ZHANG Daobo

Position:Lecturer
Address:Department of Civil Engineering, Tsinghua University, Beijing 100084, China
Postal Code:100084
Tel: (8610) 18811351570
E-mail:zhangdaobo@tsinghua.edu.cn

Education Background

Aug 2016 – Jun 2023 Tsinghua University, Civil Engineering, Ph.D.

Aug 2013 – Jul 2016 Tsinghua University, Economics (Second Bachelor's Degree), Bachelor's Degree

Aug 2012 – Jul 2016 Tsinghua University, Civil Engineering, Bachelor's Degree

Work Experience

Aug 2025 – Present   Department of Civil Engineering, Tsinghua University   Lecturer

Jul 2023 – Jul 2025   Department of Civil Engineering, Tsinghua University  Postdoctoral Researcher / Assistant Researcher

Teaching Courses

Principles and Experience of Intelligent Block Assembly

Principles of Machine Perception and Operating Systems

Innovative Design for Future Engineering

Honors and Awards

Jul 2025 Tsinghua University Teaching Achievement Award, Second Prize (4/5)

Jun 2024 China National Postdoctoral Program for Innovative Talents (1/1)

Jul 2023 Tsinghua University "Shuimu Scholar" Program (1/1)

Research Interests

Reinforcement Techniques and Structures for 3D Printed Concrete

Lunar Regolith Forming and Lunar Construction Technologies

Research Projects

1. National Natural Science Foundation of   China (NSFC) Young Scientists Fund (Category C)  Mechanism of External Bonded FRP Mesh   Reinforcement for 3D Printed Concrete and Mechanical Behavior of Curved   Components  Jan 2025 – Dec 2027

2. The National Key R&D Program of   China Development and Application   Technology of High-Performance Fiber Reinforced Composites for Underground   Engineering Structures Nov 2023 – Oct   2026

3. China National Postdoctoral Program for   Innovative Talents Forming Mechanism   and Key Technologies for Lunar Regolith Solar Concentrator Melting and Cladding   towards In-Situ Construction of Lunar Research Stations Jul 2024 – Jul 2025

4. China Postdoctoral Science Foundation   General Fund Project  Mechanism of External Bonded FRP Mesh   Reinforcement for 3D Printed Concrete and Mechanical Behavior of Compression   Members Jul 2024 – Jul 2025

5. Industry-University-Research   Collaboration Project Research on   Preparation Technology of Cement Concrete for Lunar Base Construction Jan 2024 – Dec 2026

6. The National Key R&D Program of   China Integrated Key Technologies and   Equipment for Novel Architectural 3D Printing in Multi-Scenario Applications Dec 2023 – Nov 2027

7. The National Key R&D Program of   China Research and Demonstration of   Key Technologies for Smart Venue Construction and Application in the National   Speed Skating Oval (Ice Ribbon) Oct 2019 – Jun 2022

Representative Academic Achievements

Academic Papers:

[1] Zhang D B, Feng P*, Zhou P Z, Xu W G, Ma G W. 3D printed concrete walls reinforced with flexible FRP textile: Automatic construction, digital rebuilding, and seismic performance[J]. Engineering Structures, 2023, 291: 116488.

[2] Zhang D B, Liu T Q*, Li S H, Luo H P, Ding G Z, Su Z H, Xie C F, Zhang S J, Feng P*. Three-dimensional laser scanning for large-scale as-built surveying of 2022 Beijing Winter Olympic Speed Skating Stadium: A case study[J]. Journal of Building Engineering, 2022, 59: 105075.

[3] Zhang D B, Meng X M, Hu N, Feng P*. Experimental study on loading-induced power generation decline of component-level flexible solar cells[J]. Thin-walled Structures, 2022, 175: 109231.

[4] Ma C P#, Zhang D B#, Zhang Z W#, Zhang H Q, Schellenberg A, Gul D, Feng P*, Hu N*. Exploiting spatial heterogeneity and response characterization in non-uniform architected materials inspired by slime mould growth[J]. Bioinspiration & Biomimetics, 2019, 14(6): 064001.

[5] Bao C R, Zhang D B, Wang Q Y, Cui Y F, Feng P*. Lunar in situ large-scale construction: quantitative evaluation of regolith solidification techniques[J]. Engineering, 2024.

[6] Meng X M*, Zhang D B, Feng P*, Zhai J Q, Liu T Q. Flexural behavior of singly curved GFRP sandwich panel with polyurethane foam core[J]. Engineering Structures, 2024, 314: 118389.

[7] Xie B L, Zhang D B, Feng P, Hu N. Accelerated design and characterization of nonuniformed cellular architected materials with tunable mechanical properties[M]//Machine Learning Aided Analysis Design and Additive Manufacturing of Functionally Graded Porous Composite Structures. Woodhead Publishing, 2024: 241-250.

[8] Bao C R, Feng P*, Zhang D B, Wang Q Y, Yang S B. Conceptual design and experimental investigation of regolith bag structures for lunar in situ construction[J]. Journal of Building Engineering, 2024, 95: 110245.

[9] Xu W G, Huang S Y*, Han D, Zhang Z L, Gao Y, Feng P, Zhang D B. Toward automated construction: The design-to-printing workflow for a robotic in-situ 3D printed house[J]. Case Studies in Construction Materials, 2022, 17: e01442.

[10] Chen H, Zhang D B, Chen P, Li N, Perrot A*. A review of the extruder system design for large-scale extrusion-based 3D concrete printing[J]. Materials, 2023, 16:2661.

[11] Meng X M*, Zhang D B, Feng P*, Hu N. Review on mechanical behavior of solar cells for building integrated photovoltaics[J]. Sustainable Structures, 2021, 10.54113/j.sust.2021.000009.

[12] Zuo Y, Zhang D B, Zhang S J, Bao C R, Qi J F, Liu M Y, Feng P*. Effect of vacuum environment on micro morphology and porosity of lunar soil concrete[C]. Journal of Physics: Conference Series. IOP Publishing, 2022, 2160(1): 012023.

[13] Zuo Y, Shao H, Bao C R, Yang S B, Qi J F, Liu M Y, Zhang D B*, Feng P*. Research on the material performance and forming process of lunar regolith simulant[C]//Journal of Physics: Conference Series. IOP Publishing, 2024, 2706(1): 012009.

[14] Feng P*, Bao C R, Zhang D B, Yue Q R, Qi J F, Zuo Y. Construction technology of lunar base based on in-situ lunar resources[J]. Industrial Construction, 2021, 51(1): 169-177. (in Chinese)

[15] Bao C R, Zhang D B, Zhi X, Ma Z C, Feng P, Wu H. Development of TC-1C lunar regolith simulant for research on lunar engineering construction[J]. Industrial Construction, 2025, 55(01): 176-181. (in Chinese)

[16] Chen C, Zhang D B, Qi J F, Feng P, Zuo Y. 3D printing technology for lunar base using in-situ lunar resources[J]. Aerospace Materials & Technology, 2025, 55(01): 51-60. (in Chinese)

[17]  Yang S B, Feng P*, Zhang D B, Zuo Y, Qi J F, Bao C R, Wang Q Y. Experimental study on solar concentrating melting of lunar regolith simulant for in-situ lunar construction[J]. Journal of Huazhong University of Science and Technology (Natural Science Edition), 2024, 52(08): 130-138. (in Chinese)

[18]  Zhao J C, Luo Y X, Zhang D B, Bao C R, Feng P*. Construction scheme for Mars base based on in-situ resource utilization[J]. Industrial Construction, 2024, 54(01): 102-114. (in Chinese)

[19] Zhang S J, Su Z H*, Luo H P, Li S H, Feng P, Wang S B, Zhang D B. Study on mechanical properties of high-ductility waterproof membrane for the roof of National Speed Skating Oval[J]. Industrial Construction, 2022, 52(04): 171-178. (in Chinese)

[20] Su Z H*, Li J L, Li S H, Luo H P, Xiao S J, Zhang D B. Construction technology of load replacement for flexible cable-net roof[J]. Building Technology, 2023, 54(01): 19-23. (in Chinese)

[21] Zhang Y, Luo H P*, Su Z H, Zhang L, Zhang D B, Feng P, Gao R. Construction technology for large-scale special-shaped stiff structure in the National Speed Skating Oval project[J]. Construction Technology, 2020, 49(10): 1-3+98. (in Chinese)

[22] Zhang Y, Luo H P, Su Z H*, Su L Y, Zhang C, Jia Y Y, Zhang D B, Feng P, Sun D. Design and construction of curved glass curtain wall for the National Speed Skating Oval project[J]. Construction Technology, 2020, 49(10): 12-15+26. (in Chinese)


Invention Patents:

[1] Feng P, Zhang D B, Bao C R, Zhou P Z. Connection method for 3D printed prefabricated box structure: China, CN202110118825.3[P]. 2021-01-28. (Granted)

[2] Feng P, Zhang D B, Yang S B. 3D printed formwork composite material reinforced ribbed slab unit without reinforcement: China, CN202310121649.8[P]. 2024-10-11. (Granted)

[3] Feng P, Xiao S J, Zhang D B. Concrete structure using rebar coupler connections to improve impact and seismic resistance: China, CN202310158516.8[P]. 2024-07-02. (Granted)

[4] Zuo Y, Qi J F, Liu M Y, Feng P, Zhang Z H, Zhang D B, Pang Y, Wang Z, Chen Y, Jiang J, Sun S, Liu J, Li J Y, Zhang J C, Chen C, Gong W Y. Low-energy consumption simulated lunar regolith solidification and forming device and method suitable for lunar environment: China, CN202111316085.0[P]. 2023-06-06. (Granted)

[5] Feng P, Zhang D B, Zhang S J, Bao C R, Zuo Y. Microwave sintering automation equipment suitable for lunar surface hardening: China, CN202111268700.5[P]. 2022-11-18. (Granted)

[6] Zuo Y, Qi J F, Xie Y P, Zhang D B, Wang Z, Chen Y, Nie Z Y, Wang Z, Li J Y, Li X, Chen C, Gong W Y, Zhang J C. Method and device for laser sintering forming suitable for simulated lunar regolith: China, CN202010682521.5[P]. 2022-08-12. (Granted)

[7] Zuo Y, Qi J F, Wang Z, Chen Y, Chen C, Zhang D B. Extrudable lunar regolith concrete and its preparation method: China, CN201910704170.0[P]. 2021-06-11. (Granted)

[8] Feng P, Li Z Y, Zhang D B. Test fixture, test device and test method for testing circumferential tensile properties of pipe fittings: China, CN202110261469.0[P]. 2021-03-10. (Granted)

[9] Zhang D B, Feng P, Zhao J C, Xiao S J. 3D printed masonry wall for deep underground shafts and its preparation method and application: China, CN202310191888.0[P]. 2023-03-02.

[10] Feng P, Bao C R, Zhang D B, Wang Q Y, Yang S B. Formwork-free microwave sintered landing platform for lunar base and its construction method: China, CN202410274066.3[P]. 2024-09-10.

[11] Wang Q Y, Feng P, Zhang D B, Teng M R, Bao C R, Yang S B. Self-stiffening inflatable habitat for lunar surface construction: China, CN202311815939.9[P]. 2024-03-01.

[12] Feng P, Bao C R, Zhang D B, Yang S B, Zuo Y. In-situ filling and solidification equipment for lunar regolith bag structures for lunar construction and construction method: China, CN202311346235.1[P]. 2024-02-06.

[13] Feng P, Bao C R, Zhang D B, Yang S B, Zuo Y. Continuous filling and solidification equipment for lunar regolith bag structures for lunar construction and its construction method: China, CN202311344842.4[P]. 2023-12-01.

[14] Zuo Y, Qi J F, Gao Z J, Feng P, Liu M Y, Li Z W, Lu X, Liu J H, Zhang D B, et al. Additive manufacturing forming method and device for lunar regolith based on in-situ lunar energy assistance: China, CN202311574394.7[P]. 2024-03-08.

[15] Yang S B, Zhang D B, Feng P, Zuo Y, Qi J F. Lunar regolith solar sintering solidification equipment and method suitable for lunar surface: China, CN202311083762.8[P]. 2023-11-21.

[16] Feng P, Bao C R, Zhang D B, Zhang S J, Zuo Y. Lunar regolith bag structure for lunar base construction: China, CN202111274603.7[P]. 2022-03-11.

[17] Feng P, Luo H P, Zhang D B, Li S H, Ding G Z, Liu T Q, Su Z H, Su L Y. Reverse engineering analysis method for building structures based on 3D laser scanning modeling: China, CN202011447137.3[P]. 2020-12-09.

[18] Feng P, Li S H, Zhang D B, Luo H P, Xie C F, Liu T Q, Su Z H, Su L Y. Self-powered integrated deformation monitoring and transmission device: China, CN202011454238.3[P]. 2020-12-10.

[19] Zuo Y, Qi J F, Feng P, Liu M Y, Liu C L, Zhang D B, Wang Z, Chen Y, Sun S, Ma N, Li J Y, Zhang J C, Chen C, Gong W Y. Lunar landing platform and its construction method: China, CN202110944143.8[P]. 2021-08-17.