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Study on the Improvement of Weld-joint Reliability in Waterwall Tubes of the Ultra Supercritical Coal Fired Boiler

석탄화력발전용 초초임계압(USC) 보일러 수냉벽 튜브 용접 신뢰성 향상에 대한 연구

  • Ahn, Jong-Seok (Business Operation Dept. Korea East-West Power Co., LTD.) ;
  • Lee, Seung-Hyun (Business Operation Dept. Korea East-West Power Co., LTD.) ;
  • Cho, Sang-Kie (Business Operation Dept. Korea East-West Power Co., LTD.) ;
  • Lee, Gil-Jae (Business Operation Dept. Korea East-West Power Co., LTD.) ;
  • Lee, Chang-Hee (School of Materials Science & Engineering, Hanyang University) ;
  • Moon, Seung-Jae (School of Mechanical Engineering, Hanyang University)
  • 안종석 (한국동서발전(주) 사업운영처) ;
  • 이승현 (한국동서발전(주) 사업운영처) ;
  • 조상기 (한국동서발전(주) 사업운영처) ;
  • 이길재 (한국동서발전(주) 사업운영처) ;
  • 이창희 (한양대학교 신소재공학부) ;
  • 문승재 (한양대학교 기계공학부)
  • Published : 2010.02.28

Abstract

The low alloy-steel material(1.0Cr-0.5Mo, SA213T12), which has widely been used for the waterwall tube in the conventional power plant, do not have enough creep rupture strength for waterwall tubes of the Ultra-supercritical(USC) boilers. According to this reason, the high-strength low alloy-steel(2.25Cr-1.0Mo, SA213T22) has newly been adopted for the waterwall tube in the USC boilers. This paper presents failure analysis on weld-joint of the waterwall tubes in USC boilers. Visual inspections were performed to find out the characteristics of the fracture. Additionally both microscopic characteristics and hardness test were carried out on failed tube samples. Failures seem to happen mainly because the welding process has not been conducted strictly.(preheating, P.W.H.T and so forth). Thus, this paper has the purpose to describe the main cause of the poor welding process and to explain how to prevent similar failures in those weld-joints.

Keywords

References

  1. J.G. Nawrocki : The Stress-Relief Cracking Susceptibility of a New Ferritic Steel, Welding Journal, 2001.1, 18s-24
  2. EPRI : The Grade 22 Low Alloy Steel Hand book, 2006.11, 12-14
  3. EPRI : The Grade 12 Low Alloy Steel Hand book, 2006.11, 8-9
  4. 용접.접합편람 II: 대한용접.접합학회, 2008 14-16(in Korean)

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  2. Welding Residual Stress Analysis and Fatigue Strength Assessment at Elevated Temperature for Multi-pass Dissimilar Material Weld Between Alloy 617 and P92 Steel vol.24, pp.4, 2018, https://doi.org/10.1007/s12540-018-0086-7