孫方宏

長聘教授

所在系所:制造技術(shù)與裝備自動化研究所

辦公電話:021-34206557

電子郵件:sunfanghong@sjtu.edu.cn

通訊地址:機械大樓A樓718

個人主頁:暫無

個人簡介
教學(xué)工作
科研工作
榮譽獎勵

教育背景

1995―1998南京航空航天大學(xué)機械制造專業(yè)博士
1989―1991安徽理工大學(xué)礦山機械專業(yè)碩士
1984―1988安徽理工大學(xué)機械制造與工藝裝備專業(yè)學(xué)士

工作經(jīng)歷

1999―2001    上海交通大學(xué)機械工程學(xué)院制造技術(shù)與裝備自動化所研究所  博士后
1992―1995    安徽理工大學(xué)機械工程系  講師
2001―2003    上海交通大學(xué)機械與動力工程學(xué)院制造技術(shù)與裝備自動化所 副教授
2004―至今    上海交通大學(xué)機械與動力工程學(xué)院制造技術(shù)與裝備自動化所 教授

研究方向

超硬涂層工具的制備與應(yīng)用
切削、磨削理論與工藝
金剛石化學(xué)氣相沉積設(shè)備與工藝
薄膜沉積和性能的計算機模擬技術(shù)

學(xué)術(shù)兼職

2012―至今   國際磨料技術(shù)委員會(ICAT)委員
2009―至今  《金剛石與磨料磨具工程》雜志編委
2009―至今   中國機械工程學(xué)會生產(chǎn)工程分會磨粒加工技術(shù)專業(yè)委員會委員
2008―至今   中國刀協(xié)切削先進技術(shù)研究會理事
2014―至今   《機械制造》雜志編委
2013―至今  全國磨料磨具標(biāo)準(zhǔn)化技術(shù)委員會超硬材料及制品分會委員
2015―至今   中國機床工具工業(yè)協(xié)會超硬材料分會技術(shù)專家委員會委員
2016―至今  《超硬材料工程》雜志編委
2019-至今   《材料研究與應(yīng)用》雜志編委

1、 課程名稱:切削原理與過程控制
授課對象:本科生
學(xué)時數(shù):36
學(xué)分:2
2、 課程名稱:測試原理與技術(shù)  
授課對象:本科生
學(xué)時數(shù):48
學(xué)分:3
3、 課程名稱: 制造裝備與生產(chǎn)線設(shè)計原理
授課對象:本科生
學(xué)時數(shù):48
學(xué)分:3
4、 課程名稱:先進制造技術(shù)  
授課對象:碩士生
學(xué)時數(shù):36
學(xué)分:3

5、 課程名稱: 智能制造裝備與系統(tǒng)
授課對象:本科生
學(xué)時數(shù):48
學(xué)分:3

科研項目

1 2002―2005    國家863項目“納米金剛石復(fù)合涂層的應(yīng)用與產(chǎn)業(yè)化”,負責(zé)人
2 2005―2008    國家自然科學(xué)基金“超光滑納米金剛石薄膜制備新技術(shù)與應(yīng)用基礎(chǔ)研究”,負責(zé)人
3 2009―2010    國家863項目“金剛石涂層復(fù)雜刀具制備及其在復(fù)合材料高效加工中應(yīng)用”,負責(zé)人
4 2010―2012    國家自然科學(xué)基金“基于多層膜結(jié)構(gòu)的陶瓷基金剛石復(fù)合涂層的制備與應(yīng)用研究”,負責(zé)人
5 2012—2014  國家科技重大專項課題“復(fù)合材料加工用金剛石涂層刀具的設(shè)計及涂層設(shè)備、工藝研究”,負責(zé)人
6 2013—2016  國家自然科學(xué)基金“化學(xué)氣相法合成高品級單晶金剛石微粉的應(yīng)用基礎(chǔ)研究” ,負責(zé)人
7 2018—2021  國家自然科學(xué)基金“化學(xué)氣相法制備單層金剛石磨料工具新技術(shù)的基礎(chǔ)研究”  ,負責(zé)人
8 2022—2025  國家自然科學(xué)基金“基于陶瓷中間過渡層的梯度漸變超納米金剛石復(fù)合涂層制備新技術(shù)與應(yīng)用基礎(chǔ)研究” ,負責(zé)人 

9 2026—2029  國家自然科學(xué)基金“化學(xué)氣相法制備微刃金剛石磨料磨具新技術(shù)的基礎(chǔ)研究,負責(zé)人 

10 2014—2016  教育部博士點基金“基于陶瓷基中間過渡層的CVD 金剛石涂層刀具的制備與應(yīng)用研究”,負責(zé)人
11 2008―2010  上海市科技創(chuàng)新行動計劃技術(shù)標(biāo)準(zhǔn)專項“金剛石薄膜涂層產(chǎn)品技術(shù)標(biāo)準(zhǔn)的研究”,負責(zé)人
12 2008―2010  上海市科技創(chuàng)新行動計劃新材料重點項目“煤液化耐高溫高壓抗沖蝕金剛石復(fù)合材料閥門的研制與應(yīng)用”,第二負責(zé)人
13 2009―2011  上海市科技創(chuàng)新行動計劃納米專項 “復(fù)雜形狀納米金剛石薄膜涂層刀具的開發(fā)與應(yīng)用”,負責(zé)人
14 2010―2011   科技部科技人員服務(wù)企業(yè)行動項目 “煤液化高溫高壓差減壓閥耐磨損抗沖蝕金剛石閥芯閥座集成研發(fā)”,負責(zé)人
15 2008―2013   企業(yè)合作項目“化學(xué)氣相沉積金剛石薄膜熱絲CVD涂層設(shè)備的研制及應(yīng)用技術(shù)”,負責(zé)人
16 2010―2016   企業(yè)合作項目“HF-CVD金剛石涂層設(shè)備研制”,負責(zé)人
17 2017-2019   企業(yè)合作項目“自動化HFCVD金剛石涂層設(shè)備的研制”,負責(zé)人
18 2018-2026   企業(yè)合作項目“HFCVD熱絲金剛石涂層設(shè)備”,負責(zé)人
19 2021-2023   國際合作項目“高性能摻雜金剛石涂層工具的開發(fā)及裝備的研制”,負責(zé)人
20 2022-2024  科技重大專項揭榜掛帥類項目“工具及半導(dǎo)體應(yīng)用單晶金剛石材料制備及關(guān)鍵技術(shù)研究 ”,負責(zé)人

21 2018-2026   企業(yè)合作項目“HFCVD熱絲金剛石涂層設(shè)備”,負責(zé)人

代表性論文專著

1 F.H.Sun, et al, Improvement of adhesive strength and surface roughness of diamond films on Co-cemented tungsten carbide tools, Diamond Related Materials, 2003, Vol.12, pp:711-718
2 Fanghong Sun, Yuping Ma, Bin Shen, Zhiming Zhang and Ming Chen, Fabrication and application of nano-microcrystalline composite diamond films on the interior-hole surfaces of Co cemented tungsten carbide substrates, Diamond and Related Materials, 2009, vol.18(2-3), pp: 276-282.
3 F.H.Sun, et al, Fabrication and application of high quality diamond-coated tools, Journal of Materials Processing Technology, 2002, Vol.129(1-3), pp:441-445
4 Sun, F.H., Zhang, Z.M., Ma, Y.P. and Chen, M., Synthesis of nanocrystalline diamond films on smooth WC-Co cemetned carbide substrate, International Journal of Abrasive Technology, 2007,vol.1, No.2, pp: 161-172.
5 F.H.Sun, et al, A new technology on enhancing heat transfer of grinding contact zone through jet impingement during creep feed grinding, Machining Science and Technology. 2002, Vol.6 (1), pp:43-52
6 F.H. Sun, et al, Fabrication and application of smooth composite diamond films, Surface Engineering, 2003, Vol.19, pp: 461-465
7 孫方宏等,高性能CVD金剛石薄膜涂層刀具的制備和試驗研究,機械工程學(xué)報,2003,39卷,7期,100-106
8 孫方宏等,納米金剛石薄膜的制備與應(yīng)用,機械工程學(xué)報,2007,43卷,3期,118-122
9 Bin Shen and Fanghong Sun, Deposition and friction properties of ultra-smooth composite diamond films on Co-cemented tungsten carbide substrates, Diamond and Related Materials, 2009, Vol.18(2-3), pp: 238-243
10 Bin Shen, Fanghong Sun, Molecular dynamics investigation on the atomic-scale indentation and friction behaviors between diamond tips and copper substrate, Diamond and Related Materials, Vol.19, No.7-9, 2010: 723-728
11 Liang Wang, Xuelin Lei, Bin Shen, Fanghong Sun, Zhiming Zhang, Tribological properties and cutting performance of boron and silicon doped diamond films on Co-cemented tungsten carbide inserts, Diamond and Related Materials, 2013, Vol.33, pp:54-62
12 Xinchang Wang, Tao Zhang, Bin Shen, Jianguo Zhang, Fanghong Sun, Simulation and experimental research on the substrate temperature distribution in HFCVD diamond film growth on the inner hole surface, Surface and Coatings Technology, 2013, Vol.219(25), pp: 109–118
13 Tao Zhang, Jianguo Zhang, Bin Shen, Fanghong Sun. Simulation of temperature and gas density field distribution in diamond films growth on silicon wafer by hot filament CVD. Journal of Crystal Growth. 2012, Vol.343(1), pp:55–61
14 T. Zhang, X. Wang, B. Shen, F. Sun and Z. Zhang, The effect of deposition parameters on the morphology of micron diamond powders synthesized by HFCVD method, J. Cryst. Growth, 2013, Vol.372 (0): pp. 49-56.
15 Dongcan Zhang, Bin Shen, Fanghong Sun, Study on tribological behavior and cutting performance of CVD diamond and DLC films on Co-cemented tungsten carbide substrates, Applied Surface Science, 2010, Vol.256(8), pp: 2479-2489
16 Naichao Chen, Bin Shen, Guodong Yang, Fanghong Sun, Tribological and cutting behavior of silicon nitride tools coated with monolayer- and multilayer-microcrystalline HFCVD diamond films, Applied Surface Science, 2013, Vol.265C(1), pp: 856-859
17 Yuxiao Cui, B. Shen, Fanghong Sun, Influence of amorphous ceramic interlayers on tribological properties of CVD diamond films, Applied Surface Science, 2014, Vol. 313, pp: 918-925
18 Xinchang Wang, Tianqi Zhao, Fanghong Sun, Bin Shen, Comparisons of HFCVD diamond nucleation and growth using different carbon sources, Diamond and Related Materials, 2015, Vol. 54, pp: 26-33
19 Xuelin Lei, Bin Shen, Fanghong Sun, Optimization of diamond coated micro drills in aluminum alloy 7075 machining: a case study, Diamond and Related Materials, 2015, Vol. 54, pp: 79-90
20 Xinchang Wang, Jianguo Zhang, Bin Shen, Tao Zhang, Fanghong Sun, Erosion mechanism of the boron-doped diamond films of different thicknesses, Wear, 2014, Vol. 312, pp: 1-10
21 X. C. Wang, J. G. Zhang, F. H. Sun, T. Zhang, B. Shen, Investigations on the fabrication and erosion behavior of the composite diamond coated nozzles, Wear, 2013, Vol. 304, pp: 126-137
22 Tao Zhang, Liang Wang, Fanghong Sun, Bin Shen, Zhiming Zhang, The effect of boron doping on the morphology and growth rate of micron diamond powders synthesized by HFCVD method, Diamond and Related Materials, 2013, Vol. 40, pp: 82-88
23 Yuxiao Cui, Weisong Wang, Bin Shen, Fanghong Sun, A study of CVD diamond deposition on cemented carbide ball-end milling tools with high cobalt content using amorphous ceramic interlayers, Diamond and Related Materials, 2015, Vol. 59, pp: 21-29
24 X. Wang, J. Zhang, B. Shen, T. Zhang, F. Sun, Fracture and solid particle erosion of micro-crystalline, nano-crystalline and boron doped diamond films, International Journal of Refractory Metals and Hard Materials, 2014, Vol. 45, pp: 31-40
25 X. Lei, B. Shen, L. Cheng, F. Sun, M. Chen, Influence of pretreatment and deposition parameters on the properties and cutting performance of NCD coated PCB micro drills, International Journal of Refractory Metals and Hard Materials, 2014, Vol. 43, pp: 30-41
26 X. Wang, X. Shen, F. Sun, B. Shen, Mechanical properties and solid particle erosion of MCD films synthesized using different carbon sources by BE-HFCVD, International Journal of Refractory Metals and Hard Materials, 2016, Vol. 54, pp: 370-377
27 Xinchang Wang, Liang Wang, Bin Shen, Fanghong Sun, Friction and wear performance of boron doped, undoped microcrystalline and fine grained composite diamond films, Chinese Journal of Mechanical Engineering, 2015, Vol. 28, pp: 155-163
28 J. Zhang, X. Wang, B. Shen, F. Sun, Effect of boron and silicon doping on improving the cutting performance of CVD diamond coated cutting tools in machining CFRP, International Journal of Refractory Metals and Hard Materials, 2013, Vol. 41, pp: 285-293
29 X. Wang, Z. Lin, T. Zhang, B. Shen, F. Sun, Fabrication and application of boron-doped diamond coated rectangular-hole shaped drawing dies, International Journal of Refractory Metals and Hard Materials, 2013, Vol. 41, pp: 422-431
30 Zichao Lin, Bin Shen, Fanghong Sun, Zhiming Zhang, Songshou Guo, Numerical and experimental investigation of trapezoidal wire cold drawing through a series of shaped dies, The International Journal of Advanced Manufacturing Technology, 2015, Vol. 76(5-8), pp: 1383-1391
31 Liang Wang, Bin Shen, Fanghong Sun, Zhiming Zhang, Effect of growth pressure on boron and nitrogen doped diamond films by HFCVD, Surface and Interface Analysis, 2015, Vol. 47(1), pp: 572-586
31 Xiaotian Shen, Xinchang Wang, Fanghong Sun, Chaoyue Ding, Sandblasting pretreatment for deposition of diamond films on WC-Co hard metal substrates, Diamond and related materials, 2017, Vol. 73, pp:7-14
32 X.C. Wang, C.C. Wang, F.H. Sun, C.Y. Ding, Simulation and experimental researches on HFCVD diamond film growth on small inner-hole surface of wire-drawing die with no filament through the hole. Surface and Coating Technology,2018, Vol. 339, pp:1-13
34 C.C. Wang, X.C. Wang, F.H. Sun. Tribological behavior and cutting performance of monolayer, bilayer and multilayer diamond coated milling tools in machining of zirconia ceramics. Surface and Coatings Technology, 2018, Vol.353, pp:49-57
34 X.T Shen, C.C Wang, F.H. Sun,The effects of deposition parameters on the grain morphology and wear mechanism of monolayer diamond grinding tools fabricated by hot filament CVD method , Diamond and related materials , 2018,Vol.89, pp:312-321
35 X.T Shen, X.C Wang, F.H. Sun, Fabrication and evaluation of monolayer diamond grinding tools by hot filament chemical vapor deposition method, Journal of Materials Processing Technology, 2019,Vol.265, pp:1-11
36 H. Wang,  J. Yang, F.H. Sun, Cutting performances of MCD, SMCD, NCD and MCD/NCD coated tools in high-speed milling of hot bending graphite molds, Journal of Materials Processing Technology, 2020, Vol.276, pp:1-13
37 H. Wang,  X. Song,  X.C. Wang, F.H. Sun, Tribological performance and wear mechanism of smooth ultrananocrystalline diamond films, Journal of Materials Processing Technology, 2021, Vol.290, pp:1-13
38 H. Wang,  X. Song,  X.C. Wang, F.H. Sun, Fabrication, tribological properties and cutting performances of high-quality multilayer graded MCD/NCD/UNCD coated PCB end mills, Diamond and Related Materials, 2021, Vol.118, pp: 1-17
39 H. Wang,  X.T. Shen,  X.C. Wang, F.H. Sun, Simulation and experimental researches on the substrate temperature distribution of the large-capacity HFCVD setup for mass-production of diamond coated milling tools, Diamond and Related Materials, 2020, Vol.101, pp: 1-12
40 H. Wang,  C.C. Wang,  X.C. Wang,  F.H. Sun. Effects of carbon concentration and gas pressure with hydrogen-rich gas chemistry on synthesis and characterizations of HFCVD diamond films on WC-Co substrates, Surface and Coatings Technology, 2021, Vol.409, pp: 1-12
41 X. Song, H. Wang, X.C. Wang, F.H. Sun, Erosion mechanism and cutting performance of mpcvd multilayer diamond thick film-si3n4brazed inserts, The International Journal of Advanced Manufacturing Technology, 2021, Vol.118(7-8), pp:2437-2451
42 X. Song, H. Wang, X.C. Wang, F.H. Sun, Coupling effects of methane concentration and nitrogen addition level on morphologies and properties of mpcvd diamond films on wc-co substrates, Diamond and Related Materials, 2021, Vol.117, 108487
43 X. Song, H. Wang, X.C. Wang, F.H. Sun, Fabrication and evaluation of diamond thick film-Si3N4 brazed cutting tool by microwave plasma chemical vapor deposition method, Journal of Materials Processing Technology, 2020, Vol.291, 117034
44 X. Song, M. Lu, H. Wang, X.C. Wang, F.H. Sun, Fracture mechanics of microcrystalline/nanocrystalline composited multilayer chemical vapor deposition self-standing diamond films, Ceramics International, 2022, Vol.48, pp: 21909-21919

45 M. Lu, C. Zhang, D.D. Liu, X.C. Wang, F.H. Sun, Theoretical and experimental research on growth and doping mechanisms of diamond films fabricated using liquid carbon source precursors, Applied Surface Science, 2023, Vol.629, 157389

46 M. Lu, D.D. Liu, C. Zhang, F.H. Sun, DFT calculations and experiments of oxidation resistance research on B, N, and Si multi-doped diamond films, Applied Surface Science, 2023, Vol.612, 155865

47 M. Lu, H. Wang, X. Song, F.H. Sun, Effect of doping level on residual stress, coating-substrate adhesion and wear resistance of boron-doped diamond coated tools, Journal of Manufacturing Processes, 2023, Vol.88, pp:145-156

48 D.D. Liu, M. Lu, C. Zhang, F.H. Sun, Optimization of deposition parameters for the growth of micro-edge diamond abrasive grains using HFCVD method, Diamond and Related Materials, 2023, Vol.140, 110548

49 D.D. Liu, H.J. Zhu, M. Lu, F.H. Sun, Numerical simulation and experimental researches on different abrasive grain arrangements of monolayer diamond grinding tools fabricated by HFCVD method, Journal of Manufacturing Processes, 2024, Vol.124, pp:536-550

50 M. Lu, D.D. Liu, C. Zhang, F.H. Sun, Fabrication and high-temperature tribological performance of doped diamond film with B, N, and Si elements, Ceramics International, 2024, Vol.50(2), pp:2588-2599

51 D.D. Liu, H.J. Zhu, R. Shen, F.H. Sun, Simulation and experimental investigation of single CVD micro-edge diamond abrasive grain grinding, Journal of Materials Research and Technology, 2025, Vol.36, pp:9045-9059

52 D.D. Liu, H.J. Zhu, R. Shen, F.H. Sun, Fabrication and grinding performance of CVD diamond coated Ni-based brazed diamond grinding tools, Journal of Manufacturing Processes, 2025, Vol.149, pp:71-81

53 H.J. Zhu, D.D. Liu, X.L. Lei, E.Q. Zhang, F.H. Sun, Polishability and tribological performances of various CVD diamond coatings deposited on SiC ceramics seal ring, Tribology International, 2025, 110943

54 孫方宏,王新昶,林子超著,內(nèi)孔金剛石涂層的制備與應(yīng)用,上海交通大學(xué)出版社,2021,12

軟件版權(quán)登記及專利

1 專利名稱:制備納米金剛石薄膜的輔助柵極熱絲化學(xué)氣相沉積法    
授權(quán)號:ZL200410067571.3  
2 專利名稱:金剛石薄膜涂層軸承支撐器的制備方法
授權(quán)號:ZL200510027575.3  
3 專利名稱:大孔徑金剛石涂層拉拔模的制備方法
授權(quán)號:ZL02136951.8
4 專利名稱:碳化硅陶瓷和金剛石復(fù)合拉拔模具制備方法  
授權(quán)號:ZL 200810040138.9
5 專利名稱:化學(xué)氣相沉積制備摻硼導(dǎo)電金剛石薄膜方法
授權(quán)號:ZL 200910045950.5
6 專利名稱:復(fù)雜形狀金剛石涂層刀具熱絲化學(xué)氣相沉積批量制備方法
授權(quán)號:ZL 201110028846.2
7 專利名稱:特大孔徑內(nèi)孔金剛石平坦化涂層的制備方法
授權(quán)號:ZL 201110028847.7
8 專利名稱:金剛石涂層高溫高壓差閥的制備方法
授權(quán)號:ZL 201110330198.6
9 專利名稱:多元摻雜熱絲化學(xué)氣相沉積制備金剛石薄膜的方法
授權(quán)號:ZL 201210085095.2
10 專利名稱:金剛石涂層高溫高壓噴霧噴嘴的制備方法
授權(quán)號:ZL 201410005575.2
11 專利名稱:制備硬質(zhì)合金基體金剛石涂層的預(yù)處理方法
授權(quán)號:ZL 201610920894.5
12 專利名稱:利用化學(xué)氣相沉積制備單層金剛石磨料工具的方法
授權(quán)號:ZL 201710072261.8
13 專利名稱:利用掩膜版制備磨粒有序排布的金剛石磨料工具的方法
授權(quán)號:ZL 201810443806.6
14 專利名稱:高光潔度復(fù)雜形狀超納米金剛石涂層刀具批量制備方法
授權(quán)號:ZL202010658710.9
15 專利名稱:復(fù)雜形狀金剛石涂層刀具的HFCVD批量制備方法
授權(quán)號:ZL201711280418.2

1、 2003   上海交通大學(xué)優(yōu)秀博士后
2、 2006   第四屆上海市發(fā)明創(chuàng)造專利獎發(fā)明專利獎一等獎
3、 2006   教育部新世紀(jì)優(yōu)秀人才
4、 2007   上海市科學(xué)技術(shù)進步獎二等獎 (排3)
5、 2007   第十屆中國專利獎優(yōu)秀獎  
6、 2007   上海市研究生優(yōu)秀成果(學(xué)位論文)碩士指導(dǎo)教師
7、 2008   國家技術(shù)發(fā)明獎二等獎(排6)
8、 2008   教育部科技進步獎二等獎(排8)
9、 2008   中國工業(yè)博覽會最具技術(shù)交易潛力獎
10、 2010   國家自然科學(xué)基金優(yōu)秀結(jié)題項目
11、 2011   上海市研究生優(yōu)秀成果(學(xué)位論文)博士指導(dǎo)教師
12、 2011   第一屆上銀優(yōu)秀博士論文獎銅獎指導(dǎo)教授
13、 2014   中國機械工業(yè)科學(xué)技術(shù)獎一等獎(排5)
14、 2017  國家科技進步二等獎(排2)
15、 2020 第六屆中國國際“互聯(lián)網(wǎng)+”大學(xué)生創(chuàng)新創(chuàng)業(yè)大賽銀獎、上海賽區(qū)金獎指導(dǎo)教師
16、 2020年度育棟梁名師

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