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刘伟 副教授

 

 

 

通讯方式

  • E-mail: 317127238@qq.com, Cell-phone: 18565348721
  • 通讯地址:广东省广州市番禺区广州大学城外环西路100号广东工业大学实验室三号楼209

社会兼职与获奖

  • 中国硅酸盐学会陶瓷分会理事
  • 中国硅酸盐学会特种陶瓷分会理事
  • 日本学术振兴会(JSPS)fellow
  • 广州市珠江新星

海外经历

  • 2015.12-2015.12   美国南加州大学短期访问学者
  • 2013.07-2014.07   日本东北大学金属材料研究所(IMR)日本学术振兴会(JSPS)博士后研究员 
  • 2012.08—2012.11   瑞典斯德哥尔摩大学  短期访学  

教育背景

  • 2008.09—2013.07 清华大学材料科学与工程系   博士,直接攻博
  • 2004.09—2008.07 湖南大学材料学院  学士  

 

科研成果简介

长期从事陶瓷3D打印、陶瓷胶态成型、透明陶瓷、放电等离子烧结、烧结动力学等领域的研究并取得了优秀的学术成果。在国内外学术期刊上共发表学术论文60余篇,其中包括陶瓷材料顶尖杂志J. Am. Ceram. Soc., J. Euro. Ceram. Soc., Scripta Mater.等20余篇二区论文。申请中国发明专利24项并已授权12项,申请PCT专利12项及授权美国专利1项。分别主持国家自然科学基金、日本学术振兴会外国人博士后研究项目、广州市珠江新星计划等课题,并参与国家自然科学基金、国家863计划、广东省科技厅项目共10余项。

代表性论文及专利

  • 期刊论文

Published(Accepted) Papers

  1. Wei Liu, Zhipeng Xie, Xianfeng Yang, Yin Wu, Cui Jia, Tiezhu Bo, Linlin Wang, “Surface Modification Mechanism of Stearic Acid to Ceramic Powders Induced by Ball Milling for Water-Based Injection Molding,” Journal of the American Ceramic Society, 94[5], 1327-30 (2011). (SCI二区, IF:2.787)
  2. Wei Liu, Zhipeng Xie, Guanwei Liu, Xianfeng Yang, “Novel Preparation of Translucent Alumina Ceramics Induced by Doping Additives via Chemical Precipitation Method,” Journal of the American Ceramic Society, 94[10], 3211-3215(2011). (SCI二区, IF: 2.787)
  3. Wei Liu*†,Haidong Wu, Maopeng Zhou, Rongxuan He, Qiangguo Jiang, Ziwei Wu, Yanling Cheng, Xuan Song, Yong Chen, Shanghua Wu*, “Fabrication of fine-grained alumina ceramics by a novel process integrating stereolithography and liquid precursor infiltration processing,” Ceramics International, 42[15], 17736–17741 (2016) .(SCI二区, IF: 2.758)
  4. Wei Liu, Zhipeng Xie, Tiezhu Bo, Xianfeng Yang, “Injection molding of surface modified powders with high solid loadings: A case for fabrication of translucent alumina ceramics,” Journal of the European Ceramic Society, 31[9], 1611-17 (2011). (SCI二区, IF:2.933)
  5. Wei Liu, Zhipeng Xie, Cui Jia, “Surface Modification of Ceramic Powders by Titanate Coupling Agent for Injection Molding Using Partially Water Soluble Binder System,” Journal of the European Ceramic Society, 32[5], 1001-06 (2012). (SCI, IF: 2.933)
  6. Wei Liu, Xianfeng Yang, Zhipeng Xie, Cui Jia, Linlin Wang, “Novel Fabrication of Injection-moulded Ceramics Parts with Large Section via Partially Water-debinding Method”, Journal of the European Ceramic Society, 32[10], 2187-2191(2012, IF:2.360). (SCI二区, IF: 2.933)
  7. Haidong Wu, Wei Liu*†, Rongji Huang, Rongxuan He, Meipeng Huang, Di An, Hezhen Li, Qiangguo Jiang, Qiangguo Jiang, Zhuo Tian, Xuanrong Ji, Zhipeng Xie Shanghua Wu*,“Fabrication of high-performance Al2O3-ZrO2 composite by a novel approach that integrates stereolithography-based 3D printing and liquid precursor infiltration”, Materials Chemistry and Physics, 209, 31-37 (2018) (SCI三区, IF: 2.084).
  8. Maopeng Zhou, Wei Liu*†, Haidong Wu, Xuan Song, Yong Chen, Lixia Cheng, Fupo He, Shixi Chen, Shanghua Wu*, “Preparation of a defect-free alumina cutting tool via additive manufacuring based on stereolithography- Optimaization of the drying and debinding process”, Ceramics International, 42[10], 11598-11602 (2016). (SCI二区, IF: 2.758).
  9. Ziwei Wu, Wei Liu*, Haidong Wu, Rongji Huang, Rongxuan He, Qiangguo Jiang, Yan Chen, Xuanrong Ji, Zhuo Tian, Shanghua Wu*, “Research into the mechanical properties, sintering mechanism and microstructure evolution of Al2O3-ZrO2 composites fabricated by a stereolithography-based 3D printing method”, Materials Chemistry and Physics, 207, 1-10 (2018) (SCI二区, IF: 2.084).
  10. Wei Liu, Tiezhu Bo, Zhipeng Xie, Yin Wu, Xianfeng Yang, “Fabrication of injection moulded translucent alumina ceramics via pressureless sintering,” Advances in Applied Ceramics, 110[4], 251-54 (2011). (SCI四区, IF:0.871)
  11. Wei Liu*, Zhipeng Xie, Lixia Cheng, “Sintering Kinetics Window: An Approach to the Densification Process during the Preparation of Transparent alumina”, Advances in Applied Ceramics,114[1],33-38 (2015) . (SCI四区, IF:1.163) 
  12. Haidong Wu, Wei Liu†*, Rongxuan He, Ziwei Wu, Qiangguo Jiang, Xuan Song, Yong Chen,Lixia Cheng,Shanghua Wu, “Fabrication of dense zirconia-toughened alumina ceramics through a stereolithography-based additive manufacturing”, Ceramics International, 43[1], 968-972 (2017) (SCI二区, IF: 2.758)

 (*-----Corresponding author, -----equal contribution to the work )

  • 发明专利

中国发明专利(授权)

  1. 谢志鹏, 杨现锋, 曾兴华, 曾国华, 贾翠, 刘伟. 一种注射成型制造齿状异形陶瓷部件的方法,中国发明专利,专利号:ZL 200910090645.8,授权日:2012.5.16.
  2. 谢志鹏, 刘伟, 薄铁柱. 一种透明氧化铝陶瓷的制造方法及其应用,中国发明专利,专利号: ZL 201010581759.5 (中国发明专利号) ,授权日期:2013.8.21.
  3. 伍尚华、陈健、邓欣、刘伟、弓满峰,一种表面硬化的梯度硬质合金及其制备方法,中国发明专利,专利号: ZL 201510478499.1,授权日:2015.8.6.
  4. 伍尚华、陈健、邓欣、刘伟、弓满峰,一种表面软化的梯度硬质合金及其制备方法,中国发明专利,专利号: ZL 201510478559.1,授权日:2017.4.26
  5. 伍尚华、陈健、邓欣、刘伟、刘汝德、陈少华,金刚石复合涂层、具有该复合涂层的梯度超细硬质合金刀具及其制备方法,中国发明专利,专利号:ZL 201610083495.8,授权日:2018.1.19
  6. 伍尚华,陈健,邓欣,刘伟,何福坡,陈少华,刘汝德,TiAlSiZrN基复合涂层、具有该复合涂层的梯度超细硬质合金刀具及其制备方法,中国发明专利,专利号:ZL 201610083507.7,授权日:2018.1.19.
  7. 伍尚华,陈健,邓欣,刘伟,陈少华,刘汝德,氧化铝系复合涂层、具有该复合涂层的梯度超细硬质合金刀具及其制备方法,中国发明专利,专利号:ZL 201610083496.2,授权日: 2018.1.19.
  8. 伍尚华、周茂鹏、刘伟、伍海东、程利霞、古尚贤,一种光固化成型的高致密陶瓷的制备方法, 中国发明专利,专利号:ZL 201510590675.0,授权日:2018.3.9
  9. 伍尚华、 伍海东、刘伟 周茂鹏、吴子薇、 程利霞、 陈仕晰,一种齿状异形陶瓷的制备方法,中国发明专利,专利号:ZL 201510882310.5,授权日:2018.2.9
  10. 伍尚华、伍海东、周茂鹏、刘伟吴子薇、程利霞、李强,一种层状陶瓷的制备方法,中国发明专利, 专利号:ZL 201510884803.2,授权日:2018.2.9
  11. 伍尚华、蒋强国、郭伟明、古尚贤、周茂鹏、刘伟、程利霞、王成勇、王启民,一种陶瓷的织构化方法,中国发明专利,专利号:201510414902.4,授权日:2018.1.16
  12. 伍尚华、陈健、邓欣、刘伟、何福坡、陈少华、刘汝德,氮化硼系复合涂层、具有该复合涂层的梯度超细硬质合金刀具及其制备方法,中国发明专利,专利号: ZL 201610083497.7,授权日期:2018. 4.3

 

PCT国际发明专利:

  1. 刘伟、伍海东、陈健、白帅星、伍尚华,一种二步加压烧结制备透明氧化钇陶瓷部件的方法,PCT国际发明专利,申请号:PCT/CN2016/075448,优先权号:2016100794749,国际申请日:2016.03.03
  2. 刘伟、陈健、周茂鹏、伍海东、伍尚华,一种注射成型制备透明陶瓷部件的方法,PCT国际专利,申请号:PCT/CN2016/075447,优先权号:201610079680X,国际申请日:2016.03.03
  3. 刘伟、伍海东、周茂鹏、伍尚华、黄家威, 一种净尺寸复杂形状透明陶瓷件的制备工艺,PCT国际专利,申请号:PCT/CN2016/073023,优先权号:2016100255955,国际申请日:2016.01.31

 

美国发明专利(授权)

  1. Shanghua Wu,Qiangguo Jiang,Weiming Guo,Shangxian Gu,Maopeng Zhou,Wei Liu,Lixia Cheng,Bo Wang,Chengyong Wang,  Qimin Wang,Hot Pressing Flowing Sintering for Preparation of Textured Ceramics and the Method of Making the Same, United States Patent Application,Patent No. US 9708224B2, July 18, 2017.(美国发明专利,已授权)

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