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首页> 外文期刊>Advances in Mechanical Engineering >A prediction model of the surface topography due to the unbalance of the spindle system in ultra-precision fly-cutting machining:
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A prediction model of the surface topography due to the unbalance of the spindle system in ultra-precision fly-cutting machining:

机译:超精密飞切加工中主轴系统不平衡导致的表面形貌预测模型:

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摘要

In ultra-precision fly-cutting machining, the aerostatic spindle is the key component, which has significant influence on the machined surface quality. The unbalanced spindle directly affects the machining accuracy. In this article, a prediction model of machining surface topography is proposed which involves the effect of the gas film performance of spindle in microscale. With the Weierstrass function, unstable transient response of the aerostatic spindle system is derived by the motion model of the spindle, which response signal represents the surface profile in the ultra-precision machining. Meanwhile, the experiment is performed with different rotation speed of the spindle. And the effect of the unbalanced aerostatic spindle on the surface generation is discussed in time and frequency domain. The conclusion shows that the similar cyclical surface ripple of the workpiece is independent of the spindle speed, and the rotation speed of the spindle and unbalanced spindle directly affects the machining surf...
机译:在超精密飞切加工中,空气静力主轴是关键部件,它对加工表面质量有重大影响。主轴不平衡直接影响加工精度。在本文中,提出了一种加工表面形貌的预测模型,该模型涉及微尺度下主轴气膜性能的影响。使用Weierstrass函数,通过主轴的运动模型可以得出静压主轴系统的不稳定瞬态响应,该响应信号表示超精密加工中的表面轮廓。同时,以不同的主轴转速进行实验。并在时域和频域上讨论了不平衡静压主轴对表面生成的影响。结论表明,工件类似的周期性表面波纹与主轴转速无关,主轴和不平衡主轴的转速直接影响加工速度。

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