2024-05-16
姓名 |
李犇 |
性 别 |
男 |
民 族 |
汉 |
政治 面貌 |
中共党员 |
|
||||||||||||
籍贯 |
山东日照 |
出生年月 |
1989.06 |
参加工作时间 |
2019.08 |
|||||||||||||||
最高学历(学位) |
博士研究生(工学博士) |
现行政职务及任职时间 |
无 |
|||||||||||||||||
擅长领域 |
土木工程材料 |
联系方式 (办公电话、邮箱) |
18718737023 Liben89@fosu.edu.cn |
|||||||||||||||||
学历学位教育情况 |
起止年月 |
毕业院校 |
所学专业 |
学制(年) |
学历(学位) |
|||||||||||||||
2015.10-2017.01 |
北海道大学 |
材料科学 |
1.5 |
CSC联合培养博士 |
||||||||||||||||
2012.09-2018.06 |
哈尔滨工程大学 |
固体力学 |
4 |
博士研究生 |
||||||||||||||||
2008.09-2012.06 |
山东科技大学 |
土木工程 |
4 |
本科生 |
||||||||||||||||
|
||||||||||||||||||||
主要工作经历 |
自何年何月 |
至何年何月 |
在何地、何单位任何职 |
|||||||||||||||||
2019.08 |
至今 |
佛山科学技术学院交通与土木建筑学院专任教师 |
||||||||||||||||||
(一)教学工作情况 |
||||||||||||||||||||
课程类别 |
何年何月至 何年何月 |
讲授课程名称 |
||||||||||||||||||
专业基础课 |
2019.09–今 |
土木工程材料 |
||||||||||||||||||
2023.09–今 |
土木工程创新实验1和2 |
|||||||||||||||||||
2023.09–今 |
弹塑性理论 |
|||||||||||||||||||
(二)SCI、 EI 、 ISTP、人大复印资料索引论文 |
||||||||||||||||||||
序号 |
题 目 |
作者 名次 |
发表 年月 |
刊物名称(刊号) |
刊物主办单位 |
|||||||||||||||
1 |
Research on the mechanism of chlorine corrosion resistance of graphite tailings modified recycled coarse aggregate concrete: Corrosion product transformation and multi-scale mathematical characterization model |
通讯 |
2024.4 |
Corrosion Science (SCI) |
Elsevier |
|||||||||||||||
2 |
A new mesoscopic calculation model of chloride ion erosion in recycled coarse aggregate concrete (RAC): Characteristic fractal dimension of pore structure and service life prediction |
通讯 |
2023.12 |
Developments in the Built Environment (SCI) |
Elsevier |
|||||||||||||||
3 |
Sulfate resistance and degradation mechanism of basalt fiber modified graphite tailings cement-based materials |
通讯 |
2023.09 |
Journal of Materials Research and Technology (SCI) |
Elsevier |
|||||||||||||||
4 |
Behavior of CA-UHPC filled circular steel tube stub columns under axial compression |
第五 |
2023.08 |
Journal of Constructional Steel Research (SCI) |
Elsevier |
|||||||||||||||
5 |
Study on surrounding rock failure law of gob-side entry based on the second invariant of deviatoric stress |
通讯 |
2023.06 |
Sustainability (SCI) |
Elsevier |
|||||||||||||||
6 |
An investigation of the mechanical properties of basalt fibre-reinforced graphite tailings cement mortar |
通讯 |
2022.12 |
Buildings (SCI) |
Elsevier |
|||||||||||||||
7 |
Research on modification of mechanical properties of recycled aggregate concrete by replacing sand with graphite tailings |
通讯 |
2022.06 |
Reviews on Advanced Materials Science (SCI) |
Elsevier |
|||||||||||||||
8 |
Mesoscopic fracture model of coarse aggregate Interlocking concrete |
第一 |
2022.06 |
Advances in Materials Science and Engineering (SCI) |
Elsevier |
|||||||||||||||
9 |
Comprehensive fracture model of reservoir ice layers in the northeastern cold region of china |
通讯 |
2022.06 |
Sustainability (SCI) |
Elsevier |
|||||||||||||||
10 |
Effect of superabsorbent polymer (SAP) internal curing agent on carbonation resistance and hydration performance of cement concrete |
第五 |
2022.06 |
Advances in Materials Science and Engineering (SCI) |
Elsevier |
|||||||||||||||
11 |
Deterioration characteristics of recycled aggregate concrete subjected to coupling effect with salt and frost |
通讯 |
2022.01 |
Reviews on Advanced Materials Science (SCI) |
Elsevier |
|||||||||||||||
12 |
Experimental investigation of flexural behavior of ultra-high-performance concrete with coarse aggregate-filled steel tubes |
通讯 |
2021.10 |
Materials (SCI) |
Elsevier |
|||||||||||||||
13 |
Coupling influence between recycled ceramics and grazed hollow beads on mechanical properties and thermal conductivity of recycled thermal insulation concrete |
通讯 |
2021.08 |
Materials (SCI) |
Elsevier |
|||||||||||||||
14 |
Prediction and analysis of ultimate bearing capacity of square CFST long column under eccentric compression after acid rain corrosion |
第四 |
2021.05 |
Materials (SCI) |
Elsevier |
|||||||||||||||
15 |
Combined effects of graphite tailings and curing conditions on the early-age performances of cement mortar |
通讯 |
2020.08 |
Advances in Civil Engineering (SCI) |
Elsevier |
|||||||||||||||
16 |
Measurement of coarse aggregates movement characteristics within asphalt mixture using digital image processing methods |
第四 |
2020.05 |
Measurement (SCI) |
Elsevier |
|||||||||||||||
17 |
Effect of graphite tailings as substitute sand on mechanical properties of concrete |
通讯 |
2020.04 |
European Journal of Environmental and Civil Engineering (SCI) |
Elsevier |
|||||||||||||||
18 |
Mechanical and electroconductivity properties of graphite tailings concrete |
通讯 |
2020.04 |
Advances in Materials Science and Engineering (SCI) |
Elsevier |
|||||||||||||||
19 |
Coupled effects of the content and methylene blue value (MBV) of microfines on the performance of manufactured sand concrete |
共一/通讯 |
2019.12 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
20 |
Degradation characteristics of graphite tailings cement mortar subjected to freeze-thaw cycles |
共一/通讯 |
2019.10 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
21 |
Meso-mechanical research on alkali-silica reaction expansion in Pyrex glass and silica sand at different temperatures and curing times |
第一/通讯 |
2019.06 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
22 |
Mesoscopic cracking model of cement-based materials subjected to freeze-thaw cycles |
第一/通讯 |
2019.03 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
23 |
A new fracture model for reservoir ice layers in the northeast cold region of China |
共一/通讯 |
2018.10 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
24 |
Micro-mechanical modelling for the prediction of alkali-silica reaction (ASR) expansion: Influence of curing temperature conditions |
第一/通讯 |
2018.01 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
25 |
Mesoscopic damage model of concrete subjected to freeze-thaw cycles using mercury intrusion porosimetry and differential scanning calorimetry (MIP-DSC) |
第一/通讯 |
2017.04 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
26 |
Mesoscopic chloride ion diffusion model of marine concrete subjected to freeze-thaw cycles |
第一/通讯 |
2016.08 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
27 |
Investigation of the rheological properties of cement paste with different superplasticisers based on colour function and RDS methods |
第一/通讯 |
2016.03 |
Advances in Cement Research (SCI) |
Elsevier |
|||||||||||||||
28 |
Effects of micropore structure on hydration degree and mechanical properties of concrete in later curing age |
第一/通讯 |
2015.08 |
European Journal of Environmental and Civil Engineering (SCI) |
Elsevier |
|||||||||||||||
29 |
Mesoscopic transmission model of chloride ions in concrete based on coupling influence between multiple mechanisms and external load |
第一/通讯 |
2020.10 |
Advances in Civil Engineering Materials (EI) |
ASTM |
|||||||||||||||
30 |
Mesoscopic model on frost resistance of marine concrete subjected to chloride ion |
第一/通讯 |
2019.02 |
Advances in Civil Engineering Materials (EI) |
ASTM |
|||||||||||||||
31 |
Study on the damage mechanism of pore structure in concrete subjected to freeze-thaw cycles |
第一/通讯 |
2015.10 |
The Civil Engineering Journal (EI) |
Hans |
|||||||||||||||
32 |
环境湿度对玻璃纤维增强水泥力学性能的影响 |
第四 |
2016.05 |
复合材料学报(EI/CSCD) |
北京航空航天大学 |
|||||||||||||||
33 |
机械–化学耦合激发电解锰渣对水泥基材料性能的影响 |
通讯 |
2023.10 |
混凝土与水泥制品(中文核心) |
中国混凝土与水泥制品协会 |
|||||||||||||||
34 |
替代率对再生混凝土抗压强度影响的微观机理研究 |
通讯 |
2022.09 |
西安理工大学学报(CSCD) |
西安理工大学 |
|||||||||||||||
35 |
玄武岩纤维改善再生混凝土抗氯离子渗透性能研究 |
通讯 |
2022.02 |
硅酸盐通报(CSCD) |
中国硅酸盐学会 |
|||||||||||||||
36 |
玄武岩纤维对3D 打印再生水泥基材料性能的影响研究 |
通讯 |
2021.12 |
混凝土与水泥制品(中文核心) |
中国混凝土与水泥制品协会 |
|||||||||||||||
(三)获现职称以来主要科研情况 |
||||||||||||||||||||
项目名称(项目编号) |
本人 排名 |
项目经费 (万元) |
项目进展情况 |
项目来源 |
下达单位、时间 |
|||||||||||||||
高性能地聚物金属防腐涂层研发与应用(2022B1515120007) |
2 |
35/100 |
在研 |
广东省基础与应用基础研究基金–粤佛基金重点项目 |
2022 |
|||||||||||||||
石墨尾矿–矿渣基高性能地聚物的聚合机理及力学响应机制研究(2022A1515110380) |
1 |
10 |
在研 |
广东省基础与应用基础研究基金–粤佛基金青年项目 |
2022 |
|||||||||||||||
寒冷地区装配式结构节点用石墨尾矿超高性能混凝土应用基础研究(ZD2022E001) |
2 |
15/50 |
在研 |
黑龙江省自然科学基金重点项目 |
2022 |
|||||||||||||||
3D打印玄武岩纤维增强水泥基复合材料的纤维分布全设计理论及其应用(2021KQNCX083) |
1 |
3 |
结题 |
广东高校科研项目–青年创新人才项目 |
2021 |
|||||||||||||||
2024年广东省研究生学术论坛–低碳·绿色·高性能土木工程材料及结构的创新与发展分论坛(2023XSL_064) |
1 |
5 |
结题 |
广东省研究生教育创新计划项目 |
2023 |
|||||||||||||||
复杂服役环境下无机人造石材的关键材料与技术研究(KH20093) |
1 |
20 |
结题 |
广东省科技厅科技计划专项–特派员项目 |
2020 |
|||||||||||||||
抛填骨料混凝土路面的断裂机理研究(1100000103045 ) |
1 |
3 |
结题 |
交通部重点实验室开放基金项目 |
2019 |
|||||||||||||||
污泥制备水泥砌块的关键技术研究(KH20048) |
1 |
10 |
结题 |
佛山水木金谷环境科技有限公司 |
2020 |
|||||||||||||||
无机再生石材和混凝土制品的材料特性以及工程应用性能研究(KH20032) |
1 |
11 |
结题 |
佛山格耐特新型建筑材料科技有限公司 |
2020 |
|||||||||||||||
活性尾矿制备混凝土复合掺合料关键技术研究(KH2012) |
1 |
7 |
结题 |
广东新业混凝土有限公司 |
2020 |
|||||||||||||||
整形机制砂制备混凝土的关键技术研究(KH21092) |
1 |
5.5 |
结题 |
广东派安建材有限公司 |
2021 |
|||||||||||||||
杨和镇皂幕山景区地质灾害治理工程技术服务(KH21375) |
1 |
1 |
结题 |
广东中邺山河建筑工程有限公司 |
2021 |
|||||||||||||||
碾压混凝土结构理论模型的建立与分析(KH22040) |
1 |
2 |
结题 |
武汉理工大学 |
2022 |
|||||||||||||||
再生固废制备新型混凝土材料的基础与应用研究(KH23152) |
1 |
2 |
在研 |
广东中邺山河建筑工程有限公司 |
2023 |
|||||||||||||||
(四)获现职称以来获奖情况(含指导学生的获奖) |
||||||||||||||||||||
时间 |
项 目 |
授奖部门 |
获奖名称和等级 |
本人排名 |
||||||||||||||||
2023.08 |
2023年广东省建筑业协会科学技术奖 |
广东省建筑业协会 |
市厅级,二等奖 |
第三完成人 |
||||||||||||||||
2023.04 |
佛山市公路学会2022年度优秀技术论文 |
佛山市公路学会 |
市厅级,一等奖 |
第一完成人 |
||||||||||||||||
2023.04 |
佛山市公路学会2022年度优秀技术论文 |
佛山市公路学会 |
市厅级,三等奖 |
第二完成人 |
||||||||||||||||
2022.01 |
佛山市公路学会2021年度优秀技术论文 |
佛山市公路学会 |
市厅级,三等奖 |
第三完成人 |
||||||||||||||||
2020.12 |
首届全国生态混凝土创新设计应用大赛 |
中国混凝土与水泥制品协会 |
国家级,三等奖 |
第二完成人 |
||||||||||||||||
2023.12 |
2023年科研工作先进个人 |
佛山科学技术学院交通与土木建筑学院 |
无 |
1 |