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Study on dynamic characteristics of eccentric motorized spindle

机译:偏心电动主轴动态特性研究

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In order to explore the dynamic behavior and motion law of motorized spindle under eccentric condition, a dynamic model of motorized spindle considering unbalanced magnetic pull under eccentric condition is established. The effect of gyroscopic moment is considered. The model is established by Lagrange method, and the model is simulated and analyzed. The law of rotor response change under different speed, unbalance and air gap changes is obtained. The simulation results show that the static eccentricity will increase the vibration of the motorized spindle. Under the same static eccentricity and mass eccentricity, the influence of static eccentricity on rotor decreases with the increase of rotating speed. Mass eccentricity is called the main influencing factor. In frequency domain analysis, when the static eccentricity occurs, the peak appears at 0Hz, which is the effect of unbalanced magnetic tension on vibration. With the increase of rotating speed, the frequency size of the peak value of fundamental frequency will also increase. The research results provide a theoretical basis for the in-depth analysis of the failure mechanism of rotating machinery.
机译:为了在偏心条件下探讨电动主轴的动态行为和运动规律,建立了考虑偏心条件下的不平衡磁拉的电动主轴动态模型。考虑了陀螺仪的效果。该模型由Lagrange方法建立,模拟和分析模型。获得不同速度,不平衡和空气间隙变化的转子响应变化规律。仿真结果表明,静态偏心率将增加电动主轴的振动。在相同的静态偏心和质量偏心率下,随着旋转速度的增加,转子对转子的影响降低。质量偏心率被称为主要影响因素。在频域分析中,当发生静电偏心时,峰值出现在0Hz时,这是不平衡磁力张力对振动的影响。随着旋转速度的增加,基频峰值的频率尺寸也将增加。研究结果为旋转机械故障机理进行了深入分析的理论依据。

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