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高速主轴在线动平衡机构驱动器设计

伍良生, 贺江波, 张云禧, 李智慧

伍良生, 贺江波, 张云禧, 李智慧. 高速主轴在线动平衡机构驱动器设计[J]. 北京工业大学学报, 2007, 33(12): 1233-1238.
引用本文: 伍良生, 贺江波, 张云禧, 李智慧. 高速主轴在线动平衡机构驱动器设计[J]. 北京工业大学学报, 2007, 33(12): 1233-1238.
WU Liang-sheng, HE Jiang-bo, ZHANG Yun-xi, LI Zhi-hui. Design of High-speed Spindle Dynamic Balancing Device's Drive[J]. Journal of Beijing University of Technology, 2007, 33(12): 1233-1238.
Citation: WU Liang-sheng, HE Jiang-bo, ZHANG Yun-xi, LI Zhi-hui. Design of High-speed Spindle Dynamic Balancing Device's Drive[J]. Journal of Beijing University of Technology, 2007, 33(12): 1233-1238.

高速主轴在线动平衡机构驱动器设计

基金项目: 

国家自然科学基金资助项目(50375002)

北京市自然科学基金资助项目(3022003).

详细信息
    作者简介:

    伍良生(1949-),男,江西南昌人,教授.

  • 中图分类号: TP29

Design of High-speed Spindle Dynamic Balancing Device's Drive

  • 摘要: 通过分析高速主轴电磁式在线动平衡机构的工作原理,根据关键零件调整环和离合滑块在在线动平衡过程中的动作顺序。利用单片机AT89C51和环形分配器PMM8713设计出对其执行动作的驱动电路,实现对在线的动平衡机构的实时控制,从而保证其正常运行,确保零件加工质量.
    Abstract: This paper analyzes the principle of electromagnetic dynamic balancing device of high-speed spindle. According to the equilibrator and clutch working sequence,the drive to activate the balancing device was de- signed,based on AT89C51 and PMM8713,to control the electromagnetic dynamic balancing device in real time.Designing the system can ensure dynamic balancing device work well and improve the quality of ma- chined part in the machining process.
  • [1] 汪希萱,曾胜.电磁式在线自动平衡系统及其动平衡方法研究[J].热能动力工程,2003,103(18):53-57.WANG Xi-xuan,ZENG Sheng.The study of an on-line automatic dynamic balancing system and its dynamic balancing method when used on a flexible rotor[J].Journal of Engineering for Thermal Energy & Power,2003,103(18):53-57.(in Chinese)
    [2] 毛玉蓉,翁惠辉,刘钢.一种基于单片微机的步进电机控制系统[J].电气传动,2003(6):32-34.MAOYu-rong,WENG Hui-hui,LIU Gang.A stepping motor control system based on microcomputer[J].Electricity Drive,2003(6):32-34.(in Chinese)
    [3] 陶利民,葛哲学,温熙森.刚性转子自动平衡控制策略[J].机械科学与技术,2004.23(2):140-146.TAO Li-min,GE Zhe-xue,WEN Xi-sen.A control method for automatic balancing of rigid rotors[J].Mechanical Science and Technology,2004,23(2):140-146.(in Chinese)
    [4] 伍良生.高速磨削中的快速现场动平衡技术[J].金刚石与磨料磨具工程,2004,140(2):10-13.WU Liang-sheng.Quick fidd balancing technique in high speed grinding[J].Diamond & Abrasives Engineering,2004,140 (2):10-13.(in Chinese)
    [5] 唐诗,苗汇静.单片机控制系统中步进电机接口电路的设计[J].山东工程学院学报,2002,16(2):64-67.TANG Shi,MIAO Hui-jing.Interface circuit design for step motor in SCM control system[J].Journal of Shandong Institute of Technology,2002,16(2):64-67.(in Chinese)
    [6] 李碧鹏,翁惠辉.基于PMM8713脉冲分配器的步进电机控制系统设计[J].江汉石油学报,2003,25(4):128-129.LI Bi-peng,WONG Hui-hui.Design of a motor control system based on PWM8713 pulse distributing controller[J].Journal of Jianghan Petroleum Institute,2003.25(4):128-129.(in Chinese)
    [7] 蔡志健,丁爱萍.小功率步进电机控制器的设计[J].上海师范大学学报(自然科学版),2005,34(4):42-46.CAI Zhi-jian,DING Ai-ping.The design of a controller for small power step electrical motors[J].Journal of Shanghai Nor- real University(National Sciences),2005,34(4):42-46.(in Chinese)
    [8] 张金波,辛字,曹爱华.一种实用的三相步进电机驱动器的设计[J].工矿自动化。2006(3):80-82.ZHANG Jin-bo,XIN Yu,CAO Ai-hua.The design of driver for step motors[J].Industry and Mine Automation,2006(3): 80-82.(in Chinese)
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  • 被引次数: 0
出版历程
  • 收稿日期:  2006-11-08
  • 网络出版日期:  2022-12-29

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