丁陶

职称:副教授

学位:博士

期刊论文

[1] Ding, T., Shen, K.*, Cai, C., Xiao, J., Xiao, X., Liang, W. (2024). 3D printed concrete with sewage sludge ash: Fresh and hardened properties. Cement and Concrete Composites, 148, 105475.

[2] Li, B., Ding, T.,* Qu, C., Liu, W. (2024). Modification of fresh and hardened properties of 3D-printed recycled mortar by superabsorbent polymers. Journal of Building Engineering, 95, 110189.

[3] Ding, T., Wang, Z., Liu, H., Xiao, J. * (2023). Simulation on pull-out performance of steel bar from 3D-printed concrete. Engineering Structures, 283, 115910.

[4] Xiao, J., Zeng, L., Ding, T.*, Xu, H., Tang, H. (2023). Deconstruction evaluation method of building structures based on digital technology. Journal of Building Engineering, 66, 105901.

[5] Ding, T., Shen, K., Tan, D., Zhao, Y.* (2023). Experimental study on seismic behaviour of fully bolted concrete shear walls. Archives of Civil and Mechanical Engineering, 23, 142.

[6] Ding, T., Xiao, J.*, Mechtcherine V. (2023). Microstructure and mechanical properties of interlayer regions in extrusion-based 3D printed concrete: A critical review. Cement and Concrete Composites, 141, 105154.

[7] Ding, T., Qin, F., Xiao, J.,* Chen, X., Zuo, Z. (2022). Experimental study on the bond behaviour between steel bars and 3D printed concrete. Journal of Building Engineering, 49, 104105.

[8] Li, W.,* Ye, H.,Wang, Q., Liu, H., Ding, T.,* Liu, B. (2022). Experimental study on the seismic performance of demountable RCS joints. Journal of Building Engineering, 49, 104082.

[9] Xiao, J., Chen, Z., Ding, T.,* Zou, S. (2022) Bending behaviour of steel cable reinforced 3D printed concrete in the direction perpendicular to the interfaces. Cement and Concrete Composites, 125, 104313.

[10] Xiao, J., Zou, S.*, Ding, T.,* Duan, Z., Liu, Q. (2021) Fiber-reinforced mortar with 100% recycled fine aggregates: A cleaner perspective on 3D printing. Journal of Cleaner Production, 319, 128720.

[11] Zhao, Y.,Zou, R., Ding, T.*, Xiao, J. (2021). Experimental study of the shear behaviour of concrete-grout-concrete joints. Journal of Building Engineering, 288, 103095.

[12] Ding, T., Xiao, J.*, Zou, S., Yu, J. (2021). Flexural properties of 3D printed fibre-reinforced concrete with recycled sand. Construction and Building Materials, 288, 123077.

[13] Xiao, J., Liu, H., Ding, T.* (2021). Finite element analysis on the anisotropic behavior of 3D printed concrete under compression and flexure. Additive Manufacturing, 39, 101712.

[14] Xiao, J., Chen, Z., Ding, T.*, Xia, B. (2021). Effect of recycled aggregate concrete on the behavior of DfD beam-column joints under cyclic loading. Advances in Structural Engineering, 24(8), 1709-1723.

[15] Han, Y.L., Yang, Z.H., Ding, T.*, Xiao, J.Z. (2021). Environmental and economic assessment on 3D printed buildings with recycled concrete. Journal of Cleaner Production, 278, 123884.

[16] Xiao, J., Xiao, Y., Liu, Y.*, Ding, T.* (2021). Carbon emission analyses of concretes made with recycled materials considering CO2 uptake through carbonation absorption. Structural Concrete, 22, 58-73.

[17] Ding, T., Xiao, J.*, Zou, S., Zhou X. (2020). Anisotropic behavior in bending of 3D printed concrete reinforced with fibers. Composite Structures, 254, 112808.

[18] Ding, T., Xiao, J.*, Zou, S., Wang, Y. (2020). Hardened properties of layered 3D printed concrete with recycled sand. Cement and Concrete Composites, 113, 103724.

[19] Xiao, J., Liu, L., Ding, T.*, Xie, Q. (2020). Experimental study on mechanical behavior of thermally damaged grouted sleeve splice under cyclic loading. Structural Concrete, 21, 2494-2514

[20] Ding, T., Xiao, J.*, Wei, K., Lu, Y. (2020). Seismic behavior of concrete shear walls with bolted endplate DfD connections. Engineering Structures, 214, 110610.

[21] Ding, T., Xiao, J.*, Qin, F., Duan, Z. (2020). Mechanical behavior of 3D printed mortar with recycled sand at early ages. Construction and Building Materials, 248, 118654.

[22] Ding, T., Xiao, J.*, Chen, E., Khan, A.R. (2020). Experimental study of the seismic performance of concrete beam-column frame joints with DfD connection. Journal of Structural Engineering, 146(4), 04020036.

[23] Huang, KW., Li, A., Xia, B., Ding, T.* (2020). Prediction on CO2 uptake of recycled aggregate concrete. Frontiers of Structural and Civil Engineering, 14(3): 746–759.

[24] Ding, T., Xiao, J.*, Khan, A.R. (2019). Behavior of concrete beam-column frame joints with DfD connections: A simulation study with interface modelling. Engineering Structures, 189, 347-358.

[25] Ding, T., Xiao, J.*, Zhang, Q., Akbarnezhad, A. (2018). Experimental and numerical studies on design for deconstruction concrete connections: An overview. Advances in Structural Engineering, 21(14), 2198-2214.

[26] Xiao, J. *, Ding, T.*, Zhang, Q. (2017). Structural behavior of a new moment-resisting DfD concrete connection. Engineering Structures, 132, 1-13.

[27] Ding, T., Xiao, J.*, Tam, V. W. (2016). A closed-loop life cycle assessment of recycled aggregate concrete utilization in China. Waste management, 56, 367-375.

[28] Xiao, J.*, Ding, T., Pham, T. L. (2015). Seismic performance of precast recycled concrete frame structure. ACI Structural Journal, 112(4), 515-524.

[29] Xiao, J.*, Ding, T., Wang, C. (2015). Seismic behavior of cast-in-place and precast recycled aggregate concrete frames: a comparative study. Structural Engineering International, 25(3), 300-307.

[30] Ding, T., Xiao, J.* (2014). Estimation of building-related construction and demolition waste in Shanghai. Waste Management, 34(11), 2327-2334.

[31] Xiao, J.*, Ding, T. (2013). Research on recycled concrete and its utilization in building structures in China. Frontiers of Structural and Civil Engineering, 7(3), 215-226.

[32] 肖建庄, 秦飞, 丁陶*, 段珍华. 3D打印再生砂浆的早期性能. 建筑材料学报, 2022, 25(7): 657-662.

[33] 肖建庄, 丁陶, 范氏鸾, 等. 预制再生混凝土框架模型模拟地震振动台试验[J]. 同济大学学报: 自然科学版, 2014, 42(2): 190-197.

[34] 肖建庄, 丁陶, 王长青, 等. 现浇与预制再生混凝土框架结构抗震性能对比分析[J]. 东南大学学报: 自然科学版, 2014, 44(1): 194-198.

[35] 丁陶, 肖建庄. 基于振动台试验的预制再生混凝土框架后浇边节点分析[J]. 建筑科学与工程学报, 2013, 30(3): 78-85.

[36] 丁陶, 曹明, 王少华. 基于 SAP2000 预制再生混凝土框架非线性地震反应分析[J]. 建筑结构, 2014, (13): 29-33.

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