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Effect of grain refinement on corrosion of ferritic-martensitic steels in supercritical water environment

机译:细化对超临界水环境中铁素体-马氏体钢腐蚀的影响

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摘要

The effects of grain refinement on the corrosion behavior of three ferritic-martensitic (F/M) steels, HT9, T91, and NF616, and two binary model alloys Fe-15%Cr and Fe-18%Cr in supercritical water (SCW) have been investigated. Grain refinement down to a size of about one micron in the surface regions, was achieved by introducing severe plastic deformation by shot peening. After exposure to SCW with 25 ppb oxygen at 500℃ for up to 3000 h, an improvement in corrosion resistance was observed in grain-refined samples because of the enhanced diffusion of chromium on the surface, through a high density of grain boundaries. The chromium content in the steels and the exposure durations in SCW were determined to be important factors influencing the efficacy of the grain refinement effects. These results are supported by both experimental evidence and theoretical predictions. Another approach for grain refinement, equal channel angular pressing (ECAP), was also investigated for T91 steel. ECAP resulted in lower weight gain due to corrosion compared to the untreated samples, but exhibited a slightly higher weight gain compared to the shot-peened samples after long-term exposures in SCW which is probably caused by different fractions of high-angle grain boundaries in grain-refined regions, introduced by different grain refinement techniques.
机译:晶粒细化对三种铁素体-马氏体(F / M)钢HT9,T91和NF616以及两种二元模型合金Fe-15%Cr和Fe-18%Cr在超临界水(SCW)中的腐蚀行为的影响已被调查。通过喷丸处理引起严重的塑性变形,可将表面区域的晶粒细化至约1微米。在500℃的25 ppb氧气下暴露于SCW中长达3000小时后,由于高密度晶界中铬在表面的扩散增强,晶粒细化样品的耐蚀性得到了改善。确定钢中的铬含量和SCW中的暴露时间是影响晶粒细化效果的重要因素。这些结果得到了实验证据和理论预测的支持。还研究了T91钢的另一种细化晶粒的方法,即等通道角挤压(ECAP)。与未经处理的样品相比,ECAP由于腐蚀而导致的重量增加较低,但与SCW长期暴露后的喷丸处理样品相比,其重量增加略高,这可能是由于不同比例的高角度晶界引起的。由不同的晶粒细化技术引入的晶粒细化区域。

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