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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Analysis of static and dynamic performance characteristics of THD journal bearing operating under lubricants containing nanoparticles
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Analysis of static and dynamic performance characteristics of THD journal bearing operating under lubricants containing nanoparticles

机译:THD滑动轴承在含纳米颗粒润滑剂下的静态和动态性能特征分析

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In this paper, the static and dynamic performance characteristics of journal bearing in terms of load capacity, attitude angle, end leakage, frictional force, threshold speed and damped frequency are presented when the bearing operating under lubricants, which contain nanoparticles and viscosity of these lubricants varies with temperature. The nanoparticles used for the present work are copper oxide (CuO), cerium oxide (CeO2) and aluminum oxide (Al2O3). Viscosity models for the lubricants are developed with the available experimental data. The modified Reynolds and energy equations are used to obtain pressure and temperature distribution across the lubricant film and these equations are solved by using the finiteelement method and a direct iteration scheme. The static and dynamic performance characteristics of journal bearing are computed for various values of eccentricity ratios for isoviscous and thermoviscous lubricants. The computed results show that in isoviscous case, addition of nanoparticles does not change performance characteristics considerably but in thermoviscous case, changes are significant.
机译:本文介绍了轴承在润滑条件下工作时轴承的静态和动态性能,包括负载能力,姿态角,端部泄漏,摩擦力,阈值速度和阻尼频率,其中包含纳米颗粒和这些润滑剂的粘度随温度变化。用于本工作的纳米粒子是氧化铜(CuO),氧化铈(CeO2 )和氧化铝(Al2 O3 )。使用现有的实验数据开发了润滑剂的粘度模型。修改后的雷诺方程和能量方程用于获得润滑膜上的压力和温度分布,这些方程通过使用有限元法和直接迭代方案进行求解。针对等粘度和热粘性润滑剂的偏心率的各种值,计算出轴颈轴承的静态和动态性能特征。计算结果表明,在等粘度情况下,添加纳米颗粒不会显着改变性能特征,但在热粘性情况下,变化会很大。

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