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Static characteristics analysis of spherical hybrid sliding bearings

机译:球形混合滑动轴承的静态特性分析

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Purpose The spherical hybrid sliding bearings (SHSBs) can be used in ultra-precision and heavy-duty machine tools. However, there is little related research for these bearings. The purpose of this study is to investigate the static characteristics and effect factors affecting SHSBs by fluid lubrication. Design/methodology/approach Based on the theories of fluid lubrication, the Reynolds equation of general Newtonian fluid is derived to obtain the steady-state lubrication equation. The system is solved by the finite difference method and the relaxation iterative method on the staggered grid to obtain the thickness and the pressure distribution of the oil film. The radial and axial load capacities of SHSBs are determined by the pressure field integration over the spherical surface. Findings The results show that the parameters such as oil supply pressure, bearing clearance, eccentricity ratio, rotating speed and orifices' number affecting the static characteristics of bearings are significant and the cross-coupling effect exists. Originality/value The lubrication model of SHSB is established to analyze the pressure distribution with a variety of oil film thickness. The laws of oil supply pressure, bearing clearance, eccentricity ratio, rotating speed and orifices' number on the load capacities are researched.
机译:目的,球形混合滑动轴承(SHSB)可用于超精密和重型机床。然而,这些轴承几乎没有相关的研究。本研究的目的是探讨通过流体润滑影响SHSB的静态特征和影响因素。基于流体润滑理论的设计/方法/方法,导出了一般牛顿流体的雷诺方程,以获得稳态润滑方程。该系统通过有限差分法和交错网格上的弛豫迭代方法解决,以获得油膜的厚度和压力分布。 SHSB的径向和轴向承载能力由球面上的压力场一体化决定。结果表明,影响轴承静态特性的供油压力,轴承间隙,偏心率,旋转速度和孔口数量的参数显着,存在交叉耦合效果。创意/值SHSB的润滑模型建立为分析各种油膜厚度的压力分布。研究了载荷容量上的供油压力,轴承间隙,偏心率,旋转速度和孔口的规律。

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