Mr Junrun Xia
Higher Degree by Research Candidate
School of Civil Engineering and Construction
College of Engineering and Information Technology
Jun-Run Xia is a Ph.D student in the College of Engineering and Information Technology, with research interests in UHPC, sustainable cementitious materials, and bridge engineering. His recent research focuses on steel slag utilization and activation for UHPC, durability of FRP embedded in UHPC, and UHPC–NSC interface behaviour. According to his Google Scholar profile, he has published 12 papers, received 295 citations, and achieved an h-index of 8. He has also contributed to peer review for Case Studies in Construction Materials, Journal of Building Engineering, Journal of Road Engineering, Construction and Building Materials, Process Safety and Environmental Protection, Structures, Journal of Reinforced Plastics and Composites, and Results in Engineering.
| Language | Competency |
|---|---|
| English | Can read, write, speak and peer review |
| Year | Citation |
|---|---|
| 2026 | Xia, J. R., Zeng, J. J., Liu, J., Liu, Y., Yoo, D. Y., & Zhuge, Y. (2026). Utilisation and activation strategies of steel slag for ultra-high-performance concrete: A comprehensive review. Journal of Building Engineering, 122, 26 pages. Scopus2 WoS3 |
| 2026 | Sun, H. -Q., Zhou, J. -K., Xia, J. -R., Zeng, J. -J., & Zhuge, Y. (2026). Interface bonding enhancement for FRP grid reinforced 3D-printed concrete structures. Construction and Building Materials, 521, 146147-1-146147-15. |
| 2026 | Zhang, Z., Jiang, Y., Zou, Y., Zhou, H., Yang, J., Li, Y., & Xia, J. -R. (2026). Microscopic damage mechanism of recycled aggregate concrete under coupled freeze-thaw and physical sulfate attack in semi-buried conditions. Construction and Building Materials, 535, 146998-1-146998-19. |
| 2026 | Sun, H. Q., Zeng, J. J., Xie, S. S., Xia, J. R., Yu, S., & Zhuge, Y. (2026). Mechanical and microstructural characterization of interlayer bonding in multi-material 3D-Printed concrete. Cement and Concrete Composites, 165(106308), 1-19. Scopus13 WoS16 |
| 2026 | Sun, H. Q., Xie, S. S., Xia, J. R., Yan, Z. T., Zhuge, Y., & Zeng, J. J. (2026). Functionally graded concrete: a comprehensive review of design concepts, production methods, material innovations, and structural performance. Composite Structures, 375(119757), 1-30. Scopus5 WoS6 |
| 2025 | Zeng, J. J., Sun, H. Q., Xia, J. R., Feng, S. Z., Zhao, B., Zhou, J. K., & Zhuge, Y. (2025). Bond behavior between concrete and thermoplastic GFRP bars with novel surface features. Engineering Structures, 343, 13 pages. Scopus8 WoS7 |
| 2024 | Xia, J., Zhou, J., Yang, J., Zhang, Z., & Zou, Y. (2024). Damage evolution and residual shear resistance of toughness-improved UHPC-NSC interface under high-stress level of fatigue shear loading. Construction and Building Materials, 430, 17 pages. Scopus21 WoS21 |
| 2024 | Yang, J., Xia, J., Zhang, Z., Zhou, J., Zou, Y., Wang, Y., & Shen, X. (2024). Mesoscopic shear behavior and strength characteristic of UHPC-NC interface considering the combined effect of mechanical interlocking and dowel action. Engineering Fracture Mechanics, 307, 24 pages. Scopus43 WoS44 |
| 2024 | Xia, J., Yang, J., Zhang, Z., Zou, Y., Zhou, J., Wang, Z., . . . Kuang, Y. (2024). Evaluating the performance of masonry arch strengthened with UHPC at extrados and intrados by experimental, numerical and analytical approaches. Structures, 65, 16 pages. Scopus5 WoS5 |
| 2023 | Yang, J., Chen, R., Zhang, Z., Zou, Y., Zhou, J., & Xia, J. (2023). Experimental study on the ultimate bearing capacity of damaged RC arches strengthened with ultra-high performance concrete. Engineering Structures, 279, 13 pages. Scopus108 WoS102 |
| 2022 | Yang, J., Xia, J., Zhang, Z., Zou, Y., Wang, Z., & Zhou, J. (2022). Experimental and numerical investigations on the mechanical behavior of reinforced concrete arches strengthened with UHPC subjected to asymmetric load. Structures, 39, 1158-1175. Scopus35 WoS31 |
| 2022 | Yang, J., Xia, J., Cheng, C., Wang, J., Zhang, J., & Wang, G. (2022). Research on the Bonding Performance of UHPC–NC Interfaces With Different Sizes of Grooves. Frontiers in Materials, 9, 14 pages. Scopus20 WoS17 |
| Year | Citation |
|---|---|
| 2025 | Yang, J., Zhou, J., Leng, J., Xia, J., Chen, R., Wang, Z., . . . Zhang, Z. (2025). Evaluation of the Damaged Stone Arch Bridge Strengthened with Uhpc Based on Limit Analysis Method. In L. Ferrara, G. Muciaccia, & N. Trochoutsou (Eds.), Rilem Bookseries (Vol. 55, pp. 507-514). SPRINGER INTERNATIONAL PUBLISHING AG. DOI |
| Year | Citation |
|---|---|
| 2023 | Xia, J., Yang, J., Zhang, Z., Zou, Y., Chen, R., & Jiang, Z. (2023). Dic and Mesoscale Based Analyses on Damage Evolution in Uhpc-Nc Interface Under Direct Shear Loading. DOI |