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Room-Temperature and High-Temperature Wear Behaviors of As-Sprayed and Annealed Cr3C2-25NiCr Coatings Prepared by High Velocity Air-Fuel Spraying

机译:通过高速空气燃料喷涂制备的喷涂和退火的CR3C2-25NICR涂层室温和高温磨损行为

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摘要

Cr3C2-25NiCr coatings were deposited on stainless steel substrates by high velocity air-fuel (HVAF) spraying. Friction and wear behaviors of as-sprayed and annealed coatings were investigated both at room-temperature (RT) and 600 °C (high-temperature, HT). The results show that annealing at 600 °C in air is effective to enhance the wear performances of the coating both at RT and HT. The enhanced wear resistance of annealed coatings is discussed from the oxide growth and the microstructural evolution of the coatings. The wear behavior of the annealed coating follows the abrasive mechanism at RT and changes to an oxidative wear at HT, in which formation of a tribo-oxide layer plays a critical role to reduce the friction coefficient and to protect the underlying coatings from abrasive damage. The findings of this work reveal the significance of oxide-scale growth and microstructural evolution on the HT wear behaviors of the Cr3C2-25NiCr coating, which provides strategies for enhancing the wear properties of such coatings for HT applications.
机译:通过高速空气 - 燃料(HVAF)喷涂,在不锈钢基板上沉积CR3C2-25NICR涂层。在室温(RT)和600℃(高温,HT)下,研究了喷涂和退火涂料的摩擦和磨损行为。结果表明,在空气中的600℃下退火是有效的,可在室温和HT上增强涂层的磨损性能。从氧化物生长和涂层的微观结构演化中讨论了退火涂层的增强耐磨性。退火涂层的磨损行为在室温下遵循磨料机制,并在HT的氧化磨损变化,其中氧化族氧化物层的形成起到降低摩擦系数的关键作用,并保护下面的涂层免受磨损损坏。这项工作的结果揭示了氧化尺度生长和微观结构演化对CR3C2-25NICR涂层的HT磨损行为的重要性,这提供了提高这种HT应用这种涂层的磨损性能的策略。

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