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国家自然科学基金(50975199)

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Aqueous lubrication and surface microstructures of engineering polymer materials (PEEK and PI) when sliding against Si3N4被引量:7
2017年
Polyether-ether-ketone (PEEK) and polyimide (PI) are two kinds of engineering polymer materials widely used as roller bearing cages and rings under extreme environment because of their noise reduction and corrosion resistance properties.The Si3N4 ceramic is the most common ball bearing material.Many current engineering applications of ball bearings require aqueous lubrication.Therefore,this study presents the aqueous lubrication of tribopairs formed by PEEK and PI material sliding against Si3N4 ceramic.Experimental results show that two tribopairs exhibited the similar tribological properties under the dry condition.Water as a lubricant for the PI-Si3N4 tribopair pairs effectively reduces both friction coefficients by 35.5% and wear rates by 32%.The water absorption of PI induces better tribological properties by changing the tribopair surface properties.In addition,the dimples appearing on the PI tribopair surface under water generate additional hydrodynamic lubrication and further improve the friction properties of surface.The PEEK-Si3N4 tribopair shows similar friction coefficients under two kinds of environments.The wear rates under water are approximately more than two times of that under dry sliding.However,water inhibits the appearance of the crush phenomenon and enhances the carrying capacity of the tribopair.Energy dispersive spectroscopy and X-ray diffraction spectra demonstrate no chemical corrosion.The 3D profiler and SEM morphologies illustrate that the transfer film would be formed from the surface of PEEK under water but hindered under dry friction.Overall,the PI-Si3N4 tribopair exhibits better properties than PEEK under water and is promising for future applications in the bearing industry.
Anying WANGShuai YANBin LINXiaofeng ZHANGXiaoxue ZHOU
关键词:PEEKPI
Research and Experiment on the Thermal Characteristics of Hybrid Ceramic Bearings
The high-speed hybrid ceramic bearing system is simulated by FLUENT, and its temperature rise characteristics ...
Wuyang HuangBin LinXiaofei Dong
关键词:CERAMIC
采用粘度可控高水基液润滑的高速动静压陶瓷滑动轴承主轴设计
2011年
高速主轴作为高速高精密加工机床的关键技术,直接决定着机床的各项工作性能。文中提出一种对粘度-轴承间隙寻优,从而实现主轴高性能的高速高精密主轴设计方法,并设计出新型绿色、粘度可控的高水基液作为润滑剂,随后通过采用动静压陶瓷滑动轴承的高速主轴热弹流数值计算,确定了润滑剂粘度及主轴系统相关结构参数,最终完成了该高速主轴的结构设计。
刘峰林彬
关键词:绿色制造高水基液高速主轴滑动轴承
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