磨床电主轴振动活性研究

Erik S Gasparov, L. Gasparova, G. Markosyan
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引用次数: 2

摘要

这项工作的目的是支持在磨床主轴单元的动态特性。为此,通过电主轴旋转频率的线性增加,获取和分析振动加速度信号,从而确定预紧力的可能性,来确定主轴单元振动活度中各成分的来源,存在着有待解决的问题。采用频谱分析方法对振动加速度信号进行了研究。科学研究的新颖之处在于,通过对启动时主轴旋转频率线性增加时的振动加速度信号进行频谱分析,确定预紧力的可能性得到了证实。它反过来又提供了在切削开始前自动估计主轴单元状态的可能性。通过实验得到了不同预紧力下振动加速度信号的时域实现。以高速磨削电机主轴为基本部件,通过运行中检测诊断的方法对其进行了研究。长凳的设计做了一些改动。工作台补充了必要的系统,以支持电机主轴的全面运作,特别是:润滑系统,冷却和驱动控制。显示出大量倍于50 Hz的谐波,说明与电源电路的频率有关。它们与主轴单元自身频率的重合导致它们的振幅显著增加。为了提高动态质量,应避免开关频率和电路谐波与电主轴自身频率重合的情况。为了减小驱动电磁场对主轴单元动态特性的影响,还需要引入一种纯谐波振荡形式的电源电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VIBRATORY ACTIVITY INVESTIGATION OF GRINDING MACHINE ELECTRIC SPINDLES
The purpose of this work is to support dynamic properties of spindle units in grinding machines. For this there are problems under solution for the definition of the origin of the constituents in the spindle unit vibratory activity by means of the linear increase of electric spindle rotation frequency, obtaining and analyzing a vibratory acceleration signal for the possibility to determine a preload. The vibratory acceleration signal was investigated through a spectrum analysis method. A scientific novelty of investigation consists in the substantiation of possibility to determine a preload by means of the spectrum analysis of a vibration acceleration signal at the linear increase of spindle rotation frequency that is at starting. It gives, in its turn, a possibility for the automated estimate of the spindle unit state before cutting beginning. In the experimental way there are obtained temporal realizations of the vibratory acceleration signal at different efforts of the preload. A high-speed grinding motor-spindle is as a basic element of the bench, which was investigated through the methods of testing diagnostics in the operation. In the bench design there were made some alterations. The bench was supplemented with the systems essential to support motor-spindle full operation, in particular: with systems of lubrication, cooling and drive control. There was revealed a large number of harmonics multiple to 50 Hz, which tells of the connection with the frequency of power supply circuit. Their coincidence with the own frequencies of the spindle unit results in the considerable increase of their amplitudes. To increase dynamic quality one should avoid the cases of the coincidence of switching frequencies and circuit harmonics with own frequencies of the electric spindle. It is also necessary to bring a form of power voltage to a pure harmonic oscillation to decrease the impact of a drive electromagnetic field upon dynamic characteristics of the spindle unit.
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