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馮峯

(清華大學深圳國際研究生院副教授)

鎖定
馮峯,生於1984年,2012年博士畢業於清華大學物理系,現任清華大學深圳國際研究院先進製造學部副教授,碩士生導師,專業方向為機械工程,主要研究方向為智能製造與精密加工技術。
中文名
馮峯
國    籍
中國
民    族
漢族
出生地
河北省任丘市
出生日期
1984年
畢業院校
清華大學
學位/學歷
博士
職    業
教師
專業方向
機械工程
職    稱
副教授

馮峯人物經歷

1999年9月~2002年7月,河北省滄州市第一中學
2002年9月~2006年7月,清華大學物理系,理學學士
2006年9月~2012年1月,清華大學物理系,理學博士
2012年3月~2014年4月,清華大學深圳研究生院,博士後
2014年6月~2019年11月,清華大學深圳研究生院,講師
2019年12月~今,清華大學深圳國際研究生院,副教授

馮峯研究方向

長期從事智能製造與精密加工技術研究,具體涉及超聲加工裝備與工藝、複合材料製造技術、結構件應力形變控制、製造裝備數字孿生等方向。 [1] 

馮峯主要成果

以第一或通訊作者發表SCI論文50餘篇(ESI高被引用論文1篇、期刊年度最佳論文1篇、期刊封面論文1篇、期刊亮點論文2篇),以第一發明人獲得國家發明專利授權15項、美國PCT專利授權1項。作為負責人主持國家自然科學基金等8項縱向課題、2項校內課題與十餘項橫向課題等。

馮峯獲獎記錄

[1] 參與項目“高温超導電力裝置用超導帶材和絕緣材料的性能檢測技術研究及應用” (6/14)得2016年度南方電網公司科技進步二等獎;
[2] 指導碩士生盧弘願(2014210418)獲2017年北京市優秀畢業生;
[3] 指導碩士生張向松(2015210324)獲2018年院學術新秀提名獎(機械專業學生首次);
[4] 指導碩士生符其樹(2015210404)獲2018年北京市優秀畢業生;
[5] 指導碩士生劉彬彬(2016210372)獲2018年國家獎學金、2019年清華大學優秀碩士學位論文;
[6] 論文“Scalinganalysis of the current influence on Hastelloy surface roughness in electropolishing process”在期刊Rare Metals作為封面文章刊登;
[7]指導碩士生黃俊龍(2017210321)獲2019年國家獎學金;
[8] 指導碩士生周文萌(2018210397)獲2020年國家獎學金、2021年清華大學優秀碩士學位論文;
[9] 參與項目“實用化高温超導磁體研製的關鍵技術及應用”(5/10)獲2021年度中國電工技術學會科學技術二等獎;

馮峯社會任職

中國機械工程學會,高級會員;
中國機械工程學會表面工程分會,委員;
中國民主同盟深圳高等教育委員會,委員;
中國複合材料學會,高級會員;
深圳市真空學會,理事;
Fractal and Fractional期刊客座編輯;
Journal of IntelligentManufacturing、Applied Physics Letters、AppliedSurface Science、Ceramics International、Fractaland Fractional、Superconductor Science and Technology、Journalof Applied Physics、The International Journal of AdvancedManufacturing Technology等期刊審稿人。

馮峯近年論文

截止20243 [2] 
[1] J. Xu, B.Li, P.F. Feng, Q. Wang, F. Feng*,A novel method for AFRPs burrs removal: Principle of mechanochemo-induced fiberfracture. Chinese Journal of Aeronautics, (2024) Accepted. (中科院大類一區,JCR-Q1)
[2] E.L. Jiang,Q.Z. Yue, J. Xu, C.R. Fan, G. Song, X.M. Yuan, Y. Ma, X.L. Yu, P.L. Yang, P.F. Feng,F. Feng*, A Wear TestingMethod of Straight Blade Tools for Nomex Honeycomb Composites Machining: Wear, (2024)in press. (中科院大類一區,JCR-Q1)
[3] X.M.Yuan, C.R. Fan, J. Xu, W.J. Cao*, W.C. Zhou, E.L. Jiang, Y. Ma, C. Xu, P.F.Feng, F. Feng*, Dominatinginfluence of cutting-edge lead angles on arc-trajectory machining of Nomex®honeycomb composites by using a straight blade cutter, Engineering Science andTechnology, an International Journal, 49 (2024) 101601. (JCR-Q1)
[4] G.Zhou, K. Zhou, J. Zhang, M. Yuan, X. Wang, P. Feng, M. Zhang*, F. Feng*, Digitalmodeling-driven chatter suppression for thin-walled part manufacturing, Journalof Intelligent Manufacturing, 35 (2024) 289-305. (JCR-Q1)
[5] J. Xu,C.X. Wang, P.F. Feng, E.L. Jiang, F.Feng*, Meso-scale cracks initiation of Nomex honeycomb composites inorthogonal cutting with a straight blade cutter, Composites Science andTechnology, 233 (2023) 109914. (中科院大類一區,JCR-Q1)
[6] G.Zhou, M. Yuan, F. Feng*, Z.M.Han, X.G. Song, X.H. Wang, P.F. Feng, M. Zhang*, A new algorithm for chatterquantification and milling instability classification based on surfaceanalysis, Mechanical Systems and Signal Processing, 204 (2023) 110816. (中科院大類一區,JCR-Q1)
[7] J. Xu,Q.Z. Yue, H.T. Zha*, X.M. Yuan, X.K. Cai, C. Xu, Y. Ma, P.F. Feng, F. Feng*, Wear reduction bytoughness enhancement of disc tool in Nomex honeycomb composites machining,Tribology International, 185 (2023) 108475. (中科院大類一區,JCR-Q1)
[8] W.M.Zhou, F. Yu, J.F. Zhang, K.H. Huang, Z.P. Xu, X.P. Liu, Y. Ma, P.F. Feng, F. Feng*, An adaptive clampsystem for deformation control of aerospace thin-walled parts, Journal ofManufacturing Processes, 107 (2023) 115-125. (中科院大類一區,JCR-Q1)
[9] J. Xu,K.X. Zhang, H.T. Zha*, J.L. Liu, X.M. Yuan, X.K. Cai, C. Xu, Y. Ma, P.F. Feng, F. Feng*, Surface integrity ofNomex honeycomb composites after ultrasonic vibration machining by using disccutters, Journal of Manufacturing Processes, 102 (2023) 1010-1022. (中科院大類一區,JCR-Q1)
[10] F. Feng, Z.R. Zhao, Z.B.Wang, B. Li, X.X. Lin, J.F. Zhang, P.F. Feng, X.Y. Zhang*, A calculation methodfor residual stress of cold expanded hole based on measured springback,Measurement, 218 (2023) 113262. (中科院大類二區Top,JCR-Q1)
[11] L.H.Zhang, P.F. Feng, J. Xu, Y. Li, W. Gao, G.Q. Liang, F. Feng*, A piecewise kinetic model consistent with curingcycle of epoxy/amine composite, Journal of Thermal Analysis and Calorimetry,148 (2023) 12781-12793. (JCR-Q1)
[12] G.C.Han, Z.J. Ye, J. Xu, Y. Ma, C. Xu, X.Q. Zhao, L.D. Yu, P.F. Feng, F. Feng*, Investigation oncutting forces and tool wear in high-speed milling of Ti-6Al-4V assisted bylongitudinal torsional ultrasonic vibrations, The International Journal ofAdvanced Manufacturing Technology, 129 (2023) 783-799.
[13] X.M.Yuan, K.X. Zhang, H.T. Zha*, J. Xu, G. Song, W.J. Cao, P.F. Feng, F. Feng*, Enabling Thin-EdgedPart Machining of Nomex Honeycomb Composites via Optimizing Variable Angle ofDisc Cutters, Materials, 16 (2023) 5611.
[14] G.Y.Huang, J. Bai, F. Feng*, L.Zeng, P.F. Feng, X.H. Li*, A Hybrid Strategy for Profile Measurement of MicroGear Teeth, Micromachines, 14 (2023) 1729.
[15] Z.W.Li, J.J. Wang, M. Yuan, Z.Y. Wang, P.F. Feng, F. Feng*, An indicator to quantify the complexity of signalsand surfaces based on scaling behaviors transcending fractal, Chaos, Solitons& Fractals, 163 (2022) 112556. (中科院大類一區,JCR-Q1)
[16] W.M.Zhou, Y.T. Cao, H.L. Zhao, Z.W. Li, P.F. Feng, F. Feng*, Fractal Analysis on Surface Topography of ThinFilms: A Review, Fractal and Fractional, 6 (2022) 135. (中科院小類一區,JCR-Q1,ESI高被引用論文,期刊年度最佳論文)
[17] F. Feng, K.X. Zhang, X.H.Li*, Y.S. Xia, M. Yuan, P.F. Feng*, Scaling Region of Weierstrass-MandelbrotFunction: Improvement Strategies for Fractal Ideality and Signal Simulation,Fractal and Fractional, 6 (2022) 542. (中科院小類一區,JCR-Q1)
[18] F. Feng, H.F. Hong, X.Gao*, T. Ren, Y. Ma, P.F. Feng*, Effectiveness of Oxygen during Sintering ofSilver Thin Films Derived by Nanoparticle Ink, Nanomaterials, 12 (2022) 1908.(JCR-Q1)
[19] F. Feng, M. Yuan, Y.S.Xia, H.M. Xu, P.F. Feng*, X.H. Li*, Roughness Scaling Extraction Accelerated byDichotomy-Binary Strategy and Its Application to Milling Vibration Signal,Mathematics, 10 (2022) 1105. (JCR-Q1)
[20] X.Y.Mei, H.M. Xu, P.F. Feng, M. Yuan, C. Xu, Y. Ma, F. Feng*, Online chatter monitor system based on rapiddetection method and wireless communication, The International Journal ofAdvanced Manufacturing Technology, 122 (2022) 1321-1337.
[21] J. Xu,P.F. Feng, F. Feng*, H.T.Zha*, G.Q. Liang, Subsurface damage and burr improvements of Aramid FiberReinforced Plastics by using longitudinal-torsional ultrasonic vibrationmilling. Journal of Materials Processing Technology, 297 (2021) 117265. (中科院大類二區Top)
[22] Z.W.Li, X. Qian, F. Feng*, T.M.Qu, Y.S. Xia, W.M. Zhou, A continuous variation of roughness scalingcharacteristics across fractal and non-fractal profiles. Fractals-Complex GeometryPatterns and Scaling in Nature and Society, 29 (2021) 2150109. (JCR-Q1)
[23] G.Zhou, X.H. Wang, F. Feng*,P.F. Feng, M. Zhang*, Calculation of fractal dimension based on artificialneural network and its application for machined surfaces. Fractals-ComplexGeometry Patterns and Scaling in Nature and Society, 29 (2021) 2150129.(JCR-Q1)
[24] Z.R.Yang, T.M. Qu, F. Feng*, L.L.Wang, P.F. Feng, Wrinkling surface of mono-layered thin film derived by usingtrifluoroacetate solution, Journal of Sol-Gel Science and Technology, 99 (2021)13-24. (JCR-Q1)
[25] W.M.Zhou, J.C. Lin, F. Feng*, Y.Ma, H.T. Zha, W. Ji, E.L. Jiang, Z.P. Cai, P.F. Feng*, Performance improvementof carbide cutting tool for Ti6Al4V alloys using electromagnetic treatment, TheInternational Journal of Advanced Manufacturing Technology, 113 (2021)1547–1560.
[26] Z.W.Li, D.W. Yu, J. Cui, P.F. Feng, F.Feng*, Influences of Brass Surface Morphology on Leidenfrost Effectduring Liquid Nitrogen Cooling, Applied Sciences, 11 (2021) 10323.
[27] Z.W.Li, J. Li, Y.S. Xia, P.F. Feng, F.Feng*, Variation Trends of Fractal Dimension in Epileptic EEG Signals,Algorithms, 14 (2021) 316.
[28] L.L.Wang, T.M. Qu, F. Feng*, S.N.Zou*, Z.R. Yang, Z.X. Ma, P.F. Feng, Improvement of bi-layered YBCOsuperconducting films by using Ag and Au interlayers, Ceramics International,46 (2020) 3394-3399. (中科院小類一區,JCR-Q1)
[29] W.M.Zhou, X.H. Li, F. Feng*, T.M.Qu, J.L. Huang, X. Qian, H.T. Zha, P.F. Feng*, Robustness of Surface Roughnessagainst Low Number of Picture Elements and Its Benefit for Scaling Analysis,Coatings, 10 (2020) 776.
參考資料