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林建軍
(燕山大學教師)
鎖定
林建軍,男,河北唐山人,燕山大學建築工程與力學學院教師,碩士生導師,主要從事基於非球形顆粒堆積體系的水泥基材料微結構特徵與宏觀性能的數值模擬方面的研究,近年來參與中國科技部973項目、國家自然科學基金委中英合作項目、面上項目、校企合作項目等多項。在International Journal of Heat and Mass Transfer、Power Technology、Physical Review E、Materials Characterization等期刊和會議上發表各類學術論文多篇。
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- 中文名
- 林建軍
- 外文名
- JIANJUN LIN
- 國 籍
- 中國
- 民 族
- 漢族
- 畢業院校
- 東南大學
- 職 業
- 高等院校教師
- 職 稱
- 講師
- 學位/學歷
- 博士/博士研究生
林建軍教育背景
林建軍工作經歷
林建軍研究方向
林建軍科研項目
林建軍期刊文章
1、Mingqi Li, Huisu Chen*, Jianjun Lin*, Rongling Zhang, Lin Liu. Effects of the pore shape polydispersity on the percolation threshold and diffusivity of porous composites: Theoretical and numerical studies. Powder Technology, 386(2021), 382-393. (SCI收錄)
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2、Jianjun Lin*, Huisu Chen*, Qingxin Zhao, Mingqi Li. Statistical analysis of the critical percolation of ITZ around polygonal aggregates in three-phase concrete materials. Physica A: Statistical Mechanics and its Applications, 572(2021), 125878. (SCI收錄)
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3、Jianjun Lin, Huisu Chen*, Lin Liu*, Impact of polydispersity of particle shape and size on percolation threshold of 3D particulate media composed of penetrable superellipsoids, Powder Technology, 360(2020) 944-955.(SCI收錄)
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4、Jianjun Lin, Huisu Chen*, Lin Liu*, Rongling Zhang, Impact of particle size ratio on the percolation thresholds of 2D bidisperse granular systems composed of soft superellipses, Physica A, 544(2020), 123564.(SCI收錄)
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5、Mingqi Li, Huisu Chen*, Jianjun Lin. Numerical study for the percolation threshold and transport properties of porous composites comprising non-centrosymmetrical superovoidal pores, Computer Methods in Applied Mechanics and Engineering, 361(2020) 112815.(SCI收錄)
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6、Mingqi Li, Huisu Chen*, Jianjun Lin,Pietro Lura. Areal analysis induced bias on interface thickness around ovoidal particles. Construction and Building Materials, 262(2020) 120583.(SCI收錄)
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7、Mingqi Li, Huisu Chen*, Jianjun Lin,Pietro Lura, Zhigang Zhu. The bias of the interface thickness and diffusivity of concrete comprising Platonic aggregates induced by areal analysis. Powder Technology, 376(2020) 209-221.(SCI收錄)
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8、Mingqi Li, Huisu Chen*, Jianjun Lin. Efficient measurement of the percolation threshold for random systems of congruent overlapping ovoids, Powder Technology, 360(2020) 598-607.(SCI收錄)
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9、Jianjun Lin, Wulong Zhang, Huisu Chen*, Rongling Zhang, Lin Liu*, Effect of pore characteristic on the percolation threshold and diffusivity of porous media comprising overlapping concave-shaped pores, International Journal of Heat and Mass Transfer, 138(2019) 1333-1345.(SCI收錄)
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10、Jianjun Lin, Huisu Chen*. Measurement of continuum percolation properties of two-dimensional particulate systems comprising congruent and binary superellipses, Powder Technology, 347(2019) 17-26.(SCI收錄)
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11、Jianjun Lin, Huisu Chen*, Rongling Zhang, Lin Liu*, Characterization of the wall effect of concrete via random packing of polydispersed superball-shaped aggregates, Materials Characterization, 154(2019) 335-343.(SCI收錄)
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12、Jianjun Lin, Huisu Chen, Lattice Boltzmann simulation of fluid flow through random packing beds of Platonic particles: Effect of particle characteristics, Particuology, 47(2019) 41-53.(SCI收錄)
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13、Jianjun Lin, Huisu Chen*. Effect of particle morphologies on the percolation of particulate porous media: A study of superballs, Powder Technology, 335(2018) 388-400.(SCI收錄)
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14、Jianjun Lin, Huisu Chen*, Wenxiang Xu*. Geometrical percolation threshold of congruent cuboidlike particles in overlapping particle systems, Physical Review E, 98(2018) 012134.(SCI收錄)
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15、Jianjun Lin, Huisu Chen*, Zhong Lv, Yujiang Wang, Analytical solution on dosage of self-healing capsules in materials with two-dimensional multi-shaped crack patterns, Science and Engineering of Composite Materials, 25(2018) 1229-1239.(SCI收錄)
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16、Huisu Chen*, Zhigang Zhu, Jianjun Lin, Wenxiang Xu, Lin Liu*. Numerical modeling on the influence on particle shape on ITZ’s microstructure and macro-properties of cementitious composites: A critical review, Journal of Sustainable Cement-Based Materials, 7(2018) 248-269.(SCI收錄)
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17、Jianjun Lin, Huisu Chen*. Continuum percolation of porous media via random packing of overlapping cube-like particles, Theoretical and Applied Mechanics Letters, 8(2018) 299-303.(ESCI收錄)
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18、Ru Mu*, Hui Li, Longbang Qing, Jianjun Lin, Quanming Zhao, Aligning steel fibers in cement mortar using electro-magnetic field, Construction and Building Materials, 131(2017) 309-316.(SCI收錄)
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林建軍會議文章
1、Jianjun Lin, Huisu Chen*. Characteristics of Platonic particles on the ionic diffusion in granular mortar based on lattice Boltzmann method. In: TheInternational Symposium on Concrete Modelling, Delft, 2018.08.26-08.29.
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2、Jianjun Lin, Huisu Chen*. Continuum percolation of porous media via random packing of overlappingcube-like particles. 第四屆全國顆粒材料計算力學會議(CMGM2018), 廈門, 2018.07.06-07.08.(優秀學生論文)
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3、Huisu Chen*, Jianjun Lin, Zhigang Zhu. Influence of particle shape onpercolation threshold, ITZ thickness and microstructure of cementitiouscomposites. In: The International Symposium on Concrete Modelling, Delft, 2018.08.26-08.29.
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4、Jianjun Lin, Huisu Chen*. Quantitative characterization of the mesostructure ofconcrete via random packing of cube-like particles. In: Proceedings of the 9thinternational symposium on cement and concrete, 武漢, 2017.11.01-11.03.
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5、Huisu Chen*, Zhigang Zhu, Jianjun Lin. Multiscalestudy on the influence of particle shape on microstructure and transport ofCementitious Composites. In: Proceedings of the 37th Cement and ConcreteScience Conference, London, 2017.09.11-09.12.
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6、Huisu Chen*, Zhigang Zhu, Jianjun Lin. Influence of particle shape on ITZ’s microstructure andmacro-properties of cementitious composites: numerical modeling. In:Proceedings of the 3rd International Conference on Chemically ActivatedMaterials, Gold Coast, Australia, 2017.08.08-08.11.
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7、陳惠蘇*, 林建軍, 呂忠. 不同裂紋格局下自癒合膠囊摻量的統計解析模型. 第一屆全國可持續混凝土理論與應用技術學術交流會暨紀念同濟大學黃藴元先生誕辰一百週年學術交流會. 蔣正武、吳凱主編, “第一屆全國可持續混凝土理論與應用技術學術交流會論文集”, 上海, 2016.05.27-05.29.
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林建軍發明專利
暫無
林建軍榮譽獎項
暫無
- 參考資料
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- 1. 燕山大學教師個人主頁系統 .燕山大學[引用日期2021-01-26]
- 2. 科研之友:林建軍 .Scholarmate[引用日期2021-01-27]
- 3. Researchgate-Jianjun Lin .Researchgate[引用日期2021-01-28]