Dr. Shenggui Liu – Advanced Manufacturing – Best Researcher Award

Dr. Shenggui Liu - Advanced Manufacturing - Best Researcher Award

Beijing Institute of Technology  - China

Author Profile 

SCOPUS 

ORCID

Early academic pursuits 🎓

Dr. Shenggui Liu began his academic journey at the china university of petroleum (east china), where he earned his bachelor’s degree in mechanical and electrical engineering in 2018, followed by a master’s degree in 2021. during his time at the university, he developed a strong foundation in mechanical engineering, particularly focusing on areas related to manufacturing processes and material science. these academic milestones paved the way for his continued pursuit of excellence in the field of advanced manufacturing, leading him to pursue a phd at the beijing institute of technology, where he is currently researching innovative manufacturing techniques.

Professional endeavors 💼

Dr. Liu’s professional career is marked by a focus on cutting-edge technologies in advanced manufacturing. he has worked on various projects related to metal additive manufacturing, electrochemical polishing, and surface post-processing of additively manufactured parts. currently, he is a phd candidate at the school of mechanical engineering, beijing institute of technology, where he is actively researching and contributing to the development of solid dielectric electrochemical polishing (sdep). this process is crucial for enhancing the surface finish of 3d-printed components, particularly in industries that demand high precision and performance.

Contributions and research focus 🔬

Dr. Liu’s research has primarily concentrated on solid dielectric electrochemical polishing and its applications in improving the surface quality of 3d-printed metal Advanced Manufacturing parts. his work is pivotal in advancing the understanding of the polishing mechanisms and in developing methods that minimize electrolyte consumption, making the process more efficient and sustainable. he has also contributed significantly to the field of surface treatment, enhancing the mechanical properties and durability of materials, particularly for industries involved in aerospace and automotive manufacturing. his published works, including papers in leading journals such as the journal of cleaner production and additive manufacturing, highlight his ongoing efforts to push the boundaries of manufacturing technology.

Accolades and recognition 🏅

Dr. Liu’s research has garnered significant recognition in the academic community. he has authored several impactful papers on electrochemical polishing, coating Advanced Manufacturing technologies, and advanced manufacturing processes. his work on improving material removal rates in sdep and developing more efficient electrochemical polishing techniques has been acknowledged by his peers and published in high-impact journals. this recognition underscores his role as an emerging leader in the field of mechanical engineering and manufacturing technology.

Impact and influence 🌍

Dr. Liu’s contributions have had a profound impact on the field of advanced manufacturing, particularly in the area of metal additive manufacturing. his innovative work on electrochemical polishing processes is set to revolutionize the way 3d-printed components are finished, improving their performance and reliability. his Advanced Manufacturing research also addresses sustainability issues by reducing the consumption of harmful chemicals and energy in industrial processes. the influence of his work extends beyond academia, as his research has the potential to benefit various industries that rely on precision manufacturing, such as aerospace, automotive, and biomedical engineering.

Legacy and future contributions 🔮

Looking ahead, dr. liu’s work is poised to shape the future of advanced manufacturing. his focus on improving additive manufacturing processes and material finishes will continue to drive innovations in 3d printing and electrochemical polishing technologies. with the potential to influence various industries, including those focused on green manufacturing, his future contributions are expected to pave the way for more sustainable and efficient production techniques. as he completes his phd and steps into the next phase of his career, dr. liu’s research legacy will undoubtedly contribute to the continued advancement of mechanical engineering and manufacturing technologies globally.

Notable Publications 

  • Title: Research on conductive-material-filled electrodes for sidewall insulation performance in micro electrochemical machining
    Authors: Liu, G.-D., Zhu, Y.-L., Liu, S.-G., Li, C.-J.
    Journal: Advances in Manufacturing, 2023, 11(3), pp. 509–522
  • Title: Quantitative-regulated material removal rate in solid dielectric electrochemical polishing (QRR-SDEP) for smoothing high roughness surface of additively manufactured 316L stainless steel components
    Authors: Liu, S., Li, C., Jin, X., Yang, Y., Ong, L.C.L.
    Journal: Additive Manufacturing, 2023, 73, 103689
  • Title: Surface characteristics enhancement and morphology evolution of selective-laser-melting (SLM) fabricated stainless steel 316L by laser polishing
    Authors: Li, C., Liu, D., Liu, G., Jin, X., Bai, Y.
    Journal: Optics and Laser Technology, 2023, 162, 109246
  • Title: Nucleation and Growth Behaviors of Nickel Coating by Jet Electrodeposition under the Combined Effect of Convection and Vertical Distribution
    Authors: Zhang, F., Liu, S., Wang, F.
    Journal: Journal of Physical Chemistry C, 2022, 126(34), pp. 14669–14679
  • Title: One-step fabrication of Cu2O-Cu catalytic electrodes with regular porous array by ultra-fast laser scanning
    Authors: Li, C., Liu, S., Jin, X., Jing, H., Cao, X.
    Journal: Journal of Alloys and Compounds, 2022, 900, 163455

Dr. Mohamed Daly – Additive manufacturing – Best Researcher Award

Dr. Mohamed Daly - Additive manufacturing - Best Researcher Award

Ensta Britanique - France

Author Profile 

GOOGLE SCHOLAR 

Early academic pursuits 🎓

Mohamed Daly embarked on his academic journey with a passion for mechanical engineering, where his early education laid the foundation for a future steeped in innovation. he pursued his undergraduate degree with a focus on mechanics, later deepening his expertise by completing a doctorate in mechanical engineering at ensta bretagne, a renowned institution in france. his academic endeavors during this time set the stage for his future exploration into material science and 3d printing technologies.

Professional endeavors 🏢

Throughout his career, mohamed daly has held pivotal positions in both academia and research institutions. his work primarily revolves around the experimental study of composite materials, particularly in the context of mechanical performance. currently, he is an esteemed researcher and educator, involved in exploring the dynamic behavior of advanced materials under various conditions. his professional experiences span collaborations with leading engineers and scientists, contributing to advancements in mechanical engineering, specifically in additive manufacturing and material characterization.

Contributions and research focus 🔬

Mohamed's research is marked by his innovative work in 3d-printed carbon fiber-reinforced polyethylene terephthalate glycol (petg) composites. his studies focus on how infill parameters influence the dynamic compressive performance of these materials, which is crucial for applications in automotive, aerospace, and other high-performance industries. his investigations into material properties have improved our understanding of how to optimize mechanical performance using 3d printing Additive manufacturing technologies, opening new avenues for efficient manufacturing and durable material design.

Accolades and recognition 🏅

Mohamed has been widely recognized for his contributions to mechanical engineering, particularly in the field of material science. his work on the compressive behavior of reinforced composites has been published in prominent scientific journals and conferences, establishing him as a thought leader in his area of expertise. he has also earned various awards for his innovative approaches to solving complex engineering challenges, further solidifying his standing in the global research Additive manufacturing community.

Impact and influence 🌍

Mohamed's research has had a significant impact on the mechanical engineering field, particularly in the area of composite materials and additive manufacturing. his findings have influenced how industries approach the design and manufacturing of high-performance materials, making production processes more efficient while Additive manufacturing enhancing material properties. through his academic publications and collaborations, mohamed has influenced both industrial applications and academic research, fostering a greater understanding of material mechanics.

Legacy and future contributions 🔮

Looking ahead, mohamed daly is poised to continue making strides in the fields of mechanical engineering and material science. his ongoing research into 3d printing and composite materials holds promise for future advancements in sustainable manufacturing processes, as well as the development of even more robust and efficient materials for industrial use. mohamed's commitment to innovation and research ensures that his legacy will continue to inspire and shape the future of engineering.

Notable publications 

  • Title: FDM Technology and the Effect of Printing Parameters on the Tensile Strength of ABS Parts
    Author(s): M. Daly, M. Tarfaoui, M. Chihi, C. Bouraoui
    Journal: The International Journal of Advanced Manufacturing Technology 126 (11), 2023
  • Title: Experimental Investigation of the Effect of Infill Parameters on Dynamic Compressive Performance of 3D-Printed Carbon Fiber Reinforced Polyethylene Terephthalate Glycol Composites
    Author(s): M. Chihi, M. Tarfaoui, Y. Qureshi, M. Daly, C. Bouraoui
    Journal: Journal of Thermoplastic Composite Materials 37 (10), 3158-3184, 2024
  • Title: Investigation of 3D Printed CF-PETG Composites' Tensile Behaviors: Synergizing Simulative and Real-World Explorations
    Author(s): M. Tarfaoui, M. Daly, R. Kbaier, M. Chihi
    Journal: Composites Science and Technology 247, 110385, 2024
  • Title: Dynamic Analysis of 3D-Printed CF-PETG Composites with Different Infill Densities
    Author(s): M. Daly, M. Tarfaoui, M. Chihi, C. Bouraoui
    Journal: Progress in Additive Manufacturing, 1-29, 2024
  • Title: Effects of Infill Density and Pattern on the Tensile Mechanical Behavior of 3D-Printed Glycolyzed Polyethylene Terephthalate Reinforced with Carbon-Fiber Composites by the FDM
    Author(s): M. Daly, M. Tarfaoui, M. Bouali, A. Bendarma
    Journal: Journal of Composites Science 8 (4), 115, 2024