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全自动绕线机机械设计与运动学分析
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人工智能四川省重点实验室项目(2018RZY01);自贡市科技局重点科技计划项目(2018YYJC08);四川轻化工大学人才引进项目(2018RCL12)


Mechanical Design and Kinematics Analysis of Automatic Winding Machine
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    摘要:

    针对环形电感生产过程中出现的生产效率低等问题,应用虚拟样机技术设计一款能够实现磁环上料、铜线上料、磁环绕线、铜线断料、成品下料、不合格铜线下料的验证平台。采用SolidWorks软件对各个部分进行三维建模、虚拟装配,再采用SolidWorks Motion插件中运动学算法对绕线机关键部件锥形轮安装座、磁环推杆上料和铜线断料进行运动学分析。结果表明:各个部分加速度为线性变化,位移与速度无突变发生,机构的运动曲线无大幅变动。整体机构在运行过程中平稳,设计合理,满足工厂对自动绕线机的需求。

    Abstract:

    Aiming at the low production efficiency of ring inductor in the production process,a verification platform was designed by using virtual prototype technology,by which magnetic ring feeding,copper wire feeding,magnetic ring winding,copper wire breaking,finished product blanking and unqualified copper wire blanking could be realized.SolidWorks software was used to carry out three-dimensional modeling and virtual assembly of each part.Then,the kinematics algorithm of SolidWorks Motion plug-in was used to analyze the key parts of the winding machine,such as the conical wheel mounting seat,magnetic ring push rod feeding and copper wire breaking.The results show that the acceleration of each part changes linearly,and there is no sudden change in displacement and speed.The motion curve of the mechanism has no significant change.The overall mechanism is stable in the operation process,and the design is reasonable,which meets the needs of the factory for the automatic winding machine.

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赵苾通,王佳,何庆中,李科宏,赖镜安,左超.全自动绕线机机械设计与运动学分析[J].机床与液压,2022,50(15):105-110.
ZHAO Bitong, WANG Jia, HE Qingzhong, LI Kehong, LAI Jingan, ZUO Chao. Mechanical Design and Kinematics Analysis of Automatic Winding Machine[J]. Machine Tool & Hydraulics,2022,50(15):105-110

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  • 在线发布日期: 2023-01-17
  • 出版日期: 2022-08-15