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Effects of Microstructures on the Toughness of High Heat Input EG Welded Joint of EH36-TM Steel

EH36-TM강의 대입열 EGW 용접부 저온 인성에 미치는 미세 조직의 영향

  • Choi, Woo-Hyuk (Heavy Plate R&D Team, HYUNDAI STEEL Technical Research Center) ;
  • Cho, Sung-Kyu (Heavy Plate R&D Team, HYUNDAI STEEL Technical Research Center) ;
  • Choi, Won-Kyu (Heavy Plate R&D Team, HYUNDAI STEEL Technical Research Center) ;
  • Ko, Sang-Gi (Heavy Plate R&D Team, HYUNDAI STEEL Technical Research Center) ;
  • Han, Jong-Man (Heavy Plate R&D Team, HYUNDAI STEEL Technical Research Center)
  • 최우혁 (현대제철 기술연구소 후판개발팀) ;
  • 조성규 (현대제철 기술연구소 후판개발팀) ;
  • 최원규 (현대제철 기술연구소 후판개발팀) ;
  • 고상기 (현대제철 기술연구소 후판개발팀) ;
  • 한종만 (현대제철 기술연구소 후판개발팀)
  • Received : 2011.10.19
  • Accepted : 2012.02.14
  • Published : 2012.02.29

Abstract

The characteristics of high heat input (342kJ/cm) EG (Electro Gas Arc) welded joint of EH36-TM steel has been investigated. The weld metal microstructure consisted of fine acicular ferrite (AF), a little volume of polygonal ferrite (PF) and grain boundary ferrite (GBF). Charpy impact test results of the weld metal and heat affected zone (HAZ) met the requirement of classification rule (Min. 34J at $-20^{\circ}C$). In order to evaluate the relationship between the impact toughness property and the grain size of HAZ, the austenite grain size of HAZ was measured. The prior austenite grain size in Fusion line (F.L+0.1 mm) was about $350{\mu}m$. The grain size in F.L+1.5 mm was measured to be less than $30{\mu}m$ and this region was identified as being included in FGHAZ(Fine Grain HAZ). It is seen that as the austenite grain size decreases, the size of GBF, FSP (Ferrite Side Plate) become smaller and the impact toughness of HAZ increases. Therefore, the CGHAZ was considered to be area up to 1.3mm away from the fusion line. Results of TEM replica analysis for a welded joint implied that very small size ($0.8\sim1.2{\mu}m$) oxygen inclusions played a role of forming fine acicular ferrite in the weld metal. A large amount of (Ti, Mn, Al)xOy oxygen inclusions dispersed, and oxides density was measured to be 4,600-5,300 (ea/mm2). During the welding thermal cycle, the area near a fusion line was reheated to temperature exceeding $1400^{\circ}C$. However, the nitrides and carbides were not completely dissolved near the fusion line because of rapid heating and cooling rate. Instead, they might grow during the cooling process. TiC precipitates of about 50 ~ 100nm size dispersed near the fusion line.

Keywords

References

  1. I. Watanabe et al. : Metal Construction, May (1984), 311-315
  2. Jeong-Soo Lee, Jin-Oh Yun et al. : The Study about Characteristics of Welding Consumable and Weld Metal for EGW, Journal of KWJS, 28-2 (2010), 79-83 (in Korean) https://doi.org/10.5781/KWJS.2010.28.3.079
  3. J. M. Gregg, H.K.D.K. Bhadeshia : Bainite nucleation frommineral surfaces, Acta Metallurgica et materialia, 42-10 (1994), 3321-3330 https://doi.org/10.1016/0956-7151(94)90464-2
  4. M. Enomoto : Nucleation of Phase Transformations at Intragranular Inclusions in Steel, Metals and Materials, 4-2 (1998), 115-124 https://doi.org/10.1007/BF03026028
  5. S. Kanazawa, A. Nakashima, K. Okamoto and K. Knaya : Improvement of Weld Fusion Zone Toughness by fine TiN, Trans. ISIJ, 16-9 (1976), 486-495
  6. 大北 茂 et al. : 鎔接技術, (1985), 12, 75 (in Japanese)
  7. N. Mori et al. : Characteristics of Mechanical Properties of Ti-B Bearing Weld Metals, IIW Document II-980-8290 (July, 2004)
  8. Suzuki Shinichi et al. : JFE EWEL Technology for Excellent Quality in HAZ of High Heat Input Welded Joints, JFE Technology Report, No.5 (Mar, 2005)
  9. Byong-Chul Kim and Kook-Soo Bang : Effects of Nitrogen on the Microstructure and Toughness of HAZ in Ti-Containing Steel, Journal of KWJS, 20-3 (2002), 91-97 (in Korean)
  10. R. W. Fountain and J. Chipman : Trans. AIME, 224 (1962), 599-606
  11. Y. Ohno et al. : Nippon Steel Tech. Report, 36 (1988), 49-59
  12. K. S. Bang, J. B. Lee, R. W. Chang : HAZ Microstructure and Toughness in High Heat Input Welding. Journal of KWJS, 10-1 (1992), 12-18 (in Korean)

Cited by

  1. Impact Toughness and Softening of the Heat Affected Zone of High Heat Input Welded 390 MPa Yield Strength Grade TMCP Steel vol.56, pp.11, 2018, https://doi.org/10.3365/KJMM.2018.56.11.796