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论文/期刊
代表性期刊论文:
[1] WANG Meng*, Zhang Xiaokang, Yang Lu, Yang Weiguo. Cyclic performance for low-yield point steel plate shear walls with diagonal T-shaped-stiffener, Journal of Constructional Steel Research, 171: 106163, 2020. (SCI)
[2] WANG Meng*, Ke Xiaogang. Seismic design of widening flange connection with fuses based on energy dissipation, Journal of Constructional Steel Research, 170: 106076, 2020. (SCI)
[3] WANG Meng*, BI Peng. Study on seismic behavior and design method of dissipative bolted joint for steel frame with replaceable low yield point steel connected components. Construction and Building Materials, 198: 677-695, 2019. (SCI,An2)
[4] WANG Meng*, Yang Weiguo. Equivalent constitutive model of steel plate shear wall structures, Thin-walled Structures, 124: 415-429, 2018. (SCI,An2)
[5] WANG Meng*, Borello D J, Fahnestock L A. Boundary Frame Contribution in Coupled and Uncoupled Steel Plate Shear Walls, Earthquake Engineering and Structural Dynamics, 46(14): 2355-2380, 2017. (SCI,An2)
[6] WANG Meng*, Fahnestock L A, QIAN Fengxia, YANG Weiguo. Experimental Cyclic Behavior and Constitutive Modeling of Low Yield Point Steels, Construction and Building Materials, 131: 696-712, 2017. (SCI, An2)
[7] WANG Meng*, YANG Weiguo. Seismic behaviors of steel plate shear wall structures with construction details and materials, Journal of Constructional Steel Research, 107: 194-210, 2015. (SCI, An3).
[8] WANG Meng*, Shi Yongjiu, Xu Jian, Yang Weiguo, Li Yixin. Experimental and numerical study of unstiffened steel plate shear wall structures, Journal of Constructional Steel Research, 112:373-386, 2015. (SCI, An3).
[9] WANG Meng*, Shi Yongjiu, WANG Yuanqing. Application of steel equivalent constitutive model for predicting seismic behavior of steel frame, Steel and Composite Structures, 19(5): 1055-1075, 2015. (SCI, An3).
[10] WANG Meng*, SHI Yongjiu, WANG Yuanqing, Yang Weiguo. Influencing Factors Analysis of Degradation and Damage and the Effect on Steel Frame, International Journal of Steel Structures, 15(1): 17-30, 2015. (SCI, An4).
[11] WANG Meng*, SHI Yongjiu, YANG Weiguo, WANG Yuanqing. Influence of Damage and Degradation Index on Steel Frame under Severe Earthquakes, Advances in Structural Engineering, 18(12): 2035-2046, 2015. (SCI, An4).
[12] WANG Meng*, SHI Yongjiu, WANG Yuanqing, Shi Gang. Numerical study on seismic behaviors of steel frame end-plate connections, Journal of Constructional Steel Research, 90: 140-152, 2013. (SCI, An3)
[13] WANG Meng*, SHI Yongjiu, Wang Yuanqing, Xiong Jun, Chen Hong. Degradation and damage behaviors of steel frame welded connections, Steel and Composite Structures, 15(4): 357-377, 2013. (SCI, An3)
[14] WANG Meng*, SHI Yongjiu, WANG Yuanqing. Equivalent constitutive model of steel with cumulative degradation and damage, Journal of Constructional Steel Research, 79: 101-114, 2012. (SCI, An3)
[15] SHI Gang*, WANG Meng, BAI Yu, WANG Fei, SHI Yongjiu, WANG Yuanqing. Experimental and modeling study of high-strength structural steel under cyclic loading, Engineering Structures, 37:1-13, 2012. (SCI, An2)
[16] Ding Dayi, WANG Meng*, Wang Yuanqing, Pan Bin, Shi Yongjiu. Experimental and analytical investigations on a large floor truss pinned connection. Advance in Structural Engineering, 20(7):1007-1023, 2017.
[17] YANG Weiguo, WANG Meng*, SHI Jianquan, GE Jiaqi, ZHANG Nan, MA Botao. Performance study on the whole vibration process of a museum induced by metro. Structural Engineering and Mechanics, 55(2): 413-434, 2016.
[18] SHI Yongjiu, WANG Meng*, WANG Yuanqing. Analysis of seismic behavior of welded steel connections and frames with differently constructed connections, Advances in Structural Engineering, 15(7): 1053-1068, 2012.
[19] SHI Yongjiu, WANG Meng*, WANG Yuanqing. Experimental and constitutive model study of structural steel under cyclic loading, Journal of Constructional Steel Research, 67(8): 1185-1197, 2011.
[20] SHI Yongjiu, WANG Meng*, WANG Yuanqing. Analysis on shear behavior of high-strength bolts connection, International Journal of Steel Structures, 11(2): 203-213, 2011.
[21] SHI Gang*, WANG Meng, WANG Yuanqing, WANG Fei. Cyclic Behavior of 460 MPa High Strength Structural Steel and Welded Connection under Earthquake Loading, Advances in Structural Engineering, 16(3): 451-466, 2013.
[22] SHI Yongjiu*, WANG Meng, WANG Yuanqing, YANG Wen, SHI Gang. Rehabilitation of steel moment connections with cover plates under initial loading. Advances in Structural Engineering, 14(5): 789-800, 2011.
[23] 王萌,毕鹏,等. 带低屈服点钢材“延性保险丝”的钢框架盖板连接节点设计方法研究. 工程力学, 37(2): 168-182, 2020. (EI收录)
[24] 王萌*,毕鹏,杨维国,等. 设置低屈服点钢材“延性保险丝”的钢框架连接节点受力行为研究. 建筑结构学报, 40(11): 90-101, 2019. (EI收录)
[25] 王萌*,柯小刚. 带LYP160钢连接组件的扩翼型盖板连接节点抗震行为研究. 工程力学, 36(8): 149-160, 2019.
[26] 王萌*,柯小刚,吴照章. 可更换延性耗能连接组件的钢框架节点抗震性能研究. 工程力学, 35(12): 151-163, 2018. (EI)
[27] 王萌*,杨维国,钱凤霞. 钢板剪力墙水平荷载作用下简化滞回理论模型研究. 建筑结构学报, 38(10): 59-67, 2017. (EI)
[28] 王萌,孙新阳,*李茜,张强,李法雄. 分组集聚式斜拉桥索塔锚固区传力机制, 哈尔滨工业大学学报, 49(12): 176-183, 2017. (EI)
[29] 王萌*,钱凤霞,杨维国. LYP160低屈服点钢材本构行为研究, 建筑结构学报, 38(2): 55-62, 2017. (EI收录)
[30] 王萌*,钱凤霞,杨维国,杨璐. 低屈服点钢材与Q345B和Q460D钢材本构关系对比研究, 工程力学, 34(2): 60-68, 2017. (EI)
[31] 王萌*, 杨维国. 薄钢板剪力墙结构滞回行为研究, 建筑结构学报, 36(1):7-16, 2015. (EI).
[32] 王萌*,杨维国. 不同改进形式钢板剪力墙滞回性能研究, 工程力学, 33(8): 110-121, 2016. (EI)
[33] 王萌*,杨维国,王元清,常婷,石永久. 奥氏体不锈钢滞回本构模型研究, 工程力学, 32(11): 107-114, 2015. (EI).
[34] 王萌*, 石永久, 王元清. 17层钢框架在北岭地震下的破坏预测. 工程力学, 32(3): 50-56, 2015. (EI).
[35] 王萌*, 石永久, 杨维国, 王元清. 强震作用下损伤退化控制指数影响研究, 土木工程学报, 47: 273-279, 2014. (EI).
[36] 王萌*, 石永久, 王元清. 强震作用下钢材等效本构模型应用研究, 建筑结构学报, 34(10): 84-92, 2013. (EI).
[37] 王萌*, 石永久,王元清. 钢框架焊接节点局部屈曲累积损伤分析. 哈尔滨工业大学学报, 2012, 44(4): 86-93. (EI)
[38] 王萌*, 石永久, 王元清. 强震作用下构件的损伤退化对钢框架结构整体受力性能的影响. 建筑结构学报, 2012, 33(10): 94-101. (EI)
[39] 王萌*, 石永久, 王元清. 强震下钢框架动力时程分析模型应用对比分析. 土木工程学报, 2012,45: 80-83. (EI)
[40] 王萌*, 石永久,王元清. 钢框架焊接节点局部屈曲累积损伤分析. 哈尔滨工业大学学报, 2012, 44(4): 86-93. (EI)
代表性会议论文:
[41] WANG Meng*, Borello D J, Fahnestock L A. Cyclic analysis of steel plate shear walls with coupling. 16th World Conference on Earthquake, 16WCEE 2017, Santiago Chile, January 9th to 13th 2017.
[42] WANG Meng*, SUN Xinyang, YANG Weiguo, SHI Yongjiu, WANG Yuanqing. Application of equivalent constitutive model for an actual damaged steel frame under strong earthquake. The 14th International Symposium on Structural Engineering, Beijing, China, October 12th to 16th, 2016, 615-621.
[43] 王萌*, 杨维国. 低屈服点钢板剪力墙抗震行为研究进展,中国钢结构协会结构稳定与疲劳分会第14届(ISSF-2014)学术交流会暨教学研讨会论文集, 钢结构, 2014 增刊: 68-74, 2014.
[44] 王萌*, 孙新阳, 杨维国. T型肋加劲低屈服点薄钢板剪力墙受力行为研究. 第九届全国防震减灾工程学术研讨会(工程防震减灾新技术、新进展和新应用), 合肥, 中国, 2016.10.27-2016.10.29: 360-371.