Publications:

Stage 1

[1]. Teng, J.G.*, Xiang, Y., Yu, T. and Fang, Z. (2019).Development and mechanical behaviour of ultra-high-performance seawater sea-sand concrete. Advances in Structural Engineering, 22(14), 3100-3120.

[2].  Li, L.G.*, Chen, X.Q., Chu, S.H., Ouyang, Y. and Kwan, A.K.H. (2019).Seawater cement paste: Effects of seawater and roles of water film thickness and superplasticizer dosage. Construction and Building Materials, 229, 116862.

[3]. Ni, Y.Q.*, Ding, S.Q., Han, B. and Wang, H.(2019). Layer-by-layer assembly of polyelectrolytes-wrapped multi-walled carbon nanotubes on long period fiber grating sensors. Sensors and Actuators B: Chemical, 301, 127120.

[4].  Wang, H., Ni, Y.Q.*, Dai, J.G. and Yuan, M. (2019). Interfacial debonding detection of strengthened steel structures by using smart CFRP-FBG composites, Smart Materials and Structures, 28(11), 115001.

[5]. Zhang, L., Ding, S.Q., Han, B.*, Yu, X. and Ni, Y.Q. (2019). Effect of water content on the piezoresistive property of smart cement-based materials with carbon nanotube/ nanocarbon black composite filler, Composites Part A: Applied Science and Manufacturing, 119, 8-20.

[6]. Li, L., Faisal Haider, M., Mei, H., Giurgiutiu, V. and Xia, Y.*(2019). Theoretical calculation of circular-crested Lamb wave field in single-and multi-layer isotropic plates using the normal mode expansion method, Structural Health Monitoring, 19(2), 357-372.

Stage 2

[1].Ding, S.Q., Wang, Y.W., Ni, Y.Q.* and Han, B. (2020), Structural modal identification and health monitoring of building structures using self-sensing cementitious composites, Smart Materials and Structures, 29(5), 055013.

[2]. Huang, B.T., Yu, J.*, Wu, J.Q., Dai, J.G.* and Leung, C.K. (2020), Seawater sea-sand Engineered Cementitious Composites (SS-ECC) for marine and coastal applications. Composites Communications, 20, 100353. #

[3]. Lin, G. and Teng, J.G.*(2020). Advanced stress-strain model for FRP-confined concrete in square columns. Composites Part B: Engineering, 197, 108149.

[4].Huang, B.T., Wu, J.Q., Yu, J.*, Dai, J.G.* and Leung, C.K., Leung, Christopher K.Y. (2020). High-strength seawater sea-sand Engineered Cementitious Composites (SS-ECC): Mechanical performance and probabilistic modeling. Cement and Concrete Composites, 114, 103740. #

[5]. Qiu, Q.W., Zhu, J.H. and Dai, J.G.* (2020). In-situ X-ray microcomputed tomography monitoring of steel corrosion in engineered cementitious composite (ECC). Construction and Building Materials, 262, 120844.

[6].Yaphary, Y.L., Lau, D., Sanchez, F. and Poon, C.S.*(2020). Effects of Sodium/Calcium Cation Exchange on the Mechanical Properties of Calcium Silicate Hydrate (CSH). Construction and Building Materials, 243, 118283.#

[7].Yaseen, S.A.*, Yaseen, G.A., Poon, C.S.* and Li, Z.J.(2020). Influence of Seawater on the Morphological Evolution and the Microchemistry of Hydration Products of Tricalcium Silicates (C3S). ACS Sustainable Chemistry & Engineering, 8(42), 15875-15887.

[8].Sun, Y. and Poon, C.S.* (2020). Effect of seawater on the hydration of tricalcium silicate. RILEM Book Series, 26, 37-41.

[9].Li, L., Mei, H., Haider, M.F., Rizos, D., Xia, Y. * and Giurgiutiu, V. (2020). Guided wave field calculation in anisotropic layered structures using normal mode expansion method. Smart Structures and Systems, 26(2), 157-174.

[10]Chen, W.B., Liu, K., Feng, W.Q.* and Yin, J.H. (2020). Partially drained cyclic behaviour of granular fill material in triaxial condition. Soil Dynamics and Earthquake Engineering, 139, 106355.

[11].Ho, T.O., Tsang, D.C.*, Chen, W.B. and Yin, J.H. (2020). Evaluating the environmental impact of contaminated sediment column stabilized by deep cement mixing. Chemosphere, 261, 127755.

[12].Ho, T.O., Chen, W.B.*, Yin, J.H., Wu, P.C. and Tsang, D.C. (2020). Stress-Strain behaviour of Cement-Stabilized Hong Kong marine deposits. Construction and Building Materials, 274, 122103.

[13].Li, Y., Dong, Y.* and Qian, J. (2020). Higher-order analysis of probabilistic long-term loss under nonstationary hazards. Reliability Engineering & System Safety, 203, 107092.

[14].Qiu, Q.W. and Dai, J.G.*(2021). Meso-scale modeling of chloride diffusivity in mortar subjected to corrosion-induced cracking. Computer-Aided Civil and Infrastructure Engineering, https://doi.org/10.1111/mice.12657

[15].Huang, B.T., Wu, J., Yu, J.*, Dai, J.G., Leung, C.K.Y. and Li, V.C.(2021). Seawater sea-sand engineered/strain-hardening cementitious composites (ECC/SHCC): Assessment and modeling of crack characteristics. Cement and Concrete Research, 140, 106292.

[16].Wang, X.Q. and Lau, D.*(2021). Degradation of epoxy/glass interface in hygrothermal environment: An atomistic investigation. Composites Part B: Engineering, 206, 108534.

[17].Fu, C.L., Ni, Y.Q.*, Sun, T., Wang, Y.P., Ding, S.Q. and Vidakovic, M.(2021).Strain, torsion and refractive index sensors based on helical long period fibre grating inscribed in small-core fibre for structural condition monitoring. Advances in Structural Engineering. #

[18].Dhondy, T., Xiang, Y., Yu, T. and Teng, J.G.* (2020). Effects of mixing water salinity on the properties of concrete. Advances in Structural Engineering, https://doi.org/10.1177/1369433220965272

[19].Wang, X. Q., & Lau, D. (2020). Atomistic investigation of GFRP composites under chloride environment. Advances in Structural Engineering, https://doi.org/10.1177/1369433220961749.

[20].Huang, B. T., Wang, Y. T., Wu, J. Q., Yu, J., Dai, J. G., & Leung, C. K. (2020). Effect of fiber content on mechanical performance and cracking characteristics of ultra-high-performance seawater sea-sand concrete (UHP-SSC). Advances in Structural Engineering, https://doi.org/10.1177/1369433220972452 #.

[21].Yaphary, Y.L., Lau, D., Sanchez, F. and Poon, C.S.* (2021). Mechanical properties of colloidal calcium-silicate-hydrate gel with different gel-pore ionic solutions: A mesoscale study. Microporous and Mesoporous Materials, 110944.

[22]Zhang, Y., Sun, Y.J., Zheng, H., Cai, Y., Lam, W.L. and Poon, C.S.* (2021). Mechanism of strength evolution of seawater OPC pastes. Advances in Structural Engineering, https://doi.org/10.1177/1369433221993299

Stage 3

[1].Cai, Q.L. and Zhu, S.Y.* (2020) Unified strategy for overall impedance optimization in vibration-based electromagnetic energy harvesters. International Journal of Mechanical Sciences. 165: 105198.

[2].Cai, Q.L., Zhu, S.Y.* and Ke, S. (2020) Can we unify vibration control and energy harvesting objectives in energy regenerative tuned mass dampers? Smart Materials and Structures. 29: 087002.

[3].Zhu, D.M., Yuan, P. and Dong, Y.* (2021) Probabilistic performance of coastal bridges under hurricane waves using experimental and 3D numerical investigations, Engineering Structures, 242, 112493.

[4].Chen, Z., Chen, W.B.*, Yin, J.H., and Malik, N. (2021) Shaft Friction Characteristics of Two FRP Seawater Sea–Sand Concrete Piles in a Rock Socket with or without Debris. International Journal of Geomechanics, 21(7), 06021015.

[5].Xiong, Z.*, Zeng, Y., Li, L.G., Kwan, A.K.H. and He, S.H. (2021) Experimental study on the effects of glass fibres and expansive agent on the bond behaviour of glass/basalt FRP bars in seawater sea-sand concrete. Construction and Building Materials, 274, 122100.

[6].Wu, P.C., Tan, D.Y.*, Chen, W.B., Malik, N. and Yin, J.H. (2021) Novel fiber Bragg Grating-based strain gauges for monitoring dynamic responses of Celtis sinensis under typhoon conditions. Measurement, 172, 108966.

[7].Bate, B., Nie, S., Chen, Z.*, Zhang, F. and Chen, Y. (2021) Construction of soil–water characteristic curve of granular materials with toroidal model and artificially generated packings. Acta Geotechnica, 1-12.

[8].Li, J.Y. and Zhu, S.* (2021) Tunable electromagnetic damper with synthetic impedance and self-powered functions. Mechanical Systems and Signal Processing. 159: 107822.

[9].Wang, T., Zheng, J.J. and Dai, J.G.* (2021) Analysis of time-dependent chloride diffusion in surface-treated concrete based on a rapid numerical approach. Structures and Infrastructure Engineering, 1-13.

[10].Jiang, C., Lai, W.W.L.*, Sham, J.F.C. and Lin, G. (2021) Preliminary investigation of an approach to improve water impermeability in concrete with externally bonded FRP systems. Journal of Composites for Construction, ASCE, 25(6), 06021002.

[11].Zhou, J.K., Lin, G.* and Teng, J.G. (2021) Compound concrete-filled FRP tubular columns under cyclic axial compression. Composite Structures, 114329.

[12].Cai, Y.C. and Kwan, A.K.H.* (2021) Behaviour and design of cold-formed austenitic stainless steel circular tubes infilled with seawater sea-sand concrete. Engineering Structures, 241, 112435.

[13].Kai, M.F. and Dai, J.G.* (2021) Understanding geopolymer binder-aggregate interfacial characteristics at molecular level. Cement and Concrete Research, 149, 106582.

[14].Zheng, B.T. and Teng, J.G.* (2021) A plasticity constitutive model for concrete under multiaxial compression. Engineering Structures, 251B, 113435.

[15].Lin, K. and Yu, T.* (2021) Debonding simulation of fibre-matrix interfaces of FRP composites with reactive force field. Construction and Building Materials, 312, 125304.

[16].Sun, Y., Zhang, Y., Cai, Y., Lam, W.L., Lu, J.X., Shen, P., Poon, C.S.* (2021) Mechanisms on accelerating hydration of alite mixed with inorganic salts in seawater and characteristics of hydration products. ACS Sustainable Chemistry & Engineering, 9(31), 10479-90.

[17].Lu, J.X., Shen, P., Zhang, Y., Zheng, H., Sun, Y., Poon, C.S.* (2021) Early-age and microstructural properties of glass powder blended cement paste: Improvement by seawater. Cement and Concrete Composites, 122, 104165.

[18].Cai, Y., Xuan, D., Hou, P., Shi, J., Poon, C.S.* (2021) Effect of seawater as mixing water on the hydration behaviour of tricalcium aluminate. Cement and Concrete Research, 149, 106565.

[19].Pan, D., Yaseen, S.A.*, Chen, K., Niu, D., Leung, C.K.Y., Li, Z.J.* (2021) Study of the influence of seawater and sea sand on the mechanical and microstructural properties of concrete. Journal of Building Engineering, 42, 103006

[20].Sun, Y., Lu, J.X., and Poon, C.S.* (2021) Strength degradation of seawater-mixed alite pastes: an explanation from statistical nanoindentation perspective. Cement and Concrete Research, 152, 106669.

[21].Wang, X.Q., Wei, J., Buyukozturk, O., Leung, C.K.Y. and Lau, D.* (2021) Degradation of epoxy/glass interface in hygrothermal environment: an atomistic investigation. Composites Part B: Engineering, 206, 108534.

[22].Wang, X.Q. and Lau, D.* (2021) Atomistic investigation of GFRP composites under chloride environment., Advances in Structural Engineering, 24(6), 1138-1149.

[23].He, H., Chen, W.B., Yin, Z. Y., Senetakis, K.* and Yin, J.H. (2021) A micromechanical-based study on the tribological and creep-relaxation behavior of sand-FRP composite interfaces. Composite Structure. 275, 114423.

[24].Ho, T.O., Chen, W.B.*, Yin, J.H., Wu, P.C., Tsang, D.C.W. (2021) Stress-Strain behaviour of Cement-Stabilized Hong Kong marine deposits. Construction and Building Materials. 274, 122103.

[25].Zhao, M.H., Dong, Y.*, and Guo, H.Y. (2021) Comparative life cycle assessment of composite structures incorporating uncertainty and global sensitivity analysis. Engineering Structures, 242, 112394, 1-13.

[26].Guo, H.Y., Dong, Y.*, Gardoni, P. and Gu, X.L. (2021) Time-dependent reliability analysis based on point-evolution kernel density estimation: Comprehensive approach with continuous and shock deterioration and maintenance. ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering, 7(3), 04021032, 1-16.

[27].Guo, H.Y., Dong, Y.*, Bastidas-Arteaga, E. and Gu, X.L. (2021) Probabilistic failure analysis, performance assessment, and sensitivity analysis of corroded reinforced concrete structures. Engineering Failure Analysis, 124, 105328, 1-23.

Stage 4

[1].Dai, J. G., Huang, B.T. and Shah, Surendra P.* (2021), Recent Advances in Strain-hardening UHPC with Synthetic Fibers, Journal of Composites Science, 5(10), 283.

[2].Zhang XH, Zhu Z, Yuan GK and Zhu S (2021) Adaptive mode selection integrating Kalman filter for structural dynamic response reconstruction. Journal of Sound and Vibration, 515, 116497.

[3].Li JY and Zhu S (2021) Advanced vibration isolation technique using versatile electromagnetic shunt damper with tunable behavior. Engineering Structures. 242: 112503.

[4].Sun, Y., Lu, J.X. and Poon, C.S.* (2022). Strength degradation of seawater-mixed alite pastes: an explanation from statistical nanoindentation perspective. Cement and Concrete Research, 152, 106669.

[5].Lam, W.L., Shen, P.*, Cai, Y., Sun, Y., Zhang, Y. and Poon, C.S.* (2022). Effects of seawater on UHPC: Macro and microstructure properties. Construction and Building Materials, 340, 127767.

[6].Cai, Y., Xuan, D. and Poon, C.S.* (2022). Influence of availability of calcium on the hydration of tricalcium aluminate (C3A) in seawater mixed C3A‐gypsum system. Journal of the American Ceramic Society.

[7].Zheng, H., Lu, J., Shen, P., Sun, L., Poon, C.S.* and Li, W.* (2022). Corrosion behavior of carbon steel in chloride-contaminated ultra-high-performance cement pastes. Cement and Concrete Composites, 128, 104443.

[8].Chen, G.M., Zhang, J.J., Lin, G.*, Wu, Y.F. and Jiang, T. (2022). Behavior of different-sized FRP-confined square compound concrete columns containing recycled concrete lumps. Journal of Composites for Construction, ASCE, 26(2), 04022003.

[9].Ebead, U., Lau, D., Lollini, F., Nanni, A., Suraneni, P.* and Yu, T. (2022). A review of recent advances in the science and technology of seawater-mixed concrete. Cement and Concrete Research, 152, 106666.

[10].Zeng, J.J.*, Ye, Y.Y., Quach, W.M., Lin, G., Zhuge, Y., and Zhou, J.K. (2022). Compressive and transverse shear behaviour of novel FRP-UHPC hybrid bars. Composite Structures, 281, 115001.

[11].Wang, X.Q., Büyüköztürk, O., Leung, C.K. and Lau, D.* (2022). Atomistic prediction on the degradation of vinylester-based composite under chloride and elevated temperature. Composites Science and Technology, 109539.

[12].Wang, P., Ke, L., Wu, H. and Leung, C.K.* (2022). Synergic effect of temperature and alkalinity on the long-term durability of pure vinyl ester. Polymer Engineering and Science.

[13].Ding, S., Xiang, Y., Ni, Y.Q., Thakur, V.K., Wang, X., Han, B.* and Ou, J.P. (2022). In-situ synthesizing carbon nanotubes on cement to develop self-sensing cementitious composites for smart high-speed rail infrastructures. Nano Today, 43, 101438.

[14].Li, S., Chan, T.M.* and Young, B. (2022). Behavior of GFRP-concrete double tube composite columns, Thin-Walled Structures, 178, 109490.

[15].Yin, J.H.*, Chen Z.J. and Feng, W.Q. (2022). A general simple method for calculating consolidation settlements of layered clayey soils with vertical drains under staged loadings, Acta Geotechnica, 1-28.

[16].Guo, D., Zhou, H., Wang, H.P. and Dai, J.G.* (2022), Effect of temperature variation on the plate-end debonding of FRP-strengthened steel beams: coupled mixed-mode cohesive zone modeling, Engineering Fracture Mechanics, 270, 108583.

[17].Cai QL, Chen ZW, Zhu S and Mo LY (2022) On damage detection of beam structures using multiple types of influence lines. Structures. Accepted.


Patents:

[1]. Chinese invention patent: 付兵; 滕錦光. 纖維增強複合材料廢棄物的粗纖維化方法及其增強混凝土, Application No: CN201910778666.2, filed.

[2]. Chinese invention patent: 滕錦光;張冰. 增強部件及其製造方法、組合混凝土柱, Application No: 201710086284 .4, filed.

[3]. US patent: Jin-Guang Teng; Bing Zhang. Reinforcing members for concrete structures, Application No: 15/435865, filed.

[4]. Chinese invention patent: 王漢廷;滕錦光;梁耀領.一種纖維增強樹脂基複合材料包覆棒材產品及其製備方法, Application No: CN201811565627.6, filed.

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