科研項目
主持和參與科研項目:
一汽鑄造有限公司,“高導熱灰鑄鐵材料開發”,201609-201711
雲南钛業股份有限公司,國家重點研發計劃項目2016YFB0301202“低成本高耐蝕钛及钛合金管材與高品質钛帶制造技術開發及應用”子課題,“高品質超長耐蝕钛及钛合金鑄錠制備關鍵技術研究及應用”,201607-202006
北京市科委-北京市科技計劃(No. Z161100002616025),“基于藕狀多孔銅材料的CPU散熱器中試研發及示範應用”,201607-201712
浙江拓卡斯機械科技有限公司,“多孔泡沫金屬成形制造技術”,201604-201812
中核四零四有限公司,“感應加熱XF熔煉樣機”,201508-201611
榮陽鋁業(中國)有限公司,“泡沫鋁制備與吸聲降噪應用”,201507-201612
教育部清華大學自主科研計劃,“超輕鎂锂二元共晶合金的定向凝固”,201510-201809
甯波勳輝電器有限公司,“銅微通道材料的制備及液态金屬散熱技術開發”,201501-2017.12
國家自然科學基金(51371104),“定向凝固後脫合金制備微-納雙尺度複合多孔金屬”,201401-201712
科技部國際合作項目,“定向凝固多孔金屬微通道熱沉技術的聯合研發”,201304-201503
國家自然科學基金青年基金(51101092),“用于高熱流密度散熱的藕狀規則多孔金屬微通道熱沉技術研究”,201201-201412
清華大學自主科研,“規則微-納複合多孔金屬的制備及其流動換熱特性”,201007-201306
遼甯融達新材料科技有限公司,“定向凝固多孔金屬材料制備及應用技術”,201012-201212
遼甯融達新材料科技有限公司,“大塊泡沫鋁批量生産技術”,201111-201212
中國空間技術研究院CAST創新基金,“基于藕狀規則多孔結構的微通道散熱技術”,201201-201212
國防科工局民用航天十二五預研項目,“基于藕狀規則多孔結構的高熱流密度散熱技術”,201101-201312
國家自然科學基金-雲南聯合基金(U0837603),“多孔銅基材料結構控制及其力學和熱學性能基礎研究”,200901-201212
北京市自然科學基金(2092017),“藕狀多孔Cu熱沉材料的GASAR工藝制備及導熱性能”,200901-201112
國家自然科學基金(50764061),“固/氣共晶二維定向共生制備放射狀規則多孔金屬基礎研究”,200701-200912
科技部重大基礎研究973計劃(2006CB601204子項),“藕狀多孔金屬消聲材料的制備”,200611-200810
國家自然科學基金(50404002),“金屬/氣體定向共生制備藕狀規則多孔金屬的研究”,200501-200712
科技部重大基礎研究973計劃前期研究專項(2004CCA05100),“金屬/氣體定向共生制備藕狀規則多孔金屬的基礎研究”,200501-200612
航天技術創新基金(03200310101),“金屬/氣體共晶定向凝固制備液體火箭發動機燃油噴注器”,200401-200512
教育部博士點基金(20020003086),“金屬/氣體共晶定向凝固理論研究”,200301-200512
發明專利
[1] 劉源, 卓偉佳, 張華偉, 李言祥. 藕狀多孔金屬的制備裝置和制備方法. 中國發明專利, CN103898347A, 2016-7-6.
代表性論文
[1]Liu D, Zhang HW@, Li YX, Chen X, Liu Y. Effects of Composition and Growth Rate on the Microstructure Transformation of β-Rods / Lamellae / α-Rods in Directionally Solidified Mg-Li Alloy. Materials & Design, 2017, 119: 199-207. (SCI, EI)
[2]Du M1, Zhang HW1, Li YX, Liu Y, Chen X, He Y, Cheng Y. Fabrication of a Hierarchical Trimodal Structure with Nano-Cellular Cu2O, Nano-Porous Cu and Micro-Porous Gasar Cu. Materials Letters, 2016, 164: 583-586. (SCI, EI)
[3]Du M1, Zhang HW1, Li YX, Liu Y, Chen X, He Y. Synthesis of a Bimodal Porous Cu with Nanopores on the Inner Surface of Gasar Pores: Influences of Preparation Conditions. Applied Surface Science, 2016, 360: 148-156. (SCI, EI)
[4]Zhang HW, Li YX, Liu Y, Chen X, Chen LT, He Y, Du M. Heat Transfer Performance of Directional Solidified Gasar Cu Heat Sink. MetFoam 2015, 31 Aug. - 2 Sept. 2015, Barcelona, Spain. Poster.
[5]Du M, Zhang HW, Li YX, Liu Y, Chen X, He Y. Fabrication and Wettability of Monolithic Bimodal Porous Cu with Gasar Macro-Pores and Dealloying Nano-Pores. Applied Surface Science, 2015, 353: 804-810. (SCI, EI)
[6]Du M, Zhang HW@, Li YX@, Liu Y, Chen X, He Y. Depositing and Alloying on the Inner Surface of Gasar Cu Pores by Plating and Annealing Treatment. Applied Surface Science, 2015, 342: 69-75. (SCI, EI)
[7]Liu Y, Zhang HW, Li YX. Effect of Melt Superheat on Structural Uniformity of Lotus-Type Porous Metals Prepared by Unidirectional Solidification. Transactions of Nonferrous Metals Society of China, 2015, 25(3): 1004-1010. (SCI, EI)
[8]Du M, Zhang HW, Li YX. Inner Surface Alloying on Pores of Lotus-Type Porous Copper through Electroless Plating with Supersonic Vibration and Annealing Treatment. Surface and Coatings Technology, 2015, 261: 1-6. (SCI, EI)
[9]陳劉濤, 張華偉, 劉源, 李言祥. 定向凝固多孔銅熱沉傳熱性能的分段強化. 清華大學學報(自然科學版 ), 2014, 54(9): 1250-1254. (CSCD)
[10]Zhang XM, Zhang HW, Li YX. Hybrid Porous Metal of Nano-Micro Double Size and Regular-Random Bimodal. TMS 2014, 16-20 February 2014, San Diego, California, USA. Poster. EPD Congress 2014, 2014, : 367-374. (EI)
[11]Chen LT, Zhang HW, Liu Y, Li YX. Simulation on Heat Transfer Performance of Directionally Solidified Porous Copper Heat Sink. ICAMMS 2012 (International Conference on Advanced Material and Manufacturing Science), Dec. 20-21, 2012, Beijing, China. Advanced Materials Research, 2014, 875-877: 1095-1100. (ISTP, EI)
[12]Zhang HW, Chen LT, Liu Y, Li YX. Experimental Study on Heat Transfer Performance of Lotus-Type Porous Copper Heat Sink. International Journal of Heat and Mass Transfer, 2013, 56(1-2): 172-180. (SCI, EI)
[13]陳劉濤, 張華偉, 劉源, 李言祥. 定向凝固多孔Cu熱沉傳熱性能的理論分析. 金屬學報, 2012, 48(11): 1374-1380. (SCI, EI)
[14]陳劉濤, 張華偉, 劉源, 李言祥. 定向凝固多孔Cu熱沉傳熱性能的實驗研究. 金屬學報, 2012, 48(3): 329-333. (SCI, EI)
[15]Tzamtzis S, Zhang HW, Xia MX, Babu N Hari, Fan ZY. Recycling of High Grade Die Casting AM Series Magnesium Scrap with the Melt Conditioned High Pressure Die Casting (MC-HPDC) Process. Materials Science and Engineering A, 2011, 528(6): 2664-2669. (SCI, EI)
[16]Liang SM, Zhang HW, Xia MX, Chen RS, Han EH, Fan ZY. Microstructure and Mechanical Properties of Melt-Conditioned High-Pressure Die-Cast Mg-Al-Ca Alloy. Transactions of Nonferrous Metals Society of China, 2010, 20(7): 1205-1211. (SCI, EI)
[17]Tzamtzis S, Zhang HW, Babu N Hari, Fan ZY. Microstructural Refinement of AZ91D Die-cast Alloy by Intensive Shearing. Materials Science and Engineering A, 2010, 527(12): 2929-2934. (SCI, EI)
[18]Tzamtzis S, Zhang HW, Liu GJ, Wang Y, Babu N Hari, Fan ZY. Melt Conditioned High Pressure Die Casting (MC-HPDC) of Mg-Alloys. In: EricNyberg, Sean Agnew, Neale Neelameggham, and Mihriban Pekguleryuz, eds. Magnesium Technology 2009, Proceedings of the 2009 TMS Annual Meeting & Exhibition. 15-19 February, 2009, San Francisco, USA: TMS (The Minerals, Metals & Materials Society), 2009, : 91-96.
[19]Patel JB, Zhang HW, Liu GJ, Fan ZY. Melt Conditioned High Pressure Die Casting (MC-HPDC) Process for High Quality Aluminium Components. In: Jürgen Hirsch, Birgit Skrotzki and Günter Gottstein, eds. Aluminium Alloys - Their Physical and Mechanical Properties, Proceedings of the 11th International Conference on Aluminium Alloys (ICAA11). 22-26 September, 2008, Aachen, Germany: DGM (Deutsche Gesellschaft für Materialkunde e.V.), 2008, : 510-516.
[20]Zhang HW, Cao LJ, Bian Z, I. Bayandorian, Fan ZY. Melt Conditioned Twin Roll Casting (MC-TRC) Process for Wrought Aluminium Alloy Strips. In: Jürgen Hirsch, Birgit Skrotzki and Günter Gottstein, eds. Aluminium Alloys - Their Physical and Mechanical Properties, Proceedings of the 11th International Conference on Aluminium Alloys (ICAA11). 22-26 September, 2008, Aachen, Germany: DGM (Deutsche Gesellschaft für Materialkunde e.V.), 2008, : 421-426.
[21]Li YX, Zhang HW, Liu Y. Directional Solidification of Metal-Gas Eutectics for Fabrication of Aligned Porous Metals. In: Lefebvre L P, Banhart J, Dunand D, eds. MetFoam 2007-Proceedings of the 5th International Conference on Porous Metals and Metallic Foams. 5-7 September, 2007, Montreal, Canada: DEStech Publications, Inc., 2008, : 209-212. (ISTP, EI)
[22]張華偉, 李言祥. 金屬熔體中氣泡形核的理論分析. 物理學報, 2007, 56(8): 544-551. (SCI, EI)
[23]張華偉, 李言祥, 劉源. 固/氣共晶定向凝固中的工藝判據. 金屬學報, 2007, 43(6): 589-594. (SCI, EI)
[24]張華偉, 李言祥, 劉源. 氫在Gasar工藝常用純金屬中的溶解度. 金屬學報, 2007, 43(2): 113-118. (SCI, EI)
[25]張華偉, 李言祥, 劉源. Al-H系定向凝固制備多孔Al. 金屬學報, 2007, 43(1): 11-16. (SCI, EI)
[26]張華偉, 李言祥, 劉源. Gasar 工藝獲得均勻藕狀多孔結構的氣壓選擇. 金屬學報, 2006, 42(11): 1171-1176. (SCI, EI)
[27]張華偉, 李言祥, 劉源. 藕狀規則多孔Cu氣孔率的理論預測. 金屬學報, 2006, 42(11): 1165-1170. (SCI, EI)
[28]張華偉, 李言祥, 劉源. Gasar 工藝下難以制得藕狀多孔Al的原因分析. 見: 中國材料研究學會, 編. 2006年材料科學與工程新進展. 北京: 化學工業出版社, 2007, : 572-576.
[29]Liu Y, Zhang HW, Chen X, Li YX. Directional Solidification of Metal-Gas Eutectic and Fabrication of Regular Porous Metals. China Foundry, 2005, 2(3): 184-187. (獲2006 年中國機械工程學會鑄造專業優秀論文銀獎)
[30]張華偉, 李言祥, 劉源. Gasar 工藝中金屬-氫二元相圖的研究. 金屬學報, 2005, 41(1): 55-59. (SCI, EI)
[31]劉源, 李言祥, 張華偉. 藕狀多孔金屬Mg的Gasar工藝制備. 金屬學報, 2004, 40(11): 1121-1126. (SCI, EI)
[32]李言祥, 劉源, 張華偉. GASAR和Gasarite研究進展. 特種鑄造及有色合金, 2004, 136(1): 9-11. (CSCD)