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首页> 外文期刊>The Journal of Supercritical Fluids >Corrosion behavior of ferritic/martensitic steel P92 in supercritical water
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Corrosion behavior of ferritic/martensitic steel P92 in supercritical water

机译:铁素体/马氏体P92在超临界水中的腐蚀行为

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摘要

The corrosion behavior of a ferritic/martensitic steel P92 exposed to supercritical water (SCW) at 500-600 °C and 25 MPa was investigated by means of gravimetry, scanning electron microscope/energy dispersive X-ray spectroscopy and X-ray diffraction. A dual-layered oxide scale, which was mainly composed of an outer magnetite layer and an inner magnetite/spinel-mixed layer, formed on P92. The initial oxide scale was rather porous, while the porosity decreased with an increase of exposure time. Oxidation rates at three different temperatures followed the parabolic law. The oxidation at 600 °C was so severe that cracks occurred along grain boundaries in the oxide scale. A probable corrosion mechanism for P92 exposed in SCW was proposed based on the above observations, focusing on oxide formation by oxygen absorption without any metallic dissolution.
机译:通过重量分析,扫描电子显微镜/能量色散X射线光谱和X射线衍射研究了在500-600°C和25 MPa下暴露于超临界水(SCW)的铁素体/马氏体P92的腐蚀行为。在P92上形成的双层氧化皮,主要由外磁铁矿层和内磁铁矿/尖晶石混合层组成。初始氧化物垢相当多孔,而孔隙率随暴露时间的增加而降低。在三个不同温度下的氧化速率遵循抛物线定律。 600°C下的氧化非常严重,以至于在氧化皮的晶界处出现裂纹。基于上述观察结果,提出了SCW中暴露的P92可能的腐蚀机理,重点是通过氧气吸收而没有任何金属溶解的氧化物形成。

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