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Fibre Reinforced Concrete: Improvements and Innovations

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Cover of 'Fibre Reinforced Concrete: Improvements and Innovations'

Table of Contents

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    Book Overview
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    Chapter 1 Influence of Different Fibre Types on the Rheology of Strain Hardening Cementitious Composites
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    Chapter 2 Using Fiber Reinforced Concrete to Control Early-Age Shrinkage in Replacement Concrete Pavement
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    Chapter 3 Early Age Shrinkage Crack Distribution in Concrete Plates Reinforced with Different Steel Fibre Types
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    Chapter 4 Influence of Synthetic Fibres on Seismic Resistance of Reinforced Concrete Sections
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    Chapter 5 Development and Mechanical Characterization of Dry Fiber-reinforced Concrete for Prefabricated Prestressed Beams
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    Chapter 6 Simulation of Fibre Orientation in Self-compacting Concrete: Case Studies
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    Chapter 7 Mix Design and Properties of Self-compacting Fibrous Concrete
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    Chapter 8 Aligned Interlayer Fibre Reinforcement for Digital Fabrication with Concrete
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    Chapter 9 Mixture Proportioning of Steel Fibre Reinforced Self-compacting Concrete Based on the Compressible Packaging Method: Comparison with ACI 237R-07 and RILEM TC 174-SCC Recommendations
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    Chapter 10 Evaluation the Yield and Ultimate Strain of FRC in Compression
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    Chapter 11 Electromagnetic Shielding Characteristics of High Performance Fiber Reinforced Cementitious Composites
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    Chapter 12 The Manufacture of Fiber Cement Blocks Using Chemical and Thermomechanical Pulps and Rice Husk Ash
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    Chapter 13 Post-Fire Flexural Tensile Strength of Macro Synthetic Fibre Reinforced Concrete
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    Chapter 14 Experimental Investigation on the Cyclic Behaviour of Steel Fibre Reinforced Concrete Under Bending
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    Chapter 15 Effect of Test Setups on the Shear Transfer Capacity Across Cracks in FRC
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    Chapter 16 Bearable Local Stress of High-Strength SFRC
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    Chapter 17 Impact Response of Different Classes of Fibre Reinforced Concrete
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    Chapter 18 An Experimental Study on the Fatigue Failure Mechanisms of Pre–damaged Steel Fibre Reinforced Concrete at a Single Fibre Level
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    Chapter 19 Development of an HPFRC for Use in Flat Slabs
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    Chapter 20 Influence of the Steel Fibres on the Tension and Shear Resistance of Anchoring with Anchor Channels and Channel Bolts Cast in Concrete
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    Chapter 21 Fiber Reinforced Concrete After Elevated Temperatures: Techniques of Characterization
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    Chapter 22 Influence of the Curing Temperatures on the Mechanical Properties of Hemp Fibre-Reinforced Alkali-Activated Mortars
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    Chapter 23 Equivalence Between Flexural Toughness and Energy Absorption Capacity of FRC
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    Chapter 24 Alkali Resistant (AR) Glass Fibre Influence on Glass Fibre Reinforced Concrete (GRC) Flexural Properties
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    Chapter 25 Fiber Reinforced Concrete Crack Opening Evaluation Using Digital Image Correlation Techniques
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    Chapter 26 Effect of Distribution and Orientation of Fibers on the Post-cracking Behavior of Steel Fiber Reinforced Self-compacting Concrete in Small Thickness Elements
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    Chapter 27 Ductility of the Four-Year-Old Steel Fibre Reinforced Concrete
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    Chapter 28 Sensitivity of the Flexural Performance of Glass and Synthetic FRC to Fibre Dosage and Water/Cement Ratio
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    Chapter 29 Bond Between Steel Reinforcement Bars and Fiber Reinforced Cement-Based Composites
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    Chapter 30 An Experimental Study of the Influence of Moderate Temperatures on the Behavior of Macrosynthetic Fiber Reinforced Concrete
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    Chapter 31 Post-cracking Behaviour of Glass Fibre Reinforced Concrete with Recycled Aggregates
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    Chapter 32 A Computational Sectional Approach for the Flexural Creep Behavior of Cracked FRC
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    Chapter 33 Shrinkage of Steel-Fibre-Reinforced Lightweight Concrete
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    Chapter 34 Time Dependent Deflection of FRC Members Under Sustained Axial and Flexural Loading
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    Chapter 35 Influence of the Residual Tensile Strength on the Factor for Quasi-permanent Value of a Variable Action $$ {\varvec{\uppsi}}_{{\mathbf{2}}} $$
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    Chapter 36 Compressive and Tensile Creep and Shrinkage of Synthetic FRC: Experimental Results and Comparison to Codes
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    Chapter 37 Creep in FRC – From Material Properties to Composite Behavior
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    Chapter 38 Morphology of Corrosion of Metallic Fibers in Aggressive Media
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    Chapter 39 Effects of Fibres on the Flexural Behaviour of Sound and Damaged RC Beams
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    Chapter 40 Fiber Reinforced Concrete Elements Exposed to Accelerated Corrosion
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    Chapter 41 Effect of Corroded Steel Fibers on Mechanical Behavior of Steel Fiber Reinforced Concrete
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    Chapter 42 Self-healing of Fibre Reinforced Concrete Containing an Expansive Agent in Different Exposure Conditions
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    Chapter 43 Characterisation of Strain-Hardening Cementitious Composite (SHCC) Under Cyclic Loading Conditions for Self-healing Applications
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    Chapter 44 Corrosion Pattern and Mechanical Behaviour of Corroded Rebars in Cracked Plain and Fibre Reinforced Concrete
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    Chapter 45 Evaluation of the Self-healing Capability of Ultra-High-Performance Fiber-Reinforced Concrete with Nano-Particles and Crystalline Admixtures by Means of Permeability
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    Chapter 46 Material Characterisation for Nonlinear Finite Element Analysis (NLFEA)
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    Chapter 47 Comparison Between the Cracking Process of Reinforced Concrete and Fibres Reinforced Concrete Railway Tracks by Using Non-linear Finite Elements Analysis
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    Chapter 48 Experimental/Computational-Based Determination of Material Parameters for Nonlinear Simulation of UHPFRC
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    Chapter 49 Mechanical Response of High Strength Fibre Reinforced Concrete Under Extreme Loads
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    Chapter 50 Numerical Damage Modelling of Macro-synthetic Fibre Reinforced Concrete
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    Chapter 51 Finite Element Analysis of Ultra High Performance Fibre Reinforced Concrete Beams Using Microplane Modelling
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    Chapter 52 Machine Learning Prediction of Flexural Behavior of UHPFRC
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    Chapter 53 Study of Dimensioning Aspects of FRC Based on the Beam Flexion Theory
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    Chapter 54 Load-Carrying Capacity of SFRC Suspended Slabs with Different Support Conditions
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    Chapter 55 Discrete Element Simulation of the Fresh State Steel Fiber Reinforced Self-compacting Concrete
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    Chapter 56 Crack Width Simulation and Nonlinear Finite Element Analysis of Bursting and Spalling Stresses in Precast FRC Tunnel Segments Under TBM Thrust Jack Forces
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    Chapter 57 Finite Element Modelling of UHPFRC Flexural-Reinforced Elements
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    Chapter 58 Punching Shear Response of RC Slab-Column Connections Strengthened with UHPFRC - Finite Element Investigation
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    Chapter 59 Numerical Evaluation the Effect of Specimen Thickness on Fibre Orientation in Self-consolidating Engineered Cementitious Composites
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    Chapter 60 Numerical Modelling of Fiber-Reinforced Concrete Shear-Critical Beams
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    Chapter 61 Experimental Analysis of Crack Development of an UHPC Wall Element Under Shear Loading
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    Chapter 62 Assessment of the Shear Behaviour of Fibre Reinforced Concrete Through Numerical Modelling of Shear-Friction Theory
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    Chapter 63 Modeling the Compressive Behavior of Steel Fiber Reinforced Concrete Under High Strain Rate Loads
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    Chapter 64 Post-cracking Strength Classification of Macro-synthetic Fibre Reinforced Concrete for Sleeper Application
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    Chapter 65 Structural Behaviour of Steel-Fibre-Reinforced Lightweight Concrete
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    Chapter 66 Experimental Analysis of Beams Produced in Self-compacting Concrete Reinforced with Different Contents of Steel Fibres
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    Chapter 67 Innovation in Durable Segments for CSO Tunnels
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    Chapter 68 Incorporation of Rate-Dependent Fracture Properties in the Design of Precast Concrete Tunnel Segment with Hybrid Reinforcement
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    Chapter 69 Developments and Standardisation of Flowable Concrete Reinforced with Fibres for Structural Design, Update of fib TG 4.3
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    Chapter 70 Assesment of Codal Provision for SFRC Beam in Minimum Shear
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    Chapter 71 Laboratory Investigations on the Installation of Fasteners in Fiber Reinforced Concrete
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    Chapter 72 Applications of Statistical Process Control in the Evaluation of QC Test Data for Residual Strength of FRC Samples of Tunnel Lining Segments
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    Chapter 73 Using Decades of Data to Rethink Proportioning and Optimisation of FRC Mixes: The OptiFRC Project
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    Chapter 74 Fire Resistance of Steel Fibre Reinforced Concrete Elevated Suspended Slabs: ISO Fire Tests and Conclusions for Design
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    Chapter 75 Structural Behavior of a Traditional Concrete and Hollow Tiles Mixed Floor Reinforced with HPFRC
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    Chapter 76 Pedestrian Bridge over Las Vegas Avenue in Medellín. First Latin American Infrastructure in UHPFRC
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    Chapter 77 First Experimental Full-Scale Elevated FRSCC Slab in South America
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    Chapter 78 Masonry Walls Strengthened with Fiber Reinforced Concrete Subjected to Blast Load
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    Chapter 79 Interfacial Bond Quality in Functionally Graded Concretes Incorporating Steel Fibres and Recycled Aggregates
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    Chapter 80 Towards Rebar Substitution by Fibres – Tailored Supercritical Fibre Contents
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    Chapter 81 A Constitutive Model for Steel-Fibre-Reinforced Lightweight Concrete
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    Chapter 82 UV-C Treatment to Functionalize the Surfaces of Pet and PP Fibers for Use in Cementitious Composites. Adherence Evaluation
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    Chapter 83 Potential of Using Recycled Carbon Fibers as Reinforcing Material for Fiber Concrete
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    Chapter 84 Development of Textile Reinforced UHPC with Reduced Steel Fiber Contents
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    Chapter 85 Reinforcement of Concrete with Glass Multifilament Yarns: Effect of the Impregnation on the Yarn Pull-Out Behaviour
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    Chapter 86 Influence of Fibres Impregnation on the Tensile Response of Flax Textile Reinforced Mortar Composite Systems
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    Chapter 87 Experimental Investigation of Mechanical Properties of Smart Textile Reinforced Concrete Pipes
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    Chapter 88 Full-Scale Construction Test for Improvement of RC Void Slab Bridges Using UHPFRC – Part 1: Experimental Test Plan
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    Chapter 89 Full-Scale Construction Test for Improvement of RC Void Slab Bridges Using UHPFRC – Part 2: Test Results
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    Chapter 90 Influence of Fiber Type on the Tensile Behavior of High-Strength Strain-Hardening Cement-Based Composites (HS-SHCC) During and After Exposure to Elevated Temperatures
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    Chapter 91 Tensile and Compressive Performance of High-Strength Engineered Cementitious Composites (ECC) with Seawater and Sea-Sand
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    Chapter 92 Effect of Fiber Content Variation in Plastic Hinge Region of Reinforced UHPC Flexural Members
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    Chapter 93 An Eco-Friendly UHPC for Structural Application: Tensile Mechanical Response
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    Chapter 94 Characterization of Ultra High Performance Fiber Reinforced Concrete (UHPFRC) Tensile Behaviour
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    Chapter 95 Slip-Hardening Bond: A Key to the Success of Ultra High Performance FRC Composites
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    Chapter 96 Testing of Thin UHPFRC Cantilever Stairs with Bolted Connections
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    Chapter 97 Studying of Processing-Structure-Properties Relation of Strain Hardening Cementitious Composites (SHCC)
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    Chapter 98 The Effect of Fiber Content on the Post-cracking Tensile Stiffness Capacity of R-UHPFRC
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    Chapter 99 Controlling Strength and Ductility of Strain-Hardening Cementitious Composites by Nano-Engineering
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    Chapter 100 Comprehensive Characterization of UHPFRC Mixes for Seismic and Durability Rehabilitation of Bridge Piers
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    Chapter 101 Evaluation of the Splitting Tensile Strength of Ultra-High Performance Concrete
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Title
Fibre Reinforced Concrete: Improvements and Innovations
Published by
Springer International Publishing, January 2021
DOI 10.1007/978-3-030-58482-5
ISBNs
978-3-03-058481-8, 978-3-03-058482-5
Editors

Pedro Serna, Aitor Llano-Torre, José R. Martí-Vargas, Juan Navarro-Gregori

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