Prof. Ma Guangyi – mechanical engineering – Best Researcher Award

Prof. Ma Guangyi - mechanical engineering - Best Researcher Award

dalian university of technology - China 

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Early academic pursuits 🎓

Ma Guangyi embarked on his academic journey with a strong passion for mechanical engineering and advanced manufacturing technologies. his early education laid a solid foundation in engineering principles, leading him to pursue higher studies in the field. with an exceptional academic record, he advanced his expertise through rigorous research and innovation, eventually earning a doctoral degree. his dedication to academic excellence and scientific inquiry set the stage for his future contributions to additive manufacturing and nanomanufacturing.

Professional endeavors 🏛️

Throughout his career, ma guangyi has held esteemed positions in academia and industry, shaping the future of mechanical engineering and advanced manufacturing. as a professor and doctoral supervisor, he has mentored numerous researchers, fostering the next generation of scientists and engineers. his role as vice chairman of the additive manufacturing branch of the liaoning mechanical engineering society reflects his leadership in the field. additionally, his membership in national and international technical committees highlights his influence in standardizing and advancing additive and remanufacturing engineering practices.

Contributions and research focus 🔍

Ma Guangyi’s research is centered on additive manufacturing, remanufacturing engineering, and laser processing technologies. his work integrates cutting-edge nanomanufacturing mechanical engineering techniques to enhance material performance and production efficiency. as a key contributor to the development of advanced coatings and rare metal materials, his research bridges the gap between theoretical advancements and practical applications. by pushing the boundaries of laser processing and manufacturing innovations, he has significantly impacted industrial and scientific communities.

Accolades and recognition 🏆

Ma Guangyi’s contributions have earned him widespread recognition and prestigious accolades. he has been selected into the world’s top 2% scientists list for both 2023 and 2024, an mechanical engineering acknowledgment of his outstanding impact on global research. he has received numerous awards, including one gold medal at an invention exhibition, multiple first and second prizes in provincial and ministerial science and technology awards, and significant honors in natural science paper competitions. his editorial roles in leading journals such as "coatings" and "nanomanufacturing and metrology" further underscore his expertise and influence in the field.

Impact and influence 🌍

Ma Guangyi’s research has had a profound impact on the advancement of additive manufacturing and laser processing technologies. his work has contributed to the development of high- performance materials, efficient manufacturing processes, and sustainable engineering solutions. as a member of key scientific committees, he plays a vital role in shaping industry standards mechanical engineering and promoting technological innovations. his efforts in mentoring young researchers and collaborating with global experts have amplified his influence, fostering a new wave of scientific breakthroughs.

Legacy and future contributions 🚀

Ma Guangyi’s legacy is built on his unwavering commitment to scientific excellence and technological innovation. his pioneering work in additive manufacturing and remanufacturing engineering continues to inspire researchers worldwide. as he advances his research, his focus remains on bridging theoretical knowledge with practical applications, ensuring sustainable and efficient manufacturing solutions for future generations. his leadership in academia and industry solidifies his role as a key figure in the evolution of mechanical engineering and nanomanufacturing.

Notable Publications 

  1. Title: Direct additive manufacturing of melt growth Al₂O₃-ZrO₂ functionally graded ceramics by laser directed energy deposition
    Authors: Wu, D.; Shi, J.; Niu, F.; Ma, G.; Zhou, C.; Zhang, B.
    Journal: Journal of the European Ceramic Society
  2. Title: Effect of low-temperature cooling on corrosion properties of laser welding Hastelloy C-276/304 stainless steel with filler wire
    Authors: Cheng, B.; Wu, D.; Yue, K.; Ma, G.; Niu, F.
    Journal: Optics and Laser Technology
  3. Title: Effect of weaving frequency on pulsed laser weaving welding of thin 5052 aluminum alloy sheet
    Authors: Niu, F.; Tang, B.; Yue, K.; Liu, D.; Ma, G.; Wu, D.
    Journal: International Journal of Advanced Manufacturing Technology
  4. Title: Formation mechanism of Al-Zn-Mg-Cu alloy fabricated by laser-arc hybrid additive manufacturing: Microstructure evaluation and mechanical properties
    Authors: Liu, D.; Wu, D.; Wang, R.; Shi, J.; Niu, F.; Ma, G.
    Journal: Additive Manufacturing
  5. Title: Intermetallic regulation mechanism of inconel 718/Ti6Al4V composite by novel follow-up ultrasonic assisted laser additive manufacturing
    Authors: Wu, D.; Song, C.; Di, T.; Niu, F.; Ma, G.
    Journal: Composites Part B: Engineering

Dr. Shenggui Liu – Advanced Manufacturing – Best Researcher Award

Dr. Shenggui Liu - Advanced Manufacturing - Best Researcher Award

Beijing Institute of Technology  - China

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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. Zepeng Niu – Mechanical Engineering – Best Researcher Award 

Dr. Zepeng Niu - Mechanical Engineering - Best Researcher Award 

Xi’an University of Architecture &Technology - China 

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Early academic pursuits 🎓

Zepeng Niu embarked on his academic journey at xi'an university of architecture and technology, where he earned a bachelor's degree in engineering in june 2018. his dedication to mechanical and electrical engineering led him to pursue a master’s degree at the same institution later that year. showing exceptional academic promise, he was selected in september 2019 for a direct doctoral program under the supervision of associate professor wang gengxiang. currently in his second year as a phd student, zepeng is delving deeply into the dynamics of flexible multibody systems and collision dynamics.

Professional endeavors 🛠️

During his doctoral studies, zepeng has contributed to advancing knowledge in mechanical and collision dynamics through collaborative research with esteemed professors and researchers. his work emphasizes both theoretical innovation and practical applications, particularly in multibody system dynamics. by engaging with cutting-edge problems in his field, he has positioned himself as a dedicated scholar with a focus on addressing engineering challenges.

Contributions and research focus 🔍

zepeng's research centers on flexible multibody system dynamics and collision dynamics, two critical areas in mechanical engineering. his significant contributions include developing improved analytical models and methodologies to address nonlinear behaviors in granular systems. his work has led to the creation of new Mechanical Engineering coefficients of restitution and enhanced methods like the improved craig–bampton approach, which have wide-ranging applications in durability and performance analysis of mechanical systems.

Accolades and recognition 🏅

zepeng’s contributions have been recognized through several impactful publications in prestigious journals such as mechanism and machine theory and powder Mechanical Engineering technology. his co-authored works introduce groundbreaking models for contact dynamics and analytical approaches to multibody systems. these accomplishments underline his growing reputation in the academic and engineering communities.

Impact and influence 🌍

zepeng's research has a transformative impact on understanding and predicting the behavior of complex mechanical systems. his innovative approaches to collision dynamics and multibody interactions are pivotal in advancing the durability and efficiency of engineered systems. his findings contribute not only to academia but Mechanical Engineering also to industries reliant on precise modeling and analysis.

Legacy and future contributions 🔮

as a promising researcher, zepeng niu is poised to leave a lasting legacy in mechanical engineering. his dedication to solving complex problems in dynamics and his innovative methodologies ensure his work will continue to influence the field. with a strong foundation and a forward-thinking approach, he is set to inspire future advancements in multibody system dynamics and beyond.

Notable Publications 

  • Title: Analysis of Nonphysical Attraction Force and New Coefficient of Restitution Based on a Nonlinear Viscoelastic Contact Model in Cohesionless Granular System
    Authors: Wang, G., Niu, Z., Cheng, F., Pan, Y.
    Journal: Mechanism and Machine Theory, 2024, Vol. 203, Article 105821
  • Title: Improved Craig–Bampton Method Implemented into Durability Analysis of Flexible Multibody Systems
    Authors: Wang, G., Niu, Z., Feng, Y.
    Journal: Actuators, 2023, Vol. 12(2), Article 65