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玻璃纤维增强聚四氟乙烯在干滑动和高温条件下的磨损演变

Wear Evolution of the Glass Fiber-Reinforced PTFE under Dry Sliding and Elevated Temperature.

作者信息

Huang Ruoxuan, Ma Siqi, Zhang Meidi, Yang Jie, Wang Dehong, Zhang Liang, Xu Jiujun

机构信息

Department of materials science and engineering, Dalian Maritime University, Dalian 116026, China.

Key Lab of Ship-Maintenance & Manufacture, Dalian Maritime University, Dalian 116026, China.

出版信息

Materials (Basel). 2019 Apr 2;12(7):1082. doi: 10.3390/ma12071082.

Abstract

The wear evolution of the glass fiber reinforced Polytetrafluoroethylene (PTFE) sliding against duplex steel at elevated temperature was investigated using the interrupted wear tests coupling with the worn surface observations. The morphological changes of the PTFE composite during the sliding were related to the variation of the tribological properties to analyze the underlying wear mechanisms. Results show that the coefficient of friction and wear rate change with the increase of temperature. During the sliding, three regions can be identified regardless of the temperature. The high temperature is beneficial to the formation of tribo-film. The sequence of wear evolution is PTFE removal, load transfer to glass fiber, and minor formation of tribo-film for the low temperature condition. For high temperatures, the wear behaviors are more complicated. The different phenomena include the third body abrasion, flake delamination of PTFE matrix, scratching and reformation of transfer film on the counterface, and the filling of the large scale PTFE groove. These behaviors may dominate the different stages in the stable region, but occur simultaneously and cause the dynamic steady wear. As a result, the wear rate at 200 °C is slightly fluctuant.

摘要

采用中断磨损试验并结合磨损表面观察,研究了玻璃纤维增强聚四氟乙烯(PTFE)在高温下与双相钢滑动时的磨损演变。通过PTFE复合材料在滑动过程中的形态变化与摩擦学性能的变化关系,分析潜在的磨损机制。结果表明,摩擦系数和磨损率随温度升高而变化。在滑动过程中,无论温度如何,均可识别出三个区域。高温有利于摩擦膜的形成。在低温条件下,磨损演变顺序为PTFE去除、载荷转移到玻璃纤维以及少量摩擦膜形成。对于高温,磨损行为更为复杂。不同现象包括三体磨料磨损、PTFE基体的片状分层、对偶面上转移膜的刮擦和再形成以及大规模PTFE凹槽的填充。这些行为可能在稳定区域的不同阶段占主导地位,但同时发生并导致动态稳定磨损。因此,200℃时的磨损率略有波动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc55/6479450/7053dac673db/materials-12-01082-g001.jpg

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