首页> 外文会议>Symposium on effects of radiation on materials >VARIABILITY OF IRRADIATION CREEP AND SWELLING OF HT9 IRRADIATED TO HIGH NEUTRON FLUENCE AT 400-600°C
【24h】

VARIABILITY OF IRRADIATION CREEP AND SWELLING OF HT9 IRRADIATED TO HIGH NEUTRON FLUENCE AT 400-600°C

机译:在400-600°C下照射到高中中子流量的HT9的辐射蠕变和肿胀的可变性

获取原文

摘要

Sets of pressurized tubes constructed from a combination of three lots of HT9 and two heat-treatments were examined after irradiation in FFTF-MOTA at four different temperatures between 400 and 600°C. Diametral measurements indicated that small amounts of swelling occurred at 400°C, with the magnitude of the swelling varying from tube-set to tube-set. At 495, 550, and 600°C, no indications of swelling were observed. Over a limited stress range that decreased with increasing irradiation temperature, the irradiation creep was found to be proportional to the stress level and mirrored the swelling behavior, confirming the B_o + DS creep model. The creep compliance, B_o, appears to be about half of that observed in austenitic steels, whereas the creep-swelling coupling coefficient, D, appears to be comparable to that of austenitics. At the highest stress levels examined, the value of the stress exponent became much greater than 1.0. Higher irradiation temperatures resulted in creep behavior with pronounced thermal creep characteristics. A primary creep transient was observed at the three higher irradiation temperatures and increased in magnitude with increasing irradiation temperature, while a stress exponent between 1.0 and 2.0 was observed at 550°C.
机译:在400和600℃之间的四个不同温度下在FFTF-MOTA照射后,检查了来自的三批HT9和两个热处理的组合构成的加压管套。直径测量表明,少量的在400℃下发生肿胀,与溶胀变的幅度从管到集管组。在495,550和600℃,没有观察到溶胀的指示。在这段随辐照温度降低有限应力范围,照射蠕变被认为是成比例的应力水平和镜像的溶胀行为,证实了B_o + DS蠕变模型。所述蠕变柔量,B_o,看来是约的是,在奥氏体钢观察到一半,而蠕变溶胀耦合系数,d,看来是比得上奥氏体不锈钢的。在检查了最高应力水平,应力指数值多了大于1.0。较高的照射下产生了具有显着热蠕变特性蠕变行为。在三个更高照射温度下观察,且在量值随照射温度升高的主要蠕变短暂的,而在550℃观察到1.0和2.0之间的应力指数。

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