Research Interests
Cement and concrete materialsMr Hassan Amjad
Higher Degree by Research Candidate
School of Civil Engineering and Construction
College of Engineering and Information Technology
Towards redefining the future of construction materials
| Year | Citation |
|---|---|
| 2026 | Amjad, H., Abd-Elaal, E. S., Ma, X., Benn, T., Fisher, M., & Youssf, O. (2026). Multi-scale investigation of cement mortars incorporating iron ore tailings: Linking microstructure to mechanical performance and durability. Case Studies in Construction Materials, 25, e06258. |
| 2025 | Imran, M., Amjad, H., Khan, S., & Ali, S. (2025). Machine learning assisted prediction of the mechanical properties of carbon nanotube-incorporated concrete. Structural Concrete, 26(2), 1613-1635. Scopus26 WoS25 |
| 2025 | Amjad, H., Abd Elaal, E. S., Ma, X., Benn, T., & Fisher, M. (2025). A critical review of Iron Ore tailings as cement and aggregate substitutes for robust infrastructure: mechanical, durability, and Socio-Economic Impacts. Journal of Cleaner Production, 492(144853), 1-16. Scopus38 WoS37 |
| 2024 | Fiaz, M., Khan, S. A., Amjad, H., Sajid, Z. W., & Khushnood, R. A. (2024). Comprehensive investigation for the production of optimized interlocking compressed earthen bricks with varying proportions of stabilizer, water, and fine aggregate. Advances In Civil Engineering, 2024(5216589), 1-14. Scopus4 WoS2 |
| 2024 | Khan, S. A., Amjad, H., Ahmad, F., & Khan, H. A. (2024). A scientometric review summarizing the impact of nanomaterials on the fresh, hardened, and durability properties of cement-based materials. Advances In Civil Engineering, 2024(1, article no. 8639483), 1-20. Scopus29 WoS22 |
| 2024 | Khan, S. A., Ghazi, S. M. U., Amjad, H., Imran, M., & Khushnood, R. A. (2024). Emerging horizons in 3D printed cement-based materials with nanomaterial integration: A review. Construction and Building Materials, 411, 24 pages. Scopus48 WoS40 |
| 2024 | khan, G., Ahmed, A., Amjad, H., Ahmad, A., Nawaz, R., & Iqbal, M. (2024). On fracture criteria in phase field model for fracture in asphalt concrete. Case Studies in Construction Materials, 20, 16 pages. Scopus5 WoS4 |
| 2024 | Khan, S. A., Hussain, F., Amjad, H., & Khushnood, R. A. (2024). A scientometric review of the synthesis and application of expanded clay aggregate in cementitious composites. Construction and Building Materials, 437(136654), 1-18. Scopus17 WoS17 |
| 2024 | Khan, S. A., Hussain, F., Khushnood, R. A., Amjad, H., & Ahmad, F. (2024). Feasibility Study of Expanded Clay Aggregate Lightweight Concrete for Nonstructural Applications. Advances in Civil Engineering, 2024(1), 19 pages. Scopus32 WoS29 |
| 2023 | Amjad, H., Khushnood, R. A., & Ahmad, F. (2023). Enhanced fracture and durability resilience using bio-intriggered sisal fibers in concrete. Journal of Building Engineering, 76, 17 pages. Scopus38 WoS34 |
| 2023 | Amjad, H., Arsalan Khushnood, R., & Ali Memon, S. (2023). Biomimetic robust self-healing of Bacillus Subtilis immobilized through sisal fiber for next-generation concrete infrastructure. Construction and Building Materials, 368, 15 pages. Scopus65 WoS63 |
| 2023 | Amjad, H., Ahmad, F., & Irshad Qureshi, M. (2023). Enhanced mechanical and durability resilience of plastic aggregate concrete modified with nano-iron oxide and sisal fiber reinforcement. Construction and Building Materials, 401, 15 pages. Scopus69 WoS61 |
| 2023 | Amjad, H., Shah Zeb, M., Khushnood, R. A., & Khan, N. (2023). Impacts of biomimetic self-healing of Lysinibacillus boronitolerans immobilized through recycled fine and coarse brick aggregates in concrete. Journal of Building Engineering, 76, 18 pages. Scopus19 WoS14 |
| 2023 | Amjad, H., Khattak, M. M. H., & Khushnood, R. A. (2023). A simplified machine learning empirical model for biomimetic crack healing of bio-inspired concrete. Materials Today Communications, 37, 12 pages. Scopus11 WoS10 |