首页> 外文会议>The symposium of effects of radiation on nuclear materials >Flux Effects on Radiation Induced Aging Behaviour of Low Alloy Steel Weld Material with High Nickel and Manganese Content
【24h】

Flux Effects on Radiation Induced Aging Behaviour of Low Alloy Steel Weld Material with High Nickel and Manganese Content

机译:用高镍和锰含量的低合金钢焊接材料辐射诱导辐射诱导老化行为的助焊剂效应

获取原文

摘要

As part of an on-going effort to verify the long-term fitness for service of the PWR-plants at the Swedish Ringhals site, weld material relevant for the two most modern units has been irradiated in the OECD Halden Materials test reactor (MTR) for up to three cycles of operation. The dose level achieved for each cycle is approximately equivalent to 20 years of operation during Light Water Reactor (LWR) conditions. The purpose of the test was three-fold. The first objective was to study the effect of the dose rate, the flux, -level on these kind of materials in order to verify or to discard the use of MTR-irradiated materials as part of the model building to understand the evolution of the mechanical behaviour under LWR conditions. The second objective was to enhance the available database of post-irradiation mechanical properties for analyses purposes, such as reactor pressure-temperature limit curves and defect tolerance analyses. Finally, the third objective was to produce ample amount of relevant irradiated material, enabling a comprehensive microscopy analysis of the evolution of the structure in the material to establish the occurrence frequency and type of precipitates and agglomerates, and if possible to study the occurrence of late blooming phases in high Ni and Mn bearing materials. This study will concentrate on the two first objectives. From the study, it appears clear that with these materials, it is possible to enhance the flux to speed up the irradiation induced degradation and still produce results that fall well in line with data extracted from the normal surveillance programs of the reactors. The flux effect as analysed from the mechanical property data appears to be negligible, if any.
机译:作为一个持续的努力,以验证在瑞典Ringhals网站PWR-植物的服务长期健身,焊接相关的两个最现代的单位在OECD哈尔登材料试验反应堆已被辐照材料部分(MTR)达操作的三个周期。对于每个循环达到的剂量水平是轻水反应堆(LWR)条件期间大约相当于20年的运行。测试的目的是三倍。第一个目标是研究,以验证或丢弃使用MTR-辐照材料作为模型建筑物的一部分了解机械演变的剂量率,通量, - 电平在这些种材料的影响LWR条件下的行为。第二个目的是提高用于分析目的,例如反应器压力温度限制曲线和缺陷公差分析照射后机械特性的可用数据库。最后,第三个目标是产生相关辐照材料的充足量,使结构的演变进行了全面的显微镜分析材料中建立的发生频率和类型的沉淀和结块,并且如果可能的话,研究后期发生开花在高Ni和Mn的轴承材料相。这项研究将集中在两个第一的目标。从研究,看来清楚,用这些材料,可以增强磁通来加快照射诱导的降解,并且仍然产生符合从反应器的正常监视程序提取的数据很好地落在结果。从机械性能数据分析的磁通作用似乎是微不足道的,如果有的话。

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