发表论文 |
发表SCI/EI论文30篇,其中中科院二区以上15篇 2024年 [1] Dai K Y, Yu X H*, Lu D G, Qian K. Fragility functions for corroded reinforced concrete columns[J]. Journal of Building Engineering, 2024, 82: 108124. (SCI中科院二区,IF=6.40) [2] Huang P, Dai K Y*, Yu X H. Data-driven shear strength prediction of steel reinforced concrete composite shear wall. [J]. Materials Today Communications, 2024, 38(10): 108173. (SCI中科院三区,IF=3.80) [3] 李磊, 王菲菲, 代旷宇*, 于晓辉. 面向抗震韧性评价的型钢混凝土柱易损性函数[J]. 哈尔滨工业大学学报, 2024. (EI及CSCD核心源刊) [4] Li L, Chen J, Wang W T*, Dai K Y, Hu W B. Experimental and prediction model of axial compressive responses of corroded RC cylinders strengthened with CFRP[J]. Engineering Structures, 2024, 317: 118649. (SCI中科院一区,IF=5.6) [5] Wang W T, Chen J, Li L*, Dai K Y. Experimental and analytical study on flexural behavior of corroded RC beams strengthened with CFRP rods and UHPC[J]. Engineering Structures, 2024, 317: 118649. (SCI中科院一区,IF=5.6)
2023年 [1] Dai K Y, Li S L*, Hu P Y*, Jiang N, Wang D W. Effect of outer rust layer on cathodic protection and corrosion behavior of high-strength wire hangers with sheath crack in marine rainfall environment[J]. Case Studies in Construction Materials, 2023: e02043. (SCI中科院二区,IF=4.934) [2] Dai K Y, Yu X H*, Jiang Z C, Qian K, Wang D Y. Hysteretic model for corroded reinforced concrete columns retrofitted with FRP[J]. Construction and Building Materials, 2023, 380: 131207. ( SCI中科院一区,IF=7.693) [3] Hu PY, Li S L*, Dai K Y*, Jiang N, Wang D W. Analysis of hydrogen embrittlement and applied potential of 1670, 1770, and 1860 MPa ultrahigh-strength steel wire for impressed current cathodic protection on cables and hangers[J]. International Journal of Hydrogen Energy, 2023:. (SCI中科院二区,IF=7.200) [4] Huang P, Dai K Y*, Yu X H. Machine learning approach for investigating compressive strength of self-compacting concrete containing supplementary cementitious materials and recycled aggregate[J]. Journal of Building Engineering, 2023: 107904. (SCI中科院二区,IF=6.400)
2022年 [1] Dai K Y, Yu X H*, Qian K, Wang D Y. Deformation capacity of FRP retrofitted reinforced concrete columns with corroded reinforcing bars[J]. Engineering Structures, 2022(254): 113834. (SCI中科院一区,IF=4.795) [2] Rong X L, Zhang Y X*, Zheng S S, Wang J Y, Dong L G, Dai K Y. Seismic performance of reinforced concrete beams under freeze-thaw cycles[J]. Journal of Building Engineering, 2022: 103979. (SCI中科院二区,IF=5.318) [3] Wang J Y, Rong X L*, Zheng S S, Zhang Y X, Dai K Y, Dong L G, Wang Z S. Cyclic behavior of RC beams under artificial climate rapid freeze-thaw environment: A further research[J]. Case Studies in Construction Materials, 2022: e01589. (SCI中科院二区,IF=4.934) [4] 代旷宇, 于晓辉*, 李雨适, 吕大刚. 锈蚀钢筋混凝土结构地震易损性分析[J]. 建筑结构学报, 2022, 43(8): 20-31. (EI及CSCD核心源刊) [5] 代旷宇, 于晓辉*, 吕大刚. 钢筋混凝土柱的易损性函数研究[J]. 工程力学. (EI及CSCD核心源刊) [6] 何子涵, 代旷宇, 吕大刚, 于晓辉*. 基于耐震时程法的锈蚀RC框架结构抗地震倒塌能力评估[J]. 地震工程与工程振动, 2022, 42(06): 129-135 (CSCD核心源刊)
2021年 [1] Dai K Y, Lu D G*, Yu X H*. Experimental investigation on the seismic performance of corroded reinforced concrete columns designed with low and high axial load ratios[J]. Journal of Building Engineering, 2021: 102615. (SCI中科院二区,IF=5.318) [2] Yu X H, Dai K Y*, Li Y S. Variability in corrosion damage models and its effect on seismic collapse fragility of aging reinforced concrete frames under corrosion[J]. Construction and Building Materials, 2021: 123654. ( SCI中科院一区,IF=6.841) [3] Yu X H, Dai K Y, Li Y S, Li B*. Seismic resilience assessment of aging RC frames designed according to Chinese codes[J]. Earthquake Engineering and Engineering Vibration, 2021, 20(2): 303 - 316. (SCI中科院三区,IF=2.47) [4] 代旷宇, 于晓辉, 王硕, 吕大刚. 基于改进Ibarra-Medina-Krawinkler材料模型的RC圆柱恢复力模型参数识别[J]. 工程力学, 2021, 38(1): 154-163, 173. (EI及CSCD核心源刊)
2020年 [1] Dai K Y, Liu C, Lu D G*, Yu X H*. Experimental investigation on seismic behavior of corroded RC columns under artificial climate environment and electrochemical chloride extraction: A comparative study[J]. Construction and Building Materials, 2020(242):118014. (SCI中科院一区,IF=6.841) [2] Dai K Y, Yu X H*, Lu D G. Phenomenological hysteretic model for corroded RC columns[J]. Engineering Structures, 2020(210): 110315. (SCI中科院一区,IF=4.795) [3] Rong X L, Zheng S S, Zhang Y X*, Dai K Y. Seismic behavior of frost-damaged squat RC shear walls under artificial climate environment: a further experimental research[J]. Archives of Civil and Mechanical Engineering, 2020, 20(4). (SCI中科院二区,IF=4.369) [4] 代旷宇, 于晓辉, 吕大刚, 等. 采用光圆钢筋配筋的锈蚀RC框架结构抗震性能分析:以新西兰结构为例[J]. 土木工程学报, 2020, 53(S2): 53-60. (EI及CSCD核心源刊)
2019年 [1] 于晓辉, 代旷宇, 周洲,等. 主余震序列作用下钢筋混凝土框架结构损伤分析[J]. 建筑结构学报, 2019, 40(03):131-137. (EI及CSCD核心源刊) [2] 于晓辉, 乔雨蒙, 代旷宇,等. 主余震序列作用下非线性单自由度体系的增量损伤分析[J]. 工程力学, 2019, 36(03):131-140. (EI及CSCD核心源刊)
2017年 [1] 吕大刚, 代旷宇, 于晓辉,等. FRP加固非延性RC框架结构的地震易损性分析[J]. 工程力学, 2017, 34(S1):49-53,70. (EI及CSCD核心源刊)
2015年 [1] 郑山锁, 代旷宇, 韩超伟,等. 基于材料性能退化模型的钢排架结构易损性分析[J]. 振动与冲击, 2015(17):26-32. (EI及CSCD核心源刊) [2] 郑山锁, 代旷宇, 孙龙飞, 等. 钢框架结构的地震损伤研究[J]. 地震工程学报, 2015, 37(2):290-297. (CSCD核心源刊)
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专利 |
目前已授权发明专利4项,实用新型专利5项 (1) 于晓辉; 吕大刚; 代旷宇; 张伟恒, 一种用于钢筋混凝土平面结构锈蚀的试验装置, 2017-07-27, 中国, ZL201710621504.9(发明专利) (2) 于晓辉; 吕大刚; 代旷宇; 乔雨蒙; 王勃, 一种基于Copula理论的主余震联合易损性分析方法, 2017-12-11, 中国, ZL201711307738.2(发明专利) (3) 于晓辉; 代旷宇; 吕大刚; 周洲, 一种无底座钢筋混凝土柱拟静力试验装置及方法, 2017-12-11, 中国, ZL201721710447.3(发明专利) (4) 吕大刚; 于晓辉; 刘亭亭; 代旷宇, 一种基于典型相关分析的多元地震破坏势评估方法, 2017-12-11, 中国, ZL201711306898.5(发明专利) (5) 吕大刚; 刘畅; 代旷宇; 贾明明 ; 一种钢筋混凝土框架中区域性锈蚀的实验装置及实验方法, 2022-10-18, 中国, CN202210809068.9 (6) 李胜利; 胡鹏越; 姜楠; 代旷宇; 王东炜; 郭攀; 毋光明; 王希东; 徐斌; 李攀杰; 郑鹏飞; 崔灿; 李金珂 ; CFRP-钢材组合缆索结构及利用雨水导电的电化学防腐蚀方法, 2023-08-29, 中国, CN202111258754.3 (7) 代旷宇, 陈睿, 陈闻宇,孟维奇,郭普仁,于振云.一种抽拉式泥沙启动测量装置, 2022-8-16, 中国, ZL202221179231.X(实用新型专利) (8) 于晓辉; 代旷宇; 田玉滨; 吕大刚; 周洲, 高度可调的柱构件实验连接装置, 2017-12-11, 中国, ZL201721712225.5(实用新型专利) (9) 于晓辉; 吕大刚; 张伟恒; 代旷宇, 一种用于锈蚀钢筋混凝土梁的试验装置, 2017-07-27, 中国, ZL201720918887.1(实用新型专利) (10) 吕大刚; 于晓辉; 代旷宇; 张伟恒, 一种用于钢筋混凝土柱锈蚀的试验装置, 2017-07-27, 中国, ZL201720918867.4(实用新型专利)
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