CONCREEP 10 : Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures : Proceedings of the 10th International Conference on Creep, Shrinkage, and Durability of Concrete and Concrete Structures, September 21-23, 2015 Vienna, Austria

This collection contains 187 papers invited on the basis of carefully peer-reviewed abstracts. It elucidates the intricacies of concrete, linking atomistic physics to real life civil engineering design. Topics include: microstructures and micromechanics; multiscale creep, shrinkage, fracture, and du...

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Corporate Authors: International Conference on Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures Vienna, Austria), Engineering Mechanics Institute., American Society of Civil Engineers.
Other Authors: Hellmich, Christian, 1971- (Editor), Pichler, Bernhard, (Editor), Kollegger, Johann, (Editor)
Format: eBook
Language: English
Published: Reston, Virginia : American Society of Civil Engineers, [2015]
Subjects:
ISBN: 9781523101689
1523101687
9780784479346
0784479348
Physical Description: 1 online resource (xxii, 1610 pages) : illustrations

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111 2 |a International Conference on Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures  |n (10th :  |d 2015 :  |c Vienna, Austria) 
245 1 0 |a CONCREEP 10 :  |b Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures : Proceedings of the 10th International Conference on Creep, Shrinkage, and Durability of Concrete and Concrete Structures, September 21-23, 2015 Vienna, Austria /  |c sponsored by RILEM, Engineering Mechanics Institute of ASCE ; edited by Christian Hellmich, Bernhard Pichler, Johann Kollegger. 
246 3 0 |a Proceedings of the 10th International Conference on Creep, Shrinkage, and Durability of Concrete and Concrete Structures 
246 3 0 |a Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures 
264 1 |a Reston, Virginia :  |b American Society of Civil Engineers,  |c [2015] 
300 |a 1 online resource (xxii, 1610 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
504 |a Includes bibliographical references. 
505 0 |a Interaction of Concrete Creep, Shrinkage and Swelling with Water, Hydration, and Damage : Nano-Macro-Chemo -- Shrinkage Due to Colloidal Force Interactions -- Influence of Aggregate Restraint on Volume Changes : Experiments and Modelling -- Aging and Deterioration of Concrete Structures : Learning from the Past, Assessing the Present, and Predicting the Future; Science or Magic? -- The Meso-Scale Texture of Cement Hydrate Gels : Out-of-Equilibrium Evolution and Thermodynamic Driving -- C-S-H across Length Scales : From Nano to Micron -- Coupled Effects between Damage and Permeability with a View to Discrete Modelling -- Recent Experimental Results about the Basic Creep of Concretes and a New Approach to Model It -- The Three-Fluids Model for Concrete and Beyond -- A Few Analogies between the Creep of Cement and Other Materials -- Useful Fundamentals of Shrinkage and Creep of Concrete -- Fracture and Damage Spreading in Amorphous Materials -- Shape Correction Factor for Drying Shrinkage in a Concrete Cross-Section -- Accelerated Corrosion of Steel Reinforcement in Concrete : Experimental Tests and Numerical 3D FE Analysis -- Simulating the Deteriorating Effect of the Alkali-Silica Reaction in Concrete via a Micro-Poro Fracture Mechanical Model -- Numerical and Experimental Study of Creep and Shrinkage in a High-Performance Concrete. 
505 0 |a Stress Redistribution of Concrete Prisms Due to Creep and Shrinkage : Long-Term Observations and Analysis -- Advanced Evaluation of the Fracture Response of Steel Fibre-Reinforced Concrete Specimens -- Simulating the Effect of ASR on the Performance of Concrete Structures -- A Hygro-Thermo-Chemo Mechanical Model for the Simulation of Early Age Behavior of Ultra-High-Performance Concrete -- Gamma Processes for the Long-Term Prediction of Creep Deflections -- Lattice Discrete Particle Modeling for Coupled Concrete Creep and Shrinkage Using the Solidification Microprestress Theory -- Computational Modeling of Concrete Degradation Due to Alkali Silica Reaction -- Measurements of Shrinkage Strain and Stress of an Existing Reinforced Concrete Structure in Japan -- Concrete Pavement Joint Durability : A Sorption-Based Model for Saturation, the Role of Distributed Cracking, and Calcium Oxychloride Formation -- Prediction of the Time-Variant Behaviour of Concrete Sewer Collection Pipes Undergoing Deterioration Due to Biogenic Sulfuric Acid -- Coupled Effects of Static Creep, Cyclic Creep, and Damage on the Long-Term Performance of Prestressed Concrete Bridges : A Case Study Based on Rate-Type Formulation -- Creep of Concrete and Its Instant Nonlinear Deformation in the Calculation of Structures. 
505 0 |a Massive Structure Monitoring : Relevance of Surface Strain Measurement -- Interfacial Micromechanics Assessment of Rheological Chain Models and Their Application to Early-Age Creep of Concrete -- Modelling of Alkali-Silica Reaction (ASR) Concrete Structures -- Modelling of the Drying Process in Pores and the Shrinkage of Cement Paste at High Relative Humidity -- Modeling Drying Shrinkage and the Creep of Concrete at the Meso-Level -- Creep Behavior of Cement Paste, Mortar, and Concrete : The Role of Relative Humidity and Interface Porosity -- Modelling Hysteresis in the Water Sorption and Drying Shrinkage of Cement Paste -- Numerical Study of the Creep of Slit Nanopores : Role of Water -- Shrinkage and Creep Caused by Dissolution -- Thoughts on Curling in Plain and SRA Concrete Slabs : Moisture Gradients, Surface Tension, and Viscosity -- Effects of Humidity on the Time-Dependent Behaviour of Geomaterials -- RH Dependence upon Applied Load : Experimental Study on Water Redistribution in the Microstructure at Loading -- Minutes-Long Creep Tests on Young Cement Pastes Provide Access to Creep Properties Relevant for Ageing Creep with a Duration of 2 Days -- Modelling the Electric Corrosion of Rebar in Concrete Considering Electro-Mechanical Coupling. 
505 0 |a Modelling the Time Dependence of Transport Properties of Porous Materials -- 3D Modelling of the Influence of Microcracking on Mass Transport in Concrete -- Modelling the Effect of Microcracks on the Transport Properties of Concrete in Three Dimensions -- Prediction of the Cracking Effect on Mass Penetration into Unsaturated Concrete -- A Continuum Coupled Thermo-Hygro Mechanical Time-Dependent Model for Concrete -- Experimental and Numerical Study of Water Uptake in Strained SHCC -- A 3D Investigation of ITZ Porosity and Pore Connectivity Relevant to Damage and Transport Properties -- Dual-Lattice Modeling of Transport in Heterogeneous Materials -- Drying Shrinkage Damage in Concrete Repair Systems : A 3D Modelling Study -- Modelling of Non-Uniform Corrosion-Induced Cover Cracking in Reinforced Concrete -- Structural Performance Caused by Corrosion for RC Beams and Columns -- Numerical Modelling of ASR Expansions in Concrete -- Experimental Study of the Influence of the Temperature and Duration of Heat Treatments at an Early Age on the Risk of Concrete Expansion Associated with Delayed Ettringite Formation -- Coupled Effects of Creep and Alkali-Silica Reaction in Concrete at the Meso-Scale -- Effects of Internal Cracking and Drying Shrinkage on the Corrosion Processes of RC Beam Specimens -- Multiscale Modeling of Chloride Diffusion in Cementitious Materials -- Durability Performance of Polymer-Concrete Composites in a Diffusion-Dominated Process -- Viscoelasticity of UHPC Computation of Maxwell Chain Relaxation Spectra Based on Creep Experiments. 
505 0 |a Creep of Bulk C-S-H : Insights from Molecular Dynamics Simulations -- Fracture Toughness of Synthetic C-S-H Using Nanoindentation -- Cement Setting Is Not Just Smooth Anymore : Insight from the Physics of Jamming -- Creep of Clay : Numerical Results at the Scale of a Layer and Experimental Results at the Scale of Thin Self-Standing Films -- A Creep-Damage Model for Mesoscale Simulations of Concrete Expansion-Degradation Phenomena -- Confined Transport in Multiscale Porous Materials : From the Pore Scale to the Pore Network -- Evolution of the Strength of Polymer Fiber-Reinforced SCC during Early Hydration -- Kinetic Simulations of Cement Creep : Mechanisms from Shear Deformations of Glasses -- Hydration Kinetics and Gel Morphology of C-S-H -- Micromechanics of Hydrating Cement Pastes Considering C-S-H Gel Densification -- Modeling the Influence of Micro-Structure and Permeability on Water Freezing in Cementitious Materials -- Modeling Strains of Concrete Induced by Delayed Ettringite Formation in Variable Hygro-Thermal Conditions -- Study on the Effect of Water Migration and Visco-Elastic Behavior on Creep Deformation -- Modelling Damage from the Nano-Scale Up -- The Effects of Long-Term Behavior of Both Concrete and Prestressing Tendons on the Delayed Deflection of a Prestressed Structure -- On the Very Long-Term Delayed Behavior of Biaxially Prestressed Structures : The Case of the Containments of Nuclear Power Plants -- Stress Redistribution in Prestressed Concrete Bridges Built with Ultra-Thin Precast Girders. 
505 0 |a Evaluation of a Cracking Load Considering the Internal Stress Caused by the Shrinkage and Creep of Mortar -- Creep and Shrinkage in Fastening Systems -- Progressive Drying and Shrinkage of Concrete -- Study on the Shrinkage of a Full-Scale Wall Made with Blast Furnace Slag Fine Aggregates -- Effect of Lime Stone Aggregate on Drying Shrinkage and Shear Strength of an RC Beam -- Prestress Loss and Uncertainty in Concrete Box Girder Creep -- Creep and Shrinkage of Fibre-Reinforced Concrete and a Guide for Modeling -- Investigation of the Initiation and Propagation of Shrinkage Cracking in a Restrained Elliptical Ring Test -- Updated Temperature-Stress Testing Machine (TSTM) : Introductory Tests, Calculations, Verification, and Investigation of Variable Fly Ash Content -- Numerical Simulation of the Long-Term Behaviour of Long Span Prestressed Concrete Bridges -- Experimental Investigation on Shrinkage in High Strength Fiber-Reinforced Concrete and Its Influence on the Shear Capacity of RC Beams Having Shear Reinforcement -- Modelling of Long-Term Loading Tests on Reinforced Concrete Beams -- Modeling and Prediction of Time-Dependent Deformations of the I-35W St. Anthony Falls Bridge -- Life-Time Prediction under a Sustained Load and Extreme Events -- Creep of Concrete in Bridge Standards -- On Site Monitoring for Studying the Effects of Environmental Loads on the Corrosion Rate -- Diffusion-Based Model for Predicting Chloride Ingress into Road Structures. 
505 0 |a New Analysis Method for the Accurate Determination of Chloride Content in the Cement Phase of Concrete -- Cracking Behaviors Caused by the Corrosion of Reinforcing Bars in RC Columns -- Quantitative Determination of Chloride-to-Cement Content of Concrete by Laser-Induced Breakdown Spectroscopy (LIBS) -- Mechanical Behavior of Recycled Aggregate Concrete under Uniaxial Loading-Unloading Cycles -- Physical and Mechanical Properties of Recycled Demolition Gravels Submitted to Freeze/Thaw in Comparison to Natural Ones -- Epoxy Resin/Recycled Sand Mortars' Resistance to Chloride Ions Diffusion -- Mesoscale Modelling of Concrete with Recycled Aggregates -- Influence of the Proportion of Recycled Gravel on Shrinkage and Cracking Risk : Early Age and Long-Term Behavior -- Nanostructure of Cement/Polymer Fiber Interfaces -- Effect of Nano Seeds in C-S-H Gel Formation : Simulation Study from the Colloidal Point of View -- Structural and Dynamical Studies of C-S-H Gel Synthesized with Nano-Silica Particles and Amine Functionalized Silica Nanoparticles -- Energy Efficient Cement-Based Building Materials -- The Role of Water on C-S-H Gel Shear Strength Studied by Molecular Dynamics Simulations -- Determination of Nanomechanical Properties of Cementitious Materials Using an Energy-Based Approach -- Molecular Dynamics Simulations of Graphene Pull-Out from Calcium Silicate Hydrate. 
505 0 |a Efficiency of an Innovative Self-Healing System in Ultra-High-Strength Concrete under a Salt Spray Test -- Creep of Early Age Concrete under Variable Stress -- The Hybrid Approach in Constitutive Modelling of Tension Stiffening Accounting for the Shrinkage Effect -- CEOS. FR Experiments for the Crack Control of Concrete at an Early Age -- Experimental Investigation on Short- and Long-Term Deformations of Cracked Reinforced Concrete Ties -- RILEM TC 195-DTD (2002-2006) : Round Robin Test Program on Free Deformation Rigs; Planning, Test Results, and Statistical Evaluation -- COST Action TU1404 Recent Advances of WG1 : Testing of Cement-Based Materials -- Experimental Assessment of Autogenous Shrinkage -- Numerical Experimentation on Thermo-Hydro Mechanical Behavior of Massive Reinforced Concrete Structures at an Early Age -- From Testing and Modeling to Guidelines and Standards : The Case of Restrained Volume Changes in Concrete Structures at Early Ages -- Verification of an Inkbottle Pore and a Continuative Pore Determined by a Step-by-Step Mercury Intrusion Porosimetry Test -- From Micromechanisms to Mechanical Behaviour : An Application to the Ageing Creep of a Cement Paste -- Nano-Indentation Testing and Modelling of Cement Paste -- Evolution of Microstructure and Transport Properties of Cement Pastes Due to Carbonation under a CO2 Pressure Gradient A Modeling Approach -- Influence of the Alkali-Dolomite Reaction on the Mechanical Properties of Concrete. 
505 0 |a The Influence of Leaching on the Ion Adsorption Ability of Hardened Cement Paste -- Multiscale Estimation of the Viscoelastic Properties of Cementitious Materials at an Early Age : A Combined Analytical and Numerical Approach -- Uniaxial Restraint Tests under High-Stress Conditions and a Chemo-Hygral Model for ASR Expansion -- Experimental and Analytical Study of Creep and Shrinkage in Early-Age Concrete -- Experimental Study of Temperature Effects on Water Vapour Sorption and Moisture Transport Phenomena -- Effect of the Incorporation of Mineral Admixtures and Shrinkage-Mitigating Ingredients on the Plastic Shrinkage of Concrete -- Numerical Analysis of Concrete Creep on Mesoscopic 3D Specimens -- Experimental Study of the Water Desorption and Drying Shrinkage of Cement-Based Materials with Thin Slices -- Crack Initiation and Length Change in Modified Alkali Activated Slag Mortars -- Influence of Formwork Duration on the Shrinkage, Microstructure, and Durability of Cement-Based Materials -- Chloride Penetration Profile of Polyvinyl Alcohol (PVA) Treated Oil Palm Shell (OPS) Concrete -- Evaluation of the Thermal Expansion Coefficient Using Non-Destructive Testing -- Cracking Behaviour of FRC Beams under Long-Term Loading. 
505 0 |a Influence of Mineral Admixtures (Metakaolin, Slag, Fly Ash) on the Plastic, Free, and Restrained Shrinkage of SCCs -- Experimental Study on the Effects of Aggregates Restraint on the Delayed Behavior of Cementitious Materials -- Creep and Mechanical Properties of Concrete after Exposure to Elevated Temperatures -- Analogy between Sustained Loading and Strain Rate Effects on the Nonlinear Creep Response of Concrete -- Study on the Modeling of Microscopic Water Migration Depending on the C/S Ratio and Volumetric Changes -- Numerical Simulation of Sorption-Desorption Isotherme for Cement-Based Materials -- Multiscale Micromechanical Damage Model for Compressive Strength Based on Cement Paste Microstructure -- Difference between Creep and Relaxation Poisson's Ratios : Theoretical and Practical Significance for Concrete Creep Testing -- A Coupled Creep-Damage Model for Hardening Concrete -- Drained and Undrained Creep of Hardened Cement Paste under Isotropic Loading -- Bond Deterioration Mechanism and Its Modeling for Reinforced Concrete Subjected to Freezing-Thawing Action -- Meso-Scale Analysis of the Mechanical Properties of Chemically-Deteriorated Mortar -- Local Response in Concrete and Other Composite Material Structures Using the Embedded Unit Cell Approach -- Properties of Creep Compliance Functions and Their Relation to Retardation Spectra -- Study on the Prediction of the Behavior of Shrinkage with a Volume Change of Concrete in an Early Age -- Thermal Crack Estimation of Dam Concrete Considering the Influence of Autogenous Shrinkage -- Serviceability and Stability of Unreinforced Mass Concrete Structures EC 2-Compatible Design Concepts Derived from Comprehensive FE Studies on Real Structural Behaviour -- Computational Fatigue Life Assessment of Corroded Reinforced Concrete Beams. 
505 0 |a Simulation of Long-Term Stress and Deflection of Concrete Structures Based on Precise Considerations of Environmental Action -- Anomalies of Shrinkage and Tensile Creep of Concrete -- Decrease of Tensile Creep Response under Realistic Restraint Conditions in Structures -- Experimental Studies on an Effective Creep Coefficient in a Prestressed Concrete Girder -- Mini-Beam Test for Assessing the Creep Trend of Paste, Mortar, and Concrete -- Continuous Monitoring of Concrete Mechanical Properties since an Early Age to Support Construction Phasing -- Innovative Method for the Continuous Monitoring of Concrete Viscoelastic Properties since Early Ages : Concept and Pilot Experiments -- EDF Study of 10-Year Concrete Creep under Unidirectional and Biaxial Loading : Evolution of the Poisson Coefficient under Sealed and Unsealed Conditions -- Experimental Investigation of the Creep-Damage Interaction Effect on the Mechanical Behaviour of Hardening Concrete -- Analysis and Modelling of Basic Creep -- Adiabatic Temperature Rise Model of Ultra-High-Volume Fly Ash Conventional Dam Concrete and a FEM Simulation of the Temperature History Curve -- Development, Calibration, and Validation of Lateral Displacement for a Concrete Uniaxial Compression Test -- Monitoring and Behavior of an Instrumented Concrete Lining Segment of a TBM Excavation Experiment at the Meuse Haute-Marne Underground Research Laboratory (France). 
505 0 |a Monitoring the Creep of Prestressed Concrete Girders Affected by the Thickness of a Cross Section -- Health Monitoring of Prestressed Concrete Structures Based on Finite Element Model Updating with Uncertainty -- Simplified Element-Based Model to Estimate Strain-Related Prestress Loss in Pretensioned Simply Supported Bridge Girders -- Investigation of Microstructure Properties and Early Age Behavior of Cementitious Materials Containing Metakaolin -- Shrinkage of Mortar Samples Made of Limestone-Rich Cements -- Modelling the Time-Dependent Pull-Out Behaviour of Hooked Steel Fibres -- Experimental Study of the Crack Widening Mechanisms in Polymer Fiber Reinforced Concrete -- Early-Age Shrinkage of Ordinary Concrete and a Strain-Hardening Cement-Based Composite (SHCC) in the Conditions of Hot Weather Casting -- Early Age Drying Shrinkage Evaluation of Self-Compacting Concretes and Pastes with Mineral Additions -- Creep and Shrinkage in Concrete Containing Mineral Admixtures -- Study on the Sulfate Resistance and Drying Shrinkage of Mortars Containing Scoria as a Cement Replacement -- Database on the Long-Term Behaviour of FRC : A Useful Tool to Achieve Overall Conclusions -- Preliminary Studies on the Effect of C & DW on the Long-Term Properties of Sustainable Self-Compacting Concrete -- Experimental Study on the Effects of a Loading Rate on the Shear Performance of an RC Beam -- Experimental Study on the Creep Behavior of Alkali-Silica Reaction (ASR) Damaged Concrete with Slow/Late Aggregates -- Delayed Shear Crack Formation of Shallow RC Box Culverts in Service -- Creep Behaviour of Concrete Structures under Lower High Temperatures (80~240 °C) -- Long-Term Performance of Dry Storage Structures -- Fully-Coupled Creep-Damage Models for Concrete. 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
520 |a This collection contains 187 papers invited on the basis of carefully peer-reviewed abstracts. It elucidates the intricacies of concrete, linking atomistic physics to real life civil engineering design. Topics include: microstructures and micromechanics; multiscale creep, shrinkage, fracture, and durability properties; constitutive and numerical modeling; simulation and design of concrete structures; molecular- to lab-scale simulations and characterization of concrete; macroscopic material testing; creep and shrinkage of concrete under extreme conditions; monitoring of concrete structures and exploitation of measurement data; and creep and shrinkage properties of new cementitious materials. Scientists from physics and engineering disciplines working on the next generation of materials will find that these papers present the state-of-the-art in concrete creep, shrinkage, and durability mechanics. --  |c Provided by publisher. 
590 |a Knovel  |b Knovel (All titles) 
650 0 |a Concrete  |x Creep  |v Congresses. 
650 0 |a Concrete  |x Expansion and contraction  |v Congresses. 
655 7 |a elektronické knihy  |7 fd186907  |2 czenas 
655 9 |a electronic books  |2 eczenas 
700 1 |a Hellmich, Christian,  |d 1971-  |e editor.  |1 https://id.oclc.org/worldcat/entity/E39PCjr74h34Vgh8gVbtymb9cK 
700 1 |a Pichler, Bernhard,  |e editor. 
700 1 |a Kollegger, Johann,  |e editor. 
710 2 |a Engineering Mechanics Institute. 
710 2 |a American Society of Civil Engineers. 
856 4 0 |u https://proxy.k.utb.cz/login?url=https://app.knovel.com/hotlink/toc/id:kpCPICMPC3/concreep-10-mechanics?kpromoter=marc  |y Full text