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Enhancement of tribofilm formation from water lubricated PEEK composites by copper nanowires

机译:铜纳米线增强了水润滑PEEK复合材料的摩擦膜形成

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摘要

A high-performance tribofilm is crucial to enhance the tribological performance of tribomaterials. In order to promote tribofilm formation under water lubrication conditions, copper nanowires as a functional nanomaterial were filled into neat polyetheretherketone (PEEK) and PEEK10SCF8Gr (i.e., PEEK filled with 10 vol.% short carbon fibers and 8 vol.% graphite flakes). The results show that the addition of copper nanowires and a greater applied load can enhance materials transfer and tribofilm formation during sliding process. Moreover, copper nanowires can share a part of applied load, and retard the fatigue effect to some extent. In addition, copper nanowires, carbon fibers and graphite can synergistically improve the tribological performance and the tribofilm formation under water lubrication and severe working conditions. In particular, only 0.5 vol.% copper nanowires can form a high-performance tribofilm, which endows superior lubricating property and wear resistance capacity of the PEEK10SCF8Gr. Furthermore, the surface analysis indicates that the tribofilm contains some transferred materials and the products from tribochemical reactions as well. (C) 2018 Elsevier B.V. All rights reserved.
机译:高性能摩擦膜对增强摩擦材料的摩擦学性能至关重要。为了促进在水润滑条件下的摩擦膜形成,将作为功能纳米材料的铜纳米线填充到纯聚醚醚酮(PEEK)和PEEK10SCF8Gr(即PEEK中填充了10%(体积)的短碳纤维和8%(%)的石墨薄片)中。结果表明,添加铜纳米线和更大的施加负载可以增强滑动过程中的材料转移和摩擦膜形成。此外,铜纳米线可以分担一部分施加的负载,并在一定程度上延迟疲劳效果。另外,铜纳米线,碳纤维和石墨可以在水润滑和恶劣的工作条件下协同改善摩擦性能和摩擦膜形成。特别是,只有0.5%(体积)的铜纳米线才能形成高性能的摩擦膜,从而赋予PEEK10SCF8Gr优异的润滑性能和耐磨性。此外,表面分析表明,摩擦膜包含一些转移的物质以及摩擦化学反应的产物。 (C)2018 Elsevier B.V.保留所有权利。

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