2024-05-16
姓名 |
李犇 |
性 別 |
男 |
民 族 |
漢 |
政治 面貌 |
中共黨員 |
|
||||||||||||
籍貫 |
山東日照 |
出生年月 |
1989.06 |
參加工作時(shí)間 |
2019.08 |
|||||||||||||||
最高學(xué)歷(學(xué)位) |
博士研究生(工學(xué)博士) |
現(xiàn)行政職務(wù)及任職時(shí)間 |
無 |
|||||||||||||||||
擅長(zhǎng)領(lǐng)域 |
土木工程材料 |
聯(lián)系方式 (辦公電話,、郵箱) |
18718737023 Liben89@fosu.edu.cn |
|||||||||||||||||
學(xué)歷學(xué)位教育情況 |
起止年月 |
畢業(yè)院校 |
所學(xué)專業(yè) |
學(xué)制(年) |
學(xué)歷(學(xué)位) |
|||||||||||||||
2015.10-2017.01 |
北海道大學(xué) |
材料科學(xué) |
1.5 |
CSC聯(lián)合培養(yǎng)博士 |
||||||||||||||||
2012.09-2018.06 |
哈爾濱工程大學(xué) |
固體力學(xué) |
4 |
博士研究生 |
||||||||||||||||
2008.09-2012.06 |
山東科技大學(xué) |
土木工程 |
4 |
本科生 |
||||||||||||||||
|
||||||||||||||||||||
主要工作經(jīng)歷 |
自何年何月 |
至何年何月 |
在何地,、何單位任何職 |
|||||||||||||||||
2019.08 |
至今 |
佛山科學(xué)技術(shù)學(xué)院交通與土木建筑學(xué)院專任教師 |
||||||||||||||||||
(一)教學(xué)工作情況 |
||||||||||||||||||||
課程類別 |
何年何月至 何年何月 |
講授課程名稱 |
||||||||||||||||||
專業(yè)基礎(chǔ)課 |
2019.09–今 |
土木工程材料 |
||||||||||||||||||
2023.09–今 |
土木工程創(chuàng)新實(shí)驗(yàn)1和2 |
|||||||||||||||||||
2023.09–今 |
彈塑性理論 |
|||||||||||||||||||
(二)SCI、 EI ,、 ISTP,、人大復(fù)印資料索引論文 |
||||||||||||||||||||
序號(hào) |
題 目 |
作者 名次 |
發(fā)表 年月 |
刊物名稱(刊號(hào)) |
刊物主辦單位 |
|||||||||||||||
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 |
通訊 |
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 |
通訊 |
2023.12 |
Developments in the Built Environment (SCI) |
Elsevier |
|||||||||||||||
3 |
Sulfate resistance and degradation mechanism of basalt fiber modified graphite tailings cement-based materials |
通訊 |
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 |
通訊 |
2023.06 |
Sustainability (SCI) |
Elsevier |
|||||||||||||||
6 |
An investigation of the mechanical properties of basalt fibre-reinforced graphite tailings cement mortar |
通訊 |
2022.12 |
Buildings (SCI) |
Elsevier |
|||||||||||||||
7 |
Research on modification of mechanical properties of recycled aggregate concrete by replacing sand with graphite tailings |
通訊 |
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 |
通訊 |
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 |
通訊 |
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 |
通訊 |
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 |
通訊 |
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 |
通訊 |
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 |
通訊 |
2020.04 |
European Journal of Environmental and Civil Engineering (SCI) |
Elsevier |
|||||||||||||||
18 |
Mechanical and electroconductivity properties of graphite tailings concrete |
通訊 |
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/通訊 |
2019.12 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
20 |
Degradation characteristics of graphite tailings cement mortar subjected to freeze-thaw cycles |
共一/通訊 |
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/通訊 |
2019.06 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
22 |
Mesoscopic cracking model of cement-based materials subjected to freeze-thaw cycles |
第一/通訊 |
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/通訊 |
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/通訊 |
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/通訊 |
2017.04 |
Construction and Building Materials (SCI) |
Elsevier |
|||||||||||||||
26 |
Mesoscopic chloride ion diffusion model of marine concrete subjected to freeze-thaw cycles |
第一/通訊 |
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/通訊 |
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/通訊 |
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/通訊 |
2020.10 |
Advances in Civil Engineering Materials (EI) |
ASTM |
|||||||||||||||
30 |
Mesoscopic model on frost resistance of marine concrete subjected to chloride ion |
第一/通訊 |
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/通訊 |
2015.10 |
The Civil Engineering Journal (EI) |
Hans |
|||||||||||||||
32 |
環(huán)境濕度對(duì)玻璃纖維增強(qiáng)水泥力學(xué)性能的影響 |
第四 |
2016.05 |
復(fù)合材料學(xué)報(bào)(EI/CSCD) |
北京航空航天大學(xué) |
|||||||||||||||
33 |
機(jī)械–化學(xué)耦合激發(fā)電解錳渣對(duì)水泥基材料性能的影響 |
通訊 |
2023.10 |
混凝土與水泥制品(中文核心) |
中國(guó)混凝土與水泥制品協(xié)會(huì) |
|||||||||||||||
34 |
替代率對(duì)再生混凝土抗壓強(qiáng)度影響的微觀機(jī)理研究 |
通訊 |
2022.09 |
西安理工大學(xué)學(xué)報(bào)(CSCD) |
西安理工大學(xué) |
|||||||||||||||
35 |
玄武巖纖維改善再生混凝土抗氯離子滲透性能研究 |
通訊 |
2022.02 |
硅酸鹽通報(bào)(CSCD) |
中國(guó)硅酸鹽學(xué)會(huì) |
|||||||||||||||
36 |
玄武巖纖維對(duì)3D 打印再生水泥基材料性能的影響研究 |
通訊 |
2021.12 |
混凝土與水泥制品(中文核心) |
中國(guó)混凝土與水泥制品協(xié)會(huì) |
|||||||||||||||
(三)獲現(xiàn)職稱以來主要科研情況 |
||||||||||||||||||||
項(xiàng)目名稱(項(xiàng)目編號(hào)) |
本人 排名 |
項(xiàng)目經(jīng)費(fèi) (萬元) |
項(xiàng)目進(jìn)展情況 |
項(xiàng)目來源 |
下達(dá)單位、時(shí)間 |
|||||||||||||||
高性能地聚物金屬防腐涂層研發(fā)與應(yīng)用(2022B1515120007) |
2 |
35/100 |
在研 |
廣東省基礎(chǔ)與應(yīng)用基礎(chǔ)研究基金–粵佛基金重點(diǎn)項(xiàng)目 |
2022 |
|||||||||||||||
石墨尾礦–礦渣基高性能地聚物的聚合機(jī)理及力學(xué)響應(yīng)機(jī)制研究(2022A1515110380) |
1 |
10 |
在研 |
廣東省基礎(chǔ)與應(yīng)用基礎(chǔ)研究基金–粵佛基金青年項(xiàng)目 |
2022 |
|||||||||||||||
寒冷地區(qū)裝配式結(jié)構(gòu)節(jié)點(diǎn)用石墨尾礦超高性能混凝土應(yīng)用基礎(chǔ)研究(ZD2022E001) |
2 |
15/50 |
在研 |
黑龍江省自然科學(xué)基金重點(diǎn)項(xiàng)目 |
2022 |
|||||||||||||||
3D打印玄武巖纖維增強(qiáng)水泥基復(fù)合材料的纖維分布全設(shè)計(jì)理論及其應(yīng)用(2021KQNCX083) |
1 |
3 |
結(jié)題 |
廣東高??蒲许?xiàng)目–青年創(chuàng)新人才項(xiàng)目 |
2021 |
|||||||||||||||
2024年廣東省研究生學(xué)術(shù)論壇–低碳·綠色·高性能土木工程材料及結(jié)構(gòu)的創(chuàng)新與發(fā)展分論壇(2023XSL_064) |
1 |
5 |
結(jié)題 |
廣東省研究生教育創(chuàng)新計(jì)劃項(xiàng)目 |
2023 |
|||||||||||||||
復(fù)雜服役環(huán)境下無機(jī)人造石材的關(guān)鍵材料與技術(shù)研究(KH20093) |
1 |
20 |
結(jié)題 |
廣東省科技廳科技計(jì)劃專項(xiàng)–特派員項(xiàng)目 |
2020 |
|||||||||||||||
拋填骨料混凝土路面的斷裂機(jī)理研究(1100000103045 ) |
1 |
3 |
結(jié)題 |
交通部重點(diǎn)實(shí)驗(yàn)室開放基金項(xiàng)目 |
2019 |
|||||||||||||||
污泥制備水泥砌塊的關(guān)鍵技術(shù)研究(KH20048) |
1 |
10 |
結(jié)題 |
佛山水木金谷環(huán)境科技有限公司 |
2020 |
|||||||||||||||
無機(jī)再生石材和混凝土制品的材料特性以及工程應(yīng)用性能研究(KH20032) |
1 |
11 |
結(jié)題 |
佛山格耐特新型建筑材料科技有限公司 |
2020 |
|||||||||||||||
活性尾礦制備混凝土復(fù)合摻合料關(guān)鍵技術(shù)研究(KH2012) |
1 |
7 |
結(jié)題 |
廣東新業(yè)混凝土有限公司 |
2020 |
|||||||||||||||
整形機(jī)制砂制備混凝土的關(guān)鍵技術(shù)研究(KH21092) |
1 |
5.5 |
結(jié)題 |
廣東派安建材有限公司 |
2021 |
|||||||||||||||
楊和鎮(zhèn)皂幕山景區(qū)地質(zhì)災(zāi)害治理工程技術(shù)服務(wù)(KH21375) |
1 |
1 |
結(jié)題 |
廣東中鄴山河建筑工程有限公司 |
2021 |
|||||||||||||||
碾壓混凝土結(jié)構(gòu)理論模型的建立與分析(KH22040) |
1 |
2 |
結(jié)題 |
武漢理工大學(xué) |
2022 |
|||||||||||||||
再生固廢制備新型混凝土材料的基礎(chǔ)與應(yīng)用研究(KH23152) |
1 |
2 |
在研 |
廣東中鄴山河建筑工程有限公司 |
2023 |
|||||||||||||||
(四)獲現(xiàn)職稱以來獲獎(jiǎng)情況(含指導(dǎo)學(xué)生的獲獎(jiǎng)) |
||||||||||||||||||||
時(shí)間 |
項(xiàng) 目 |
授獎(jiǎng)部門 |
獲獎(jiǎng)名稱和等級(jí) |
本人排名 |
||||||||||||||||
2023.08 |
2023年廣東省建筑業(yè)協(xié)會(huì)科學(xué)技術(shù)獎(jiǎng) |
廣東省建筑業(yè)協(xié)會(huì) |
市廳級(jí),,二等獎(jiǎng) |
第三完成人 |
||||||||||||||||
2023.04 |
佛山市公路學(xué)會(huì)2022年度優(yōu)秀技術(shù)論文 |
佛山市公路學(xué)會(huì) |
市廳級(jí),一等獎(jiǎng) |
第一完成人 |
||||||||||||||||
2023.04 |
佛山市公路學(xué)會(huì)2022年度優(yōu)秀技術(shù)論文 |
佛山市公路學(xué)會(huì) |
市廳級(jí),,三等獎(jiǎng) |
第二完成人 |
||||||||||||||||
2022.01 |
佛山市公路學(xué)會(huì)2021年度優(yōu)秀技術(shù)論文 |
佛山市公路學(xué)會(huì) |
市廳級(jí),,三等獎(jiǎng) |
第三完成人 |
||||||||||||||||
2020.12 |
首屆全國(guó)生態(tài)混凝土創(chuàng)新設(shè)計(jì)應(yīng)用大賽 |
中國(guó)混凝土與水泥制品協(xié)會(huì) |
國(guó)家級(jí),三等獎(jiǎng) |
第二完成人 |
||||||||||||||||
2023.12 |
2023年科研工作先進(jìn)個(gè)人 |
佛山科學(xué)技術(shù)學(xué)院交通與土木建筑學(xué)院 |
無 |
1 |