共 92 条
[1]
Shuai Peng, Gao Shan, Wu Zhisheng, Et al., Research status of high strength steel welding, Welding Technology, 45, 6, pp. 1-4, (2016)
[2]
Zhang Wei, Formation mechanism and fracture behavior of laser spot welded third generation high-strength steel, (2021)
[3]
Hu Yinhui, Resistance spot welding process and the microstructures and properties of DP1000 high strength steel joints, (2013)
[4]
Ohnishi, Kawahito, Mizutani, Et al., Butt welding of thick, high strength steel plate with a high power laser and hot wire to improve tolerance to gap variance and control weld metal oxygen content[J], Science and Technology of Welding and Joining, 18, 4, pp. 314-322, (2013)
[5]
Katayama S, Kawahito Y, Mizutani M., Elucidation of laser welding phenomena and factors affecting weld penetration and welding defects[J], Physics Procedia, 5, 2, pp. 9-17, (2010)
[6]
Otegui J L, Kerr H W, Burns D J, Et al., Fatigue crack initiation from defects at weld toes in steel[J], International Journal of Pressure Vessels and Piping, 38, 5, pp. 385-417, (1989)
[7]
Li Jin, Metal analysis of No. 1 steam turbine nozzle chamber fracture accident in dagang power plant, North China Electric Power Technology, 8, pp. 7-12, (1991)
[8]
Ye Huawen, Huang Ruosen, Zhou Yu, Et al., Fatigue fracture failure analysis of a welded I-beam steel bridge in Australia, Building Structure, 52, S1, pp. 1251-1255, (2022)
[9]
Chapetti M D, Otegui J L., Controlled toe waviness as a means to increase fatigue resistance of automatic welds in transverse loading, International Journal of Fatigue, 19, 10, pp. 667-675, (1997)
[10]
Ahiale K G, Oh Y, Choi W, Et al., Microstructure and fatigue resistance of high strength dual phase steel welded with gas metal arc welding and plasma arc welding processes, Metals and Materials International, 19, 5, pp. 933-939, (2013)