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[21]Wang, Yuzhuo,Xu, Tiangui,Liu, Ziqing,Li, Guoqiang,jiangjian.Seismic behavior of steel reinforced concrete cross-shaped columns after exposure to high temperatures,2021,卷: 230
[22]Du, Yong,Zhou, Huikai,jiangjian,Liew, J. Y. Richard.Behaviour of ultra-high strength concrete encased steel columns subject to ISO-834 fire,2021,卷: 38期: 2页: 121-139
[23]Du, Yong,Qi, Hong-hui,jiangjian,Richard Liew, J.Y.,Li, Guo-Qiang.Mechanical properties of 1670 MPa parallel wire strands at elevated temperatures,2020,v 263,
[24]Cai, Wen-Yu,jiangjian,Wang, Yan-Bo,Li, Guo-Qiang.Fracture behavior of high-strength steels at elevated temperatures,2020,v 175,
[25]jiangjian,chenwei,yejihong.An Insight into Eurocode 4 Design Rules for Thermal Behaviour of Composite Slabs,2020,2020,103084
[26]Yan-Wen Li,Guo-Qiang Li,jiangjian.Mitigating Inter-story Drift Concentration of Concentrically Braced Steel Frames Using Energy-Dissipative Columns,2020
[27]Wenyu Cai,jiangjian.Analysis and simulation on fracture of structural steel at elevated temperatures based on extended finite element method,2020
[28]Li, Guo-Qiang,Miao, Jiarong,Song, Linxin,Cai, Wenyu,jiangjian.Investigation on Postfire Residual Capacity of High-Strength Steel Columns with Axial Restraint,2020,卷: 146期: 9
[29]jiangjian,Cai, Wenyu,Li, Guo-Qiang,chenwei,yejihong.Progressive collapse of steel-framed gravity buildings under parametric fires,2020,卷: 36期: 4页: 383-398
[30]jiangjian,Joseph Main.Reduced-order modeling of composite floor slabs in fire. II:?Thermal-structural analysis,2020
total36 3/4
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