张冰
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资料介绍
个人简历
本科和硕士毕业于哈尔滨工业大学,博士毕业于香港理工大学。主要从事新材料与新结构、FRP复合材料在土木工程中的应用、钢-混凝土组合结构等方面的研究。目前主持基金项目6项,发表中英文学术论文40余篇。教育经历2003.09-2007.07,哈尔滨工业大学,土木工程,学士2005.08-2006.01,香港大学,土木工程,交换生2007.09-2009.07,哈尔滨工业大学,结构工程,硕士2009.08-2014.07,香港理工大学,结构工程,博士工作经历2013.03-2013.07,澳大利亚卧龙岗大学,访问学者2014.07-2015.07,香港理工大学,副研究员(Research Associate)2015.07-2020.07,南京工业大学,助理教授、副教授2019.07-2020.07,香港理工大学,研究员(Research Fellow)2020.07-今,哈尔滨工业大学(深圳),副教授基金项目国家自然科学基金面上项目,51978332,大尺寸FRP-混凝土-钢组合空心柱的抗冲击性能试验及理论研究,2020.01.01-2023.12.31,主持。国家自然科学基金青年项目,51608263,椭圆形FRP-混凝土-钢组合空心柱的截面优化和抗震性能研究,2017.01.01-2019.12.31,主持。江苏省自然科学基金青年项目,BK20160998,矩形FRP-混凝土-钢组合空心柱的约束机理及静动力性能研究,2016.07.01-2019.06.30,主持。江苏省教育厅面上项目,16KJB560005,椭圆形FRP-混凝土-钢组合柱的约束机理及抗震性能,2016.07.01-2018.06.30,主持。南京工大建设工程技术有限公司项目,20154588,水下/潮湿环境下应用FRP对钢筋混凝土柱的加固技术研究,2015.07.01-2018.06.30,主持。南京工业大学科研启动基金,纤维缠绕角对FRP约束混凝土轴压性能的影响,2015.10-2018.10,主持。南京工业大学教学改革科研项目,钢结构设计原理国际化教学研究,2017.12-2018.12,主持。十三五国家重点研发计划,2017YFC0703405-2,高性能组合结构体系研究与示范应用 组合结构城市桥梁抗震抗冲击性能及设计方法研究,2017.07.01-2020.06.30,参与。国家自然科学基金面上项目,51678295,胶合木-混凝土组合梁抗火性能及设计方法研究,2017.01.01-2020.12.31,参与。国家自然科学基金面上项目,51778283,空间结构的金属节点轻量化设计与智能制造的研究,2018.01.01-2021.12.31,参与。国家自然科学基金面上项目,51778286,新型拉挤多腔复材管-混凝土组合柱约 束机理与受力性能,2018.01.01-2021.12.31,参与。江苏省自然科学基金面上项目,BK20171469,新型复材管组合约束混凝土柱受力机理与承载性能研究,2017.07.01-2020.06.30,参与。国家自然科学基金青年项目,50808053,两边连接钢板组合剪力墙及其结构体系性能分析与设计,2009.01.01-2011.12.31,参与。研究领域
""近期论文
Composites for Construction-ASCE, 10.1061/(ASCE) CC.1943-5614.0000523, 04014060.Zhang, B., Teng, J.G. and Yu, T. (2015). “Experimental behavior of hybrid FRP-concrete-steel double-skin tubular columns under combined axial compression and cyclic lateral loading”, Engineering Structures, 99, 214-231. Zhang, B., Teng, J.G. and Yu, T. (2017). “Compressive behavior of double-skin tubular columns with high-strength concrete and a filament-wound FRP tube”, Journal of Composites for Construction-ASCE, doi: 10.1061/(ASCE)CC.1943-5614.0000800. Teng, J.G., Zhang, B., Zhang, S.S. and Fu, B. (2018) “Steel-free hybrid reinforced bars for concrete structures”, Advances in Structural Engineering, 21(16):2617-2621.Yu, T., Zhang, B., Cao, Y.B. and Teng, J.G. (2012). “Behavior of hybrid FRP-concrete-steel double-skin tubular columns subjected to cyclic axial compression”, Thin-Walled Structures, 61, 196-203.Yu, T., Zhang, B. and Teng, J.G. (2015). “Unified cyclic stress–strain model for normal and high strength concrete confined with FRP”, Engineering Structures, 102, 189-201.Zhang, B., Hu, X.M., Zhao, Q., Huang, T., Zhang, N.Y., and Zhang, Q.B. (2019), “Effect of fiber angles on normal- and high-strength concrete-filled FRP tubes under monotonic axial compression”, Advances in Structural Engineering, doi:10.1177/1369433219886082. Zhang, B., Feng, G.S., Wang, Y.L., Lai, C.C., Wang, C.C., and Hu, X.M. (2019) “Elliptical FRP-concrete-steel double-skin tubular columns under monotonic axial compression”, Advances in Polymer Technology, doi.org/10.1155/2020/7573848.Zhang, B., Zhao, J.L., Huang, T., Zhang, N.Y., Zhang, Y.J., and Hu, X.M. (2019) “Effect of Fiber Angles on Hybrid FRP-Concrete-Steel Double-Skin Tubular Columns under Monotonic Axial Compression”, Advances in Structural Engineering, doi.org/10.1177/1369433219895916.Zhang, B., Qi, Y.J., Huang, T., Zhang, Q.B., Hu, Y. and Hu, X.M. (2020) “Effect of Fiber Angles on Hybrid Double-Tube Concrete Columns under Monotonic Axial Compression”, Advances in Civil Engineering, doi.org/10.1155/2019/2363185..Zhang, B., Hu, X.M., Wei, W., Zhang, Q.B., Zhang, N.Y., Zhang, Y.J. (2020) “Effect of cross-sectional aspect ratio on rectangular FRP-concrete-steel double-skin tubular columns under axial compression”, Advances in Polymer Technology, doi.org/10.1155/2020/1349034.Zhang, B., Yu, T., Teng, J.G. (2020) “Behavior and Modelling of FRP-Concrete-Steel Hybrid Double-Skin Tubular Columns under Repeated Unloading/Reloading Cycles”, Composite Structures.Fang, H., Xu, X., Liu, W.Q., Qi, Y.J., Bai, Y., Zhang, B. and Hui, D. (2015) “Flexural behavior of composite concrete slabs reinforced by FRP grid facesheets”, Composites Part B: Engineering,92:46-62. Fang, H., Mao, Y.F., Liu, W.Q., Zhu, L. and Zhang, B. (2016) “Manufacturing and evaluation of large-scale composite bumper system for bridge pier protection against ship collision”, Composite Structures, 158:187-198.Guo, Z.G., Xu, Z.W., Chen, C., Zhang, B., Lehman. D.E. and Cao, S.Y. (2017) “Behavior of GFRP retrofitted reinforced concrete slabs subjected to conventional explosive blast”, Materials and Structures, 50:236.Zhang, J., Hu, X.M., Kou, L.Y., Zhang, B., Jiang, Y.C. and Yu. H.H. (2018) “Experimental study of the short-term and long-term behavior of perfobond connectors”. Journal of Constructional Steel Research, 150: 462-474.张冰,黄涛(2017)“FRP 管-混凝土-钢管组合双壁空心柱的抗震性能”,南京工业大学学报(自然科学版),5, 140-145.张冰,齐玉军,熊伟(2017)“木芯复材拉挤成型轴压性能及其工程应用”,材料科学与工程学报,35 (6),982-986. 张冰,曹阳,黄涛,张婧,江雨辰,胡夏闽(2017)“足尺胶合木-轻骨料混凝 土组合梁的弯曲性能试验研究”,建筑结构学报,38 (S1), 297-301. 张冰,黄涛,徐晓晖,冯贵森,魏威,胡夏闽(2017)“带双排栓钉的钢-混凝土组合梁 的纵向抗剪试验研究”,建筑结构学报,38 (S1), 324-329.张冰,孙运楼,齐玉军(2018)“基于数值试验的FRP约束混凝土圆柱轴压性能研究”,玻璃钢/复合材料,1, 50-59. 杜浩,张冰,胡夏闽,寇立亚,夏煜 (2017)“钢-混凝土组合梁螺栓连接件的 抗剪性能试验研究”, 建筑结构学报,2017, 38 (S1), 308-314.张婧,胡夏闽,张冰,李林,宗文睿 (2017)“拉力作用下部分外包钢-混凝土组合构件受剪性能试验研究”,建筑结构学报,2017, 38 (S1), 349-354. 胡夏闽,张婧,张冰,赵庆,刘加荣(2018) “H 型钢腹板焊接栓钉的部分外包混凝土组合构件 纵向受剪性能试验研究”, 建筑结构学报,39 (3), 158-166.王汉成,杜浩,胡夏闽,张冰(2019)“胶合木-混凝土组合梁斜交螺钉连接件抗剪刚度计算方法研究”,建筑结构学报,40 (S1),347-353.张婧,寇立亚,胡夏闽,张冰,王采. (2018)“PBL连接件在长期荷载作用下的试验研究”, 工业建筑,48 (4), 158-166.郭凯凯,姚明丽,张冰,李选,胡夏闽. (2018)“钢梁-混凝土柱单剪板连接节点的初始转动刚度计算”,工业建筑,48 (10), 173-178.江雨辰,胡夏闽,曹雪娇,洪万,张冰. (2016)“胶合木-混凝土组合梁螺钉连接件推出试验研究”,南京工业大学学报(自然科学版),38 (5), 74-80. 高正平,黄士君,黄凤华,张冰,刘海,张大长. (2019)“超高大跨越输电铁塔高空构件吊装施工安全风速”,南京工业大学学报(自然科学版),41 (2), 206-211.Zhang, B., Yu, T. and Teng, J.G. (2011). “Axial compression tests on hybrid double-skin tubular columns filled with high strength concrete”, Proceedings, Third International Postgraduate Conference on Infrastructure and Environment, 11-12 July, Hong Kong, China, 171-176.Zhang, B., Teng, J.G. and Yu, T. (2012). “Behaviour of hybrid double-skin tubular columns subjected to combined axial compression and cyclic lateral loading”, Proceedings, 6th International Conference on FRP Composites in Civil Engineering, 13-15 June, Rome, Italy, in CD-Rom.Zhang, B., Teng, J.G. and Yu, T. (2012). “Hybrid double-skin tubular columns filled with high strength concrete under axial monotonic compression”, Proceedings, ACUN-Composites and Nanocomposites in Civil, Offshore and Mining Infrastructure, 14-16 November, Melbourne, Australia, 89-94. Zhang, B., Yu, T. and Teng, J.G. (2014). “Cyclic axial compression tests on concrete-filled FRP tubes”, Proceedings, 7th International Conference on FRP Composites in Civil Engineering, 20-22 August, Vancouver, Canada.Zhang, B., Yu, T. and Teng, J.G. (2014). “Static and seismic behaviour of hybrid FRP-concrete-steel double-skin tubular columns”, Proceedings, Second International Conference on Sustainable Urbanization (ICSU 2015), 7-9 January, Hong Kong, China.Zhang, B., Yu, T., Teng, J.G. and Lin, G. (2015). “Numerical simulation of hysteretic behaviour of hybrid FRP-concrete-steel double-skin tubular columns”, Proceedings, The 12th International Symposium on Fiber Reinforced Polymers for Reinforced Concrete Structures (FRPRCS-12) & The 5th Asia-Pacific Conference on Fiber Reinforced Polymers in Structures (APFIS-2015) Joint Conference, 14-16 December 2015, Nanjing, China.Zhang, B., Fang, H., Zhu, L., Qian, Z., Liu, W.Q. and Zhuang, Y. (2017) “Experimental study of foam-filled lattice composite panels under low-velocity impact”, The 6th Asia-Pacific Conference on FRP in Structures, 19-21 July, Singapore, in CD-Rom.Teng, J.G., Zhang, B., Zhang, S.S. and Fu, B. (2017) “Steel-free hybrid reinforced bars for concrete structures”, The 6th Asia-Pacific Conference on FRP in Structures, 19-21 July, Singapore, in CD-Rom.Yu, T., Cao, Y.B., Zhang, B. and Teng, J.G. (2012). “Hybrid FRP- concrete-steel double-skin tubular columns: cyclic axial compression tests”, Proceedings, 6th International Conference on FRP Composites in Civil Engineering, 13-15 June, Rome, Italy, in CD-Rom.Teng, J.G., Zhang, S.S., Xiao, Q.G., Fernando, D. and Zhang, B. (2014). “Performance enhancement of bridges and other structures through the use of fiber-reinforced polymer (FRP) composites: some recent Hong Kong research”, Proceedings, 7th International Conference on Bridge Maintenance, Safety and Management, 7-11 July, Shanghai, China.Du, H., Hu, X.M., Zhang, B. and Yao M.L. (2017) “Numerical simulation on behaviour of timber-concrete composite beams in fire”, IOP Conference Series: Earth and Environmental Science, Volume 81, conference 1.Zhang, J., Hu, XM., Hong, W., Zhang, B. and Zhang, CL. (2019). “Experimental Study on Bending Performance of Composite Sandwich Panel with New Mixed Core” MATEC Web of Conferences. 275. 02018. 10.1051/matecconf/201927502018.江苏省复合材料学会结构复合材料专业委员会,委员。国际土木工程纤维增强复合材料学会(IIFC),会员。中国钢结构协会钢-混凝土组合结构分会第十七次学术会议,组织委员会秘书。中建二局上海分公司南京市江北新区市民中心项目,钢结构工程师(挂职锻炼)。建筑结构学报,工业建筑,Advances in Structural Engineering, International Journal of Steel Structures, Journal of Structural Engineering, Thin-Walled Structures, Composite Structures等期刊审稿人。标签: 哈尔滨工业大学(深圳) 土木与环境工程学院
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