Magnetic Indicator for Evaluating Cu Clustering and Hardening Effect in RPV Model Alloy

Author:

Jia Wenqing12,Quan Qiwei12,Qian Wangjie12,Bian Chuang3,Xu Chaoliang12,Yin Jian12,Li Bin4,Li Yuanfei12,Fan Minyu12,Liu Xiangbing12,Wang Haitao3

Affiliation:

1. Suzhou Nuclear Power Research Institute, Suzhou 215004, China

2. National Engineering Research Center for Nuclear Power Plant Safety and Reliability, Suzhou 215004, China

3. School of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China

4. Institute of Materials, Shanghai University, Shanghai 200072, China

Abstract

The reactor pressure vessel (RPV) is a critical barrier in nuclear power plants, but its embrittlement during service poses a significant safety challenge. This study investigated the effects of Cu-enriched clusters on the mechanical and magnetic properties of Fe-0.9 wt.%Cu model alloys through thermal aging. Using Vickers hardness tests, Magnetic Barkhausen Noise (MBN) detection, and Atom Probe Tomography (APT), the study aimed to establish a quantitative correlation between MBN signals, Vickers hardness, and Cu-enriched clusters, facilitating the non-destructive testing of RPV embrittlement. Experimental results showed that the hardness and MBN parameters (RMS and Vpp values) changed significantly with aging time. The hardness increased rapidly in the early stage (under-aged), followed by a plateau and then a decreasing trend (over-aged). In contrast, MBN parameters decreased initially and then increased. APT analysis revealed that Cu-enriched clusters increase in size to 4.60 nm and coalesced during aging, with their number density peaking to 3.76 × 1023 m−3 before declining. An inverse linear correlation was found between MBN signals and the combined factor Nd2Rg (product of the number density squared and the mean radius of Cu-enriched clusters). This correlation was consistent across both under-aged and over-aged states, suggesting that MBN signals can serve as applicable indicators for the non-destructive evaluation of RPV steel embrittlement.

Funder

Guangdong Major Project of Basic and Applied Basic Research

National Key Research and Development Program of China

Guangdong Basic and Applied Basic Research Foundation

National Natural Science Foundation of China

Publisher

MDPI AG

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