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教师风采-朱继华
朱继华
研究员,博士
个人简介

教育背景

Ph.D. in Structural Engineering, The Hong Kong University, Hong Kong (2006)


开设课程

钢结构设计

钢结构设计原理

钢结构课程设计

土木工程测量

薄壁结构理论

学术成果

NSFC Research Grants Awarded


2008          Behavior and design of aluminum extruded members. 

                Awarded by National Natural Science Foundation of China. (RMB 200,000)         

                                                                                                                            Investigator: Ji-Hua ZHU

2010         Behavior of aluminum alloy strengthened RC structures in coastal corrosion environments.

                 Awarded by National Natural Science Foundation of China. (RMB 350,000) 

                                                                                                                            Investigator: Ji-Hua ZHU

2014        Investigation on a novel strategy for durability of sea sand concrete based on the

               electrochemical characteristics of CFRP.

               Awarded by National Natural Science Foundation of China. (RMB 800,000)                          

                                                                                                                            Investigator: Ji-Hua ZHU

2015         Investigation on the smart control and improvement system of costal reinforced concrete 

                structures’ life-cycle behaviors.

                Awarded by National Natural Science Foundation of China. (RMB 3,500,000) 

                                                                                                                           Investigator: Feng XING


——

Refereed International Journal Paoers

[1]  Zhu, J. H., and Young, B. (2006). “Experimental investigation of aluminum alloy circular hollow section columns.” Engineering Structures, 28(2), 207-215.

[2]  Zhu, J. H., and Young, B. (2006). “Tests and design of aluminum alloy compression members.” Journal of Structural Engineering, ASCE, 132(7), 1096-1107.

[3] Zhu, J. H., and Young, B. (2006). “Aluminum alloy circular hollow section beam-columns.” Thin-Walled Structures, 44(2), 131-140.

[4] Zhu, J. H., and Young, B. (2006). “Aluminum alloy tubular columns – part I: finite element modeling and test verification.” Thin-Walled Structures, 44(9), 961-968.

[5] Zhu, J. H., and Young, B. (2006). “Aluminum alloy tubular columns – part II: parametric study and design using direct strength method.” Thin-Walled Structures, 44(9), 969-985.

[6] Zhu, J. H., and Young, B. (2006). “Experimental investigation of aluminum alloy thin-walled tubular members in combined compression and bending.” Journal of Structural Engineering, ASCE, 132(12), 1955-1966.

[7] Zhu, J. H., and Young, B. (2007). “Effects of transverse welds on aluminum alloy columns.” Thin-Walled Structures, 45(3), 321-329.

[8] Zhu, J. H., and Young, B. (2008). “Behaviour and design of aluminum alloy structural members.” Advanced Steel Construction, 4(2), 158-172.

[9] Zhu, J. H., and Young, B. (2008). “Numerical investigation and design of aluminum alloy circular hollow section columns.” Thin-Walled Structures, 46(3), 1437-1449.

[10] Zhu, J. H., and Young, B. (2009). “Design of aluminum flexural members using direct strength method.” Journal of Structural Engineering, ASCE, 135(5), 558-566.

[11] Zhu, J. H., and Young, B. (2011). “Cold-formed-steel oval hollow sections under axial compression.” Journal of Structural Engineering, ASCE, 137(7), 719-727.

[12] Zhu, J. H., and Young, B. (2012). “Design of cold-formed steel oval hollow section columns.” Journal of Constructional Steel Research, 71, 26-37.

[13] Zhu, J. H., Wei, L., Zhu, M., Li, W-W., Xing, F. (2014). “Experimental study of bond behavior on aluminum alloy plate-to-concrete interface.” Applied Mechanics and Materials, 501-504, 805-810.

[14] Zhu, J.H., Zhu, M., Wei, L., Li, W-W., Xing, F. (2014). “Bond behavior of aluminum laminates in NSM technique.” Applied Mechanics and Materials, 501-504, 1053-1060.

[15] Zhu, J.H., Zhu, M., Wei, L., Li, W-W., Xing, F. (2014). “Experimental Study of Concrete Strengthened by Stiffened Aluminum Plate.” Applied Mechanics and Materials, Volume: 584-586, 997-1000.

[16] Zhu, J.H., Zhu, M., Han, N. Liu, W., and Xing, F. (2014). “Electrical and Mechanical Performance of Carbon Fiber-Reinforced Polymer Used as the Impressed Current Anode Material.” Materials, 7(8), 5438-5453.

[17] Zhu, J.H., Wei, L., Zhu, M., Sun, H.,* Tang, L., and Xing, F. (2015). “Polarization Induced Deterioration of Reinforced Concrete with CFRP Anode.” Materials, 8(7), 4316-4331, JUL 2015.

[18] Wu, C., Zhu, J.H.*, Chen, N., and Wang, H. (2015). “Preparation of stereoscopic snowflake-like CoO material and its supercapacitor applications”. Ionics, 21(8): 2303-2307, AUG 2015.

[19] Sun, H., Guo, G., Memon, S., Xu, W., Zhang, Q., Zhu, J.H.*, and Xing, F. (2015). “Recycling of carbon fibers from carbon fiber reinforced polymer using electrochemical method.” Composites Part A- Applied Science and Manufacturing, 78, 10-17, NOV 2015.

[20] Zhu, J.H., Guo, G., Wei, L., Zhu, M., and Chen, X.,* (2016). “Dual Function Behavior of Carbon Fiber-Reinforced Polymer in Simulated Pore Solution.” Materials, 9, 103; doi:10.3390/ma9020103.

[21] Zhu, J.H., Wei, L., Wang, Z., Liang, C-K., Fang, Y.*, and Xing, F. (2016). “Application of carbon-fiber-reinforced polymer anode in electrochemical chloride extraction of steel-reinforced concrete.” Construction and Building Materials, 120, 275–283.

[22] Sun, H., Wei, L., Zhu, M., Han, N., Zhu, J.H.*, Xing, F. (2016) Corrosion behavior of carbon fiber reinforced polymer anode in simulated impressed current cathodic protection system with 3% NaCl solution. Construction and building materials, 112, 538-546, JUN 1 2016.

[23] Sun, H., Shazim, A., Gu, Y., Zhu, M., Zhu, J. H.*, Xing, F. (2016). “Degradation of carbon fiber reinforced polymer from cathodic protection process on exposure to NaOH and simulated pore water solutions.” Material and Structures, 2016, 24 March 2016, DOI: 10.1617/s11527-016-0859-8.

[24] Zhu, J. H.*, Wei, L., Guo, G., and Zhu, A. (2016). “Mechanical and Electrochemical Performance of Carbon Fiber Reinforced Polymer in Oxygen Evolution Environment.” Polymers, 8, 393.

Refered Conference Papers

[1] Zhu, J. H., and Young, B. (2005). “Tests of aluminum alloy circular hollow section compression members.” Proceedings of the 4th international conference on advances in steel structures, Shanghai, China, 121-130.

[2] Zhu, J. H., and Young, B. (2005). “Effects of transverse welds on aluminum tubular columns.” Proceedings of the 6th international conference on tall buildings, Hong Kong, China, 649-656.

[3] Zhu, J. H., and Young, B. (2006). “Structural performance of aluminum alloy thin-walled tubular members in combined compression and bending.” Proceedings of the Second International Symposium on Cold-formed Metal Structures, Hong Kong.

[4] Zhu, J. H., and Young, B. (2006). “Compression members of aluminum thin-walled square and rectangular hollow sections.” Proceedings of the 8th international conference on steel, space & composite structures, Kuala Lumpur, Malaysia, 245-254. (Young Steel Researcher award for this paper)

[5] Zhu, J. H., and Young, B. (2006). “Tests and design of aluminum circular hollow section beam-columns.” Proceedings of the 8th international conference on steel, space & composite structures, Kuala Lumpur, Malaysia, 255-264.

[6] Zhu, J. H., and Young, B. (2007). “Finite element modeling of aluminum alloy tubular columns.” Proceedings of the International Conference on Steel and Aluminum (ICSAS 07),  Oxford, UK, 1012-1019.

[7] Zhu, J. H., and Young, B. (2007). “Design of aluminum alloy tubular columns using direct strength method.” Proceedings of the International Conference on Steel and Aluminum (ICSAS 07), Oxford, UK, 1020-1032.

[8] Zhu, J. H., and Young, B. (2008). “Tests and design of aluminum flexural members.” Proceedings of the Tenth International Symposium on Structural Engineering for Young Experts, Changsha, China, 1769-1774.

[9] Zhu, J. H., and Young, B. (2008). “Numerical modeling and design approach of aluminum alloy tubular columns.” Proceedings of the 12th International Symposium on Tubular Sructures, Shanghai, China, 553-561.

[10] Zhu, J. H., and Young, B. (2008). “Behavior and design of aluminum alloy structural members.” Proceedings of the 5th International Conference on Coupled Instabilities in Metal Structures (CIMS2008), Sydney, Australia, 473-480.

[11] Zhu, J. H., and Chen, J. (2008). Numerical investigation of severely corroded reinforced concrete beams. Proceedings of International Conference on Durability of Concrete Structures, 26-27 November, 2008, Hangzhou, China. 756-760.

[12] Chen, J., Zhu, J. H., and Jin, W. L. (2008). Experimental investigation and design of severely corroded reinforced concrete beams. Proceedings of International Conference on Durability of Concrete Structures, 26-27 November, 2008, Hangzhou, China. 756-760.

[13] Zhu, J. H. and Young, B. (2010). “Compression members of cold-formed steel oval hollow sections.” Proceedings of the 13th International Symposium on Tubular Structures, DEC 15-17, 2010, Hong Kong.

[14] Wang, L.; Zhu, J. H.; Zhu, A. Z. (2010). “ Numerical study on displacement response of electric truss-columns under earthquake loads.” Proceedings of the 13th International Symposium on Tubular Structures, DEC 15-17, 2010, Hong Kong. 159-165.

[15] Wang, Weilun; Zhu, Jihua; Xing, Feng. (2011). “Study on the Durability of Concrete Structure of Aviation Oil Wharf of Shenzhen Airport.” Proceedings of the International Conference on Structures and Building Materials, JAN 07-09, 2011, Guangzhou, 71, 26-37.

[16] Zhu, J. H., and Young, B. (2012). “Numerical modeling and design of cold-formed steel oval hollow section compression members.” Tubular Structures XIV - Proceedings of the 14th International Symposium on Tubular Structures, ISTS 2012, London, 275-281.

[17] Ji-Hua Zhu, Miaochang Zhu, Ningxu Han, Feng Xing, Wei Liu, Luca Bertolini. (2014). “Behavior of CFRP plate in simulated ICCP system of concrete structures.” Proceedings of the 4th International Conference on the Durability of Concrete Structures, Purdue University, West Lafayette, Indiana, USA.

[18] Xianfeng Wang, Feng Xing, Ningxu Han, Lili Sui and Jianpeng Chen, Ji-Hua Zhu. (2014). “Analysis of Early Age Behaviour of Reinforced Concrete Bridge Abutment.” Proceedings of the 1st International Conference on Infrastructure Failures and Consequences (ICIFC), 16th-20th July, 2014, Melbourne, Australia.

[19] Ji-Hua Zhu, Feng Xing, Hongfang Sun, Ningxu Han, Miaochang Zhu. (2015). Behavior of carbon fiber reinforced polymer anode in simulated impressed current cathodic protection system of reinforced concrete structures. The International Symposium on Symposium on Reliability of Engineering System (SRES2015), Hangzhou, Invited paper.

[20] 朱继华. (2016). 滨海钢筋混凝土结构全寿命性能智能调控与提升体系研究. 2016长三角地区结构工程青年学者学术沙龙,杭州, 201657


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