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Wear resistance of Fe-based amorphous coatings prepared by AC-HVAF and HVOF

机译:通过AC-HVAF和HVOF制备的Fe基非晶涂层的耐磨性

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Fe63Cr8Mo3.5Ni5P10B4C4Si2.5 amorphous coatings have been prepared by the activated combustion high velocity air fuel (AC-HVAF) and high velocity oxygen fuel (HVOF) processes. The microstructure and wear resistance of the amorphous coatings are comparatively studied. The wear volume loss of the AC-HVAF coating is approximately seven times less than that of the HVOF coating, indicating that the AC-HVAF coating exhibits better wear resistance. Detailed analysis on the worn surface indicates that the enhanced wear resistance of the AC-HVAF coating is mainly attributed to the formation of a more stable oxide tribolayer and smoother worn surface, which result from the dense and complete amorphous microstructure of the AC-HVAF coating. The wear mechanism of the amorphous coatings is dominated by oxidation wear.
机译:FE63CR8MO3.5NI5P10B4C4SI2.5无定形涂层通过活化的燃烧高速空气燃料(AC-HVAF)和高速氧气燃料(HVOF)方法制备。 相对研究的非晶涂层的微观结构和耐磨性。 AC-HVAF涂层的耐磨体积损失比HVOF涂层的涂层小约7倍,表明AC-HVAF涂层具有更好的耐磨性。 磨损表面的详细分析表明,AC-HVAF涂层的增强耐磨性主要归因于形成更稳定的氧化物肌层和更光滑的表面,这是由AC-HVAF涂层的致密和完全无定形的微观结构产生的 。 无定形涂层的磨损机理通过氧化磨损为主。

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