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国家自然科学基金(51175405)

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纳米粒子气膜承载能力研究
2013年
利用自行研制的纳米粒子气膜承载能力测试平台,将粒径30 nm的SiO2球形纳米粒子添加到气体推力轴承中形成45μm厚纳米粒子气膜,研究不同纳米粒子体积分数对气膜承载能力的增强效果与作用机理。通过测试纳米粒子添加前后气膜承载能力和压力的变化与气膜厚度间的关系研究纳米粒子体积分数对承载能力的影响规律。结果发现,纳米粒子气膜的承载能力随着纳米粒子体积分数的增加而逐渐增加,在纳米粒子体积分数约为0.04%时,承载能力的增加幅度最大约为20%。纳米粒子体积分数进一步增加时承载能力增加幅度开始减小。为理解这一变化规律以及纳米粒子气膜对承载能力的增强机理,使用考虑纳米粒子气膜中气体和粒子相互作用的流体力学方程计算纳米粒子气膜中的压力分布。通过计算结果与试验数据的对比,验证纳米粒子体积分数对承载能力的影响规律。提出并证实纳米粒子对气膜承载能力的增强作用,纳米粒子气膜承载能力研究结果对纳米粒子气膜润滑新型转子轴承系统的设计具有工程意义。
刁东风杨志儒范红艳范雪
关键词:体积分数承载能力
Numerical Analysis on Nanoparticles-laden Gas Film Thrust Bearing被引量:3
2013年
Nanoparticles can be taken as additives and added into various fluids to improve their lubricating performances. At present, researches in this area are mainly concentrated on the improvement effects of nanoparticles on the lubricating performances of liquid such as oil and water. Nanoparticles will also affect gas lubrication, but few related studies have been reported. Nanoparticles-laden gas film (NLGF) is formed when adding nanoparticles into gas bearing. Then, the lubricating performances of gas bearing including pressure distribution and load-carrying capacity will change. The variations of pressure distribution and load-carrying capacity in nanoparticles-laden gas film thrust bearing are investigated by numerical method. Taking account of the compressibility of gas and the interactions between gas and nanoparticles, a computational fluid dynamics model based on Navier-Stokes equations is applied to simulate the NLGF flow. The effects of inlet nanoparticles volume fraction and orifice radius on film pressure distribution and load-carrying capacity of the NLGF are calculated. The numerical calculation results show that both of the film land pressure and the maximum film pressure both increase when the nanoparticles are added into gas bearing, and the film pressures increase with the rising of the inlet nanoparticles volume fraction. The nanoparticles have an enhancement effect on load-carrying capacity of the studied bearing, and the enhancement effect becomes greater as the film thickness decrease. Therefore, nanoparticles can effectively improve the lubricating performance of gas bearing. The proposed research provides a theoretical basis for the design of new-type nanoparticles-laden gas film bearings.
YANG ZhiruDIAO DongfengYANG Lei
关键词:COMPUTATIONALFLUID
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