Moradi R, Vaseghi M, Sohrabian M, Vanaei HR. Optimized bioactive glass/PLA nanocomposites for bone tissue engineering: balancing mechanical strength and biodegradability. International Journal of Polymeric Materials and Polymeric Biomaterials, 20:1-4 (2025). [DOI: 10.1080/00914037.2025.2477164]
Chibane H, Magri AE, Ouassil SE, Dubois S, Vanaei HR, Vottero V. Study of Mechanical Behavior of Polymer/Long Fiber Composite Parts: Maximizing Efficiency in 3D Printing Through Multicriteria Optimization and Innovative Design. In International TRIZ Future Conference, (pp. 83-96), Springer Nature, (2024). [DOI: 10.1007/978-3-031-75923-9_5]
Vanaei S, Rastak M, El Magri A, Vanaei HR, Raissi K, Tcharkhtchi A. Orientation-Dependent Mechanical Behavior of 3D Printed Polylactic Acid Parts: An Experimental–Numerical Study. Machines, 11(12):1086 (2023). [DOI: 10.3390/machines11121086]
Vanaei HR, Khelladi S, Dobrev I, Bakir F, Himeur RM, Mammeri A, Azzouz K. Performance and Efficiency of Cross-Flow Fans—A Review. Energies, 16(23):7798 (2023). [DOI: 10.3390/en16237798]
Vanaei HR, Magri AE, Rastak MA, Vanaei S, Vaudreuil S, Tcharkhtchi A. Numerical–experimental analysis toward the strain rate sensitivity of 3D-printed nylon reinforced by short carbon fiber. Materials, 15(24):8722 (2022). [DOI: 10.3390/ma15248722]
Mammeri A, Aoudjit M, Traore I, Dobrev I, Vanaei HR, Khelladi S, Azzouz K. Aerodynamic and Aeroacoustic Performance of Cross-Flow Fan: A Comparison through Additive Manufacturing and Conventional Methods. In 2023 3rd International Conference on Electrical, Computer, Communications and Mechatronics Engineering (ICECCME) (pp. 1-6). IEEE, (2023). [DOI: 10.1109/ICECCME57830.2023.10253175]
Vanaei HR, Magri AE, Rastak MA, Vanaei S, Vaudreuil S, Tcharkhtchi A. Numerical–experimental analysis toward the strain rate sensitivity of 3D-printed nylon reinforced by short carbon fiber. Materials, 15(24):8722 (2022). [DOI: 10.3390/ma15248722]
Vaudreuil S, Bencaid SE, Vanaei HR, El Magri A. Effects of power and laser speed on the mechanical properties of AlSi7Mg0.6 manufactured by laser powder bed fusion. Materials,15(23):8640 (2022). [DOI: 10.3390/ma15238640]
Vanaei HR, Khelladi S, Tcharkhtchi A. Roadmap: numerical-experimental investigation and optimization of 3D-printed parts using response surface methodology. Materials, 15(20):7193 (2022). [DOI: 10.3390/ma15207193]
El Magri A, Bencaid SE, Vanaei HR, Vaudreuil S. Effects of Laser Power and Hatch Orientation on Final Properties of PA12 Parts Produced by Selective Laser Sintering. Polymers, 14(17):3674 (2022). [DOI: 10.3390/polym14173674]
Himeur RM, Khelladi S, Ait Chikh MA, Vanaei HR, Belaidi I, Bakir F. Towards an accurate aerodynamic performance analysis methodology of cross-flow fans. Energies, 15(14):5134 (2022). [DOI: 10.3390/en15145134]
Vanaei HR, Khelladi S, Deligant M, Shirinbayan M, Tcharkhtchi A. Numerical prediction for temperature profile of parts manufactured using fused filament fabrication. Journal of Manufacturing Processes, 76:548-58 (2022). [DOI: 10.1016/j.jmapro.2022.02.042]
Thiam BG, El Magri A, Vanaei HR, Vaudreuil S. 3D printed and conventional membranes—a review. Polymers, 14(5):1023 (2022). [DOI: 10.3390/polym14051023]
Ouassil SE, El Magri A, Vanaei HR, Vaudreuil S. Investigating the effect of printing conditions and annealing on the porosity and tensile behavior of 3D‐printed polyetherimide material in Z‐direction. Journal of Applied Polymer Science,140(4):e53353 (2022). [DOI: 10.1002/app.53353]
Mousavi Nejad Z, Zamanian A, Saeidifar M, Vanaei HR, Salar Amoli M. 3D bioprinting of polycaprolactone-based scaffolds for pulp-dentin regeneration: Investigation of physicochemical and biological behavior. Polymers, 13(24):4442 (2021). [DOI: 10.3390/polym13244442]
Vanaei HR, Shirinbayan M, Deligant M, Khelladi S, Tcharkhtchi A. In-process monitoring of temperature evolution during fused filament fabrication: A journey from numerical to experimental approaches. Thermo, 1(3):332-60 (2021) [DOI: 10.3390/thermo1030021]
Vanaei HR, Shirinbayan M, Vanaei S, Fitoussi J, Khelladi S, Tcharkhtchi A. Multi-scale damage analysis and fatigue behavior of PLA manufactured by fused deposition modeling (FDM). Rapid Prototyping Journal, 27(2):371-8 (2021). [DOI: 10.1108/RPJ-11-2019-0300]
Vanaei HR, Shirinbayan M, Costa SF, Duarte FM, Covas JA, Deligant M, Khelladi S, Tcharkhtchi A. Experimental study of PLA thermal behavior during fused filament fabrication. Journal of Applied Polymer Science, 138(4):49747 (2021). [DOI: 10.1002/app.49747]
Vanaei S, Parizi MS, Salemizadehparizi F, Vanaei HR. An overview on materials and techniques in 3D bioprinting toward biomedical application. Engineered Regeneration, 2:1-8 (2021). [DOI: 10.1016/j.engreg.2020.12.001]
Vanaei HR, Deligant M, Shirinbayan M, Raissi K, Fitoussi J, Khelladi S, Tcharkhtchi A. A comparative in‐process monitoring of temperature profile in fused filament fabrication. Polymer Engineering & Science Journal, 61(1):68-76 (2021). [DOI: 10.1002/pen.25555]
Vanaei HR, Raissi K, Deligant M, Shirinbayan M, Fitoussi J, Khelladi S, Tcharkhtchi A. Toward the understanding of temperature effect on bonding strength, dimensions and geometry of 3D-printed parts. Journal of Materials Science, 55:14677-89 (2020). [DOI: 10.1007/s10853-020-05057-9]
Vanaei HR, Shirinbayan M, Deligant M, Raissi K, Fitoussi J, Khelladi S, Tcharkhtchi A. Influence of process parameters on thermal and mechanical properties of polylactic acid fabricated by fused filament fabrication. Polymer Engineering & Science Journal, 60(8):1822-31 (2020). [DOI: 10.1002/pen.25419]
Vanaei HR, Eslami A, Egbewande A. A review on pipeline corrosion, in-line inspection (ILI), and corrosion growth rate models. International Journal of Pressure Vessels and Piping, 149:43-54 (2017). [DOI: 10.1016/j.ijpvp.2016.11.007]
From the Mathematics of Ancient Civilizations to Thinking Machines
by Abbas Tcharkhtchi, Hamid Reza Vanaei, Sofiane Khelladi
Abstract
This book provides an overview of AI's historical development, while understanding the cultural and scientific foundations that make today's AI possible. Through easy-to-understand explanations of complex ideas, and a focus on both technological advances and ethical considerations, it provides an understanding of AI's past, present, and future.
History of Artificial Intelligence: From the Mathematics of Ancient Civilizations to Thinking Machines takes readers on a fascinating journey through the history of AI, showing how its origins can be traced back to ancient civilizations and their early advancements in mathematics, logic, and computation. It reveals the unexpected links between ancient calculation methods and the technologies that define modern life. By following AI's development--from the mathematical innovations of Mesopotamia, Egypt, and Persia, to the revolutionary ideas of the European Renaissance and Enlightenment, readers will discover how human ingenuity over the centuries paved the way for the creation of intelligent machines. Each chapter takes readers step by step through major milestones, from the first mechanical calculators to the rise of modern computers and the development of ML. By exploring these key events and the contributions of diverse civilizations, the book offers fresh insights into AI's global history and its complex relationship with human thought. In the final chapters, the book also addresses the ethical and societal challenges AI presents today, giving readers a well-rounded understanding of how AI is shaping our future, and what that means for all of us.
This book is written for a broad audience, including both general readers and academic audiences who are interested in the history, development, and ethical implications of AI. It is particularly suited for students, researchers, and professionals in fields such as computer science, AI, mathematics, history of technology, and digital ethics.
Publisher : CRC; first edition (October 17, 2025)
Language : English
Hardcover : 376 pages
ISBN-10 : 1041011997
ISBN-13 : 978-1041011996
by Abbas Tcharkhtchi, Hamid Reza Vanaei, Albert Lucas, Sedigheh Farzaneh
Abstract
Hydrogen Production, Storage, and Utilization: Technologies and Applications presents a comprehensive and in-depth exploration of the scientific and engineering principles of hydrogen technology. Written in a technical and scientific manner, using rigorous scientific language and mathematical models to explain principles and applications, the book covers various aspects of hydrogen technology, ranging from fundamental principles of thermodynamics and kinetics to practical applications of hydrogen production, storage, and utilization.
The book is intended for scientists, engineers, researchers, and graduate students in the fields of chemical engineering, materials science, renewable energy, and sustainability, as well as policymakers and stakeholders interested in the potential of hydrogen as a clean and renewable energy carrier.
Publisher : CRC; first edition (December 31, 2024)
Language : English
Hardcover : 246 pages
ISBN-10 : 1032713038
ISBN-13 : 978-1032713038
by Hamid Reza Vanaei, Sofiane Khelladi, Abbas Tcharkhtchi
Abstract
Although the published books or even review papers have covered different features in the field of 3D printing, almost all of them approach the topic from a specific focus. However 3D printing should be considered as a multidisciplinary field; aside from its rapid growth in novel approaches such as data science or artificial neural networks the topic applies comprehensively and rigorously to big data for optimization purposes.
This book provides an overall review of the 3D printing process, the applicable materials, controlling factors, state-of-the-art concepts and applications in different industries, and process optimization considerations. The first part of the book focuses on the applications of 3D printing process while the second part highlights the role of different 3D printing features toward optimization purposes with particular attention on the influence these features play on optimization purposes as well as the role of machine learning in optimization purposes.
Publisher : Wiley; first edition (May 29, 2024)
Language : English
Hardcover : 320 pages
ISBN-10 : 139415030X
ISBN-13 : 978-1394150304
Vanaei HR, Tcharkhtchi A. Multi-Material Additive Manufacturing Methods and Materials; Elsevier, 2025. [DOI: 10.1016/B978-0-443-29228-6.00007-4]
Vanaei HR. Multi-Material Additive Manufacturing of Metals and Alloys; Elsevier, 2025. [DOI: 10.1016/B978-0-443-29228-6.00009-8]
Tcharkhtchi A, Vanaei HR. Multi-Material 3D-printed Polymers; Elsevier, 2025. [DOI: 10.1016/B978-0-443-29228-6.00010-4]
Vanaei Sh, Vanaei S, Kanhonou M, Khelladi S, Tcharkhtchi A, Vanaei HR. Importance of Machine Learning in 3D Bioprinting; John Wiley & Sons Inc, 2024. [DOI: 10.1002/9781119894407.ch13]
Vanaei S, Vanaei Sh, Kanhonou M, Tcharkhtchi A, Vanaei HR. 3D Bioprinting from Lab to Industry; John Wiley & Sons Inc, 2024. [DOI: 10.1002/9781119894407.ch16]
Vanaei HR, Khelladi S, Tcharkhtchi A. Nanotechnology for Pain-free Dentistry; Springer, 2023. [DOI: 10.1007/978-981-19-8718-2]
by Hamid Reza Vanaei
Link to the Manuscript: https://pastel.hal.science/tel-03682154/
Both English and French versions are available.