首页> 外文会议>Symposium on Mechanisms and Mechanics of Fracture: the John Knott Symposium, Oct 7-10, 2002, Columbus, Ohio, USA >EFFECTS OF CYCLIC LOADING, DYNAMIC STRAIN-AGING AND NEUTRON IRRADIATION ON FRACTURE BEHAVIOR OF A516 GRADE 70 AND OTHER STEELS
【24h】

EFFECTS OF CYCLIC LOADING, DYNAMIC STRAIN-AGING AND NEUTRON IRRADIATION ON FRACTURE BEHAVIOR OF A516 GRADE 70 AND OTHER STEELS

机译:循环载荷,动态应变时效和中子辐照对A516级70和其他钢的断裂行为的影响

获取原文
获取原文并翻译 | 示例

摘要

Ferritic steels commonly used for pressure vessels and reactor supports in light water reactors (LWRs) are known to exhibit radiation embrittlement in terms of decreased toughness and increased DBTT following exposure to neutron radiation. Recent work indicated decreased toughness during reverse-cyclic loading that has implications on reliability of these structures under seismic loading conditions. Moreover, dynamic strain aging (DSA) results in decreased ductility and toughness. We summarize some of our work on these aspects along with synergistic effects, of interstitial impurity atoms (IIAs) and radiation induced point defects that result in interesting beneficial effects of radiation exposure at appropriate temperature and strain-rate conditions. Radiation-defect interactions were investigated on pure iron. Si-killed mild steel, A516 and reactor vessel steels (A533B). While dips in fracture toughness are observed in A533B steel in the DSA region, A516 steel exhibited at best a plateau. Load-displacement curves during Jlc tests on CT specimens did show load drops in the DSA regime. The effect of load ratio (R) on J versus load-line displacement curves for A516 steel indicated decreased Jlc as load ratio is decreased. The hardness and the ball-indentation tests were performed to characterize the strain hardening at the crack tip. In addition, studies on fast vs total (thermal+fast) neutron spectra revealed unexpected results due to the influence of radiation exposure on source hardening component of the yield stress; grain-size of pure iron plays a significant role in these effects.
机译:已知通常用于轻水反应堆(LWR)中的压力容器和反应堆支架的铁素体钢会在降低韧性和暴露于中子辐射后增加DBTT的情况下表现出辐射脆性。最近的工作表明,在逆向荷载作用下韧性降低,这对地震荷载条件下这些结构的可靠性产生了影响。此外,动态应变时效(DSA)导致延展性和韧性下降。我们总结了在这些方面的一些工作以及间隙杂质原子(IIA)和辐射诱发的点缺陷的协同效应,这些效应在适当的温度和应变速率条件下产生了令人关注的辐射有益效果。在纯铁上研究了辐射缺陷相互作用。硅镇静低碳钢,A516和反应堆容器钢(A533B)。在DSA地区,观察到A533B钢的断裂韧性有所下降,而A516钢则最好呈现出平稳状态。在CT样品的Jlc测试期间,载荷-位移曲线确实显示出DSA方案中的载荷下降。负载比(R)对A516钢的J与负载线位移曲线的关系表明,随着负载比的减小,Jlc减小。进行硬度和球压痕测试以表征裂纹尖端处的应变硬化。此外,由于辐射暴露对屈服应力的源硬化成分的影响,对快中子谱图与总中子谱图(热+快谱)的研究揭示了出乎意料的结果。纯铁的晶粒度在这些作用中起着重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号