Chia-Hung Lai | Machine Learning for Smart Manufacturing | Best Researcher Award

Assoc. Prof. Dr. Chia-Hung Lai | Machine Learning for Smart Manufacturing | Best Researcher Award

Associate Professor | National Chin-Yi University of Technology | Taiwan

Chia-Hung Lai, Ph.D., is an interdisciplinary researcher whose work bridges intelligent automation, smart manufacturing, and advanced sensing technologies to enhance industrial reliability and technical education. His research integrates deep learning, machine vision, nondestructive testing, and engineering information security, with notable contributions to welding automation, gear defect detection, tool-breakage prediction, and secure engineering data transmission. He has developed innovative AI-driven diagnostic systems using convolutional neural networks, symmetrized dot patterns, discrete wavelet transforms, and current-sensing analytics, enabling high-precision detection of defects in manufacturing processes. His studies also explore VR/AR-based learning systems, reflecting his commitment to advancing industry-aligned technical education through immersive and intelligent technologies. In addition, he has contributed to environmentally sustainable engineering through deep learning approaches for monitoring emissions in industrial operations. His work in information security demonstrates a unique blend of engineering design and cybersecurity through novel applications of steganography in CAD environments. With multiple publications in SCIE-indexed journals and recognition through awards and competitive achievements, he has established a strong research footprint across automation, sensing, and applied AI. He actively contributes to the scholarly community through reviewing roles and by leading numerous industry–academic collaborative projects focused on intelligent systems, advanced diagnostics, and smart manufacturing innovation.

Profiles:  Scopus | Google Scholar

Featured Publications

Chien, Y.-C., Wu, T. T., Lai, C.-H., & Huang, Y.-M. (2022). Investigation of the influence of artificial intelligence markup language-based LINE ChatBot in contextual English learning. Frontiers in Psychology, 13, 785752.

Lai, C.-H., Liu, M.-C., Liu, C.-J., & Huang, Y.-M. (2016). Using positive visual stimuli to lighten the online learning experience through in-class questioning. International Review of Research in Open and Distributed Learning, 17(1), 23–41.

Huang, Y.-M., Liu, M.-C., Lai, C.-H., & Liu, C.-J. (2017). Using humorous images to lighten the learning experience through questioning in class. British Journal of Educational Technology, 48(3), 878–896.

Liu, C.-J., Huang, C.-F., Liu, M.-C., Chien, Y.-C., Lai, C.-H., & Huang, Y.-M. (2015). Does gender influence emotions resulting from positive applause feedback in self-assessment testing? Evidence from neuroscience. Journal of Educational Technology & Society, 18(1), 337–350.

Lai, C.-H., Wu, T. E., Huang, S.-H., & Huang, Y.-M. (2020). Developing a virtual learning tool for industrial high schools’ welding course. Procedia Computer Science, 172, 696–700.

Liu, M.-C., Lai, C.-H., Su, Y.-N., Huang, S.-H., Chien, Y.-C., & Huang, Y.-M., & Hwang, J. P. (2015). Learning with great care: The adoption of the multi-sensor technology in education. In Sensing technology: Current status and future trends III (pp. 223–242).

Lai, C.-H., & Yang, H.-C. (2016). Theoretical investigation of a planar rack cutter with variable diametral pitch. Arabian Journal for Science and Engineering, 41(5), 1585–1594.

Liping Guo | Engineering | Best Researcher Award

Prof. Dr. Liping Guo | Engineering | Best Researcher Award

Vice President | School of Materials Science & Engineering | China

Prof. Liping Guo is a distinguished researcher and Full Professor in the field of materials science and engineering, specializing in ecological high-ductility cementitious composites, multi-scale damage and life prediction of concrete under complex conditions, and solid waste recycling technology with fiber surface modification. Her research contributes significantly to sustainable construction materials and advanced cement-based composites. With over 140 research publications, 23 authorized national invention patents, and two published books, her scientific contributions have been widely recognized and applied in major national infrastructure projects, yielding substantial technical, economic, and social benefits. Prof. Guo has successfully led more than ten national, provincial, and ministerial-level research projects, including those under the National Natural Science Foundation of China and the 973 Program, as well as numerous industry collaborations. Her work bridges fundamental material science and practical engineering applications, advancing the field of green and resilient concrete materials. She has received multiple national and provincial scientific and technological progress awards, including second prizes from the Ministry of Education and the Fujian provincial government. Additionally, she has made remarkable achievements in teaching and talent cultivation, guiding several award-winning student innovation teams and numerous postgraduate researchers. Her Scopus record includes 7 indexed documents, 94 citations from 90 documents, and an h-index of 5, reflecting her growing academic impact in the field of sustainable cementitious composites and concrete durability science.

Profile:  Scopus

Featured Publications

Guo, L., (2025). Performance evolution of high ductility cementitious composites under different curing regimes: Hydration kinetics, microstructure development, and mechanical behavior. Construction and Building Materials.

Ahmed Ismail | Computer technology | Best Researcher Award

 

Mr. Ahmed Ismail | Computer technology | Best Researcher Award

Dr.med.student ,Universität Bonn, Germany

Dr. Ismail is a seasoned researcher whose work in food chemistry, safety, and nutrition addresses critical challenges relevant to health and industry. His consistent publication record, student mentorship, and leadership in funded projects all make him a compelling candidate for the Best Researcher Award.

Publication Profile

Education:

Ismail holds a Master of Science in Pharmacognosy from the Faculty of Pharmacy at Sana’a University, Yemen, which he completed in 2013. He previously earned a Bachelor of Pharmacy (BPharm) from the same university in 2008. His postgraduate studies have equipped him with a deep understanding of medicinal plants, natural products, and their pharmacological properties.

Professional Experience:

Ismail currently serves as a Lecturer in the Department of Pharmacognosy at the Faculty of Pharmacy, Sana’a University. His academic role includes delivering lectures, supervising practical sessions, and guiding student research projects. Additionally, he contributes to curriculum development and department-level academic activities. Over the years, Ismail has built a reputation for his dedication to teaching and scientific inquiry in the field of natural product pharmacology.

Skills:

Ismail possesses strong expertise in pharmacognosy and phytochemistry, with practical skills in the extraction, isolation, and analysis of bioactive compounds from medicinal plants. He is experienced in the application of chromatographic and spectroscopic techniques such as TLC, HPLC, and UV-Vis spectrometry. Furthermore, he demonstrates proficiency in scientific research, manuscript preparation, and academic supervision.

Awards and Scholarships:

Ismail was awarded the MEXT Scholarship by the Japanese Government in 2017, enabling him to pursue research in Japan. He also received the President’s Award for Academic Excellence during his undergraduate studies at Sana’a University. These accolades reflect his commitment to academic excellence and international scientific collaboration.

Research Focus:

Ismail’s research centers on the pharmacological and phytochemical investigation of medicinal plants, particularly those used in traditional Yemeni medicine. He is interested in identifying bioactive compounds with potential therapeutic effects, especially for antimicrobial and antioxidant applications. His work aims to bridge the gap between traditional knowledge and modern pharmaceutical science.

Publication : 

Dr. Ismail is highly suitable for the Best Researcher Award, especially in domains connected to Food Technology, Safety, and Public Health. His scholarly contributions, research leadership, and professional involvement reflect a deep dedication to science and make him a strong contender. Enhancing international collaboration and showcasing innovation outcomes would further elevate his profile.

 

Bin Zou | automation | Best Researcher Award

Prof. Bin Zou | automation | Best Researcher Award

Researcher , Shandong University, China

Zou Bin is a highly accomplished researcher and academic who has made significant contributions to the field of mechanical engineering, particularly in additive manufacturing technologies and advanced cutting methods. His achievements are marked by numerous high-impact papers, patents, awards, and leadership roles in prestigious research projects. His innovative research has direct applications in industries such as aerospace, materials engineering, and manufacturing technologies.

Publication Profile

Education :

Zou Bin has an extensive academic background in mechanical engineering. He completed his Bachelor’s degree in Mechanical Manufacturing and Automation from Shihezi University (211) in 2001. He then pursued his postgraduate studies at Shandong University, where he earned both his Master’s and Ph.D. degrees in Mechanical Manufacturing and Automation between 2001 and 2006.

Experience:

Zou Bin has held various prestigious academic and research positions throughout his career. After completing his Ph.D., he conducted postdoctoral research at the Mechanical Engineering Postdoctoral Research Station of Shanghai Jiao Tong University (2006-2008). He then served as a Lecturer at Shandong University from 2008 to 2010. Since 2011, he has been an Associate Professor and, as of 2016, a Professor at Shandong University, where he has also been guiding Ph.D. students.

Research Focus:

Zou Bin’s research primarily focuses on 3D printing technology and additive-subtractive composite manufacturing technology. He has led several major research projects including National Key R&D projects on photocuring additive continuous forming technology for ceramic materials, and the development of high-performance tools and efficient machining processes. His work in additive manufacturing and cutting technologies plays a key role in advancing mechanical engineering practices, especially in material processing and manufacturing techniques.

Skills:

Zou Bin has received numerous prestigious awards for his contributions to scientific research and technological advancements:,First Prize for Technological Invention Award of Outstanding Scientific Research Achievements in Higher Education Institutions by the Ministry of Education (2019).,Second Prize in the China Machinery Industry Science and Technology Award for Technological Invention (2019).,Second Prize for Scientific and Technological Progress Award for Outstanding Scientific Research Achievements in Higher Education Institutions (2022).

Publication :

  • Title: Recent Advancements in the Additive Manufacturing of Mullite Ceramic Filter Elements for High-Temperature Melt Filtration
    Authors: S. Wei, H. Xing, Y. Lv, X. Wang, B. Zou
    Year: No specific year listed
    Citations: 0

  • Title: Tailored Microstructure and Enhanced High-Temperature Behavior of TiC/Inconel 718 Composites Through Dual-Gradient Printing Strategy in Direct Energy Deposition
    Authors: W. Liu, B. Zou, X. Wang, C. Huang, P. Yao
    Journal: Journal of Materials Processing Technology
    Year: 2025
    Citations: 0

  • Title: Construction of Bilayer Biomimetic Periosteum Based on SLA-3D Printing for Bone Regeneration
    Authors: X. Zhou, B. Zou, Q. Chen, Q. Lai, X. Wang
    Journal: Colloids and Surfaces B: Biointerfaces
    Year: 2025
    Citations: 0

  • Title: Study on Anti-Interference Detection of Machining Surface Defects Under the Influence of Complex Environment
    Authors: W. Chen, B. Zou, T. Lei, L. Li, J. Liu
    Journal: Journal of Intelligent Manufacturing
    Year: 2025
    Citations: 0

  • Title: Enhanced High-Temperature Mechanical and Oxidation Behavior of Direct Energy Deposited TiC/Inconel 718 Gradient Coatings
    Authors: W. Liu, B. Zou, X. Wang, S. Ding, L. Li
    Journal: Applied Surface Science
    Year: 2025
    Citations: 0

  • Title: Multi-Material Ceramic Hybrid Additive Manufacturing Based on Vat Photopolymerization and Material Extrusion Compound Process
    Authors: H. Sun, B. Zou, T. Quan, S. Wei, C. Huang
    Journal: Additive Manufacturing
    Year: 2025
    Citations: 0

  • Title: 3D-Printed Laponite Bioceramic Triply Periodic Minimal Surface Scaffolds with Excellent Bioactivity for Bone Regeneration
    Authors: S. Guo, H. Zhao, Q. Chen, H. Xing, Q. Lai
    Journal: Ceramics International
    Year: 2025
    Citations: 0

  • Title: Effects of Surface-Modified Hap on the Properties of Bioceramic Paste for SLA-3D Printing
    Authors: S. Li, B. Zou, Q. Chen
    Journal: Coatings
    Year: 2024
    Citations: 0

  • Title: Study on Liquid-Phase Sintering and Magnetic Properties of SLA-Printed Mn-Zn Ferrite Ceramics
    Authors: G. Yang, B. Zou, X. Wang, Q. Lai, C. Huang
    Journal: Ceramics International
    Year: 2024
    Citations: 0

  • Title: Stereolithography Printing and Mechanical Properties of Polyethylene Glycol Diacrylate/Hexagonal Boron Nitride Ceramic Composites
    Authors: G. Yang, B. Zou, X. Wang, Q. Lai, C. Huang
    Journal: Advanced Engineering Materials
    Year: 2024
    Citations: 0

conclusion:

Zou Bin’s combination of academic prowess, innovative research, and leadership in both national and international projects positions him as an outstanding candidate for the Best Researcher Award. His impactful contributions, particularly in the fields of 3D printing and cutting-edge manufacturing technologies, are highly commendable. With some expansion in public engagement and international collaboration, Zou Bin could continue to lead and shape future research in his field.