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Research Article | Open Access

Decomposing of lubricating oil caused the blackening wear of porous polyimide—Or is it?

Zhengrong Xu1Jinbang Li1( )Kai Li1Chenchun Shi1Ningning Zhou2Tao Qing2Yuguo Cui1
Ningbo Key Laboratory of Micro-nano Motion and Intelligent Control, Faculty of Mechanical Engineering and Mechanics, Ningbo University, Ningbo 315211, China
Beijing Key Laboratory of Long-life Technology of Precise Rotation and Transmission Mechanisms, Beijing Institute of Control Engineering, Beijing 100029, China
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Abstract

In practical applications, the pocket surface of a porous polyimide (PPI) cage often experiences blackening wear, which may lead to lubrication failure. However, the mechanism of blackening wear is still controversial. In this study, the impact of oxygen concentration on blackening wear was investigated using a sealed double-contact friction tester by controlling the ventilation with argon gas. Then four types of oils, as well as steel balls and Si3N4 balls, were used to study the effect of oil decomposition on blackening wear. Finally, the effect of PPI decomposition was studied under dry friction conditions to obtain high friction temperatures. The results indicate that iron oxides are the primary factors of blackening on the worn surfaces of PPIs, whereas oil and PPI decompositions are minor factors. At an oxygen concentration of 0.1% or when Si3N4 balls are used as rubbing pair materials, there is only slight blackening wear on the worn surface of the PPI. Therefore, the influence of iron oxides on the blackening of worn PPI surfaces is crucial. At low oxygen concentration (0.1%), a relatively high degree of unsaturation of the oil may lead to slight blackening wear of the PPI due to oil decomposition, but its impact is minimal. This study provides necessary insights into the mechanism of blackening wear in PPI cages.

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Article number: 9441119

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Cite this article:
Xu Z, Li J, Li K, et al. Decomposing of lubricating oil caused the blackening wear of porous polyimide—Or is it?. Friction, 2026, 14(4): 9441119. https://doi.org/10.26599/FRICT.2025.9441119

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Received: 27 December 2024
Revised: 10 March 2025
Accepted: 24 April 2025
Published: 06 January 2026
© The Author(s) 2026.

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).