在本领域权威SCI期刊发表论文,包括《Construction and Building Materials》《Computers & Structures》《Engineering Fracture Mechanics》《Fire Technology》等,主持和参与多项国家级和省部级科研项目,指导多名研究生、本科生在竞赛中获得多项奖励。 代表作: [1] Qian, K., Chen, X. Y., & Huang, T.* (2022) Dynamic response of RC beam-slab substructures following instantaneous removal of columns. Journal of Building Engineering, 45, 103554, JAN 2022. [2] Qian, K., Hu, H. N., Weng, Y. H., Deng, X. F., & Huang, T.* (2021) Numerical investigation on load transfer mechanism of bonded post-tensioned concrete beam-column substructures against progressive collapse. Advances in Structural Engineering, 24(8), 1569-1582, JUN 2021. [3] Wu, X. Q., Huang, T., Au, F. T. K., & Li, J. (2020) Posttensioned concrete bridge beams exposed to hydrocarbon fire. Journal of Structural Engineering (New York, N.Y.), 146(10), 4020210, OCT 2020. [4] Wu, X. Q., Huang, T., Au, F. T. K., & Li, J. (2020) A localized fire model for predicting the surface temperature of box girder bridges subjected to tanker truck fire. Fire Technology, 56(5), 2059-2087, SEP 2020. [5] Huang, T., Zhang, Y. X. (2018) Numerical modelling on degradation of mechanical behaviour for engineered cementitious composites under fatigue tensile loading. Engineering Fracture Mechanics, 188, 309-319, FEB 2018. [6] Huang, T., Zhang, Y. X., Lo, S. R., & Lee, C. K. (2017) Experimental study on crack bridging in engineered cementitious composites under fatigue tensile loading. Construction and Building Materials, 154, 167-175, NOV, 2017. [7] Meng, D., Huang, T., Zhang, Y. X., & Lee, C. K. (2017) Mechanical behaviour of a polyvinyl alcohol fibre reinforced engineered cementitious composite (PVA-ECC) using local ingredients. Construction and Building Materials, 141, 259-270, JUN 2017. [8] Huang, T., Zhang, Y. X., & Yang, C. H. (2016) Multiscale modelling of multiple-cracking tensile fracture behaviour of engineered cementitious composites. Engineering Fracture Mechanics, 160, 52-66, JUL 2016. [9] Huang, T., Zhang, Y. X. (2016) Numerical modelling of mechanical behaviour of engineered cementitious composites under axial tension. Computers & Structures, 173, 95-108, SEP 2016. [10] Huang, T., Zhang, Y. X., Su, C., & Lo, S. R. (2015) Effect of slip-hardening interface behavior on fiber rupture and crack bridging in fiber-reinforced cementitious composites. Journal of Engineering Mechanics, 141(10), 4015035, OCT 2015. |