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Enhancing tribological performance by anodizing micro-textured surfaces with nano-MoS2 coatings prepared on aluminum-silicon alloys

机译:通过用在铝 - 硅合金上制备的纳米MOS2涂层阳极织织表面来提高摩擦学性能

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摘要

Aluminum-silicon alloys exhibit poor tribological performance and suffer from severe adhesive wear. The single surface treatment has demonstrated unsatisfactory anti-friction performances. In this paper, the synergistic effect of the surface micro-texturing and nano-solid lubricant improved the tribological performance of aluminum silicon alloys effectively. The anodizing micro-textured surface with nano-MoS2 coatings was fabricated by micro-milling, anodizing and ultrasonic impregnation. Pin-on-disc tribological tests revealed that the friction coefficient of the anodizing micro-textured surface with nano-MoS2 coatings decreased by 22.6% compared with that of the untextured specimen. The anti-friction characteristic was attributed to the synergistic effect of the entrapping wear debris of dimple structure, the high hardness of porous anodic aluminum oxide films and the selflubricating property of nano-MoS2 coatings.
机译:铝 - 硅合金具有较差的摩擦性能和严重的粘合剂磨损。 单表面处理表明抗摩擦性能不令人满意。 本文中,表面微纹理和纳米固体润滑剂的协同效应有效提高了铝硅合金的摩擦学性能。 通过微铣削,阳极氧化和超声浸渍制造具有纳米MOS2涂层的阳极氧化微纹理表面。 引脚盘式摩擦学检测表明,阳极氧化微纹理表面的摩擦系数与纳米-MOS2涂层相比减小了22.6%,与未致伸张的样品相比。 抗摩擦特性归因于凹陷磨损碎片的协同效应,多孔阳极氧化铝膜的高硬度和纳米MOS2涂层的自润滑性。

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