Changhe Li

Changhe LiProfessor Li Changhe is a foreign academician of the Russian Academy of Engineering, a distinguished expert of Taishan Scholars in Shandong Province, Shandong Excellent Inventor, Shandong Excellent Scientific and Technological Worker, Shandong FamousTeacher of Teaching and Shandong Excellent Postgraduate Instructor, Global Highly Cited Scientists released by Clarivate, Highly Cited Chinese Researcher of Elsevier, one of the World's Top 2% Scientists 2022 and Lifetime Scientific Impact Scientists released by the United States Stanford University. He is also the member of the Standing Committee of the Abrasive Processing Professional Committee of the Chinese Mechanical Engineering Society, member of the Standing Committee of the Optical Finishing Professional Committee of the Chinese Mechanical Engineering Society, the Editorial Board member of Frontiers of Mechanical Engineering and Green Manufacturing Open, Guest Editor of International Journal of Advanced Manufacturing Technology, Chinese Journal of Mechanical Engineering, and Associate Editor of Chinese Journal of Mechanical Engineering. He has published 268 SCI/EI-accepted papers, including 86 in SCI/JCR(1-2), and 62 ESI highly cited papers, 20 hot papers, with a total of more than 11,224 citations (Web of Science), and is ranked 25th in the list of academic influence of scholars in China in 2022 (only 70 people in China in the field of mechanical engineering). He is selected as the 24th academic influence of domestic scholars in 2022, and has a high academic status and popularity in the same field at home and abroad. He has constructed a high-value patent cluster covering the upstream and downstream industrial chain in different regions such as the United States, Australia, Germany, etc., with 426 invention patents, 74 high-impact patents, and the patents have been cited by 920 patentees from the United States, Germany, the United Kingdom, etc. for 2074 times. Read More Read Less

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Intelligent Optimization
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Thermodynamic Mechanism of MQL Grinding with Nano Bio-lubricant37 %
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Heat Transfer Mechanism and Temperature Field Model of MQL Micro-Grinding Biomedical Materials4 % NR
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Thermodynamic Mechanism of Cryogenic Air Minimum Quantity Lubrication Grinding37 % NR
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Enhanced Heat Transfer Mechanism of Nanofluid MQL Cooling Grinding37 % NR
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Enhanced Heat Transfer Mechanism of Nanofluid MQL Cooling Grinding37 % NR
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Thermodynamic Mechanism of MQL Grinding with Nano Bio-lubricant12 % NR
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