邱敬文 副教授

发布人:日期:2024-09-05浏览数:


个人简介

邱敬文,男,博士,副教授,硕士生导师,2006年6月于中南大学获学士学位,2010年于中南大学获材料学硕士学位(导师:刘咏),2014年7月获中南大学材料学博士学位(导师:黄伯云,刘咏),期间2011-2013年国家公派留学美国常春藤联盟大学达特茅斯学院(Dartmouth College,USA)联合培养博士(导师Ian Baker)。2014年12月-2024年7月份任职湖南科技大学。2024年8月入职yl8cc永利官网。

主要从事粉末冶金钛、铝合金及其复合材料,力学性能和摩擦磨损行为等方面的研究。目前主持国家和湖南省自然科学基金3项,指导国家级大学生创新创业训练计划项目1项,湖南省大学生创新实验项目1项;参与国家级和省级科研课题5项。获批国家发明专利9项。在国内外重要刊物上发表论文近30余篇,其中第一作者或通讯作者发表论文近20篇。担任Nano Letters、Materials Science and Engineering: A等国际著名学术杂志审稿人,国家自然科学基金函评专家,《中国有色金属学报(中英文)》(CSCD/SCI期刊)首届青年编委,中国机械工程学会摩擦学分会第十三,十四届青工委委员。

办公室:yl8cc永利官网格物楼3楼

Email:qjwcsu@foxmail.com

学术贡献

1. 高性能粉末冶金钛、铝合金及其复合材料制备

2. 钛、铝合金及其复合材料力学性能和摩擦磨损行为研究

教学情况

本科生教学:教育实习带队教师

承担课题

1. 主持湖南省湘西州揭榜挂帅项目:交通装备制动系统用高性能铝基复合材料复杂构件研发与产业化(2022JBGS0001)(排名第二),在研,2023-2026,项目总经费400万,揭榜方总经费160万。

2. 主持企业技术开发项目:大尺寸稳定铝基复合材料结构件的开发,在研,2023-2025,项目经费60万。

3. 主持国家自然科学基金青年项目: 粉末冶金钛合金表面纳米复合强化及摩擦磨损机理研究 (51604112),2017-2019,21万,已结题。

4. 主持湖南省自然科学基金面上项目:短时高温钛合金制备及其硅化物析出强化机制(2021JJ30262),2021-2023,5万,已结题。

5. 主持湖南省自然科学基金青年项目:TiAl基金属间化合物表面纳米梯度耐磨层形成机制及其摩擦行为研究(2017JJ3089),2017-2019,5万,已结题。

6. 承担江苏省科学技术厅“双创计划”科技副总计划(FZ20190778),10万,已结题。

7. 指导国家级大学生创新创业训练项目:放电等离子烧结制备超细晶复合层状纯钛结构材料,2017-2018,3万,已结题。

代表性论文

[1] D.Pan, B. Liu*, R. Xu, J. Qiu*, C.Liu, Predicting Workability of a Low-Cost Powder Metallurgical Ti–5Al–2Fe–3Mo Alloy Using Constitutive Modeling and Processing Map. Materials 2021, 14, 836.(SCI 2区)

[2] R. Guo, B. Liu*, R. Xu, Y. Cao,J. Qiu*, F. Chen, Z. Yan, Y. Liu, Microstructure and mechanical properties of powder metallurgy high temperature titanium alloy with high Si content, Materials Science and Engineering: A, 777 (2020) 138993.(SCI 1区)

[3] X. Lu, J. Li*, X. Chen,J. Qiu*, Y. Wang, B. Liu, Y. Liu, M. Rashad*, F. Pan, Mechanical, tribological and electrochemical corrosion properties of in-situ synthesized Al2O3/TiAl composites, Intermetallics, 120 (2020) 106758.(SCI 1区)

[4] J. Qiu, Z. Fu, B. Liu, Y. Liu, J. Yan, D. Pan, W. Zhang, I. Baker, Effects of niobium particles on the wear behavior of powder metallurgical γ-TiAl alloy in different environments,Wear (2019), 434–435(SCI 1区)

[5] Jingwen Qiu, Canxu Zhou, Bin Liu, Yong Liu, Huizhong Li, Xiaopeng Liang,Xiang Zan,Precipitation behavior of Ti-45Al-3Fe-2Mo-0.5C intermetallics after creep tests at 750℃,Materials Characterization(2019),155,109825(SCI 1区)

[6] J. Qiu, Z. Fu, B. Liu, Y. Liu, J. Yan, D. Pan, W. Zhang, Wear Behavior of P/M High Nb Containing γ-TiAl Alloy in Different Environments, Metals and Materials International, (2019).25(6),1564-1573.(SCI 1区)

[7] W.-d. Zhang, Z. Wu, Y. Liu, H. Bei, B. Liu,J. Qiu*, Plastic deformation mechanism of Ti–Nb–Ta–Zr–O alloy at cryogenic temperatures, Materials Science and Engineering: A, (2019) 138293.(SCI 1区)

[8] Wei-dong Zhang, Jun-ye Ren, Yong Liu,Jingwen Qiu*. Microstructure and mechanical properties of cold drawn Ti-Nb-Ta-Zr-O wires for biomedical applications, Metals and Materials International, (2019),(SCI 1区)

[9] Rui Zhou, Mou Li,Jingwen Qiu*, Sihui Ouyang, Di Pan, Chengshang Zhou,Yong Liu,Effect of Al and Sc on the mechanical behavior of FeCoNi multi-element alloys, Transactions of Nonferrous Metals Society of China, (2019), 29(10), 2109−2116(SCI 1区)

[10] Li Liangsheng,Qiu Jingwen *, Guo Wenmin, Liu Bin, Zhou Rui, Li Zheng, Liu Yong, Microstructure and mechanical property evolution during annealing of a cold-rolled metastable powder metallurgy high entropy alloy, Entropy, (2019), 21,833(SCI 2区)

[11] J. W. Qiu, D. Pan, Y. Liu, I. Baker and W. D. Zhang, Effects of environment on the wear behavior of p/m Ti-47Al-2Cr-0.2Mo, Key Engineering Materials 770 ,2018, 106-115. (EI)

[12] J. Qiu,Y. Liu,F. Meng,I. Baker,P.R. Munroe,Effects of environment on dry sliding wear of powder metallurgical Ti-47Al-2Cr-2Nb-0.2 W,Intermetallics,2014,53:10-19.(SCI 1区)

[13] J. Qiu,I. Baker,F.E. Kennedy,Y. Liu,P.R. Munroe,The effects of stoichiometry on the dry sliding wear of FeAl,Intermetallics,2013,40(0):19-27.(SCI 1区)

[14] J. Qiu, Y. Liu, B. Liu, B. Wang, E. Ryba, H. Tang, Optimizing the hot-forging process parameters for connecting rods made of PM titanium alloy, Journal of Materials Science, 47 (2012) 3837-3848.(SCI 1区)

[15] J.W. Qiu, Y. Liu, Y.B. Liu, B. Liu, B. Wang, E. Ryba, H.P. Tang, Microstructures and mechanical properties of titanium alloy connecting rod made by powder forging process, Materials & Design, 33 (2012) 213-219.(SCI 1区)

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