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ATOS 80 고장력강의 용접 패스에 따른 용접부 방사선검사에 관한 연구

A Study on the Radiograph Inspection of Specimen in Welding Pass Using ATOS 80 High-strength Steel

  • 백정환 (조선대학교 대학원 기계공학과) ;
  • 최병기 (조선대학교 공과대학 기계공학과)
  • 투고 : 2012.09.06
  • 심사 : 2012.12.04
  • 발행 : 2012.12.15

초록

In constructing all kinds of equipment and steel structure, parts with discontinuities such as weld defects formed in the welded structure can generate fatigue cracks that results in damage or accidents. In this study, weld zones are investigated with X-rays and the latent images are put on film. Weld zone defects can be verified by developing the film. As weld defects are investigated by radiographic testing and correlated with the welding condition, more appropriate welding conditions can be found. According to the result of X-ray radiographic inspection of butt welding ATOS 80 high-strength steel with a thickness of 12mm, the best conditions for welding without creating weld defects are 4 weld-passes, a protective gas of 20% $CO_2$ and 80% Ar, a protective gas flow of 20L/min, a welding current of 200A, an arc voltage of 24V, a welding speed of 14.4cm/min, a welding rod angle of $50^{\circ}$, a welding gap of 5 mm with a ceramic base, and sand pre-heating to $160^{\circ}$ Celsius prior to welding.

키워드

참고문헌

  1. Cary. H. B., 1979, Modern Welding Technology, Prentice Hall, Inc., p. 11.
  2. Orowan, E., 1955, "Energy Criteria of Fracture," Welding Journal, Vol. 34, No. 5, pp. 1575-1582.
  3. Leonard, P. C., 1987, Welding Handbook. Eight Edition, American Welding Society, Vol. 1, pp. 152-153.
  4. Shin, J. S., 1996, "A Study on Stress Concentration Factor at Fillet Welded Joint," Transactions of the Society of Naval Architects of Korea, Vol. 33. No. 4. pp. 35-39.
  5. Suk, C. S., Kim, S. Y., and Park., G. H., 1999, "Response of Welding Residual Stress and Fatigue Crack of Development," Journal of Mechanical Science and Technology of the Society, Vol. 23. No. 9, pp. 21-26.
  6. Normark, G. E., Muller, L. N., and Kelsey, R. A., 1982, Effect of Residual Stress on Fatigue Crack Growth Rate in Weldments of Aluminium Alloy 5456 Plate, ASTM STP 776, pp. 44-62.
  7. Kitagawa, H., and Suh., C. M., 1987, "Crack Growth Behavior of Fatigue Microcracks in Low Carbon Steels," Fatigue Fracture Engineering Material Structure, Vol. 9, No. 6, pp. 409-424. https://doi.org/10.1111/j.1460-2695.1987.tb00468.x
  8. Choi, B. K., Jang, K .C., Choi, B. H., and Lee, K. A., 2006, "Influence of Carbon Content on the Mechanical Properties of the Ni-Co Alloy," Journal of Korea Machine Tool Society, Vol. 15, No. 5, pp. 7-13.
  9. Cho, K. S., 2008, "Welding Specimen of Radiographic Examination," The Korean Welding and Joining Society. Vol. 21, No. 6, pp. 4-9.
  10. Oh, H. K., Jung, J. G., and Cha, Y. H., 1999, Welding Engineering, Wonchang Publishing Co., Korea, pp. 395.

피인용 문헌

  1. A Study on Welding Characteristics According to a Change in Filler Metal in CO2 Gas Arc Welding of Automobile Structural Steel(ATOS80) vol.17, pp.6, 2012, https://doi.org/10.17958/ksmt.17.6.201512.1185