首页 | 本学科首页   官方微博 | 高级检索  
     

并排式三金片绣自动送片装置改进设计与仿真分析
引用本文:余为洲,周俊荣,胡晨星,刘光辉,钟永华.并排式三金片绣自动送片装置改进设计与仿真分析[J].现代纺织技术,2020(2):89-96.
作者姓名:余为洲  周俊荣  胡晨星  刘光辉  钟永华
作者单位:五邑大学智能制造学部
基金项目:广东省建设现代产业体系技术创新滚动计划项目(2009863037);广东省科技计划项目(2016A010102023)
摘    要:为提高三金片绣花机的工作效率,针对三金片绣送片装置存在的实际问题,开发设计一种并排式三金片绣自动送片装置。通过设计出一种仿形换位机构和可控离合机构,实现三个送片槽并排式布置。利用Creo三维建模软件建立实体模型,将其导入ADAMS软件中建立虚拟样机模型进行仿真分析,获得了关键机构的运行参数,绘制出了机构的运动特性曲线。结果表明:该送片装置改进设计的机械结构合理及可行,达到了预期的效果。

关 键 词:并排式  三金片绣花机  送片机构  改进设计  仿真分析

Innovative Design and Simulation Analysis of Automatic Feeding Mechanism of Side-by-side Three-layered Tinsel Embroidery Device
YU Weizhou,ZHOU Junrong,HU Chenxing,LIU Guanghui,ZHONG Yonghua.Innovative Design and Simulation Analysis of Automatic Feeding Mechanism of Side-by-side Three-layered Tinsel Embroidery Device[J].Advanced Textile Technology,2020(2):89-96.
Authors:YU Weizhou  ZHOU Junrong  HU Chenxing  LIU Guanghui  ZHONG Yonghua
Affiliation:(Department of Intelligent Manufacturing,Wuyi University,Jiangmen 529020,China)
Abstract:To improve the work efficiency of three-layered tinsel embroidery machine,an automatic feeding mechanism of side-by-side three-layered tinsel embroidery device was designed and developed on the consideration of overcoming the problems of existing three-layered tinsel embroidery feeding mechanism.Side-by-side arrangement of three feeding grooves was realized by designing a copying transposition mechanism and a controllable clutch mechanism.A solid model was built with Creo 3D modeling software,which was imported into ADAMS software to establish a model of virtual prototype for simulation analysis.The operating parameters of key components were obtained,and component motion characteristic curve was developed.Results show that the innovated mechanical structure of the mechanism is reasonable and feasible,and achieves the desired results.
Keywords:side-by-side  three-layered tinsel embroidery machine  feeding mechanism  innovative design  simulation analysis
本文献已被 CNKI 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号