Dongju Chen | Air Bearing | Best Researcher Award

Prof. Dongju Chen | Air Bearing| Best Researcher Award

professor, Beijing University of Technology, China

A renowned expert in mechanical engineering, this individual is a Senior Member of the Chinese Mechanical Engineering Society (CMES) and a Fellow of the Institute of Electrical and Electronics Engineers (IEEE). They serve as Secretary of the Production Engineering Society of China and have held various esteemed positions, including Communication Evaluation Expert and Assessment Expert for the National Natural Science Foundation of China and the Zhejiang Natural Science Foundation, respectively. 🔧

Profile

scopus

Education🎓

This individual holds a Ph.D. in Mechanical Engineering from a prestigious university (degree and university not specified). Their academic background has equipped them with a solid foundation in mechanical engineering, enabling them to excel in their research and professional pursuits. đź“š

Experience đź’Ľ

With a distinguished career spanning multiple decades, this individual has accumulated extensive experience in mechanical engineering research, education, and industry. They have served as a reviewer for reputable journals, including the Journal of Materials Science and Technology (JMST), Measurement, and AMT. Their expertise has been sought after by various organizations, including the National Natural Science Foundation of China and the Zhejiang Natural Science Foundation. 🔧

Awards & Honors  🏆

This individual has received numerous awards and honors for their outstanding contributions to mechanical engineering, including IEEE Fellow Senior Member, Chinese Mechanical Engineering Society (CMES) Secretary, Production Engineering Society of China Communication Evaluation Expert, Engineering Materials Department, National Natural Science Foundation of China Assessment Expert, Zhejiang Natural Science Foundation

Research Focus  🔬

Error Identification and Detection Technology*: Developing innovative methods for identifying and detecting errors in ultra-precision machine tools Micro-Scale Fluid Dynamics*: Investigating the influence of micro-scale fluid on the performance of key parts of machine tools. *Dynamic Contact Mechanism*: Exploring the dynamic contact mechanism of hydrostatic spindle-solid coupling under the influence of slip. *Micro-Nano-Scale Processing*: Developing new methods and mechanisms for micro-nano-scale processing.

Publications

1. Error Identification and Detection Technology for Ultra-Precision Machine Tools 🤖
2. Influence of Micro-Scale Fluid on the Performance of Key Parts of Machine Tools đź’§
3. Dynamic Contact Mechanism of Hydrostatic Spindle-Solid Coupling under the Influence of Slip 🔩
4. Micro-Nano-Scale Processing and Mechanism 🔬

Conclusion

This individual’s impressive academic and professional affiliations, research expertise, leadership, and service contributions make them an outstanding candidate for the Best Researcher Award. While there are areas for improvement, their strengths and achievements demonstrate their potential to make a significant impact in their field.

Simon Yishak | Manufacturing Engineering | Academic Excellence in Mechanics Award

Mr. Simon Yishak | Manufacturing Engineering | Academic Excellence in Mechanics Award

Lecturer at Arba Minch University, Ethiopia

🌟 Simon Yishak Kolebaye is a passionate academic leader serving as a lecturer and Head of the Automotive Engineering Department at Arba Minch University, Ethiopia, since 2016. 🎓 He earned his BSc in Mechanical Engineering from Mizan Tepi University and an MSc in Manufacturing Engineering and Automation from Arba Minch University. 🛠️ With nine years of professional experience, Simon focuses on bridging academia and industry through innovative research, community engagement, and industry-technology transfer. 🚀 His expertise in advanced manufacturing and process optimization reflects his commitment to Ethiopia’s technological growth. 🌍

Publication Profile

scopus

Education🎓

MSc in Manufacturing Engineering and Automation (2021) – Arba Minch University BSc in Mechanical Engineering, Manufacturing Stream (2015) – Mizan Tepi University Specialized in advanced manufacturing, CNC technology, additive manufacturing, process planning, welding machines, and automation. 🤖 His academic training integrates engineering principles with cutting-edge technologies to enhance manufacturing systems. 🚀

Experience đź“Ś

Head of Automotive Engineering Department at Arba Minch University (2016–present)  Led department operations, curriculum development, and student mentorship. Coordinated research projects bridging academic solutions with industry needs. Actively engaged in teaching advanced manufacturing technologies, workshop technology, and process optimization. Contributed to community-focused projects, enhancing education and safety in Ethiopia.

Awards and Honors 🏆

Recognized for exceptional leadership in academic program management. Received grants for innovative research projects funded by Arba Minch University.  Honored for community service initiatives improving local education and infrastructure.  Acknowledged for excellence in publishing impactful research in advanced manufacturing.

Research Focus 🔬

Focused on additive manufacturing and process optimization for energy storage, graphene composites, and pipeline applications. Specialized in thermoplastic infill patterns, laser scanning for nickel alloys, and biocomposites. Worked on sustainability, utilizing waste-derived materials for manufacturing innovations.  Published studies on CNC automation, rapid prototyping, and advanced manufacturing systems. Dedicated to developing scalable, eco-friendly, and cost-effective manufacturing solutions.

Publications đź“–

1. Additive Manufacturing (3D Printing)

Graphene Enhanced PETG Optimization:

Title: Fused deposition modeling process parameter optimization on the development of graphene enhanced polyethylene terephthalate glycol

Journal: Scientific Reports (2024, 14(1), 30744)

Focus: Optimizing parameters for FDM using graphene-reinforced PETG.

Citations: 0

Graphene-Reinforced PETG Impeller Production:

Title: Optimizing additive manufacturing parameters for graphene-reinforced PETG impeller production: A fuzzy AHP-TOPSIS approach

Journal: Results in Engineering (2024, 24, 103018)

Focus: Application of multi-criteria decision-making tools for PETG optimization.

Citations: 4

Thermoplastic Polyurethane for Pipeline Applications:

Title: Analysis and Optimization of Thermoplastic Polyurethane Infill Patterns for Additive Manufacturing in Pipeline Applications

Journal: Advances in Polymer Technology (2024)

Focus: Infill pattern optimization in AM applications.

Citations: 0

2. Laser Manufacturing

Nickel-Based Superalloys:

Title: Role of laser power and scan speed combination on the surface quality of additive manufactured nickel-based superalloy

Journal: Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications (2024, 238(6), pp. 1142–1154)

Focus: Investigates laser parameters on the surface quality of nickel alloys.

Citations: 13

3. Composites and Biocomposites

Biocomposites of Jute/Bagasse/Coir/Nano TiO2:

Title: An Investigation on the Activation Energy and Thermal Degradation of Biocomposites of Jute/Bagasse/Coir/Nano TiO2/Epoxy-Reinforced Polyaramid Fibers

Journal: Journal of Nanomaterials (2022)

Focus: Studied thermal degradation of sustainable biocomposites.

Citations: 33

Conclusion

Mr. Simon Yishak demonstrates exceptional qualifications and expertise that align closely with the goals of the Research for Academic Excellence in Mechanics Award. His academic rigor, innovative research, and practical contributions to manufacturing engineering position him as a strong candidate for this prestigious recognition. By focusing on international collaborations, patent development, and expanding his research into emerging fields, Simon could further solidify his candidacy and amplify his contributions to the discipline.

Jingfei Yin | high performance machining | Best Researcher Award

Assoc Dr.  Nanjing university of Aeronautics and Astronautics, china

Dr. Jingfei Yin is an Associate Professor at Nanjing University of Aeronautics and Astronautics with a Ph.D. from Dalian University of Technology. His research focuses on high-efficiency and precision machining of hard-to-machine materials, high-speed machining, and laser detection of subsurface damage. He has led or participated in over 10 national and provincial projects, published more than 20 academic papers, holds six patents, and has over 10 patents in progress. Dr. Yin is an editorial member of several high-impact journals and a senior member of the Chinese Mechanical Engineering Society. He is recognized for his pioneering work in ultrasonic-assisted drilling and subsurface damage detection.

 

Professional Profiles:

🎓 Academic and Professional Background

Dr. Jingfei Yin earned his PhD from Dalian University of Technology, under the supervision of Prof. Bi Zhang (CIRP Fellow). Currently, he serves as an Associate Professor at Nanjing University of Aeronautics and Astronautics. His research spans high-efficiency and precision machining of hard-to-machine materials, high-speed machining, and laser detection of subsurface damage. He has led or contributed to over 10 national and provincial projects, including those funded by the National Natural Science Foundation and the National Sci. & Tech. Major Project. Dr. Yin has published over 20 academic papers and is an invited reviewer for several high-level journals.

🚀 Research and Innovations:

🛠 Completed/Ongoing Research Projects:Completed three projects funded by the China Postdoctoral Foundation and Jiangsu Province Postdoctoral Foundation.Currently managing five ongoing projects from the National Natural Science Foundation of China, The Science Center for Gas Turbine, and Nanjing University of Aeronautics and Astronautics.📊 Citation Index: 12🏗 Consultancy/Industry Projects: Two industry projects.📚 Books Published (ISBN): None.🔑 Patents Published/Under Process:Published six patents with more than 10 patents under process.📝 Journals Published (SCI, Scopus, etc.): Over 20 articles.

đź“° Editorial Appointments:

Early editorial member of the International Journal of Hydromechatronics (JIF: 5.3), Nanotechnology and Precision Engineering (JIF: 3.5), and two other Chinese journals (SCIE indexed).

🎓 Professional Memberships:

Senior member of the Chinese Mechanical Engineering Society and a member of the Chinese Society of Aeronautics and Astronautics.

🔬 Areas of Research:

High-efficiency and precision machining of hard-to-machine materials, high-speed machining, and laser detection of subsurface damage.

🌟 Contributions

Pioneered the mechanical machining of high-frequency ultrasonic-assisted drilling, making submillimeter holes in superhard ceramic matrix composites. Efficiency is elevated up to 10 times compared to current laser machining.Discovered the “skin effect” of subsurface damage distribution in materials subjected to high-speed machining, where damage depth decreases with increasing machining speed.Developed a novel non-destructive method of polarized laser scattering for detecting subsurface damage in materials with a sensitivity as high as 0.1 μm in depth, using electromagnetic scattering theory to clarify the interaction between laser polarization and subsurface damages.

✍️ Self-Declaration:

I authenticate that to the best of my knowledge, the information given in this form is correct and complete. If at any time, I am found to have concealed any material information, my application shall be liable to be summarily terminated without notice. I have read the terms and conditions and other policies of the Awards and agree to them.

Dr. Jingfei Yin’s Research for the Best Researcher Award

Strengths for the Award:

  1. Innovative Research Contributions: Dr. Jingfei Yin has made significant contributions to the field of precision machining, particularly in the high-efficiency machining of hard-to-machine materials. His work on high-frequency ultrasonic-assisted drilling, which improves the efficiency of creating submillimeter holes in ceramic matrix composites by tenfold compared to current laser machining methods, is groundbreaking. This demonstrates his ability to push the boundaries of existing technologies.
  2. Expertise in Subsurface Damage Detection: Dr. Yin’s research on the “skin effect” of subsurface damage distribution in high-speed machining and the interaction between laser polarization and subsurface damage highlights his deep understanding of the intricate processes involved in machining. His development of a novel non-destructive method for detecting subsurface damage with high sensitivity is a testament to his innovative approach to solving complex problems in material science.
  3. Leadership in National and Provincial Projects: Dr. Yin has successfully led and participated in more than ten national and provincial research projects, including those funded by the National Natural Science Foundation and the National Science & Technology Major Project. His leadership in these projects underlines his capability to manage large-scale research initiatives and contribute valuable insights to the field.
  4. Scholarly Contributions: With over 20 academic papers published in reputable journals and six patents already published, Dr. Yin’s scholarly output is commendable. His work is recognized and cited by peers, as indicated by his citation index of 12, further affirming his influence in the field of precision machining.
  5. Editorial and Peer-Review Roles: Serving as an editorial member for international journals like the International Journal of Hydromechatronics and Nanotechnology and Precision Engineering, Dr. Yin is well-respected in the academic community. His role in these journals showcases his expertise and his commitment to advancing research in his areas of specialization.

Areas for Improvement:

  1. Collaborations: While Dr. Yin has demonstrated substantial individual achievements, expanding his collaborative efforts, both nationally and internationally, could further enhance his research impact. Engaging in interdisciplinary collaborations or partnerships with industry could open new avenues for research and practical applications of his work.
  2. Publication in High-Impact Journals: Although Dr. Yin has published extensively, further increasing the number of publications in higher-impact journals would bolster his academic profile. Targeting top-tier journals in the fields of material science and precision engineering could help in gaining wider recognition for his work.
  3. Expansion of Research Areas: Dr. Yin’s current research focus is highly specialized, which is a strength, but expanding into related areas such as smart manufacturing, additive manufacturing, or automation in machining could diversify his research portfolio and potentially lead to more groundbreaking discoveries.

 

✍️Publications Top Note :

High-Performance Grinding of Ceramic Matrix Composites

Journal: Nanotechnology and Precision Engineering

Year: 2024

Citations: 0

Machinability of Submillimeter Holes in Ceramic Matrix Composites by High-Frequency Ultrasonic Vibration-Assisted Drilling

Journal: Journal of Materials Processing Technology

Year: 2024

Citations: 1

Experimental Study of Single Grain Grinding for SiCf/SiC Ceramic Matrix Composites

Journal: Zhongguo Jixie Gongcheng/China Mechanical Engineering

Year: 2022

Citations: 4

Rational Discussion on Material Removal Mechanisms and Machining Damage of Hard and Brittle Materials

Journal: Jixie Gongcheng Xuebao/Journal of Mechanical Engineering

Year: 2022

Citations: 5

Feasibility of Polarized Laser Scattering in Detecting the Grinding-Induced Subsurface Damage in SiCf/SiC Ceramic Matrix Composite

Journal: Composite Structures

Year: 2022

Citations: 8

Sensitivity of Polarized Laser Scattering Detection to Subsurface Damage in Ground Silicon Wafers

Journal: Materials Science in Semiconductor Processing

Year: 2022

Citations: 2

Influence of Alumina Abrasive Tool Wear on Ground Surface Characteristics and Corrosion Properties of K444 Nickel-Based Superalloy

Journal: Chinese Journal of Aeronautics

Year: 2022

Citations: 10

Generation Mechanism Modeling of Surface Topography in Tangential Ultrasonic Vibration-Assisted Grinding with Green Silicon Carbide Abrasive Wheel

Journal: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture

Year: 2022

Citations: 10

Edge Chipping Characteristics in Grinding SiCf/SiC Composite

Journal: Ceramics International

Year: 2022

Citations: 15

Depolarization of Surface Scattering in Polarized Laser Scattering Detection for Machined Silicon Wafers

Journal: Precision Engineering

Year: 2022

Citations: 7

Conclusion:

Dr. Jingfei Yin is a highly qualified candidate for the Best Researcher Award. His innovative contributions to the field of high-performance and precision machining, particularly his pioneering work on ultrasonic-assisted drilling and subsurface damage detection, position him as a leader in his field. While there are opportunities for expanding his collaborative efforts and diversifying his research areas, his existing accomplishments make him a strong contender for the award. His research not only advances the scientific understanding of machining processes but also has practical implications for improving efficiency and quality in manufacturing.

Ye Shaowei | wavefront sensening | Best Researcher Award

Dr. Ye Shaowei | wavefront sensening | Best Researcher Award

Dr. Sun Yat-sen University, China

Shaowei Ye is a dedicated researcher currently pursuing a Doctor of Science in Physics at Sun Yat-sen University. His research primarily focuses on laser ranging and adaptive optics, where he is working on correcting aberrations in laser ranging systems. With a strong background in vehicle engineering from Xiamen University of Technology, Shaowei has contributed to several patents and publications in prestigious journals. He has been recognized with awards for his work, including the Best Poster Award at the TianQin Project. Proficient in software like Zemax, Matlab, and Python, Shaowei Ye combines technical expertise with innovative research.

Professional Profiles:

🧑‍🎓 Educational Background

Shaowei Ye, born in Shangrao, China, is currently pursuing a Doctor of Science in Physics at Sun Yat-sen University, expected to graduate in December 2024. Prior to this, he completed both his Bachelor’s and Master’s degrees in Vehicle Engineering at Xiamen University of Technology, showcasing his diverse academic foundation.

🔬 Research Focus and Project Experience

Sun Yat-sen University, Tianqin Laser Ranging Station (June 2020 – Present) Shaowei’s Ph.D. research is centered on Laser Ranging and Adaptive Optics. He has conducted extensive experiments on Earth-Moon laser ranging and star measurements, aiming to improve the accuracy of telescopic observations by correcting aberrations in a 1.2m telescope. His work at the station also includes volunteering, where he provides tours and explains complex scientific concepts to visitors.

Xiamen University of Technology, Mechanical Innovation Laboratory (March 2016 – December 2019) During his time at Xiamen University of Technology, Shaowei majored in 3D Modeling and Mechanical Design. He played a key role as a primary research assistant in a laser cleaning project, which involved the development of innovative solutions for cleaning automotive tire molds using laser technology.

🛠️ Technical Skills and Research Achievements

Shaowei possesses strong skills in Zemax, Matlab, Python, UG, C++, and 3D MAX. His research on laser cleaning led to several patents, including a utility model patent for a 500W laser cleaning machine. His Ph.D. work on adaptive optics aims to advance the field by addressing the sources of aberrations in laser ranging systems and proposing closed-loop correction methods.

🏆 Honors and Awards

Shaowei has been recognized with numerous accolades throughout his academic career, including:Provincial First Prize in the National College Students’ Mathematical Modeling Competition (2015)Provincial Special Prize in the National College Students’ 3D Modeling Competition (2018)Second Prize in the TianQin Graduate Skills Competition at Sun Yat-sen University (2021)Excellent Second Prize Scholarship for his contribution to the TianQin Satellite Construction at Sun Yat-sen UniversityBest Poster Award in the TianQin Project at Sun Yat-sen University (2024)

đź“š Publications and Patents

Shaowei has co-authored several high-impact research papers and holds multiple patents, including:Invention Patent: “A Fully Automatic Ingot-Shaped Wonton Forming Device and Its All-in-One Machine” (2017)Utility Model Patent: “A Laser Cleaning Machine” (2019)SCI Q1 Publication: “Efficiency Testing Method for the Echo Receiving System of Laser Ranging Station” (2023)SCI Q2 Publication: “Near-Infrared Lunar Laser Ranging: Research on Pointing Error of Lunokhod 2 Corner Reflector” (2023)

Research Suitability for Best Researcher Award

Strengths for the Award:

  1. Cutting-Edge Research Contributions: Shaowei Ye has made significant advancements in the field of laser ranging and adaptive optics. His work on enhancing wavefront sensing and adaptive optics technology, particularly his doctoral thesis on active aberration correction, highlights his expertise in addressing complex challenges in optical systems.
  2. Innovative Patents and Publications: Ye’s involvement in multiple patents and high-impact journal articles demonstrates his innovative approach and commitment to advancing technology. His patents, such as those for laser cleaning machines and dry ice cleaning devices, showcase his practical contributions to the field.
  3. Diverse Research Experience: With experience ranging from mechanical innovation and 3D modeling to advanced laser systems, Ye exhibits a broad skill set. His participation in various projects, including those related to laser cleaning and optical system performance, reflects his versatility and depth of knowledge.
  4. Recognition and Awards: Ye’s achievements have been recognized through several awards, including provincial prizes and best poster awards. These accolades underscore his dedication and excellence in research and development.
  5. Technical Proficiency: Ye’s proficiency in software tools such as Zemax, Matlab, and Python, combined with his strong English skills (CET6 and TOEIC 680), further supports his capability to excel in research and effectively communicate his findings.

Areas for Improvement:

  1. Broader Collaboration: While Ye has made significant individual contributions, increased collaboration with international research groups could further enhance the impact and reach of his work. Engaging in joint projects or global research initiatives could provide additional perspectives and opportunities.
  2. Interdisciplinary Applications: Exploring interdisciplinary applications of his research could offer new insights and potential breakthroughs. For example, integrating his work on adaptive optics with emerging technologies in other fields may lead to innovative solutions.
  3. Public Engagement: Increasing visibility and public engagement through outreach activities, such as public talks or educational workshops, could further establish Ye as a leading figure in his field and enhance the societal impact of his research.

Conclusion:

Shaowei Ye is a highly deserving candidate for the Best Researcher Award due to his innovative contributions to laser ranging and adaptive optics, his strong patent portfolio, and his recognition through various awards. His diverse experience and technical skills position him as a leading researcher in his field. Addressing areas for improvement, such as fostering broader collaboration and exploring interdisciplinary applications, could further amplify his impact and contribute to even greater advancements in optical technologies.

✍️Publications Top Note :

1. Analysis and Reduction of Back-Reflection Straylight in Laser Ranging System

Journal: Measurement: Journal of the International Measurement Confederation

Publication Date: 2024

DOI: 10.1016/j.measurement.2024.114907

EID: 2-s2.0-85193820422

ISSN: 02632241

Contributors: Zhou, L.; He, Z.; Li, H.; Ye, S.; Zhou, C.; Han, X.; Wu, X.; Lin, X.; Li, M.

2. Efficiency Testing Method for the Echo Receiving System of Laser Ranging Station

Journal: Optics and Lasers in Engineering

Publication Date: 2024

DOI: 10.1016/j.optlaseng.2024.108061

EID: 2-s2.0-85183993949

ISSN: 01438166

Contributors: Zhou, L.; Han, X.; Ye, S.; Lin, X.; Zhao, H.; Zhu, T.; Li, M.

3. Near-Infrared Lunar Laser Ranging: Research on Pointing Error of Lunokhod 2 Corner Reflector Based on Effective Echo Signal Broadening

Journal: Infrared Physics and Technology

Publication Date: 2024

DOI: 10.1016/j.infrared.2023.105095

EID: 2-s2.0-85182388535

ISSN: 13504495

Contributors: Gao, T.; Xue, L.; Ye, S.

4. Enlarge the Dynamic Range of Shack-Hartmann Wavefront Sensor Based on Biplanar Image Acquisition and Segmentation Method

Journal: Optics and Lasers in Engineering

Publication Date: November 2024

DOI: 10.1016/j.optlaseng.2024.108443

Contributors: Shaowei Ye; Ming Li; Lixiang Zhou; Tianlin Zhu; Xin Li; Xida Han; Xianglin Wu; Xudong Lin

 

Dr. Masih Paknejad | precision machining Award | Best Researcher Award

Dr. Masih Paknejad | precision machining Award | Best Researcher Award

Dr. Masih Paknejad, KSF (Kompetenzzentrum fĂĽr Spanende Fertigung), Germany

Dr. Masih Paknejad is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

Professional Profiles:

Orcid

Google scholar

Work Experience 🛠️

Institute of Advanced Machining (KSF), GermanyTeam Leader, Postdoctoral Research Fellow2023 – PresentMachine Tools Committee ISO/ISIRI TC 39, IranSenior Member, Chief and Technical Editor of Machine Tools Standards2022 – PresentTurbine Engineering and Manufacturing Co. (TUGA), IranExpert Engineer (R&D Department)2019 – 2021Persian Ultrasonic Co., IranCEO, Design and Manufacture of High Power Ultrasonic Transducer2019 – PresentHitec-Machinery Trading Co., IranTechnical Advisor, Supervisor of Test and Calibration of Machine Tools2017 – 2019Semnan University, IranLecturer2018 – 2019Courses: Materials Science and Engineering, Metrology Lab., Machine Tools Workshop, Engineering Drawing, Hydraulics and Hydraulics Lab, Welding WorkshopAmirkabir University of Technology, IranStrength of Material Lab Expert, Metrology Lab Expert, Teacher Assistant2012 – 2018Courses: Nontraditional Manufacturing Processes, Machine Element DesignIslamic Azad University (Saveh Branch), IranLecturer2011 – 2012Courses: Metrology, Production Methods, Nontraditional Manufacturing Processes

Education 🎓

Furtwangen University – KSF Institute
Feb 2022 – Sep 2023Postdoc FellowTitle: Ultras-Short Pulse Laser-Assisted Micro-Grinding of Silicon CeramicsAmirkabir University of TechnologySep 2011 – Nov 2017
Ph.D.Dissertation: Theoretical-Experimental Model of Heat Generation in Ultrasonic Assisted Dry Creep Feed Grinding ProcessFurtwangen University – KSF Institute
Jun 2014– Jan 2015Sabbatical ResearcherAmirkabir University of TechnologySep 2008 – Jul 2011M.Sc.Thesis: Theoretical and Experimental Analysis of Ultrasonic Assisted Indentation Forming of TubeIsfahan University of TechnologySep 2004– Sep 2008B.Sc.Thesis: Design of Centrifugal Chip Lubricant Separator DeviceAwards & Honors 🏆Scholarship Award granted by the Ministry of Science Research and Technology of IranAward of the Alborz Regional Innovation and Flourishing Festival, National Elites FoundationPatent for “Design and Manufacture of Ultrasonic Assisted Indentation Forming Device”Award of Elite Entrance, National Organization for Educational Testing (NOET)Ranked 3rd among 39 Undergraduate Students, Mechanical Engineering Department, Isfahan University of TechnologyComputer Skills đź’»Mechanical Eng. Software: ABAQUS, ANSYS, CATIA, MasterCAM, MSC Visual

Nastran, Automation StudioProgramming Language: MATLABSoftware Packages: Microsoft Office, Windows

Awards & Honors 🏆

Scholarship Award granted by the Ministry of Science Research and Technology of IranAward of the Alborz Regional Innovation and Flourishing Festival, National Elites FoundationPatent for “Design and Manufacture of Ultrasonic Assisted Indentation Forming Device”Award of Elite Entrance, National Organization for Educational Testing (NOET)Ranked 3rd among 39 Undergraduate Students, Mechanical Engineering Department, Isfahan University of Technology

Computer Skills đź’»

Mechanical Eng. Software: ABAQUS, ANSYS, CATIA, MasterCAM, MSC Visual Nastran, Automation StudioProgramming Language: MATLABSoftware Packages: Microsoft Office, Windows

📊 Citation Metrics (Google Scholar):

Citations by: All – 87, Since 2019 – 70
h-index: All – 3, Since 2018 – 3
i10 index: All – 3, Since 2018 –3

 

📖 Publications  Top Note :

Investigation of laser-assisted cylindrical grinding of silicon nitride ceramics with controlled damage zone

Journal: Optics & Laser Technology

Date: July 2024

DOI: 10.1016/j.optlastec.2024.110616

Contributors: Esmaeil Ghadiri Zahrani; Masih Paknejad; Ali Zahedi; Bahman Azarhoushang

Laser-assisted surface grinding of innovative superhard SiC-bonded diamond (DSiC) materials

Journal: Ceramics International

Date: February 2024

DOI: 10.1016/j.ceramint.2024.02.323

Contributors: Masih Paknejad; Bahman Azarhoushang; Ali Zahedi; Mehdi Khakrangin; Robert Bösinger; Faramarz Hojati

Investigation of material removal mechanisms of laser-structured Si3N4 via single diamond grit scratching

Journal: The International Journal of Advanced Manufacturing Technology

Date: March 2023

DOI: 10.1007/s00170-022-10793-0

Contributors: Masih Paknejad; Bahman Azarhoushang; Ali Zahedi; Mehdi Khakrangin; Mohammad Ali Kadivar

Investigation of material removal mechanisms of laser-structured Si3N4 via single diamond grit scratching

Date: September 2, 2022

DOI: 10.21203/rs.3.rs-1974605/v1

Contributors: Masih Paknejad; Bahman Azarhoushang; Ali Zahedi; Mehdi Khakrangin; Mohammad Ali Kadivar

Ductile-brittle transition mechanisms in micro-grinding of silicon nitride

Journal: Ceramics International

Date: August 2022

DOI: 10.1016/j.ceramint.2022.08.088

Contributors: Masih Paknejad

Numerical Simulation of Ultrasonic Assisted Indentation Tube Forming

Journal: ADMT Journal

Date: September 2020

DOI: 10.30495/admt.2020.1869462.1124

Contributors: Masih Paknejad

Effects of high power ultrasonic vibration on temperature distribution of workpiece in dry creep feed up grinding

Journal: Ultrasonics Sonochemistry

Date: November 2017

DOI: 10.1016/j.ultsonch.2017.04.029

Contributors: Masih Paknejad

Theoretical and experimental analyses of ultrasonic-assisted indentation forming of tube

Journal: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture

Date: March 2014

DOI: 10.1177/0954405413501502

Contributors: Masih Paknejad