部分复合质地和热效应对静压轴承性能的耦合效应

IF 1.8 4区 工程技术 Q3 ENGINEERING, CHEMICAL Lubrication Science Pub Date : 2024-02-21 DOI:10.1002/ls.1702
Dongju Chen, Yu Cui, Kun Sun, Jinwei Fan, Kai Cheng
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引用次数: 0

摘要

这项工作的重点是计算具有部分复合质地的高速转子轴承系统的性能。由于其在不同转速下的粘度会影响不同部分复合材料质地的工作性能,因此在设计和开发阶段,有必要了解造成性能变化的复合材料质地和转子轴承系统的热效应。本文研究了部分复合材料纹理尺寸和位置对轴承性能的影响。在确定最佳结构参数后,分析了局部复合纹理和流体热力结构耦合对轴承承载能力、刚度和油膜摩擦系数的影响。结果表明,在考虑热效应的影响后,复合质地轴承的性能提升效果优于光滑轴承。考虑温度效应后,复合纹理轴承的承载能力比光滑轴承提高了 51.4%,摩擦系数降低了 22.4%,优于未考虑温度效应的值,实验验证了结果的准确性。该研究为静压轴承的设计和性能改进提供了理论依据。
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Coupling effect of partial composite texture and thermal effect on the performance of hydrostatic bearing

This work is focused on performance computation of high speed rotor bearing system with partial composite texture. Since its viscosity at varying speeds affects working performance in different partial composite texture, therefore at design and development stage, it is necessary to know the composite texture and thermal effect acting on rotor-bearing system that causes variation of performance. The effects of partial composite texture size and position on the performance of the bearing are studied. After the optimal structural parameters are determined, the effects of the partial composite texture and fluid thermos structure coupling on the bearing capacity, stiffness, and friction coefficient of the oil film are analysed. The results show that after considering the influence of thermal effect, the performance enhancement of composite texture bearing is better than that of smooth bearing. Considering the temperature effect, the bearing capacity of the composite textured bearing is increased by 51.4% compared with that of the smooth bearing, and the friction coefficient is reduced to 22.4%, which is better than the value without considering the temperature effect, the accuracy of the results is verified by experiments. This study provides a theoretical basis for the design of hydrostatic bearing and improving its performance.

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来源期刊
Lubrication Science
Lubrication Science ENGINEERING, CHEMICAL-ENGINEERING, MECHANICAL
CiteScore
3.60
自引率
10.50%
发文量
61
审稿时长
6.8 months
期刊介绍: Lubrication Science is devoted to high-quality research which notably advances fundamental and applied aspects of the science and technology related to lubrication. It publishes research articles, short communications and reviews which demonstrate novelty and cutting edge science in the field, aiming to become a key specialised venue for communicating advances in lubrication research and development. Lubrication is a diverse discipline ranging from lubrication concepts in industrial and automotive engineering, solid-state and gas lubrication, micro & nanolubrication phenomena, to lubrication in biological systems. To investigate these areas the scope of the journal encourages fundamental and application-based studies on: Synthesis, chemistry and the broader development of high-performing and environmentally adapted lubricants and additives. State of the art analytical tools and characterisation of lubricants, lubricated surfaces and interfaces. Solid lubricants, self-lubricating coatings and composites, lubricating nanoparticles. Gas lubrication. Extreme-conditions lubrication. Green-lubrication technology and lubricants. Tribochemistry and tribocorrosion of environment- and lubricant-interface interactions. Modelling of lubrication mechanisms and interface phenomena on different scales: from atomic and molecular to mezzo and structural. Modelling hydrodynamic and thin film lubrication. All lubrication related aspects of nanotribology. Surface-lubricant interface interactions and phenomena: wetting, adhesion and adsorption. Bio-lubrication, bio-lubricants and lubricated biological systems. Other novel and cutting-edge aspects of lubrication in all lubrication regimes.
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