王向

个人信息Personal Information

职称:特聘教授(人才)

博士生导师

学科:材料学

学位:博士

所在单位:材料科学与工程学院

联系方式:邮箱:wangxiang25@ustb.edu.cn

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Successful cladding tube production for next gen fission reactors using friction extrusion and pilgering

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影响因子:6.0

DOI码:10.1016/j.matchar.2026.116047

发表刊物:Materials Characterization

关键字:Ferritic ODS steels; 14YWT; Cladding tubes; ShAPE; Friction extrusion

摘要:The need for advanced materials in nuclear reactors has spotlighted ferritic oxide dispersion strengthened steels for their excellent high-temperature strength, irradiation resistance, and corrosion tolerance. However, conventional powder metallurgy routes such as mechanical alloying often involve multiple processing steps which are complex, time consuming and costly. Additionally, such techniques are often associated with microstructural inhomogeneities and defects. The current study introduces a novel friction extrusion process for producing fully consolidated oxide dispersion strengthened steel rods from powder precursors. The rods are subsequently machined into tubes with an approximate wall thickness of ∼1 mm by drilling holes through their center. The process leverages intense shear deformation at a reduced temperature (∼1000 °C) to achieve consolidation and uniform dispersion of oxides. As proof of concept, pilgering was applied to fabricate thin-walled cladding tubes of ∼0.5 mm wall thickness from the extruded tubes with uniform cross-sections. Microstructural and mechanical characterization confirmed a high dispersion of nanometric oxides (>1020/ m3) in both the extruded and pilgered tubes along with enhanced mechanical properties, comparable to those achieved via conventional methods.

合写作者:Jens Darsell, Dalong Zhang, Jia Liu, Kayla H Yano, Tingkun Liu, Xiang Wang, Xiao Li, Mark Rhodes, Stuart Maloy

第一作者:Aishani Sharma

通讯作者:Eda Aydogan

学科门类:工学

文献类型:J

页面范围:116047

是否译文:

发表时间:2026-01-20

收录刊物:SCI

发布期刊链接:https://www.sciencedirect.com/science/article/pii/S1044580326000835