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土木工程新材料结构及新型结构研究组土木工程新材料结构及新型结构研究组
土木工程新材料结构及新型结构研究组
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  • 成员
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    • 冯鹏 Professor Peng FENG
    • 孟鑫淼 Dr Xinmiao MENG
    • 研究助理/博士后 RA/Postdoc
    • 研究生 Graduate Students
    • 毕业生 Alumni
  • 研究
    RESEARCH
    • 复材结构及加固 FRP Structures and FRP Strengthening
    • 新型混凝土结构及3D打印 Advanced Concrete Structures and 3D Printing for Construction
    • 功能结构一体化结构 Integration of Structure and Function for Sustainable Development
  • 应用
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  • 成果
    PUBLICATIONS
    • 著作 Books
    • 论文 Papers
    • 专利 Patents
  • 教学
    TEACHING
  • 首页
    HOME
  • 成员
    PEOPLE
    • 冯鹏 Professor Peng FENG
    • 孟鑫淼 Dr Xinmiao MENG
    • 研究助理/博士后 RA/Postdoc
    • 研究生 Graduate Students
    • 毕业生 Alumni
  • 研究
    RESEARCH
    • 复材结构及加固 FRP Structures and FRP Strengthening
    • 新型混凝土结构及3D打印 Advanced Concrete Structures and 3D Printing for Construction
    • 功能结构一体化结构 Integration of Structure and Function for Sustainable Development
  • 应用
    APPLICATIONS
  • 成果
    PUBLICATIONS
    • 著作 Books
    • 论文 Papers
    • 专利 Patents
  • 教学
    TEACHING
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 欢迎 WELCOME

欢迎访问清华大学土木工程新材料结构及新型结构(冯鹏教授)研究组的网站!

Welcome to our website!  Professor Peng FENG’s Group is the Research Group of Emerging Structural Materials and Systems for Construction at Department of Civil Engineering, Tsinghua University.

我们致力于通过新材料应用与结构体系创新发展土木工程结构技术,研究范围包括:纤维增强复合材料(FRP)结构、新型混凝土结构、基于可持续发展的功能结构一体化结构、3D打印工程结构等。

We engage in structural technologies with emerging materials and systems for civil engineering, including FRP (fiber reinforced polymer) structures and FRP strengthening existing structures, advanced concrete structures, integration of structure and function for sustainable development, and 3D printing for construction.

 近期成果 RECENT PUBLICATIONS

  • Peng FENG, Zeyuan WANG, Feifei JIN, Songye ZHU. Vibration serviceability assessment of pedestrian bridges based on comfort level. Journal of Performance of Constructed Facilities, ASCE, In press.
  • Hongwei LIN, Yuxi ZHAO, Josko OZBOLTC, Peng FENG, Cheng JIANG. Analytical model for the bond stress-slip relationship of deformed bars in normal strength concrete. Construction and Building Materials, 2019, 198: 570-586.
  • Peng FENG, Lili Hu, Yanhua Zhang, Lieping Ye. Behavior analysis of FRP tube/filling strengthened steel members under axial compression. Thin-Walled Structures, 2019, 134: 475-490.
  • Peng FENG, Hanlin Qiang, Xin Ou, Weihong Qin, Jianxiang Yang. Progressive collapse resistance of GFRP-strengthened RC beam-slab subassemblages in a corner column removal scenario. Journal of Composites for Construction, ASCE, 2019, 23(1): 04018076.
  • Feng P, Cheng S, Tao Y. Seismic performance of hybrid column of concrete-filled square steel tube with FRP-confined concrete core. Journal of Composites for Construction, ASCE, 2018, 22(4): 04018015.
  • Zou Xingxing, Peng FENG, Jingquan Wang. Bolted shear connection of FRP-concrete hybrid beams. Journal of Composites for Construction, ASCE, 2018, 22(3): 04018012.
  • Deng Kailai, Peng Pan, Shaodong Shen, Haishen Wang, Peng FENG. Experimental Study of FRP-Reinforced Slotted RC Shear Walls under Cyclic Loading, Journal of Composites for Construction, ASCE, 2018, 22(4): 04010817.
  • Zou Xingxing, Peng FENG, Jingquan Wang, Yuwei Wu, Yu Feng. FRP stay-in-place form and shear key connection for FRP-concrete hybrid beams/decks. Composite Structures, 2018, 192: 489-499.
  • 吴育蔚, 冯鹏, 刘兴. 疲劳与长期自然暴露后的复材空心桥面板受力性能. 玻璃钢/复合材料, 2018, 11:68-72.
  • 樊源, 陈力, 任辉启, 冯鹏, 方秦. 起波配筋RC梁抗爆作用机理及抗力动力系数的理论计算方法. 爆炸与冲击, 2018, TU352.1+3:1-13.
  • Lili HU, Peng FENG, Xiao-Ling ZHAO. Fatigue design of CFRP strengthened steel members. Thin-Walled Structures, 2017, 119: 482-498.
  • Peng FENG, Hanlin QIANG, Weihong QIN, Meng GAO. A novel kinked rebar configuration for simultaneously improving the seismic performance and progressive collapse resistance of RC frame structures. Engineering Structures, 2017, 147: 752-767.
  • Wang J, Feng P, Hao T, et al. Axial compressive behavior of seawater coral aggregate concrete-filled FRP tubes[J]. Construction & Building Materials, 2017, 147:272-285.
  • Sindu SATASIVAM, Peng FENG, Yu Bai, Colin CAPRANI. Composite actions within steel-FRP composite beam systems with novel blind bolt shear connections. Engineering Structures, 2017, 138: 63-73.
  • Wen LIU, Shilang XU, Peng FENG. Fatigue damage propagation models for ductile fracture of ultrahigh toughness cementitious composites. International Journal of Damage Mechanics, 2017, 26(6): 919-932.
  • Chengyu QIU, Peng FENG, Yue YANG, Lei ZHU, Yu BAI. Joint capacity of bonded sleeve connections for tubular fibre reinforced polymer members. Composite Structures, 2017, 163: 267-279.
  • Peng FENG, Lili HU, Peng QIAN, Lieping YE. Buckling behavior of CFRP-aluminum alloy hybrid tubes in axial compression. Engineering Structures, 2017, 132: 624-636.
  • 冯鹏, 强翰霖, 叶列平. 材料、构件、结构“屈服点”定义的讨论. 工程力学, 2017, 34(3):36-46.
  • Wen Liu, Peng Feng, Jiankun Huang. Bilinear softening model and double K, fracture criterion for quasi-brittle fracture of pultruded FRP composites. Composite Structures. 2017, 160:1119-1125.
  • Feng P, Zhang Y, Hu L, et al. Buckling of piecewise member composed of steel and high-strength materials in axial compression[J]. Thin-Walled Structures, 2017, 110:62-74.
  • Zou X X, Feng P, Wang J Q. Perforated FRP ribs for shear connecting of FRP-concrete hybrid beams/decks[J]. Composite Structures, 2016, 152:267-276.
  • Liu W, Xu S, Feng P. Fatigue damage propagation models for ductile fracture of ultrahigh toughness cementitious composites[J]. International Journal of Damage Mechanics, 2016, 26(6):919-932.
  • Hu L L, Zhao X L, Feng P. Fatigue Behavior of Cracked High-Strength Steel Plates Strengthened by CFRP Sheets[J]. Journal of Composites for Construction, 2016, 20(6):04016043.
  • Feng P, Wang J, Tian Y, et al. Mechanical Behavior and Design of FRP Structural Members at High and Low Service Temperatures[J]. Journal of Composites for Construction, 2016, 20(5):04016021.
  • Cheng S, Feng P, Bai Y, et al. Load-Strain Model for Steel-Concrete-FRP-Concrete Columns in Axial Compression[J]. Journal of Composites for Construction, 2016, 20(5):04016017.
  • Feng P, Hu L, Qian P, et al. Compressive Bearing Capacity of CFRP-Aluminum Alloy Hybrid Tubes[J]. Composite Structures, 2016, 140:749-757.

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 最新动态 LATEST NEWS

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