Assist Prof Dr. Meysam Jalali | Materials Science | Excellence in Research
Assist Prof Dr. Meysam Jalali, Shahrood University of technology, Iran.
Assist. Prof. Dr. Meysam Jalali is a prominent researcher in Materials Science, with a focus on innovative materials and their applications. His academic journey is marked by a commitment to excellence, culminating in significant contributions to the field. Dr. Jalali’s research interests include the development and characterization of advanced materials with a particular emphasis on their industrial applications. His work has been recognized through numerous publications in high-impact journals, reflecting his dedication to advancing the frontiers of Materials Science. Dr. Jalali’s expertise and commitment to research make him a leading figure in his field.
Assist. Prof. Dr. Meysam Jalali holds a Ph.D. in Civil/Structural Engineering from Shahrood University of Technology, where he focused on cutting-edge research in structural integrity and resilience. He completed his MSc in Civil/Earthquake Engineering at the University of Tehran, specializing in the study of seismic effects on structures. Dr. Jalali began his academic journey with a BSc in Civil Engineering from Shahrood University of Technology, laying a solid foundation for his expertise in civil engineering. His educational background underpins his extensive research and contributions to the field of Materials Science.
Assist. Prof. Dr. Meysam Jalali is a Professional Engineer certified by the Tehran Engineering Organization in Iran. He has served as a consultant engineer with the Iran Water & Power Resources Development Company (IWPCO) and the Tehran Engineering and Technical Consultant Organization (TETCO), focusing on underground structures. His project management expertise includes leading the Hakim Twin Tunnels project in Tehran and overseeing the engineering efforts for Tehran Metro Line 7, East-West Lot. Additionally, Dr. Jalali has played a crucial role in the design of various structural projects, leveraging his extensive knowledge and experience to drive engineering excellence.
Assist. Prof. Dr. Meysam Jalali has made significant contributions to the field of Civil/Structural Engineering through his research and innovations. His work includes the invention of novel fibers for reinforcing Ultra High-Performance Cementitious Composites (UHPC) and Engineered Cementitious Composites (ECC), which is currently under patent and will be detailed in a forthcoming paper for the Cement and Concrete Composites journal. Dr. Jalali has also published a study on the mechanical behavior of spiral fibers for concrete reinforcement in the Construction and Building Materials journal (2022).
His research extends to the development of an innovative apparatus and molds for direct tension testing of fibrous composites, with a patent nearing finalization. Dr. Jalali’s work on predicting fiber pull-out from cement-based composites using advanced soft computing methods (ANN, GEP, ANFIS, GMDH) has been accepted for publication in the Journal of Building Engineering. Additionally, he has explored ECC behavior prediction using adaptive network-based fuzzy inference systems.
Other notable research includes improvements in ductility for FRP RC beams, with papers accepted for the Journal of Composite Materials. He has proposed innovative geometry for precast RC tunnel linings under high concentrated loads, with his findings accepted in the Saze va Sakht Persian journal. His experimental studies on bond behavior of headed bars in FRC/UHPC and numerical investigations into rebar pull-out from cement-based matrices further demonstrate his expertise. Lastly, his work on the effects of steel and polypropylene fibers, as well as recycled aggregates, on concrete’s mechanical properties, has been accepted for publication in the Sharif University Persian journal.
Assist. Prof. Dr. Meysam Jalali’s research encompasses a broad range of experimental investigations in construction materials and structures. His work includes the study of various cement-based materials such as Engineered Cementitious Composites (ECC), High-Performance Concrete (HPC), Fiber-Reinforced Concrete (FRC), and Slurry Infiltrated Fiber Concrete (SIFCON). Dr. Jalali is particularly focused on the development of innovative fiber types for enhancing the performance of cementitious composites.
His expertise extends to the application of soft computing methods in Civil Engineering, including the use of advanced numerical modeling and multi-scale testing techniques. Dr. Jalali is also committed to exploring net-zero construction practices and the integration of additive manufacturing technologies, such as 3D concrete printing, into construction processes. His comprehensive research addresses both the theoretical and practical aspects of modern construction materials and methods.
- Pull-out Behavior of Twin-Twisted Steel Fibers from Various Strength Cement-Based Matrices
- Construction and Building Materials
- 2024-09
- DOI: 10.1016/j.conbuildmat.2024.137855
- Source: Crossref
- Experimental Investigation of Ductility in GFRP RC Beams by Confining the Compression Zone
- Advances in Civil Engineering
- 2024-05-18
- DOI: 10.1155/2024/4268615
- Source: Crossref
- Machine Learning Prediction of Fiber Pull-Out and Bond-Slip in Fiber-Reinforced Cementitious Composites
- Journal of Building Engineering
- 2023-01
- DOI: 10.1016/j.jobe.2022.105474
- Source: Crossref
- Experimental Investigation on the Performance of Engineered Spiral Fiber: Fiber Pull-Out and Direct Tension Tests
- Construction and Building Materials
- 2022-09
- DOI: 10.1016/j.conbuildmat.2022.128569
- Source: Crossref
- Experimental Investigation on the Performance of Engineered Spiral Fiber: Fiber Pull-Out and Direct Tension Tests
- SSRN
- 2022
- EID: 2-s2.0-85130694443
- Source: Meysam Jalali via Scopus – Elsevier
- Flexural Characteristics of Fibre Reinforced Concrete with an Optimised Spirally Deformed Steel Fibre
- International Journal of Engineering Transactions C: Aspects
- 2021
- DOI: 10.5829/ije.2021.34.06c.01
- EID: 2-s2.0-85107745927
- Source: Meysam Jalali via Scopus – Elsevier
- Performance of Reinforced Concrete Shear Wall Equipped with an Innovative Hybrid Damper
- International Journal of Engineering, Transactions A: Basics
- 2021
- DOI: 10.5829/IJE.2021.34.07A.08
- EID: 2-s2.0-85110294151
- Source: Meysam Jalali via Scopus – Elsevier
- Effect of Seawater on Micro-Nano Air Bubbles Concrete for Repair of Coastal Structures
- Journal of Rehabilitation in Civil Engineering
- 2020
- DOI: 10.22075/JRCE.2018.13791.1252
- EID: 2-s2.0-85103080479
- Source: Meysam Jalali via Scopus – Elsevier
- Experimental and Analytical Investigations on Seismic Behavior of Ductile Steel Knee Braced Frames
- Steel and Composite Structures
- 2014
- DOI: 10.12989/scs.2014.16.1.001
- EID: 2-s2.0-84893868990
- Source: Meysam Jalali via Scopus – Elsevier
- Novel Manually Made NSM FRP (MMFRP) Bars for Shear Strengthening of RC Beams
- Proceedings of the 6th International Conference on FRP Composites in Civil Engineering (CICE 2012)
- 2012
- EID: 2-s2.0-84924368581
- Source: Meysam Jalali via Scopus – Elsevier
- Shear Strengthening of RC Beams Using Innovative Manually Made NSM FRP Bars
- Construction and Building Materials
- 2012
- DOI: 10.1016/j.conbuildmat.2012.06.068
- EID: 2-s2.0-84864359512
- Source: Meysam Jalali via Scopus – Elsevier