Inayet burcu Toprak | Manufacturing simulation | Best Researcher Award

Dr. Inayet burcu Boprak | Manufacturing simulation | Best Researcher Award

Lecturer PhD at akdeniz university Turkey

Dr. İnayet Burcu Toprak is a passionate mechanical engineer and academic at Akdeniz University, specializing in advanced manufacturing and automation technologies. 🛠️✨ Her innovative research focuses on enhancing production techniques, particularly through additive manufacturing and powder metallurgy. She skillfully applies optimization strategies like the Taguchi method and multi-objective optimization to improve material characteristics such as tensile strength and precision. 📊🔍 Dr. Toprak also explores cutting-edge ultrasonic atomization to create high-quality metal powders, pushing forward the frontiers of 3D printing and aerospace engineering. 🚀🔧 Dedicated to sustainable and intelligent manufacturing, she bridges theoretical knowledge with practical applications to foster eco-friendly industrial growth. 🌱⚙️ As an active contributor in international scientific forums, she collaborates globally to advance automation and material science. Her work continues to inspire innovation in mechanical engineering, blending creativity with technology for a smarter, greener future. 🌍💡

Professional Profile

Education

Dr. İnayet Burcu Toprak pursued her academic journey in mechanical engineering, culminating in a Ph.D. from Akdeniz University in Antalya, Turkey. Her rigorous training laid the foundation for her expertise in advanced manufacturing and automation technologies. This academic background has been instrumental in her subsequent research and professional endeavors.

Professional Experience

Dr. Toprak has been serving as a faculty member at Akdeniz University’s Technical Sciences Vocational School, Department of Electronics and Automation, since 2002. In her role, she imparts knowledge on control and automation technologies, blending theoretical concepts with practical applications. Her extensive teaching experience underscores her commitment to nurturing the next generation of engineers.

Research Interests

Dr. Toprak’s research is centered on optimizing manufacturing processes, with a particular focus on additive manufacturing and powder metallurgy. She employs advanced methodologies like the Taguchi approach and multi-objective optimization to enhance material properties such as tensile strength and dimensional accuracy. Additionally, her exploration into ultrasonic atomization techniques aims to innovate metal powder production, advancing 3D printing and aerospace applications.

Awards and Honors

While specific awards and honors for Dr. Toprak are not publicly detailed, her contributions to the field are evident through her active participation in international scientific conferences and collaborations. Her work continues to influence the fields of automation, material science, and mechanical engineering, reflecting the recognition she has garnered within the academic community.

Publications Top Notes

1. Automatic recognition of Parkinson’s disease from sustained phonation tests using ANN and adaptive neuro-fuzzy classifier

Authors: MF Çağlar, B Çetişli, İB Toprak

Year: 2010

Citation: 89

Source: Mühendislik Bilimleri ve Tasarım Dergisi 1 (2), 59-64

2. EEG sinyallerinin dalgacık dönüşümü ve yapay sinir ağları ile analizi

Authors: İB Toprak

Year: 2007

Citation: 16

Source: Fen Bilimleri Enstitüsü

3. Ti-6Al-4V Süper Alaşiminin Yüksek Basinçli Soğutma Kullanilarak Frezelenmesinde Yüzey Pürüzlülüğünün Taguchi Yöntemi ile Optimizasyonu

Authors: İB Toprak, MF Çağlar, O Çolak, K Kıran, M Bayhan

Year: 2012

Citation: 6

Source: SDU International Technologic Science 4 (2), 30-39

4. Optimization of Surface Roughness by Using Taguchi Method in Milling of Ti-6Al-4 V Super-Alloy at High-Pressure Cooling Conditions

Authors: İB Toprak, MF Çağlar, O Çolak, K Kıran, M Bayhan

Year: 2012

Citation: 4

Source: Uluslararası Teknolojik Bilimler Dergisi 4 (2), 30-39

5. Ayrık dalgacık dönüşümü ve yapay sinir ağları kullanarak EEG sinyallerinden otomatik epilepsi teşhisi

Authors: İB Toprak, MF Çağlar, M Merdan

Year: 2007

Citation: 4

Source: IEEE 15, 11-13

6. Meslek yüksekokullarında akademik başarıya etki eden faktörler: Akdeniz Üniversitesi Teknik Bilimler Meslek Yüksekokulu örneği

Authors: İB Toprak, N Doğdu, M Öztürk

Year: 2017

Citation: 3

Source: Çankırı Karatekin Üniversitesi Sosyal Bilimler Enstitüsü Dergisi 8 (1), 150-163

7. Multi-Objective Optimization Study on Production of AlSi10Mg Alloy by Laser Powder Bed Fusion

Authors: İB Toprak, N Dogdu

Year: 2024

Citation: 2

Source: Applied Sciences 14 (22), 10584

DOI: 10.3390/app142210584

8. Automatic Recognition of Epilepsy from EEG using Artificial Neural Network and Discrete Wavelet Transform

Authors: İB Toprak, MF Çağlar, M Merdan

Year: 2007

Citation: 2

Source: 2007 IEEE 15th Signal Processing and Communications Applications, 1-4

9. Optimization of tensile strength of AlSi10Mg material in the powder bed fusion process using the Taguchi method

Authors: İB Toprak, N Doğdu

Year: 2024

Citation: 1

Source: Scientific Reports 14, 1-9

10. Prediction and optimization of hardness in AlSi10Mg alloy produced by laser powder bed fusion using statistical and machine learning approaches

Authors: İB Toprak

Year: 2025

Source: Scientific Reports 15 (1), 1-9

DOI: 10.1038/s41598-025-03307-x

11. Numerical Optimization of Laser Powder Bed Fusion Process Parameters for High-Precision Manufacturing of Pure Molybdenum

Authors: İB Toprak, N Dogdu, MU Salamci

Year: 2025

Source: Applied Sciences 15 (10), 5485

DOI: 10.3390/app15105485

Conclusion

Dr. İnayet Burcu Toprak stands as a dedicated academic and researcher in the realm of mechanical engineering. Her commitment to advancing manufacturing technologies and her active engagement in the scientific community underscore her pivotal role in shaping the future of engineering practices. Through her work, she continues to inspire innovation and excellence in the field.

Assoc. Prof. Dr. Hongyan Zhao | Additive manufacturing | Best Researcher Award

Hongyan Zhao | Additive manufacturing | Best Researcher Award

Hongyan Zhao, Beijing University of Technology, China

Dr. Hongyan Zhao 🎓, an Associate Professor at the School of Mechanical and Energy Engineering, Beijing University of Technology 🏫, specializes in high-frequency welding, additive manufacturing, power supply systems, and power electronics ⚡. With a Ph.D. in Electrical Engineering from Beijing Jiaotong University 🎓, Dr. Zhao has led and contributed to national and enterprise-funded projects 🧪. His research has been widely published in top-tier SCI journals 📚. Passionate about innovative manufacturing and control technologies 🤖, he combines academic excellence with industrial collaboration, driving advancements in welding technology and smart manufacturing systems 🚀.

Professional profile : 

scopus

Summary of suitability :

Dr. Hongyan Zhao is highly suitable for a Best Researcher Award. His impressive academic background, specialized expertise, strong publication record, and leadership in high-impact projects demonstrate the qualities expected of an award-winning researcher. His commitment to both fundamental research and practical industry applications places him at the forefront of innovation in mechanical, energy, and electrical engineering fields.

Education and Experience :

  • 🎓 B.S. in Automation – Yanshan University (2006.09 – 2010.06)

  • 🎓 M.S. in Electrical Machines and Apparatus – Yanshan University (2010.09 – 2013.06)

  • 🎓 Ph.D. in Electrical Engineering – Beijing Jiaotong University (2013.09 – 2019.01)

  • 🔬 Postdoctoral Researcher – Beijing Jiaotong University (2019.06 – 2021.07)

  • 👨‍🏫 Associate Professor – Beijing University of Technology (current)

Professional Development :

Dr. Hongyan Zhao 🚀 has been deeply involved in professional development through leading major national projects and enterprise collaborations 📈. He secured funding from the National Natural Science Foundation of China 🎯 and contributed significantly to large-scale national R&D programs, particularly in advanced welding technologies and additive manufacturing 🛠️. His engagement with projects like ultra-high frequency pulse arc welding for deep-water environments 🌊 and flexible manufacturing systems for spacecraft structures 🚀 highlights his drive to solve real-world industrial challenges. Through active research, teaching, and innovation 🔥, Dr. Zhao continually pushes the boundaries of smart manufacturing and electrical engineering 🌟.

Research Focus Category :

Dr. Hongyan Zhao’s 🧠 research focuses on Advanced Manufacturing and Welding Technology 🔥, especially in the fields of high-frequency welding, multi-electrode arc behavior, and additive manufacturing processes 🛠️. His expertise extends to the development of power electronics and high-efficiency power transmission systems ⚡. With a multidisciplinary approach combining thermal, electrical, and mechanical dynamics 🌐, Dr. Zhao aims to revolutionize industrial welding and smart production techniques 🤖. His work contributes to both fundamental research and practical engineering applications, impacting industries such as aerospace 🚀, energy 🌱, and deep-water construction 🏗️ through technological innovation and new control strategies 🎯.

Awards and Honors :

  • 🏅 First Author and Corresponding Author in multiple SCI Q1 TOP journals

  • 🏆 Leader of Enterprise-funded Research Projects (Variable Polarity Plasma Arc Welding System)

  • 📚 Core Member of National Key R&D Programs and Major Science Projects

  • 🎖️ Recipient of Youth Project Funding from the National Natural Science Foundation of China

  • 🏅 Recognized for Contributions to National Spacecraft Manufacturing Equipment Projects

Publication Top Notes :

Morphology and energy distribution characteristics of ultra-high frequency adjustable multi-pulse GTAW arc