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A Corrected Adaptive Balancing Approach of Motorized Spindle Considering Air Gap Unbalance

机译:考虑气隙不平衡的机动主轴校正的适应性平衡方法

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Motorized spindles widely used for high-speed precision machine tools are very sensitive to the mass unbalance of rotors; thus, their balancing problem is always a research hotspot. Although many significant studies were done regarding the theory and application of various rotor balancing technologies for motorized spindles, the particularity of motorized spindles is not carefully considered in the existing balancing approaches. When the rotor unbalance of a motorized spindle occurs in operation, it is subject to both the mass unbalance-induced inertia force and air gap unbalance-induced electromagnetic force, which is an important feature that distinguishes the motorized spindle from a mechanical spindle. This paper describes an investigation into the corrected adaptive balancing approach of a motorized spindle by newly introducing a coefficient representing the removing effect of the air gap unbalance of the motor on the balancing capacity into the balancing formula. The determination of the newly defined coefficient refers to the calculation of electromagnetic force caused by the dynamic air gap eccentricity of motor; thus, much attention is paid to the analytical derivation of the unbalanced magnetic pull (UMP). Finally, a motorized spindle with an electromagnetic ring balancer was developed; then, the balancing tests and vibration signal analysis were done to validate the effectiveness of the newly proposed balancing approach in residual vibration reduction. It can be seen from the test results under different cases that the proposed balancing approach is effective.
机译:广泛用于高速精密机床的机动主轴对转子的质量不平衡非常敏感;因此,他们的平衡问题始终是研究热点。虽然对电动主轴的各种转子平衡技术的理论和应用进行了许多重大研究,但在现有的平衡方法中不仔细考虑电动轴的特殊性。当在操作中发生电动主轴的转子不平衡时,它受到质量不平衡诱导的惯性力和气隙不平衡诱导的电磁力,这是将电动主轴与机械主轴区分开的重要特征。本文通过新引入了表示电动机的空气间隙不平衡的矫正效果,其对平衡公式的平衡容量的去除效果来研究电动主轴的校正自适应平衡方法的研究。新定义系数的确定是指由电动机的动态气隙偏心引起的电磁力计算;因此,对不平衡磁拉(UMP)的分析推导来支付许多关注。最后,开发了具有电磁环平衡器的电动主轴;然后,进行平衡测试和振动信号分析以验证新提出的平衡方法在剩余振动减振中的有效性。从测试结果可以看出,在不同的情况下,所提出的平衡方法是有效的。

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