姚一鸣


通讯方式:手机:13675136566(微信同号) 邮箱:yiming.yao@seu.edu.cn

研究方向:

  • 超高性能水泥基材料(UHPCTRC)基本性能、耐久性和自愈合性能等

  • 3D打印与智能建造

  • 新材料的结构应用与体系研发

  • -UHPC组合结构

  • 材料冲击与动力学行为

办公地点:土木科研楼614室

 

 

个人简介

姚一鸣,男,博士,硕士生导师,河南洛阳人,入选江苏省双创博士计划。研究方向主要包括超高性能混凝土(UHPC)和纤维织物增强混凝土(TRC)材料基本性能、耐久性和自愈合性能等,3D打印与智能建造等,新材料的结构应用与体系研发,钢-UHPC组合结构,材料冲击与动力学行为等。 

美国土木工程师学会(ASCE)会员,ASCE大中华分会(ASCE Greater China Section)理事(Director);国际材料与结构研究实验联合会(RILEM)会员,美国混凝土协会(American Concrete Institute)会员。参与ACI纤维混凝土子协会(ACI 544 Fiber Reinforced Concrete)和超高性能混凝土子协会(ACI 239 Ultra-high Performance Concrete)多项设计指导规范的编写,同时参与国内多部行业标准的编写工作。在Cement and Concrete Composites、Materials and Structures、Engineering Structures、ASCE Journal of Materials for Civil Engineering等期刊发表SCI论文30余篇,担任多个国际顶级和主流期刊审的审稿人。

学术兼职

美国土木工程师学会(ASCE)会员,ASCE大中华分会(ASCE Greater China Section)理事(Director);国际材料与结构研究实验联合会(RILEM)会员,美国混凝土协会(American Concrete Institute)会员。担任多个国际顶级和主流期刊审的审稿人。

教学课程
  • 材料力学

  • 专业文献检索与论文写作(全英文)

科研、教改项目

科研项目

  • 国家自然科学基金青年项目(51908120):冻融过程中UHPC裂后动态损伤-自愈合耦合演化机理,2020.01-2022.1225万,(主持,在研);

  • 江苏省基础研究计划(自然科学基金)青年项目(BK20180383):地震荷载下考虑混杂纤维协同效应的 UHPC多尺度损伤机理研究,2018.07-2020.0620万,(主持);

  • 国家自然科学基金-高铁联合基金项目(U1934205):高速铁路大跨UHPC桥梁材料-结构设计理论与新体系研究,231万,2020.01 -2023.12,(参与,在研);

  • 咨询项目:高延性冷轧带肋钢筋在建筑构件中应用基础研究,2020.08-2021.1246万,(主持,在研);

  • 十三五”国家重点研发计划子课题(2017YFC0703402):高性能组合结构城市桥梁研发及应用示范,2017.07-2020.06271万,(参与)。

论文和专著

参与ACI纤维混凝土子协会(ACI 544 Fiber Reinforced Concrete)和超高性能混凝土子协会(ACI 239 Ultra-high Performance Concrete)多项设计指导规范的编写,同时参与国内多部行业标准的编写工作。


代表性论文

  • Yao Y, Bonakdar A, Faber J, Gries T, Mobasher B. Distributed cracking mechanisms in textile-reinforced concrete under high speed tensile tests. Materials and Structures 2016; 49(7), 2781-2798. DOI: 10.1617/s11527-015-0685-4.

  • Yao Y, Silva F, Butler M, Mechtcherine V, Mobasher B. Tension stiffening in textile-reinforced concrete under high speed tensile loads. Cement and Concrete Composites 2015; 64: 49-61. DOI:10.1016/j.cemconcomp.2015.07.009.

  • Yao Y, Zhang H, Zhu D, Li G, Mobasher B. Tensile Behaviors of Basalt, Carbon, Glass and Aramid Fabrics under Various Strain Rates. Journal of Materials in Civil Engineering 2016; 28(9). DOI: 10.1061/(ASCE)MT.1943-5533.0001587.

  • Yao Y, Zhang H, Zhu D, Mobasher B, Huang L. Tensile Mechanical Properties of Basalt Fiber Reinforced Polymer Composite under Varying Strain Rates and Temperatures. Polymer Testing 2016; 51: 29-39. DOI: 10.1016/j.polymertesting.2016.02.006.

  • Yao Y, Silva F, Butler M, Mechtcherine V, Mobasher B. Failure Localization and Correlation of High-Speed Tension and Impact Tests of Strain-Hardening Cement-based Composites (SHCC). Journal of Materials in Civil Engineering 2017; 29(11). DOI: 10.1061/(ASCE)MT.1943-5533.0002056.

  • Yao Y, Wang X, Aswani K, Mobasher B. Analytical Procedures for Design of Strain Softening and Hardening Cement Composites. International Journal of Advances in Engineering Sciences and Applied Mathematics 2017. DOI:10.1007/s12572-017-0187-4. (In press)

  • Yao Y, Bakhshi Mehdi, Nasri Verya, Mobasher B. Interaction diagrams for design of hybrid fiber-reinforced tunnel segments. Materials and Structures 2018, 51 (1), 35. 10.1617/s11527-018-1159-2.

  • Yao Y, Aswani K, Wang X, Mobasher B. Analytical displacement solutions for statically determinate beams based on a trilinear moment–curvature model. Structural Concrete 2018, 19(6), 1619-1632. DOI: 10.1002/suco.201700150.

  • Lu K, Xu Q, Li W, Ye H, Wang J,Yao Y*. Fatigue performance of UHPC bridge deck system with field-cast dovetail joint. Engineering Structures, 237. DOI: 10.1016/J.ENGSTRUCT.2021.112108

  • Yao Y*, Silva FA, Butler M, Mechtcherine V, Mobasher B. Tensile and Flexural Behavior of Ultra-High Performance Concrete (UHPC) under Impact Loading. International Journal of Impact Engineering 2021, 153, 103866. DOI: 10.1016/J.IJIMPENG.2021.103866