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微编织和共缠绕技术对亚麻/聚丙烯基混合纱线特性的影响:一项对比研究。

Effects of Micro-Braiding and Co-Wrapping Techniques on Characteristics of Flax/Polypropylene-Based Hybrid Yarn: A Comparative Study.

作者信息

Zhai Wenqian, Wang Peng, Legrand Xavier, Soulat Damien, Ferreira Manuela

机构信息

University of Lille, Ensait, Gemtex, F-59000 Roubaix, France.

University of Haute-Alsace, Ensisa, Lpmt, F-68000 Mulhouse, France.

出版信息

Polymers (Basel). 2020 Oct 31;12(11):2559. doi: 10.3390/polym12112559.

Abstract

Micro-braiding and co-wrapping techniques have been developed over a few decades and have made important contributions to biocomposites development. In this present study, a set of flax/polypropylene (PP) micro-braided and co-wrapped yarns was developed by varying different PP parameters (PP braiding angles and PP wrapping turns, respectively) to get different flax/PP mass ratios. The effects on textile and mechanical characteristics were studied thoroughly at the yarn scale, both dry- and thermo-state tensile tests were carried out, and tensile properties were compared before and after the braiding process to study the braidabilities. It was observed that PP braiding angles of micro-braided yarn influenced the frictional damage on surface treatment agent of flax roving, the cohesive effect between PP filaments/flax roving, and the PP cover factor; PP wrapping turns of co-wrapped yarn had a strong impact on the flax roving damage and the PP coverage, which further influenced the characteristics. Micro-braided yarn and co-wrapped yarn with the same flax/PP mass ratio were compared to evaluate the two different hybrid yarn production techniques; it was proven that micro-braided yarn presented better performance.

摘要

微编织和共缠绕技术已经发展了几十年,为生物复合材料的发展做出了重要贡献。在本研究中,通过改变不同的聚丙烯参数(分别为聚丙烯编织角度和聚丙烯缠绕匝数)来制备一组亚麻/聚丙烯(PP)微编织和共缠绕纱线,以获得不同的亚麻/PP质量比。在纱线尺度上深入研究了其对纺织和机械性能的影响,进行了干态和热态拉伸试验,并比较了编织前后的拉伸性能以研究可编织性。观察到微编织纱线的PP编织角度影响亚麻粗纱表面处理剂的摩擦损伤、PP长丝/亚麻粗纱之间的粘结效果以及PP覆盖系数;共缠绕纱线的PP缠绕匝数对亚麻粗纱损伤和PP覆盖率有很大影响,进而影响其性能。比较了相同亚麻/PP质量比的微编织纱线和共缠绕纱线,以评估两种不同的混合纱线生产技术;结果表明微编织纱线表现出更好的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1731/7693235/2d2950b35bd3/polymers-12-02559-g001.jpg

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