Analytical study on rationalize and reliability improvement of maintenance against stress corrosion cracking in stainless steel welds of lwr primary system

被引:0
作者
Kyoung-Hee Gu
Kotoji Ando
Ki-Woo Nam
机构
[1] Pukyong National University,Dept. of Marine Design Convergence Engineering
[2] Yokohama Nat’l Univ.,Faculty of Engineering
[3] Pukyong National University,Dept. of Materials Science and Engineering
来源
Journal of Mechanical Science and Technology | 2023年 / 37卷
关键词
LWR primary system; Stainless steel; Stress corrosion cracking; Compressive residual stress; Surface crack nondamaging technology; Reliability improvement of maintenance;
D O I
暂无
中图分类号
学科分类号
摘要
SCC (stress corrosion cracking) may occur in stainless steel welds of the LWR primary systems, which required the welding repair after detecting it over nondestructive inspection (NDI) during the regular inspections. Recently, a new peening method was developed to convert the tensile residual stress of the weld into compressive residual stress, which relieved the SCC issue in the new plant although SCC problems still exist in conventional plant. It was found that fatigue crack and SCC can be rendered harmless by the compressive residual stress over a peening method. This paper proposes a method for increasing the validity and reliability of the weld maintenance for SCC by the following methods. ① Evaluate the depth (ahml) of SCC cracks that can be rendered harmless by peening in advance. ② Detect the cracks of approximately 0.7 ahml or more by NDI. ③ Repair only crack of 0.7 ahml or more by welding. ④ Apply peening to all welds. This paper proposes a method for evaluating ahml, and analyzed the dependence of residual stress and crack aspect ratio (As) via peening. The study showed that it was possible to improve the reliability and rationalize the maintenance for SCC by applying the surface crack nondamaging technology.
引用
收藏
页码:1773 / 1780
页数:7
相关论文
共 30 条
  • [1] Ando K(2022)Improvement of Safety and Reliability against Stress Corrosion Cracking of Stainless Steel Welds by Application of Surface Crack Harmless Technology High Pressure Institute of Japan 60 132-141
  • [2] Nam K W(2021)Analysis on peculiar fracture behaviour of shot peened metal using new threshold stress intensity factor range equation Fatigue Fract. Eng. Mater Struct. 44 306-316
  • [3] Kim M H(2021)Improving reliability of high strength material designed against fatigue limit using surface crack nondamaging technology fatigue shot peening Fatigue & Fracture of Engineering Materials & Structures 44 1602-1610
  • [4] Takahashi K(1988)Assessment of the integrity of structures containing defects Int. J. PVP 32 3-104
  • [5] Ando K(2019)A study on the unification of the threshold stress intensity factor for micro crack growth Transactions of Japan Society of Spring Engineers 64 39-44
  • [6] Kim M H(1981)An empirical stress-intensity factor equation for the surface crack Eng. Fract Mech. 15 185-192
  • [7] Nam K W(2008)Nondestructive inspection of metal fatigue Industrial Materials (Japan) 56 86-89
  • [8] Nam K W(2006)Lase-ultrasonic nondestructive testing and its application to nuclear industry Toshiba Review (Japan) 61 44-47
  • [9] Ando K(2020)Improvement of reliability of fatigue properties of high strength steel applying surface crack non-damaging technology Journal of High Pressure Institute of Japan 58 263-271
  • [10] Kim M H(undefined)undefined undefined undefined undefined-undefined