首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Study on the influence of critical shear stress on wall slip of spiral oil wedge journal bearing
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Study on the influence of critical shear stress on wall slip of spiral oil wedge journal bearing

机译:临界剪应力对螺旋油楔轴颈轴承壁滑的影响研究

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摘要

With the application of sleeve bearing in high speed, super-high speed and narrow-gap conditions, and the emergence of non-metallic bearing materials, the conventional no-slip boundary condition can be broken down. Critical shear stress is a main parameter in the numerical computation of wall slip. The four modified Reynolds equations for the two-dimensional spiral oil wedge sleeve bearing is established based on the critical shear stress model, in which the circumferential and axial wall slip of the sleeve and axial surface are considered. The shear stress angle is used to compute the circumferential and axial shear stress component and slip velocity. The results show the special structure of spiral oil wedge and the increase of eccentricity ratio make slip more difficult to occur. With the decrease of initial limiting shear stress, pressure, carrying capacity and friction drag decrease. Wall slip has an effect on the oil film rupture position, positive pressure area, and pressure peak. Wall slip occurs first in the large shear stress, the small clearance, and the envelop zone. The slip position and area influence each other in the sleeve and axial surface.
机译:随着套筒轴承在高速,超高速和窄间隙条件下的应用,以及非金属轴承材料的出现,可以打破传统的防滑边界条件。临界剪应力是墙滑移数值计算的主要参数。基于临界剪应力模型,建立了二维螺旋油楔衬套轴承的四个修正的雷诺方程,其中考虑了衬套的周向和轴向壁滑移以及轴向表面。剪应力角用于计算周向和轴向剪应力分量和滑移速度。结果表明,螺旋油楔的特殊结构和偏心率的增加使得滑动更加难以发生。随着初始极限剪应力的减小,压力,承载能力和摩擦阻力减小。壁滑对油膜破裂位置,正压区和压力峰值有影响。壁滑首先发生在较大的剪应力,较小的间隙和包络区域。滑动位置和面积在套筒和轴向表面上相互影响。

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