科研方向
精密超精密加工理論與技術、光電晶片平坦化加工工藝、磁流變拋光技術、智慧型材料開發與套用
教育與研究經歷
(1) 2016.3—2017.3,University of Wollongong, Australia, 訪問學者
(2) 2009.9—2015.6,
廣東工業大學,機械製造及自動化專業,獲工學博士學位
(3) 2004.9—2007.6,重慶大學機械傳動國家重點實驗室,機械製造及自動化專業,獲工學碩士學位
(4) 2010.6-2004.6,重慶大學,機械設計製造及其自動化專業,獲工學學士學位
主要項目
(1)參與項目:NSFC-廣東聯合基金項目“多場耦合控制磨料狀態的新一代光電晶片超光滑平坦化加工理論與關鍵技術研究”(項目起止日期:2019.1~2022.12)。
(2)主持項目:國家自然科學基金青年科學基金“基於磁流變效應柔性夾持超薄鈦酸鍶電子陶瓷基片精密磨粒加工研究”(項目起止日期:2013.01~2015.12);
(3)主持項目:廣東省科技計畫項目“動態磁場自銳的磁流變效應柔性墊高效超精密拋光關鍵技術研究”(項目起止日期:2016.01~2018.12);
(4)主持項目:廣東省省部產學研結合項目 “食品塑膠軟包裝綠色印刷關鍵技術的集成創新”(項目起止日期:2012.02~2014.12);
(5)參與項目:NSFC-廣東聯合基金項目“單晶SiC基片高效超精密磨粒加工技術基礎研究”(項目起止日期:2010.1~2014.12)。
主要學術論文
(1) Pan J, Guo M, Yan Q, Zheng K, Xiao X. Research on material removal model and processing parameters of cluster magnetorheological finishing with dynamic magnetic fields[J]. International Journal of Advanced Manufacturing Technology, 2019 (9-12): 2283-2297.
(2) Pan J, Yan Q, Li W, Zhang X. A Nanomechanical Analysis of Deformation Characteristics of 6H-SiC Using an Indenter and Abrasives in Different Fixed Methods[J]. Micromachines, 2019 (5).
(3) Jisheng Pan, Peng Yu, Qiusheng Yan, et al. An experimental analysis of strontium titanate ceramic substrates polished by magnetorheological finishing with dynamic magnetic fields formed by rotating magnetic poles [J]. Smart Materials and Structures, 2017, 26(5): 055017.
(4) Jisheng Pan, Xiaowei Zhang, Qiusheng Yan, et al. Experimental study of surface performance of monocrystalline 6H-SiC substrates in plane grinding with a metal-bonded diamond wheel[J]. International Journal of Advanced Manufacturing Technology, 2017 , 89 (1-4) :1-9
(5) Huazhuo Liang, Jiabin Lu*, Jisheng Pan*, Qiusheng Yan. Material removal process of single-crystal SiC in chemical-magnetorheological compound finishing. International Journal of Advanced Manufacturing Technology, 2018, 94: 2939.
(6) Wang C C, Zhang F L*, Pan J S*, Mao J B, Long Y, Huang H P, Wang C Y, Lin H T, Deng X, Wu S H. An experimental study on preparation of vitrified bond diamond grinding wheel with hollow spherical corundum granules as pore former. International Journal of Advanced Manufacturing Technology, 2017 (1-4): 595-603.
(7) Jisheng Pan,Guoming Li,Qiusheng Yan,Xiaowei Zhang,Processing characteristics of ultrathin SrTiO3 ceramic substrates,International Journal of Nanomanufacturing, 2017,13(3):247-256
(8) Jisheng Pan,Qiusheng Yan,Material removal mechanism of clustermagnetorheological effect in plane polishing,International Journal of Advanced Manufacturing Technology,2015,81(9):2017~2026
(9) 潘繼生,於鵬,閻秋生.動磁場磁流變效應拋光墊拋光力特性試驗研究. 機械工程學報, 2018. 54(6): p. 10-17.
(10) 潘繼生,閻秋生,路家斌,徐西鵬,陳森凱,集群磁流變平面拋光加工技術,機械工程學報,2014 ,50 (1) :205-212
(11) 潘繼生,閻秋生,徐西鵬,童和平,祝江停,白振偉,單晶SiC基片的集群磁流變平面拋光加工,中國機械工程,2013 , 24 (18) :2495-2499
(12) Qiusheng Yan , Xiaobei Cao, Jisheng Pan(*), Experimental investigations on super-smooth polishing of strontium titanate based ceramics substrate, International Journal of Abrasive Technology,2017, 8(1):1-24
(13) Peng Yu,Jisheng Pan(*),Qiusheng Yan,Magnetorheological finishing with tangential magnetic fields formed by the rotation of a magnetic pole,International Journal of Abrasive Technology,2016,7(4):307~320
(14) Yan, Q. S.,Chen, S. K.,Pan, J. S.(*),Lu, J. B.,Liu, Q.,The surface and subsurface damage characteristics and material removal mechanism in 6H-SiC wafer grinding,Materials Research Innovations,2014,18:742~747
(15) QiuSheng Yan,Senkai Chen,Jisheng Pan(*),Detection and Analysis of Subsurface Cracks of Single Crystal SiC Wafers Based on Cross-Sectional Microscopy Method,Advanced Materials Research,2014(1027):240~245
(16) 路家斌,閻秋生,潘繼生,高偉強,電磁流變效應微磨頭加工的電磁耦合協同作用機理實驗,光學精密工程,2012 , 20 (11) :2485-2491
(17) 閻秋生,高偉強,潘繼生,發動機零部件氣密性檢測及其裝備關鍵技術,工具機與液壓,2013 , 41 (4) :124-126
(18) Jisheng Pan, Qiusheng Yan, Xipeng Xu, Jiangting Zhu, Zhancheng Wu, Zhenwei Bai,Abrasive Particles Trajectory Analysis and Simulation of Cluster Magnetorheological Effect Plane Polishing,International Conference on Solid State Devices and Materials Science (SSDMS),澳門,2012.4.1-2012.4.2
授權發明專利
(1) Jisheng Pan; Qiusheng Yan; Weiqiang Gao and Peng Yu, Self-sharpening polishing device with magnetorheological flexible polishing pad formed by dynamic magnetic field and polishing method thereof, 2018.11.6, USA,US10118269B2
(2) Jisheng Pan; Qiusheng Yan and Weihua Li, Double-face polishing device and method capable of controlling rigidity of polishing pad through cluster dynamic magnetic field, 2018.08.31, USA,US15555073
(3) 閻秋生;潘繼生, 雙面平坦化加工系統, 2018.05.15, 中國,ZL201610917180.9
(4) 潘繼生;於鵬;閻秋生, 磁流變平面拋光用多級真空吸附裝置及其加工方法, 2018.07.10, 中國,ZL201610398930.6
(5) 潘繼生;閻秋生;李衛華, 一種集群動態磁場控制拋光墊剛度的雙面拋光裝置及方法, 2018.01.30, 中國, ZL201610406771.X
(6) Jisheng Pan, Qiusheng Yan, Weihua Li, double-sided polishing device and method having polishing pad with stiffness controlled by dynamic cluster magnetic field, 2017.12.14, PCT, PCT/CN2017/070456
(7) Jisheng Pan, Qiusheng Yan, Weiqiang Gao, Peng Yu, self-sharpening polishing device in dynamic magnetic field for magnetorheological flexible polishing pad and polishing method therefor, 2017.05.26, PCT, PCT/CN2016/072318
(8) 潘繼生;於鵬;閻秋生;高偉強, 一種靜磁動場磁流變拋光機理試驗裝置及其加工方法, 2017.12.29, 中國, ZL201511027963.1
(9) 洪波;陳惠平;閻秋生;潘繼生;余秋盛, 一種納米防滲透蒸煮袋及其納米粘結劑及製作方法, 2017.03.01, 中國,201310642828.2
(10) 路家斌,潘繼生,祝江停,閻秋生,徐西鵬,一種單晶碳化矽晶片的化學集群磁流變複合加工方法,2016.09.21,中國,ZL201210304530.6
(11) 潘繼生,閻秋生,路家斌,王威,磁流變效應粘彈性夾持的電瓷基片柔性研拋裝置及方法,2015.12.23,中國,ZL201210553510.2
(12) 潘繼生,陳森凱,路家斌,閻秋生,一種單晶半導體基片的截面快速製作及亞表面微裂紋檢測方法,2016.1.20,中國,ZL201310643511.0
(13) 彭澤光,高偉強,閻秋生,潘繼生,一種制袋膜片變相對切恆張力送膜裝置,2013.11.13,中國,ZL201210005482.0
(14) 潘繼生,閻秋生,路家斌,柔性拋光墊線上修整的超光滑平面研磨拋光裝置及方法,2017.01.11,中國,ZL201410424335.6
(15) 路家斌,祝江亭,潘繼生,閻秋生,高偉強,一種集群磁流變-化學機械複合拋光裝置,2013.01.23,中國,ZL201220423641.4
(16) 李揚,潘繼生,黎勉,陳益民,一種具有振動分離功能的真空吸附裝置,2014.4.9,中國,ZL201110361329.7
(17) 李楊,潘繼生,陳益民,黎勉,一種圓片自動上料機構,2013.6.19,中國,ZL201110047163.1
(18) 閻秋生,潘繼生,黃升偉,李忠榮,一種金屬帶材無毛刺分切加工裝置及其加工方法,2012.7.4,中國,ZL201110136574.8
主要學術榮譽
(1) 第十五屆中國專利獎優秀獎,一種金屬帶材無毛刺分切加工裝置及其加工方法,中華人民共和國國家知識產權局、世界智慧財產權組織, 2013(排名第二);
(2) 2013年廣東專利獎金獎,一種金屬帶材無毛刺分切加工裝置及其加工方法,廣東省人力資源和社會保障廳、廣東省知識產權局,2013排名第二;
(3) 2005年度教育部提名國家科學技術獎(技術發明獎)一等獎,基於逆滾動螺旋副的高效精密傳動機構,中華人民共和國教育部,2006(排名第五)
(4)《2010年度中國(國際)光整加工技術學術會議》獲2006-2011年度中國機械工程學會學會工作成果獎(2011年)