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首页> 外文期刊>Metallurgical and Materials Transactions A >Characterization and High-Temperature Oxidation Behavior of Cold-Sprayed Ni-20Cr and Ni-50Cr Coatings on Boiler Steels
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Characterization and High-Temperature Oxidation Behavior of Cold-Sprayed Ni-20Cr and Ni-50Cr Coatings on Boiler Steels

机译:锅炉钢冷喷涂Ni-20Cr和Ni-50Cr涂层的表征及高温氧化行为

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摘要

Microstructure and mechanical properties of cold-spray coatings are usually required in order to explore the potential industrial application of the latter. This article demonstrates the successful formulation of Ni-20Cr and Ni-50Cr coatings on two boiler steels, namely, SAE 213-T22 and SA 516 steel by cold-spray process. The microstructure, coating thickness, phase formation, and microhardness properties of the coatings were evaluated. The coatings were subjected to cyclic heating and cooling cycles at an elevated temperature of 1173.15 K (900 °C) to ascertain their high-temperature oxidation behavior. Moreover, these cyclic exposures can give useful information regarding the adhesion of the coatings with the substrate steels. Of all the coatings, the Ni-50Cr coating on SA 516 steel had a maximum average hardness value of 469 Hv. As observed from the surface field emission–scanning electron microscopy (FE-SEM) analysis, the coatings were found to have nearly dense microstructure with the sprayed particles in interlocked positions. It was concluded that the cold-spray process is suitable for spraying the preceding powders onto the given boiler steels to produce nearly dense and low oxide coatings. The coatings, in general, were found to follow the parabolic rate of oxidation and were successful in maintaining their surface contact with their respective substrate steels.
机译:为了探索后者的潜在工业应用,通常需要冷喷涂涂层的微观结构和机械性能。本文证明了通过冷喷涂工艺在两种锅炉钢(即SAE 213-T22和SA 516钢)上成功配制了Ni-20Cr和Ni-50Cr涂层。评价了涂层的微观结构,涂层厚度,相形成和显微硬度特性。在高温1173.15 K(900°C)下对涂层进行循环加热和冷却循环,以确定其高温氧化行为。而且,这些循环暴露可以提供有关涂层与基体钢之间粘附性的有用信息。在所有涂层中,SA 516钢上的Ni-50Cr涂层的最大平均硬度值为469 Hv。从表面场发射-扫描电子显微镜(FE-SEM)分析中观察到,发现涂层具有近乎致密的微观结构,喷涂颗粒处于互锁位置。结论是,冷喷涂工艺适合将前述粉末喷涂到给定的锅炉钢上,以产生几乎致密且低氧化物的涂层。通常,发现该涂层遵循抛物线的氧化速率,并且成功地保持了它们与各自的基底钢的表面接触。

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