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Compressive mechanics of warp-knitted spacer fabrics. Part I : a constitutive model

机译:经编间隔织物的压缩力学。第一部分:本构模型

摘要

This paper presents a theoretical study of the compressive mechanics of warp-knitted spacer fabrics. The first part, as presented in the current paper, focuses on the establishment of a constitutive model that can give accurate compressive stress–strain relationships of warp-knitted spacer fabrics. Based on the analysis of three existing models for polymeric or metallic foams, a constitutive model consisting of seven parameters was firstly proposed for spacer fabrics. The effect of each parameter on the regressive stress–strain curves was then parametrically studied. Experimental validation was finally conducted by using 12 warp-knitted spacer fabrics produced with different spacer monofilament diameters and inclination angles, fabric thicknesses, and outer layer structures to identify the physical sense of the parameters. The analysis has showed that an excellent agreement exists between the regressive and experimental results, and all seven parameters have a quantitative effect on a particular phase of the resultant compressive stress–strain curves of warp-knitted spacer fabrics. The change of each parameter makes a clear physical sense on the stress–strain curve. Therefore, the proposed constitutive model can be used as a useful tool to engineer the cushioning properties of warp-knitted spacer fabrics. The adoption of the constitutive model to develop a dynamic model for predicting the impact compressive responses of warp-knitted spacer fabrics under various loading conditions will be presented in Part II.
机译:本文对经编间隔织物的压缩力学进行了理论研究。如本文所述,第一部分着重于本构模型的建立,该模型可以给出经编间隔织物的精确压应力-应变关系。在对三种现有的聚合物或金属泡沫模型进行分析的基础上,首次提出了由七个参数组成的本构模型。然后,对每个参数对回归应力-应变曲线的影响进行了参数研究。最后,通过使用12种经编织的间隔织物进行实验验证,这些间隔织物具有不同的间隔单丝直径和倾角,织物厚度和外层结构,以识别参数的物理意义。分析表明,回归结果和实验结果之间存在极好的一致性,并且所有七个参数对经编间隔织物合成压应力-应变曲线的特定相位都有定量影响。每个参数的变化在应力-应变曲线上都有明确的物理意义。因此,所提出的本构模型可以用作设计经编间隔织物的缓冲性能的有用工具。在第二部分中将介绍采用本构模型开发动态模型来预测经编间隔织物在各种载荷条件下的冲击压缩响应。

著录项

  • 作者

    Liu Y; Hu H;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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