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Thermo-Elasto-Hydrodynamic analysis and optimization of rubber-supported water-lubricated thrust bearings with polymer coated pads

机译:具有聚合物涂层垫的热弹性 - 水动力学分析和优化橡胶支撑的水润滑推力轴承

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摘要

In order to study the lubrication performance of rubber-supported water-lubricated thrust bearings (RWTBs) with polymer coated pads and optimize the offset ratio of rubber cushions, a Thermo-Elasto-Hydrodynamic lubrication performance computational model is proposed. Case studies show that there are concave and convex deformations on the polymer surface under certain load and speed conditions. Deformations decrease the minimum film thickness by 10.9% compared with that calculated without considering deformation. Optimization indicates that the optimum offset ratios of the rubber cushion are 0.585-0.59 in circumferential and 0.49-0.5 in radial direction, and both of them are independent of speed and load. The research verifies that the proposed model is an effective tool for studying lubrication performance and optimizing of RWTBs.
机译:为了研究具有聚合物涂层垫的橡胶支撑的水润滑推力轴承(RWTBS)的润滑性能并优化橡胶垫的偏移比,提出了一种热弹性流体动力润滑性能计算模型。 案例研究表明,在某些载荷和速度条件下聚合物表面上存在凹形和凸变形。 与不考虑变形的情况相比,变形将最小膜厚度降低10.9%。 优化表明,橡胶垫的最佳偏移比在径向方向上的圆周和0.49-0.5中为0.585-0.59,并且它们两者都与速度和载荷无关。 该研究验证了拟议的模型是研究润滑性能和RWTBS优化的有效工具。

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