参考文献/References:
[1]ELLINGWOOD B. Mitigating risk from abnormal loads and progressive collapse[J]. Journal of Performance of Constructed Facilities, 2006, 20(4): 315-323.
[2]LU X Z, GUAN H, SUN H, et al. A preliminary analysis and discussion of the condominium building collapse in surfside1[J]. Frontiers of Structural and Civil Engineering, 2021, 15(5): 1097-1110.
[3]ADAM J M, PATRISI F, SAGASETA J, et al. Research and practice on progressive collapse and robustness of building structures in the 21st century[J]. Engineering Structures, 2018, 173: 122-149.
[4]姜健, 吕大刚, 陆新征, 等. 建筑结构抗连续性倒塌研究进展与发展趋势[J]. 建筑结构学报, 2022, 43(1): 1-28.
JIANG Jian, LV Dagang, LU Xinzheng, et al. Research progress and development trends on progressive collapse resistance of building structures[J]. Journal of Building Structures, 2022, 43(1): 1-28.
[5]ZHONG W H, TAN Z, TIAN L M, et al. Collapse resistance of composite beam-column assemblies with unequal spans under an internal column-removal scenario[J]. Engineering Structures, 2020, 206: 110143.
[6]任鲁明, 杨波, 孔德阳. 不同边界条件下采用半刚性节点三维组合楼板子结构连续倒塌行为试验研究[J]. 建筑结构学报, 2020, 41(5): 34-42.
REN Ruming, YANG Bo, KONG Deyang. Experimental study on progressive collapse behaviour of 3D steel-concrete floor substructures with semi-rigid connections under different boundary conditions[J]. Journal of Building Structures, 2020, 41(5): 34-42.
[7]WANG W, WANG J J, SUN X, et al. Slab effect of composite subassemblies under a column removal scenario[J]. Journal of Constructional Steel Research, 2017, 129: 141-155.
[8]陈俊岭, 舒文雅, 李金威. 框架结构典型梁柱节点的抗连续倒塌性能[J]. 同济大学学报(自然科学版), 2016, 44(1): 53-58,135.
CHEN Junling, SHU Wenya, LI Jinwei. Performance of various steel moment connections under progressive collapse scenario[J]. Journal of Tongji University(Natural Science), 2016, 44(1): 53-58,135.
[9]孟宝, 钟炜辉, 郝际平, 等. 平齐端板连接钢框架梁柱子结构的抗倒塌性能分析[J]. 西安建筑科技大学学报(自然科学版), 2016, 48(3): 376-382.
MENG Bao, ZHONG Weihui, HAO Jiping, et al. Analysis of collapse resistance of beam-column substructure with flush end plate of steel frame[J]. Journal of Xi'an University of Architecture & Technology(Natural Science Edition), 2016, 48(3): 376-382.
[10]乔惠云, 郭壮壮, 陈誉, 等. 平面钢框架在撞击荷载作用下的抗连续倒塌分析[J]. 振动与冲击, 2022, 41(4): 176-184.
QIAO Huiyun, GUO Zhuangzhuang, CHEN Yu, et al. Anti-progressive collapse analysis for plane steel frame under impact load[J]. Journal of Vibration and Shock, 2022, 41(4): 176-184.
[11]李波, 杨庆山, 茹继平, 等. 梁腹板开圆孔的钢框架抗震性能研究[J]. 工程力学, 2009, 26(1): 64-73.
LI Bo, YANG Qingshan, RU Jiping, et al. Investigation on aseismic behaviors of steel moment resisting frame including opening in beam web[J]. Engineering Mechanics, 2009, 26(1): 64-73.
[12]中华人民共和国住房和城乡建设部,钢结构设计标准:GB50017—2017[S]. 北京: 中国建筑工业出版社, 2017.
Ministry of Housing and Urban-Rural Development of the People's Republic of China, Standard for Design of Steel Structures: GB50017—2017[S]. Beijing: China Architecture & Building Press, 2017.
[13]谭政, 钟炜辉, 段仕超, 等. 不同梁线刚度情形下组合梁柱子结构抗倒塌性能研究[J]. 振动与冲击, 2021, 40(10): 57-66.
TAN Zheng, ZHONG Weihui, DUAN Shichao, et al. Research on anti-collapse performance of composite beam-column substructures with different beam line stiffness[J]. Journal of Vibration and Shock, 2021, 40(10): 57-66.
[14]中华人民共和国住房和城乡建设部,混凝土结构设计规范:GB50010—2010.[S]. 北京: 中国建筑工业出版社, 2015.
Ministry of Housing and Urban-Rural Development of the People's Republic of China, Code for Design of Concrete Structures: GB50010—2010.[S]. Beijing: China Architecture & Building Press, 2015.
[15]YU H L, JEONG D Y. Application of a stress triaxiality dependent fracture criterion in the finite element analysis of unnotched charpy specimens[J]. Theoretical and Applied Fracture Mechanics, 2010, 54(1): 54-62.
[16]MENG B, ZHONG W H, HAO J P, et al. Anti-progressive Collapse Performance Analysis of Composite Frame with Openings on Beam Web[J]. Journal of Constructional Steel Research, 2020, 173(6): 1-14.