首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Microstructure, corrosion and mechanical properties characterization of AISI type 316L(N) stainless steel and modified 9Cr-1Mo steel after 40,000 h of dynamic sodium exposure at 525 degrees C
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Microstructure, corrosion and mechanical properties characterization of AISI type 316L(N) stainless steel and modified 9Cr-1Mo steel after 40,000 h of dynamic sodium exposure at 525 degrees C

机译:AISI型316L(N)不锈钢和改性9Cr-1Mo钢的组织,腐蚀和机械性能特征在525摄氏度下40,000小时后改性9Cr-1Mo钢

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This paper presents results of a comprehensive study on 316L(N) stainless steel (SS) and modified 9Cr-1Mo steel exposed to flowing sodium at 525 degrees C for 40,000 h in a bi-metallic (BIM) loop. A non-uniform ferrite layer of 8-14 mu m thickness was formed on the surface of 316L(N) SS due to elemental leaching of Ni and Cr. Higher carbon activity (a(C)) in sodium resulted in carburization of 316L(N) SS with a surface carbon content of 0.5 wt.%. The effective carbon diffusion coefficient, D-C(eff) was estimated to be 3.64 x 10(-19) m(2)/s. Consequent to carbon transport in 316L(N) SS, extensive sensitization was detected and the charge density, P-a, values for sodium exposed, thermally aged and carburized zone were found to be 23.3, 18.5 and 4.8 C/cm(2), respectively. 42 and 60% decrease in percent total elongation (%TE) and percent reduction in area (%RA), respectively were observed in sodium-exposed 316L(N) SS, as compared to thermally aged specimen, due to surface carburization. Unlike 316L(N) SS, modified 9Cr-1Mo steel did not show carburization, however, it showed a decrease in the impact energy values due to the presence of Laves phase and M23C6 precipitates in sodium-exposed and thermally aged specimens. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文介绍了对316L(N)不锈钢(SS)的综合研究的结果,并在双金属(BIM)环中以525℃下暴露于525℃的流动钠的改性9Cr-1mo钢。由于Ni和Cr的元素浸出,在316L(n)SS的表面上形成了8-14μm厚度的非均匀铁氧体层。钠中的碳活性(A(c))导致316L(n)SS的渗碳,表面碳含量为0.5重量%。估计有效的碳扩散系数D-C(EFF)为3.64×10(-19)m(2)/ s。由316L(n)SS中的碳转运,检测到广泛的致敏,并且发现暴露的钠,热老化和渗碳区的电荷密度,P-A值,分别为23.3,18.5和4.8c / cm(2)。与热老化的样品相比,在钠的316L(n)SS中,观察到42和60%的总伸长率(%TE)和面积(%Ra)的减少百分比,与热老化的样品相比,由于表面渗碳,在热老化的样本中观察到。与316L(N)SS不同,改性的9CR-1MO钢未显示出渗碳,然而,由于疏水相和M23C6在暴露和热老化的样本中沉淀出来的抗冲能值。 (c)2019 Elsevier B.v.保留所有权利。

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