Zhai Wenqian, Soulat Damien, Legrand Xavier, Wang Peng
Ensait, Gemtex, University of Lille, F-59056 Roubaix, France.
Ensisa, Lpmt, University of Haute-Alsace, F-68000 Mulhouse, France.
Polymers (Basel). 2022 Mar 10;14(6):1117. doi: 10.3390/polym14061117.
The identification of thermomechanical in-plane shear behavior of preform is one of the most important factors to ensure the quality of the thermoplastic composites during the thermoforming process. In this present work, the non-symmetric in-plane shear behavior of flax/polypropylene 2D biaxial braided preform for thermoplastic biocomposites was characterized at elevated temperature chamber by using bias-extension test. Analytical models of a bias-extension test based on non-symmetric unit cell geometry for 2D biaxial braids were defined and applied; the thermo-condition-dependent experiments were conducted to study the temperature and displacement rate dependences. The influence of unit cell geometry parameters including braiding angle, tow waviness, and cover factor on the thermal in-plane shear behavior was deeply invested, experiments in both axial and transversal directions were performed for a complete study, and asymmetric scissor mechanisms for in-plane shear behavior were introduced and studied. Finally, a simulation of thermal impregnation distribution based on unit cell geometry was made to clarify the importance of the overall fiber volume fraction.
预成型件热机械面内剪切行为的识别是确保热成型过程中热塑性复合材料质量的最重要因素之一。在本研究中,通过偏置拉伸试验在高温试验箱中对用于热塑性生物复合材料的亚麻/聚丙烯二维双轴编织预成型件的非对称面内剪切行为进行了表征。定义并应用了基于二维双轴编织非对称单胞几何形状的偏置拉伸试验分析模型;进行了依赖于热条件的实验,以研究温度和位移速率的依赖性。深入研究了包括编织角、丝束波纹度和覆盖因子在内的单胞几何参数对热面内剪切行为的影响,在轴向和横向都进行了实验以进行全面研究,并引入并研究了面内剪切行为的非对称剪刀机制。最后,基于单胞几何形状对热浸渍分布进行了模拟,以阐明整体纤维体积分数的重要性。