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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Study on the characterisation of the PTFE transfer film and the dimensional designing of surface texturing in a dry-lubricated bearing system
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Study on the characterisation of the PTFE transfer film and the dimensional designing of surface texturing in a dry-lubricated bearing system

机译:干润滑轴承系统中PTFE转移膜的表征及表面纹理尺寸设计的研究

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摘要

The ability of polytetrafluoroethylene (PTFE) to form tribo-film in dry sliding condition makes it a popular liner material for self-maintenance bearings, such as those in the helicopter main and tail rotors. Nowadays, hard fillers or reinforcing-fibres are added to form the PTFE composite with enhanced strength and wear resistance; however, this also leads to increasing possibility of wear tracks on counter-surface and therefore more difficulty in observing and characterising the transfer film. In this paper, a surface analysis method based on using SEM analysis, supplemented with a Time-of-flight Secondary-ion mass spectrometry (Tof-SIMS) techniques for calibration was developed to give a comprehensive view of the transfer film formation on bearing steel surfaces. Previous challenges in transfer film identification and characterisation were also pinpointed. A series of laser surface textures (dimples), designed for improving the tribological performance of the bearing were tested, and the effects on transfer film formation have been evaluated by the surface analysis method. It is found that the depth of the dimples should match with the thickness of the transfer film to achieve a benefiting effect of the film formation, while the diameter and the coverage of the textures needs to be relatively small to avoid a high level of abrasion.
机译:聚四氟乙烯(PTFE)在干式滑动条件下形成摩擦膜的能力使其成为自我维护轴承的流行衬垫材料,例如直升机主和尾转子中的那些。如今,加入硬质填料或增强纤维以形成具有增强的强度和耐磨性的PTFE复合材料;然而,这也导致在反表面上增加磨损轨道的可能性,因此更难以观察和表征转移膜。在本文中,开发了一种基于SEM分析的基于SEM分析的表面分析方法,用于校准的飞行时间二次离子质谱(TOF-SIMS)技术,以综合了解轴承钢上的转移膜形成表面。在转移膜识别和表征中的以前的挑战也是针对性的。测试了一系列激光表面纹理(凹坑),用于改善轴承的摩擦学性能,并通过表面分析方法评估了对转移膜形成的影响。结果发现,凹坑的深度应与转移膜的厚度匹配,以实现膜形成的受益效果,而纹理的直径和覆盖需要相对较小以避免高水平的磨损。

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