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快递包装夹持装置的设计与研究
引用本文:李丰延,成铭,王瑞,毕天滋,郭聪,隋明君. 快递包装夹持装置的设计与研究[J]. 包装工程, 2018, 39(13): 123-128
作者姓名:李丰延  成铭  王瑞  毕天滋  郭聪  隋明君
作者单位:广西大学机械工程学院,南宁,530004;广西大学机械工程学院,南宁,530004;广西大学机械工程学院,南宁,530004;广西大学机械工程学院,南宁,530004;广西大学机械工程学院,南宁,530004;广西大学机械工程学院,南宁,530004
基金项目:广西大学国家级大学生创新创业训练计划(201710593014)
摘    要:目的设计一种快递包装夹持装置,以实现机器辅助快递包装的功能。方法分析快递包装的现状,研究与快递包装夹持装置相应的工艺流程,设计出一种能起到夹持、升降与旋转快递复合功能的装置。推导并建立装置的运动和力学模型,确定关键参数,通过Adams与Matlab进行仿真实验,最后研制实物并试验。结果快递包装夹持装置运动轨迹与速度符合要求,包装速度大约为16 s左右,缩短了63.3%的工作时间,包装成功率为95.1%左右,包装连续率在96.0%以上。结论通过设计的快递包装夹持装置,即可实现快递的夹持、升降与旋转功能,性能稳定且高效。

关 键 词:快递包装  设计  夹持升降  运动与力学模型  仿真实验
收稿时间:2017-12-03
修稿时间:2018-07-10

Design and Research of Express Package Clamping Device
LI Feng-yan,CHENG Ming,WANG Rui,BI Tian-zi,GUO Cong and SUI Ming-jun. Design and Research of Express Package Clamping Device[J]. Packaging Engineering, 2018, 39(13): 123-128
Authors:LI Feng-yan  CHENG Ming  WANG Rui  BI Tian-zi  GUO Cong  SUI Ming-jun
Affiliation:School of Mechanical Engineering, Guangxi University, Nanning 530004, China,School of Mechanical Engineering, Guangxi University, Nanning 530004, China,School of Mechanical Engineering, Guangxi University, Nanning 530004, China,School of Mechanical Engineering, Guangxi University, Nanning 530004, China,School of Mechanical Engineering, Guangxi University, Nanning 530004, China and School of Mechanical Engineering, Guangxi University, Nanning 530004, China
Abstract:The work aims to design an express package clamping device to achieve the function of machine-assisted express packaging. After analyzing the current status of express package, the corresponding process of express package clamping device was researched, and a device with complex functions of clamping, lifting and rotating was designed. After movement and mechanics model of the device was deduced and established, the key parameters were determined. The simulation experiment was carried out by Adams and Matlab, and finally the physical object was developed and tested. Motion trajectory and speed of express package clamping device met the requirements. The packaging speed was about 16 s, shortening 63.3% of the working time. The packaging success rate was around 95.1% and the package continuous rate was over 96.0%. Through the design of express package clamping device, the clamping, lifting and rotating functions of the express can be achieved, with stable and efficient performances.
Keywords:express packaging   design   clamping and lifting   movement and mechanics model   simulation experiment
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