中分子相互扩散的影响。

Investigating the Effect of Interface Temperature on Molecular Interdiffusion during Laser Transmission Welding of 3D-Printed Composite Parts.

作者信息

Le Anh-Duc, Akué Asséko André Chateau, Cosson Benoît, Krawczak Patricia

机构信息

IMT Nord Europe, Institut Mines Télécom, University of Lille, Centre for Materials and Processes, F-59653 Villeneuve d'Ascq, France.

出版信息

Materials (Basel). 2023 Sep 7;16(18):6121. doi: 10.3390/ma16186121.

Abstract

The present study investigated the influence of temperature on molecular interdiffusion at the interface during the laser transmission welding of 3D-printed continuous carbon-fiber-reinforced thermoplastic composites. In order to accurately measure the temperature at the weld interface, a series of thermocouples were embedded in the laser-absorbent composite part. Two different molecular interdiffusion models were implemented to calculate the degree of healing and to predict the effects of temperature on the welding process. The degree of healing and the weld line width were computed and compared with microscopy observations. The discrepancy between the two proposed numerical models was less than 6%. Both models showed good agreement with the experimental data, with an average error of 13.28% and 7.26%, respectively. The results revealed a significant correlation between the thermal history and molecular interdiffusion at the interface. Furthermore, the relationship between the welding parameters (laser beam scanning speed) and weld line width was established. The findings of this study provide a comprehensive understanding of the underlying mechanisms involved in the laser welding of 3D-printed composites and offer insights to optimize the welding process for enhanced weld quality and superior mechanical properties in the final product.

摘要

本研究调查了温度对3D打印连续碳纤维增强热塑性复合材料激光透射焊接过程中界面处分子相互扩散的影响。为了精确测量焊接界面处的温度,在吸光复合材料部件中嵌入了一系列热电偶。采用两种不同的分子相互扩散模型来计算愈合程度,并预测温度对焊接过程的影响。计算了愈合程度和焊缝宽度,并与显微镜观察结果进行了比较。两个提出的数值模型之间的差异小于6%。两个模型与实验数据均显示出良好的一致性,平均误差分别为13.28%和7.26%。结果揭示了热历史与界面处分子相互扩散之间的显著相关性。此外,还建立了焊接参数(激光束扫描速度)与焊缝宽度之间的关系。本研究结果全面理解了3D打印复合材料激光焊接所涉及的潜在机制,并为优化焊接工艺以提高焊缝质量和最终产品的优异机械性能提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4a7/10533126/02e783bf7d6a/materials-16-06121-g001.jpg

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