馬亞飛,男,1984年生,教授,博士生導師,湖南省“湖湘青年英才”,湖南省傑出青年基金獲得者。
基本介紹
- 中文名:馬亞飛
- 國籍:中國
- 民族:漢族
- 出生地:河北安新
- 畢業院校:長沙理工大學
- 學位/學歷:博士研究生
- 專業方向:土木工程
- 職務:國家地方聯合工程實驗室副主任
- 任職院校:長沙理工大學
教育經歷
科研項目
- 國家自然科學基金面上項目,基於時域小尺度裂紋增長的錨固區橋樑吊索腐蝕疲勞可靠性評估,2022-2025,項目負責人
- 國家重點基礎研究發展計畫(973計畫)項目,特大跨橋樑安全性設計與評定的基礎理論研究,2015-2019,子項負責人
- 國家重點研發計畫項目,城市大規模建築群地震災害風險智慧型感知系統研發,2020-2022,子項負責人
- 國家自然科學基金青年項目,基於等效裂紋發展的RC梁腐蝕疲勞壽命預測及更新方法,2016-2018,項目負責人
- 湖南省優秀青年科學基金項目,大跨度橋樑吊索腐蝕疲勞損傷機理及可靠性評定,2019-2021,項目負責人
- 湖南省教育廳科學研究重點項目,基於少量感測的橋樑群安全風險評估方法,2020-2023,項目負責人
- 湖南省傑出青年科學基金項目,橋樑結構安全運維,2024-2026,項目負責人
代表論文
- Ma Yafei, Guo Zhongzhao, Wang Lei, Zhang Jianren. Probabilistic life prediction for reinforced concrete structures subjected to seasonal corrosion-fatigue damage. ASCE Journal of Structural Engineering, 2020, 146(7): 04020117
- Wang Lei, Ma Yafei, Zhang Jianren, Liu Yongming. Probabilistic analysis of corrosion of reinforcement in RC bridge considering fuzziness and randomness. ASCE Journal of Structural Engineering, 2013, 139(9): 1529-1540
- Ma Yafei, Wang Lei, Zhang Jianren, Liu Yongming. Bridge remaining strength prediction integrated with Bayesian network and in situ load testing. ASCE Journal of Bridge Engineering, 2014,19(10): 04014037
- Guo Zhongzhao, Ma Yafei*, Wang Lei, Zhang Xuhui, Zhang Jianren, Hutchinson Cody, Harik Issam E. Crack propagation-based fatigue life prediction of corroded RC beams considering bond degradation. ASCE Journal of Bridge Engineering, 2020, 25(8): 04020048
- Chen Changsong, Yan Donghuang, Li Yan, Ma Yafei*, Ling Lihua, Huang Gen. Equivalent plane algorithm for static analysis of cable-stayed bridge with spatial cables, ASCE Journal of Bridge Engineering, 2022, 27(6): 04022042
- Ma Yafei, Liu Xianlin, Guo Zhongzhao, Wang Lei, Lu Naiwei. Predicting corrosion fatigue crack propagation behavior of HRB400 steel bars in simulated corrosive environments. ASCE Journal of Materials in Civil Engineering, 2021, 33(6): 04021127
- Ma Yafei, Peng Anyin, Su Xiaochao, Wang Lei, Zhang Jianren. Modeling constitutive relationship of steel bar removed from corroded PC beams after fatigue considering spatial location effect. ASCE Journal of Materials in Civil Engineering, 2021, 33(4): 04021019
- Ma Yafei, Guo Zhongzhao, Wang Lei, Zhang Jianren, Liu Yongming. Effects of stress ratio and banded microstructure on fatigue crack growth behavior of HRB400 steel bar. ASCE Journal of Materials in Civil Engineering, 2018, 30(3): 04017314
- Ma Yafei, Wang Lei, Zhang Jianren, Xiang Yibing, Peng Tishun, Liu Yongming. Hybrid uncertainty quantification for probabilistic corrosion damage prediction for aging RC bridges. ASCE Journal of Materials in Civil Engineering, 2015, 27(4): 04014152
- Guo Zhongzhao, Ma Yafei*, Wang Lei, Zhang Jianren, Harik Issam E. Corrosion fatigue crack propagation mechanism of high-strength steel bar in various environments. ASCE Journal of Materials in Civil Engineering, 2020, 32(6): 04020115
- Wang Lei, Ma Yafei*, ZhangJianren, Zhang Xuhui, Liu Yongming. Uncertainty quantification and structural reliability estimation considering inspection data scarcity. ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering, 2015, 1(2): 04015004
- Ma Yafei, Zhang Jianren, Wang Lei, Liu Yongming. Probabilistic prediction with Bayesian updating for strength degradation of RC bridge beams. Structural Safety, 2013, 44: 102-109
- Ma Yafei, Peng Anyin, Wang Lei, Zhang Chenzhong, Li Jing, Zhang Jianren. Fatigue performance of an innovative shallow-buried modular bridge expansion joint. Engineering Structures, 2020, 221: 111107
- Ma Yafei, Xu Fuyou, Wang Lei, Zhang Jianren, Zhang Xuhui. Influence of corrosion-induced cracking on structural behavior of reinforced concrete arch ribs. Engineering Structures, 2016, 117: 184-194
- Ma Yafei, Xiang Yibing, Wang Lei, Zhang Jianren, Liu Yongming. Fatigue life prediction for aging RC beams considering corrosive environments. Engineering Structures, 2014, 79: 211-221
- Ma Yafei, He Yu, Wang Guodong, Wang Lei, Zhang Jianren, Lee Deuckhang. Corrosion fatigue crack growth prediction of bridge suspender wires using Bayesian gaussian process. International Journal of Fatigue, 2023, 168: 107377