重型静压轴承临界润滑状态下油膜的热特性

Q4 Engineering
Yanqin Zhang, Wu Ye, Jiabao Li, Wang Mulan, Quan Zhen
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引用次数: 0

摘要

润滑失效一直是重型静压轴承研究中关注的问题。初步研究发现,在一定的工作条件下,重载静压轴承会出现油膜局部流量为零的情况,称为临界润滑状态。它会产生显著的热积聚效应,并影响轴承的润滑性能。本文以Q1-205双矩形腔静压推力轴承为研究对象,采用理论分析、仿真和试验相结合的研究方法,分析了轴承在不同工况下处于临界润滑状态时的温升和特性。采用有限体积法模拟了常见载荷和转速条件下的临界润滑状态,得到了重型静压支架临界润滑的相应运行参数。研究发现,当油膜处于临界润滑状态时,低温区集中在油膜的轴承位置,而高温区集中在逆流侧密封边缘。油膜局部温度升高加剧,热量不能及时带走,热量积聚现象严重,
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Characteristics of Oil Film in Critical Lubrication State of Heavy Hydrostatic Bearing
Lubrication failure has always been a concern in the research of heavy hydrostatic bearings. A preliminary study found that under a certain working condition, the heavy hydrostatic bearing will appear in the condition of zero local flow of oil film, which is called a critical lubrication state. It produces a significant thermal accumulation effect and affects the lubrication performance of the bearing. This paper takes Q1-205 double rectangular cavity hydrostatic thrust bearing as the research object and adopts the research method combining theoretical analysis, simulation, and experimental test to analyze the temperature rise and characteristics of the bearing when it is in critical lubrication state under different working conditions. The finite volume method is used to simulate the critical lubrication state under the condition of common load and rotating speed, and the corresponding operating parameters of the critical lubrication of heavy static support are obtained. It is found that when the oil film is in the critical lubrication state, the low temperature zone is concentrated at the bearing position of the oil film, while the high temperature zone is concentrated at the counter-current side sealing edge. The oil film's local temperature rise is intensified, and the heat accumulation phenomenon is serious because the heat cannot be taken away in time,
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来源期刊
Recent Patents on Mechanical Engineering
Recent Patents on Mechanical Engineering Engineering-Mechanical Engineering
CiteScore
0.80
自引率
0.00%
发文量
48
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