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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Mathematical Model and Analysis of the Water-Lubricated Hydrostatic Journal Bearings considering the Translational and Tilting Motions
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Mathematical Model and Analysis of the Water-Lubricated Hydrostatic Journal Bearings considering the Translational and Tilting Motions

机译:考虑平移和倾斜运动的水润滑静压滑动轴承的数学模型和分析

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The water-lubricated bearings have been paid attention for their advantages to reduce the power loss and temperature rise and increase load capacity at high speed. To fully study the complete dynamic coefficients of two water-lubricated, hydrostatic journal bearings used to support a rigid rotor, a four-degree-of-freedom model considering the translational and tilting motion is presented. The effects of tilting ratio, rotary speed, and eccentricity ratio on the static and dynamic performances of the bearings are investigated. The bulk turbulent Reynolds equation is adopted. The finite difference method and a linear perturbation method are used to calculate the zeroth- and first-order pressure fields to obtain the static and dynamic coefficients. The results suggest that when the tilting ratio is smaller than 0.4 or the eccentricity ratio is smaller than 0.1, the static and dynamic characteristics are relatively insensitive to the tilting and eccentricity ratios; however, for larger tilting or eccentricity ratios, the tilting and eccentric effects should be fully considered. Meanwhile, the rotary speed significantly affects the performance of the hydrostatic, water-lubricated bearings.
机译:水润滑轴承以其减少功率损耗和温度升高以及增加高速负载能力的优势而受到关注。为了充分研究用于支撑刚性转子的两个水润滑静液压轴颈轴承的完整动态系数,提出了一种考虑平移和倾斜运动的四自由度模型。研究了倾斜比,转速和偏心率对轴承静态和动态性能的影响。采用了整体湍流雷诺方程。用有限差分法和线性摄动法计算零阶和一阶压力场,以获得静,动态系数。结果表明,当倾斜比小于0.4或偏心率小于0.1时,静态和动态特性对倾斜比和偏心率相对不敏感。但是,对于较大的倾斜或偏心比,应充分考虑倾斜和偏心的影响。同时,旋转速度显着影响静液压,水润滑轴承的性能。

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