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Bo Wu
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年份
Preparation of MgAl layered double hydroxides intercalated with nitrite ions and corrosion protection of steel bars in simulated carbonated concrete pore solution
J Zuo, B Wu, C Luo, B Dong, F Xing
Corrosion Science 152, 120-129, 2019
1122019
Study on the affinity sequence between inhibitor ions and chloride ions in MgAl layer double hydroxides and their effects on corrosion protection for carbon steel
B Wu, J Zuo, B Dong, F Xing, C Luo
Applied Clay Science 180, 105181, 2019
402019
Enhancing the hydrophobic PP fiber/cement matrix interface by coating nano-AlOOH to the fiber surface in a facile method
B Wu, J Qiu
Cement and Concrete Composites 125, 104297, 2022
262022
Incorporating hollow natural fiber (HNF) to enhance CO2 sequestration and mechanical properties of reactive magnesia cement (RMC)-based composites: Feasibility study
B Wu, J Qiu
Journal of CO2 Utilization 57, 101874, 2022
182022
Effects of nitrite ion intercalated CaAl and MgAl layered double hydroxides on the properties of concrete mortar
J Zuo, B Wu, B Dong, F Xing, J Ma, G Wei
Cement and Concrete Composites 145, 105306, 2024
92024
Cracking can make concrete stronger–The coupled effect of matrix cracking and SiO2-enhanced fiber/matrix interface healing on the tensile strength of FRCC
B Wu, Y Liu, P Feng, J Qiu
Cement and Concrete Composites 138, 105011, 2023
62023
The effect of depth-dependent carbonation on the interfacial strength between GFRP reinforcement bar and reactive magnesia cementitious composites
B Wu, P Wang, X Su, W Li, CKY Leung, J Qiu
Cement and Concrete Composites 150, 105533, 2024
22024
A new fiber-bridging constitutive model for quantifying the matrix carbonation and fiber-to-matrix interface healing in PVA fiber-reinforced SHCC
Y Liu, B Wu, J Qiu
Construction and Building Materials 399, 132548, 2023
22023
Effect of internal moisture content (IMC) on the CO2 sequestration efficiency of hollow natural fiber (HNF)-reinforced reactive magnesia cement (RMC) composites
B Wu, YW Chung, Y Tang, J Qiu
Construction and Building Materials 428, 136339, 2024
12024
Autogenous healing of the interface between hollow natural fiber (HNF) and reactive magnesia cement (RMC) matrix
B Wu, P Wang, J Qiu
Construction and Building Materials 422, 135843, 2024
12024
A Depth-Dependent Fiber-Bridging Model to Predict the Tensile Properties Recovery Induced by the Self-healing of Strain-Hardening Cementitious Composites
Y Liu, B Wu, J Qiu
International Conference on Strain-Hardening Cement-Based Composites, 109-118, 2022
12022
Effect of Nano-SiO2 Coating on the Mechanical Recovery of Debonded Fiber-Cement Interface Under Water Curing
B Wu, J Qiu
Fibre Reinforced Concrete: Improvements and Innovations II: X RILEM-fib …, 2022
12022
Combined effect of self-stressing and confinement on GFRP-LC3 interface bond
B Wu, T Wang, CKY Leung, J Qiu
Cement and Concrete Composites, 105798, 2024
2024
Carbonation of Hollow Natural Fibers Reinforced MgO-SiO2 (HNFs-MS) Composites
B Wu, J Qiu
RILEM-fib International Symposium on Fibre Reinforced Concrete, 303-310, 2024
2024
Effect of hollow natural fiber (HNF) content on the CO2 diffusion, carbonation, and strength development of reactive magnesium cement (RMC)-based composites
B Wu, S Qin, J Qiu
CEMENT 16, 100102, 2024
2024
Autogenous healing of hollow natural fiber (HNF)-reinforced reactive magnesium cement (RMC)
B Wu, J Qiu
MATEC Web of Conferences 378, 02025, 2023
2023
Tensile behavior of strain-hardening cementitious composites after self-healing based on a novel fiber-bridging model considering preloading and reloading
Y Liu, B Wu, J Qiu
MATEC Web of Conferences 378, 09005, 2023
2023
Developing CO2-Sequstrating Strain-Hardening Magnesia-Based Composite (SHMC) with Hybrid Synthetic-Natural Fibers
B Wu, X Su, J Qiu
International Conference on Strain-Hardening Cement-Based Composites, 43-52, 2022
2022
High-performance Reactive Magnesium Cement Incorporating Hollow Natural Fiber and Silica Sand
B Wu, J Qiu
MATEC Web of Conferences 364, 2022
2022
Reinforced MgO-SiO2 (HNFs-MS) Composites
B Wu, J Qiu
Transforming Construction: Advances in Fiber Reinforced Concrete: XI RILEM …, 0
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