Fatigue behaviour of G20Mn5QT cast steel and butt welds with Q345B steel

Qinghua Han1, Qianqian Guo1, Yue Yin2, Ying Xing2
1School of Civil Engineering, Tianjin University, Tianjin 300072, China
2Key Laboratory of Coast Civil Structure and Safety of Ministry of Education(Tianjin University), Tianjin 300072, China

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Ahiale, G. K. and Oh, Y. J. (2014). “Microstructure and fatigue performance of butt-welded joints in advanced high-strength steels.” Materials Science and Engineering A, 597, pp.342–348.

BSISO 12108-2002 (2002). Metallic materials-Fatigue testing-Fatigue crack growth method. British Standards Institute, London, UK.

Callaghan, M. D., Humphries, S. R., Law, M., Ho, M., Bendeich, P., Li, H., and Yeung, W. Y. (2010). “Energybased approach for the evaluation of low cycle fatigue behaviour of 2.25Cr-1Mo steel at elevated temperature.” Materials Science and Engineering A, 527, pp.5619–5623.

CECS 235: 2008 (2008). Technical specification for application of connections of structural steel casting. Standards Press of China, Beijing, China (in Chinese).

Chen, H., Grondin, G. Y., and Driver, R. G. (2007). “Characterization of fatigue properties of ASTM A709 high performance steel.” Journal of Constructional Steel Research, 63, pp.838–848.

Chinese Welding Society (2008). Welding handbook (volume III). China Machine Press, Beijing, China (in Chinese).

de Jesus, A. M. P., Matos, R., Fontoura, B. F. C., Rebelo, C., Simões da Silva, L., and Veljkovic, M. (2012). “A comparison of the fatigue behavior between S355 and S690 steel grades.” Journal of Constructional Steel Research, 79, pp.140–150.

DINEN 10293 (2005). Steel castings for general engineering uses. European Committee for Standardization (CEN), Brussels, Belgium.

E606-92 (2000). Standard practice for strain-controlled fatigue testing. ASTM, West Conshohocken, USA.

E8M-04 (2004). Standard test methods for tension testing of metallic materials. ASTM, West Conshohocken, USA.

Fang, D., Liu, Y., Chen, Y., and Wang, Q. (2011). “Ultrahigh cycle fatigue behaviours of Q345 bridge steel welded joint.” Transactions of the China Welding Institution, 32(8), pp.77–80 (in Chinese).

GB/T 1591-2008 (2008). High strength low alloy structural steels. AQSIQ. Standards Press of China, Beijing, China (in Chinese).

GB 50017-2003 (2003). Code for design of steel structures. Standards Press of China, Beijing, China (in Chinese).

GB/T 15248-2008 (2008). The test method for axial loading constant-amplitude low-cycle fatigue of metallic materials. Standards Press of China, Beijing, China (in Chinese).

Kim, K., Lee, S., and Jung, K. (2009). “Evaluation of factors affecting the fatigue behavior of butt-welded joints using SM520C-TMC steel.” International Journal of Steel Structures, 9(3), pp.185–193.

Korean Society of Civil Engineers (2008). Korean design code and commentary for highway bridge. KiMoonDang., Inc., Seoul, Korea, pp.115–123.

Luo, Y., Wang, Q., Liu, Y., and Huang, C. (2012). “Low cycle fatigue properties of steel structure materials Q235 and Q345.” Journal of Sichuan University (Engineering Science Edition), 44(2), pp.169–175 (in Chinese).

Manson, S. S. (1965). “Fatigue: a complex subject-some simple approximations.” Experimental Mechanics, 5, pp.193–226.

Prasad, N. E., Vogt, D., Bidlingmaier, T., Wanner, A., and Arzt, E. (2000). “High temperature, low cycle fatigue behaviour ofan aluminium alloy (Al-12Si-CuMgNi.).” Materials Science and Engineering A, 276, pp.283–287.

Ye, D., Matsuoka, S., Nagashima, N., and Suzuki, N. (2006). “The low-cycle fatigue, deformation and final fracture behaviour of an austenitic stainless steel.” Materials Science and Engineering A, 415, pp.104–117.