研究生导师风采
1. 基本信息
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姓名: 张耀 性别:
院系: 安全工程与应急管理学院 职务:
专业技术职务: 副教授 所属学科: 安全科学与工程
导师类别: 硕士生导师 办公电话:
电子邮箱: 该邮件地址已受到反垃圾邮件插件保护。要显示它需要在浏览器中启用 JavaScript。 最高学位: 博士
最高学历: 博士研究生 毕业时间: 2020-07-01
毕业院校: 同济大学 毕业专业: 0814 土木工程
研究方向: 纤维混凝土高温力学性能;隧道结构抗火;纤维混凝土损伤力学;工程结构多尺度计算
招生专业: 安全科学与工程、安全工程
2. 个人简介

 2018/9-2019/9,加州大学洛杉矶分校(UCLA,美国),水泥基材料高温力学性能多尺度模拟,CSC联合培养博士,合作导师:Mathieu Bauchy

 2014/9-2020/6,同济大学,隧道及地下建筑工程,博士,导师:朱建文,朱合华(院士);副导师:闫治国(杰青)

累计发表SCI论文40余篇,EI论文1篇、CSCD论文3篇、国际会议3篇,国内与国际学术会议报告4次,授权国家发明专利5项。成功主持中央高校开放基金项目一项,并高质量地完成了国家973项目、国家自然科学基金等基础研究项目。此外,研究生期间获得了研究生国家奖学金、同济大学优秀毕业生、同济大学优秀博士学位论文等荣誉和奖励。

现为Construcion and Building Materials, International Journal of Damage Mechanics, Cleaner Materials, Journal of Materials in Civil Engineering (ASCE), Journal of Cleaner Products, Tunnelling and Underground Space technology, Fire safety journal, Journal of Building Engineering, Journal of Wind Engineering and Industrial Aerodynamics, Energy等10余个中科院二区国际期刊的审稿人。

招收具有土木工程、工程力学、材料科学与工程安全工程、消防工程等相关专业背景的硕士生,特别是想读博士的学生。可协助推荐优秀学生到同济大学、UCLA、UCB、UCI等国内外知名高校读博。招收土木工程、材料科学与工程、工程力学等相关专业的研究实习本科生。

3. 在国内外核心期刊上发表论文情况
论文题目刊物名称卷期排名检索
Mechanical and water resistance properties of strain hardening fiber reinforced gypsum-based compositesConstruction and Building Materials2024,425(1):136116通讯作者EI SCI
An improved micromechanical model for the thermal conductivity of multi-scale fiber reinforced ultra-high performance concrete under high temperaturesMaterials & Design2023 (236):1125031EI SCI
Uniaxial tensile properties of multi-scale fiber reinforced rubberized concrete after exposure to elevated temperatures Journal of Cleaner Production389(2023): 136068.1EI SCI
Crack detection in ultrahigh-performance concrete using robust principal component analysis and characteristic evaluation in the frequency domain. Structural Health Monitoring. 2023;0(0)通讯作者EI SCI
Experimental study on the thermal properties of a novel ultra-high performance concrete reinforced with multi-scale fibers at elevated temperaturesConstruction and Building Materials2023,366,130299通讯作者 SCI
Influence of multi-scale fiber on residual compressive properties of a novel rubberized concrete subjected to elevated temperaturesJournal of Building Engineering2023,65: 105750. 1 SCI
Insights into the thermal effect on the fracture toughness of calcium silicate hydrate grains: A reactive molecular dynamics studyCement and Concrete Composites134 (2022): 1048241EI SCI
Research progress of the thermophysical and mechanical properties of concrete subjected to freeze-thaw cycles Construction and Building Materials2022:330:127254通讯作者EI SCI
A novel micromechanical model of residual fracture energy of hooked-end steel fiber reinforced concrete exposed to high temperatureConstruction and Building Materials2021:278: 1222111 SCI
Deconstructing water sorption isotherms in cement pastes by lattice density functional theory simulationsJournal of the American Ceramic Society2021: 178291 SCI
Effects of high temperature on the mechanical behavior of calcium silicate hydrate under uniaxial tension and compression.International Journal of Damage Mechanics2021:10567895219918731 SCI
New insights into the mechanism governing the elasticity of calcium silicate hydrate gels exposed to high temperature: A molecular dynamics studyCement and Concrete Research2021:141:1063331 SCI
A multilayer thermo-elastic damage model for the bending deflection of the tunnel lining segment exposed to high temperaturesTunnelling and Underground Space Technology2020:95: 103142导师第一,本人第二 SCI
A novel multi-scale model for predicting the thermal damage of hybrid fiber-reinforced concreteInternational Journal of Damage Mechanics2020:29(1):19–441 SCI
Characterizing and analyzing the residual interfacial behavior of steel fibers embedded into cement-based matrices after exposure to high temperatures.Composites Part B: Engineering2020:191:1079331 SCI
A novel damage model based on micromechanics for hybrid fiber reinforced cementitious composites under uniaxial compression International Journal of Damage Mechanics2019:28 (7):1095–11321 SCI
An equivalent elastoplastic damage model based on micromechanics for hybrid fiber-reinforced composites under uniaxial tensionInternational Journal of Damage Mechanics2019:28(1):79–117通讯作者 SCI
Experimental study on the structural behaviors of jacking prestressed concrete cylinder pipeTunnelling and Underground Space Technology 2018:73:60–701 SCI
Micromechanics based multi-level model for predicting the coefficients of thermal expansion of hybrid fiber reinforced concreteConstruction and Building Materials2018:190:948–9631 SCI
A multi-level micromechanical model for elastic properties of hybrid fiber reinforced concrete Construction and Building Materials2017:152: 804-8171 SCI
4. 成果获奖情况
成果名称颁奖部门等级日期排名证书编号
同济大学优秀博士学位论文其他其它2021/01/1011024722020049
5. 主持重大科研项目情况
项目名称任务来源完成形式完成日期鉴定验收单位主要结论排名
混杂纤维混凝土多相材料细观力学模型及应用中央、国家各部门项目结题2020-02-01长安大学通过1
微胶囊自防火隧道混凝土衬砌高温力学行为研究国家自然科学基金项目结题2020-01-01国基委通过主研
城市轨道交通地下结构性能演化与感控基础理论973、863项目结题2016-06-30科技部通过主研
6. 目前承担的主要项目
项目名称项目类别项目来源起止日期科研经费本人承担任务
新型混杂纤维混凝土衬砌高温劣化机理与多尺度模型自然基金国家自然科学基金项目2022.01.01 - 2024.12.3124万元主持
高温下新型性能混凝土多尺度力学模与抗爆裂机理研究自然基金省(自治区、直辖市)项目2021.07.01 - 2023.07.016万元主持
大型隧道结构火灾高温特性的数物空间实时融合试验方法自然基金国家自然科学基金项目2021.01.01 - 2024.12.3158万元参与
自防火UHPC加固地下结构热力行为与界面特征自然基金国家自然科学基金项目2021.01.01 - 2024.12.3158万元参与