[1] PAIK J K, SOHN J M. Effects of welding residual stresses on high tensile steel plate ultimate strength: Nonlinear finite element method investigations[J]. Journal of Offshore Mechanics and Arctic Engineering, 2012, 1: 1-6.
[2] TEKGOZ M, GARBATOV Y, GUEDES S C. Strength assessment of an intact and damaged container ship subjected to asymmetrical bending loadings[J]. Marine Structures, 2018, 58: 172-198.
[3] LIU B, SOARES C G. Ultimate strength assessment of ship hull structures subjected to cyclic bending moments[J]. Ocean Engineering, 2020, 215: 1-10.
[4] KIM D K, LIM H L, KIM M S, et al. An empirical formulation for predicting the ultimate strength of stiffened panels subjected to longitudinal compression[J]. Ocean Engineering, 2017, 140: 270-280.
[5] XIA Tian, YANG Ping, HU Kang, et al. Combined effect of imperfections on ultimate strength of cracked plates under uniaxial compression[J]. Ocean Engineering, 2018, 150: 113-123.
[6] YAO T, NIKOLOV P I. Buckling/plastic collapse of plates under cyclic loading[J]. Journal of the Society of Naval Architects of Japan, 1990, 1990(168): 449-462.
[7] 许俊,吴剑国,叶帆,等.循环载荷混合作用下加筋板格极限强度的研究[J].船舶,2018,29(2):31-38.
XU Jun, WU Jianguo, YE Fan, et al. On ultimate strength of stiffened plates under cyclic load[J].Ship, 2018, 29(2): 31-38.
[8] LI Shen, HU Zhiqiang, BENSON S. An analytical method to predict the buckling and collapse behavior of plates and stiffened panels under cyclic loading[J]. Engineering Structures, 2019, 199: 1-26.
[9] CUI Huwei, YANG Ping. Ultimate strength assessment of hull girder under cyclic bending based on smiths method[J]. Journal of Ship Research, 2018, 62(2): 77-88.
[10] PAIK J K, LEE D H, NOH S H. Full-scale collapse testing of a steel stiffened plate structure under cyclic axial-compressive loading[J]. Structures, 2020, 26: 996-1009.
[11] 崔虎威,丁启印.轴向循环载荷下加筋板极限承载性能分析[J].中国舰船研究,2022,17(4):204-211.
CUI Huwei, DING Qiyin. Analysis of ultimate load-bearing behavior of stiffened plate under axial cyclic loading[J]. Chinese Journal of Ship Research, 2022, 17(4): 204-211.
[12] PAIK J K, AMLASHI H, BOON B, et al. ISSC committee III.1 ultimate strength[C]// 18th International Ship and Offshore Structures Congress. Hamburg: Schiffbautechnische Gesellschaft, 2012: 285-364.
[13] KROLO P, GRANDIC D, SMOLCIC Z. Experimental and numerical study of mild steel behavior under cyclic loading with variable strain ranges[J]. Advances in Materials Science and Engineering, 2016, 2016: 7863010.
[14] 崔虎威,樊开敬.平板对接焊温度场与残余应力数值模拟[J].重庆交通大学学报(自然科学版),2022,41(9):140-146.
CUI Huwei, FANG Kaijing. Numerical simulation of temperature field and residual stress in flat plate butt welding[J]. Journal of Chongqing Jiaotong University(Natural Science) ,2022,41(9):140-146.
[15] PERIC' M, GARAIC' I, NIZˇETIC' S, et al. Numerical analysis of longitudinal residual stresses and deflections in a T-joint welded structure using a local preheating technique[J]. Energies, 2018, 11(12): 1-13. |