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首页> 外文期刊>Journal of Thermal Spray Technology >High-Temperature Erosion Resistance of FeBSiNb Amorphous Coatings Deposited by Arc Spraying for Boiler Applications
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High-Temperature Erosion Resistance of FeBSiNb Amorphous Coatings Deposited by Arc Spraying for Boiler Applications

机译:锅炉电弧喷涂FeBSiNb非晶涂层的高温耐蚀性

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摘要

Erosive high-temperature wear in boilers is one of the main causes of downtime and one of the principal engineering problems in these installations. This article discusses the use of FeBSiNb amorphous coatings synthesized by arc spraying to improve elevated-temperature erosion resistance for boiler applications. The influence of test temperature, velocity, and impact angle on material wastage was revealed using air solid particle erosion rig. The experimental results showed that moderate degradation of the coating was predominant at lower impact velocity and impact angles, while severe damage arose for higher velocities and impact angles. The erosion behavior of the coating was sensitive to test temperature. The erosion rates of the coating decreased as a function of environment temperature. The relationship between microstructure and erosion resistance of the coating was also analyzed in details. The FeBSiNb coating had excellent elevated-temperature erosion resistance at temperatures at least up to 600℃ during service.
机译:锅炉中的高温腐蚀磨损是停机的主要原因之一,也是这些装置中的主要工程问题之一。本文讨论了通过电弧喷涂合成的FeBSiNb无定形涂层在改善锅炉应用中的耐高温腐蚀方面的应用。使用气固颗粒侵蚀装置揭示了测试温度,速度和冲击角对材料浪费的影响。实验结果表明,在较低的撞击速度和撞击角度下,涂层的中等降解是主要的,而对于较高的速度和撞击角度则造成严重的破坏。涂层的腐蚀行为对测试温度敏感。涂层的腐蚀速率随环境温度而降低。还详细分析了涂层的微观结构与耐蚀性之间的关系。 FeBSiNb涂层在使用过程中至少在高达600℃的温度下具有优异的耐高温腐蚀性能。

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