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Design for avoid unstable fracture in shipbuilding and offshore plant structure

조선 및 해양플랜트 구조물의 불안전 파괴방지 설계기술

  • 안규백 (포스코 기술연구원 접합연구그룹) ;
  • 배홍열 (포스코 기술연구원 접합연구그룹) ;
  • 노병두 (포스코 기술연구원 접합연구그룹) ;
  • 안영호 (포스코 기술연구원 접합연구그룹) ;
  • 최종교 (포스코 기술연구원 접합연구그룹) ;
  • 우완측 (한국원자력연구원 중성자과학연구부) ;
  • 박정웅 (조선대학교 토목공학과)
  • Received : 2015.02.10
  • Accepted : 2015.02.25
  • Published : 2015.02.28

Abstract

Recently, there have been the increase of ship size and the development of oil and gas in arctic region. These trends have led to the requirements such as high strength, good toughness at low temperature and good weldability for prevent of brittle fracture at service temperature. There has been the key issue of crack arrestability in large size structure such as container ship. In this report for the first time, crack arrest toughness of thick steel plate welds was evaluated by large scale ESSO test for estimate of brittle crack arrestability in thick steel plate. For large structures using thick steel plates, fracture toughness of welded joint is an important factor to obtain structural integrity. In general, there are two kinds of design concepts based on fracture toughness: crack initiation and crack arrest. So far, when steel structures such as buildings, bridges and ships were manufactured using thick steel plates (max. 80~100mm in thickness), they had to be designed in order to avoid crack initiation, especially in welded joint. However, crack arrest design has been considered as a second line of defense and applied to limited industries like pipelines and nuclear power plants. Although welded joint is the weakest part to brittle fracture, there are few results to investigate crack arrest toughness of welded joint. In this study, brittle crack arrest designs were developed for hatch side coaming of large container ships using arrest weld, hole, and insert technology.

Keywords

References

  1. K. Hirota, T. Nakagawa, S. Takeda, Y. Hashi, M. tada: World's first development and application of HTSS(high tensile strength steel) with yield stess of 47 kgf/mm2 to actual ship hull structure, Mitsubishi Heavy Industries, Ltd., Technicla Review 44-3 (2007), 1-5
  2. Nippon Kaiji Kyokai: Rules for the survey and construction of steel ship's, (2006)
  3. The 147th Research Committee: Evaluation of brittle fracture toughness of welded joints of ship under high welding heat input, Report No. 87, The Shipbuilding Research Association of Japan, (1978)
  4. T. Handa, S. Suzuki, M. Toyoda, T. Yokura, N. Kiji, Y. Nakanishi: Behavior of long brittle crack arrest in Tee joint structure of thick plate, Bulletin of the Japan Society of Naval Architects and Ocean Engineerings, 4 (2007), 461-462
  5. T. Handa, T. Kubo, F. Kawabata, K. Nishimura, S. Suzuki H. Shiomi, T. Miyata: Effect of Kca value on behavior of brittle crack arrest in Tee joint structure of thick plate, Bulletin of the Japan Society of Naval Architects and Ocean Engineerings, 4 (2007), 459-460
  6. Takehiro Inoue, Tadashi Ishikawa, Shiro Imai, Tadashi Koseki, Kazuhiro Hirota, Masuo Tada, Yoshiya Yamaguchi Toshiyuki Matsumoto and Hiroshi Yajima: Long crack arrest concept in heavy-thick shipbuilding steels, Proceedings of International Offshore and Polar Engineering Conference (2007), 3322
  7. Nippon Kaiji Kyokai: Guidelines of the application of YP47 steel for hull structures of large container carriers, (2008)
  8. IACS: Requirement for use of Extremely Thick Steel Plates, (2013)
  9. American Bureau of shipping: Higher-strength hull structural thick steel plate in container carrier, (2008)
  10. Gremanischer Lloyd, "Supplementary rules for application of steel with yield strength of 460N/$mm^2$". (2008)
  11. An, G.B., Park, J.S.: Metals and Materials International, 17(5) (2011), 841-845 https://doi.org/10.1007/s12540-011-1023-1
  12. Jeong-Ung Park, Gyubaek An, Hae-Woo Lee: Materials and Design, 42 (2012), 403-410 https://doi.org/10.1016/j.matdes.2012.06.006
  13. Joon Sik Park, Bo Young Jung, Gyu Baek An and Jong Bong Lee: Crack Arrest Toughness of Thick Steel Plate Welds for Ship Building, Journal of the Korean Welding & Joining Society, 25(4) (2007), 9-14 https://doi.org/10.5781/KWJS.2007.25.4.009
  14. Jeong-Ung Park and Gyu-Baek An: Fracture toughness of thick steel plate for ship building, Journal of the Korean Welding & Joining Society 25(4) (2007), 15-19 https://doi.org/10.5781/KWJS.2007.25.4.015
  15. C. S. Wiesner and B. Hayes: A review of crack arrest tests, models and applications, TWI report (1995)
  16. The 193th Research Committee: Application of 50kgf/mm2 class high strength steel plates made of new steel manufacturing process, Report No. 100, The Shipbuilding Research Association of Japan, (1985)