首页> 外文期刊>Frattura e Integrita Strutturale >Leak-Before-Break methodology applied to different piping materials: a performance evaluation
【24h】

Leak-Before-Break methodology applied to different piping materials: a performance evaluation

机译:适用于不同管道材料的泄漏前断裂方法:性能评估

获取原文
           

摘要

This paper presents a study of the application of Leak-Before-Break (LBB) to nuclear piping using three different materials. Based on the fracture mechanics, the LBB concept considers that a leakage from a crack can be detected before it reaches a critical size that implies the pipe failure, that is, the LBB analysis demonstrates through a technical justification that the probability of pipe rupture is extremely low. Among the aspects that involve the application of LBB, the main ones are: the definition of the material properties, which are extracted through tensile and fracture tests; the leakage analysis, which determines the rate of leakage due to the presence of a through-wall crack; and the analysis that verifies if the crack is stable considering the failure modes by ductile tear and plastic collapse. The materials SA-508 Cl. 3, SA-106 Gr. B and SA-376-TP304 were evaluated in relation to their performances for LBB. Data extracted from literature cases were used for the materials properties, and for the geometry and loadings of the pipe, all corresponding to the primary circuit of a PWR reactor. After application of the LBB, it was verified that all three materials met the limits established in the methodology. SA-508 Cl. 3 and SA-376-TP304 steels showed the best performance for ductile tear failure and plastic collapse failure, respectively, and SA-106 Gr. B steel had the lowest performance in both. All three materials presented plastic collapse as the most likely failure mode. In general, SA-376-TP304 steel obtained the best performance for the LBB among the three materials evaluated in this work.
机译:本文介绍了使用三种不同材料的“先漏后漏”(LBB)在核管道中的应用。基于断裂力学,LBB概念认为裂缝的泄漏可以在达到意味着管道故障的临界尺寸之前检测到,也就是说,LBB分析通过技术论证证明了管道破裂的可能性非常大。低。在涉及LBB的应用中,主要的方面包括:通过拉伸和断裂试验提取的材料特性的定义;泄漏分析,确定由于存在贯穿壁裂缝而引起的泄漏率;并通过延性撕裂和塑性塌陷的破坏模式来验证裂纹是否稳定。材料SA-508 Cl。 3,SA-106 Gr。评估了B和SA-376-TP304的LBB性能。从文献案例中提取的数据用于材料特性,管道的几何形状和载荷,所有这些都对应于PWR反应堆的一次回路。在应用LBB之后,已验证所有三种材料均符合该方法中确定的限制。 SA-508 CL。 3和SA-376-TP304分别对延性撕裂破坏和塑性塌陷破坏和SA-106 Gr表现出最佳性能。 B钢在这两种材料中性能最低。所有这三种材料都将塑性塌陷视为最可能的破坏模式。通常,在这项工作评估的三种材料中,SA-376-TP304钢获得的LBB性能最佳。

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