Yunqi Zhang | Design and Analysis of FRP Components | Best Researcher Award

Assoc. Prof. Dr. Yunqi Zhang | Design and Analysis of FRP Components | Best Researcher Award

Assoc. Prof. Dr. Yunqi Zhang, Xi’an University of Posts & Telecommunications, China

Profile:

Current Position 🏢

Yunqi Zhang is an Associate Professor and Master’s Supervisor at the prestigious Xi’an University of Posts and Telecommunications, within the School of Electronic Engineering. With expertise in Electronic Science and Technology, Yunqi leads innovative research and provides mentorship to aspiring scholars, contributing significantly to advancements in the field.

Publication Achievements 📚

Yunqi Zhang has a remarkable record of publishing over 10 SCI-indexed academic papers in leading international journals. These publications encompass topics like array antennas, vortex electromagnetic waves, and intelligent metasurfaces, showcasing his profound impact on the global scientific community. His work bridges the gap between theory and application, offering innovative solutions for challenges in wireless communication and beyond.

Ongoing Research and Innovations 🔬

Yunqi Zhang’s research portfolio demonstrates his dedication to pushing the boundaries of modern technology:

  • 5G Mobile Communication Antenna Decoupling Technology: Supported by the Shaanxi Provincial Department of Education, this project focuses on graphene-based antenna designs to enhance communication efficiency.
  • Acoustic Wave Reflection and Refraction Phenomena: Funded by the National Natural Science Foundation of China, this ambitious project investigates the theoretical and experimental dynamics of acoustic wave propagation, laying a foundation for innovative practical applications.
  • Reflective Array Antennas and Intelligent Metasurfaces: These groundbreaking studies explore cutting-edge technologies to revolutionize wireless communication and signal processing.

Research Interests 🌟

  • Array Antennas
  • Vortex Electromagnetic Waves
  • Intelligent Metasurfaces
  • Graphene-Based Technologies

These focus areas align with the global transition toward more efficient and sustainable wireless communication systems.

Academic Background 🎓

  • Bachelor’s Degree in Electronic Information Engineering 
    • Xi’an University of Electronic Science and Technology, 2009.
  • Doctoral Degree in Electromagnetic Field and Wireless Technology 
    • Xi’an University of Electronic Science and Technology, 2015.

These qualifications underpin his authority and success as a researcher and educator.

Scholarships and Awards 🏆

Throughout his career, Yunqi Zhang has been recognized for his academic excellence and innovative research contributions. His projects have received significant funding from prestigious institutions like the Shaanxi Provincial Government and the Xi’an Municipal Science and Technology Bureau.

Professional Associations and Training 🌟

Yunqi actively participates in international workshops and conferences, where he shares insights and collaborates with leading experts. His dedication to continuous learning and collaboration fosters a network of innovation in his field.

Oral Presentations 🎤

A dynamic speaker, Yunqi Zhang regularly presents his findings at global scientific forums. These presentations have garnered attention for their clarity, depth, and innovative perspective, inspiring peers and future researchers alike.

Tasks Completed as a Researcher ✅

  • Leading Interdisciplinary Projects: Successfully managed and delivered projects like the Key Research and Development Program of Shaanxi and Xi’an Science and Technology Plan Project.
  • Pioneering Antenna Design Techniques: Achieved groundbreaking results in graphene-enhanced antennas and vortex electromagnetic wave applications.

Success Factors 🌠

  • Innovative Thinking: Exploring cutting-edge technologies with practical implications.
  • Collaborative Mindset: Engaging with industry and academia for impactful research.
  • Dedication to Excellence: Aiming for precision and high standards in every project.

Publications & Laboratory Experience 🧪

Yunqi Zhang has built an impressive laboratory ecosystem, enabling the experimental validation of theories in fields like antenna technology and wave propagation. His hands-on approach bridges the gap between conceptual frameworks and tangible results.

📖Publications:

Paper Title: Mode Reconfigurable OAM Helical Array Antenna for Higher Mode Generation

  • Authors: Zhang, Y., Yang, R., Li, X., Zhang, X., Wang, S.
  • Journal: Microwave and Optical Technology Letters
  • Year: 2024

Paper Title: Wideband Simultaneous Dual Circularly Polarized Phased Array Subarray with Scalable Characteristics for Satellite Communications

  • Authors: Zhang, Y., Chen, J., Li, X., Song, X., Zhou, W.
  • Journal: Applied Computational Electromagnetics Society Journal
  • Year: 2024

Paper Title: Wideband Low-Profile Fabry-Perot Cavity Antenna with Metasurface

  • Authors: Song, X., Dong, A., Li, X., Yang, H., Li, Y.
  • Journal: Applied Computational Electromagnetics Society Journal
  • Year: 2024

Paper Title: Enhanced Mode Conversion and Out-of-Band Rejection in Double-Side Composite SSPPs Structure

  • Authors: Yang, H., Xiao, Y., Li, X., Fang, Y., Wang, S.
  • Journal: IEEE Photonics Technology Letters
  • Year: 2024

Paper Title: Gain-Enhanced and Mechanically Reconfigurable Slot Antenna with Metasurface

  • Authors: Song, X., Dong, A., Li, X., Li, Y., Yang, H.
  • Journal: Applied Computational Electromagnetics Society Journal
  • Year: 2023

 

Yaojie Xu | Fiber Characterization and Testing | Best Researcher Award

Dr. Yaojie Xu | Fiber Characterization and Testing | Best Researcher Award

Doctorate at Beijing Institute of Technology, China

Profile:

Current Position 📍

Yaojie Xu is currently pursuing his Ph.D. in Artillery, Automatic Weapons, and Ammunition Engineering at the Beijing Institute of Technology. Since September 2022, he has been contributing to the development of advanced protective materials, fiber modification techniques, and ballistic protection strategies. His research within the School of Mechanical and Electrical Engineering has earned him recognition in both academic and professional circles. Yaojie’s work focuses on enhancing materials for ballistic protection and damage resistance, positioning him as a leading young researcher in the field of military engineering.

Publication Achievements 📚

Yaojie Xu has already made significant contributions to the scientific community, with 8 journal articles published in highly regarded SCI and Scopus-indexed journals. These publications emphasize innovative methodologies for fiber modification and ballistic protection, offering advanced solutions for military and defense applications. His findings on the improved ballistic limit velocity of modified aramid fabrics have been acknowledged for their potential to revolutionize protective gear. His research is notable for its practical implications, particularly in enhancing the performance of protective fabrics under harsh environmental conditions like ultraviolet radiation.

Ongoing Research 🧪

Yaojie Xu is currently involved in 4 major research projects, focusing on fiber modification, protective materials, and ammunition engineering. One of his groundbreaking studies involves the modification of aramid fabric with CuO and ZnO particles, which has led to a remarkable 185.1% increase in ballistic performance compared to neat fabrics. This research aims to create lightweight, highly durable materials that can withstand extreme forces, such as ballistic impacts, while maintaining flexibility and user comfort. His ongoing work also includes exploring new techniques for reinforcing fibers with additional functionalities, pushing the boundaries of current material science in protective gear design.

Research Interests 🔬

Yaojie’s core research interests include fiber modification, advanced protective materials and structures, and ballistic protection. His work is driven by a desire to improve the performance and resilience of protective materials in military applications. By focusing on aramid fibers and their modification with particles like CuO and ZnO, Yaojie seeks to enhance their protective qualities under stress conditions such as UV radiation. His research on single-layer and two-layer fabrics showcases his deep interest in improving protective structures without significantly increasing their weight.

Academic Background 🎓

Yaojie Xu embarked on his Ph.D. journey in September 2022 at the Beijing Institute of Technology, specializing in Artillery, Automatic Weapons, and Ammunition Engineering. His strong academic background, particularly in mechanical and electrical engineering, has enabled him to explore the intersection of material science and defense technologies. The focus of his doctoral studies is on the modification of materials for ballistic protection and damage mitigation, areas that have far-reaching implications for the military and defense sectors.

Scholarships and Awards 🏆

Yaojie’s academic journey has been marked by several accolades and scholarships that reflect his dedication and excellence in research. These scholarships have provided him with the resources and opportunities to explore cutting-edge technologies in protective materials and fiber modification. His achievements include recognition for his high-impact publications and contributions to defense engineering.

Bioinformatics 💻

While primarily focused on material science and engineering, Yaojie has also integrated computational methods into his research. His use of bioinformatics tools helps him model and simulate the behavior of fibers and protective materials under various conditions. These simulations provide valuable insights into how modifications at the molecular level can enhance the overall performance of protective materials in real-world scenarios.

Professional Associations 🤝

Yaojie is an active member of several professional associations related to engineering and material science. These memberships provide him with access to cutting-edge research, conferences, and collaboration opportunities. Being part of these networks also allows Yaojie to stay updated with the latest trends and advancements in his field, contributing to his growth as a researcher.

Training & Workshops 🛠️

Throughout his academic career, Yaojie has participated in various training programs and workshops focused on material engineering, fiber modification techniques, and defense technologies. These sessions have not only enhanced his technical skills but also broadened his understanding of practical applications in his research areas. The training sessions have helped him refine his methodologies, enabling him to produce highly impactful research results.

Oral Presentations 🎤

Yaojie has presented his research findings at several national and international conferences and seminars, where his work on fiber modification and protective materials has been well-received. His presentations focus on the practical applications of his research, particularly in improving the safety and efficiency of protective gear used in defense sectors. These platforms have also given Yaojie the opportunity to collaborate with other researchers and experts in the field.

Tasks Completed as a Researcher ✅

During his Ph.D. studies, Yaojie has completed multiple high-impact research tasks. These include conducting extensive laboratory experiments on aramid fiber modification, analyzing the ballistic limit velocity of modified fabrics, and developing innovative methods for enhancing the protective capabilities of these materials. His work has resulted in 9 patents, further cementing his role as an innovator in the field of protective material design.

Success Factors 🌟

Yaojie’s success can be attributed to his dedication, innovative thinking, and strong technical expertise. His ability to integrate complex material science with real-world applications has made him a standout researcher. His relentless pursuit of improvement in protective gear performance underlines his commitment to the safety and effectiveness of military personnel. His success is also built on his ability to collaborate across disciplines, merging engineering with bioinformatics and material science.

📖Publications:

Paper Title: Experimental and numerical study on CuO/ZnO-modified aramid fabric for ballistic and UV radiation protection

  • Authors: Liu, L., Huang, F., Xu, Y., Lan, X., Huang, G.
  • Journal: Polymer Testing
  • Year: 2024

Paper Title: Review on the mechanical deterioration mechanism of aramid fabric under harsh environmental conditions

  • Authors: Xu, Y., Zhang, H., Huang, G.
  • Journal: Polymer Testing
  • Year: 2023

Paper Title: Numerical Investigation of Anti-ballistic Property of ZnO-modified Aramid Fabrics

  • Authors: Xu, Y., Liu, H., Zhang, H., Huang, G.
  • Journal: Binggong Xuebao/Acta Armamentarii
  • Year: 2023

Paper Title: Shear response behavior of SSE/Kevlar composite fabric before and after shear interlocking effect

  • Authors: Ma, Y., Hong, X., Xu, Y., Lei, Z., Huang, G.
  • Journal: Composite Structures
  • Year: 2023

Paper Title: Experimental and numerical study on the ballistic performance of a ZnO-modified aramid fabric

  • Authors: Xu, Y.J., Ma, Y., Xie, Y.C., Zhang, H., Huang, G.Y.
  • Journal: International Journal of Impact Engineering
  • Year: 2023