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Analysis on the Influence of Vibration Performance of Air-Gap of Ceramic motorized Spindle

机译:陶瓷机动主轴空气间隙振动性能影响分析

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Engineering ceramic is the ideal material for high-speed and high precision motorized spindle due to perfect characteristics of light weight, wear resistance, high temperature, high strength, and so on. The air-gap is changed due to the influence from various factors not only the tolerance of the manufacture and assembly of motorized spindle but also different working condition. The change of air-gap impacts on vibration performance of motorized spindle. The effects of rotating speed and air-gap between the rotator and stator on these characteristic parameters of the motorized spindle are analyzed. This paper analyses the effect change of air-gap on vibration performance of motorized spindle by the simulation analysis and experimental. The results show that vibration increase with the decrease of air-gap. Meanwhile, electromagnetic vibration increase with the increase of eccentricity of motorized spindle. These results are very helpful to the structure optimization and application of the ceramic motorized spindle.
机译:工程陶瓷是高速和高精度电动主轴的理想材料,由于轻质,耐磨性,高温,高强度等的完美特性,等等。由于各种因素的影响不仅是电动主轴的制造和组装而且不同的工作条件的影响而改变了气隙。气隙影响对电动主轴振动性能的影响。分析了旋转速度和旋转器与定子之间的空气间隙对电动主轴的这些特征参数之间的影响。本文分析了模拟分析和实验性的电动主轴振动性能的影响。结果表明,随着空气间隙的降低,振动增加。同时,随着电动主轴的偏心率的增加,电磁振动增加。这些结果对陶瓷机动主轴的结构优化和应用非常有利。

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