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Finite element analysis of compression behaviour of 3D spacer fabric structure

机译:3D间隔织物结构压缩行为的有限元分析

摘要

3D finite element (FE) analysis was conducted to investigate the mechanical behaviour of a typical 3D spacer fabric structure under compression in terms of its structural feature and mechanical properties of its components. A spacer fabric consists of two separate outer layers joined together with spacer monofilaments. Six FE models with different constraints on the spacer monofilaments and outer layer thicknesses were created using the precise geometry of a unit cell from Micro-X-ray computed tomography (mu CT) scanning by fully considering the yarn interactions among all the fabric components and material's nonlinearity. A FE model which could give a satisfactory prediction of the compression load-displacement relationship of the fabric was employed to identify the compression mechanism. It was confirmed from the simulation that the nonlinear compression behaviour of the 3D spacer fabric structure resulted from post-buckling, torsion, shear, rotation and contacts of the spacer monofilaments as well as the contacts between the spacer monofilaments and outer layers. It was found from a parametric study that the spacer fabric structure made with smaller spacer monofilament inclination angle, coarser spacer monofilaments and lower fabric thickness possesses higher compression resistance. (
机译:进行了3D有限元(FE)分析,以研究典型3D间隔织物结构在压缩状态下的机械性能,包括其结构特征和组件的机械性能。间隔织物由与间隔单丝连接在一起的两个独立的外层组成。通过充分考虑所有织物成分和材料之间的纱线相互作用,使用Micro-X射线计算机断层扫描(mu CT)扫描中的晶胞的精确几何形状,创建了对间隔物单丝和外层厚度具有不同约束的六个FE模型。非线性。采用能够给出织物压缩载荷-位移关系令人满意的预测的有限元模型来识别压缩机理。从仿真中可以确认,3D间隔织物结构的非线性压缩行为是由间隔单丝的后屈曲,扭转,剪切,旋转和接触以及间隔单丝与外层之间的接触引起的。从参数研究中发现,以较小的间隔物单丝倾角,较粗的间隔物单丝和较低的织物厚度制成的间隔物织物结构具有较高的抗压性。 (

著录项

  • 作者

    Liu YP; Hu H;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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