论文著作:
[1] H. Wang, Y. Liu, Z. Hu, Z. Liu, D. Xu, J. Liu, Assessment of determination methods for time-zero of autogenous shrinkage in cement mortars, Cem. Concr. Compos. 152 (2024) 105607.
[2] J. Wang, Z. Hu, J. Zhang, H. Li, J. Liu, A hydro-thermo-chemo-mechanical model for slag-blended cementitious systems at early ages, Compos. Part B Eng. 287 (2024).
[3] C. Liu, J. Wang, C. Yu, Y. Kong, Z. Hu, J. Liu, Carbonation strengthening mechanism of dry cement-based materials under supercritical carbon dioxide, J. Build. Eng. 94 (2024) 109915.
[4] S. Ding, Z. Hu, L. Li, J. Liu, A new hypothesis for full stage deformation of cement-based materials mixed with MgO expansive agent: Generation and filling of cavity, Constr. Build. Mater. 440 (2024) 137458.
[5] S. Ding, Z. Hu, Z. Geng, J. Liu, W. Xu, Monitoring the effect of MgO expansive additive on micromechanical properties of cementitious materials using a combined method of EDS-nanoindentation, Constr. Build. Mater. 411 (2024) 134589.
[6] J. Wang, H. Li, Z. Hu, Z. Li, J. Liu, Phase quantification analysis in cement-blended slag system with the PONKCS method, J. Sustain. Cem. Mater. 13 (2024) 1390–1405.
[7] J. Huang, X.M. Aretxabaleta, Y. Yan, Z. Hu, H. Manzano, J. Liu, Elucidating the Synergistic Effects of Temperature Rise Inhibitor at the Water Tricalcium Silicate Interface, J. Phys. Chem. C. 128 (2024) 6800–6812.
[8] Z. Hu, T. Cajuhi, N. Toropovs, M. Griffa, M. Wyrzykowski, A. Kaestner, L. De Lorenzis, P. Lura, A neutron radiography study on the drying of cement mortars: Effect of mixture composition and crack length, Cem. Concr. Res. 172 (2023) 107245.
[9] H. Wang, Z. Hu, T. Yao, H. Li, Z. Li, J. Liu, Gradient characterization of steel-concrete interface at early ages, Cem. Concr. Compos. 137 (2023) 104941.
[10] J. Wang, C. Gao, J. Tang, Z. Hu, J. Liu, The multi-scale mechanical properties of calcium-silicate-hydrate, Cem. Concr. Compos. 140 (2023) 105097.
[11] J. Wang, Z. Hu, Y. Chen, J. Huang, Y. Ma, W. Zhu, J. Liu, Effect of Ca/Si and Al/Si on micromechanical properties of C(-A)-S-H, Cem. Concr. Res. 157 (2022) 106811.
[12] 胡张莉,刘加平,赵羽习,赵海涛,戚家南,王育江,韩方玉,金鸣,数据驱动的混凝土材料-结构一体化设计研究进展,建筑结构学报,2024.45(8):20-27。
科研项目:
[1] 国家自然科学基金青年项目,相对湿度对水泥基材料徐变的影响规律和作用机理,主持;
[2] 国家自然科学基金面上项目,温-湿耦合作用下混凝土变形开裂机理及智能评估,主持;
[3] 国家自然科学基金重大项目,新一代混凝土设计理论与方法,参与;
[4] 国家重点研发项目,交通基础设施材料高通量数字化表征与智能设计关键技术,参与;
[5] 国家重点研发项目,重大交通工程混凝土高性能制备与应用基础,参与。
代表性论文
[1] H. Wang, Y. Liu, Z. Hu, Z. Liu, D. Xu, J. Liu, Assessment of determination methods for time-zero of autogenous shrinkage in cement mortars, Cem. Concr. Compos. 152 (2024) 105607.
[2] J. Wang, Z. Hu, J. Zhang, H. Li, J. Liu, A hydro-thermo-chemo-mechanical model for slag-blended cementitious systems at early ages, Compos. Part B Eng. 287 (2024).
[3] C. Liu, J. Wang, C. Yu, Y. Kong, Z. Hu, J. Liu, Carbonation strengthening mechanism of dry cement-based materials under supercritical carbon dioxide, J. Build. Eng. 94 (2024) 109915.
[4] S. Ding, Z. Hu, L. Li, J. Liu, A new hypothesis for full stage deformation of cement-based materials mixed with MgO expansive agent: Generation and filling of cavity, Constr. Build. Mater. 440 (2024) 137458.
[5] S. Ding, Z. Hu, Z. Geng, J. Liu, W. Xu, Monitoring the effect of MgO expansive additive on micromechanical properties of cementitious materials using a combined method of EDS-nanoindentation, Constr. Build. Mater. 411 (2024) 134589.
[6] J. Wang, H. Li, Z. Hu, Z. Li, J. Liu, Phase quantification analysis in cement-blended slag system with the PONKCS method, J. Sustain. Cem. Mater. 13 (2024) 1390–1405.
[7] J. Huang, X.M. Aretxabaleta, Y. Yan, Z. Hu, H. Manzano, J. Liu, Elucidating the Synergistic Effects of Temperature Rise Inhibitor at the Water Tricalcium Silicate Interface, J. Phys. Chem. C. 128 (2024) 6800–6812.
[8] Z. Hu, T. Cajuhi, N. Toropovs, M. Griffa, M. Wyrzykowski, A. Kaestner, L. De Lorenzis, P. Lura, A neutron radiography study on the drying of cement mortars: Effect of mixture composition and crack length, Cem. Concr. Res. 172 (2023) 107245.
[9] H. Wang, Z. Hu, T. Yao, H. Li, Z. Li, J. Liu, Gradient characterization of steel-concrete interface at early ages, Cem. Concr. Compos. 137 (2023) 104941.