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Linear stability of short journal bearings with consideration of flow rheology and surface roughness

机译:考虑流动流变性和表面粗糙度的短轴颈轴承的线性稳定性

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摘要

The combined effects of surface roughness and flow rheology on the linear stability of a rigid rotor supported on short-length journal bearings are analyzed. The modified Reynolds equation and the rotor motion equation are linearized about the equilibrium position and the fluid film is modeled as spring and damping elements. From the characteristic equation, the instability threshold is then obtained with various surface roughness parameters (standard derivation, σ and Pekienik number, γ), flow rheology (powerlaw index, n) and eccentricity ratios (ε). The results show that the size of the stability regions of different roughness patterns has the following characteristics: longitudinal (γ>1)>isotropic (γ=1)>smooth>transverse (γ<1). The stability of the bearing system deteriorates with decreasing power-law index. Moreover, there are crossing points in the vicinity of ε=0.45 among the curves of dimensionless speed parameter (Ω) associated with various power-law indices and surface roughness parameters.
机译:分析了表面粗糙度和流变性对短轴颈轴承上刚性转子线性稳定性的综合影响。修改后的雷诺方程和转子运动方程围绕平衡位置线性化,并且将流体膜建模为弹簧和阻尼元件。然后,根据特性方程式,使用各种表面粗糙度参数(标准导数,σ和Pekienik数γ),流变特性(幂律指数,n)和偏心率(ε),获得不稳定性阈值。结果表明,不同粗糙度图案的稳定区域的尺寸具有以下特征:纵向(γ> 1)>各向同性(γ= 1)>光滑>横向(γ<1)。轴承系统的稳定性随着幂律指数的降低而降低。而且,在与各种幂律指数和表面粗糙度参数相关的无量纲速度参数(Ω)的曲线中,在ε= 0.45附近存在交叉点。

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