A multiaxial warp knitting based yarn path manipulation technology for the production of bionic-inspired multifunctional textile reinforcements in lightweight composites

A multiaxial warp knitting based yarn path manipulation technology for the production of bionic-inspired multifunctional textile reinforcements in lightweight composites
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基于多轴经编的纱道操纵技术,用于生产轻质复合材料中的仿生多功能纺织增强材料

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发表时间:
2016
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影响因子:
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通讯作者:
C. Cherif
C. Cherif
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作者:
V. Sankaran;Tristan Ruder;Steffen Rittner;Evelin Hufnagl;C. Cherif

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复合材料现在已经给大多数行业带来了革命性的变化,如航空航天、船舶、电气、交通运输,并已被证明是一种值得替代其他传统材料的选择。然而,为了进一步的全面应用,混杂复合材料需要在大规模生产的基础上根据具体的应用需求进行裁剪。在这方面,这里的一个主要基础研究领域涉及基于多轴向经编技术的技术开发,用于生产仿生和特定用途的纺织品预制件,这些预型件符合力的要求,并表现出多种材料设计。本文介绍了一种新开发的用于多轴向经编机的纱线(经纱)路径操纵装置,该装置能够有针对性地生产具有上述特征的定制纺织预制件。然后讨论了技术开发周期及其实验验证,以证明新技术的可行性,通过生产适用于不同应用领域的一些模式。
Composites have now revolutionized most industries, like aerospace, marine, electrical, transportation, and have proved to be a worthy alternative to other traditional materials. However for a further comprehensive usage, the tailorability of hybrid composites according to the specific application needs on a large-scale production basis is required. In this regard, one of the major fundamental research fields here involves a technology development based on the multiaxial warp-knitting technique for the production of bionic-inspired and application-specific textile preforms that are force compliant and exhibit multi-material design. This article presents a newly developed yarn (warp) path manipulation unit for multiaxial warp-knitting machines that enables a targeted production of customized textile preforms with the above characteristics. The technological development cycle and their experimental validation to demonstrate the feasibility of new technology through production of some patterns for different field of applications are then discussed.
一种用于生产空间三维缝编织物的新型加工解决方案
DOI: 10.1177/0040517512452945
发表时间: 2012
影响因子: 2.3
作者:
Sankaran;Younes;Engler;Cherif
通讯作者: Cherif