Li Mengru, Wang Peng, Boussu François, Soulat Damien
University of Lille, Ensait, Gemtex, F-59000 Roubaix, France.
University of Haute-Alsace, Ensisa, Lpmt, F-68000 Mulhouse, France.
Polymers (Basel). 2020 May 2;12(5):1045. doi: 10.3390/polym12051045.
As promising fibrous reinforcements in the thick composites manufacturing, 3-dimensional warp interlock fabrics (3DWIFs) are recognised more and more in the industry for their outstanding mechanical properties compared to the 2D laminates. The present work shows the influence of the fabric's architecture on the tensile behaviour of 3DWIFs. Five kinds of 3D fabrics with different interlock structures have been designed according to the main category of binding warp yarn evolution. These five 3DWIFs, containing both binding and stuffer warp yarns and produced with the same warp and weft densities, are experimentally tested via uniaxial tensile tests. The experimental results of the different 3DWIFs have been compared to find the optimal solution based on several mechanical performances. Fabric structures have an impact on tensile properties both in the warp and weft directions. Furthermore, other influential factors, for example, the yarn crimps during the weaving process and the crimp angles of binding warp yarns in 3DWIFs, are investigated and discussed in the paper. The influence of the total crimp angles related to the binding path on the tensile properties of 3DWIFs via the inter yarns friction is summarised.
作为厚复合材料制造中很有前景的纤维增强材料,三维经纱互锁织物(3DWIFs)因其与二维层压板相比具有出色的机械性能而在行业中越来越受到认可。目前的工作展示了织物结构对3DWIFs拉伸性能的影响。根据束缚经纱演变的主要类别,设计了五种具有不同互锁结构的三维织物。这五种3DWIFs均包含束缚经纱和填充经纱,且经纬密度相同,通过单轴拉伸试验进行了实验测试。对不同3DWIFs的实验结果进行了比较,以便基于多种机械性能找到最佳解决方案。织物结构在经向和纬向都对拉伸性能有影响。此外,本文还研究并讨论了其他影响因素,例如织造过程中的纱线卷曲以及3DWIFs中束缚经纱的卷曲角度。总结了与束缚路径相关的总卷曲角度通过纱线间摩擦对3DWIFs拉伸性能的影响。