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           English  
      AG亚美平台
      姓名: 宋曉菲
      性別:
      英文名: Song XiaoFei
      人才稱號: 北洋青年骨干教師
      職稱: 副教授、碩士/博士生導師
      職務: 專業: 機械制造及其自動化
      所在機構: 機械工程系 個人主頁:
      郵箱: xiaofeisong@tju.edu.cn 辦公地點: 北洋校區機械工程學院37樓-340
      傳真: 辦公電話:
      主要學歷: 1999.9~2003.7 天津大學機械工程學院, 學士學位
      2003.9~2006.3 天津大學機械工程學院, 碩士學位
      2006.3~2008.9 天津大學機械工程學院, 博士學位

      主要學術經歷: 2008.10 ~2011.6 天津大學機械工程學院, 講師
      2013.4 ~2014.3 美國凱斯西儲大學、加州伯克利大學, 訪問學者
      2011.6 ~至今 天津大學機械工程學院, 副教授、 碩導(2011年)、博導(2015年)


      主要研究方向: 1. 新型超聲輔助外科手術切割技術
      2. 抗返流人體支架數字化設計及生物力學
      3. 先進制造技術在醫學領域的創新應用及醫療器械設計
      4. 硬脆材料先進加工科學與技術

      主要講授課程: 工程制圖基礎
      機械設計基礎
      先進制造技術


      主要學術兼職: ASME Member
      國家基金同行評議人
      國內、國際刊物審稿人

      主要學術成就: 主持國家自然科學基金3項,天津市自然科學基金1項,國家教育部新教師基金1項;作為主要研究人參加 973重大項目1項,04重大專項1項,863支撐計劃項目1項,國家面上自然科學基金1項,ACSRF中澳國際合作項目1項。在國際權威期刊Acta Biomater、J Phys D、Med Eng Phys、J Biomed Mater Res B、ASME、Int J Mach Tool Manu等發表SCI論文20余篇,其中ISI一區top期刊論文2篇,二區論文10篇,他引130余次;發表Springer出版專著1章;參加并發表CIRP、ASME、ISAAT等權威國際會議論文10余次,申請中國發明專利7項。入選首屆“北洋學者-青年骨干教師”稱號。

      主要科研項目: 面型開胸手術的超聲輔助干鋸切機理及減溫降損策略,國家自然科學面上基金,2019~2022,項目負責人;
      基于旋轉超聲的新型高效低損牙體預備關鍵技術,天津市自然科學基金,2018~2021,項目負責人;
      基于臨床舒適性和力學相容性的超聲輔助口腔高速調磨機理及關鍵技術,國家自然科學面上基金,78萬,2014~2017,項目負責人;
      足仿生機器人野外試驗與測試技術研究,863計劃,400萬,2015~2018,子任務負責人;
      牙科陶瓷高速調磨溫度與熱-力耦合損傷研究,國家自然科學青年基金,20萬,2010~2012,項目負責人;
      高速渦輪牙科手機切削溫度及熱損傷研究,教育部博士點基金,2010~2012,項目負責人;
      Strengthening Collaboration with Tianjin University on Dental Ceramic Machining,ACSRF中澳項目, 2013~2014,中方參加人;
      異形深腔復合材料構件高效復合加工工藝及裝備,863支撐計劃,800萬,2013~2015,主要參加人;
      大口徑非球面機器人數控拋光裝備研制,04重大專項,400萬,2013~2014,主要參加人;
      光學自由曲面制造完整性的測量系統與評價方法,973重大項目子課題,2011~2015,參加人;
      缺損顱骨組織工程支架設計方法及其生物力學研究,國家自然科學青年基金,2010.01~2012.12,參加人;
      齒科陶瓷口腔磨削修復物理仿真及機理研究,國家自然科學基金,2005~2007,主要完成人;
      高速牙科器械口腔修復模擬技術研究,國家留學回國人員科研啟動基金,2004~2005,主要完成人。

      代表性論著: 1. Alao Abdur-Rasheed, Stoll Richard, Song XF, Yin L, Surface Quality of Yttria-stabilized Tetragonal Zirconia Polycrystal in CAD/CAM Milling, Sintering, Polishing and Sandblasting Processes, 2017, 65: 102–116
      2. Song XF, Ren HT, Yin L,Machinability of lithium disilicate glass ceramic in in vitro dental diamond bur adjusting process, Journal of the Mechanical Behavior of Biomedical Materials, 2016, 53: 78-92.
      3. Song XF, Yin L, Jin CX, Quantitative assessment of the enamel machinability in tooth preparation with dental diamond burs, Journal of the Mechanical Behavior of Biomedical Materials, 2015, 41: 1-12
      4. Song XF, Yin L, Peng JH, Lin B, Cutting characteristics of dental glass ceramics during in vitro dental abrasive adjusting using a high-speed electric handpiece, Ceramics International, 2014.
      5.Song XF, Peng JH, Yin L, Lin B, A Machining science approach to dental cutting of glass ceramics using an electric handpiece and diamond burs, ASME Transactions Journal of Manufacturing Science and Engineering-Transactions of The ASME,2014.
      6. Song X F, Yin L, Surface morphology and fracture in handpiece adjusting of a leucite-reinforced glass ceramic with coarse diamond burs,Materials Science & Engineering A, 2012, 534(1): 193–202.
      7. Song X F, Yin L, Induced damage zone in micro-fine dental finishing of a feldspathic porcelain, Medical Engineering & Physics, 2010, 32(5): 417–422.
      8. Song X F, Yin L, Stress and damage at the bur-prosthesis interface in dental adjustments of a leucite-reinforced glass ceramic, Journal of Oral Rehabilitation, 2010, 37(9):680–691.
      9. Song X F, Yin L, The quantitative effect of diamond grit size on the subsurface damage induced in dental adjustment of porcelain surfaces, Proceedings of the Institution of Mechanical Engineers Part H: Journal of Engineering in Medicine, 2010, 224(10): 1185–1194.
      10. Song X F, Yin L, Subsurface damage induced in dental resurfacing of a feldspar porcelain with coarse diamond burs, Journal of Biomechanics, 2009, 42(3): 355–360
      11. Song X F, Yin L, Han Y G, In-process assessment of dental cutting of a leucite-reinforced glass-ceramic, Medical Engineering & Physics, 2009, 31(2): 214–220
      12. Song X F, Yin L, Han Y G, Wang H, In vitro rapid adjustment of porcelain prostheses using a high-speed dental handpiece, Acta Biomaterialia, 2008, 4(2): 414–424.
      13. Song X F, Yin L, Han Y G, Li J, Finite element analysis of subsurface damage of ceramic prostheses in simulated intraoral dental resurfacing, Journal of Biomedical Materials Research Part B: Applied Biomaterials, 2008, 85B(1): 50–59 .
      14. Song X F, Yin L, Han Y G, Wang H, Micro fine finishing of a feldspar porcelain for dental prostheses, Medical Engineering & Physics, 2008, 30(7): 856–864.
      15. Yin L, Han Y G, Song X F, Wang H, Effect of diamond burs on process and damage involving in vitro dental resurfacing of a restorative porcelain, Journal of Physics D: Applied Physics, 2007, 40(17): 5291–5300.
      16. Yin L, Han Y G, Song X F, Li J, Wang H, In vitro study on high rotation deep removal of ceramic prostheses in dental surgery, Journal of Biomedical Materials Research Part B: Applied Biomaterials, 2007, 82B(2): 334–345 .
      17. Yin L, Song X F, Song Y L, Huang T, Li J, An overview of in vitro abrasive finishing and CAD/CAM of bioceramics in restorative dentistry, International Journal of Machine Tools & Manufacture, 2006, 46(9): 1013–1026 .
      18. Yin L, Song X F, Qu S F, Han Y G, Wang H, Surface integrity and removal mechanism in simulated dental finishing of a feldspathic porcelain, Journal of Biomedical Materials Research Part B: Applied Biomaterials, 2006, 79B(2): 365–378 .
      19. Yin L, Song X F, Qu S F, Huang T, Mei J P, Yang Z Y, Li J, Performance evaluation of a dental handpiece in simulation of clinical finishing using a novel 2-DOF in vitro apparatus, Proceedings of the Institution of Mechanical Engineers Part H: Journal of Engineering in Medicine, 2006, 220(8): 929–938 .

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