Numerical Simulation of Fibre Tension in an Asymmetric Ring Spinning Triangle Using FEM
Research and development
Authors:
- Su Xuzhong
School of Textile & Clothing, Jiangnan University, WuXi, P. R. China - Su Xuzhong
Key Laboratory of Eco-Textile, Ministry of Education, JiangNan University, WuXi, P. R. China - Gao Weidong
School of Textile & Clothing, Jiangnan University, WuXi, P. R. China - Gao Weidong
Key Laboratory of Eco-Textile, Ministry of Education, JiangNan University, WuXi, P. R. China - Qin Xiaoxuan
School of Textile & Clothing, Jiangnan University, WuXi, P. R. China - Qin Xiaoxuan
School of Media and Art Design, Wuxi City College of Vocational Technology, WuXi, P. R. China - Qin Xiaoxuan
Jiangsu Province Intangible Cultural Heritage Research Base, JiangNan University, WuXi, P. R. China - Liu Xinjin
School of Textile & Clothing, Jiangnan University, WuXi, P. R. China - Liu Xinjin
Key Laboratory of Eco-Textile, Ministry of Education, JiangNan University, WuXi, P. R. China - Liu Xinjin
Jiangsu Susi Silk Limited Company, Suqian, P. R. China - Xie Chunping
School of Textile & Clothing, Jiangnan University, WuXi, P. R. China - Xie Chunping
Key Laboratory of Eco-Textile, Ministry of Education, JiangNan University, WuXi, P. R. China
Nr DOI: 10.5604/12303666.1221740
Tags:
fibre tension, fibre torque, ring spinning asymmetric triangle, FEM.
Citation:
Su X, Gao W, Qin X, Liu X, Xie C. Numerical Simulation of Fibre Tension in an Asymmetric Ring Spinning Triangle Using FEM. FIBRES & TEXTILES in Eastern Europe 2016; 24, 6(120): 81-87. DOI: 10.5604/12303666.1221740