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초초임계 석탄발전 보일러 튜브(SA213 TP347H) 용접부 안정화 열처리 효과

Effect on the Stabilizing Heat Treatment to Weld Joint for the USC Coal Boiler Tubes(SA213 TP347H)

  • 안종석 (한국동서발전(주) 기술정보처 기술전문센터) ;
  • 박진근 (한국동서발전(주) 기술정보처 기술전문센터) ;
  • 이길재 (한국동서발전(주) 기술정보처 기술전문센터) ;
  • 윤재연 (한국동서발전(주) 기술정보처 기술전문센터)
  • Ahn, Jong-Seok (Dept. of Technology & Information, Korea East-West Power Co., LTD.) ;
  • Park, Jin-Keun (Dept. of Technology & Information, Korea East-West Power Co., LTD.) ;
  • Lee, Gil-Jae (Dept. of Technology & Information, Korea East-West Power Co., LTD.) ;
  • Yoon, Jae-Yeon (Dept. of Technology & Information, Korea East-West Power Co., LTD.)
  • 투고 : 2015.03.26
  • 심사 : 2015.08.17
  • 발행 : 2015.08.31

초록

Austenite stainless steel(SA213-TP347H) has widely been used for the superheater & reheater tube in USC(ultra-supercritica) coal boiler because of its high creep rupture strength and anti-oxidation. But recently, the short-term failures have happened frequently in heat affected zone for only 4,000~15,000hours of service. Many investigations have been conducted to understand the failure mechanism. The root cause of failure was comfirmed to "strain induce participation hardening crack" or "reheat cracking". This mechanism often occurred due to weld residual stress and precipitation of the Cr, Nb carbides in the stabilized stainless steel such as TP347H. This paper presents an analysis of failure tube and effect of the sample tubes that conducting stabilizing heat treatment in site after 11,380hours & 16,961hours of service. Visual inspection was performed. In addition, microscopic characteristics was identified by O.M, SEM, and hardness test was carried out to find out the heat treatment effects. Failures seem to happen because of being not conducted stabilizing heat treatment in site. And another cause is inadequate weld parameter such as pass, ampere, voltage, inter-pass temperature. Thus, this paper has the purpose to describe that how to prevent similar failures in those weld-joints.

키워드

참고문헌

  1. J. Shingledecker, Review of Strain Induced Precipitation Hardening in Stainless Steels, EPRI Boiler Tube Failures Conference (2010.4)
  2. J.G Nawroki, The Stress-Relief Cracking Susceptibility of New Ferric Steel, Welding Journal (2001.1) 18-24
  3. 용접.접합편람 I, 대한용접.접합학회 (2008) 36-48, 50-51 (in Korean)
  4. Messer, V, Optimized Heat Treatment of 347 Type Stainless Steel Alloys for Elevated Temperature Service to Minimize Cracking, Corrosion (2004) 3-5
  5. Takeshi Miyazawa, Quality Enhancement of Boiler Stainless Tube by Solution Treatment, CEPE (2010) 2-14

피인용 문헌

  1. Effects of PWHT on Microstructure and Mechanical Properties of Weld Metals of Ni-Based Superalloy 617 and 263 for Hyper-Supercritical Power Plants vol.29, pp.12, 2016, https://doi.org/10.1007/s40195-016-0494-y