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郑文忠,博士,教授/博导。国家高层次人才计划入选者,享受国务院政府特殊津贴专家,黑龙江省优秀中青年专家,教育部新世纪优秀人才,教育部宝钢教育基金会优秀教师,教育部首批高等学校骨干教师,黑龙江省杰出青年科学基金获得者, 黑龙江省优秀中青年专家,黑龙江省优秀研究生导师,黑龙江省师德先进个人,中国科协建筑结构学科带头人,结构工程国家重点学科带头人之一。主持多项国家自然科学基金、教育部博士点基金、黑龙江省科技计划项目和国家科技支撑计划等重要课题,发展了预应力结构设计理论与方法,揭示了配筋混凝土梁板火灾灾变规律,创新了既有建筑改造与抗震加固技术,系统研究活性粉末混凝土性能及关键问题,为多项示范工程和重点工程提供技术支持。《混凝土结构设计规范》《混凝土结构通用规范》《建筑工程抗震性态设计规范》等多部工程建设标准的编制组成员和《混凝土结构工程施工规范》《建筑结构荷载规范》《装配式混凝土建筑技术标准》等多部工程建设标准的审查组成员。获国家科技进步奖2项、省部级科技进步一等奖和科技发明奖一等奖共6项、省重大科技效益奖2项;获“三个一百”原创图书出版工程奖1项;申请/获得授权国家发明专利和软件著作权80余项;出版专著11部;发表学术论文500余篇;指导毕业博士研究生和硕士研究生200余人。 工作经历 2007.10-2007.12:俄罗斯圣彼得堡国立技术大学,Visiting Professor 2006.06-2006.07:俄罗斯圣彼得堡国立技术大学、国立莫斯科建筑大学,Visiting Professor 2001.07-2001.08:俄罗斯远东国立大学,Visiting Professor 2000.08-至今:哈尔滨工业大学,土木工程学院,教授 2000.06-2000.08:哈尔滨工业大学,土木工程学院,副教授 1997.10-2000.06:哈尔滨建筑大学,土木工程学院,副教授 1995.05-1997.10:哈尔滨建筑大学,土木工程学院,博士后 1987.07-1989.08:唐山大学,土木工程学院,助教 教育经历 1992.02-1995.05:东南大学,结构工程学科,获工学博士学位 1989.08-1992.02:哈尔滨建筑工程学院,结构工程学科,获工学硕士学位 1983.09-1987.07:西南交通大学,工业与民用建筑专业,获工学学士学位 荣誉称号 国家科技进步一等奖(2015年,建筑结构基于性态的抗震设计理论、方法及应用) 国家科技进步二等奖(2014年,混凝土结构耐火关键技术及应用) 黑龙江省科技发明一等奖(2015年,保温与结构一体化低耗能抗灾房屋研究与应用) 黑龙江省科技进步一等奖(2014年,建筑结构基于性态的抗震设计理论研究及规范编制) 华夏建设科学技术一等奖(2014年,既有建筑综合改造技术体系研究与工程示范) 黑龙江省科技进步一等奖(2013年,预应力混凝土结构抗火关键技术研究及应用) 中国高等学校科技进步一等奖(2010年,混凝土结构抗火关键技术研究及应用,排序2) 黑龙江省科技进步二等奖(2009年,既有建筑的结构改造技术研究,排序1) 黑龙江省科技进步二等奖(2008年,预应力混凝土梁板中无粘结筋应力增长规律研究及应用,排序1) 全国优秀建筑结构设计奖(2005年,绥芬河青云市场套(扩)建结构设计,排序1) 黑龙江省科技进步一等奖(2003年,体内预应力、体外预应力及预弯预应力结构设计理论系列研究与实践,排序1) 黑龙江省重大科技效益奖(2002年,现代预应力结构设计理论研究及应用,排序1) 黑龙江省科技进步二等奖(1999年,静载下预应力混凝土结构设计统一理论,排序1) 享受国务院政府特殊津贴专家(2013年) 国家高层次人才计划入选者(2009年) 哈尔滨工业大学十佳优秀共产党员(2008、2012年) 黑龙江省优秀中青年专家(2008年) 教育部宝钢奖获得者(2006年) 教育部新世纪人才(2005年) 黑龙江省优秀研究生导师(2012年) 黑龙江省师德先进个人(2012年) 黑龙江省杰出青年科学基金获得者(2001年) 黑龙江省青年科技奖获得者(2000年) 教育部首批高等学校骨干教师(2000年)

研究领域

混凝土及预应力混凝土结构 结构抗火设计与火灾安全 既有工程加固改造 先进土木工程材料及结构 城镇密集建筑绿色拆除技术 装配式混凝土结构

近期论文

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Xu C, Zheng W, Wang Y, et al. Green and recyclable demolition of steel reinforced concrete: Application and calculation model of induction heating demolition technology[J]. Journal of Building Engineering, 2022, 61: 105304. Yan Y, Hou X, Zheng W, et al. The damage response of RC columns with considering different longitudinal and shear reinforcement under demolition blasting[J]. Journal of Building Engineering, 2022, 62: 105396. Jiang Z, Zheng W, Li S, et al. Equation of hole arrangement for concrete beam demolition using soundless chemical demolition agent[J]. Journal of Building Engineering, 2022, 45: 103311. Jiang Z, Zheng W, Wang Y, et al. Hole layout calculation method of reinforced concrete beam demolition with soundless chemical demolition agents: Experimental investigation[J]. Engineering Structures, 2023, 274: 115174. Li L, Li B, Guo N, et al. Experimental and numerical investigations on moment redistribution in reinforced concrete frames subjected to vertical loads[J]. Engineering Structures, 2022, 261: 114289. Zheng W, Hao M, Chang W. Seismic behavior of full-scale RC columns jacketed by modified multi-spiral stirrups[J]. Archives of Civil and Mechanical Engineering, 2022, 22(4): 158. Li S, Zheng W, Zhou W, et al. Experiment and validation of local bearing capacity for reactive powder concrete confined with high-strength spirals[J]. Archives of Civil and Mechanical Engineering, 2022, 22(1): 40. Chang W, Zheng W, Hao M. Compression behavior of ultra-high performance concrete (UHPC) confined with high-strength rectilinear ties[J]. Archives of Civil and Mechanical Engineering, 2022, 22: 1-16. Li S, Zheng W, Xu T, et al. Artificial neural network model for predicting the local compression capacity of stirrups-confined concrete[C]//Structures. Elsevier, 2022, 41: 943-956. Sun P, Hou X, Zheng W, et al. Strengthening of conventional columns through RPC sandwich tube against blast loading[C]//Structures. Elsevier, 2022, 45: 1850-1863. Chang W, Zheng W. Compressive strength evaluation of concrete confined with spiral stirrups by using adaptive neuro-fuzzy inference system (ANFIS)[J]. Soft Computing, 2022, 26(21): 11873-11889. Hao M, Zheng W, Chang W. Evaluation of axial load-bearing capacity of concrete columns strengthened by a new section enlargement method[J]. Journal of Civil Engineering and Management, 2022, 28(1): 25–38-25–38. Zhou Y, Miao T, Yang J, et al. Seismic Wave Attenuation Characteristics from the Ground Motion Spectral Analysis around the Kanto Basin[J]. Buildings, 2022, 12(3): 318. Zhou X, Zheng W, Yan Y. Effect of Stress–Strength Ratio and Fiber Length on Creep Property of Polypropylene Fiber-Reinforced Alkali-Activated Slag Concrete[J]. Buildings, 2022, 12(2): 91. Su Z, Zheng W, Wang Y, et al. Seismic Vulnerability Analysis of Masonry Structures Built with Disassembled Brick Wall Sections[J]. Buildings, 2022, 12(11): 1831. Miao T, Zheng W, Wang Y, et al. Local Bearing Capacity of Concrete Under the Interaction of Headed Bars[J]. International Journal of Structural Stability and Dynamics, 2022, 22(03n04): 2240003. Li R, Zheng W, Tian W, et al. Effect of longitudinal reinforcement on the soundless chemical demolition degree of reinforced concrete columns[J]. Structural Concrete, 2022. Hao M, Zheng W, Chang W. Compression behavior of reinforced concrete columns jacketed with multi‐spiral transverse reinforcement[J]. Structural Concrete, 2022, 23(5): 2942-2967. 万宇通,郑文忠,王英.网格箍筋约束混凝土柱轴压受力性能试验研究[J].工程力学,2022,39(11):166-176. 郑文忠,王雅玲,王刚,王英.高强混凝土方柱不同强度网格箍筋约束效果[J].哈尔滨工业大学学报,2022,54(10):8-19. 郑文忠,王刚,王英.板柱节点承载力计算方法研究进展[J].哈尔滨工业大学学报,2022,54(10):1-7. 郑文忠,张洁,王刚,王英.螺旋箍筋约束高强混凝土柱轴心受压性能试验研究[J].中国公路学报,2022,35(06):22-35.DOI:10.19721/j.cnki.1001-7372.2022.06.002. 郑文忠,李健,王刚,王英.剪压区和剪跨比对混凝土板受剪承载力的影响[J].哈尔滨工业大学学报,2022,54(04):1-8. 许崇浩,郑文忠,胡明亮,王英.感应加热破碎型钢混凝土构件试验研究[J].工程力学,2022,39(04):100-112. 樊梦玫,郑文忠,李胜,王英.配置高强网格式间接钢筋的RPC局压承载力试验研究[J].建筑结构学报,2023,44(02):227-238.DOI:10.14006/j.jzjgxb.2021.0680. Hou C, Zheng W. Review of studies on concrete columns confined by lateral reinforcement under axial compression and lateral cyclic loading[J]. Structural Concrete, 2022. Zhou X, Zheng W, Zeng Y, et al. Effect of fiber content and stress–strength ratio on the creep of basalt fiber–reinforced alkali‐activated slag concrete[J]. Structural Concrete, 2022, 23(1): 382-394. Xianyu Zhou, Yusheng Zeng, Pang Chen, Zhenzhen Jiao, Wenzhong Zheng. Mechanical properties of basalt and polypropylene fibre-reinforced alkali-activated slag concrete. Construction and Building Materials, 2021,269. DOI:10.1016/j.conbuildmat.2020.121284 (SCI: 000604773000058) (EI:20204509472321) 姜智盛,郑文忠,侯晓萌,李瑞森,郭常顺.混凝土厚板和转换梁静态破碎试验[J].哈尔滨工业大学学报,2021,53(10):12-22. DOI: 10.11918/202011117. (EI: 20214110998107) 姜智盛,郑文忠,李瑞森,王英.混凝土厚板静态破碎试验研究[J/OL].哈尔滨工业大学学报:1-9[2021-11-22]. DOI:10.11918/202103039. 李瑞森,王英,郑文忠,姜智盛,郭常顺.对混凝土柱静态破碎效果的分析[J/OL].哈尔滨工业大学学报:1-13[2021-11-22]. DOI:10.11918/202106026. 李瑞森,郑文忠,姜智盛,郭常顺,王英.对混凝土剪力墙静态破碎效果的试验研究[J].哈尔滨工业大学学报,2021,53(10):23-30. DOI: 10.11918/202102071. (EI: 20214110998139) 郑文忠,苏志明,王英,周威.用拆除墙段建造的砖砌体结构地震易损性分析[J].哈尔滨工业大学学报,2021,53(10):132-139. DOI: 10.11918/202102017. (EI: 20214110998092) 朱晶,冯世辉,郭清华,曲子健,刘劭同,郑文忠.掺加麦秆植物纤维碱矿渣胶凝材料墙体热工性能试验[J].工业建筑,2021,51(04):58-62+180. DOI:10.13204/j.gyjzG21010708. 王德弘,沈彤,鞠彦忠,郑文忠,曾聪.后浇普通混凝土与预制UHPC的黏结受剪性能研究[J].建筑结构学报,2020,41(S2):411-419. DOI:10.14006/j.jzjgxb.2020.S2.0046.(EI: 20210509870618) 盖立琦,郑文忠,李胜,王英.混凝土局压承载力计算方法深化研究[J].哈尔滨工业大学学报,2021,53(10):1-11. DOI: 10.11918/202011118. (EI: 20214110998082) Jiang Zhisheng, Zheng Wenzhong, Li Ruisen, Guo Changshun. A computational model for thick concrete slab demolition using soundless chemical demolition agent[J]. Construction and Building Materials, 2021,303. DOI: 10.1016/j.conbuildmat.2021.124430. (EI: 20213410809399) Jiang Zhisheng, Zheng Wenzhong, Li Sheng, Sun Linqi, Xu Chonghao. Equation of hole arrangement for concrete beam demolition using soundless chemical demolition agent[J]. Journal of Building Engineering, 2021. DOI: 10.1016/j.jobe.2021.103311. Li Ruisen, Yan Yu, Jiang Zhisheng, Zheng Wenzhong, Li Guangchao. Impact of hole parameters and surrounding constraint on the expansive pressure distribution and development in soundless chemical demolition agents[J]. Construction and Building Materials, 2021,307. DOI: 10.1016/j.conbuildmat.2021.124992. (SCI 000703859700004) (EI: 20213910944550) Zhou Xianyu, Chen Pang, Jiao Zhenzhen, Zeng Yusheng, Zheng Wenzhong. Effect of fiber dosage and stress-strength ratio on creep of polyproptlene fiber-reinfroced alkai-activated slag concrete[J]. Materials and Structures, 2021, 54(5):193. DOI: 10.1617/s11527-021-01785-9. (EI: 20214010979947) Chang Wei, Zheng Wenzhong. Lateral response of HPC confined by both spiral stirrups and CFRP under axial compression[J]. Materials and Structures. 2021,54(2). DOI: 10.1617/s11527-021-01629-6 (SCI:000634790700004) (EI: 20211410165626) Chang Wei, Zheng Wenzhong, Hao Meijing. Lateral dilation and limited value of volumetric ratio of stirrups for ultra-high strength concrete confined with spiral stirrups[J]. Materials and Structures. 2021,54(3). DOI: 10.1617/s11527-021-01718-6. (SCI: 000654200700001) (EI: 20212210444377) Chang Wei, Hao Meijing, Zheng Wenzhong. Strength and ductility of laterally confined concrete[J]. Structural Concrete. 2021,22(5):2967-2991. DOI 10.1002/suco.202000299. (SCI:000634280800001) (EI: 20211310130756) Chang Wei, Zheng Wenzhong, Chen Pang. Compression Behavior of High-Performance Concrete and High-Performance Fiber-Reinforced Concrete Confined by Spiral Stirrups[J]. Journal of Materials in Civil Engineering, 2021,33(4). DOI 10.1061/(ASCE)MT.1943-5533.0003631. (SCI:000634780800035) (EI: 20210509851315) Zhu Jing, Zheng Wenzhong, Xie Lili, Sneed Lesley H. A high-temperature-resistant inorganic matrix for concrete structures enhanced by fiber-reinforced polymer[J]. Alexandria Engineering Journal. 2021, 60(1): 131-143. DOI 10.1016/j.aej.2020.06.021. (SCI: 000604991100012) (EI: 20202708884518) Li Sheng, Zheng Wenzhong, Zhou Wei, Fan Mengmei, Gai Liqi. Analysis of actual confinement provided by high-strength steel spirals in reactive powder concrete of anchorage zones[J]. Structural Concrete, 2021. DOI 10.1002/suco.202100128. (SCI: 000696574300001) (EI: 20213710896204) Sun Peng, Hou Xiaomeng, Zheng Wenzhong, Qin Haiyang, Shao Guotao. Risk assessment for bridge structures against blast hazard bia a fuzzy based framework[J]. Engineering Structures. 232: 111874. doi.org/10.1016/j.engstruct.2021.111874 郑文忠,敖日格乐,王英,黄文宣.碱矿渣陶粒混凝土砌块砌体受压本构关系[J].工程力学,2020,37(10):218-227. (doi:10.6052/j.issn.1000-4750.2019.12.0739) (EI:20204209348853) 李柯璇,郑文忠,侯翀驰,王英.约束混凝土受压应力-应变曲线统一方程[J/OL].哈尔滨工业大学学报.2020:1-22. (DOI:10.11918/202008002) (EI: 20213710896204) 侯翀驰,郑文忠.偏心受压箍筋约束混凝土柱正截面承载力计算方法[J].建筑科学,2020,36(07):8-14. (DOI:10.13614/j.cnki.11-1962/tu.2020.07.002)(中文核心) 李瑞森,郑文忠,徐笠博,王英.静态破碎剂对钢管径向膨胀压应力试验[J].哈尔滨工业大学学报,2020,52(10):19-27. (DOI:10.11918/202002077) (EI: 20204109337563) 姜智盛,郑文忠,李瑞森,侯晓萌.混凝土块体静态破碎试验研究[J].哈尔滨工业大学学报,2020,52(06):188-193. (DOI:10.11918/202002076) ( EI:20202608861767) 郑文忠,李瑞森,徐笠博,侯晓萌.静态破碎技术研究综述与建议[J/OL].哈尔滨工业大学学报2020:1-13. (DOI:10.11918/201907034) (EI: 20211610216354) 郑文忠,黄文宣,王英,焦贞贞.高温对黏土砖砌体抗压强度影响研究进展[J].哈尔滨工业大学学报,2020,52(11):192-200.(DOI:10.11918/201907084)(EI: 20204209348359) 戎芹,王旭,侯晓萌,郑文忠.预应力混凝土结构钢绞线有效应力测量与评估方法[J].建筑结构学报,2020,41(08):176-182.(DOI:10.14006/j.jzjgxb.2017.0715) (一级学报,EI源刊)(EI: 20202908958429) Chongchi Hou, Wenzhong Zheng, Sheng Li, Xiaohao Wu. Experimental investigation of full-scale concrete columns confined by high-strength transverse reinforcement subjected to lateral cyclic loading. Archives of Civil and Mechanical Engineering.2020,20(4).(DOI: 10.1007/s43452-020-00126-x)(EI: 20204009297832) (SCI:000576886600002) Chongchi Hou,Wenzhong Zheng, Xiaohao Wu. Structural state of stress analysis of confined concrete based on the normalized generalized strain energy density. Journal of Building Engineering.2020,31. (DOI: 10.1016/j.jobe.2020.101321) (EI: 20201508401437) (SCI:000541476300007) Wei Chang, Wenzhong Zheng, Meijing Hao. Lateral response of ultra-high performance concrete columns confined with high-strength spiral stirrups. Structural Concrete.2020. (DOI: 10.1002/suco.201900335) (EI: 20203209009497) (SCI:000558171600001) Pang Chen, Xianyu Zhou, Wenzhong Zheng, Ying Wang, Bisheng Bao. Influence of high sustained loads and longitudinal reinforcement on long-term deformation of reinforced concrete beams. Journal of Building Engineering. 2020,30. (DOI: 10.1016/j.jobe.2020.101241) (EI: 20200708171619) (SCI:000540226700005) Tianming Miao, Wenzhong Zheng. Distributive relationship of anchorage force relative to reinforcement and headed bars. Engineering Structures.2020,209. (DOI: 10.1016/j.engstruct.2019.109961) (EI: 20195007809207) (SCI:000522248800021) Yue Wu, Jian Kang, Wenzhong Zheng, Yongxiang Wu. Acoustic comfort in large railway stations. Applied Acoustics.2020,160. (DOI: 10.1016/j.apacoust.2019.107137) (EI: 20194707726610) (SCI:000512474600016) Pang Chen, Wenzhong Zheng, Xianyu Zhou. Creep of reinforced high-strength concrete-containing industrial by-products silica fume and slag. Structural Concrete.2020.(DOI: 10.1002/suco.201900435)(EI: 20200908247027) (SCI:000515326800001) Wei Chang, Meijing Hao, Wenzhong Zheng. Compressive behavior of UHPC confined by both spiral stirrups and carbon fiber-reinforced polymer (CFRP). Construction and Building Materials.2020,230. (DOI: 10.1016/j.conbuildmat.2019.117007) (EI: 20193907471883) (SCI:000504367400042) Chongchi Hou, Wenzhong Zheng, Wei Chang. Behaviour of high-strength concrete circular columns confined by high-strength spirals under concentric compression. Journal of Civil Engineering and Management.2020,26(6):564-578. (DOI: 10.3846/jcem.2020.12913) (SCI:000544410400006) (EI: 20213410794741) Meijing Hao, Wenzhong Zheng, Wei Chang. Evaluating Stress-Strain Properties of Reinforcing Steel for Reinforced Concrete. Advances in Civil Engineering Materials. 2020,9(1):283-297. ( DOI: 10.1520/ACEM20190160)(EI: 20202108682763) Pengfei Ren, Xiaomeng Hou, Wenzhong Zheng, Qin Rong. Quantifying Fire Insulation Effects on the Fire Response of Hybrid-Fiber Reinforced Reactive Powder Concrete Beams. Fire Technology.2020,56(4):1487-1525. (DOI: 10.1007/s10694-019-00937-2) (EI: 20195307949870) (SCI:000503664600001) Jing Zhu, Wenzhong Zheng, Lili Xie, Ning Ren, Yuxuan Zhang, Yongxin Zhang. Alkali-activated slag cement: Alternative adhesives for CFRP sheets bonded to concrete at elevated temperatures. Journal of New Materials for Electrochemical Systems.2020,23(3):167-176.( DOI: 10.14447/jnmes.v23i3.a03) (EI:20204809556191) Wei Chang, Wenzhong Zheng. Effects of key parameters on fluidity and compressive strength of ultra-high performance concrete. Structural Concrete.2020,21(2):747-760. (DOI: 10.1002/suco.201900167) (EI: 20194407597566) (SCI:000488475100001) 鞠彦忠,沈浩,王德弘,郑文忠.活性粉末混凝土梁柱节点抗裂性能试验研究[J].中南大学学报(自然科学版),2019,50(05):1203-1209. 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