气压液体式磨床在线自动平衡装置结构设计与性能研究

潘 鑫;吴海琦;高金吉

振动与冲击 ›› 2014, Vol. 33 ›› Issue (23) : 20-23.

PDF(1185 KB)
PDF(1185 KB)
振动与冲击 ›› 2014, Vol. 33 ›› Issue (23) : 20-23.
论文

气压液体式磨床在线自动平衡装置结构设计与性能研究

  • 潘 鑫,吴海琦, 高金吉
作者信息 +

Structural Design and Performance Analysis of Liquid-transfer Active Balancing Device by Pneumatic Means for Grinding Machines

  • Pan Xin , Wu Haiqi , Gao Jinji
Author information +
文章历史 +

摘要

砂轮不平衡是磨床振动的主要原因。为了在线调整砂轮的平衡状态,提高磨床的磨削精度,介绍一种新型的气压液体式在线自动平衡系统。该平衡系统利用压缩空气驱动平衡液在位置相对的储液腔间进行质量转移,改变平衡盘中的液体分布,进而实现砂轮平衡状态的在线调整。通过对装置平衡性能的分析,认为该类装置具有平衡速度快、平衡能力线性度好的优点。最后经过实验验证,该装置在5500r/min的转速下,将系统不平衡振动从10.2um降至0.37um,振幅下降比例达95%以上。

Abstract

Vibrations on grinding machines are primarily caused by the unbalance in the grinding wheel. A new type of liquid-transfer active balancing device is proposed to adjust the balancing state of grinding wheel and increase grinding accuracy. In the balancing system, compressed air is used for driving balancing liquid to transfer between two opposite chambers. The distribution of liquid in balancing disk is changed and the grinding wheel is balanced. Balancing performance of the device is analysed .The experiment result demonstrates that the unbalance response is reduced from 10.2um to 0.37um at 5500 r/min and the decrease in amplitude is more than 95%.

关键词

砂轮 / 磨床 / 自动平衡 / 气压液体式

Key words

grinding wheel / grinding machine / active balancing / liquid transfer

引用本文

导出引用
潘 鑫;吴海琦;高金吉. 气压液体式磨床在线自动平衡装置结构设计与性能研究[J]. 振动与冲击, 2014, 33(23): 20-23
Pan Xin;Wu Haiqi;Gao Jinji . Structural Design and Performance Analysis of Liquid-transfer Active Balancing Device by Pneumatic Means for Grinding Machines[J]. Journal of Vibration and Shock, 2014, 33(23): 20-23

PDF(1185 KB)

Accesses

Citation

Detail

段落导航
相关文章

/