纺织学报 ›› 2026, Vol. 47 ›› Issue (05): 107-113.doi: 10.13475/j.fzxb.20250705301

• 纺织工程 • 上一篇    下一篇

纬编菠萝织物的设计与三维仿真

曹叶, 蒋高明(), 李炳贤   

  1. 江南大学 针织技术教育部工程研究中心, 江苏 无锡 214122
  • 收稿日期:2025-07-21 修回日期:2026-03-16 出版日期:2026-05-15 发布日期:2026-07-10
  • 通讯作者: 蒋高明(1962—),男,教授,博士。主要研究方向为纺织数字化技术与纺织结构材料。E-mail:jgm@jiangnan.edu.cn
  • 作者简介:曹叶(2001—),女,硕士生。主要研究方向为纬编织物数字化设计与三维仿真。
  • 基金资助:
    中央高校基本科研业务费专项资金资助项目(JUSRP123005);江苏省自然科学基金青年基金项目(BK20221094)

Design and 3D simulation of weft-knitted pelerine fabrics

CAO Ye, JIANG Gaoming(), LI Bingxian   

  1. Engineering Research Center for Knitting Technology, Ministry of Education, Jiangnan University, Wuxi, Jiangsu 214122, China
  • Received:2025-07-21 Revised:2026-03-16 Published:2026-05-15 Online:2026-07-10

摘要:

针对纬编菠萝组织织物设计依赖试验试织、数字化仿真难的问题,提出一种基于数学模型与物理模型的快速设计及三维仿真方法。通过分析纬编菠萝组织织物的移圈原理与编织工艺,构建花型意匠图矩阵、组织结构图矩阵及工艺编织图矩阵;采用Boolean变换将意匠矩阵分解为布尔矩阵,并计算其与组织图矩阵的Kronecker积,实现花型信息到编织动作的数学映射。为模拟线圈形变,建立弹簧-质点模型,将线圈几何中心离散为质点,通过弹簧连接表征沉降弧转移引起的力学作用;基于牛顿第二定律与胡克定律进行受力分析,采用Velocity-Verlet数值积分法求解质点位移随时间的演化,模拟线圈在串套与拉伸过程中的三维形态变化。基于Visual Studio 2022平台,结合C#编程与OpenGL图形渲染技术,实现纬编菠萝组织织物的三维结构仿真。结果表明,仿真模型能准确反映织物的孔眼结构与线圈串套关系,仿真效果与实物图像基本吻合;该方法可降低设计复杂度与试织成本,为纬编菠萝组织织物的数字化设计与仿真提供理论支撑与技术路径。

关键词: 纬编菠萝织物, 线圈模型, 弹簧-质点模型, 三维仿真, 线圈变形

Abstract:

Objective The design of weft-knitted pelerine fabrics currently relies on trial-and-error, which is time-consuming and costly. In order to solve this problem, this study aims to establish a digital design and 3D simulation method for weft-knitted pelerine fabrics. The objectives are to realize precise mapping from two-dimensional patterns to three-dimensional structures, to build multi-scale models at the yarn, loop, and fabric levels, and to simulate the loop deformation caused by sinker loop transfer.

Method Mathematical matrices for pattern diagrams, organization diagrams and knitting diagrams were constructed. Boolean transformations were performed on the pattern matrices, and the Kronecker products of each pattern Boolean matrix and the corresponding organization matrix were calculated to obtain the knitting matrix mathematically. Based on in-depth study of the structural characteristics of weft-knitted pelerine fabrics, a spring-mass model was established and used in pelerine fabric modelling using the Velocity-Verlet numerical integration method, thereby obtaining the displacement changes of different types of particles over time.

Results The mathematical mapping from pattern design to knitting actions was successfully established through Boolean transformation and Kronecker product operations. The spring-mass model effectively captured the mechanical interactions during sinker loop transfer, and the Velocity-Verlet numerical integration method provided stable solutions for mass point displacement over time. Based on the proposed method, three-dimensional structural simulations of weft-knitted pelerine fabrics were achieved. The simulated results accurately reproduced the characteristic eyelet structures and loop interlocking relationships of pelerine fabrics. Comparison between simulated fabric images and actual fabric photographs showed good agreement in terms of loop configuration and fabric appearance, validating the effectiveness of the simulation method.

Conclusion This paper presents a systematic study on the computer-aided design and three-dimensional simulation of weft-knitted pelerine fabrics. A complete theoretical framework integrating process analysis, mathematical modeling, and physical simulation was established. By combining Boolean transformation, Kronecker product operations, and a spring-mass model was solved by the Velocity-Verlet method, the study achieved three-dimensional structural simulation of pelerine fabrics, accurately reproducing the characteristic eyelet effects and loop deformations caused by sinker loop transfer. This work addresses the lack of three-dimensional simulation methods specifically for weft-knitted pelerine structures, providing a digital tool for fabric design and visualization. However, the mechanical analysis of edge loops was not included and should be further investigated in future work on dynamic fabric behavior.

Key words: weft-knitted pelerine fabric, loop model, spring-mass model, three-dimensional simulation, loop deformation

中图分类号: 

  • TS186.2

图1

菠萝针与织针的运动轨迹"

图2

菠萝组织结构的形成过程"

表1

移圈组织常见色码及对应符号"

序号 图标 含义
1 针筒成圈
2 针盘成圈
3 针筒与针盘同时成圈
10 单面移圈
15 转移线圈右边沉降弧
16 转移线圈左边沉降弧

图3

菠萝织物的2种设计方式"

图4

工艺编织图展开过程矩阵计算"

图5

单面菠萝织物理想线圈网格模型"

图6

单面菠萝织物理想线圈网格模型"

图7

质点受力分析图"

图8

纬编菠萝织物仿真效果"

[1] 廖芳. 菠萝织物编织工艺的探讨[J]. 针织工业, 1988(5): 29-31.
LIAO Fang. Discussion on knitting technology of pineapple fabric[J]. Knitting Industries, 1988(5): 29-31.
[2] 张新元. LRE-4T型圆机编织菠萝组织原理的分析[J]. 针织工业, 1986(5): 1-4.
ZHANG Xinyuan. Analysis of weave principle of pineapple knitted by LRE-4T circular knitting machine[J]. Knitting Industries, 1986(5): 1-4.
[3] БАБИИЕЦ С. В, 徐云芳. 单面菠萝组织针织物[J]. 国外纺织技术, 1989(13):12-14.
БАБИИЕЦ С. В, XU Yunfang. Single-sided pelerine-patterned knitted fabric[J]. Textile Technology Overseas, 1989(13):12-14.
[4] 范沛飞, 董勤霞, 胡淑芬, 等. 纬编镂空网眼空心织物的设计开发[J]. 针织工业, 2020(1): 1-4.
FAN Peifei, DONG Qinxia, HU Shufen, et al. Design and development of weft knitted hollowed mesh fabric[J]. Knitting Industries, 2020(1): 1-4.
[5] DAVID J Spencer. Knitting technology[M]. Cambridge: Wood-head Publishing,2021:130-132.
[6] RU X, ZHENG S Y, PENG L H, et al. Yarn-level modeling and simulation of fancy weft-knitted fabric[J]. Textile Research Journal, 2024, 94(17/18): 2063-2078.
doi: 10.1177/00405175241235950
[7] CHENG B L, JIANG G M, ZHAO J J, et al. Design and modeling of partial knitting knitted fabric based on matrix transformation[J]. International Journal of Clothing Science and Technology, 2023, 35(6): 918-937.
doi: 10.1108/IJCST-06-2022-0085
[8] 张静, 丛洪莲, 蒋高明. 纬编双面移圈织物多层弹簧-质点结构模型构建与实现[J]. 纺织学报, 2024, 45(1): 106-111.
ZHANG Jing, CONG Honglian, JIANG Gaoming. Construction and implementation of multilayer mass-spring structure model for weft-knitted two-side transfer fabric[J]. Journal of Textile Research, 2024, 45(1): 106-111.
[9] 雷惠, 丛洪莲, 张爱军, 等. 基于质点模型的横编织物结构研究与计算机模拟[J]. 针织工业, 2015(3): 74.
LEI Hui, CONG Honglian, ZHANG Aijun, et al.. Research and computer simulation of flat knitted fabric structure based on particle model[J]. Knitting Industries, 2015(3): 74.
[10] 穆秀萍, 蒋高明, 曹叶, 等. 基于弹簧-质点的纬编单面针织物三维仿真[J]. 现代纺织技术, 2025, 33(5): 107-115.
MU Xiuping, JIANG Gaoming, CAO Ye, et al. Three-dimensional simulation of single-faced weft-knitted fabrics based on spring-mass particles[J]. Advanced Textile Technology, 2025, 33(5): 107-115.
[1] 孙布青, 关松松, 蒋高明, 李炳贤. 钩编套圈针织物的设计与三维仿真[J]. 纺织学报, 2025, 46(09): 136-142.
[2] 顾文敏, 蒋高明, 赵俊杰, 李炳贤. 经纬编交织物数字化设计及其三维仿真[J]. 纺织学报, 2025, 46(07): 119-127.
[3] 顾文敏, 蒋高明, 刘海桑, 李炳贤. 基于网格模型的全成形裙装三维仿真[J]. 纺织学报, 2025, 46(05): 214-221.
[4] 李际军, 刘泽华. 三维个性化针织服装的针法建模[J]. 纺织学报, 2025, 46(05): 222-226.
[5] 尚静雨, 蒋高明, 陈钰珊, 刘海桑, 李炳贤. 花式纱罗织物设计与三维仿真[J]. 纺织学报, 2025, 46(04): 81-88.
[6] 马运娇, 王蕾, 潘如如. 基于双斜交平面镜的纱线条干三维仿真[J]. 纺织学报, 2025, 46(02): 86-91.
[7] 关松松, 蒋高明, 杨美玲, 李炳贤. 基于线圈结构的双针床经编毛绒织物三维仿真[J]. 纺织学报, 2024, 45(09): 84-90.
[8] 张静, 丛洪莲, 蒋高明. 纬编双面移圈织物多层弹簧-质点结构模型构建与实现[J]. 纺织学报, 2024, 45(01): 106-111.
[9] 常辰玉, 王雨薇, 原旭阳, 刘锋, 卢致文. 基于交织点改进弹簧-质点模型的纬编针织物动态变形模拟[J]. 纺织学报, 2024, 45(01): 99-105.
[10] 赵俊杰, 蒋高明, 程碧莲, 李炳贤. 毛衫绞花织物的三维仿真与实现[J]. 纺织学报, 2023, 44(12): 81-87.
[11] 杨美玲, 蒋高明, 王婷, 李炳贤. 基于弹簧-质点模型的单贾卡经编鞋材三维仿真[J]. 纺织学报, 2023, 44(11): 113-119.
[12] 杨美玲, 蒋高明, 王婷, 李炳贤. 经编间隔鞋材设计与三维仿真[J]. 纺织学报, 2023, 44(08): 96-102.
[13] 郑培晓, 蒋高明, 丛洪莲, 李炳贤. 多色调线横条纹织物的设计与三维仿真[J]. 纺织学报, 2023, 44(06): 85-90.
[14] 陈钰珊, 蒋高明, 李炳贤. 纬编绕经织物设计与三维仿真[J]. 纺织学报, 2022, 43(12): 62-68.
[15] 汝欣, 朱婉珍, 史伟民, 彭来湖. 密度非均匀分布纬编针织物的变形预测及仿真[J]. 纺织学报, 2022, 43(06): 63-69.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!