Prof. Liangliang Zhang | Advanced Materials Engineering | Best Researcher Award
Associate Professor at China Agricultural University, China.
Liangliang Zhang is an accomplished Associate Professor at China Agricultural University, recognized for his pioneering research in advanced engineering materials and structures. With expertise in experimental, analytical, and numerical methods, Zhang’s interdisciplinary approach addresses critical challenges in materials science, focusing on multiphase composites, quasicrystal materials, and computational algorithms. He holds editorial roles and collaborates extensively with global institutions, contributing to numerous publications in esteemed journals. Zhang’s work underscores his commitment to advancing resilient and sustainable engineering solutions, making a profound impact on the field.
Education 🎓
Liangliang Zhang holds a Ph.D. in Engineering from China Agricultural University, Beijing, China, with expertise in the multi-scale and multi-physics characterization of advanced engineering materials and structures. His academic journey also includes [mention other degrees if applicable]. This educational foundation has equipped him with comprehensive knowledge and skills essential for his interdisciplinary research pursuits, spanning structures and materials, innovative construction technologies, and advanced test methods.
Professional Experience
Liangliang Zhang is an accomplished Associate Professor at China Agricultural University, Beijing, China, where he has been instrumental in advancing research and education in the field of engineering materials and structures. He has extensive experience in conducting research across multiple scales and physics, focusing on the characterization of materials through experimental, analytical, and numerical methods. His professional journey includes [mention any notable positions or roles, such as previous academic appointments or leadership roles in research]. Zhang has also been actively involved in consultancy projects and has collaborated with prestigious institutions worldwide, further enriching his expertise and contributing significantly to the field of engineering science.
Research Interest
Certainly! Liangliang Zhang’s research interests encompass a broad spectrum of topics within the realm of engineering materials and structures. His primary interests lie in the multi-scale and multi-physics characterization of advanced materials, focusing on innovative construction technologies, and developing robust testing methodologies. Zhang is particularly passionate about exploring the characteristics of multiphase and multifield particle composites, investigating the behavior of defects in quasicrystal materials and structures, and advancing cross-scale computational algorithms. Additionally, his research extends to energy harvesting materials and systems, aiming to enhance sustainability and resilience in engineering applications.
Research Innovations
Liangliang Zhang has contributed significantly to the field of advanced engineering materials and structures through a series of impactful innovations and research advancements. His work primarily focuses on the multi-scale and multi-physics characterization of materials, employing experimental, analytical, and numerical methods. Zhang’s notable contributions include pioneering studies on multiphase and multifield particle composites, which have advanced understanding in material science and engineering. His investigations into the behavior of defects in quasicrystal materials and structures have led to insights crucial for improving material durability and performance. Moreover, Zhang has developed innovative cross-scale computational algorithms and explored energy harvesting materials and systems, contributing to more efficient and sustainable engineering solutions.
Research Skills
Liangliang Zhang, an Associate Professor at China Agricultural University, excels in advancing the field of advanced engineering materials and structures through a diverse set of research skills. His expertise spans experimental techniques, analytical methods, and numerical modeling, crucial for characterizing materials across various scales. Zhang’s interdisciplinary approach integrates insights from multiple fields to tackle complex challenges, focusing on multiphase and multifield particle composites, quasicrystal materials, and innovative computational algorithms. His collaborative efforts with global institutions underscore his capability to drive impactful research and innovation. With a robust publication record in prestigious journals and editorial roles in prominent scientific platforms like Energies, Zhang continues to contribute significantly to the advancement of material science and engineering solutions worldwide.
Publications
- Analysis of multilayered two-dimensional decagonal piezoelectric quasicrystal beams with mixed boundary conditions
- Authors: Wang, Y.; Liu, C.; Zhu, Z.; Zhang, L.; Gao, Y.
- Year: 2024
- Three-Dimensional General Solutions of Orthorhombic Quasicrystals With Constraints
- Authors: Zhang, J.; Zhang, L.; Xiang, M.; Gao, Y.; Pan, E.
- Year: 2024
- Thermomechanical modeling of functionally graded materials based on bimaterial fundamental solutions
- Authors: Wu, C.; Zhang, L.; Weng, G.J.; Yin, H.
- Year: 2024
- Mechanical Analysis of Functionally Graded Multilayered Two-Dimensional Decagonal Piezoelectric Quasicrystal Laminates with Imperfect Interfaces
- Authors: Wang, Y.; Liu, C.; Zhang, L.; Pan, E.; Gao, Y.
- Year: 2024
- Electromechanical coupling characteristics of multilayered piezoelectric quasicrystal plates in an elastic medium
- Authors: Feng, X.; Zhang, L.; Li, Y.; Gao, Y.
- Year: 2024
- Estimation of heat transfer and thermal conductivity of particle-reinforced hollow cylinder composites
- Authors: Zhang, G.; Zhang, L.; Lei, G.; Gao, Y.
- Year: 2024
- Vibration analysis of quasicrystal sector plates with porosity distribution in a thermal environment
- Authors: Feng, X.; Zhang, L.; Li, Y.; Gao, Y.
- Year: 2024
- Static solution of two-dimensional decagonal piezoelectric quasicrystal laminates with mixed boundary conditions
- Authors: Liu, C.; Feng, X.; Li, Y.; Zhang, L.; Gao, Y.
- Year: 2024
- Citations: 3
- Thermoelastic analysis of a bi-layered system with the single domain inclusion-based boundary element method
- Authors: Wu, C.; Zhang, L.; Singhatanadgid, P.; Zhang, D.
- Year: 2023
- Citations: 2
- Image force in cubic piezoelectric quasicrystal half-space and bi-material composite space
- Authors: Mu, X.; Xu, W.; Zhu, Z.; Zhang, L.; Gao, Y.
- Year: 2023