Ying Xu | Interface Technology | Best Researcher Award

Dr. Ying Xu | Interface Technology | Best Researcher Award

Qingdao University of Technology | China

Dr. Ying Xu is a dedicated researcher at Qingdao University of Technology, specializing in tribology and surface interface technology. His work primarily explores the lubrication of superhydrophobic coatings, textured surfaces, magnetic fluid lubrication, and gel lubricants, with significant contributions to the development of advanced lubricating materials. He has published impactful research in international journals, contributing to the optimization of corrosion-resistant, anti-friction coatings and hydrogel-based lubrication strategies. His collaborations with leading laboratories and academic institutions strengthen his role in advancing mechanical engineering research, while his projects and patent development underline his growing influence in the field.

Publication Profile

ORCID

Education Background

Dr. Ying Xu received his doctoral training in mechanical engineering, focusing on tribology and advanced lubrication systems. His academic foundation emphasized the design, performance optimization, and application of surface coatings, gels, and magnetic fluids within lubrication technology. Through academic mentorship and research collaborations, he honed his expertise in both experimental and computational methodologies, including molecular dynamics simulations and CFD analyses of hydrodynamic bearings. This comprehensive educational background has positioned him to effectively bridge theory with practical engineering applications, fostering innovation in advanced lubricating materials and surface interface technology, which serve as central pillars of his research contributions today.

Professional Experience

Dr. Ying Xu has established a strong research portfolio at Qingdao University of Technology, where he actively contributes to projects involving surface coatings and lubrication mechanisms. His work extends to industry collaborations, including consultancy on applied lubrication systems for China Yangtze Power Co., Ltd. His involvement in multiple funded projects under the National Natural Science Foundation of China and other institutions demonstrates his capability to lead and complete significant research initiatives. Beyond academic publishing, he has filed a patent on corrosion-resistant superhydrophobic coatings, reflecting his commitment to innovation. His career is steadily building towards impactful contributions in tribology.

Awards and Honors

Although formal awards and memberships have not yet been recorded, Dr. Ying Xu’s recognition comes through his publications in reputed journals such as Langmuir and Lubricants, where his innovative studies have received citations and academic attention. His successful completion of national and provincial research projects underlines his academic standing, while his patent development demonstrates technological advancement with practical industrial value. Furthermore, his collaborative engagements with leading Chinese universities and research laboratories highlight his respected position within the scientific community. His growing citation record and impactful research direction point toward future recognition at international and national award platforms.

Research Focus

Dr. Ying Xu’s research concentrates on enhancing wear resistance and lubrication properties at the surface interface. He has advanced strategies in the design of Ni-P/CeO2 superhydrophobic coatings that balance anti-friction with adhesion strength. Additionally, he has explored hydrogel-based lubrication, leveraging hydration mechanisms to achieve improved friction performance under diverse conditions. His research integrates experimental techniques with computational models, including molecular dynamics and CFD simulations, to optimize tribological behavior. By addressing key challenges in surface modification and lubrication mechanisms, his work contributes both to theoretical frameworks and practical advancements, pushing forward the applications of advanced lubricating materials.

Publication Top Notes

Title: Designing a Robust Ni-P/CeO2 Superhydrophobic Composite Coating for Synergistically Enhanced Corrosion Protection and Friction Reduction Performance
Published Year: 2024
Citation: 2

Title: Advances on Hydrogel Lubrication Modification Under Diverse Design Strategies
Published Year: 2025
Citation: 1

Conclusion

Through his focused contributions to tribology and lubrication science, Dr. Ying Xu has emerged as a promising researcher with innovative solutions to challenges in surface engineering. His academic publications, patent development, and collaborative projects reflect both scientific depth and practical relevance. By advancing knowledge on superhydrophobic coatings and hydrogel lubricants, he provides frameworks for designing next-generation lubrication systems with industrial applications. His dedication to bridging experimental research with computational analysis strengthens his impact across mechanical engineering and materials science. As his work gains recognition, he continues to build a foundation for long-term advancements in advanced surface technologies.

Zhiping Liu | Human-Computer Interaction | Best Researcher Award

Mr. Zhiping Liu | Human-Computer Interaction | Best Researcher Award

Researcher, Zibo Comprehensive Bonded Zone Development Service Center, China

Zhiping Liu is a dedicated researcher at the Zibo Comprehensive Bonded Zone Development Service Center in Zibo, Shandong Province, China. With a multifaceted background that spans Industrial Design Engineering, Biomedical Engineering, Psychology, and Computer Science, Zhiping brings a rich blend of theoretical knowledge and practical expertise to his work. He focuses on enhancing digital user experiences through innovative interface designs, integrating both aesthetic and functional elements.

Profile

ORCID

Education 🎓

Zhiping Liu holds a Master’s degree in Industrial Design Engineering from the Mechanical College of Shandong University. His academic journey has provided him with a robust foundation in various disciplines, including Industrial Design Engineering, Biomedical Engineering, Psychology, and Computer Science, equipping him with the skills needed to excel in the field of digital interface design.

Experience 🛠️

Zhiping’s professional experience is marked by his involvement in various research and consultancy projects at the Zibo Comprehensive Bonded Zone Development Service Center. He has played a pivotal role in optimizing digital interfaces, leveraging his expertise to improve user satisfaction and interface efficiency. His work often involves the integration of the Analytic Hierarchy Process with visual design elements, aiming to create more intuitive and effective digital solutions.

Research Interests 🔍

Zhiping Liu’s research interests lie in digital interface design, user experience optimization, and the integration of aesthetic and functional aspects in digital products. His innovative approach involves using the Analytic Hierarchy Process to enhance visual design elements, thereby improving the overall efficiency and user satisfaction of digital interfaces. He is keen on exploring new methodologies that bridge the gap between subjective aesthetic judgments and objective usability metrics.

Awards 🏆

Zhiping Liu has made notable contributions to the field of digital interface design, earning recognition for his innovative research methods. His work on integrating the Analytic Hierarchy Process with visual design principles has been particularly impactful, offering a structured approach to optimizing digital interfaces. Through his research, Zhiping has provided valuable insights and advancements that have significantly improved the field’s understanding and application of digital design principles.

Publications 📚

Liu, Z., “Integrating Analytic Hierarchy Process with Visual Design Elements,” International Journal of Human-Computer Interaction, 2023. [Cited by: 12 articles]

Liu, Z., “Optimizing User Experience through Digital Interface Design,” Journal of Digital Design, 2022. [Cited by: 8 articles]

Liu, Z., “Aesthetic and Functional Integration in Digital Products,” Design Science Journal, 2021. [Cited by: 10 articles]