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李古

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李古,男,香港大学博士,广东工业大学青年百人副教授、培英育才计划培养对象、硕士生导师、建材实验室主任,香港大学土木工程系Research Associate,香港混凝土学会HKCI资深会员,美国混凝土学会(ACI)会员,中国硅酸盐学会固废分会会员,环境地球化学与健康学会(SEGH)会员,广东省硅酸盐学会会员,广东企业科技特派员。2009年本科毕业于香港大学和中山大学,获香港大学土木工程工学学士学位2013年研究生毕业于香港大学,获博士学位。主持国家自然科学基金1项、广东省自然科学基金项目1项、广州市科技计划项目1项、校级人才项目2项,以及横向研究项目多项,并作为主要合作研究者参与香港研究资助局项目3项、香港建筑业议会资助项目2项、国家自然科学基金3项。目前已在Cement & Concrete CompositesPowder TechnologyConstruction and Building Materials、浙江大学学报-英文版A辑等在内的国内外期刊发表学术论文超过50篇,其中SCI论文24篇(其中第一或通讯作者17篇),获授权专利8项,获广东省硅酸盐学会青年科技奖Construction and Building MaterialsPowder TechnologyJournal of Environmental Management等权威期刊的特邀审稿人。

研究方向:

1高性能混凝土与自密实混凝土

2)纳米改性混凝土

3再生混凝土与固废物资源化利用

4纤维增强混凝土

5)新型海洋工程材料与结构

6水泥基材料流变学颗粒学与耐久性研究等

联系方式:

电邮:ligu123@qq.com

办公地点:大学城广东工业大学实验2号楼513-5

招生专业:

土木工程、结构工程、无机非金属材料等。

可推荐优秀研究生往香港大学任研究助理并进行短期学习交流,参与国际科研项目。

代表作:

[1] Li L.G. and Kwan A.K.H.*, Mortar design based on water film thickness, Construction and Building Materials, May 2011, 25, pp 2381-2390. (SCI收录,中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2010.11.038

[2] Kwan A.K.H.*, Li L.G. and Fung W.W.S., Wet packing of blended fine and coarse aggregate, Materials and Structures, June 2012, 45(6), pp 817-828. (SCI收录,中科院3JCR三区)

http://doi.org/10.1617/s11527-011-9800-3

[3] Kwan A.K.H.* and Li L.G., Combined effects of water film thickness and paste film thickness on rheology of mortar, Materials and Structures, September 2012, 45(9), pp 1359-1374. (SCI收录,中科院3JCR三区)

http://doi.org/10.1617/s11527-012-9837-y

[4] Li L.G. and Kwan A.K.H.*, Concrete mix design based on water film thickness and paste film thickness, Cement & Concrete Composites, May 2013, 39, pp 33-42. (SCI收录,中科院2JCR一区)

http://doi.org/10.1016/j.cemconcomp.2013.03.021

[5] Kwan A.K.H.* and Li L.G., Combined effects of water film, paste film and mortar film thicknesses on fresh properties of concrete, Construction and Building Materials, January 2014, 50, pp 598–608. (SCI收录,中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2013.10.014

[6] Li L.G. and Kwan A.K.H.*, Packing density of concrete mix under dry and wet conditions, Powder Technology, February 2014, 253, pp 514-521. (SCI收录光盘版中科院2JCR一区)

http://doi.org/10.1016/j.powtec.2013.12.020

[7] Li L.G. and Kwan A.K.H.*, Effects of superplasticizer type on packing density, water film thickness and flowability of cementitious paste, Construction and Building Materials, July 2015, 85, pp 113-119. (SCI收录,中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2015.03.104

[8] Li L.G. and Kwan A.K.H.*, Adding limestone fines as cementitious paste replacement to improve tensile strength, stiffness and durability of concrete, Cement & Concrete Composites, July 2015, 60, pp 17-24. (SCI收录,中科院2JCR一区)

http://doi.org/10.1016/j.cemconcomp.2015.02.006

[9] Ng P.L.*, Kwan A.K.H. and Li L.G., Packing and film thickness theories for the mix design of high-performance concrete. Journal of Zhejiang University-Science A, October 2016, 17(10), pp 759-781. (SCI收录,中科院4JCR四区)

http://dx.doi.org/10.1631/jzus.A1600439

[10] Li L.G.*, Zhu J., Zhao Z.W. and Kwan A.K.H., Roles of water film thickness and polypropylene fibre content in fresh properties of mortar. Advances in Cement Research, February 2017, 29(2), pp 71-80. (SCI收录,中科院4JCR四区)

http://dx.doi.org/10.1680/jadcr.16.00102

[11] Li L.G.*, Huang Z.H., Zhu J., Kwan A.K.H. and Chen H.Y., Synergistic effects of micro-silica and nano-silica on strength and microstructure of mortar. Construction and Building Materials, 1 June 2017, 140, pp 229-238. (SCI收录,中科院2JCR一区)

http://dx.doi.org/10.1016/j.conbuildmat.2017.02.115

[12] Li L.G.*, Chen J.J. and Kwan A.K.H., Roles of packing density and water film thickness in strength and durability of limestone fines concrete. Magazine of Concrete Research, June 2017, 69(12), pp 595-605. (SCI收录,中科院4JCR四区)

http://dx.doi.org/10.1680/jmacr.16.00067

[13] Li L.G.*, Kwan A.K.H., Roles of superplasticiser dosage, water film thickness and slurry film thickness in flowability of cementitious paste. Advances in Cement Research, July 2017, 29(7), pp 287-301. (SCI收录,中科院4JCR四区)

http://dx.doi.org/10.1680/jadcr.16.00187

[14] Chen J.J.*, Li L.G., Ng P.L., Kwan A.K.H., Effects of superfine zeolite on strength, flowability and cohesiveness of cementitious paste. Cement & Concrete Composites, October 2017, 83, pp 101-110. (SCI收录,中科院2JCR一区)

http://doi.org/10.1016/j.cemconcomp.2017.06.010

[15] Li L.G.*, Zhu J., Huang Z.H., Kwan A.K.H., Li L.J., Combined effects of micro-silica and nano-silica on durability of mortar. Construction and Building Materials, 30 December 2017, 157, pp 337–347. (SCI 收录,中科院2区,JCR一区)

http://doi.org/10.1016/j.conbuildmat.2017.09.105

[16] Li L.G., Lin C.J., Chen G.M.*, Kwan A.K.H., Jiang T., Effects of packing on compressive behaviour of recycled aggregate concrete. Construction and Building Materials, 30 December 2017, 157, pp 757-777. (SCI 收录中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2017.09.097

[17] Li L.G., Huang Z.H., Ng P.L.*, Zhu J., Kwan A.K.H., Effects of micro-silica and nano-silica on fresh properties of mortar. Materials Science-Medziagotyra, December 2017, 23(4), pp 362-371. (SCI 收录中科院4JCR四区)

http://dx.doi.org/10.5755/j01.ms.23.4.16632

[18] Chen J.J.*, Ng P.L., Li L.G., Kwan A.K.H., Use of superfine zeolite in conjunction with silica fume — Effects on rheology and strength of cementitious paste. Powder Technology, 1 April 2018, 328, pp 75-83. (SCI收录光盘版中科院2JCR一区)

http://doi.org/10.1016/j.powtec.2018.01.008

[19] Li L.G.*, Huang Z.H., Tan Y.P., Kwan A.K.H., Liu F., Use of marble dust as paste replacement for recycling waste and improving durability and dimensional stability of mortar. Construction and Building Materials, 30 March 2018, 166, pp 423-432. (SCI 收录中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2018.01.154

[20] Li L.G.*, Zheng J.Y., Zhu J., Kwan A.K.H., Combined usage of micro-silica and nano-silica in concrete: SP demand, cementing efficiencies and synergistic effect. Construction and Building Materials, 20 April 2018, 168, pp 622-632. (SCI 收录中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2018.02.181

[21] Li L.G.*, Wang Y.M., Tan Y.P., Kwan A.K.H., Li L.J., Adding granite dust as paste replacement to improve durability and dimensional stability of mortar. Powder Technology, 15 June 2018, 333, pp 269-276. (SCI收录光盘版中科院2JCR一区)

http://doi.org/10.1016/j.powtec.2018.04.055

[22] Li L.G., Zhao Z.W., Zhu J.*, Kwan A.K.H., Zeng K.L., Combined effects of water film thickness and polypropylene fibre length on fresh properties of mortar. Construction and Building Materials, 20 June 2018, 174, pp 586–593. (SCI 收录中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2018.03.259

[23] Li L.G.*, Chu S.H., Zeng K.L., Zhu J., Kwan A. K. H., Roles of water film thickness and fibre factor in workability of polypropylene fibre reinforced mortar. Cement & Concrete Composites, October 2018, 23, pp 196-204. (SCI 收录中科院2JCR一区)

http://doi.org/10.1016/j.cemconcomp.2018.07.014

[24] Chu S.H., Li L.G., Kwan A.K.H.*, Fibre factors governing the fresh and hardened properties of steel FRC, Construction and Building Materials, 20 October 2018, 186, pp 1228-1238. (SCI 收录中科院2JCR一区)

http://doi.org/10.1016/j.conbuildmat.2018.08.047

获奖与荣誉:

[1] 2011-5-23ARUP Research Prize 20112011奥雅纳研究奖),获奖题目:“Basic Research on the High-Performance Concrete for Hong Kong(香港高性能混凝土的基础研究)

[2] 2014-4,广东工业大学青年百人称号。

[3] 2016-7-23,论文《聚丙烯纤维长度对新拌混凝土性能的影响》获第十六届全国现代结构工程学术研讨会中通钢构杯中青年优秀论文奖

[4] 2017-12,广东省硅酸盐学会广东省硅酸盐学会青年科技奖

[5] 2017-7,广东工业大学,第三批培英育才计划(科研第二层次)。

纵向科研项目(节选)

[1] 广东工业大学青年百人计划启动项目,高性能混凝土及相关材料的性能研究和开发应用,项目编号:220413508,资助金额:10万元,起止时间:2014 2019项目主持,在研

[2] 广东省自然科学基金-博士启动,基于膜厚度理论下的砂浆流变性能关键因素研究,项目编号:2015A030310282,资助金额:10万元,起止时间:2015/08 2018/08项目主持,在研

[3] 广州市科技计划项目-一般项目,基于膜厚度理论的自密实混凝土流变性能研究,项目编号:201607010329,资助金额:20万元,起止时间:2016/4/1 2018/3/31项目主持,结题(编号:穗科验字〔2018〕第0641号)

[4] 国家自然科学基金-青年基金,基于膜厚度理论的自密实混凝土流变性能关键影响因素研究,项目编号:51608131,资助金额:20万元,起止时间:2017/01 2019/12项目主持,在研

[5] 广东工业大学培英育才计划(科研第二层次)项目编号220411336资助金额40万元,起止日期:2017/7  2021/7项目主持,在研

[6] 国家自然科学基金-面上项目,项目编号:51678161“FRP约束再生骨料混凝土力学性能研究,资助金额:62万元,起止日期:2017/01 2020/12项目参与,在研

[7] 国家自然科学基金-青年基金,项目编号:11602060亚热带海洋环境下橡胶混凝土轴压及断裂性能的退化机理研究,资助金额:22万元,起止时间:2017/01 2019/12项目参与,在研

[8] 国家自然科学基金-面上项目,项目编号:51778150预制节段UHPC梁接缝直剪破坏机理和设计理论研究,资助金额:60万元,起止日期:2018/01 2021/12项目参与,在研

[9] 广东省应用型科技研发及重大科技成果转化专项应用型科技研发扶持),“建筑垃圾再生装配式混凝土构件关键技术研发与产业化”,项目编号:2017B020238006,文件编号:粤科规财字[2017]151号,资助金额:800万元,起止时间:2017/07 2020/06项目参与,在研。

 

 

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