個人經歷
哈爾濱工業大學機電工程學院/機器人技術與系統國家重點實驗室/微系統與微結構製造教育部重點實驗室 副教授(準聘),博士生導師。
工作經歷
時間工作經歷
2010年10月–2011年11月哈爾濱工業大學,CSC預留師資,助教
2011年11月–2014年12月哈爾濱工業大學機電學院,機械製造及自動化系,講師
2014年12月–至 今哈爾濱工業大學機電學院,機械製造及自動化系,副教授
2017年12月–至 今哈爾濱工業大學機電學院,機械製造及自動化系,準聘副教授
2018年10月–2018年11月美國明尼蘇達大學,教學發展專項學習
2019年3月–至 今哈爾濱工業大學,機械工程學科,博士生導師
教育經歷
2001年–2005年,就讀於哈爾濱理工大學機械設計製造及其自動化專業, 獲得學士學位
2005年–2008年,就讀於哈爾濱理工大學機械製造及其自動化專業,獲得碩士學位
2008年–2014年,就讀於哈爾濱工業大學機械製造及自動化專業,獲得博士學位
2010年–2011年,就讀於Vanderbilt University,Dept. of Chemical & Biomolecular Engineering,CSC聯合培養博士生
主講課程
本科生課程
《機械製造技術基礎》主講教師,省精品課程,機電工程學院全院專業基礎課程,負責課程及配套實驗的常務管理與教學任務統籌
“機械加工準現場工程實訓”主講教師,負責人
“哈爾濱工業大學機械加工準現場”負責人之一
研究方向
主要研究方向為超精密與微納米製造技術、材料界面特性評價、大規模並行計算在複雜系統分子模擬中的套用、超疏水微納結構製備及其理論分析、圖像處理與檢測技術等。
學術成果
主持完成國家自然科學青年基金1項、國家重點實驗室自主和開發課題各1項,目前主持裝備發展部共性技術項目、核九院橫向課題、校人才支持計畫、中國和黑龍江省博士後等項目共6項;作為副組長,參研國家重點研發計畫、國家科技重大專項各1項;作為技術骨幹,參研國家863重點項目、總裝預研項目各1項。在國內外著名刊物上發表學術論文50餘篇,SCI收錄30餘篇,SCI影響因子3.0以上文章13篇,單篇影響因子最高為8.097,影響因子總和>100,發表中文綜述論文3篇(機械工程學報2篇)。授權國家發明專利9項,受理5項,參編教材2部。主持教改項目2項。
| 鈦系生物材料表面微納結構特徵對蛋白質吸附的影響機制 |
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| 基於拓撲結構的鈦系材料表面黏附蛋白仿生修飾機理研究 |
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論文成果
[1]Ting Zheng, Yu Zhang,Chunya Wu*, Peter T. Cummings. Molecular Investigations of Tripeptide Adsorption ontoTiO2Surfaces: Synergetic Effects of Surface Nanostructure, Hydroxylation and Bioactive Ions. Appl. Surf. Sci. 2020, 512: 145713.
[2]Ting Zheng,Chunya Wu*, Qing Zhu, Shangbin Li. Molecular Investigations on the Adsorption and Flow Behavior of Hydroxyl-Terminated Polybutadiene (HTPB) Binders on Cu Surfaces: The Effects of Surface Nanostructure and Perfluorosilylation. Progress in Organic Coatings 2020, 142: 105575.
[3]Tingzhang Wang,Chunya Wu, Henan Liu, Mingjun Chen, Jian Cheng, Dingning Su.On-machine electric discharge truing of small ball-end fine diamond grinding wheel.Journal of Materials Processing Technology. 2020, 277: 116472.
[4]Chunya Wu*, Qing Zhu, Ting Zheng, Xiaonan Yang, Tingzhang Wang, Bo Hou, Xiaodong He, Guan Luo, Shangbin Li*, Mingjun Chen*. Experimental and theoretical investigations on the adherent behaviors of high viscosity liquid: The effect of surface topography.Fluid Phase Equilibria. 2019, 486: 11–20.
[5]Chunya Wu, Qing Zhu, Ting Zheng, Chuangqiang Guo*, Tingzhang Wang, Bo Hou, Xiaodong He, Guan Luo, Shangbin Li, Mingjun Chen. Molecular investigation of adsorption behaviors of hydroxyl-terminated polybutadiene (HTPB) binders onto copper surface: The effects of aluminum nanoparticles.Applied Surface Science. 2019, 486: 383–393.
[6]Tingzhang Wang,Chunya Wu, Henan Liu, Mingjun Chen, Jian Cheng, Zhen Fang, Bo Yu. Configuration design and accuracy analysis of special grinding machine for thin-walled small concave surfaces.Precision Engineering-Journal of the International Societies for Precision Engineering and Nanotechnology. 2019, 56: 293–302.
[7]Tingzhang Wang, Jian Cheng, Henan Liu, Mingjun Chen,Chunya Wu*, Dingning Su. Ultra-precision grinding machine design and application in grinding the thin-walled complex component with small ball-end diamond wheel.The International Journal of Advanced Manufacturing Technology. 2019, 101: 2097–2110.
[8]Chunya Wu, Chuangqiang Guo*, Zongwu Xie, Fenglei Ni, Hong Liu. A signal-based fault detection and tolerance control method of current sensor for PMSM drive.IEEE Transactions on Industrial Electronics. 2018,65(12): 9646–9657.
[9]Ting Zheng,Chunya Wu*, Yu Zhang, Mingjun Chen, Peter T. Cummings. Molecular investigation of the initial nucleation of calcium phosphate on TiO2substrate: the effects of surface nanotopographies.Crystal Growth & Design. 2018,18 (6): 3283–3290.
[10]Ni Chen,Chunya Wu, Mingjun Chen, Liang Li, Ning He. Research on the relationship between cutting force and machined surface quality in micro ball end-milling of potassium dihydrogen phosphate crystal.Micromachines. 2018, 9: 11.
[11]Tingzhang Wang, Jian Cheng, Henan Liu, Mingjun Chen,Chunya Wu*, Zhen Fang, Bo Yu. Effects of kinematic parameters on electric discharge truing of small ball-end diamond wheels for small concave surfaces grinding.Precision Engineering-Journal of the International Societies for Precision Engineering and Nanotechnology. 2018, 51, 117–127
[12]Chuangqiang Guo,Chunya Wu*, Bin Wang, Hong Liu. A two-dimensional deflection sensor based on force sensing resistors.Journal of Sensors. 2017, 1241280.
[13]Ni Chen, Mingjun Chen,Chunya Wu*, Xudong Pei. Cutting surface quality analysis in micro ball end-milling of KDP crystal considering size effect and minimum chip thickness.Precision Engineering-Journal of the International Societies for Precision Engineering and Nanotechnology. 2017, 50: 410–420.
[14]Ni Chen, Mingjun Chen,Chunya Wu*, Xudong Pei, Jun Qian, Dominiek Reynaerts. Research in minimum undeformed chip thickness and size effect in micro end-milling of potassium dihydrogen phosphate crystal.International Journal of Mechanical Sciences. 2017, 134: 387–398.
[15]Chuangqiang Guo,Chunya Wu*(共同一作), Mingjun Chen, Ting Zheng, Ni Chen, Peter T. Cummings. Molecular modeling of fibronectin adsorption on topographically nanostructured rutile (110) surfaces.Applied Surface Science.2016, 384: 36–44.
[16]Ting Zheng,Chunya Wu, Mingjun Chen, Yu Zhang, Peter T. Cummings. Molecular mechanics of the cooperative adsorption of a Pro-Hyp-Gly tripeptide on hydroxylated rutile TiO2(110) surface mediated by calcium ions.Physical Chemistry Chemical Physics.2016, 18: 19757–19764.
[17]Ting Zheng,Chunya Wu, Mingjun Chen, Yu Zhang, Peter T. Cummings. A DFT study of water adsorption on rutile TiO2(110) surface: The effects of surface steps.The Journal of Chemical Physics. 2016, 145: 044702.
[18]Chunya Wu*, Mingjun Chen, Ting Zheng, Xiaonan Yang. Effect of surface roughness on the initial response of MC3T3-E1 cells cultured on polished titanium alloy.Bio-Medical Materials and Engineering. 2015, 26(s1): 155–164.
[19]Mingjun Chen*, Ting Zheng,Chunya Wu(共同一作). Molecular dynamics simulations of collagen adsorption onto grooved rutile surface: The effects of groove width.Colloids and Surfaces B-Biointerfaces. 2014, 121: 150–157.
[20]Chunya Wu*, Mingjun Chen, Adam A. Skelton, Peter T. Cummings, Ting Zheng. Adsorption of arginine-glycine-aspartate tripeptide onto negatively charged rutile (110) mediated by cations: The effect of surface hydroxylation.ACS Applied Materials & Interfaces.2013, 5(7): 2567–2579.
[21]Ting Zheng,Chunya Wu, Mingjun Chen*. Early adsorption of collagen on the reduced rutile (110) surface mediated by water: A molecular dynamics study.Surface Science. 2013, 616:51–59.
[22]Chunya Wu*, Adam A. Skelton, Mingjun Chen, Lukas Vl?ek, Peter T. Cummings. Modeling the interaction between integrin-binding peptide (RGD) and rutile surface: The effect of cation mediation on Asp adsorption.Langmuir. 2012, 28(5): 2799–2811.
[23]Chunya Wu*, Adam A. Skelton, Mingjun Chen, Lukas Vl?ek, Peter T. Cummings. Modeling the interaction between integrin-binding peptide (RGD) and rutile surface: The effect of Na+on peptide adsorption.Journal of Physical Chemistry C. 2011, 115(45): 22375–22386.
[24]Chunya Wu, Mingjun Chen*, Cheng Xing.Molecular understanding of conformational dynamics of a fibronectin module on rutile (110) surface.Langmuir. 2010, 26(20): 15972–15981.
[25]Chunya Wu*, Mingjun Chen, Chuangqiang Guo, Xin Zhao, Changsong Yuan. Peptide-TiO2interaction in aqueous solution: Conformational dynamics of RGD using different water models.Journal of Physical Chemistry B. 2010, 114(13): 4692–4701.
[26]Mingjun Chen,Chunya Wu*(導師一作), Daiping Song, Kai Li. RGD tripeptide onto perfect and grooved rutile surfaces in aqueous solution: Adsorption behaviors and dynamics.Physical Chemistry Chemical Physics. 2010, 12: 406–415.
[27]Mingjun Chen,Chunya Wu*(導師一作), Daiping Song, Wenman Dong, Kai Li. Effect of grooves on adsorption of RGD tripeptide onto rutile TiO2(110) surface.Journal of Materials Science: Materials in Medicine. 2009, 20(9): 1831–1838.
[28]吳春亞,郭闖強*,裴旭東,王廷章,陳妮,陳明君.太赫茲段慢波結構的微細加工技術研究新進展.機械工程學報. 2019, 55(7): 187–198.
[29]郭闖強,吳春亞*,劉宏.離子聚合物金屬複合材料驅動器在機器人中的套用進展.機械工程學報. 2017, 53(9): 1–13.
[30]郭闖強,吳春亞,鄒添,張子健,劉宏.介電彈性材料驅動器在機器人中的套用進展.哈爾濱工業大學學報. 2016, 48(1): 1–12.
[31]吳春亞,郭闖強,鄭庭,陳妮,陳明君,赫曉東. RGD與特定形貌金紅石表面相互作用的分子動力學模擬.化工學報. 2016, (01): 199–207. (封面文章)
專利
[1]吳春亞, 陳明君, 韓鵬宇, 王廷章, 魯義凡, 段從繁. 一種套用於摺疊波導慢波結構的走刀軌跡規劃方法. 授權號:ZL 201811273948.9.
[2]吳春亞,陳明君,裴旭東,王廷章,韓鵬宇,魯義凡,李曦光.一種套用於摺疊波導慢波結構的微銑削製備工藝方法.授權號:ZL 201811273949.3.
[3]郭闖強,吳春亞,鄒添,倪風雷,劉宏.基於旋轉變壓器的直流電機控制器及控制方法.授權號:ZL 201510236275.X.
[4]陳明君,劉赫男,吳春亞,程健,王廷章,陳妮,方針,餘波.一種小球頭工具單轉台研拋加工裝置及刀具對刀方法.授權號:ZL 201510523311.0.
[5]陳明君,肖勇,吳春亞,鄭庭,倪海波,程健,周文清.複雜微結構件精密加工的CCD對刀與監控裝置.授權號:ZL 201110292689.6.
[6]陳明君,肖勇,吳春亞,倪海波,鄭庭,田文蘭,姜艷.複雜曲面多軸聯動加工工具機的垂直軸配重裝置.授權號:ZL 201110274788.1.
[7]陳明君,肖勇,吳春亞,田文蘭,倪海波,鄭庭,姜艷.光學元件表面微缺陷修復用多軸聯動機械裝置.授權號:ZL 201110316370.2.
[8]陳明君,劉赫男,於霖,郭占玥,方針,吳春亞,羅康俊.一種垂直軸轉台倒掛式斜軸磁流變研拋裝置.授權號:ZL 201210571680.3.
[9]陳明君,劉赫男,郭占玥,於霖,方針,吳春亞,蘇銀蕊.一種小口徑非球面永磁式磁流變拋光加工工具機.授權號:ZL 201210571678.6.
榮譽獎項
獲黑龍江省自然科學二等獎1項。申報“教學貢獻獎(青年教師教學優秀獎)”1項,榮獲教學競賽獎3項。
2013年 榮獲黑龍江省自然科學二等獎;
2017年 入選哈爾濱工業大學準聘副教授;
2015年 入選哈爾濱工業大學青年拔尖人才支持計畫;
2015年 榮獲哈爾濱工業大學第十七屆優秀博士學位論文;
2013年 榮獲黑龍江省“優秀畢業研究生”;
2012年 榮獲博士研究生國家獎學金;
2011年 榮獲“CASC獎學金”一等獎;
2010年 榮獲教育部首批博士研究生學術新人獎。
申報哈爾濱工業大學“教學貢獻獎(青年教師教學優秀獎)”,2019
主持校級課程思政項目“機械製造技術基礎”,2019
哈爾濱工業大學第7屆青年教師教學基本功競賽二等獎,2018年
哈爾濱工業大學機電工程學院青年教師教學基本功競賽一等獎,2018年
黑龍江省高校青年教師教學競賽哈工大選拔賽工科組優秀獎,2017年
主持校級教改項目“有效提升高校青年教師工程實踐教學能力的探討”,2017