Jiang Quan¶
Information
- ORCID
- 0000-0001-6039-9429
- First Contribution
- 2022-03-28
- Last Contribution
- 2025-07-05
- Number Contributions
- 9
- Number Citations
- 128
Top Co-Authors
- Liu Qiang (7)
- Zhao Herui (4)
- Hou Dongqi (3)
- Xia Yong (3)
- Xin Jie (3)
Top Cited Articles
Persons This Author Cites the Most
- Xiao Jianzhuang (17)
- Sanjayan Jay (15)
- Tan Ming (13)
- Lu Lingchao (12)
- Zhao Piqi (12)
Persons This Author Is Cited Most By
- Li Mingyang (6)
- Liu Zhenbang (6)
- Tan Ming (6)
- Wong Teck (6)
- Mehrali Mehdi (5)
- Liu Qiang, Zhang Xinwei, Jiang Quan, Xia Yong et al. (2025-07)
Effects of Nano-Al2O3, Nano-MgO and Nano-Fe2O3 on the Properties of Cement-Based 3D Printing:
A Comparative Study - Zhao Herui, Jiang Quan, Xia Yong, Hou Dongqi et al. (2025-04)
Microbial-Induced Calcareous Precipitation Effect on Tensile Strength and Early Age Shrinkage of 3D Printed Concrete - Liu Qiang, Jiang Quan, Zhao Herui, Yu Yang et al. (2025-02)
Porous Diatomite Promotes Lightweight and Low-Carbon Concrete 3D Printing:
An Exploratory Study - Zhao Herui, Jiang Quan, Xia Yong, Liu Jian et al. (2024-11)
Microbial-Induced Carbonate Reinforcement for 3D Printed Concrete:
Testing in Printable and Mechanical Strength - Liu Qiang, Jiang Quan, Yu Rang, Rong Yao et al. (2023-12)
Extrusion 3D Printing Circular and Horseshoe Tunnel Physical Models:
A Comparative Study of Deformation and Brittle Failure - Liu Qiang, Jiang Quan, Zhou Zhenhua, Xin Jie et al. (2023-02)
The Printable and Hardened Properties of Nano-Calcium Carbonate with Modified Polypropylene-Fibers for Cement-Based 3D Printing - Liu Qiang, Jiang Quan, Huang Mojia, Xin Jie et al. (2022-10)
The Fresh and Hardened Properties of 3D Printing Cement-Base Materials with Self-Cleaning Nano-TiO2:
An Exploratory Study - Jiang Quan, Liu Qiang, Wu Si, Zheng Hong et al. (2022-06)
Modification Effect of Nano-Silica and Polypropylene-Fiber for Extrusion-Based 3D Printing Concrete:
Printability and Mechanical Anisotropy - Liu Qiang, Jiang Quan, Huang Mojia, Xin Jie et al. (2022-03)
Modifying Effect of Anionic Polyacrylamide Dose for Cement-Based 3DP Materials:
Printability and Mechanical Performance Tests