Gan Li | Manufacturing Technology | Best Researcher Award

Gan Li | Manufacturing Technology | Best Researcher Award

Dr. Gan Li, College of Mechanical and Electronic Engineering, China University of Petroleum, China.

Publication profile

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Education and Experience

  • πŸŽ“Β Ph.D. in Mechanical Engineering (2018–2024)
    Dalian University of Technology, GPA 3.83/4.0
  • πŸŽ“Β B.S. in Mechanical Engineering & Engineering Management (2014–2018)
    China University of Petroleum, Ranked Top 4% (7/196)
  • πŸ’ΌΒ Assistant Professor
    College of Mechanical and Electronic Engineering, China University of Petroleum
  • πŸ”¬Β Key Researcher
    National Engineering Research Center of Marine Geophysical Prospecting

Suitability For The Award

Dr. Gan Li, an Assistant Professor at the College of Mechanical and Electronic Engineering, China University of Petroleum, PR China, and a key member of the National Engineering Research Center of Marine Geophysical Prospecting and Exploration and Development Equipment, is an exceptional candidate for the Best Researcher Award. With a strong foundation in advanced manufacturing technologies and ultra-precision machining, Dr. Li’s innovative research has redefined the frontiers of mechanical engineering, making significant contributions to precision manufacturing, signal analysis, and process simulation.

Professional DevelopmentΒ 

  • πŸ†Β Outstanding Senior Thesis (12/89), Jiangsu, China (2023)
  • πŸ…Β Third Prize, Future Flying Machine Innovation Competition, Dalian, China (2019)
  • πŸŽ–οΈΒ Recognition at the 22nd Chinese Conference of Abrasive Technology

Publications Top Notes

  • Undeformed chip thickness models for precise vertical-spindle face grinding of tungsten heavy alloy
    πŸ“–Β Precision Engineering, 2024,Β Cited by: 3
  • Wheel wear of tungsten heavy alloy precision grinding and its influence mechanism on surface quality
    πŸ“–Β Journal of Hunan University Natural Sciences, 2024
  • Research on grinding wheel wear measurement methods: Current status and future perspectives
    πŸ“–Β Scientia Sinica Technologica, 2024
  • A grinding force model and surface formation mechanism of cup wheels considering crystallographic orientation
    πŸ“–Β Journal of Materials Processing Technology, 2023,Β Cited by: 9
  • An online monitoring methodology for grinding state identification based on real-time signal of CNC grinding machine
    πŸ“–Β Mechanical Systems and Signal Processing, 2023,Β Cited by: 12
  • Cutting chatter in ultrasonic elliptical vibration cutting and its influence on surface roughness and tool wear
    πŸ“–Β Metals, 2023,Β Cited by: 6

Zijian Wang | Properties and Performance | Best Researcher Award

Dr. Zijian Wang | Properties and Performance | Best Researcher Award

Dr. Zijian Wang, Changchun University of Science and Technology, China

Dr. Zijian Wang is an Assistant Researcher at Changchun University of Science and Technology’s School of Physics. He earned his PhD in Laser and Its Interaction with Matter (2016) and has a robust background in optics. His research focuses on advanced laser technologies, including hybrid integrated semiconductor lasers and optical parametric oscillators. Dr. Wang has led several significant projects, receiving funding from the National Natural Science Foundation of China and the Jilin Provincial Department of Science and Technology. He is committed to innovative research in laser applications, contributing to both academic and practical advancements in the field. πŸ”¬βœ¨

 

Publication profile

Scopus

Educational Background

Dr. Wang has a solid educational foundation, having earned his PhD in Laser and Its Interaction with Matter from Changchun University of Science and Technology. This academic background in optics and laser technology is relevant to contemporary research in the field.

Professional Experience

He has served as an Assistant Researcher at Changchun University of Science and Technology since 2016, gaining valuable research experience. His roles have involved significant contributions to various research projects, demonstrating his active engagement in advancing scientific knowledge.

Research Projects

Dr. Wang has participated in notable projects funded by the National Natural Science Foundation of China, focusing on cutting-edge topics such as hybrid integrated chirped semiconductor lasers and infrared self-converting lasers. His involvement in these high-stakes projects reflects his capability and dedication to impactful research.

Recognition and Awards

His receipt of the Science and Technology Progress Award signifies his research’s impact and the esteem in which his work is held. Such recognition is vital for a candidate for the Best Researcher Award, as it showcases both his achievements and contributions to the scientific community.

Publication Top Notes

  • Compact, thermally boosted direct pumped Nd:MgO

    , mid-infrared self-optical parametric oscillatorOptics and Laser Technology (2025) – 0 citations πŸ“„βœ¨

  • 3-W, 3.8 Β΅m self-optical parametric oscillator by pulsed pumping based on Nd:MgO

    crystalOptics Express (2024) – 0 citations πŸ”¬πŸŒŸ

  • Study on narrow linewidth 2.1 ΞΌm self-optical parametric oscillator based on Nd:MgO

    Infrared Physics and Technology (2024) – 0 citations πŸ“‰πŸ”

  • A Ο€-polarized 1084 nm laser with pump pulse modulation based on Nd:MgO

    crystalOptics and Laser Technology (2024) – 1 citation πŸ’‘πŸ”„

  • Mid-infrared dual-wavelength power regulation and linewidth narrowing using an F-P etalon in a multi-optical parametric oscillator based on MgO: APLNInfrared Physics and Technology (2023) – 2 citations πŸŒˆπŸ”§
  • 1.5 ΞΌm passively Q-switched self frequency conversion optical parametric oscillator based on Nd3+ doped MgO

    with the multi-focus end-face coupling pumping modeOptics and Laser Technology (2023) – 3 citations πŸš€πŸ”—

  • Comparison of back conversion and power differential in extra-cavity multi-optical parametric oscillator using MgO

    Optics and Laser Technology (2023) – 0 citations βš–οΈπŸ”¬

  • Study on Ο€-polarized 1084 nm CW laser based on Nd3+ doped MgO

    with the end-face double-focus coupling pumping modeOptics and Laser Technology (2023) – 0 citations πŸ”¦πŸ”„

  • Study on mid-infrared optical parametric oscillator based on MgO

    pumped by narrow linewidth 1064 nm fiber laserInfrared and Laser Engineering (2022) – 0 citations πŸŒŒπŸ“‘

  • Study on linewidth compression at 3.8 ΞΌm with multiple F-P etalon pumped by compound intra-cavity optical parametric oscillatorInfrared Physics and Technology (2022) – 3 citations πŸ“πŸ”§


Conclusion

Given his strong educational background, significant research contributions, leadership roles, innovative achievements, and recognition through awards, Dr. Zijian Wang exemplifies the qualities sought in a candidate for the Research for Best Researcher Award. His ongoing research endeavors position him well for future advancements in his field, making him a deserving nominee for this honor.