首页> 外文会议>International symposium on effects of radiation on materials >Fracture Toughness, Thermo-Electric Power, and Atom Probe Investigations of JRQ Steel in I, IA, IAR, and IARA Conditions
【24h】

Fracture Toughness, Thermo-Electric Power, and Atom Probe Investigations of JRQ Steel in I, IA, IAR, and IARA Conditions

机译:JRQ钢在I,IA,IAR和IARA条件下的断裂韧性,热电功率和原子探针研究

获取原文

摘要

The International Atomic Energy Agency has sponsored a number of studies involving a specific plate of A533 grade B class 1 steel designated heat JRQ. In this cooperative study between the Paul Scherrer Institute (PSI) and the Heavy-Section Steel Irradiation Program of Oak Ridge National Laboratory (ORNL), groups of Charpy impact, tensile, and precracked Charpy specimens of the JRQ plate were irradiated by PSI to four different fast neutron fluences [from 0.39 to 5.0×10~(23) n/m~2 (>1 MeV)] in a test reactor. Additional specimens were given a post-irradiation thermal annealing treatment at 460°C for 18 h when 50 % of the target fluence was reached, followed by reirradiation to the same target fluences for the four groups of irradiated specimens. Additionally, ORNL thermally annealed some of the reirradiated specimens, as well as some of those in the irradiated only condition. Charpy impact, tensile, fracture toughness, and hardness tests have been performed to evaluate material response in the various conditions and to compare with the unirradiated material. Additionally, thermo-electric power experiments have been conducted by PSI, while atom probe tomography evaluations have been conducted by ORNL. Except at the highest fluence, the results show that the material given an intermediate annealing treatment exhibited irradiation-induced transition temperature shifts about the same as those that were only irradiated. However, the upper-shelf energies were generally higher and the yield strengths were generally lower for the reirradiated groups. The intermediate thermal annealing resulted in less reirradiation embrittlement of fracture toughness than Charpy impact toughness, while annealing after reirradiation resulted in significant increases in Charpy upper-shelf energy above that in the unirradiated condition. Irradiation-induced and IAR Charpy impact transition temperature shifts exhibit a nearly linear correlation with Seebeck coefficient in the I and IAR conditions. ORNL has also sent additional specimens from I, IA, IAR, and IARA test of JRQ for additional TEP testing. After irradiation, a high number density of ultrafme Cu-. Mn-, Ni-, Si-, and P-enriched precipitates were observed by atom probe tomography. Phosphorus segregation to dislocations was also observed. A significantly lower number density of larger Cu-, Mn-, and Ni- enriched precipitates was observed after the second annealing treatment.
机译:国际原子能机构已经资助了许多研究,涉及特定板的A533 B级1级钢,称为热JRQ。在Paul Scherrer研究所(PSI)和橡树岭国家实验室(ORNL)的重截面钢辐照计划之间的这项合作研究中,通过PSI将JRQ板的夏比冲击,拉伸和预裂夏比试样组辐照到四个测试反应堆中的不同快中子注量[从0.39到5.0×10〜(23)n / m〜2(> 1 MeV)]。当达到目标通量的50%时,对其他标本进行460°C的辐照后热退火处理,持续18 h,然后再对四组辐照标本重新辐照至相同的目标通量。另外,ORNL对一些重新辐照的样品以及仅在辐照条件下的一些样品进行热退火。已经进行了夏比冲击,拉伸,断裂韧性和硬度测试,以评估各种条件下的材料响应并与未经辐照的材料进行比较。此外,PSI进行了热电功率实验,而ORNL进行了原子探针层析成像评估。结果显示,除了最高通量外,经过中间退火处理的材料与由辐照引起的转变温度变化大致相同。然而,再照射的组的上架能量通常较高,屈服强度通常较低。中间热退火导致的断裂韧性的重新辐照脆化小于夏比冲击韧性,而再辐照后的退火导致夏比上架能量显着增加,高于未辐照条件。在I和IAR条件下,辐照引起的和IAR夏比冲击转变温度变化与塞贝克系数呈现出几乎线性的相关性。 ORNL还从JRQ的I,IA,IAR和IARA测试中发送了其他标本,以进行其他TEP测试。辐照后,有高密度的超细Cu-。通过原子探针层析成像观察到了富含Mn,Ni,Si和P的沉淀物。还观察到磷偏析到位错。在第二次退火处理后,观察到较大的富集了Cu,Mn和Ni的析出物的数密度明显降低。

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