谭力豪TAM Lik Ho

硕士生导师 

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所在单位:交通科学与工程学院

办公地点:沙河校区主楼A302-3室

在职信息:在职

论文发表

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专刊序言

    († 共同第一作者* 通讯作者, # 课题组成员)

    [4] Lik-ho Tam, Ao Zhou, Zechuan Yu and Chao Wu*, “Editorial: Microstructures and Mechanical Properties of Cement-Based Composites”, Materials, 2023, 16(20), 6636.

    [3] Lik-ho Tam, Dong-joo Lee and Vineet Kumar, “Editorial: Polymer composites based on nanofillers: design, properties, and applications”, Frontiers in Materials, 2023, 10:1216973.

    [2] 吴超, 谭力豪, 冯鹏, 陈建飞, “高性能复合材料助力“新基建”—“高性能纤维增强复合材料的多尺度结构与性能研究”专栏序言”, 复合材料学报, 2022, 39(11).

    [1] Lik-ho Tam, Chao Wu, Libo Yan and Denvid Lau, “Editorial: Multi-Scale Investigation on Fiber-Reinforced Composite Materials: From Structural Design, Property Characterization to Engineering Applications”, Frontiers in Materials, 2022, 9:924213.

期刊论文

    2024

    [53] Walid Mansour, Weiwen Li, Peng Wang, Cheikh Makhfouss Fame, Lik-ho Tam, Yao Lu, Md. Habibur Rahman Sobuz, and Noha Yehia Elwakkad, “Improving the flexural response of timber beams using externally bonded carbon fibre-reinforced polymer (CFRP) sheets”, Materials, 2024, in press.

    2023

    [52] Danyang Zhao#, Xing Quan Wang, Lik-ho Tam, Cheuk Lun Chow and Denvid Lau, “Tailored twisted CNT bundle with improved inter-tube slipping performances”, Thin-Walled Structures, 2024, 196:111536.

    [51] J.F. Wang*, P.H. Li#, X.B. Tian, S.Q. Shi and Lik-ho Tam*, “Molecular investigation on temperature-dependent mechanical properties of PMMA/CNT nanocomposite”, Engineering Fracture Mechanics, 2023, 293:109705.

    [50] Ruidong Wu#, Xing Quan Wang, Danyang Zhao#, Jia-ao Hou#, Chao Wu*, Denvid Lau* and Lik-ho Tam*, “Degradation of fiber/matrix interface under various environmental and loading conditions: Insights from molecular simulations”, Construction and Building Materials, 2023, 390:131101.

    [49] Lik-ho Tam†, Marc A. Ntjam Minkeng†#, Denvid Lau, Walid Mansour and Chao Wu, “Molecular interfacial shearing creep behavior of carbon fiber/epoxy matrix interface under moisture condition”, Engineering Fracture Mechanics, 2023, 282:109177.

    [48] Chao Wu†, Jia-ao Hou†#, Hongtao Liu, Jipeng Yang#, Denvid Lau and Lik-ho Tam*, “Understanding moisture effect on nonlinear vibrations of epoxy thin film via a multiscale simulation”, Journal of Sound and Vibration, 2023, 553:117649.

    [47] Chao Wu, Yue Ding, Li He and Lik-ho Tam*, “Web Crippling of Pultruded GFRP Built-up Section”, Thin-Walled Structures, 2023, 185:110646.

    [46] Chao Wu, Yang-Zhe Yu, Lik-ho Tam and Li He, “Effects of Bondline Defects on the Bond Behaviour of CFRP-Steel Double Strap Joints”, Composite Structures, 2023, 308:116682.

    2022

    [45] Yan Tang, Zechuan Yu, Lik-ho Tam, Ao Zhou and D.M. Li, “Behaviors of water molecules in polyvinyl alcohol gel amid stretch and temperature changes: a molecular dynamics study”, Materials Today Communications, 2022, 33:104834.

    [44] Chao Wu, Zixiao Zhang, Li He and Lik-ho Tam*, “Experimental Study on the Static and Fatigue Performances of GFRP-Timber Bolted Connections”, Composite Structures, 2023, 304:116435.

    [43] 田莉梅,徐东升,赵鹏飞,王伟,谭力豪*, “基于数字技术的传统聚落空间的连片保护与活化利用研究”, 工业建筑, 2023, 53(03):88-95.

    [42] Yang-Zhe Yu, Lik-ho Tam and Chao Wu, “A universal solution of the bond behaviour between CFRP-steel double strap joints considering steel yielding”, Composite Structures, 2023, 304:116377.

    [41] Cheikh Makhfouss Fame, Li He, Lik-ho Tam and Chao Wu, “Fatigue damage tolerance of adhesively bonded pultruded GFRP double-strap joints with adhesion defects”, Journal of Composites for Construction, 2023, 27(1):04022100.

    [40] Walid Mansour, Bassam A. Tayeh and Lik-ho Tam, “Finite element analysis of shear performance of UHPFRC-encased steel composite beams: Parametric study”, Engineering Structures, 2022, 271:114940 .

    [39] Cheikh Makhfouss Fame, Chao Wu, Peng Feng and Lik-ho Tam, “Numerical Investigations on the Damage Tolerance of Adhesively Bonded Pultruded GFRP Joints with Adhesion Defects”, Composite Structures, 2022, 301:116223.

    [38] Chao Wu, Bing Chen Meng, Lik-ho Tam and Li He, “Yellowing Mechanisms of Epoxy and Vinyl Ester Resins under Thermal, UV and Natural Aging Conditions and Protection Methods”, Polymer Testing, 2022, 114:107708.

    [37] Lik-ho Tam†, Ruidong Wu†#, Marc A. Ntjam Minkeng#, Jinqiao Jiang#, Ao Zhou, Huali Hao, Zechuan Yu and Chao Wu, “Understanding creep behavior of carbon fiber/epoxy matrix interface via molecular dynamics simulation”, Mechanics of Advanced Materials and Structures, 2023, 30(19):4052-4064.

    [36] J.F. Wang*, S.Q. Shi, Y.Z. Liu, J.P. Yang# and Lik-ho Tam*, “Multiscale simulation of temperature- and pressure-dependent nonlinear dynamics of PMMA/CNT composite plates”, Nonlinear Dynamics, 2022, 109:1517–1550.

    [35] Chao WuRuidong Wu# and Lik-ho Tam*, “The creep behavior of semicrystalline carbon nanotube/polypropylene nanocomposite: A coarse-grained molecular study”, Polymer Degradation and Stability, 2022, 196:109834.

    2021

    [34] 吴超, 余洋喆, 雷昕弋, 谭力豪*, “钢板屈服对CFRP-钢界面粘接性能影响的试验研究, 复合材料学报, 202239(11): 5062-5073.

    [33] J.F. Wang, J.P. Yang#, L.-h. Tam* and W. Zhang*, “Effect of CNT volume fractions on nonlinear vibration analysis of composite plates: A multiscale simulation”, Thin-Walled Structures, 2022, 170:108531.

    [32] Linlin Ma#, Jingwu He, Yizhuo Gu, Zuoguang Zhang, Zechuan Yu, Ao Zhou, Lik-ho Tamand Chao Wu*, “Structure design of GFRP composite leaf spring: An experimental and finite element analysis”, Polymers, 2021, 13(8):1193.

    [31] Chao WuRuidong Wu# and Lik-ho Tam*, “Coarse-grained molecular simulation of carbon nanotube dispersion on mechanics of semicrystalline polymer nanocomposite”, Nanotechnology, 2021, 32(32):325705.

    [30] Zechuan YuAo Zhou, Wenyu Ning and Lik-ho Tam*, “Molecular insights into the weakening effect of water on cement/epoxy interface”, Applied Surface Science, 2021, 553:149493.

    [29] Chao Wu, Zixiao ZhangLi-ho Tam, Peng Feng and Li He, “Group effect of GFRP-timber bolted connections in tension”, Composite Structures, 2021, 262:113637.

    2020

    [28] J.F. Wang, J.P. Yang#, L.-h. Tam* and W. Zhang*, “Molecular dynamics-based multiscale nonlinear vibrations of PMMA/CNT composite plates”, Mechanical Systems and Signal Processing, 2021, 153:107530.

    [27] Chao Wu, Yang-Zhe Yu, Lik-ho Tam, John Orr and Li He, “Effect of glass fiber sheet in adhesive on the bond and galvanic corrosion behaviours of CFRP-steel bonded system”, Composite Structures, 2021, 259:113218.

    [26] Lik-ho Tam, Jinqiao Jiang#, Zechuan Yu, John Orr and Chao Wu, “Molecular dynamics investigation on the interfacial shear creep between carbon fiber and epoxy matrix”, Applied Surface Science, 2021, 537:148013.

    [25] Chao Wu, Bing-Chen Meng, Xianfeng Cheng, Asghar Habibnejad Korayem and Lik-ho Tam*, “Bond behavior between BFRP rebar and seawater sea sand concrete”, Advances in Civil Engineering, 2020, 8850809.

    [24] Chenpu Liu, Wenyu Ning, Lik-ho Tam and Zechuan Yu, “Understanding fracture behavior of epoxy-based polymer using molecular dynamics simulation”, Journal of Molecular Graphics and Modelling, 2020, 101:107757.

    [23] Ao Zhou, Zechuan Yu, Huinan Wei, Lik-ho Tam, Tiejun Liu and Dujian Zou, “Understanding the toughening mechanism of silane coupling agent in the interfacial bonding in steel fiber-reinforced cementitious composites”, ACS Applied Materials & Interfaces, 2020, 12(39):44163-44171.

    [22] 吴超, 吴瑞东#, 蒋金桥#, 谭力豪*, “土木工程应用中碳纤维/环氧树脂界面在环境影响下退化的分子模拟研究进展”, 复合材料学报, 2020, 37(12):2941-2952.

    [21] 吴超, 张梓箫, 许宁, 谭力豪*, “GFRP板-木螺栓连接节点群组效应的受拉试验研究”, 土木工程学报, 2021, 54(1):38-48.

    [20] 吴超, 陈晨, 王永, 谭力豪*, “3D打印石膏试件的尺寸效应研究”, 中国建材科技, 2021, 30(03):98-101. 3D打印专刊优秀论文

    [19] Chao Wu, Li-Teng Zhang, Lik-ho Tam, Libo Yan and Li He, “Effect of bearing length on web crippling behavior of pultruded GFRP channel section”, Composite Structures, 2020, 253:112810.

    [18] Chao Wu, Ya-Nan Li, Lik-ho Tam and Li He, “Stability optimization of the trapezoidal frame with rigid members and flexible joints”, Advances in Civil Engineering, 2020, 8865888.

    2019

    [17] Chao Wu, Ruidong Wu#, Wenjie Xia and Lik-ho Tam*, “Understanding creep behavior of semi-crystalline polymer via coarse-grained modeling”, Journal of Polymer Science, Part B: Polymer Physics, 2019, 57(24):1779-1791.

    [16] Lik-ho Tam, Ao Zhou, Runxiao Zhang and Chao Wu, “Effect of hygrothermal environment on traction-separation behavior of carbon fiber/epoxy interface”, Construction and Building Materials, 2019, 220:728-738.

    [15] Lik-ho Tam, Ao Zhou and Chao Wu, “Nanomechanical behavior of carbon fiber/epoxy interface in hygrothermal conditioning: A molecular dynamics study”, Materials Today Communications, 2019, 19:495-505.

    [14] Renyuan Qin, Denvid Lau, Lik-ho Tam, Tiejun Liu, Dujian Zou and Ao Zhou, “Experimental investigation on interfacial defect criticality of FRP-confined concrete columns”, Sensors, 2019, 19(3):468.

    2018

    [13] Lik-ho Tam, Denvid Lau and Chao Wu, “Understanding interaction and dynamics of water molecules in the epoxy via molecular dynamics simulation”, Molecular Simulation, 2019, 45(2):120-128.

    [12] Lik-ho Tam, Li He and Chao Wu, “Molecular dynamics study on the effect of salt environment on interfacial structure, stress, and adhesion of carbon fiber/epoxy interface”, Composite Interfaces, 2019, 26(5):431-447.

    [11] Huali HaoLik-ho Tam, Yang Lu and Denvid Lau, “An atomistic study on the mechanical behavior of bamboo cell wall constituents”, Composites Part B: Engineering, 2018, 151:222-231.

    2017

    [10] Lik-ho Tam, Cheuk Lun Chow and Denvid Lau, “Moisture effect on interfacial integrity of epoxy-bonded system: A hierarchical approach”, Nanotechnology, 2018, 29(2):024001.

    [9] Wei Jian, Lik-ho Tam and Denvid Lau, “Atomistic study of interfacial creep behavior in epoxy-silica bilayer system”, Composites Part B: Engineering, 2018, 132:229-236.

    [8] Lik-ho Tam and Chao Wu, “Molecular mechanics of the moisture effect on epoxy/carbon nanotube nanocomposites”, Nanomaterials, 2017, 7(10):342.

    2016 and before

    [7] Lik-ho Tam, Ao Zhou, Zechuan Yu, Qiwen Qiu and Denvid Lau, “Understanding the effect of temperature on the interfacial behavior of CFRP-wood composite via molecular dynamics simulations”, Composites Part B: Engineering, 2017, 109:227-237.

    [6] Meisam K. Habibi, Lik-ho Tam, Denvid Lau and Yang Lu, “Viscoelastic damping behavior of structural bamboo material and its microstructural origins”, Mechanics of Materials, 2016, 97:184-198.

    [5] Lik-ho Tam and Denvid Lau, “Effect of structural voids on mesoscale modeling of epoxy-based material”, Coupled Systems Mechanics, 2016, 5(4):355-369.

    [4] Lik-ho Tam and Denvid Lau, “Moisture effect on the mechanical and interfacial properties of epoxy-bonded material system: An atomistic and experimental investigation”, Polymer, 2015, 57:132-142.

    [3] Ao Zhou, Lik-ho Tam, Zechuan Yu and Denvid Lau, “Effect of moisture on the mechanical properties of CFRP-wood composite: An experimental and atomistic investigation”, Composites Part B: Engineering, 2015, 71:63-73.

    [2] Lik-ho Tam and Denvid Lau, “A molecular dynamics investigation on the cross-linking and physical properties of epoxy-based materials”, RSC Advances, 2014, 4(62):33074-33081.

    [1] Tong Zhang, Ze Shuai Yuan and Li Hao Tan, “Exact geometric relationships, symmetry breaking and structural stability for single-walled carbon nanotubes”, Nano-Micro Letters, 2011, 3(4):228-235.

期刊论文(在审)

    [1] Guoqiang Cai†, Dehan Zhang†, Jia-ao Hou†#, Denvid Lau, Renyuan Qin, Wenhao Wang, W. Zhang***, Chao Wu**, Lik-ho Tam*, “A machine learning prediction model for investigating vibration properties of epoxy resin under moisture condition”.

    [2] Lik-ho Tam†, Askanderou Moundi†#, Guoqing Jing, Jiaxing Ma, Bing Fu, Lu Ke, Huali Hao, Zechuan Yu* and Chao Wu*, “Molecular investigation on interfacial toughening between silane coupling agent treated glass fiber and cement”.

    [3] 马林林#, 胡黎俐, 孙凤振 谭力豪*, “车用GFRP板簧疲劳性能的试验研究”.

    [4] Lik-ho Tam, Ruidong Wu#, Jia-ao Hou# and Chao Wu, “Molecular simulation of fiber/matrix interface in carbon fiber-reinforced polymer composite: Effects of environmental and loading conditions” (Book).

会议论文/摘要

    [9] Jia-ao Hou#, Chao Wu*, Yangping Yao, Renyuan Qin, Denvid Lau and Lik-ho Tam*, “Machine learning-based investigations on nonlinear vibrations of CFRP composite”, The 11th International Conference on FRP Composites in Civil Engineering (CICE 2023), July 23-26, 2023, Rio, Brazil.

    [8] Chao Wu, Ruidong Wu# and Lik-ho Tam*, “Understanding degradation of fiber/matrix interface under environmental effects using molecular simulation”, in 10th International Conference on FRP Composites in Civil Engineering (CICE 2021), Lecture Notes in Civil Engineering (Springer, Cham), 2021, 198:2096-2108.

    [7] Lik-ho Tam, Jinqiao Jiang# and Chao Wu, “Understanding Creep Behaviour of Fibre/Matrix Interface via Molecular Dynamics Investigation”, in Third International Workshop on Seawater Sea-Sand Concrete (SSC) Structures Reinforced with FRP Composites (3rd FRP-SSC Workshop), 2020:45.

    [6] Chao Wu, Jinqiao Jiang# and Lik-ho Tam*, “An atomistic study of creep behavior in fiber/matrix interface”, in 22nd International Conference on Composite Materials (ICCM22 2019), Melbourne, VIC: Engineers Australia, 2019: 2526-2535.

    [5] 谭力豪 and 吴超, “高温盐水环境下碳纤维/环氧树脂界面粘结性能的退化机理研究”, in 2018 年全国固体力学学术会议摘要集, 2018:75.

    [4] Chao Wu, Ruidong Wu# and Lik-ho Tam*, “Atomistic investigation on interfacial deterioration of epoxy-bonded interface under hygrothermal environment”, in 9th International Conference on FRP Composites in Civil Engineering (CICE 2018), 2018-July:388-395.

    [3] Lik-ho Tam and Denvid Lau, “Micromechanics of wood cell wall”, in 2015 MRS Fall Meeting, MRS Advances, 2016, 1(58): 3837-3845.

    [2] Lik-ho Tam and Denvid Lau, “Molecular simulation of adhesion property recovery in the cellulose/phenolic adhesive interface: The role of water molecules”, in 2015 MRS Spring Meeting, MRS Online Proceedings Library, 2015, 1793: 59-66.

    [1] Lik-ho Tam and Denvid Lau, “Molecular mechanics of organic composite materials: A case study of cellulose-adhesive system”, in 2013 MRS Fall Meeting, MRS Online Proceedings Library, 2014, 1662: 16-22.

专著章节

    [2] Lik-ho Tam and Denvid Lau, "Characterizing mechanical properties of polymeric material: A bottom-up approach", In: Schmauder S., Chen CS., Chawla K., Chawla N., Chen W., Kagawa Y. (eds) Handbook of Mechanics of Materials. Springer, Singapore, Online ISBN: 978-981-10-6855-3, 2019: 57-91.

    [1] Tong Zhang, ZhenYu Yang, Tam Lik Ho, Ning Zhu and DanTong Zhu, “Investigation on mechanical behavior of single-layer graphene with grain boundary loops”, In: Aliofkhazraei M., Ali N., Milne W.I., Ozkan C.S., Mitura S., Gervasoni J.L. (eds) Graphene Science Handbook. CRC Press, US, ISBN: 978-1-4665-9135-6, 2016: 255-267.

邀请报告

    [14] 谭力豪, “纤维增强复合材料的结构与性能表征:从纳观、微观到宏观”, 广西大学土木建筑工程学院学术报告, 2023年12月11日, 中国南宁.

    [13] 谭力豪, “纤维增强树脂基复合材料的结构与性能表征:从纳观、微观到宏观”, 同济大学机械与能源工程学院学术报告, 2023年12月8日, 中国上海.

    [12] 谭力豪, “纤维增强复合材料的结构与性能表征:从纳观、微观到宏观”, 武汉大学土木建筑工程学院学术报告, 2023年12月1日, 中国武汉.

    [11] 谭力豪, “Multi-Scale and Machine Learning Investigations on Structures and Properties of Fibre-Reinforced Composite Materials”, 帝国理工学院戴森设计工程学院线上学术讲座, 2023年11月22日.

    [10] 谭力豪, “Multi-Scale and Machine Learning Investigation on Structural and Property Characterization of Fibre-Reinforced Composite Materials”, 牛津大学工程科学系学术讲座, 2023年10月23日, 英国牛津.

    [9] 谭力豪, “纤维增强复合材料的结构设计与性能表征: 多尺度模拟与机器学习研究”, 中国复合材料学会第96期高端青年沙龙, 2023年10月18日, 中国北京.

    [8] 谭力豪, “环境影响下纤维/树脂界面退化的分子模拟研究”, 中国力学学会第118次青年学术沙龙, 2022年12月17日, 中国宁波.

    [7] 谭力豪,吴超, “Multiscale investigation on fiber-reinforced composites”, 第三届中国仿真技术应用大会-土木工程专题论坛, 2021年9月15日, 中国北京.

    [6] 谭力豪, “纤维增强复合材料中纤维–树脂界面劣化的机理研究”, 北京航空航天大学航空科学与工学院学术讲座, 2019年12月27日, 中国北京.

    [5] 谭力豪, “复合材料微观结构多尺度模拟”, 2019 年江苏省研究生“土木工程创新材料与结构”暑期学校, 2019年7月17日, 中国南京.

    [4] 谭力豪,吴超, “复杂服役环境下 FRP 加固混凝土结构粘结界面失效机理的初步探索”, 中国混凝土大讲堂, 2019年6月24日, 中国武汉.

    [3] 谭力豪, “基于多尺度模拟的木材/竹材以及 FRP-木材复合结构的微观力学研究”, 武汉理工大学土木工程与建筑学院学术讲座, 2019年5月24日, 中国武汉.

    [2] 谭力豪, “基于分子动力学的湿热环境下环氧树脂粘结界面失效机理研究”, 第二届土木工程海外华人青年学者学术交流与联谊会, 2018年7月7-10日, 中国南京.

    [1] 谭力豪, “高分子材料系统在多尺度下的力学性能研究”, 2016年北航国际青年学者唯实论坛, 2016年12月16-19日, 中国北京.