Hi'/> Investigation the gas film in micro scale induced error on the performance of the aerostatic spindle in ultra-precision machining
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Investigation the gas film in micro scale induced error on the performance of the aerostatic spindle in ultra-precision machining

机译:在超精密加工中研究气膜的微小误差对空气静压主轴性能的影响

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HighlightsStatic and dynamic balance models of the aerostatic bearing with the micro factor are presented.Dynamic transient response of spindle system bearing with the micro factor is proposed.The spectral feature of the aerostatic spindle system bearing with the micro factor is extracted and contrasted.AbstractThe objective of this work is to study the influence of error induced by gas film in micro-scale on the static and dynamic behavior of a shaft supported by the aerostatic bearings. The static and dynamic balance models of the aerostatic bearing are presented by the calculated stiffness and damping in micro scale. The static simulation shows that the deformation of aerostatic spindle system in micro scale is decreased. For the dynamic behavior, both the stiffness and damping in axial and radial directions are increased in micro scale. The experiments of the stiffness and rotation error of the spindle show that the deflection of the shaft resulting from the calculating parameters in the micro scale is very close to the deviation of the spindle system. The frequency information in transient analysis is similar to the actual test, and they are also higher than the results from the traditional case without considering micro factor. Therefore, it can be concluded that the value considering micro factor is closer to the actual work case of the aerostatic spindle system. These can provide theoretical basis for the design and machining process of machine tools.
机译: 突出显示 介绍了带有微小因素的空气静压轴承的静态和动态平衡模型。 主轴系统轴承的动态瞬态响应 提取并对比了带有微因子的空气静力主轴系统的光谱特征。 摘要 这项工作的目的是研究微观尺度上气膜引起的误差对轴支撑的轴的静态和动态行为的影响。空气静压轴承。空气静力轴承的静态和动态平衡模型通过微尺度的刚度和阻尼来表示。静态仿真表明,静压主轴系统的微观变形减小了。对于动态行为,轴向和径向方向的刚度和阻尼都在微观尺度上增加。主轴刚度和旋转误差的实验表明,由微尺度的计算参数引起的轴的挠度非常接近主轴系统的偏差。瞬态分析中的频率信息与实际测试相似,并且也比传统情况下的结果高,没有考虑微观因素。因此,可以得出结论,考虑微因素的值更接近于空气静压主轴系统的实际工作情况。这些可以为机床的设计和加工过程提供理论依据。

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