汤寄予

作者: 时间:2016-12-06 点击数:

汤寄予

基本信息

汉族

197411月生人

20037月毕业于郑州大学获结构工程专业硕士学位

20137月毕业于郑州大学获结构工程专业博士学位

 

 

研究领域

1.智能建造新材料及新工艺

2.超高性能混凝土材料及结构抗火

招生专业

1.结构工程

2.土木工程(专业学位)

承担项目

1.河南省高等学校重点科研项目(15A560038)

2.河南省教育厅科学技术研究重点项目(13B560373)

科研奖励

1.获2011年教育部科技进步奖一等奖:纤维聚合物增强与加固混凝土结构计算理论及其应用

2.获2009年河南省科技进步奖二等奖:纤维混凝土与既有混凝土的粘结性能及施工技术

论文论著

[1]   Uniaxial compression performance and stress-strain constitutive model of the aluminate cement-based UHPC after high temperature. Construction and Building Materials, 2021, 309: 125173

[2]   Experiment study on tensile properties of steel fiber reinforced mortar exposed to elevated temperatures. Materials and Structures, 2021, 54 (4): 136

[3]   A Peridynamic Model for Dynamic Fracture of Layered Engineered Cementitious Composites. ACTA MECHANICA SOLIDA SINICA, 2022, 35(4): 661-671

[4]   Property analysis and mixture design of high ductility cementitious composites with totally recycled fine aggregate based on target strength and strain capacity. Journal of Cleaner Production, 2022, 337: 130492

[5]   Fatigue performance and stress range modeling of SFRC beams with high-strength steel bars. Engineering Structures, 2020, 216: 110706

[6]   Shear behavior analysis and capacity prediction for the steel fiber reinforced concrete beam with recycled fine aggregate and recycled coarse aggregate. Structures, 2021, 37: 44-55

[7]   Mechanical property evolution and chloride transport of steel fiber-reinforced concrete exposed to simulated marine environments. Materials and Structures, 2022, 55 (4): 130

[8]   Relationship between sorptivity and capillary coefficient for water absorption of cement-based materials: theory analysis and experiment. Royal Society Open Science, 2019, 6 (6): 190112

[9]   Effect of ground granulated blast furnace slag on the properties of calcium sulfoaluminate cement. Building Materials, 2019, 227: 116665

[10]  Effects of Groove and Steel Fiber on Shear Properties of Concrete with Recycled Coarse Aggregate. Materials, 2020, 13 (20): 4537

[11]  Experimental Study of Utilizing Recycled Fine Aggregate for the Preparation of High Ductility Cementitious Composites. Materials, 2020, 13 (3): 679

[12]  Dynamic Fracture Simulation of Functionally Graded Engineered Cementitious Composite Structures Based on Peridynamics. ACTA MECHANICA SOLIDA SINICA, 2021, 35 (1):.79-89

[13]  Flexural properties of high ductility cementitious composites with totally recycled fine aggregate. Journal of Materials Research and Technology-JMR&T, 2021, 14: 1319-1332

[14]  Experimental Research on the Mechanical Properties and Autogenous Shrinkage of Precast Members Joint Concrete. Buildings, 2022, 12 (3): 373

[15]  Effect of Fiber Content on the Mechanical Properties of Engineered Cementitious Composites with Recycled Fine Aggregate from Clay Brick. Materials, 2021, 14(12): 3272

知识产权

[1]  混凝土直接拉伸试验试件、试件成型模具及成套装置,ZL201610659029X,

[2]  一种自密实混凝土拌合物配合比设计方法,ZL201510577964.7

[3]  一种钢纤维张拉夹持夹具及钢纤维抗拉性能测试系统,ZL201610027705.1

[4]  钢纤维粘结拔出试验系统及试验方法,ZL201610025687.3

[5]  混凝土受压破坏应力-应变全曲线测试装置,ZL201510187304.8

[6]  混凝土试件高温中拉伸变形测试装置及其变形传感器夹具,ZL201721617239.9

[7]  一种火灾高温中混凝土热应变测试装置,ZL201910421944.9

[8]  混凝土试件高温张拉试验装置及其火灾模拟系统,ZL201721617222.3

[9]  一种火灾高温中混凝土热应力测试装置,ZL201910422081.7

[10] 制备3D打印超高性能混凝土的强制式真空搅拌机,ZL202022363172.9

[11] 3D打印超高性能混凝土用供料系统,ZL202120492136.4

[12] 混凝土3D打印机喷头,ZL202120492126.0

[13] 3D打印超高性能混凝土用输送泵,ZL202120492077.0

[14] 超高性能混凝土用真空搅拌机,ZL202022363168.2

[15] 免破坏U型应变计,ZL201820629035.5

 

科研平台

1.纤维复合建筑材料与结构教育部工程研究中心

2.新型城镇建筑技术河南省协同创新中心

3.纤维复合材料河南省工程试验室

联系方式

电子邮箱:tjy74@zzu.edu.cn