Danish Tahir | Materials Science | Best Researcher Award

Mr. Danish Tahir | Materials Science | Best Researcher Award

Danish Tahir is a dedicated research professional specializing in materials engineering with a strong focus on biodegradable composites, fiber-reinforced composites, and advanced materials characterization. With extensive experience in academia and research, he has contributed significantly to the field through high-impact publications, conference presentations, and laboratory supervision. His expertise spans a wide range of experimental techniques, including Scanning Electron Microscopy (SEM), Thermo-Mechanical Analysis (TMA), and Fourier Transform Infrared Spectroscopy (FTIR). Danish has also played a vital role in mentoring students, assisting in course delivery, and managing laboratory operations. His research contributions have been recognized in leading scientific journals, emphasizing innovation and sustainability in material sciences. In addition to his research excellence, he has gained industrial exposure through internships in production and quality control. Danish’s commitment to advancing scientific knowledge and his ability to work across multiple domains make him a strong candidate for research excellence awards. His ongoing work in biodegradable composites and material characterization aligns with global sustainability goals, reinforcing his contributions to the evolving field of advanced materials. Through continuous learning, research, and collaboration, Danish aims to expand his impact in academia and industry while fostering innovation in material science applications.

Education

Danish Tahir has a strong academic foundation in materials engineering, demonstrated by his outstanding academic performance and research engagements. He completed his Master of Science (M.Sc.) in Materials Engineering from Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Pakistan, between January 2018 and March 2020, achieving an impressive CGPA of 3.96/4.00 and earning multiple distinctions on the Dean’s Honor Roll. His research during his master’s focused on biodegradable polymer composites and advanced characterization techniques. Prior to his master’s degree, Danish earned his Bachelor of Science (B.Sc.) in Materials Engineering from National University of Sciences and Technology (NUST), Pakistan, between September 2013 and June 2017, securing a CGPA of 3.27/4.00. His undergraduate studies provided him with a strong foundation in materials processing, mechanical testing, and corrosion analysis. Throughout his academic career, Danish has consistently demonstrated excellence, receiving multiple honors, including a Silver Medal in Matriculation and Dean’s Honor Roll distinctions at both undergraduate and postgraduate levels. His strong educational background, coupled with hands-on research experience, has enabled him to contribute significantly to the field of materials science and engineering.

Professional Experience

Danish Tahir is currently serving as a Research Assistant at The Hong Kong Polytechnic University (since January 2022), where he focuses on the development and characterization of biodegradable composites. His responsibilities include conducting advanced material characterization, supervising laboratory operations, and assisting instructors in research and course delivery. Prior to his current role, Danish worked as a Graduate Research Assistant (January 2018 – March 2020) at Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, where he played a key role in a Pakistan Science Foundation Research Project on bamboo fiber-reinforced composites. His responsibilities included designing experimental methodologies, developing standard operating procedures (SOPs), and conducting mechanical and chemical analysis. His earlier experience includes working as a Research Assistant at Advanced Materials Technology (July 2017 – January 2018) and undertaking internships at Qadcast Foundry Ltd (June 2016 – August 2016) and Oil and Gas Development Company Ltd (August 2015 – September 2015). These roles allowed him to gain industrial exposure in manufacturing, quality control, and characterization of engineering materials. Danish’s professional experience reflects his ability to integrate research with practical applications, making significant contributions to both academia and industry.

Research Interests

Danish Tahir’s research interests primarily revolve around biodegradable and fiber-reinforced composites, advanced materials characterization, and sustainability-driven material innovations. His focus is on developing eco-friendly materials that offer superior mechanical properties while minimizing environmental impact. A key area of interest for Danish is the chemical and thermal characterization of polymer composites, where he utilizes techniques such as Fourier Transform Infrared Spectroscopy (FTIR), Thermogravimetric Analysis (TGA), and Differential Scanning Calorimetry (DSC) to assess material properties. He is also deeply involved in the mechanical performance analysis of composite materials, including tensile, impact, and thermo-mechanical behavior assessments. In addition, Danish is passionate about nano-composites and surface engineering, specifically in the optimization of coatings using anodization and other advanced surface treatments. His work on sodium carbonate treatment of bamboo fibers demonstrates his commitment to developing sustainable materials with enhanced mechanical performance. His long-term research goals include expanding the application of biodegradable materials in various industries, optimizing auxetic materials for personal protection, and collaborating on multidisciplinary research projects integrating materials engineering with biomedical and environmental sciences.

Research Skills

Danish Tahir possesses a diverse set of research skills that make him proficient in both experimental and analytical aspects of materials engineering. His expertise includes advanced material characterization techniques such as Scanning Electron Microscopy (SEM), Atomic Force Microscopy (AFM), X-ray Diffraction (XRD), and Thermo-Mechanical Analysis (TMA). He is also well-versed in chemical and thermal analysis techniques such as FTIR, TGA, and DSC, which are critical for understanding polymer and composite material properties. His hands-on skills in mechanical characterization include tensile testing, impact testing, and hardness testing of various materials, including metals, polymers, and composites. He is an expert in polymer processing techniques, including injection molding and composite fabrication, making him well-equipped to develop new materials with enhanced properties. Danish has significant experience with research project management, including experimental design, standard operating procedures (SOPs) preparation, data analysis, and research documentation. His technical proficiency is complemented by strong software skills, including SolidWorks, Microsoft Office, Origin Pro, and ImageJ, which aid in material simulations and data interpretation. His well-rounded skill set ensures that he can conduct high-quality research, analyze complex material behaviors, and contribute to innovative advancements in materials engineering.

Awards and Honors

Danish Tahir has received multiple accolades throughout his academic and professional career, recognizing his excellence in research and education. He has been awarded four consecutive Dean’s Honor Roll distinctions during his Master’s degree at Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, highlighting his outstanding academic performance. He was also the recipient of a Graduate Financial Assistantship, which funded his research endeavors during his Master’s studies. At the undergraduate level, he secured a Dean’s Honor Roll distinction at NUST, further demonstrating his strong academic capabilities. His early academic achievements include earning a Silver Medal in Matriculation, a testament to his consistent excellence from an early stage. Apart from his academic recognitions, Danish has played leadership roles in extracurricular activities, serving as Sports Coordinator at GIKI Graduate Society and Executive of Industrial Linkages at NUST Materials Advantage Chapter. These accolades underscore Danish’s commitment to research, education, and leadership, making him a distinguished professional in materials engineering.

Conclusion

Danish Tahir is a highly accomplished researcher in materials engineering, with expertise spanning biodegradable composites, polymer characterization, and advanced material processing. His strong academic background, professional experience, and high-impact research contributions position him as a leading researcher in his field. His extensive skill set in materials characterization, mechanical testing, and research project management, combined with a robust publication record, underscores his ability to advance scientific knowledge. Danish’s dedication to sustainability and innovative material solutions aligns with the global push for eco-friendly engineering advancements. While he has already demonstrated significant research excellence, opportunities for securing independent research funding, interdisciplinary collaborations, and technology commercialization could further enhance his impact. With his passion for research and commitment to academic excellence, Danish is well-positioned to make continued contributions to the field of materials science and engineering.

Publications Top Notes

  • Title: Auxetic materials for personal protection: a review
    Authors: D. Tahir, M. Zhang, H. Hu
    Year: 2022
    Citations: 52

  • Title: Natural fibres as promising environmental-friendly reinforcements for polymer composites
    Authors: M.R.A. Karim, D. Tahir, E.U. Haq, A. Hussain, M.S. Malik
    Year: 2021
    Citations: 48

  • Title: Sources, chemical functionalization, and commercial applications of nanocellulose and nanocellulose-based composites: a review
    Authors: D. Tahir, M.R.A. Karim, H. Hu, S. Naseem, M. Rehan, M. Ahmad, M. Zhang
    Year: 2022
    Citations: 41

  • Title: Load-bearing characteristics of 3D auxetic structures made with carbon fiber reinforced polymer composite
    Authors: E. Etemadi, M. Zhang, K. Li, M. Bashtani, M.M.P. Ho, D. Tahir, H. Hu
    Year: 2023
    Citations: 33

  • Title: Sodium carbonate treatment of fibres to improve mechanical and water absorption characteristics of short bamboo natural fibres reinforced polyester composite
    Authors: M.R. Abdul Karim, D. Tahir, A. Hussain, E. Ul Haq, K.I. Khan
    Year: 2020
    Citations: 25

  • Title: Improved mechanical and water absorption properties of epoxy-bamboo long natural fibres composites by eco-friendly Na₂CO₃ treatment
    Authors: M.R. Abdul Karim, D. Tahir, K.I. Khan, A. Hussain, E.U. Haq, M.S. Malik
    Year: 2023
    Citations: 10

  • Title: Analysis of mechanical and water absorption properties of hybrid composites reinforced with micron-size bamboo fibers and ceramic particles
    Authors: D. Tahir, M.R. Abdul Karim, H. Hu
    Year: 2024
    Citations: 5

  • Title: Experimental Investigation of the Micro-Milling of Additively Manufactured Titanium Alloys: Selective Laser Melting and Wrought Ti6Al4V
    Authors: M. Rehan, T. He, A.K. Khalil, D. Tahir, W.S. Yip, S.S. To
    Year: 2024
    Citations: 3

  • Title: Effect of nano-silica volume reinforcement on the microstructure, mechanical, phase distribution and electrochemical behavior of pre-alloyed titanium-nickel (Ti-Ni) powder
    Authors: S.A. Raza, M.I. Khan, M. Ahmad, D. Tahir, A. Iltaf, R.B. Naqvi
    Year: 2021
    Citations: 3

  • Title: Magnetic field assisted micro-milling of selective laser melted titanium alloy
    Authors: M. Rehan, D. Tahir, P. Guo, W.S. Yip, S.S. To
    Year: 2025
    Citations: 1

Xin Li | Electromagnetic Material | Best Researcher Award

Mr. Xin Li | Electromagnetic Material | Best Researcher Award

Shenyang Institute of Engineering, China.

Xin Li is a dedicated researcher and educator specializing in motor design, control systems, and UAV flight control. Currently a faculty member at the School of Automation at Shenyang Institute of Engineering, he has been actively involved in both theoretical and applied research. His work primarily focuses on the analysis and optimization of motor performance, with recent studies on leakage flux coefficients in arc motors. With over 10 academic publications and monographs, he has made notable contributions to the field. Xin Li has also played a key role in mentoring students, guiding them to success in innovation and entrepreneurship competitions at the provincial level, earning over 10 awards. His research expertise extends to leading and participating in five provincial-level scientific research projects. In recognition of his contributions, he has received funding from the Liaoning Huanghai Laboratory Open Innovation Fund. With a strong foundation in electrical engineering and automation, Xin Li continues to explore advancements in power electronics and UAV control systems, aiming to develop more efficient and intelligent automation technologies. His commitment to research, education, and innovation positions him as a rising expert in the field of automation and motor control.

Professional Profile

Education

Xin Li holds a master’s degree from Shenyang Polytechnic School, where he specialized in electrical engineering and automation. He completed his postgraduate studies between 2017 and 2020, focusing on advanced motor control techniques and automation system design. Prior to that, he earned his undergraduate degree from Shenyang University of Technology in 2016. His academic journey has provided him with a strong technical foundation in electrical machines, motor design, control systems, and power electronics. Throughout his education, Xin Li developed a deep interest in motor performance optimization, which later became a key area of his research. His studies also involved hands-on experience in motor testing, control algorithms, and automation technologies, equipping him with the necessary skills to contribute meaningfully to the field. His commitment to continuous learning and research has led him to actively participate in provincial research projects and academic conferences, further expanding his expertise in electrical engineering. By combining theoretical knowledge with practical applications, he has positioned himself as an expert in designing and improving motor control systems, particularly for applications in UAV flight control and industrial automation.

Professional Experience

Xin Li has been serving as a lecturer at the School of Automation at Shenyang Institute of Engineering since 2022. In this role, he is actively engaged in teaching, research, and mentoring students in power electronic technology and automation-related courses. His expertise in motor design and UAV control has allowed him to contribute to innovative research in these fields. He has led and participated in five provincial scientific research projects, demonstrating his ability to manage and execute research initiatives effectively. His work primarily revolves around improving the efficiency of electrical machines and optimizing control algorithms for UAV flight stability. Xin Li’s involvement in academic publishing has resulted in over 10 publications in journals and conference proceedings, with notable research on leakage flux coefficient calculations for arc motors. Additionally, he has played an integral role in guiding students in innovation and entrepreneurship competitions, where they have won over 10 awards under his mentorship. His ability to bridge the gap between theoretical research and real-world applications showcases his strong potential as a leading researcher in automation and electrical engineering. By expanding his research collaborations and industry partnerships, he can further enhance his contributions to the field.

Research Interests

Xin Li’s research interests lie in the fields of motor design, control systems, and UAV flight control. His studies focus on the optimization of electrical machines, particularly the calculation of leakage flux coefficients for arc motors, which is critical in improving motor performance and efficiency. He is also deeply involved in UAV flight control, working on advanced control algorithms to enhance the stability and maneuverability of quadrotor drones. His research aims to integrate intelligent automation techniques with motor control systems, making them more reliable and energy-efficient. Xin Li is particularly interested in exploring AI-driven control methodologies for UAVs and electric motors, which could lead to further advancements in automation technology. His work contributes to industrial automation, renewable energy applications, and the development of more efficient propulsion systems for UAVs. By focusing on practical applications, he seeks to bridge the gap between academic research and real-world engineering challenges. Moving forward, Xin Li aims to expand his research into adaptive control mechanisms for smart motors and UAVs, contributing to the advancement of next-generation automation systems. His research has significant implications for improving energy efficiency and control precision in electrical and mechanical systems.

Research Skills

Xin Li possesses strong expertise in motor control, power electronics, and automation technologies. His proficiency in motor design includes in-depth knowledge of electromagnetic field analysis, leakage flux calculations, and optimization of electrical machine performance. His research has involved experimental validation of motor efficiency enhancements, demonstrating his ability to apply theoretical principles to real-world engineering problems. In addition to his motor research, he is skilled in UAV flight control, specializing in stability control algorithms for quadrotor drones. His technical skills also extend to computational modeling, data analysis, and simulation of electrical systems. Xin Li has experience with software tools used for motor simulation and control system analysis, making him proficient in both hardware and software aspects of automation engineering. His ability to integrate machine learning techniques with motor control further enhances his research capabilities. Furthermore, his role in academic publishing and project leadership demonstrates strong communication and project management skills. His ability to mentor students and lead research teams makes him a valuable contributor to academia. Strengthening his collaborations with international research groups and industry partners would further enhance the impact of his work in electrical and automation engineering.

Awards and Honors

Xin Li has been recognized for his contributions to research and student mentorship through multiple awards. Under his guidance, students have achieved over 10 awards in provincial innovation and entrepreneurship competitions, reflecting his dedication to academic excellence and applied research. His research projects have also been supported by the Liaoning Huanghai Laboratory Open Innovation Fund, which acknowledges the significance of his work in motor design and control systems. Additionally, his publications in journals and conferences have contributed to the advancement of motor performance analysis and UAV control technologies. Although he has not yet received major international research awards, his work demonstrates strong potential for future recognition in the field of automation and electrical engineering. By furthering his research impact through high-impact journal publications and securing patents for his innovations, he could gain additional recognition at both national and international levels. His contributions to the academic community and his ability to drive innovation in motor control and UAV automation make him a strong candidate for research awards in automation and engineering sciences. His continued dedication to research excellence will likely result in further prestigious honors in the future.

Conclusion

Xin Li is an emerging researcher in the field of motor design and UAV control, with significant contributions to automation and electrical engineering. His research on optimizing motor efficiency and improving UAV flight stability has practical applications in industrial automation and aerospace technology. His leadership in research projects, academic publishing, and student mentorship highlights his dedication to advancing the field. While he has made notable contributions, expanding his research collaborations, increasing high-impact journal publications, and developing industry partnerships will further enhance his career. His ability to integrate theoretical knowledge with practical applications positions him as a valuable contributor to electrical engineering research. With continued focus on innovation, Xin Li has the potential to achieve greater recognition and contribute significantly to the future of smart automation systems. His work aligns with the evolving needs of modern engineering, making him a strong candidate for future research awards and honors.

Publications Top Notes

  1. Title: Analysis and Calculation of No‐Load Leakage Flux Coefficient for Arc Motors
    Authors: YuTong Wang, Xin Li, XiaoQing Li, Yi Sun, HaoMing Qu, QunYuan Li, JiaRen Xu
    Year: 2025

  2. Title: Calculation of leakage coefficient of axial flux arc motor
    Authors: Xin Li, Hongkui Yan, Jiaxin Li, Qing Ma, Yiming Peng, Zhenhua Zhan, Hengjia Shi, Qihang Li, Zhicheng Guo
    Year: 2023

Excellence in Materials Science and Engineering Award

Introduction Excellence in Materials Science and Engineering Award

Step into the future of innovation with the Excellence in Materials Science and Engineering Award. This esteemed accolade honors individuals whose contributions have significantly advanced the field, pushing the boundaries of what is possible in materials science and engineering.

About the Award:

The Excellence in Materials Science and Engineering Award is open to exceptional individuals who have demonstrated a profound impact on the field. There are no age restrictions, and eligibility extends to those showcasing outstanding achievements in materials science and engineering.

Qualifications and Publications:

Candidates must possess a strong background in materials science and engineering, with qualifications that may include advanced degrees and a robust portfolio of publications showcasing groundbreaking contributions to the field.

Evaluation Criteria:

The evaluation process focuses on the significance, originality, and impact of the nominee's work. Judges will assess the candidate's contributions to advancing materials science and engineering, considering the quality and influence of their research and innovations.

Submission Guidelines:

Applicants are encouraged to submit a comprehensive biography, an abstract outlining their key contributions to materials science and engineering, and supporting files that demonstrate the practical applications and outcomes of their work. Submissions must adhere to provided guidelines for a fair and thorough evaluation.

Recognition and Community Impact:

The Excellence in Materials Science and Engineering Award not only celebrates individual accomplishments but also recognizes the broader impact on the scientific community. Winners become catalysts for inspiration, motivating others to pursue excellence in materials science and engineering.

Biography, Abstract, and Supporting Files:

Craft a compelling biography that highlights your journey and impact in materials science and engineering. The abstract should concisely convey the significance of your contributions, and supporting files offer a tangible view of the practical applications and outcomes of your work.

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