武漢理工大學(xué)物流工程學(xué)院導(dǎo)師:熊新紅

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武漢理工大學(xué)物流工程學(xué)院導(dǎo)師:熊新紅

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武漢理工大學(xué)物流工程學(xué)院導(dǎo)師:熊新紅 正文


  姓名:熊新紅
  性別:男
  出生年月:1976.10
  學(xué)歷:博士研究生
  學(xué)位:博士
  職稱、職務(wù):副教授/系教學(xué)主任
  辦公電話:027-86551180
  其他聯(lián)系電話:15327338960
  E-mail:xiongxh@whut.edu.cn

  個人簡歷:
  2007.6華中科技大學(xué)獲工學(xué)博士學(xué)位
  2000.7武漢理工大學(xué)獲工學(xué)學(xué)士學(xué)位

  主要研究方向:
  先進(jìn)制造(金屬零件直接快速制造/金屬模具快速制造/高能束成形)
  液態(tài)模鍛
  機(jī)械工程材料(高溫合金/焊接裂紋控制/金屬腐蝕及防護(hù))

  主要成果簡述:
  第一作者發(fā)表學(xué)術(shù)論文二十余篇,其中被SCI檢索3篇,EI檢索4+3篇,近期代表論文有:
  1.Xiong Xinhong, Zhang Haiou, Wang Guilan, Wang Guoxian. Hybrid plasma deposition and milling for an aeroengine double helix integral impeller made of superalloy. Robotics and Computer Integrated Manufacturing. 2010. Vol26 P291-295 (SCI/EI)
  2.Metal direct prototyping by using hybrid plasma deposition and milling. Journal of Materials Processing Technology. 2009. Vol.209 No.1 P124-130 (SCI/EI)
  3.PDM直接成形GH163高溫合金零件組織性能。華中科技大學(xué)學(xué)報(自然科學(xué)版)2009年第2期。Vol.37 No.2 P78-80 (EI)
  4.等離子熔積直接成形GH163高溫合金零件組織研究。中國機(jī)械工程。2009.Vol.20 No.6 P733-737
  5.A new method of direct metal prototyping: hybrid plasma deposition and milling. Rapid Prototyping Journal. 2008 Vol.14 No.1 P53-56 (SCI/EI)
  6.HPDM直接制造金屬零件的表面光整技術(shù)。華中科技大學(xué)學(xué)報(自然科學(xué)版)2007年 10期 P87-90(EI)
  7.等離子熔積/銑削復(fù)合直接制造高溫合金雙螺旋整體葉輪。中國機(jī)械工程。2007.Vol.18 P1723-1726(EI)
  8.Direct Rapid Prototyping of Metal Parts by Hybrid of Plasma Deposition and Milling Machine. Computer Aided Drafting, Design and Manufacturing. 2006,Vol.16 No.2 P18~22.
  9.等離子熔積成形與銑削光整復(fù)合直接制造金屬零件技術(shù)。中國機(jī)械工程。2005.Vol20. P1863~186(EI)
  參編教材一部,個人撰寫12萬字。
  金屬工藝學(xué)(教材)。武漢理工大學(xué)出版社2009年2月。ISBN:978-7-5629-2893-5.(參編第10、11、12、20章及第19章1、2、5節(jié))

  在研項目(名稱、來源):
  國家軍工配套項目(200704PT02);
  校企合作項目“組合式干燥器本體零件的模具設(shè)計與制造研究”等。

  Xiong Xinhong Ph.D/Associate Professor/Director of Department of Machine Design and Manufacturing
  PHONE:086-15327338960
  EMAIL:xiongxh@whut.edu.cn

  EDUCATION:
  Ph.D. Material Processing Engineering* June 2007
  Huazhong University of Science & Technology, P. R. China
  B.S. Mechanical Engineering July 2000
  Wuhan University of Technology, P. R. China
  RESEARCH INTERESTS:
  Rapid Prototyping &Tooling (RP and RT)
  Advanced Manufacturing
  Super Alloy Material
  CAD/CAM/CAE

  RESEARCH & PROJECTS:
  1.Project of Dongfeng Automobile Co,LTD, Research on the Mould Design and Manufacturing of Combined Dryer Body Parts, sponsored by Dongfeng Automobile Co,LTD, Sep. 2008-Sep. 2011 (Team Leader: Xiong Xinhong), Pending;
  2.National 863 Plans Project, Research on the Virtual Rapid Manufacturing System of Plasma Spraying to Make the Automobile Mould(863-511-943-017), sponsored by the Ministry of Science and Technology of the P.R.C, Sep. 2005-Sep. 2008 (Team Leader: Zhang Haiou), Completed;
  3.Project of National Natural Science Foundation, Base Research on Techniques of High-temperature Alloy Powder Deposition by Hybrid Plasma-laser (50075032),sponsored by National Natural Science Foundation of China, Sep. 2005-Sep. 2008 (Team Leader: Zhang Haiou), Completed;
  4.Project of Defense Advanced Research, Research on Deposition Formed by Hybrid Plasma-laser (41318.3.3.6), sponsored by The General Reserve Department of PLA, Sep. 2004-Sep. 2007 (Team Leader: Zhang Haiou), Completed;
  5.Project of Defense Advanced Research, Super Alloy Part Manufactured by the Technology of Hybrid Laser and Plasma (2003AA305801), sponsored by Commission on Science, Technology, and Industry for National Defense, Sep. 2003-Sep. 2005 (Team Leader: Zhang Haiou), Completed;
  6.Key Projects in Hubei province Research on Manufacture of Motorcycle Covering Mold by Plasma Spraying(20002P0201),sponsored by China Hubei Provincial Science & Technology Department, Sep. 2000-Sep. 2003 (Team Leader: Zhang Haiou), Completed.

  PUBLICATIONS(partly):
  [1] Xiong Xinhong, Zhang Haiou, Wang Guilan, Wang Guoxian. Hybrid plasma deposition and milling for an aeroengine double helix integral impeller made of superalloy. Robotics and Computer Integrated Manufacturing. 2010. Vol26 P291-295
  [2] Xiong Xinhong, Zhang Haiou, Wang Guilan, Metal direct prototyping by using hybrid plasma deposition and milling, Journal of Materials Processing Technology, 2009. Vol.209 No.1 P124-130
  [3] Xiong Xinhong, Zhang Haiou, Wang Guilan, Xu Jipeng, Structure property of GH163 super alloy parts directly formed by PDM. Journal of Huazhong University of Science and Technology (Natural Science Edition), 2009. Vol37 P78-80.
  [4] Xiong Xinhong, Zhang Haiou, Luo Jixiang,etc Research on Microstructure of GH163 Super Alloy Part Directly Manufactured by PDM. China Mechanical Engineering, 2009. Vol20 P733-737
  [5] Xiong Xinhong, A new method of direct metal prototyping: Hybrid plasma deposition and milling. Rapid Prototyping Journal, 2008. Vol14 P53-56
  [6] Xiong Xinhong, Zhang Haiou, Wang Guilan, Research on surface finishing of metal part manufactured by HPDM, Journal of Huazhong University of Science and Technology (Natural Science Edition). 2007. Vol35 P87-90
  [7] Wu Shengchuan, Zhang Haiou, Wang Guilan, Xiong Xinhong, Plasma deposition dieless manufacturing of turbine parts: Thermal stress control and process optimization. Transactions of the China Welding Institution, 2007. Vol28 P49-52+56
  [8] Xiong Xinhong, Zhang Haiou, Wang Guilan,Directly manufacturing of superalloy double helix integrated impeller by hybrid plasma deposition and milling. China Mechanical Engineering, 2007. Vol18 P1723-1726
  [9] Xiong Xinhong, Zhang Haiou, Wang Guilan, Direct Rapid Prototyping of Metal Parts by Hybrid of Plasma Deposition and Milling Machine. Computer Aided Drafting, Design and Manufacturing (CADDM). 2006, Vol16 P18-22
  [10] Xiong Xinhong, Zhang Haiou, Wang Guilan, Research on Manufacture of Motorcycle Covering Mold by Plasma Spraying. Proceedings of 2005 Mori Seiki 2nd International Conference on Die & Mould Technology. China Machine Press. 2005, ISBN 7-111-04305-7/TG•1557. P188-191.
  [11] Zhang Haiou, Xiong Xinhong,Wang Guilan, Chen Jing, Direct manufacturing technology of metal parts by hybrid plasma deposition shaping and milling finishing. China Mechanical Engineering, 2005, Vol16 P1863-1866

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