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Influence of Wear on the Performance of Multirecess Hydrostatic Journal Bearing Operating With Micropolar Lubricant

机译:磨损对多极性静液压多轴颈滑动轴承性能的影响

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The objective of the present work is to study theoretically the influence of wear on the performance of four-pocket capillary-compensated hydrostatic journal bearing operating with micropolar lubricant. In the present study, the lubricant containing additives and contaminants is modeled as micropolar fluid. The modified Reynolds equation for micropolar lubricant is solved using finite element method along with capillary restrictor flow equation as a constraint together with appropriate boundary conditions. The performance characteristics of a capillary-compensated four-pocket worn hydrostatic journal bearing operating with micropolar lubricant have been presented for a wide range of values of nondimensional external load, wear depth parameter, and micropolar parameters. The simulated results have also been presented for two different loading arrangements. In arrangement I, the load line acts through centers of the pockets, whereas in arrangement II, the load line bisects the land between two pockets. The simulated results suggest that a bearing lubricated with lubricant having higher micropolar effect has better static and dynamic performance characteristics as compared with Newtonian lubricant but the bearing lubricated with lubricant having higher micropolar effect is predominantly affected by the wear vis a vis static characteristics parameters as compared with Newtonian lubricant for both loading arrangements. However, in the case of stiffness and damping coefficients, loading arrangement II shows a significant higher enhancement in the value of direct stiffness and damping coefficients in z-direction due to micropolar effect as compared with load arrangement I. And also, the effect of wear on stiffness and damping coefficients in z-direction for bearing operating with micropolar lubricant is of same order as Newtonian lubricant for the loading arrangement II. A similar behavior is observed for the case of stiffness and damping coefficients in x-direction for loading arrangement I.
机译:本工作的目的是从理论上研究磨损对使用微极性润滑剂工作的四腔毛细管补偿静液压静压轴承性能的影响。在本研究中,含有添加剂和污染物的润滑剂被建模为微极性流体。使用有限元方法以及毛细管节流器流量方程作为约束条件和适当的边界条件,对微极性润滑剂的改进的雷诺方程进行了求解。对于大范围的无量纲外部载荷,磨损深度参数和微极性参数,已经提出了使用微极性润滑剂的毛细管补偿四腔磨损静压轴颈轴承的性能特征。还针对两种不同的加载方式提供了模拟结果。在布置I中,负载线通过凹处的中心起作用,而在布置II中,负载线将两个凹处之间的平面一分为二。仿真结果表明,与牛顿润滑剂相比,用微极性作用较高的润滑剂润滑的轴承具有更好的静态和动态性能,但与静态特性参数相比,用微极性作用较高的润滑剂润滑的轴承主要受磨损的影响。两种装载方式均使用牛顿润滑剂。但是,在刚度和阻尼系数的情况下,与微调效应相比,载荷布置II由于微极性效应,在z方向上的直接刚度和阻尼系数的值显着提高。而且,磨损的影响对于使用微极性润滑剂的轴承,其在z方向的刚度和阻尼系数的关系与用于载荷布置II的牛顿润滑剂的次序相同。对于载荷布置I在x方向上的刚度和阻尼系数的情况,观察到类似的行为。

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