Three-dimensional modeling and analysis of knitted fabric based on hexagonal mesh structure

被引:0
|
作者
Yang E. [1 ]
Qiu H. [1 ]
Dai W. [1 ]
机构
[1] Key Laboratory of Eco-Textiles, Jiangnan University, Ministry of Education, Wuxi, 214122, Jiangsu
来源
Fangzhi Xuebao/Journal of Textile Research | 2019年 / 40卷 / 11期
关键词
3-D model; Data point; Hexagonal mesh; Knitted fabric; Loop; Simulation analysis;
D O I
10.13475/j.fzxb.20181106706
中图分类号
学科分类号
摘要
In order to create a 3-D geometric model close to the real loop of knitted fabric more conveniently, a method based on hexagonal mesh structure theory was proposed. A hexagonal mesh structure was constructed according to the interleaving points formed when knitting loops were interlaced, and eight special value points were determined for each loop unit. Then the specific coordinates of the type value points were acquired according to the yarn fineness and fabric thickness by a trigonometric function relation, and the type value points were inserted into the non-uniform rational B-spline curve. The inverse algorithm was adopted to calculate the control point and the final yarn path was confirmed, and a single yarn loop was formed by section scanning. The fabric 3-D model of specific structure circulation was obtained by sequentially repeatedly arranging by an array method. The finite element heat conduction analysis of the element model was then carried out. The results show that the error between the simulation result and the actual measurement value is less than 4%, the model is practical and reasonable. Copyright No content may be reproduced or abridged without authorization.
引用
收藏
页码:69 / 74
页数:5
相关论文
共 19 条
  • [11] Meng R., Fang Y., Modeling and analysis of NURBS spline curve weft knitted fabric coil structure, Journal of Zhejiang Sci-Tech University, 3, pp. 219-224, (2007)
  • [12] Xu H., Chen N., 3D modeling of weft knitted fabric based on elastic rod theory, Knitting Industries, 7, pp. 56-59, (2015)
  • [13] Xu H., Jiang J., Chen N., Three-dimensional simulation of warp knitted fabric based on TexGen, Journal of Textile Research, 36, 3, pp. 140-146, (2015)
  • [14] Ru X., Peng L., Lu M., Et al., Geometric modeling and algorithm of weft knitted fabric, Journal of Textile Research, 39, 9, pp. 44-49, (2018)
  • [15] Rajab K., Piegl L.A., Smarodzinava V., CAD model repair using knowledge-guided NURBS, Engineering with Computers, 29, 4, pp. 477-486, (2013)
  • [16] Liu R., Zhang X., An B., Et al., Application of non-uniform rational B-spline curve and node insertion algorithm in optimal design of turbine blade, Journal of Aerodynamics, 25, 2, pp. 451-458, (2010)
  • [17] Shi F., Computer-aided Geometry Design and Non-uniform Rational B-spline, (2001)
  • [18] Wu J., Tang H., Finite element analysis of fabric heat transfer using ABAQUS, Journal of Textile Research, 37, 9, pp. 37-41, (2016)
  • [19] Li Y., Xie C., Liu X., Et al., Finite element simulation of heat transfer between silk fabric and silk fabric, Journal of Silk, 54, 12, pp. 7-11, (2017)