4.7 Article

Dynamics of 5-DOF aerostatic spindle with time-varying coefficients of air bearing

Journal

MECHANICAL SYSTEMS AND SIGNAL PROCESSING
Volume 172, Issue -, Pages -

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ymssp.2022.109005

Keywords

Aerostatic bearing spindle; Time-varying coefficients; Spindle system balancing; Dynamics analysis; Air-bearing design

Funding

  1. National Natural Science Foundation of China [51922084, 11772244]
  2. NSERC - Discovery Funds [RGPIN-2018-04911]
  3. China Scholarship Council

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This paper presents a time-varying dynamic model of an aerostatic spindle and demonstrates the significance of dynamic coefficient variations on spindle dynamics through experiments. The findings provide guidance for the structure design and process planning of aerostatic spindles to improve dynamic performance in precision manufacturing processes.
Aerostatic bearing spindle has been widely used in precision machining processes. This paper presents a time-varying dynamic model of aerostatic spindle due to the change of air film thickness under periodic excitation forces. The effects of the magnitude and frequency of the forces on the dynamic coefficients of air bearing and cutting tool deflection are determined quantitatively. The dynamic properties in both translational and rotational directions are considered. The predicted tool vibration with and without considering the time-varying dynamics are compared. Experiments are conducted to measure the cutting tool displacements under sta-tionary and rotational conditions. It is concluded that the variation of the dynamic coefficients plays a significant role in the spindle dynamics when the force magnitude increases beyond a critical value. The effect of unbalance mass on the spindle vibration is investigated based on the proposed model. The results provide guidance in the structure design for the aerostatic spindle and the process planning to improve the dynamic performance of the precision manufacturing process.

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