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首页> 外文期刊>Oxidation of Metals >Growth and Exfoliation Behavior of the Oxide Scale on 316L and T91 in Flowing Liquid Lead-Bismuth Eutectic at 480 degrees C
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Growth and Exfoliation Behavior of the Oxide Scale on 316L and T91 in Flowing Liquid Lead-Bismuth Eutectic at 480 degrees C

机译:在480℃下流动液体铅 - 铋的316L和T91在316L和T91中的生长和剥离行为

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Corrosion tests of the 316L and T91 steels were performed in flowing lead-bismuth eutectic (LBE) with a flowing velocity of 0.3 m/s at 480 degrees C up to 3000 h. The microstructure and growth kinetics of the oxide scale and metal dissolution for both steels were experimentally determined. The results showed that a thin Fe-Cr spinel layer is formed on the 316L surface, while the oxide scale on the T91 surface consists of magnetite, Fe-Cr spinel and internal oxidation zone. At the first 1500 h, the growth of the oxide layer follows a linear law and a parabolic law for the 316L and T91, respectively. With the increase in exposure time, the oxide scale on both steels partly spalls and subsequently continues to grow in situ. Compared with the T91, although the oxide scale on the 316L surface is thinner, more steel constituents dissolve into the LBE.
机译:在流动的铅 - 铋共晶(LBE)中进行316L和T91钢的腐蚀试验,其流速为0.3m / s,480℃至3000小时。 实验确定氧化物尺度和金属溶解的微观结构和生长动力学。 结果表明,在316L表面上形成薄的Fe-Cr尖晶石层,而T91表面上的氧化物刻度由磁铁矿,Fe-Cr尖晶石和内氧化区组成。 在前1500小时,氧化物层的生长分别跟随316L和T91的线性法和抛物线法。 随着曝光时间的增加,两个钢上的氧化物刻度部分突出,随后继续原位生长。 与T91相比,尽管316L表面上的氧化物刻度较薄,但更多的钢结构溶解到LBE中。

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