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序号 | 姓名 | 专业 | 学号 | 平均成绩 | 代表性科研成果 | 科研分明细 | 科研计分 |
|
1 | 许鑫和 | 080502 材料学 | 21820027 | 87.17 | 1、《Ameliorating dilution of Cr and Ni and improving PWSCC resistance of 52 M overlay by hot wire plasma arc cladding》,《Journal of Materials Research and Technology》,31,无,第一作者,1392-1408,期刊论文,已发表,2024,已认定,一区,6.2 2、《Effect of material chemical composition on oxidation and stress corrosion cracking of the submerged arc welding Alloy 52M overlay in a simulated PWR primary water》,《Journal of Nuclear Materials》,588,第一作者,154753,期刊论文,已发表,2024,已认定,一区,2.8 3、《Nano-micrometer scale characterization of PWSCC crack tips in the transition zone of 52M overlay and the implication to intergranular cracking》,《Journal of Nuclear Materials》,第一作者,期刊论文,已发表,2024,已认定,一区,2.8 4、《Assessing the influence of welding-induced mechanics on oxidation and stress corrosion cracking in an Alloy 600-Alloy 152 M weldment under simulated PWR primary water》,《Journal of Nuclear Materials》,601,无,第一作者,155349,期刊论文,已发表,2024,已认定,一区,2.8 5、《Effects of Matrix and Dendrite Boundary Composition on Stress Corrosion Cracking Performance of Alloy 52M Buttering Layer in Simulated Pressurized Water Reactor Primary Water》,《Corrosion》,80,1,第三作者,68-84,期刊论文,已发表,2023,已认定,四区,1.6 6、《Macroscopic and microscopic element distribution in transition zones of GTAW Alloy 52M weld joint and its PWSCC growth behaviour》,《Journal of Nuclear Materials》,601,无,第二作者,155308,期刊论文,已发表,2024,已认定,一区,2.8 7、《Determining SCC resistance of stainless steel claddings in high- temperature water by constant load crack growth tests and slow strain rate tests》,《Journal of Nuclear Materials》,588,无,第二作者,154796,期刊论文,已发表,2024,已认定,一区,2.8
| 4(1,SCI一区) 2(2,SCI一区) 1(3,SCI四区) | 158.7 |