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Tribological properties of low-temperature graphite fluorides. Influence of the structure on the lubricating performances

机译:低温石墨氟化物的摩擦学性能。结构对润滑性能的影响

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摘要

The present work is concerned with the study of the tribological properties of various fluorinated carbon phases obtained at room temperature and then post-treated under fluorine atmosphere at different temperatures. The tribological tests evidence good intrinsic properties for all the compounds (friction coefficient in the range 0.07–0.09). Differences appear after few cycles. Friction measurements after 100 cycles and complementary Raman analyses of the tribofilm remaining in the wear scar point out that long term tribologic properties of the fluorinated compounds strongly depend on the evolution undergone by the materials under friction. The release of HF molecules, the loss of fluorine and partial rebuilding of graphitic phases are at the origin of the degradation of the friction properties. The good properties of the compounds post-treated at temperature in the range 150–300 °C are attributed to the chemical and structural stability of these compounds under friction.
机译:目前的工作涉及在室温下获得然后在不同温度下在氟气氛下进行后处理的各种氟化碳相的摩擦学性能的研究。摩擦学测试证明所有化合物均具有良好的固有特性(摩擦系数在0.07至0.09范围内)。几个周期后出现差异。 100次循环后的摩擦测量以及对磨损痕迹中残留的摩擦膜的互补拉曼分析表明,氟化物的长期摩擦学特性在很大程度上取决于材料在摩擦下的演变。 HF分子的释放,氟的损失和石墨相的部分重建是摩擦性能下降的根源。这些化合物在150–300°C的温度下进行后处理的良好性能归因于这些化合物在摩擦下的化学和结构稳定性。

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