文章摘要
成楷,钟飞,杨小俊,周宏娣.异形易碎小型固性物料的转运料装置构型设计与特性试验研究[J].包装工程,2023,44(23):156-163.
CHENG Kai,ZHONG Fei,YANG Xiao-jun,ZHOU Hong-di.Structure Design and Characteristic Test of Transfer Device for Small Special-shaped Fragile Solid Materials[J].Packaging Engineering,2023,44(23):156-163.
异形易碎小型固性物料的转运料装置构型设计与特性试验研究
Structure Design and Characteristic Test of Transfer Device for Small Special-shaped Fragile Solid Materials
投稿时间:2023-03-07  
DOI:10.19554/j.cnki.1001-3563.2023.23.019
中文关键词: 转运料装置  物料添加  Workbench  瞬态动力学
英文关键词: transfer device  material addition  Workbench  transient dynamics
基金项目:国家自然科学基金(52005168);湖北工业大学高层次人才基金项目(BSQD2020010);现代制造质量工程湖北省重点实验室开放基金项目(KFJJ-2021012)
作者单位
成楷 湖北工业大学 机械工程学院武汉 430068 
钟飞 湖北工业大学 机械工程学院武汉 430068 
杨小俊 湖北工业大学 机械工程学院武汉 430068 
周宏娣 湖北工业大学 机械工程学院武汉 430068 
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中文摘要:
      目的 针对一种易碎异形小型固性物料的添加需求,开发一种物料转运料装置。方法 采用瞬态动力学仿真分析方法,运用ANSYS WorkBench软件对小型固性物料受到冲击碰撞进行瞬态动力学仿真分析,研究其可承受的最大转速。通过搭建平台进行实物转运料试验,验证该装置的可靠性和稳定性,得到为达到生产效益最大化的最优转速。结果 仿真结果表明该物料最大承受转速为1 200 r/min,否则物料失效。结论 根据转运物料试验表明该装置结构设计合理,可满足在高速连续状态下转运料的工作要求,且在600 r/min时物料完好数最多,生产效率最高。
英文摘要:
      The work aims to develop a transfer device to meet the addition requirements of small special-shaped fragile solid materials. Transient dynamics simulation and analysis method was adopted to carry out transient dynamics simulation and analysis on small solid materials subject to impact and collision with ANSYS WorkBench software and to study the maximum rotational speed that the materials could withstand. The reliability and stability of the device were verified by setting up a platform for the physical transfer test, and the optimal rotational speed was obtained to improve the production efficiency. According to the simulation results, the maximum rotational speed that the materials could withstand was 1 200 r/min, otherwise the materials failed. According to the test of transferring materials, the structure design of the device is reasonable, which can meet the working requirements of transferring materials in the continuous high-speed state, and achieve the maximum quantity of intact materials and the highest production efficiency at 600 r/min.
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