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Chromium Enrichment on P11 Ferritic Steel by Pack Cementation

机译:包固法富集P11铁素体钢中的铬

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The future thermal power plant is expected to operate at higher temperature to improve its efficiency and to reduce greenhouse gas emission. This target requires better corrosion properties of ferritic steels, which commonly used as materials for superheater and reheater of boiler tubes. In this work, chromium enrichment on the surface of ferritic steel is studied. The deposited chromium is expected to become a reservoir for the formation of chromia protective layer. Chromium was deposited on the substrate of steel by pack cementation process for two hours at the temperature of 850oC, 950oC and 1050oC, respectively. XRD analysis indicated that chromium was successfully deposited at all temperatures. Somehow, SEM cross sectional image showed that continuous layer of chromium was not continuously formed at 850oC. Therefore, this research clarify that chromium enrichment by pack cementation may be conducted at the temperature above 950°C.
机译:未来的火力发电厂有望在更高的温度下运行,以提高效率并减少温室气体排放。该目标要求铁素体钢具有更好的腐蚀性能,铁素体钢通常用作锅炉管的过热器和再热器的材料。在这项工作中,研究了铁素体钢表面的铬富集。预期沉积的铬将成为形成氧化铬保护层的储存库。铬分别在850oC,950oC和1050oC的温度下通过填充胶结法沉积在钢的基底上两小时。 XRD分析表明铬在所有温度下均成功沉积。 SEM横截面图像以某种方式表明在850℃下不连续形成铬的连续层。因此,本研究澄清了通过填充胶结法富集铬可以在高于950°C的温度下进行。

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