Study on Data Multiplication of Impact Toughness by Specimen Reconstitution Technique and Master Curve

被引:0
|
作者
Qiang-mao Wan
Li-sha Chen
Jian-jun Pang
Shao-fei Jiang
Jun Zhou
机构
[1] Nuclear Industry College,School of Postgraduate Education
[2] Zhejiang University of Water Resources and Electric Power,School of Mechanical and Automotive Engineering
[3] Zhejiang University of Technology,Post
[4] Zhejiang Institute of Mechanical and Electrical Engineering,Doctorate Research Station of Mechanical Engineering
[5] Wanfeng Auto Holding Group Co. Ltd.,Public Basic Training Department
来源
Journal of Failure Analysis and Prevention | 2022年 / 22卷
关键词
Specimen reconstitution technique; Ductile–brittle transition temperature curve; Master curve method;
D O I
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中图分类号
学科分类号
摘要
The space of irradiation surveillance capsules of nuclear power plants is limited. How to obtain the multiplicative toughness data of service materials based on these monitoring specimens is an important challenge in nuclear engineering. The reconstitution specimens could be reused to gain newer data or putted back into radiation monitoring tubes to gain highly irradiated material performance data for extended life operation of nuclear power plants. In this study, the Charpy V-notched impact test was carried out on the intact and reconstituted specimens of 30Mn2V steel by electron beam welding recombination technology, the multiplicative impact test data were obtained, and the relationship between impact energy of fracture with temperature was studied. The impact energy is converted into 1 T-CT equivalent fracture toughness, and then the reference temperature and master curve equation of 30Mn2V steel are calculated by the multi-temperature method. The consistency and dispersion of fracture toughness between reconstituted specimens and intact specimens are compared and studied. In this paper, the impact toughness data of materials are multiplied by specimens reconstitution technology, and the fracture toughness distribution in the ductile–brittle transition zone of the ferritic steel is predicted and evaluated.
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页码:1229 / 1235
页数:6
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