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Sun Yan

Information

ORCID
0009-0009-4600-9012
First Contribution
2023-12-10
Last Contribution
2026-03-28
Number Contributions
15
Number Citations
104

Top Co-Authors

  1. Qian Ye (13)
  2. Du Guoqiang (8)
  3. Li Shiping (3)
  4. Yu Xiaoniu (3)
  5. Zhang Daxu (3)

Persons This Author Cites the Most

  1. Qian Ye (52)
  2. Mechtcherine Viktor (41)
  3. Ma Guowei (31)
  4. Zhang Yamei (30)
  5. Wang Li (27)

Persons This Author Is Cited Most By

  1. Qian Ye (12)
  2. Du Guoqiang (11)
  3. Chen Wenguang (10)
  4. Ye Junhong (10)
  5. Yu Jiangtao (10)


  1. Li Shiping, Sun Yan, Zhang Daxu, Chen Wujun et al. (2026-03)
    Bio-Inspired Bouligand Architectures Enable Biaxial Toughening and Programmable Energy Dissipation in 3D-Printed Strain-Hardening Cementitious Composites
  2. Du Guoqiang, Sun Yan, Deng Xiaowei, Qian Ye (2026-02)
    Bending Performance of Bio-Inspired 3D Printed Porous Lattice SHCC Circular Arch Structures
  3. Sun Yan, Du Guoqiang, Deng Xiaowei, Qian Ye (2026-01)
    Enhancing Fiber Alignment and Tensile Properties of 3D-Printed Ultra-High Performance Strain-Hardening Cementitious Composites by Nozzle Channel Design
  4. Li Shiping, Sun Yan, Qian Ye, Chen Wujun et al. (2025-11)
    Bio-Inspired Jigsaw-Interlocking Suture Interfaces for Enhanced Flexural Response of 3D-Printed Strain-Hardening Cementitious Composites
  5. Sun Yan, Du Guoqiang, Mudasir Maryam (2025-11)
    Rheological Investigations of Fresh Fiber-Reinforced Cementitious Composites Using Hydrophobic / Hydrophilic UHMWPE Fibers for 3D Concrete Printing Evaluation
  6. Sun Yan, Mudasir Maryam (2025-09)
    3D Printing Performance of Strain-Hardening Cementitious Composites with Different UHMWPE Fibers in Correlation with Rheology
  7. Li Shiping, Sun Yan, Qian Ye, Chen Wujun et al. (2025-08)
    Bio-Inspired Bouligand Architectures for Enhanced Flexural Performance in 3D-Printed Strain-Hardening Cementitious Composites (3DP-SHCC)
  8. Sun Yan, Du Guoqiang, Deng Xiaowei, Qian Ye (2025-06)
    Effects of Nozzle Thickness on the Mechanical Properties of 3D Printable Ultra-High Performance Strain-Hardening Cementitious Composites (UHP-SHCC)
  9. Du Guoqiang, Sun Yan, Qian Ye (2025-03)
    In-Plane and Out-of-Plane Compressive Performance of Bio-Inspired 3D Printed Strain-Hardening Cementitious Composite Lattice Structures
  10. Du Guoqiang, Sun Yan, Qian Ye (2024-10)
    Nature-Inspired Approach for Enhancing the Fracture Performance of 3D Printed Strain-Hardening Cementitious Composites (3DP-SHCC)
  11. Qiu Minghong, Sun Yan, Qian Ye (2024-09)
    Impact of Groove-and-Tongue Parameters on the Bonding Behavior Between 3D Printed UHP-SHCC and Cast Normal Concrete
  12. Du Guoqiang, Sun Yan, Qian Ye (2024-08)
    3D Printed Strain-Hardening Cementitious Composites (3DP-SHCC) Reticulated Shell Roof Inspired by the Water Spider
  13. Qiu Minghong, Qian Ye, Sun Yan, Leung Christopher (2024-07)
    Flexural Performance of Concrete Beams via 3D Printing Stay-in-Place Formwork Followed by Casting of Normal Concrete
  14. Du Guoqiang, Sun Yan, Qian Ye (2024-03)
    Flexural Performance of Nature-Inspired 3D Printed Strain-Hardening Cementitious Composites with Bouligand Structures
  15. Qiu Minghong, Sun Yan, Qian Ye (2023-12)
    Interfacial Bonding Performance of 3D Printed Ultra-High-Performance Strain-Hardening Cementitious Composites and Cast Normal Concrete