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[1]杨孟刚,张宇,孟栋梁,胡尚韬. 顶部水平撞击作用下钢墩柱等效碰撞力研究[J]. 振动与冲击, 2024, 43(20): 35-44.
[2]Tao Wang, Shangtao Hu, Menggang Yang, Dongliang Meng. Numerical method for predicting the nucleation and propagation of multiple cracks based on the modified extended finite element method[J], Theoretical and Applied Fracture Mechanics, 2024, 133: 104568.
[3]Renkang Hu, Menggang Yang, Dongliang Meng, Raffaele Cucuzza, Marco Domaneschi. Robustness investigation of Horizontal Bidirectional Hybrid Damping System applied to long-span bridges under near-fault pulse-like earthquakes[J]. Soil Dynamics and Earthquake Engineering, 2024, 184: 108803.
[4]杨孟刚,曹恺悦,李新,胡尚韬. 考虑泄漏和温度效应的黏滞阻尼器性能演变研究[J]. 振动与冲击, 2024, 43(8): 169-177.
[5]Menggang Yang, Renkang Hu, Dongliang Meng, Hongjie Zhang. A novel Horizontal Bidirectional Hybrid Damping System (HBHDS) for multi-level vibration control of long-span bridges: A theoretical study[J]. Engineering Structures, 2024, 305: 117693.
[6]Shangtao Hu, Dongliang Meng, Menggang Yang, Renkang Hu. Parametric optimization of the Eddy current dampers applied to a suspension bridge considering bi-directional earthquakes[J]. Journal of Vibration and Control, 2024, 30(5-6):1275-1285.
[7]杨孟刚, 万航航, 孟栋梁. 墩顶水平冲击作用后钢筋混凝土桥墩剩余承载力研究[J]. 中南大学学报(自然科学版), 2023, 54(12): 4793-4805.
[8]Renkang Hu, Shangtao Hu, Menggang Yang, Dongliang Meng. Experimental study on the coordinated behavior of the Combined Viscous-Steel Damping System (CVSDS) for multi-level seismic mitigation[J]. Structures, 2023, 57: 105344.
[9]Shangtao Hu, Renkang Hu, Menggang Yang, and Tao Wang. Seismic performance of the combined viscous-steel damping system suffering from oil leakage[J]. Journal of Vibration and Control, 2023, 29(21-22):4885-4895.
[10]杨孟刚, 李滨宏, 孟栋梁. 墩顶水平冲击作用下承插式桥墩动力响应研究[J]. 铁道科学与工程学报,2023, 20(11):4221-4232.
[11]Dongliang Meng, Qi Liu, Menggang Yang, Ziqi Yang. Seismic vulnerability of simply-supported bridges considering link-slabs in the continuous deck and pounding[J]. Structure and Infrastructure Engineering, 2023, 19(10): 1459-1477.
[12]Qiong Gao, Menggang Yang, Dongliang Meng. Seismic optimization of high-speed railway bridges considering the running safety of trains in normal service[J]. Structure and Infrastructure Engineering, 2023, 19(9): 1283-1298.
[13]Tao Wang, Shangtao Hu, Menggang Yang, Shujun Fang. A technique for capturing structural crack geometry in numerical simulation based on the invariant level set method[J]. Structural Engineering and Mechanics, 2023, 87(3): 243-254.
[14]Shangtao Hu, Renkang Hu, Menggang Yang, Tao Wang. Seismic behavior of the combined viscous-steel damping system for a long-span suspension bridge considering wave-passage effect[J]. Journal of Bridge Engineering, 2023, 28(7): 04023034.
[15]Dongliang Meng, Shangtao Hu, Menggang Yang, Renkang Hu, Xuhui He. Experimental evaluation of the seismic isolation effectiveness of friction pendulum bearings in bridges considering transverse poundings[J]. Soil Dynamics and Earthquake Engineering, 2023, 170: 107926.
[16]Shangtao Hu, Renkang Hu, Menggang Yang, Dongliang Meng. Influence of the deteriorated anti-seismic devices on seismic performance and device behavior of continuous girder bridges[J]. Earthquakes and Structures, 2023, 24(5): 333-343.
[17]Shangtao Hu, Dongliang Meng, Renkang Hu, Menggang Yang. A combined viscous-steel damping system (CVSDS) for longitudinal vibration mitigation of a long-span railway suspension bridge[J]. Journal of Earthquake Engineering, 2023, 27(5): 1261-1280.
[18]胡尚韬, 李新, 杨孟刚, 郑娜. 粘滞-软钢阻尼器组合系统的协同减震性能研究[J]. 土木工程学报, 2023, 56(4): 51-60.
[19]杨孟刚, 栗梦成, 胡尚韬. 考虑地震滑冲效应的高铁简支梁桥横向减震体系研究[J]. 振动与冲击, 2023, 42(7): 312-320.
[20]Shangtao Hu, Menggang Yang, Dongliang Meng, Renkang Hu. Damping performance of the degraded fluid viscous damper due to oil leakage[J]. Structures, 2023, 48: 1609-1619.
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