DocumentCode :
125055
Title :
Barkhausen noise application research in RPV irradiation embrittlement detection
Author :
Ming-Liang Fan ; Hai-tao Wang ; Ling-yun Wu ; Wang-jie Qian ; Xiang-bing Liu
Author_Institution :
Coll. of Autom., Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
fYear :
2014
fDate :
20-23 June 2014
Firstpage :
255
Lastpage :
258
Abstract :
Irradiation embrittlement appears due to Reactor Pressure Vessels (RPV) service under strong neutron irradiation for a long time. It is an important reason of accelerating the aging of RPV. As a special part of nuclear power plant (NPP), it decides the life of the whole NPP. Thus, it is necessary to estimate the current state of embrittlement and predict the trends of embrittlement through a new method. In order to predict the degree of RPV steel irradiation embrittlement and development trends and take the particularity of neutrons into consideration, this paper simulates the effects of neutron irradiation based on using different charged particles to replace neutron and using Barkhausen noise technology to detect the irradiation embrittlement of “Irradiation Steel”. Explore the relationship between the degree of Irradiation embrittlement of “Irradiation Steel” and charged particle irradiation dose. Finally, it draws conclusions that different charged particles have certain relevance in the aspect of irradiation and the characteristic values of BN signal have the overall tendency that they reduce along with the increase of irradiation dose. The inclusions build up references for irradiation embrittlement research of RPV steel under neutron irradiation.
Keywords :
Barkhausen effect; ageing; embrittlement; mechanical testing; power plants; pressure vessels; radiation effects; steel; BN signal; Barkhausen noise application research; Barkhausen noise technology; RPV aging; RPV irradiation embrittlement detection; RPV steel; RPV steel irradiation embrittlement; charged particle irradiation dose; charged particles; neutron irradiation; neutron irradiation effects; nuclear power plant; reactor pressure vessel service; Iron; Magnetic materials; Magnetomechanical effects; Neutrons; Noise; Radiation effects; Steel; Barkhausen noise; Irradiation embrittlement; Neutron irradiation; Reactor pressure vessel;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nondestructive Evaluation/Testing (FENDT), 2014 IEEE Far East Forum on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4799-4731-7
Type :
conf
DOI :
10.1109/FENDT.2014.6928275
Filename :
6928275
Link To Document :
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