首页> 外文期刊>Computational Materials Science >Propagation and arrest of cleavage cracks in a nuclear pressure vessel steel
【24h】

Propagation and arrest of cleavage cracks in a nuclear pressure vessel steel

机译:核压力容器钢中解理裂纹的传播和阻止

获取原文
获取原文并翻译 | 示例
           

摘要

The safety of nuclear structures is crucial while the service time of nuclear power stations is planned to be extended up to 60 years. Initiation stage of cracks is still considered as a key issue, but more and more component integrity analyses investigate the crack arrest possibility. This study deals with physical mechanisms of cleavage crack propagation and numerical computations related to brittle fracture. Experiments using standard measuring techniques and a high-speed framing camera system, as well as Scanning Electron Microscope fracture surface analyses were carried out on thin CT specimens made of 16MND5 PWR vessel steel. The elastic-viscoplastic behavior of the ferritic steel has been studied and taken into account in numerical simulations. The eXtended Finite Element Method (X-FEM) is used in CAST3M finite element analysis software to model crack propagation. Numerical computations combine a local non-linear dynamic approach and a fracture criterion based on critical cleavage stress, whereas current standards in the nuclear field use a global static approach to fracture to depict crack initiation and arrest. The links of the criterion with temperature and strain rate are considered thanks to experiments, SEM fractographies and 2D computations in order to get a robust physical model which can be effective for model-based predictions of industrial structures.
机译:核结构的安全至关重要,而核电站的服务时间计划延长至60年。裂纹的起爆阶段仍然被认为是一个关键问题,但是越来越多的组件完整性分析研究了裂纹止裂的可能性。本研究探讨了裂隙裂纹扩展的物理机制以及与脆性断裂有关的数值计算。在由16MND5 PWR容器钢制成的薄CT样品上,进行了使用标准测量技术和高速成帧照相机系统的实验,以及扫描电子显微镜的断裂表面分析。研究了铁素体钢的弹性-粘塑性行为,并在数值模拟中将其考虑在内。在CAST3M有限元分析软件中使用扩展有限元方法(X-FEM)对裂纹扩展进行建模。数值计算结合了局部非线性动态方法和基于临界劈裂应力的断裂准则,而核领域的当前标准使用全局静态方法来断裂,以描述裂纹的产生和阻止。得益于实验,SEM形貌学和2D计算,考虑了标准与温度和应变率之间的联系,从而获得了可用于基于模型的工业结构预测有效的强大物理模型。

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