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  • 标题:The optimization of accuracy and efficiency for multistage precision grinding process with an improved particle swarm optimization algorithm
  • 本地全文:下载
  • 作者:Zhanying Chen ; Xuekun Li ; Zongyu Zhu
  • 期刊名称:International Journal of Advanced Robotic Systems
  • 印刷版ISSN:1729-8806
  • 电子版ISSN:1729-8814
  • 出版年度:2020
  • 卷号:17
  • 期号:1
  • 页码:1-13
  • DOI:10.1177/1729881419893508
  • 出版社:SAGE Publications
  • 摘要:For metal rolling, the quality of final rolled productions (for instance, metal sheets and metal foils) is affected by steel roll’s cylindricity. In roll grinding process, grinding parameters, which typically involve multiple substages, determine the steel roll’s quality and the grinding efficiency. In this article, a modified particle swarm optimization was presented to dispose of roll grinding multi-objective optimization. The minimization of steel roll’s cylindrical error and maximization of grinding efficiency were optimization objectives. To build the correlation between grinding parameters and cylindrical error, the response surface model of cylindrical error was regressed from the operation data of machine tool. The improved particle swarm optimization was employed to the roll grinding parameter optimization, and the optimal compromise solutions between grinding efficiency and cylindrical error were obtained. Based on the optimal compromise solutions, engineers or computer were capable to determine the corresponding most efficient roll grinding parameters according to the requirement of the final cylindrical error specification. To validate the efficacy of the improved particle swarm optimization, the validation experiment was carried out on the practical roll grinding operation. The error between the calculated optimized cylindrical error and experimental cylindrical error is less than 7.73%.
  • 关键词:Multistage roll grinding; improved PSO; cylindrical error; grinding efficiency; intelligent manufacturing
  • 其他关键词:Multistage roll grinding ; improved PSO ; cylindrical error ; grinding efficiency ; intelligent manufacturing
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