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个人简介

王激扬,男,副教授。2008年3月毕业于京都大学(Kyoto University,Japan),获工学博士学位。2012年入选杭州市“521”计划创新人才。近年来承担了国家自然科学基金面上项目、国家十二五科技支撑项目子课题、浙江省重点研发计划子课题、浙江省创新团队项目、浙江省自然科学基金等,并参与了多项国家自然科学基金及相关重大横向课题等。围绕高性能建筑材料在建筑抗震、防火、防渗等方面的热点问题展开研究,取得了多项关键技术的创新,发表SCI、EI等学术论文50余篇,授权国家发明专利7项。作为设计负责人主编了浙江省建筑标准设计图集《防水透气膜建筑构造》(2013浙J67),获得2014年“中国产学研合作创新成果奖”一项。 跟好玩的老师,做有趣的研究!(专业:结构工程) 在“浙”里,我将陪伴你的成长,与你共同进步! 工作研究项目 面向抗震韧性的城乡建筑新型结构体系研发,中国地震局重点实验室重点专项,201909-202208(项目负责人) 地震作用下既有砌体结构的抗倒塌性能研究,中央高校科研业务费-科研发展专项,201901-201912(项目负责人) 玄武岩纤维TRC增强砌体结构的抗震性能与设计理论研究,国家自然科学基金面上项目,201601-201912(项目负责人) 交通大流量负荷下钢桥面高延性混凝土铺装层复合结构的应用研究,浙江省建设科研项目,201809-202012(项目负责人) 再生骨料透水砖与地面砖的性能优化设计,企业合作一般横向,201801-202012(项目负责人) 扭振效应下高流动性应变硬化纤维混凝土复合桥墩的抗震性能与设计方法,浙江省自然科学基金项目,201601-201812(项目负责人) 地震灾害风险检测与评估技术应用,浙江省重点研发计划,201801-202012(子课题负责人) 钢结构建筑防火关键技术研究,十二五科技支撑计划,201201-201512(子课题负责人) TRC薄壁墙板的耐高温性能及温度场研究,重大工程结构安全防护与健康服役科技创新团队,201307-201406(项目负责人) 基于界面粘结性能的TRC薄壁墙板受力机理及计算理论研究,中央高校科研业务费-科研发展专项,201301-201406(项目负责人) 玄武岩纤维复合砂浆加固混凝土结构的受力机理研究,浙江省教育厅科研项目,201110-201310(项目负责人) 基于地震损伤的不规则剪力墙受力机理及抗震性能定量评估方法,中央高校科研业务费-青年创新专项,201103-201302(项目负责人) 华润电力苍南发电厂超超临界燃煤发电机组干煤棚风洞试验研究,企业合作一般横向,201306-201406(项目负责人) 不规则剪力墙基于损伤的抗震性能定量评估方法,浙江省博士后择优资助,201009-201109(项目负责人) 混凝土脆性特征的断裂力学分析及裂缝起裂机理研究,国家自然科学基金(面上项目),201401-201712(项目骨干成员) 复杂高层建筑的风致动力效应和时变可靠度研究,国家自然科学基金(青年项目),201101-201312(项目骨干成员) 新型超高韧性水泥基复合材料在公路隧道中裂缝控制的应用研究,企业合作重大横向,201309-201512(项目骨干成员) 授权国家发明专利: (1)一种桥梁伸缩缝连接结构,专利号:ZL 201910552329.1,发明人:胥东,沈勇,王激扬,张文俊,刘敬亮,李鹏世(授权日:2021-03-09) (2)抗压强度评估方法及装置,专利号:ZL 201710303848.5,发明人:李伟平,徐世烺,吴德兴,王激扬,赵长军,穆富江,黄博滔,丁海洋(授权日:2020-06-02) (3)抗折强度评估方法及装置,专利号:ZL 201710303409.4,发明人:穆富江,李伟平,王激扬,吴德兴,徐世烺,赵长军,黄博滔,丁海洋(授权日:2019-12-17) (4)一种高强高模聚乙烯醇纤维的表面处理改性方法,专利号:ZL 201610064429.6,发明人:张华鹏,闻克瑜,范立峰,王激扬(授权日:2018-01-30) (5)直型短切纤维拉拔试验试样成型模具及其制作方法,专利号:ZL201510061130.0,发明人:李贺东,闫东明,王激扬(授权日:2017-03-15) (6)能用于喷射的超高韧性水泥基复合材料及其喷射工艺,专利号:ZL201410394916.X,发明人:徐世烺,李庆华,王激扬,周斌,黄博滔(授权日:2016-03-02) (7)一种基于超高韧性水泥基复合材料的夹芯保温墙体及墙板,专利号:ZL201210234163.7,发明人:徐世烺,李庆华,沈玲华,王激扬(授权日:2016-01-13) (8)一种非承重式轻质薄壁减震隔墙,专利号:ZL2012103929148,发明人:王激扬,李庆华,沈玲华,徐世烺(授权日:2014-08-06) 授权实用新型专利: (1)一种建筑垃圾制砖设备,专利号:CN 201920958468.X,发明人:陈鑫、周良燕、王激扬、金斌斌、曾强(授权日:2020-07-10) (2)一种桥梁伸缩缝,专利号:CN 201920958450.X,发明人:胥东,沈勇,王激扬,张文俊,刘敬亮,李鹏世(授权日:2020-07-10) (3)纤维编织网混凝土外挂幕墙,专利号:CN 201720113257.7,发明人:沈玲华,王激扬,徐世烺,陶燕丽(授权日:2018-03-16) (4)改善纤维编织网性能的装置,专利号:CN 201720100385.8,发明人:沈玲华,王激扬,徐世烺(授权日:2017-11-10) (5)一种新型复合保温薄壁外墙板,专利号:CN 201220328406.9,发明人:徐世烺,沈玲华,王激扬,李庆华(授权日:2013-04-24) (6)一种基于超高韧性水泥基复合材料的夹芯保温墙体及墙板,专利号:CN 201220327155.2,发明人:徐世烺李庆华沈玲华王激扬(授权日:2013-04-24) 教学工作 2019-2020学年: 1.工程抗震,本科课程;(冬学期) 2.钢筋混凝土结构设计,本科课程;(春、夏学期) 3.高等工程抗震,研究生课程;(春学期) 过往学年曾授课的其他课程: 1.钢筋混凝土结构基本原理,本科课程; 2.钢筋混凝土结构设计,本科课程; 3.工程抗震,本科课程; 4.弹性力学,本科课程; 5.高等工程抗震,研究生课程; 6.工程弹塑性力学,研究生课程。 出版著作 王激扬,黄啸蔚:浙江省建筑标准设计图集《防水透气膜建筑构造》(2013浙J67) 奖励荣誉 1.2015年度浙江大学教育基金会土木建筑规划教育基金园丁奖 2.2014年中国产学研合作创新成果奖:超高韧性水泥基复合材料技术创新及产业化,获奖人:徐世烺,李庆华,李贺东,王激扬等

研究领域

钢筋混凝土结构与抗震 高性能建筑材料 组合结构

涉及面向韧性城市的工程结构抗震、减隔震及加固、高性能建筑材料(TRC、ECC、UHTCC、UHPC......)等

近期论文

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SCI收录期刊论文: [1]Chenglin Wan,Jiyang Wang*,Qiang Zeng,Linghua Shen,Dongming Yan and Yu Peng.Mechanical behavior of masonry columns strengthened with basalt textile reinforced concrete under eccentric loading:Experimental investigation and analytical modelling[J].Construction and Building Materials,2021,269:121816.(SCI)(IF:4.419) [2]Qiang Zeng,Shan Chen,Pengcheng Yang,Yu Peng,Jiyang Wang*,Chunsheng Zhou,Zhendi Wang and Dongming Yan.Reassessment of mercury intrusion porosimetry for characterizing the pore structure of cement-based porous materials by monitoring the mercury entrapments with X-ray computed tomography[J].Cement&Concrete Composites,2020,113:103726.(SCI)(IF:6.257) [3]Jiyang Wang,Jin Tao,Le Li,Chunsheng Zhou and Qiang Zeng*.Thinner fillers,coarser pores?A comparative study of the pore structure alterations of cement composites by graphene oxides and graphene nanoplatelets[J].Composites Part A:Applied Science and Manufacturing,2020,130:105750.(SCI)(IF:6.444)(ZJU TOP) [4]Jiyang Wang*,Chenglin Wan,Qiang Zeng,Linghua Shen,Muhammad Akbar Malik and Dongming Yan.Effect of eccentricity on retrofitting efficiency of basalt textile reinforced concrete on partially damaged masonry columns[J].Composite Structures,2020,232:111585.(SCI)(IF:5.138) [5]Qiang Zeng,Nidu Jike,Jiahan Liu,Zhendi Wang and Jiyang Wang*.Fractal analysis of stress-dependent diffusivity of porous cementitious materials[J].Fractals,2020,28(6):2050117.(SCI)(IF:4.536) [6]Linghua Shen,Jiyang Wang,Shilang Xu,Xin Zhao and Yu Peng.Flexural behavior of TRC contained chopped fibers subjected to high temperature[J].Construction and Building Materials,2020,262:120562.(SCI)(IF:4.419) [7]Jin Tao,Jiyang Wang and Qiang Zeng.A comparative study on the influences of CNT and GNP on the piezoresistivity of cement composites[J].Materials Letters,2020,259:126858.(SCI)(IF:3.204) [8]Qing Lv,Qingli Qiu,Jun Zheng,Jiyang Wang and Qiang Zeng.Fractal dimension of concrete incorporating silica fume and its correlations to pore structure,strength and permeability[J].Construction and Building Materials,2019,228:116986.(SCI)(IF:4.419) [9]Qi Zhang,Beibei Li,Qiang Zeng,Jiahua Deng,Jiyang Wang and Dongmin Yan.Erosion of aerial lime and sticky rice mortars by cyclic wetting-drying and dilute sulfate acid actions[J].Advances in Cement Research,2019:1800103.(SCI)(IF:1.576) [10]Yong Chen,Zhongzheng Hu,Yong Guo,Jiyang Wang*,Genshu Tong and Qingsong Liu.Effects of chord pre-load on strength of CHS X-joints stiffened with external ring stiffeners and gusset plates[J].Engineering Structures,2019,195:125-143.(SCI)(IF:3.548) [11]Qiang Zeng,Rui Fang,Hedong Li,Yu Peng and Jiyang Wang.Tailoring the thermal and mechanical properties of lightweight cement-based composites by macro and micro fillers[J].Cement&Concrete Composites,2019,102:169-184.(SCI)(IF:6.257) [12]Xiaohu Wang,Yu Peng,Jiyang Wang and Qiang Zeng.Pore structure damages in cement-based materials by mercury intrusion:a non-destructive assessment by x-ray computed tomography[J].Materials,2019,12(14):2220.(SCI)(IF:3.057) [13]Qiang Zeng,Zhen Lin,Chunsheng Zhou and Jiyang Wang.Capillary imbibition of ethanol in cement paste traced by X-ray computed tomography with CsCl-enhancing technique[J].Chemical Physics Letters,2019,726:117-123.(SCI)(IF:2.209) [14]Qiang Zeng,Xiaohu Wang,Pengcheng Yang,Jiyang Wang and Chunsheng Zhou.Tracing mercury entrapment in porous cement paste after mercury intrusion test by X-ray computed tomography and implications for pore structure characterrization[J].Materials Characterization,2019,151:203-215.(SCI)(IF:3.562) [15]Yong Chen,Jiyang Wang*,Yong Guo,Shijie Guan,Lixian Yang and Bingnan Sun.Mechanical behavior of welded hollow spherical joints with diameter exceeding 1.0 m[J].Journal of Constructional Steel Research,2019,159:21-33.(SCI)(IF:2.938) [16]Yong Chen,Zhongzheng Hu,Yong Guo,Jiyang Wang*,Hanbo Dan,Qingsong Liu and Yu Pan.Ultimate bearing capacity of CHS X-joints stiffened with external ring stiffeners and gusset plates subjected to brace compression[J].Engineering Structures,2019,181:76-88.(SCI)(IF:3.548) [17]Shilang Xu,Fujiang Mu,Jiyang Wang*and Weiping Li.Experimental study on the interfacial bonding behaviors between sprayed UHTCC and concrete substrate[J].Construction and Building Materials,2019,195:638-649.(SCI)(IF:4.419) [18]Qi Zhang,Qiang Zeng,Chuang Zheng,Jiyang Wang,Shi lang Xu.Oven dying kinetics and status of cement-based porous materials for in-lab microstructure investigation[J].Advances in Cement Research,2018,30(5):204-215.(SCI)(IF:1.576) [19]Shilang Xu,Linghua Shen and Jiyang Wang*.The high-temperature resistance performance of TRC thin-plates with different cementitious materials:Experimental study[J].Construction and Building Materials,2016,115:506-519.(SCI)(IF:4.419) [20]Dongming Yan,Qiang Zeng,Shilang Xu,Qi Zhang,Jiyang Wang.Heterogeneous Nucleation on Concave Rough Surfaces:Thermodynamic Analysis and Implications for Nucleation Design[J].Journal of Physical Chemistry C,2016,120(19):10368-10380.(SCI)(IF:4.189) [21]Ling-hua Shen,Shi-lang Xu and Ji-yang Wang*.Mechanical behaviour of TRC thin-plates exposed to high temperature:experimental study[J].Magazine of Concrete Research,2015,67(21):1135-1149.(SCI)(IF:2.088) [22]Shi-lang Xu,Ling-hua Shen,Ji-yang Wang*and Ye Fu.High temperature mechanical performance and micro interfacial adhesive failure of textile reinforced concrete thin-plate[J].Journal of Zhejiang University:Science A,2014,15(1):31-38.(SCI)(IF:1.490) [23]Yong Chen,Ji-yang Wang*,Yong Guo,Guo-hui Shen,Li-xian Yang and Bin-nan Sun.Behavior of axially loaded tubular X-joints using bolted connection:mechanical model and validation[J].Journal of Zhejiang University:Science A,2013,14(12):880-889.(SCI)(IF:1.490) [24]Sheng Bao,Fan Xu,Ji-yang Wang*and Hangfei Lou.Magnetomechanical measurements for nondestructive evaluation of failure in steel structural element[J].Journal of Materials Engineering and performance,2013,22(5):1351-1354.[DOI:10.1007/s11665-012-0410-1](SCI)(IF:1.652) [25]Jiyang Wang*,Masanobu Sakashita,Susumu Kono and Hitoshi Tanaka.Shear behaviour of reinforced concrete structural walls with eccentric openings under cyclic loading:experimental study[J].Structural Design of Tall and Special Buildings,2012,21(9):669-681.(SCI)(IF:2.048) [26]Jiyang Wang*,Masanobu Sakashita,Susumu Kono and Hitoshi Tanaka.Behavior of reinforced concrete structural walls with various opening locations:experiments and macro model[J].Journal of Zhejiang University Science A,2010,11(3):202-211.(SCI)(IF:1.490) EI收录期刊论文: [1]Shen L.H.,Wang J.Y.,Xu S.L.and Amoako-Atta G.Fire Resistance Behavior of Full-scale Self-thermal Insulation Sandwich Walls Made of Textile-reinforced Concrete[J].International Journal of Heat and Technology,2019,37(1):239-248.(EI) [2]王激扬*,陈勇,郭勇,陈聪,孙炳楠.窄基输电塔分离式K型节点的受力性能试验研究[J].工程力学,2019,36(S1):66-70.(EI) [3]穆富江,王激扬*,李伟平,徐世烺.钢丝网-喷射UHTCC薄板抗弯性能试验研究[J].工程力学,2018,35(S1):338-343.(EI) [4]刘承斌,王激扬,陈勇,应健,冉杨,麻坚.全GFRP筋混凝土电缆排管的抗剪承载力[J].复合材料学报,2018,35(12):3331-3341.(EI) [5]刘承斌,应健,陈勇,王激扬,冉杨,麻坚.全玻璃纤维增强树脂筋混凝土电缆排管的抗弯试验[J].复合材料学报,2018,35(1):70-80.(EI) [6]薛滨,陈勇,陈聪,张文杰,郭勇,王激扬,孙炳楠.拉弯荷载下钢管杆塔内外法兰设计计算方法[J].工程力学,2017,34(10):76-86.(EI) [7]王激扬*,马卫强,万成霖,陈荣达,胡志华.PE纤维水泥基复合材料框架梁柱节点的抗震性能试验研究[J].世界地震工程,2017,33(4):180-186. [8]王激扬*,马卫强,胡志华,万成霖.PE纤维掺量对水泥基复合材料力学性能的影响[J].浙江大学学报(工学版),2017,51(11):2130-2135.(EI) [9]王激扬*,沈玲华,徐世烺.钢纤维TRC薄板的常温及高温后弯曲力学性能[J].工程力学,2016,33(S1):6-17.(EI) [10]沈玲华,王激扬*,徐世烺.掺入短切纤维的纤维编织网增强混凝土薄板弯曲力学性能试验研究[J].建筑结构学报,2016,37(10):98-107.(EI) [11]陈勇,关士杰,郭勇,王激扬,杨骊先,孙炳楠:超大直径加劲焊接空心球节点的抗拉极限承载力研究[J].土木工程学报,2016,49(2):1-10.(EI) [12]王激扬*,沈玲华,徐世烺,付晔:不同胶凝材料的精细混凝土高温后力学性能[J].工程力学,2015,32(S):248-253.(EI) [13]王激扬*,河野进.地震水平往复力作用下多层带框架剪力墙的试验与分离度模型[J].土木工程学报.2013,46(S2):201-206(EI) [14]陈勇,王激扬*,郭勇,沈国辉,杨骊仙,孙炳楠.输电塔双轴受压螺栓连接钢管节点的受力性能试验与有限元分析[J].土木工程学报.2013,46(S2):219-224.(EI) [15]王激扬*,楼文娟,田中仁史.大开洞混凝土剪力墙宏观计算模型的改进[J].土木工程学报,2011,44(4):35-41.(EI) [16]Wang J.*,Sakashita M.,Kono S.and Tanaka H.Seismic Behavior of Multi-story Structural Walls under Cyclic Lateral Loading:Experimental Study[J].Research Journal of Applied Sciences,Engineering and Technology,2012,4(16):2794-2799.(EI)

学术兼职

任中国建筑学会抗震防灾分会建筑结构抗倒塌专业委员会委员,中国建筑学会建筑结构分会新材料及新型结构专业委员会委员。

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