导师风采
张裕卿
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个人信息

Personal Information

  • 教授
  • 导师类别:硕,博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:交通学院
  • 所属专业: 交通运输工程
  • 邮箱 : zhangyuqing@seu.edu.cn
  • 工作电话 : -

个人简介

Personal Profile

张裕卿,东南大学青年首席教授,国家优青(海外)基金获得者。博士毕业于美国Texas A&M University,曾任英国阿斯顿大学高级讲师(副教授)和阿斯顿材料科学研究院院长。张裕卿教授研究领域包括路面力学理论与计算、多尺度多物理场模拟、可再生路用材料和智能道路技术等。主持过英国工程与物理科学研究委员会、英国皇家工程院、英国皇家学会、英国牛顿基金、欧盟H2020计划、美国交通部西南地区大学交通中心等机构资助的研究项目,其研究同时获得跨国石油沥青公司和建筑材料公司的资助。张裕卿教授任SCI期刊ASCE’s Journalof Transportation Engineering, Part B: Pavements 和Journal ofConstruction and Building Materials期刊编辑,是英国国家沥青研究协会(NARC)管理委员会委员、国际建筑材料系统与结构联盟(RILEM)技术委员会委员、欧洲沥青技术协会(EATA)技术委员会委员,同时是奥地利、英国、比利时、荷兰、波兰和沙特等国家自然科学基金专家评审人,获得德国冯卡门学者奖。


  • 研究方向Research Directions
路面力学理论与计算,多尺度多物理场模拟,回收可再生路用材料,智能道路检测与评估
研究成果

(1)     Liu, G., Luo, X., Zhang, Y. $, & Li, H. (2023). Predicting fatigue damage growth incement-treated base layer built with construction and demolition waste. Constructionand Building Materials, 406, 133371.

(2)     Li, H.*, Luo, X., Zhang, Y. $, & Leng, Z. $ (2023). Viscoelasticfracture mechanics-based fatigue life model in asphalt-filler composite system.Engineering Fracture Mechanics, 292, 109589.

(3)     Li, H.*, Tan, Z., Li, R., Luo, X., Zhang, Y. $, & Leng, Z. $ (2023). MechanisticModeling of Fatigue Crack Growth in Asphalt Fine Aggregate Matrix underTorsional Shear Cyclic Load. International Journal of Fatigue,107999.

(4)     Li, H.*, Ling, J., Leng, Z., Zhang, Y., & Luo, X. (2023).Nonlinear Viscoelasticity and Viscoplasticity Characteristics of Virgin andModified Asphalt Binders. Journal of Engineering Mechanics,149(10), 04023074.

(5)     Li, H.*, Luo, X., Gu, Z., Chen, Q., & Zhang, Y. $ (2023). Predicting crackgrowth of paving materials under indirect tensile fatigue loads. InternationalJournal of Fatigue, 175, 107818.

(6)     Luo, X., Wang, H., Cao, S., Ling, J., Yang, S., & Zhang, Y.(2023). A hybrid approach for fatigue life prediction of in-service asphaltpavement. Philosophical Transactions of the Royal Society A,381(2254), 20220174.

(7)     Gu, Z., Zhang, Y. $, Luo, X. $, Li, H., & Liu, G.(2023). Systematical calibration and validation of discrete element models forfiber reinforced cement treated aggregates. Construction and BuildingMaterials, 392, 131832.

(8)     Zhang,H.*, & Zhang, Y. $ (2023). A time-temperature-ageingshift model for bitumen and asphalt mixtures based on free volume theory. InternationalJournal of Pavement Engineering, 24(1), 2138882. Permalink.

(9)     Abdy, C., Zhang, Y. $, Wang, J. $,Cheng, Y., Artamendi, I., & Allen, B. (2023). Investigation of high-densitypolyethylene pyrolyzed wax for asphalt binder modification: Mechanism, thermalproperties, and ageing performance. Journal of Cleaner Production,405, 136960.

(10)  Liu, X., Zhang, Y., You, Z., Wang, L., & Zhou, C. (2023).Experimental Testing and Constitutive Modelling of Pavement Materials. Materials,16(11), 4186.

(11)  Abdy,C.*, Zhang, Y. $, Wang, J., Yang, Y., Artamendi, I., &Allen, B. (2022). Pyrolysis of polyolefin plastic waste and potentialapplications in asphalt road construction: A technical review. Resources,Conservation and Recycling, 180, 106213. Permalink.

(12)  Gao,Y. *, Zhang, Y. $, Zhang, C., Liu, X., & Jing, R. (2022).Quantifying oxygen diffusion in bitumen films using molecular dynamicssimulations. Construction and Building Materials, 331, 127325. Permalink.

(13)  Zhang,H.*, Soenen, H., Carbonneau, X., Lu, X., Robertus, C., & Zhang, Y. $(2022). Experimental and Statistical Analysis of Bitumen’s Field Ageing inAsphalt Pavements. Transportation Research Record,03611981221079823. Permalink.

(14)  Li,H.*, Chen, P.*, Wang, H., Luo, X., & Zhang, Y. $(2022).Pseudo energy-based crack initiation criterion for asphalt-filler compositesystem under a fatigue shear load. Theoretical and Applied FractureMechanics, 119, 103333. Permalink.

(15)  Ma, F., Chi,F., Li, H.*, Luo, X. $, Zhang, Y., & Huang, Z. (2022). Kinetics-basedformulation of relationship between healing and ageing of asphalt binder. InternationalJournal of Pavement Engineering, 1-13. Permalink.

(16)  Chen,P.*, Luo, X., Gao, Y.*, & Zhang, Y. $ (2022). Modelingpercentages of cohesive and adhesive debonding in bitumen-aggregate interfacesusing molecular dynamics approaches. Applied Surface Science,571, 151318. Permalink.

(17)  Lin,H., Chen, Q., Luo, X., Zhang, Y., Miao, K., Li, T., & Wang, K.(2022). Characterization of rheological properties and aging performance ofbitumen modified by bio-oil from bamboo charcoal production. Journal ofCleaner Production, 338, 130678. Permalink.

(18)  Omairey,E. L.*, Zhang, Y. $, Soenen, H., & Carbonneau, X. (2022).Parametric analysis and field validations of oxidative ageing in asphaltpavements using multiphysics modelling approaches. International Journalof Pavement Engineering, 1-24. Permalink.

(19)  Li,H.*, Luo, X., Ma, F., & Zhang, Y. $ (2021).Micromechanics modeling of viscoelastic asphalt-filler composite system withand without fatigue cracks. Materials & Design, 209, 109983. Permalink.

(20)  Gao,Y.*, Zhang, Y. $, Omairey, E. L.*, Al-Malaika, S., &Sheena, H. (2021). Influence of anti-ageing compounds on rheological propertiesof bitumen. Journal of Cleaner Production, 318, 128559. Permalink.

(21)  Yan,W., Cong, L., Li, H.*, Zhang, Y., & Luo, X. $ (2021).Mechanistic Characterization of Fatigue Damage Process and Failure Predictionsof Asphalt Binders. Journal of Transportation Engineering, Part B:Pavements, 147(3), 04021036. Permalink.

(22)  Zheng,W., Wang, H. $, Chen, Y., Ji, J., You, Z., & Zhang, Y.(2021). A review on compatibility between crumb rubber and asphalt binder. Constructionand Building Materials, 297, 123820. Permalink.

(23)  Cai,J. $, Rahman, M. M., Zhang, S., Sarker, M., Zhang, X., Zhang, Y.,Yu, X. & Fini, E. H. (2021). Review on Aging of Bio-Oil from BiomassPyrolysis and Strategy to Slowing Aging. Energy & Fuels,35(15), 11665-11692. Permalink.

(24)  Li,H., Luo, X.$, & Zhang, Y. (2021). A kinetics-based modelof fatigue crack growth rate in bituminous material. InternationalJournal of Fatigue, 148, 106185. Permalink.

(25)  Li,L.*, Yang, Y., Gao, Y.*, & Zhang, Y. $ (2021). Healingcharacterisations of waste-derived bitumen based on crack length: Laboratoryand modelling. Journal of Cleaner Production, 316, 128269. Permalink.

(26)  Li,L.*, Zhang, Z., Wang, Z., Wu, Y., Dong, M. $, & Zhang, Y.(2021). Coupled thermo-hydro-mechanical response of saturated asphalt pavement.Construction and Building Materials, 283, 122771. Permalink.

(27)  Lu,G.*, Wang, H., Zhang, Y. $, Liu, P., Wang, D. $,Oeser, M., & Grabe, J. (2021). The hydro-mechanical interaction in novelpolyurethane-bound pervious pavement by considering the saturation states inunbound granular base course. International Journal of PavementEngineering, 1-14. Permalink.

(28)  Li,H., Luo, X. $, Zhang, Y., & Xu, R. (2021). Stochasticfatigue damage in viscoelastic materials using probabilistic pseudo J-integralParis' law. Engineering Fracture Mechanics, 245, 107566. Permalink.

(29)  Li,L.*, Gao, Y.*, & Zhang, Y. $ (2021). Predicting healing inviscoelastic bitumen using alien strain method. International Journal of Fatigue, 145,[106102]. Permalink.

(30)  Li,L.*, Gao, Y.*, & Zhang, Y. $ (2021). Fatigue CrackingCharacterisations of Waste-derived Bitumen Based on Crack Length. InternationalJournal of Fatigue, 142, [105974]. Permalink.

(31)  Omairey, E. L.*, Gu, F.* $, & Zhang,Y. $ (2021). An Equation-Based Multiphysics Modelling Frameworkfor Oxidative Ageing of Asphalt Pavements. Journalof Cleaner Production, 280, [124401]. Permalink.

(32)  Du,Z., Zhu, X.$, & Zhang, Y.(2021). Diffusive Dynamics and Structural Organization of Moisture in Asphaltic Materials Based onMolecular Dynamics Simulation. Journal of Materials in Civil Engineering,33(1), [04020403]. Permalink.

(33)  Luo,X. $, Li, H., Deng, Y., & Zhang,Y. (2020). Energy-Based Kinetics Approach for Coupled Viscoplasticity and Viscofracture of AsphaltMixtures. Journal of Engineering Mechanics, 146(9),[04020100]. Permalink.

(34)  Li,H., Luo, X. $, Yan, W., & Zhang,Y. (2020). Energy-based mechanistic approach for crack growth characterization ofasphalt binder. Mechanics of Materials, 148, [103462]. Permalink.

(35)  Lu,G., Wang, H., Törzs, T., Liu, P., Zhang,Y., Wang, D.$, Oeser, M., & Grabe, J. (2020). In-situ and numerical investigation on the dynamicresponse of unbounded granular material in permeable pavement. TransportationGeotechnics, 25, [100396]. Permalink.

(36)  Gao, Y.*, Li, L.*, & Zhang, Y. $ (2020). Modelling crack initiationin bituminous binders under a rotational shear fatigue load. InternationalJournal of Fatigue, 139, [105738]. Permalink.

(37)  Omairey, E. L.*, Zhang, Y. $, Gu, F., Ma, T., Hu, P., & Luo, R.(2020). Rheological and fatigue characterisation of bitumen modified byanti-ageing compounds. Constructionand Building Materials, 265, [120307]. Permalink.

(38)  Li, L.*, Gao, Y.*, & Zhang, Y. $ (2020). Crack Length Based HealingCharacterisation of Bitumen at Different Levels of Cracking Damage. Journal of Cleaner Production, 258,Permalink.

(39)  Gao, Y.*, Li, L.*, & Zhang, Y. $ (2020). Modeling Crack Propagationin Bituminous Binders under a Rotational Shear Fatigue Load using PseudoJ-Integral Paris’ Law. Transportation Research Record. 2674(1), 94-103. Permalink.

(40)  Luo, X., Li, H., Deng, Y.*, & Zhang, Y. (2020). Energy-Based KineticsApproach for Coupled Viscoplasticity and Viscofracture of Asphalt Mixtures. Journal of Engineering Mechanics,146(9), [04020100]. Permalink.

(41)  Li, H., Luo, X., Yan, W., & Zhang, Y. (2020). Energy-basedmechanistic approach for crack growth characterization of asphalt binder. Mechanicsof Materials, 148, [103462]. Permalink.

(42)  Lu, G.*, Wang, H., Törzs, T., Liu, P., Zhang, Y., Wang, D., Oeser, M., &Grabe, J. (2020). In-situ and numerical investigation on the dynamic responseof unbounded granular material in permeable pavement. Transportation Geotechnics, 25, [100396]. Permalink.

(43)  Gu, F.*, Ma, W., West, R., Taylor, A., & Zhang, Y. $ (2019)Structural Performance and Sustainability Assessment of Cold Central-Plant andIn-Place Recycled Asphalt Pavements: A Case Study. Journal of Cleaner Production, 208, 1513-1523. Permalink, [ESI - highly cited paper]

(44)  Zhang,Y. $, & Gao, Y.* (2019). Predicting crack growth inviscoelastic bitumen under a rotational shear fatigue load. Road Materials and Pavement Design.Permalink.

(45)  Omairey, E. L.*, Zhang, Y. $,Al-Malaika, S., Sheena, H., & Gu, F. (2019). Impact of anti-ageingcompounds on oxidation ageing kinetics of bitumen by infrared spectroscopyanalysis. Construction and BuildingMaterials, 223, 755-764. Permalink.

(46)  Deng, Y.*, Luo, X., Gu, F.*, Zhang, Y., & Lytton, R. L. (2019).3D simulation of deflection basin of pavements under high-speed moving loads. Construction and Building Materials,226, 868-878. Permalink.

(47)  Zhang, J., Gu, F.*, & Zhang, Y. $ (2019). Use ofbuilding-related construction and demolition wastes in highway embankment:Laboratory and field evaluations. Journalof Cleaner Production, 230, 1051-1060. Permalink.

(48)  Gao, Y.*, Zhang, Y. $, Yang, Y, Zhang, J & Gu, F* (2019), “Moleculardynamics investigation of interfacial adhesion between oxidised bitumen andmineral surfaces” Applied SurfaceScience. 479(15), 449-462. Permalink.

(49)  Li, J., Zhang, J., Qian, G., Zheng, J., &Zhang, Y. (2019). Three-dimensionalsimulation of aggregate and asphalt mixture using parameterized shape and sizegradation. Journal of Materials inCivil Engineering, 31(3), [04019004]. [ESI -highly cited paper]

(50)  Yang, Y., Zhang, Y. $, OmaireyE.*, Cai, J., Gu, F.*, and Bridgwater A.V. (2018) "Intermediate pyrolysisof organic fraction of municipal solid waste and rheological study of thepyrolysis oil for potential use as bio-bitumen" Journal of Cleaner Production, 187, 390-399. Permalink

(51)  Gao, Y.*, Zhang, Y. $, Gu, F.*, Xu, T., Wang, H. (2018) “Impact ofminerals and water on bitumen-mineral adhesion and debonding behaviours usingmolecular dynamics simulations” Constructionand Building Materials, 171, 214-222. Permalink

(52)  Zhang,Y. $, Gu, F.*,Luo, X., Birgisson, B. & Lytton, R.L. (2018) “Modeling Stress-DependentAnisotropic Elastoplastic Unbound Granular Base in Flexible Pavements” Transportation Research Record: Journalof the Transportation Research Board, 2672(52), 46-56. Permalink.

(53)  Shi, S, Shen, D, Xu, T & Zhang, Y. (2018) “Thermal, optical,interfacial and mechanical properties of titanium dioxide/shape memorypolyurethane nanocomposites” CompositesScience and Technology, 164, 17-23. Permalink.

(54)  Li, L.*, Li, W., Wang, Z., Dong, M. & Zhang, Y. $ (2018) Characterizing Stress-dependent Complex andRelaxation Moduli of Dense Graded Asphalt Mixtures. Construction and Building Materials, 193, 55-63. Permalink.

(55)  Zhang,Y. $, Gu, F.*,Birgisson, B., and Lytton, R. L. (2018) "Modelling Cracking Damage ofAsphalt Mixtures under Compressive Monotonic and Repeated Loads using PseudoJ-integral Paris’ Law." RoadMaterials and Pavement Design, 19(3), 525-535. Permalink.

(56)  Luo, X., Gu, F.*, Zhang, Y., Lytton, R. L., & Birgisson, B. (2018).Kinetics-based aging evaluation ofin-service recycled asphalt pavement. Journalof Cleaner Production, 200, 934-944. Permalink.

(57)  Huang, B, Xie, X, Yang, Y, Rahman, MM, Zhang,X, Yu, X, Blanco Sanchez, PH, Dong, Z, Zhang,Y, Bridgwater, AV & Cai, J (2018), Reaction Chemistry and Kinetics ofCorn Stalk Pyrolysis without and with Ga/HZSM-5', Journal of Thermal Analysis and Calorimetry. 137, 491-500. Permalink.

(58)  Tang, Q, Gu, F.*, Zhang, Y, Zhang, Y & Mo, J. (2018) "Impactof biological clogging on the barrier performance of landfill liners" Journal of Environmental Management,222, 44-53. Permalink.

(59)  Lytton, R. L., Zhang, Y., Gu, F.*, and Luo, X. (2018) "Characteristics ofDamaged Asphalt Mixtures in Tension and Compression." International Journal of Pavement Engineering, 19(3),292-306. Permalink.

(60)  Chen, J., Tang, T.*, and Zhang, Y. $ (2017) “Laboratory characterization ofdirectional dependence of permeability for porous asphalt mixtures”, Materialsand Structures, 50(5), 215. Permalink.

(61)  Luo, X., Gu, F.*, Zhang, Y., Lytton, R.L. and Zollinger, D. (2017)“Mechanistic-Empirical Models for Better Consideration of Subgrade and UnboundLayers Influence on Pavement Performance”, TransportationGeotechnics, 13, 52-68. Permalink.

(62)  Gu, F.*, Luo, X, Zhang, Y., et al. (2017) “Prediction of Geogrid-Reinforced FlexiblePavement Performance Using Artificial Neural Network Approach.” Road Materials and Pavement Design,1-17. Permalink.

(63)  Zhang,Y. $, Gu, F.*,Birgisson, B., and Lytton, R. L. (2017) "Viscoelastic-Plastic-Fracture(VEPF) Modelling of Asphalt Mixtures under Monotonic and Repeated Loads." Transportation Research Record: Journalof Transportation Research Record, 2631(1), 20-29. Permalink.

(64)  Gu, F.*, Zhang,Y., Luo, X., Sahin, H., and Lytton, R.L. (2017) “Characterization andprediction of permanent deformation properties of unbound granular materialsfor Pavement ME Design”, Constructionand Building Materials 155, 584-592. Permalink.

(65)  Lytton, R. L., Gu, F.*, Zhang, Y., and Luo, X. (2017) "Characteristics of UndamagedAsphalt Mixtures in Tension and Compression." International Journal of Pavement Engineering, 19(3),192-204. Permalink.

(66)  Luo, R., Liu, H., and Zhang, Y. (2016). Characterization of linear viscoelastic,nonlinear viscoelastic and damage stages of asphalt mixtures. Constructionand Building Materials, 125,72-80. Permalink.

(67)  Gu, F.*, Zhang,Y., Luo, X., Luo, R. and Lytton, R. L. (2016) "Impact of Geogrid onCross-Anisotropy and Permanent Deformation of Unbound Granular Materials."Transportation Research Record:Journal of Transportation Research Record, 2580: 34-46. Permalink.

(68)  Zhang,Y. $, Birgisson,B., and Lytton, R. L. (2016) "Weak Form Equation-Based Finite ElementModeling of Viscoelastic Asphalt Mixtures." Journal of Materials inCivil Engineering, 28(2), 04015115. Permalink.

(69)  Gu, F.*, Zhang,Y., Droddy, C. V. and Lytton, R. L. (2016) "Development of a NewMechanistic-Empirical Rutting Model for Unbound Granular Material." Journalof Materials in Civil Engineering, 28(8), 04016051, Permalink.

(70)  Luo, X.,Zhang, Y., and Lytton, R. L. (2016) "Implementation of PseudoJ-Integral Based Paris' Law for Fatigue Cracking in Asphalt Mixtures andPavements." Materials andStructures, 49(9), 3713-3732. Permalink.

(71)  Chen, J., Zhang, Y. $, Li, H., and Gao, Y. (2016)"Rutting-induced Permeability Loss of OpenGraded Friction Course Mixtures" Journal of Testing and Evaluation, 44(2), 719-724. Permalink.

(72)  Zhang,Y. $, Bernhardt,M., Biscontin, G., Luo, R., and Lytton, R. L. (2015). "A GeneralizedDrucker-Prager Viscoplastic Yield Surface Model for Asphalt Concrete." Materials and Structures, 48(11),3585-3601. Permalink.

(73)  Gu, F.*, Luo, X., Zhang, Y., and Lytton, R. L. (2015) "Using Overlay Test toEvaluate Fracture Properties of Field-Aged Asphalt Concrete." Constructionand Building Materials, 101(1), 1059-1068. Permalink.

(74)  Zhang, J., Jiang, Q., Zhang, Y., Dai, L., and Wu, H. (2015) "Nondestructivemeasurement of water content and moisture migration of unsaturated red clays inSouth China." Advances inMaterials Science and Engineering, 2015, 542538. Permalink.

(75)  Gu, F.*, Zhang,Y., Luo, X., Luo, R., and Lytton, R. L. (2015) "Improved Methodologyto Evaluate Fracture Properties of Warm Mix Asphalt Using Overlay Test." Transportation Research Record: Journalof Transportation Research Record, No. 2506, 8-18. Permalink;

(76)  Zhang,Y. $, Luo, X.,Luo, R., and Lytton, R. L. (2014) "Crack Initiation in Asphalt Mixturesunder External Compressive Loads." Constructionand Building Materials, 72, 94-103. Permalink.

(77)  Zhang,Y. $, Luo, R.,and Lytton, R. L. (2014). "Anisotropic Characterization of Crack Growth inthe Tertiary Flow of Asphalt Mixtures in Compression." Journal of Engineering Mechanics,140(6), 04014032. Permalink.

(78)  Shen, S., Lu, X., Zhang, Y., and Lytton, R. L. (2014). "Fracture andViscoelastic Properties of Asphalt Binders during Fatigue and Rest Periods."Journal of Testing and Evaluation,42(1), 1-9. Permalink.

(79)  Zhang,Y. $, Luo, R.,and Lytton, R. L. (2013). "Characterization of Viscoplastic Yielding ofAsphalt Concrete." Construction and Building Materials, 47,671-679. Permalink.

(80)  Zhang,Y. $, Luo, R., andLytton, R. L. (2013). "Mechanistic Modeling of Fracture in AsphaltMixtures under Compressive Loading." Journal of Materials in CivilEngineering, 25(9), 1189-1197. Permalink.

(81)  Zhang,Y. $, Luo, R.,and Lytton, R. L. (2012). "Characterizing Permanent Deformation andFracture of Asphalt Mixtures by Using Compressive Dynamic Modulus Tests." Journalof Materials in Civil Engineering, 24(7), 898-906. Permalink.

(82)  Zhang,Y. $, Luo, R.,and Lytton, R. L. (2012). "Anisotropic Viscoelastic Properties ofUndamaged Asphalt Mixtures." Journal of Transportation Engineering,138(1), 75-89. Permalink.

(83)  Zhang,Y. $, Luo, R.,and Lytton, R. L. (2011). "Microstructure-based Inherent Anisotropy ofAsphalt Mixtures." Journal of Materials in Civil Engineering,23(10), 1473-1482. Permalink.

(84)  Huang, X., and Zhang, Y. $ (2010). "A New Creep Test Method forAsphalt Mixtures." Road Materials and Pavement Design,11(4), 969-991. Permalink.


新生寄语

欢迎对路面力学、智能预测、可再生材料和数字孪生感兴趣的同学申请本团队的硕士、博士和博士后。

请及早与导师邮件联系沟通您的报考意向,期待与您一起探索未来道路!

不要犹豫,现在就填写“考生自荐”或发邮件到:zhangyuqing@seu.edu.cn


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