Lightweight panels with high delamination resistance made of integrally woven truss-like fabric structures

IF 2.2 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES
M. Vorhof, C. Sennewald, P. Schegner, M. Q. Pham, G. Hoffmann, T. Gereke, C. Cherif
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引用次数: 0

Abstract

Lightweight panels are of high relevance for various applications, such as automotive, aerospace, civil engineering, and achieve high stiffnesses and strengths at low self-weight. The sandwich principle is commonly used to manufacture the panels, although conventional materials and reinforcement structures often limit the design and application of the panels in a wide range of possible applications. The reason for this is that lightweight panels fail either under combined compressive/shear loading or as a result of delamination of the individual layers. In this article, novel fabric structures are presented as a basis for the fabrication of lightweight panels that effectively overcome these deficiencies. These fabrics have a spatial truss-like structure, with the core and top layer being connected by continuously running reinforcing fibers. This results in high panel stability and high delamination resistance, which are evaluated in this article using mechanical tests in compression, flexure and combined tension-shear. The results are related to sample panels with conventional honeycomb core as reference. The high potential and excellent delamination resistance of the new fabric-based lightweight panels is shown in the result of the tests.
由整体编织桁架状织物结构制成的轻质板,具有高分层阻力
轻质面板与各种应用具有高度相关性,如汽车、航空航天、土木工程,并在低自重下实现高刚度和强度。夹层原理通常用于制造面板,尽管传统的材料和加固结构经常限制面板在广泛的可能应用中的设计和应用。原因是轻质面板在组合压缩/剪切载荷下失效,或者是由于单个层的分层而失效。在这篇文章中,新型织物结构被提出作为制造轻质面板的基础,以有效地克服这些缺陷。这些织物具有空间桁架状结构,芯部和顶层通过连续运行的增强纤维连接。这导致了高面板稳定性和高抗分层性,本文使用压缩、弯曲和组合拉伸剪切的机械测试对其进行了评估。该结果与以传统蜂窝芯为参考的样品板有关。测试结果表明,新型织物基轻质面板具有高潜力和优异的抗分层性能。
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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来源期刊
Journal of Industrial Textiles
Journal of Industrial Textiles MATERIALS SCIENCE, TEXTILES-
CiteScore
5.30
自引率
18.80%
发文量
165
审稿时长
2.3 months
期刊介绍: The Journal of Industrial Textiles is the only peer reviewed journal devoted exclusively to technology, processing, methodology, modelling and applications in technical textiles, nonwovens, coated and laminated fabrics, textile composites and nanofibers.
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