Impact of cyclic thermal shocks on the electrochemical and tribological properties of Fe-based amorphous coating

IF 2.2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Muhammad Yasir, Muhammad Arslan Hafeez, Muhammad Atiq Ur Rehman and Cheng Zhang
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引用次数: 0

Abstract

Fe-based amorphous coatings hold immense potential for marine industries due to their remarkable properties, including high hardness, exceptional corrosion resistance, and outstanding wear resistance. However, their performance under thermal shock conditions, particularly in high-temperature applications, remains a topic requiring further investigation. In this work, a Fe-based amorphous coating with a composition of Fe48Mo14Cr15Y2C15B6 was successfully developed using High-velocity oxygen fuel thermal spraying. To assess the thermal shock resistance of the amorphous coating, we subjected them to thermal cycles at 300 °C for 150 times, followed by cooling in two different mediums: saltwater quenching and air cooling. The results revealed that the coating maintained excellent contact with the substrate and preserved mainly amorphous structure both in the as-sprayed condition and after thermal shocks. Interestingly, the differential scanning calorimetry (DSC) results indicated that the air-cooled samples exhibited greater structural relaxation and crystallization compared to the brine-quenched samples. This microstructure changes in the air-cooled samples resulted in inferior mechanical properties, such as wear resistance and hardness, compared to the brine-quenched and as-sprayed samples.
循环热冲击对铁基非晶涂层的电化学和摩擦学特性的影响
铁基非晶涂层具有高硬度、优异的耐腐蚀性和出色的耐磨性等显著特性,在海洋工业中具有巨大的应用潜力。然而,它们在热冲击条件下的性能,尤其是在高温应用中的性能,仍然是一个需要进一步研究的课题。在这项工作中,利用高速氧气燃料热喷涂技术成功开发了一种铁基非晶涂层,其成分为 Fe48Mo14Cr15Y2C15B6。为了评估非晶涂层的抗热震性,我们对其进行了 150 次 300 °C 的热循环,然后在两种不同介质中冷却:盐水淬火和空气冷却。结果表明,无论是在喷涂状态还是在热冲击后,涂层都能与基底保持良好的接触,并主要保留了非晶结构。有趣的是,差示扫描量热法(DSC)结果表明,与盐水淬火样品相比,空气冷却样品表现出更大的结构松弛和结晶。与盐水淬火和喷涂后的样品相比,空气冷却样品的微观结构变化导致其耐磨性和硬度等机械性能降低。
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来源期刊
Materials Research Express
Materials Research Express MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.50
自引率
4.30%
发文量
640
审稿时长
12 weeks
期刊介绍: A broad, rapid peer-review journal publishing new experimental and theoretical research on the design, fabrication, properties and applications of all classes of materials.
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