• CN:11-2187/TH
  • ISSN:0577-6686

›› 2006, Vol. 42 ›› Issue (10): 209-214.

• 论文 • 上一篇    下一篇

扫码分享

应用瞬心法的动平衡测量虚拟振动系统

秦鹏;蔡萍;胡庆翰;徐锡林   

  1. 上海交通大学仪器科学与工程系
  • 发布日期:2006-10-15

VIRTUAL VIBRATION SYSTEM FOR DYNAMIC BALANCING MEASUREMENT BY INSTANTANEOUS MOTION CENTER

QIN Peng;CAI Ping;HU Qinghan;XU Xilin   

  1. Department of Instrument Science and Engineering, Shanghai Jiaotong University
  • Published:2006-10-15

摘要: 根据瞬时运动中心的概念,提出一种全新的动平衡测量虚拟振动系统。深入分析该系统的结构特点和不平衡响应特点,阐明实际测量系统和虚拟测量系统之间的关系。说明该系统采用柔性铰链连接的一体化板簧机构具有固定的振动中心,高且稳定的平面分离度。同时将压电传感器安装在同一测量平面内,克服了温度、湿度和噪声等环境因素变化时,各个传感器性能变化对系统测量精度的影响,也降低了系统相位误差对于一次不平衡量降低率的影响。试验表明该振动系统可以实现高精度动平衡测量。

关键词: 动平衡, 平面分离, 瞬心, 压电传感器, 振动系统, 协调方程 曲线尖角 临界曲率 S曲线加减速

Abstract: Based on the conception of instantaneous motion center, a new virtual vibration system for dynamic balancing measurement is proposed. The structural features and the unbalancing response characteristics of this vibration system are analyzed in depth. The relation between the real measuring system and the virtual one is expounded. Theoretical analysis indicates that the flexibly hinged integrative spring sets holds the fixed vibration center and the excellent effect of plane separate. The sensors are mounted in the same measuring plane so as that the influence of the phase error on the unbalance reduction ratio is eliminated. Furthermore, the performance changes in sensors caused by environmental factor have less influence on the accuracy of the measurement. The result for this system is more accurate measurement with lower requirement for a second correction run. The experiment results validate the effectiveness of this vibratory system for high precision dynamic balancing measurement.

Key words: Dynamic balancing, Instantaneous motion center, Piezoelectric sensor, Plane separate, Vibration system, Coordination equation Curve corner Critical curvature S curve acceleration/deceleration

中图分类号: