Failure of Thermoplastic Composite Welded Joints

B. Tijs, A. Turón, C. Bisagni
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Abstract

This presentation summarizes the numerical and experimental evaluation of the failure behavior of thermoplastic composites, which are joined by means of conduction welding. The research supports the development of a next generation thermoplastic multi-functional fuselage [1]. The use of these new materials and fastener-free joints introduces new challenge as the strength of the welded joint is highly dependant on the strength and failure behavior of the thermoplastic matrix. A simplified modelling strategy that only accounts for a cohesive zone at the weld is compared to a high-fidelity model that takes into account the physical failure mechanisms at the lamina level. It was found that the joint strength is highly influenced by the failure mechanisms of not only the welded interface but also the surrounding plies. The high-fidelity modelling methodology is able to predict the failure mode of these welded joints with high accuracy with respect to the results obtained experimentally as shown in Figure 1.
热塑性复合材料焊接接头的失效
本文综述了热塑性复合材料导电焊接失效行为的数值和实验研究。该研究为下一代热塑性多功能机身的开发提供了支持[1]。这些新材料和无紧固件接头的使用带来了新的挑战,因为焊接接头的强度高度依赖于热塑性基体的强度和破坏行为。将仅考虑焊缝内聚区的简化建模策略与考虑层级物理失效机制的高保真模型进行了比较。结果表明,接头强度不仅受焊接界面破坏机制的影响,还受周围层破坏机制的影响。高保真建模方法能够根据实验结果高精度地预测这些焊接接头的失效模式,如图1所示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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