Effect of neutron irradiation embrittlement on cyclic hardening behavior of core shroud assembly in pressurized water reactor under beyond-design basis earthquake

J. S. Kim, Jun-Min Seo, Yun‐Jae Kim, Young In Choi, C. Oh, Yong Beum Kim
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Abstract

This paper presents investigation results on effect of neutron irradiation embrittlement on cyclic hardening behavior of core shroud assembly in pressurized water reactor under beyond-design basis earthquake (BDBE). In order to simulate the cyclic hardening behavior considering the neutron irradiation embrittlement, the previous user subroutines developed for monotonic hardening behavior were updated based on some cyclic hardening test results of irradiation-simulated specimens. Finite element (FE) elastic-plastic seismic analysis was performed by using Chaboche combined hardening models considering cyclic hardening or cyclic softening and a bi-linear kinematic hardening model. As a result, it is found that the bi-linear kinematic hardening model derived the most conservative results, and the Chaboche combined hardening model considering cyclic softening derived the analysis results close to those of the bi-linear kinematic hardening model. In addition, variation of the FE elastic-plastic seismic analysis results vs. neutron irradiation dose was investigated using the bi-linear kinematic hardening model. Finally, it is identified that von-Mises effective stress and plastic strain energy increase and equivalent plastic strain decreases with increasing the neutron irradiation dose.This paper presents investigation results on effect of neutron irradiation embrittlement on cyclic hardening behavior of core shroud assembly in pressurized water reactor under beyond-design basis earthquake (BDBE). In order to simulate the cyclic hardening behavior considering the neutron irradiation embrittlement, the previous user subroutines developed for monotonic hardening behavior were updated based on some cyclic hardening test results of irradiation-simulated specimens. Finite element (FE) elastic-plastic seismic analysis was performed by using Chaboche combined hardening models considering cyclic hardening or cyclic softening and a bi-linear kinematic hardening model. As a result, it is found that the bi-linear kinematic hardening model derived the most conservative results, and the Chaboche combined hardening model considering cyclic softening derived the analysis results close to those of the bi-linear kinematic hardening model. In addition, variation of the FE elastic-plastic seismic analysis...
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超设计基础地震下中子辐照脆化对压水堆堆芯包壳组件循环硬化行为的影响
本文介绍了在超设计基础地震作用下中子辐照脆化对压水堆堆芯包壳组件循环硬化行为影响的研究结果。为了模拟考虑中子辐照脆性的循环硬化行为,基于辐照模拟试样的循环硬化试验结果,对以往开发的单调硬化行为用户子程序进行了更新。采用考虑循环硬化或循环软化的Chaboche组合硬化模型和双线性运动硬化模型进行有限元弹塑性地震分析。结果表明,双线性运动硬化模型的分析结果最为保守,考虑循环软化的Chaboche联合硬化模型的分析结果与双线性运动硬化模型的分析结果较为接近。此外,采用双线性运动硬化模型研究了有限元弹塑性地震分析结果随中子辐照剂量的变化规律。结果表明,随着中子辐照剂量的增加,材料的von-Mises有效应力和塑性应变能增大,等效塑性应变减小。本文介绍了在超设计基础地震作用下中子辐照脆化对压水堆堆芯包壳组件循环硬化行为影响的研究结果。为了模拟考虑中子辐照脆性的循环硬化行为,基于辐照模拟试样的循环硬化试验结果,对以往开发的单调硬化行为用户子程序进行了更新。采用考虑循环硬化或循环软化的Chaboche组合硬化模型和双线性运动硬化模型进行有限元弹塑性地震分析。结果表明,双线性运动硬化模型的分析结果最为保守,考虑循环软化的Chaboche联合硬化模型的分析结果与双线性运动硬化模型的分析结果较为接近。此外,有限元弹塑性地震分析的变化。
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