6th Editorial Board Members
6th Editorial Board Members
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Name: David Ho-Kwang MaoIntroduction:
Chemistry of the Earth's Mantle and Core; Deep Earth Geophysics; Physics and Chemistry of Giant Planetary Interiors; Pioneering High Pressure Technology; High Pressure Condensed-Matter Physics; High Pressure Chemistry; High Pressure Crystallography and High-Pressure Materials Science.
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Name: Guangtian ZouIntroduction:
http://teachers.jlu.edu.cn/zouguangtian
State Key Laboratory of Superhard Materials, Jilin University
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Name: Yongjun TianIntroduction:
https://mse.ysu.edu.cn/szdw/jsml.htm
State Key Laboratory of Metastable Materials, Yanshan University
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Name: Yunlong DingIntroduction:
Dr. Ding has been committed to the research of preparing magnetic abrasive and surface polishing with magnetic. He and the team have successfully developed iron-based alumina magnetic abrasive particles and combined them with magnetic particle grinding and finishing processing technology to complete multiple military enterprise projects, breaking through the technical bottleneck of military enterprises in the finishing of micro and complex shaped parts, providing strong and effective technical support for the aerospace field.
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Name: Jun WangIntroduction:
Professor Jun Wang received a Bachelor’s degree in Mechanical Manufacturing Engineering from Dalian University of Technology in 1982 and a PhD in Mechanical & Manufacturing Engineering from the University of Melbourne in 1993. He has been a member of the academic staff in the Ocean University of China (1982-1988), the University of Melbourne (1993-1995), Queensland University of Technology (1995-2005) and UNSW (Feb 2005-Dec 2020). He is now an Emeritus Professor of UNSW. He is a fellow and CPEng of the Institution of Engineers Australia and a fellow of the International Society of Nanomanufacturing, and has served as the Chairman of the International Committee for Abrasive Technology (2011-2015), President of the Ausinan Science and Technology Society (2013-2015) and a member of the Mechanical College Board of The Institution of Engineers Australia (2013-2020). He has also been actively engaged in the profession by serving as the Editor-in-Chief or an Associate Editor for 6 international journals and chairing/co-chairing 25 international conferences between 1999 and 2019.
To December 2020, Professor Wang has had over 500 publications, including more than 360 refereed journal articles, 27 edited books and conference proceedings, a single-authored monograph and four book chapters.
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Name: Guangfeng ShiIntroduction:
石广丰、男、1981年生、汉族,博士、教授、博导,现任长春理工大学机电工程学院副院长。具有多年金刚石工具及其应用研究经验,和英国Coborn工程有限公司联合建立了“金刚石工具技术联合研究中心”,长期开展金刚石工具的设计、研磨、检测和应用研究等,在工具行业内部形成了鲜明特色和一定影响力;承担并完成国家自然科学基金、总装共用技术、省科技厅重点技术攻关、国际科技合作等项目40多项;发表学术论文100多篇,其中SCI、EI检索40多篇;授权发明专利26件、实用新型专利7件、软件著作权5项;出版专著1项、译著1项;获得吉林省科技进步奖二等奖2项、第四届全国高校自制实验教学仪器设备评选活动二等奖、吉林省自然科学学术成果奖二等奖、永康市首届“传承匠心、开启未来”青年创业创新大赛二等奖等;累计培养博士研究生7名、硕士研究生50多名。
曾与中科院长春光机所国家光栅制造与应用工程技术研究中心开展技术合作,完成了机械刻划工艺和长寿命金刚石刀具研究,相关技术成果得到了转化应用,促进了我国大光栅刻划机项目的成功完成,对吉林省产业结构的升级调整具有重要推动作用。首次提出了利用金刚石钝圆的尺度效应实现微孔印压成形和原位监控技术,样件成果成功应用在德国企业-考泰斯汽车油箱的超声波测漏标定等技术领域,有效代替了进口样件,获得了企业认可。
曾获得吉林省省级领军人才、吉林省拔尖创新人才、吉林省高校科研春苗人才、浙江金华创业创新领军人才、“大珩青年学者”等荣誉称号,兼任中国机械工程学会高级会员;中国力学学会流控专委会青年专家;中国工程教育专业认证协会秘书;中国博士后科学基金评审专家;全国研究生教育评估监测专家;国家自然科学基金函审专家、吉林省青年科技工作者协会理事会专业委员会主任;吉林省科技厅项目评审专家;吉林省及长春市人社局职称评审专家、长春市青少年科技创新大赛评审专家;IEEE TBME、Applied Optics、IGAMT、《光子学报》、《表面技术》、《工具技术》、《东华大学学报(自然科学版)》等国内外SCI、EI、核心期刊及AEIC艾思学术国际会议组织的审稿人等。
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Name: Haitao YeIntroduction:
Dr Haitao Ye
Aston Institute of Materials Research (AIMR)
Reader in Nanotechnology Science
Phone number: 0121 204 3526
Email: h.ye@aston.ac.uk
Room number: NW617
Profile
Dr Ye is a Reader in Nanotechnology Science and Final Year Tutor in the Department of Electrical, Electronic and Power Engineering, School of Engineering and Applied Science, Aston University.
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Name: Xing Sheng LiIntroduction:
Dr Xing Li is Research Team Leader of the Excavating and Drilling team in CSIRO’s Mining & Processing Technologies Research Group. The role of this team is to develop excavating and drilling technologies that will help mining industry deal with the challenge of mechanical hard rock excavation. Xing received his PhD in Mechanical and Material Engineering from the Curtin University in 1994, and joined CSIRO in the same year. Xing’s research experience with the CSIRO spans over 20 years. He has played a key role in development of the SMART*CUT technology. Xing's research interests lie in the area of mechanical excavation, cutting tool design, tool wear mechanisms, cutting drum design, superhard materials for cutting tool application, characterization of advanced diamond composite, assessment of drill bit performance and development of hard rock cutting equipment and method.
Professional Areas
Mechanical excavation
Cutting tool design
Tool wear mechanisms
Characterization of advanced diamond composite
Assessment of drill bit performance
Development of hard rock cutting equipment and method
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Name: Xun ChenIntroduction:
Professor Xun Chen is an international leading expert in advanced manufacturing technology. Currently he leads the Advanced Manufacturing Technology Research Laboratory in the General Engineering Research Institute, Liverpool John Moores University.
With broad research experience in mechanical manufacturing engineering, Professor Chen has established his expertise in advanced manufacturing technology including application of computing science, mechatronics and artificial intelligence to manufacturing process monitoring, control and optimisation, particularly to abrasive machining technology. Up to date he has published more than 200 research papers widely in top international journals and conferences in the field of Mechanical Manufacturing Engineering. His researches have been extensively supported by the research councils and industries.
Professor Chen has been a member of the EPSRC Peer Review College and a founding member of the International Committee of Abrasive Technology. He has been an associate editor and an editorial board member of many leading international journals.
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Name: Han HuangIntroduction:
Prof Huang is a Professor of Mechanical Engineering at UQ. He joined UQ in 2005 as a Senior Lecturer and was promoted to Associate Professor in 2008 and Professor in 2011. Prof Huang received his PhD from The University of Western Australia in 1996. He has won a number of prestigious research accolades, including ARC Future Fellowship (2011-2015), ARC Australia Research Fellowship (2005-2010), JSPS Invitation Fellowship (2009), Queensland International Fellowship (2012) and Singapore National Technology Award (1999). He is the Associate Editor of International Journal of Mechanical Science and has editorial roles in several international journals, such as International Journal of Machine Tool and Manufacture. He was elected as a Fellow of International Society of Nanomanufacturing in 2012. He published over 290 refereed journal papers, 2 books and 4 book chapters.
Prof Huang has established a leading group working on nanomechanics and advanced manufacturing and founded a world-class laboratory at UQ that is dedicated to a fundamental understanding of material removal mechanisms and mechanical characterisation of nanomaterials and nanostructures. Professor Han Huang’s research interests are nanomanufacturing, machining technologies, mechanical characterization of nanostructured materials and nanostructures and nanoparticle-based lubrication.
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Name: Chen LiIntroduction:
Deformation mechanism and force modelling of the grinding of YAG single crystals International Journal of Machine Tools and Manufacture Li C, Li X, Wu Y, et al. Deformation mechanism and force modelling of the grinding of YAG single crystals[J]. International Journal of Machine Tools and Manufacture, 2019, 143: 23-37.
Phase transition and plastic deformation mechanisms induced by self-rotating grinding of GaN single crystals International Journal of Machine Tools and Manufacture Li, C., Piao, Y., Meng, B., Hu, Y., Li, L., & Zhang, F. Phase transition and plastic deformation mechanisms induced by self-rotating grinding of GaN single crystals[J]. International Journal of Machine Tools and Manufacture, 2022, 172: 103827.
Understand anisotropy dependence of damage evolution and material removal during nanoscratch of MgF2 single crystals International Journal of Extreme Manufacturing Li C, Piao Y, Zhang F, Zhang Y, Hu Y, & Wang Y. Understand anisotropy dependence of damage evolution and material removal during nanoscratch of MgF2 single crystals[J]. International Journal of Extreme Manufacturing, 2023, 5, 015101.
Deformation characteristics and surface generation modelling of crack-free grinding of GGG single crystals Journal of Materials Processing Technology Li C, Wu Y, Li X, et al. Deformation characteristics and surface generation modelling of crack-free grinding of GGG single crystals[J]. Journal of Materials Processing Technology, 2020, 279(5): 116577.
Molecular dynamics simulation of laser assisted grinding of GaN crystals International Journal of Mechanical Sciences Li C, Hu Y, Zhang F, Geng Y, Meng B. Molecular dynamics simulation of laser assisted grinding of GaN crystals[J]. International Journal of Mechanical Sciences, 2023, 239, 107856.
Anisotropy dependence of material removal and deformation mechanisms during nanoscratch of gallium nitride single crystals on (0001) plane Applied Surface Science Li C, Piao Y, Meng B, et al. Anisotropy dependence of material removal and deformation mechanisms during nanoscratch of gallium nitride single crystals on (0001) plane[J]. Applied Surface Science, 2022, 578: 152028.
Characterization of surface and subsurface defects induced by abrasive machining of optical crystals using grazing incidence X-ray diffraction and molecular dynamics Journal of Advanced Research Y Zhang, Q Wang, C Li, et al. Characterization of surface and subsurface defects induced by abrasive machining of optical crystals using grazing incidence X-ray diffraction and molecular dynamics[J]. Journal of Advanced Research, 2022, 26, 51-61.
Modelling and experimental investigation of temperature field during fly-cutting of KDP crystals International Journal of Mechanical Sciences Li C, Piao Y, Hu Y, et al. Modelling and experimental investigation of temperature field during fly-cutting of KDP crystals[J]. International Journal of Mechanical Sciences, 2021, 210: 106751.
Research of material removal and deformation mechanism for single crystal GGG (Gd3Ga5O12) based on varied-depth nanoscratch testing Materials & Design Li C, Zhang F, Meng B, et al. Research of material removal and deformation mechanism for single crystal GGG (Gd3Ga5O12) based on varied-depth nanoscratch testing[J]. Materials & Design, 2017, 125: 180-188.
Influence of strain rate effect on material removal and deformation mechanism based on ductile nanoscratch tests of Lu2O3 single crystal Ceramics International Li C, Zhang F, Wu Y, et al. Influence of strain rate effect on material removal and deformation mechanism based on ductile nanoscratch tests of Lu2O3 single crystal[J]. Ceramics International, 2018, 44(17): 21486-21498.
Theoretical modelling of brittle-to-ductile transition load of KDP crystals on (001) plane during nanoindentation and nanoscratch tests Journal of Materials Research and Technology Li C, Zhang Y, Zhou G, et al. Theoretical modelling of brittle-to-ductile transition load of KDP crystals on (001) plane during nanoindentation and nanoscratch tests[J]. Journal of Materials Research and Technology, 2020, 9(6): 14142-14157.
Ultra-precision grinding of Gd3Ga5O12 crystals with graphene oxide coolant: Material deformation mechanism and performance evaluation Journal of Manufacturing Processes Li C, Li X, Huang S, et al. Ultra-precision grinding of Gd3Ga5O12 crystals with graphene oxide coolant: Material deformation mechanism and performance evaluation[J]. Journal of Manufacturing Processes, 2021, 61: 417-427.
Repeated nanoscratch and double nanoscratch tests of Lu2O3 transparent ceramics: Material removal and deformation mechanism, and theoretical model of penetration depth Journal of the European Ceramic Society Li C, Zhang F, Wang X, et al. Repeated nanoscratch and double nanoscratch tests of Lu2O3 transparent ceramics: Material removal and deformation mechanism, and theoretical model of penetration depth[J]. Journal of the European Ceramic Society, 2018, 38(2): 705-718.
Strain-rate dependence of surface/subsurface deformation mechanisms during nanoscratching tests of GGG single crystal Ceramics International Li C, Zhang F, Piao Y. Strain-rate dependence of surface/subsurface deformation mechanisms during nanoscratching tests of GGG single crystal[J]. Ceramics International, 2019, 45(12): 15015-15024.
Nanoindentation and nanoscratch tests of YAG single crystals: an investigation into mechanical properties, surface formation characteristic, and theoretical model of edge-breaking size Ceramics International Li C, Zhang Q, Zhang Y, et al. Nanoindentation and nanoscratch tests of YAG single crystals: an investigation into mechanical properties, surface formation characteristic, and theoretical model of edge-breaking size[J]. Ceramics International, 2020, 46(3): 3382-3393.
Numerical simulations of grinding force and surface morphology during precision grinding of leucite glass ceramics International Journal of Mechanical Sciences Zhang Y, Wu T, Li C*, et al. Numerical simulations of grinding force and surface morphology during precision grinding of leucite glass ceramics[J]. International Journal of Mechanical Sciences, 2022, 231: 107562.
Effects of sandwiched film thickness and cutting tool water contact angle on the processing outcomes in nanoskiving of nanowires Materials & Design Z Dong, Y Yan, G Peng, C Li*, Y Geng*. Effects of sandwiched film thickness and cutting tool water contact angle on the processing outcomes in nanoskiving of nanowires[J]. Materials & Design, 2023, 225: 111438.
Material removal mechanism and subsurface characteristics of silicon 3D nanomilling International Journal of Mechanical Sciences J Wang, Y Yan, C Li*, Y Geng*. Material removal mechanism and subsurface characteristics of silicon 3D nanomilling[J]. International Journal of Mechanical Sciences, 2023, 242: 108020.
Theoretical model of warping deformation during self-rotating grinding of YAG wafers Ceramics International Li, C., Hu, Y., Huang, S., Meng, B., Piao, Y., & Zhang, F. Theoretical model of warping deformation during self-rotating grinding of YAG wafers[J]. Ceramics International, 2022, 48: 4637-4648.
Material removal mechanism and grinding force modelling of ultrasonic vibration assisted grinding for SiC ceramics Ceramics International Li C, Zhang F, Meng B, et al. Material removal mechanism and grinding force modelling of ultrasonic vibration assisted grinding for SiC ceramics[J]. Ceramics International, 2017, 43: 2981-2993.
硬脆单晶材料塑性域去除机理研究进展 机械工程学报 李琛, 张飞虎, 张宣, 等. 硬脆单晶材料塑性域去除机理研究进展[J]. 机械工程学报, 2019, 55(3): 181-190.
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NewsMore>
- The selection of The Most Influential Paper of 2021 has began!
- The Diamond & Abrasive Engineering has been indexed by DOAJ
- The academic influence of Diamond & Abrasives Engineering just reached a historical record
- International Diamond Conference would be held on Nov. 9, 2022 in Zhengzhou, China
- Call for applicants to the Young Scientist Awards (2022)
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