ULTIMATE STRAINS OF STRUCTURAL STEELS AGAINST DUCTILE CRACK INITIATION

Author:

GE Hanbin,KAWAHITO Makio,OHASHI Masatoshi

Publisher

Japan Society of Civil Engineers

Subject

Geotechnical Engineering and Engineering Geology,Arts and Humanities (miscellaneous),Building and Construction,Civil and Structural Engineering

Reference34 articles.

1. 1) Watanabe, E., Maekawa, Y., Sugiura, K. and Kitane, Y.: Damages and Seismic Performance of steel bridges, J. of JSCE, Vol. 80, No.7, pp. 54-62, 1995 (in Japanese).

2. 2) Sugimoto, K. and Takahashi, Y. : Investigation of beam-column-connection surface fractures that occurred during the 1995 Hanshin-Awaji earthquake and repair welding heat effect on adjacent steel-inspection of crack growth and analysis of material degeneration-, Steel Constr. Eng., JSSC., Vol.3, No.10, pp. 21-34, 1995 (in Japanese).

3. 3) Okashita, K., Ohminami, R., Michiba, K., Yamamoto, A., Tomimatsu, M., Tanji, Y. and Miki, C.: Investigation of the brittle fracture at the corner of P75 rigid-frame pier in Kobe harbor highway during the Hyogoken-Nanbu earthquake, J. of Struct. Mech. and Earthquake Eng., JSCE., No.591, pp. 243-262, 1998 (in Japanese).

4. 4) JSCE: High Performance Steels for Seismic Design and High Ductility Structures, Sub-Committee on Seismic Study of Steel Structures, Committee on Steel Structures, 2000 (in Japanese).

5. 5) Nishimura, T. and Miki, C.: Strain controlled low cycle fatigue behavior of structural steels, Proc. JSCE., No.279, pp. 29-44, 1978 (in Japanese).

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