专利专著 |
[1] Wang, W.S., Cheng, Y.C., Chen, H.P.F., Tan, G.J. Polymeric Composites in Road and Bridge Engineering Characterization, Production and Application. Ingram Content Group UK Ltd., 2023[2] 可变梁长简支梁及连续梁自振特性测试平台. 发明专利: ZL 201610623212.4, 中国[3] 水泥混凝土桥面铺装层与桥面板层间抗剪刚度测试方法. 发明专利: ZL 201610625334.7, 中国[4] 基于横张预应力的简支T梁加固方法及锚固装置. 发明专利: ZL 201510669955.0, 中国 |
发表论文 |
发表SCI/EI检索论文80余篇。[1] Wang W.S., Cheng Y.C., Tan G.J., Shi C.L. Pavement performance evaluation of asphalt mixtures containing oil shale waste. Road Materials and Pavement Design 2020, 21(1): 179-200.[2] Wang W.S., Cheng Y.C., Tan G.J., Liu Z.Y., Shi C.L. Laboratory investigation on high- and low-temperature performances of asphalt mastics modified by waste oil shale ash. Journal of Material Cycles and Waste Management 2018, 20(3): 1710-1723.[3] Wang W.S., Cheng Y.C., Tan G.J. Design optimization of SBS-modified asphalt mixture reinforced with eco-friendly basalt fiber based on response surface methodology. Materials 2018, 11(8).[4] Cheng, Y.C., Liang, J.X., Wang, W.S., Wang, H.T., Zhao, W.S., Li, A.P., Xia, W.L. Improvement of ZSV analysis methods and ZSV-based viscosity evolution of salt-eroded bitumen. Construction and Building Materials 2024, 414.[5] Cheng, Y.C., Wang, H.T., Wang, W.S., Liang, J.X. Rheological evolution mechanisms of asphalt binder and mastic under freeze-thaw cycles. Construction and Building Materials 2023, 372: 1-14.[6] Tan G.J., Wang W.S., Cheng Y.C., Wei H.B., Wei Z.G., Liu H.B. Dynamic response of a nonuniform Timoshenko beam with elastic supports, subjected to a moving spring-mass system. International Journal of Structural Stability and Dynamics 2018, 18(5).[7] Tan G.J., Wang W.S., Jiao Y.B., Wei Z.G. Free vibration analysis of continuous bridge under the vehicles. Structural Engineering and Mechanics 2017, 61(3): 335-345.[8] Tan G.J., Li H., Wang W.S., Kong Q.W., Jiang L., Zhang S.F., Wei X.L. A rapid evaluation method based on natural frequency for post-earthquake traffic capacity of small and medium span bridges. Engineering Structures 2023, 280.[9] Jiang P., Chen Y.W., Wang W.S., Yang J.D., Wang H.Y., Li N., Wang W. Flexural behavior evaluation and energy dissipation mechanisms of modified iron tailings powder incorporating cement and fibers subjected to freeze-thaw cycles. Journal of Cleaner Production 2022, 351: 1-13.[10] Tan G.J., Zhu Z.Q., Wang W.S., Wu C.L., Ou J., Cui G.J., Zhang D.M. Flexural ductility and crack-controlling capacity of polypropylene fiber reinforced ECC thin sheet with waste superfine river sand based on acoustic emission analysis. Construction and Building Materials 2021, 277. |