A Novel Design of Shedding Wheels for 3D Circular Loom

Three-dimensional(3D) circular loom is a textile machine to produce 3D tubular fiber composites reinforcement. The shedding wheels system is an important part of 3D circular loom to schedule the shedding order which has several types. A computer aided design system is proposed, which is implemented...

Full description

Saved in:
Bibliographic Details
Published in东华大学学报(英文版) Vol. 28; no. 5; pp. 481 - 484
Main Author 孙志宏 周申华 毛立民 刘晟 袁建润
Format Journal Article
LanguageEnglish
Published College of Mechanical Engineering, Donghua University, Shanghai 201620, China 2011
Engineering Research Center of Advanced Textile Machinery, Ministry of Education, Shanghai 201620, China%Engineering Research Center of Advanced Textile Machinery, Ministry of Education, Shanghai 201620, China
Subjects
Online AccessGet full text
ISSN1672-5220

Cover

More Information
Summary:Three-dimensional(3D) circular loom is a textile machine to produce 3D tubular fiber composites reinforcement. The shedding wheels system is an important part of 3D circular loom to schedule the shedding order which has several types. A computer aided design system is proposed, which is implemented in SolidWorks, and provides a tool for practicing designers to design the sheddling wheel system more efficiently.
Bibliography:31-1920/N
SUN Zhi-hong , ZHOU Shen-hua , MAO Li-min , LIU Cheng , YUAN Jian-mn 1 College of Mechanical Engineering, Donghua University, Shanghai 201620, China 2 Engineering Research Center of Advanced Textile Machinery, Ministry of Education, Shanghai 201620, China
shedding wheel; Solid Works; design table
Three-dimensional(3D) circular loom is a textile machine to produce 3D tubular fiber composites reinforcement. The shedding wheels system is an important part of 3D circular loom to schedule the shedding order which has several types. A computer aided design system is proposed, which is implemented in SolidWorks, and provides a tool for practicing designers to design the sheddling wheel system more efficiently.
ISSN:1672-5220