1、科研获奖
2022年天津市科学技术进步二等奖,排名第二(2/8)。
2、英文文章:
(1) Liao Xiaowei, Wei Hanlin, Pan Hongyang, Li Hai-Ting, Sun Bo, Xin Haohui*. Fatigue resistance of rib-to-bimetallic steel deck welded joints in orthotropic steel bridge decks [J]. Thin-Walled Structures, 2024,194:111318. (SCI, IF = 6.4)
(2) Wang Zongyi, Wang Yuanqing, Gu Haoyang, Liao Xiaowei*. Study on fatigue behavior and crack propagation life of longitudinal fillet welded lap joint [J]. International Journal of Fatigue, 2023, 167: 107301. (SCI, IF=5.186)
(3) Liao Xiaowei, Dong Shenhao, Duan Yuanfeng*, Ni Yiqing. Experimental validation of the design formulas for vibration control of stay cables using external dampers [J]. Journal of Infrastructure Intelligence and Resilience, 2022, 1(2): 100011.
(4) Wang Zongyi, Huang Ming, Gao Fei, Liao Xiaowei*. Evaluation on stress intensity factors of octagonal tube-to-transverse plate joint for sign and traffic signal structures[J]. Engineering Failure Analysis, 2022, 138: 106421.(SCI, IF=3.114)
(5) Liao Xiaowei, Wei Hanlin, Feng Liuyang*, Ban Huiyong. Low-cycle fatigue behavior for stainless-clad 304+Q235B bimetallic steel [J]. International Journal of Fatigue, 2022, 159: 106831.(SCI, IF=5.186)
(6) Liao Xiaowei, Wang Yuanqing, Feng Liuyang*, Ban Huiyong, Chen Yong. Fatigue crack initiation and energy-based life analysis for Q345qD bridge steel at low temperatures [J]. Journal of Constructional Steel Research, 2021, 180: 106571. (SCI, IF=3.541)
(7) Feng Liuyang, Zhang Limao*, Liao Xiaowei, Zhang Wei. Probabilistic fatigue life of welded plate joints under uncertainty in Arctic areas [J]. Journal of Constructional Steel Research, 2021, 176: 106412. (SCI, IF=3.541)
(8) Liao Xiaowei, Wang Yuanqing, Feng Liuyang*, Shi Yongjiu. Investigation on fatigue crack resistance of Q370qE bridge steel at a low ambient temperature [J]. Construction and Building Materials, 2020, 236: 117576. (SCI, IF=4.046)
(9) Liao Xiaowei, Wang Yuanqing, Wang Zongyi*, Feng Liuyang, Shi Yongjiu. Effect of low temperatures on constant amplitude fatigue properties of Q345qD steel butt-welded joints [J]. Engineering Failure Analysis, 2019, 105: 597-609. (SCI, IF=2.249)
(10) Liao Xiaowei, Wang Yuanqing*, Qian Xudong, Shi Yongjiu. Fatigue crack propagation for Q345qD bridge steel and its butt welds at low temperatures [J]. Fatigue & Fracture of Engineering Materials & Structures, 2018, 41: 675-687. (SCI, IF=2.335)
(11) Wang Yuanqing*, Liao Xiaowei, Zhang Yuanyuan, Shi Yongjiu. Experimental study on the through-thickness properties of structural steel thick plate and its heat-affected zone at low temperatures [J]. Journal of Zhejiang University-SCIENCE A, 2015, 16(3): 217-228. (SCI, IF=1.214)
3、中文文章:
(1) 廖小伟, 潘之钊, 班慧勇, 宗亮, 孙博*. 低碳钢及其不锈钢复合钢材低周疲劳行为的对比研究[J]. 工程力学, 2023.(EI, 录用)
(2) 廖小伟, 王元清*, 吴剑国, 石永久. 低温环境下十字形非传力角焊缝接头的疲劳性能[J]. 浙江大学学报(工学版), 2020, 54(10): 2018-2026. (EI)
(3) 廖小伟, 王元清*, 石永久, 陈宏. 低温环境下桥梁钢Q345qD疲劳裂纹扩展行为研究[J]. 工程力学, 2018, 35(10): 85-91. (EI)
(4) 王元清*, 廖小伟, 周晖, 石永久, 陈健陵, 叶国平. 基于SINTAP-FAD方法的含裂纹缺陷钢结构构件的安全性评定研究[J]. 工程力学, 2017, 34(5): 42-51. (EI)
(5) 廖小伟, 王元清*, 宗亮, 施刚. 基于有效缺口应力法的钢桥焊接细节疲劳分析[J]. 浙江大学学报(工学版), 2017, 51(1): 1-8. (EI)
(6) 王元清*, 廖小伟, 张子富, 刘希月, 邢海军. 输电线铁塔钢材的低温力学和冲击韧性试验[J]. 哈尔滨工业大学学报, 2015, 47(12): 70-74. (EI)
(7) 王元清*, 廖小伟, 贾单锋, 石永久. 钢结构的低温疲劳性能研究进展综述[J]. 建筑钢结构进展, 2018, 20(1): 1-11. (核心期刊)
(8) 廖小伟, 王元清*, 周晖, 石永久. 锅炉钢结构大板梁构造焊接接头的力学和断裂韧性试验[J]. 铁道科学与工程学报, 2016, 13(9): 1803-1809. (核心期刊)
(9) 王元清*, 廖小伟, 张子富, 邢海军. 低温环境下输电线铁塔的选材方法[J]. 钢结构, 2016, 31(7): 59-62, 41. (核心期刊)