Integrated computational and experimental evaluation of electromagnetic energy-induced self-healing performance of asphalt composites
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[1] Martin van de Ven,et al. Electrical conductivity of asphalt mortar containing conductive fibers and fillers , 2009 .
[2] Dallas N. Little,et al. Computational Constitutive Model for Predicting Nonlinear Viscoelastic Damage and Fracture Failure of Asphalt Concrete Mixtures , 2007 .
[3] Serji N. Amirkhanian,et al. High temperature properties of rubberized binders containing warm asphalt additives , 2009 .
[4] Okechukwu Ukwuoma,et al. The effects of temperature and shear rate on the apparent viscosity of Nigerian oil sand bitumen , 1999 .
[5] Shaopeng Wu,et al. Study on the graphite and carbon fiber modified asphalt concrete , 2011 .
[6] Dallas N. Little,et al. Exploring Mechanism of H ealing in Asphalt Mixtures and Quantifying its Impact , 2007 .
[7] José A. Sánchez,et al. Fatigue and Healing of Asphalt Mixtures: Discriminate Analysis of Fatigue Curves , 2006 .
[8] Zhan-jun Liu,et al. Graphite blocks with high thermal conductivity derived from natural graphite flake , 2008 .
[9] J. A. Menéndez,et al. Microwave heating processes involving carbon materials , 2010 .
[10] de Jeff Hosson,et al. Self Healing Materials. An Alternative Approach to 20 Centuries of Materials Science , 2007 .
[11] Mohd Rosli Mohd Hasan,et al. Investigation of induction healing effects on electrically conductive asphalt mastic and asphalt concrete beams through fracture-healing tests , 2013 .
[12] Youngguk Seo,et al. Air Void Models for the Dynamic Modulus, Fatigue Cracking, and Rutting of Asphalt Concrete , 2007 .
[13] T. Anderson,et al. Fracture mechanics - Fundamentals and applications , 2017 .
[14] Martin van de Ven,et al. A simple model to define induction heating in asphalt mastic , 2012 .
[15] J. C. Petersen,et al. Impact of Lime Modification of Asphalt and Freeze–Thaw Cycling on the Asphalt–Aggregate Interaction and Moisture Resistance to Moisture Damage , 2005 .
[16] Robert L. Lytton,et al. FATIGUE AND HEALING CHARACTERIZATION OF ASPHALT MIXTURES , 2003 .
[17] Matthew W Witczak,et al. Determination of Thermal Properties of Asphalt Mixtures , 2005 .
[18] Martin van de Ven,et al. Induction heating of electrically conductive porous asphalt concrete , 2010 .
[19] G. H. Paulino,et al. Disk-shaped compact tension test for asphalt concrete fracture , 2005 .
[20] F. Luo,et al. Electromagnetic and microwave absorption properties of carbonyl iron and carbon fiber filled epoxy/silicone resin coatings , 2010 .
[21] Jean-Louis Tailhan,et al. Real-time water permeability evolution of a localized crack in concrete under loading , 2014 .
[22] Zhanping You,et al. Performance of asphalt binder blended with non-modified and polymer-modified nanoclay , 2012 .
[23] Y R Kim,et al. CHEMICAL AND MECHANICAL EVALUATION ON HEALING MECHANISM OF ASPHALT CONCRETE (WITH DISCUSSION) , 1990 .
[24] Yoke Khin Yap,et al. Rheological properties and chemical analysis of nanoclay and carbon microfiber modified asphalt with Fourier transform infrared spectroscopy , 2013 .
[25] Martin van de Ven,et al. Induction healing of asphalt mastic and porous asphalt concrete , 2011 .
[26] Eyad Masad,et al. Influence of Air Void Distribution on the Moisture Susceptibility of Asphalt Mixes , 2007 .
[27] N. Sottos,et al. Autonomic healing of polymer composites , 2001, Nature.
[28] Zhanping You,et al. Three-dimensional modeling and simulation of asphalt concrete mixtures based on X-ray CT microstructure images , 2014 .
[29] Y. Kim,et al. Viscoelastoplastic Damage Characterization of Asphalt—Aggregate Mixtures Using Digital Image Correlation , 2007 .
[30] Li Xiang,et al. Microstructure and performance of crumb rubber modified asphalt , 2009 .
[31] Reynaldo Roque,et al. Evaluation of Healing Property of Asphalt Mixtures , 2006 .
[32] Armen N. Amirkhanian,et al. Influence of Carbon Nanoparticles on the Rheological Characteristics of Short-Term Aged Asphalt Binders , 2011 .
[33] G. I. Barenblatt. THE MATHEMATICAL THEORY OF EQUILIBRIUM CRACKS IN BRITTLE FRACTURE , 1962 .
[34] Namas Chandra,et al. Analysis of Energy Balance When Using Cohesive Zone Models to Simulate Fracture Processes , 2002 .
[35] Adam Zofka,et al. Bending beam rheometer testing of asphalt mixtures , 2011 .
[36] Yuan Zhang,et al. Laboratory Study on Solar Collector of Thermal Conductive Asphalt Concrete , 2009 .
[37] Xiaopeng Xu,et al. Numerical simulations of fast crack growth in brittle solids , 1994 .
[38] G. Paulino,et al. Direct Extraction of Cohesive Fracture Properties from Digital Image Correlation: A Hybrid Inverse Technique , 2011 .
[39] Robert L. Lytton,et al. MICRODAMAGE HEALING IN ASPHALT AND ASPHALT CONCRETE, VOLUME II: LABORATORY AND FIELD TESTING TO ASSESS AND EVALUATE MICRODAMAGE AND MICRODAMAGE HEALING , 2001 .
[40] Christoph Leyens,et al. Self-Healing Materials , 2009 .
[41] L. Poulikakos,et al. Micro Scale Tensile Behaviour of Thin Bitumen Films , 2011 .
[42] R. Silverstein,et al. Spectrometric identification of organic compounds , 2013 .
[43] W. F. Riley,et al. Experimental stress analysis , 1978 .
[44] Zhang Chen,et al. Image Preprocessing Methods to Identify Micro-cracks of Road Pavement , 2013 .
[45] H. Zhai,et al. ASPHALT BINDER FLOW ACTIVATION ENERGY AND ITS SIGNIFICANCE FOR COMPACTION EFFORT , 2004 .
[46] J. C. Petersen,et al. A Review of the Fundamentals of Asphalt Oxidation: Chemical, Physicochemical, Physical Property, and Durability Relationships , 2009 .
[47] Hong Wang,et al. Study of ice and snow melting process on conductive asphalt solar collector , 2011 .
[48] Martin van de Ven,et al. Evaluation of the induction healing effect of porous asphalt concrete through four point bending fatigue test , 2012 .
[49] Dallas N. Little,et al. Damage-Induced Modeling of Asphalt Mixtures through Computational Micromechanics and Cohesive Zone Fracture , 2005 .
[50] Peng Wang,et al. Influence of graphite on the thermal characteristics and anti-ageing properties of asphalt binder , 2014 .
[51] E. Schlangen,et al. Optimization of composition and mixing process of a self-healing porous asphalt , 2012 .
[52] Kasthurirangan Gopalakrishnan,et al. Evaluating the aggregate structure in hot-mix asphalt using three-dimensional computer modeling and particle packing simulations , 2006 .
[53] J. Lloyd,et al. Enhancement of Thermal Energy Transport Across Graphene/Graphite and Polymer Interfaces: A Molecular Dynamics Study , 2012 .
[54] Robert L. Lytton,et al. Comprehensive evaluation of damage in asphalt mastics using x-ray CT, continuum mechanics, and micromechanics , 2005 .
[55] Qingli Dai,et al. Nanoclay-modified asphalt materials: Preparation and characterization , 2011 .
[56] D. Sybilski. Non-newtonian viscosity of polymer-modified bitumens , 1993 .
[57] Jie Yuan,et al. The effects of temperature and frequency on the dielectric properties, electromagnetic interference shielding and microwave-absorption of short carbon fiber/silica composites , 2010 .
[58] J. Bernhard,et al. Role of functional groups on the microwave attenuation and electric resistivity of activated carbon fiber cloth , 2009 .
[59] J. W. Foulk,et al. Physics-based Modeling of Brittle Fracture: Cohesive Formulations and the Application of Meshfree Methods , 2000 .
[60] Crack repair of asphalt concrete with induction energy , 2011 .
[61] Roy H. Borden,et al. Fatigue Cracking Resistance of Fiber-Reinforced Asphalt Concrete , 2005 .
[62] Joel Oliveira,et al. Are totally recycled hot mix asphalts a sustainable alternative for road paving , 2012 .
[63] Shaopeng Wu,et al. Effect of organo-montmorillonite on aging properties of asphalt , 2009 .
[64] Erik Schlangen,et al. Induction heating of mastic containing conductive fibers and fillers , 2011 .
[65] Moshe Livneh. DETERIORATION MODELING FOR UNLAID AND OVERLAID PAVEMENTS , 1996 .
[66] Dallas N. Little,et al. Use of Molecular Dynamics to Investigate Self-Healing Mechanisms in Asphalt Binders , 2011 .
[67] Ning Li,et al. Self-monitoring application of asphalt concrete containing graphite and carbon fibers , 2008 .
[68] D. Little,et al. Influence of Aging and Temperature on Intrinsic Healing of Asphalt Binders , 2011 .
[69] G. Paulino,et al. Concrete fracture prediction using bilinear softening , 2007 .
[70] Shihui Shen,et al. Dissipated Energy Approach to Study Hot-Mix Asphalt Healing in Fatigue , 2006 .
[71] P. Bazin,et al. DEFORMABILITY, FATIGUE AND HEALING PROPERTIES OF ASPHALT MIXES , 1967 .
[72] B. Prowell,et al. Comparison of Laboratory Wheel-Tracking Test Results with Wes Track Performance , 1999 .
[73] M. F. C. van de Ven,et al. Investigating self healing behaviour of pure bitumen using Dynamic Shear Rheometer , 2011 .
[74] Yongjoo Kim,et al. Dynamic Modulus and Repeated Load Tests of Cold In-Place Recycling Mixtures Using Foamed Asphalt , 2009 .
[75] R Roque,et al. THE USE OF COMPLEX MODULUS TO CHARACTERIZE THE PERFORMANCE OF ASPHALT MIXTURES AND PAVEMENTS IN FLORIDA , 2004 .
[76] François Hild,et al. Digital image correlation analysis of crack behavior in a reinforced concrete beam during a load test , 2006 .
[77] Y. Richard Kim,et al. LABORATORY EVALUATION OF FATIGUE DAMAGE AND HEALING OF ASPHALT MIXTURES , 2001 .
[78] A B Sterling,et al. THE EFFECT OF REST PERIODS ON THE FATIGUE PERFORMANCE OF A HOT-ROLLED ASPHALT UNDER REVERSED AXIAL LOADING AND DISCUSSION , 1970 .
[79] Shuaicheng Guo,et al. Experimental investigation of physical properties and accelerated sunlight-healing performance of flake graphite and exfoliated graphite nanoplatelet modified asphalt materials , 2017 .
[80] Glaucio H. Paulino,et al. Cohesive zone modeling of dynamic failure in homogeneous and functionally graded materials , 2005 .
[81] Sheng Zhao,et al. Comparative evaluation of warm mix asphalt containing high percentages of reclaimed asphalt pavement , 2013 .
[82] Tao Xu,et al. Investigation into causes of in-place rutting in asphalt pavement , 2012 .
[83] L. Drzal,et al. High latent heat storage and high thermal conductive phase change materials using exfoliated graphite nanoplatelets , 2009 .
[84] Shaopeng Wu,et al. Evaluating Self Healing Capability of Bituminous Mastics , 2012 .
[85] Qingli Dai,et al. Integrated computational–experimental approach for evaluating recovered fracture strength after induction healing of asphalt concrete beam samples , 2016 .
[86] Ramamohan Reddy Bommavaram. Evaluation of healing in asphalt binders using dynamic shear rheometer and molecular modeling techniques , 2009 .
[87] Dallas N. Little,et al. Determining Intrinsic Healing Properties of Asphalt Binders , 2009 .
[88] Daniel W. Spring,et al. Cohesive zone modeling of fracture of sustainable and functionally graded concrete , 2011 .
[89] Qingli Dai,et al. Integrated Experimental-Numerical Approach for Estimating Asphalt Mixture Induction Healing Level through Discrete Element Modeling of a Single-Edge Notched Beam Test , 2015 .
[90] Nicole Kringos,et al. Towards an understanding of the self-healing capacity of asphaltic mixtures , 2011 .
[91] V. Vacquier. The measurement of thermal conductivity of solids with a transient linear heat source on the plane surface of a poorly conducting body , 1985 .
[92] Dallas N. Little,et al. Asphalt Pavement Analyzer Used to Assess Rutting Susceptibility of Hot-Mix Asphalt Designed for High Tire Pressure Aircraft , 2012 .
[93] Glaucio H. Paulino,et al. A bilinear cohesive zone model tailored for fracture of asphalt concrete considering viscoelastic bulk material , 2006 .
[94] Alvaro Garcia. Self-healing of open cracks in asphalt mastic , 2012 .
[95] Hussain U Bahia,et al. NON-LINEAR VISCOELASTIC AND FATIGUE PROPERTIES OF ASPHALT BINDERS , 1999 .
[96] M. Poot,et al. Optimization of Steel Fiber Used for Induction Heating in Porous Asphalt Concrete , 2010 .
[97] Gangbing Song,et al. Experimental Study on Carbon Fiber Tape–Based Deicing Technology , 2012 .
[98] R L Lytton,et al. MICRODAMAGE HEALING IN ASPHALT AND ASPHALT CONCRETE, VOLUME IV: A VISCOELASTIC CONTINUUM DAMAGE FATIGUE MODEL OF ASPHALT CONCRETE WITH MICRODAMAGE HEALING , 2001 .
[99] Hai Huang,et al. Characterization of Fatigue and Healing in Asphalt Binders , 2010 .
[100] W Van Keulen,et al. DEVELOPMENT OF VIA-RAL FOR POROUS ASPHALT: MORE THAN JUST RESEARCH, MORE PRAGMATISM , 2004 .
[101] Pengfei Zhang,et al. The impact of carbon nano-fiber modification on asphalt binder rheology , 2012 .
[102] Tianchun Zou,et al. Microwave absorbing properties of activated carbon-fiber felt screens (vertical-arranged carbon fibers)/epoxy resin composites , 2006 .
[103] Y. Richard Kim,et al. Application of Thixotropy to Analyze Fatigue and Healing Characteristics of Asphalt Binder , 2010 .
[104] D. Feng,et al. Performance and Thermal Evaluation of Incorporating Waste Ceramic Aggregates in Wearing Layer of Asphalt Pavement , 2013 .