Numerical Simulation and Experimental Study of the Hydrostatic Spindle with Orifice Restrictors

He Qiang, L. Lili, Ren Fengzhang, A. Alex
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引用次数: 2

Abstract

Based on the theory of hydrostatic bearings, this paper presents a study of replacing the rolling bearings in a cold drawing spindle with the liquid hydrostatic bearings. An unloading mechanism is designed, containing two hydrostatic radial bearings and a thrust bearing, according to the mechanical characteristics of the spindle. In this study, a mathematical model of the hydrostatic bearing oil pad is developed. The effects of the rotating speed on pressure and flow fields of the oil pad are simulated using the finite element analysis and verified experimentally. The pressure in all recesses decreases with the rotation speed. Oil velocity of the radial hydrostatic bearing recess increases with the rotation speed, while the fluid flow velocity has almost no correlation with the rotation speed of the thrust bearing. The numerical and experimental results of the pressure in the recesses are consistent, confirming the validity and feasibility of this design.
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节流孔静压主轴的数值模拟与实验研究
本文以静压轴承理论为基础,研究了用液体静压轴承代替冷拔主轴中的滚动轴承。根据主轴的机械特性,设计了包含两个静压径向轴承和一个推力轴承的卸荷机构。本文建立了静压轴承油垫的数学模型。采用有限元方法模拟了转速对油垫压力场和流场的影响,并进行了实验验证。各凹槽内的压力随转速的增加而减小。径向静压轴承隐窝油速随转速增大而增大,而流体流速与推力轴承转速几乎不相关。槽内压力的数值计算结果与实验结果一致,证实了该设计的有效性和可行性。
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