[1]
Harold S. Reemsnyder , David A. Demo. Fatigue cracking in welded crane runway girders[J]. Causes And repair procedures. Iron and Steel Engineer. (1978).
Google Scholar
[2]
Yung J.Y. and Lawerence F.V. Analytical and graphical aids for the fatigue design weldments[J]. Fatigue Francture and Engineering Material and Structure, 1985, 8(3): 223-241.
DOI: 10.1111/j.1460-2695.1985.tb00424.x
Google Scholar
[3]
Hao Mingke. Investigation and Analysis of the Test about Fatigue Cracks of the Welding Crane Beam[J]. Steel Structure, 2012, 27(161): 21-23.
Google Scholar
[4]
Xia Guangjun. Reasons for Web Cracking of Welede Crane Girder and Prevention Measures[J]. Steel Structure, 2010, 25(132): 65-68.
Google Scholar
[5]
Wen Xiaoming, Zhen Shansuo. The Discussion on the Fatigue Crack between Web and Upper Flange of Welded Crane Beam[J]. Industrial Construction , 2004, 34(10): 59-61.
Google Scholar
[6]
Fang Tian, Lin Xingshan, He Desheng, Feng Xiujuan. Study on the Fatigue Problem upper Flange of Welded Crane Beam[J]. Journal of Nanjing Institute of Technology, 1986, 16(5): 80-91.
Google Scholar
[7]
Feng Xiujuan. Analysis on the Fatigue Break-down of Welded Crane Beam of the Soaking Furnace Workshop[J]. Industrial Construction, 1985, No. 3: 31-36.
Google Scholar
[8]
Duan Jin, Ni Dong, Wang Guoye. From entry to the master of structural analysis of ANSYS 10. 0 [M]. Beijing: Weapon Industry Press; Beijing Ke Hai Press, 2006, 10.
Google Scholar
[9]
Ministry of Construction of the People's Republic of China. GB50017-2003 Code for design of steel structure[S]. Beijing: China Architecture and Building Press, (2006).
Google Scholar
[10]
Lei Honggang. Processing and Analysis on Steel Structure Accident[J]. Beijing: China Building Materials Press, 2003, 3, 1.
Google Scholar
[11]
Li Bin, Tian Zhichang, Sun Zhen. Reinforcement Experimental Study and Reliability Analysis of Damaged Steel Crane-Girder. Industrial Construction 2000, 30(12): 48-50.
Google Scholar