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Ion-induced irradiation hardening of the weld heat-affected zone in low alloy steel

机译:低合金钢中焊缝热影响区的离子诱导辐照硬化

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摘要

The microstructural distribution in the heat-affected zone (HAZ) under the stainless overlay cladding of low alloy steel was investigated. The distribution of the coarse-grain (CG) HAZ and the fine-grain (FG) HAZ by metallurgical observation agreed well with the results of finite element analysis. Base metal contained mixed bainite with ferrite, whereas the CGHAZ and the FGHAZ contained mixed lower bainite with martensite and mixed upper bainite with ferrite, respectively. Ferrite fraction in FGHAZ was higher than those other areas. After ion irradiation with 0.5 dpa, irradiation hardening of HAZ was higher than that of base metal. The irradiation hardening increased with increasing volume fraction of solute clusters, although irradiation hardening at the FGHAZ was greater than that at the CGHAZ, which contained more clusters than the FGHAZ. This difference in irradiation hardening may be due to the differences in the amount of ferrite and others in the different microstructures.
机译:研究了低合金钢不锈覆盖层下热影响区(HAZ)的组织分布。冶金观察表明,粗晶粒热影响区和细晶粒热影响区的分布与有限元分析结果吻合较好。贱金属包含贝氏体和铁素体的混合,而CGHAZ和FGHAZ包含下贝氏体和马氏体的混合以及上贝氏体和铁素体的混合。 FGHAZ中的铁素体含量高于其他地区。用0.5 dpa的离子辐照后,HAZ的辐照硬化性高于母材。辐射硬化随着溶质簇的体积分数的增加而增加,尽管在FGHAZ处的辐射硬化大于在CGHAZ处的辐射硬化,后者比FGHAZ包含更多的簇。辐照硬化的这种差异可能是由于不同显微组织中铁素体和其他元素含量的差异所致。

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