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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Formation of chromium carbide coatings on HT250 steel by thermal diffusion processes in fluoride molten salt bath
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Formation of chromium carbide coatings on HT250 steel by thermal diffusion processes in fluoride molten salt bath

机译:氟化盐浴热扩散工艺在HT250钢上形成碳化物涂层

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摘要

LiF-NaF-KF (46.5-11.5-42?mol %, FLiNaK) molten salt was used in the thermal diffusion (TD) process to form chromium carbide coatings on gray cast iron HT250 at 900?°C for 8?h. The structure and chemical composition of the coating were observed by scanning electron microscopy coupled with energy dispersive X-ray microanalysis (SEM-EDX) and X-ray diffraction (XRD). Both the nanoindentation hardness and Vickers hardness were measured. A 3–5?μm thick chromium carbides layer and approximately 10?μm thick transition layer were formed on the surface of gray cast iron HT250. The chromium carbides layer was composed of Cr23C6and Cr7C3. The hardness of gray cast iron HT250 was increased 6 times after treatment. The tribological behavior was also improved. These results demonstrate that fluoride salts can be used as base salts to form excellent chromium carbides coatings via the TD process.
机译:LiF-Naf-KF(46.5-11.5-42?mol%,flinak)熔融盐用于热扩散(Td)工艺中,以在灰色铸铁HT250上形成碳化铬涂料,在900Ω℃下以8Ω·h。 通过扫描电子显微镜与能量分散X射线微分析(SEM-EDX)和X射线衍射(XRD)耦合的电子显微镜观察涂层的结构和化学成分。 测量纳米狭窄硬度和维氏硬度。 在灰色铸铁HT250的表面上形成3-5μm厚的铬碳化物层和大约10?μm厚的过渡层。 碳化铬层由Cr23C6和Cr7C3组成。 治疗后,灰铸铁HT250的硬度增加了6次。 摩擦学行为也得到了改善。 这些结果表明,氟化物盐可用作基础盐,通过Td工艺形成优异的碳化铬涂层。

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