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Effect of Weft Binding Structure on Compression Properties of Three-Dimensional Woven Spacer Fabrics and Composites 被引量:1

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摘要 With the wide use of three-dimensional woven spacer composites(3DWSCs),the market expects greater mechanical properties from this material.By changing the weft fastening method of the traditional I-shape pile yarns,we designed three-dimensional woven spacer fabrics(3DWSFs)and 3DWSCs with the weft V-shape to improve the compression performance of traditional 3DWSFs.The effects of weft binding structures,V-pile densities,and V-shaped angle were investigated in this paper.It is found that the compression resistance of 3DWSFs with the weft V-shape is improved compared to that with the weft I-shape,the fabric height recovery rate is as high as 95.7%,and the average elastic recovery rate is 59.39%.When the interlayer pile yarn density is the same,the weft V-shaped and weft I-shaped 3DWSCs have similar flatwise pressure and edgewise pressure performance.The compression properties of the composite improve as the density of the V-pile yarns increases.The flatwise compression load decreases as the V-shaped angle decreases.When the V-shaped angle is 28°and 42°,the latitudinal V-shaped 3DWSCs perform exceptionally well in terms of anti-compression cushioning.The V-shaped weft binding method offers a novel approach to structural design of 3DWSCs.
作者 刘生杰 江飞 曾金金 邵慧奇 蒋金华 陈南梁 LIU Shengjie;JIANG Fei;ZENG Jinjin;SHAO Huiqi;JIANG Jinhua*;CHEN Nanliang(Shanghai Frontier Science Research Center for Modern Textiles,College of Textiles,Donghua University,Shanghai 201620,China;Changzhou Saijia Machinery Co.,Ltd.,Changzhou 213132,China;Shanghai Composite Technology Co.Ltd.,Shanghai 201620,China;Innovation Center for Textile Science and Technology,Donghua University,Shanghai 201620,China)
出处 《Journal of Donghua University(English Edition)》 CAS 2023年第5期490-499,共10页 东华大学学报(英文版)
基金 Fundamental Research Funds for the Central Universities,China(Nos.2232022D-11 and 22D128102/007) Jiangsu Transformation and Upgrading Funding Program for Industrial and Information Industry,China Shanghai Natural Science Foundation of Shanghai Municipal Science and Technology Commission,China(No.20ZR1401600)。
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  • 1匡宁,张建钟,杨朝坤,张立泉,黄学峰,周光明.整体夹芯中空复合材料的研究[J].航空制造技术,2007,0(z1):53-56. 被引量:8
  • 2匡宁,周光明,张立泉,黄学峰,马洪波.三维中空复合材料力学性能研究[J].材料工程,2007,35(z1):117-120. 被引量:16
  • 3祝成炎.3D立体机织物及其复合材料[J].丝绸,2005,42(1):44-47. 被引量:23
  • 4祝成炎,谭冬宜,田伟,陈俊俊,朱俊萍.三维正交整体夹芯机织物的结构设计及织造[J].纺织学报,2006,27(12):9-13. 被引量:10
  • 5Li Min, Wang Shaokai, Zhang Zuoguang, Wu Boming. Effect of structure on the mechanical behaviors of three-dimensional spacer fabric composites[J]. Applied Composite Materials, 2009, 16(1): 1-14.
  • 6Van Vuure A W, Ivens J A, Verpoest I. Mechanical properties of composite panels based on woven sandwich-fabric preforms [J]. Composites Part A, 2000, 31(7):671-680.
  • 7Van Vuure A W, Ivens J A, Verpoest I. Sandwich - fabric panels [C]// Proceedings of 40th International SAMPE Symposium and Exhibition. Anaheim: SAMPE, 1995: 1281- 1296.
  • 8Mack PE, Smith M D. Advances in vacuum infusion processing using spacer fabrics as engineered reinforcing interlaminar infusion media [C]//48th International SAMPE Symposium. Long Beach: Society for the Advancement of Material and Process Engineering, 2003: 272-281.
  • 9Hosur M V, Abdullah M, Jeelani S. Manufacturing and low- velocity impact characterization of hollow integrated core sandwich composites with hybrid face sheets [J]. Composite Structures, 2004, 65(1): 103-115.
  • 10Hosur M V, Abdullah M, Jeelani S. Manufacturing and lowvelocity impact characterization of foam filled 3 - D integrated core sandwich composites with hybrid face sheets [J]. Composite Structures, 2005, 69(2): 167-181.

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