流体静力平衡
润滑
推力轴承
方位(导航)
推力
机械
常量(计算机编程)
静水压力
材料科学
流量(数学)
岩土工程
机械工程
工程类
复合材料
物理
计算机科学
量子力学
程序设计语言
天文
作者
Junpeng Shao,Guang-dong Liu,Xiaodong Yu,Yanqin Zhang,Xiuli Meng,Hui Jiang
标识
DOI:10.1108/ilt-03-2017-0066
摘要
Purpose The purpose of this paper is to describe a simulation and experimental research concerning the effect of recess depth on the lubrication performance of a hydrostatic thrust bearing by constant rate flow. Design/methodology/approach The computational fluid dynamics and finite volume method have been used to compute the lubrication characteristics of an annular recess hydrostatic thrust bearing with different recess depths. The performances are oil recess pressure, oil recess temperature and oil film velocity. The recess depth has been optimized. A test rig is established for testing the pressure field of the structure of hydrostatic thrust bearing after recess depth optimization, and experimental results show that experimental data are basically identical with the simulation results, which demonstrates the validity of the proposed numerical simulation method. Findings The results demonstrate that the oil film temperature decreases and the oil film pressure first increases and then decreases with an increase in the recess depth, but oil film velocity is constant. To sum up comprehensive lubrication performance, the recess depth of 3.5 mm is its optimal value for the annular recess hydrostatic thrust bearing. Originality/value The computed results indicate that to get an improved performance from a constant flow hydrostatic thrust bearing, a proper selection of the recess depth is essential.
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