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Rheology and Processing of Construction Materials

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Cover of 'Rheology and Processing of Construction Materials'

Table of Contents

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    Book Overview
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    Chapter 1 Influence of Waste Tire Rubber on Fresh and Hardened Properties of Self-Compacting Rubberized Concrete (SCRC)
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    Chapter 2 Novel Mix Design Methodology for Self-Compacting Steel-Fiber Reinforced Concrete Based on Rheological and Mechanical Concepts
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    Chapter 3 Innovative Use of Fine and Ultrafine GCC in Cementitious Systems
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    Chapter 4 Use of Surfactant to Improve Properties of Crumb Rubbers in Concrete Products
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    Chapter 5 Structural Build-Up of Cementitious Paste Under External Magnetic Fields
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    Chapter 6 Influence of Aggregate Particle Size Distribution on Mixing Behavior and Rheological Properties of Low-Binder Concrete
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    Chapter 7 Suspensions Sedimenting in a Horizontal Annulus – A Model for Oilfield Cements in Horizontal Wells
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    Chapter 8 SCC for Sub-Saharan Africa Based on Local Raw Materials – Material Development, Optimisation, and Application Concept
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    Chapter 9 Effect of Sodium Sulphate on Rheological Behaviour of Alkali Activated Slag Binders
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    Chapter 10 Bio-Derived Rheology Modifying Agents for Cement-Based Materials
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    Chapter 11 Influence of Cements Containing Calcareous Fly Ash on Rheological Properties of Fresh Mortars and Its Variability
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    Chapter 12 Early Properties of Portland Cements with Varied Set Regulators
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    Chapter 13 Influence of Different Accelerators on the Rheology and Early Hydration of Cement Paste
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    Chapter 14 Effect of Mineral Additions on Rheology and Fresh Properties of Cement Pastes and Mortars
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    Chapter 15 Effect of the Side Chain Density and Length of Polycarboxylate Ether Superplasticizers on the Thixotropic Structural Build-Up of Cement Paste
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    Chapter 16 Interaction of Superplasticizers with Cement from the Point of View of Colloid Chemistry
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    Chapter 17 Improvement of UHPFRC-Rheology by Using Circular Shape Memory Alloy Fibres
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    Chapter 18 The Use of Parallel-Plate Rotational Rheometry to Determine the Superplasticizer to be Used in Cement Pastes Admixtures
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    Chapter 19 Rheology and Build-Up of Fresh SCC Pastes Evaluated with the Mini-slump Cone Test
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    Chapter 20 About the Influence of Shear-Induced Particle Migration and Sedimentation on the Measurement Results of Concrete Rheometers
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    Chapter 21 On-Board Concrete Rheology Measurements Using an In-Drum Sensor System: Early Stages
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    Chapter 22 Experimental Developments of the Squeeze Flow Test for Mortars
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    Chapter 23 Measuring the Impact Behavior of Fresh Mortars by Pressure Mapping
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    Chapter 24 Evaluation of Fresh Adhesive Mortars Through Various Rheological and Imaging Techniques
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    Chapter 25 Evaluation of Structural Build-Up Rate of Cementitious Materials by Means of Constant Shear Rate Test: Parameter Study
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    Chapter 26 Comparing Phase Development and Rheological Properties of OPC Paste Within the First Hour of Hydration
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    Chapter 27 Challenges in Rheological Characterization of Cement Pastes Using a Parallel-Plates Geometry
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    Chapter 28 Correlation Between “Very Early” Age Fracture Performance and Evolution of Rheological Properties of High Performance Fiber Reinforced Cementitious Composites with Adapted Rheology
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    Chapter 29 Investigation of the Early Cement Hydration with a New Penetration Test, Rheometry and In-Situ XRD
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    Chapter 30 Use of Combined Rheo-NMR to Investigate the Relationship Between the Molecular and Mechanical Properties of Early Cement Paste Hydration
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    Chapter 31 Calibration of ASTM C230 Cone for Measuring Flow Diameter of Self-flowing Mortar According to the EFNARC Recommendation
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    Chapter 32 Thixotropy-Dependent Form Filling Ability of Cement Paste
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    Chapter 33 Comparative Study on the Effect of Mixer Type on Properties of Self-compacting Mortar
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    Chapter 34 Effect of Electromagnetic Pulsation on the Rheological Properties of Mortars During Pumping
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    Chapter 35 Influence of Aggregate Volume Fraction on Concrete Pumping Behaviour
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    Chapter 36 Effect of Mixing Procedure on the Rheological Properties and Hydration Kinetics of Portland Cement Paste
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    Chapter 37 Development of SCC Placement Methodology for the Monolithic Construction of Slab-to-Wall Members Using Formwork Pressure and Time of Set-Based Modeling
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    Chapter 38 Influence of Segregation on Materials Component in Fresh Concrete Due to Vibration
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    Chapter 39 Study of the Mixing Completion in Concrete Production by Means of an on-Board Sensor System
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    Chapter 40 Pumping Process of High Strength Self-consolidating Concrete in the Construction of Skyscraper
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    Chapter 41 Hardened Properties of 3D Printable Ultra-High Performance Fiber-Reinforced Concrete for Digital Construction Applications
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    Chapter 42 Properties of 3D-Printable Ductile Fibre-Reinforced Geopolymer Composite for Digital Construction Applications
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    Chapter 43 Rheology of 3D Printable Lightweight Foam Concrete Incorporating Nano-Silica
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    Chapter 44 Study on the Influence of Accelerators on the Hydration of Portland Cement and Their Applicability in 3D Printing
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    Chapter 45 Predication of Strength-Based Failure in Extrusion-Based 3D Concrete Printing
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    Chapter 46 Quantifying Constructability Performance of 3D Concrete Printing via Rheology-Based Analytical Models
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    Chapter 47 Extrusion of Lightweight Concrete: Rheological Investigations
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    Chapter 48 Enhancing Strength of Powder-Based 3D Printed Geopolymers for Digital Construction Applications
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    Chapter 49 Rheology and Structural Rebuilding of One-Part Geopolymer Mortar in the Context of 3D Concrete Printing
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    Chapter 50 Rheology of Fresh Concrete: Historical Perspective and Glance in the Future
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    Chapter 51 Processing of Set on Demand Solutions for Digital Fabrication in Architecture
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    Chapter 52 Residence Time Distributions in Continuous Processing of Concrete
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    Chapter 53 Post-processing Techniques to Enhance Strength of Portland Cement Mortar Digitally Fabricated Using Powder-Based 3D Printing Process
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    Chapter 54 Rheology Study of Fresh Self-compacting Concrete Made Using Recycled Fine Aggregates
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    Chapter 55 Experimental Study of Formwork Tightness as a Function of Rheological Properties of SCC
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    Chapter 56 The Effect of Fiber Geometry and Concentration on the Flow Properties of UHPC
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    Chapter 57 Rheological Characterization of Self-compacting Concrete Pastes with Polymeric Admixtures
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    Chapter 58 Effect of Limestone Powder Addition Quality on SCC Rheology
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    Chapter 59 Rheological and Mechanical Properties of Alkali-Activated Hybrid Matrix for Self-consolidating Concrete
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    Chapter 60 Effects of Nanoclays on SCC Paste Rheology
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    Chapter 61 Revised Macro-cracking Criterion for Massive Non-reinforced Self-compacting Concrete Structures Under Thermal Load Based on Extensive Experimental Testing and Field Observations
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    Chapter 62 Experimental Investigation on Mechanical Properties of Fiber Reinforced Lightweight Self-consolidating Concrete
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    Chapter 63 Utilization of Copper Slag in Self-compacting Concrete - Strength and Permeation Properties
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    Chapter 64 Characterization of Non-proprietary UHPC for Use in Rehabilitation/Strengthening Applications
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    Chapter 65 The Applicability of Reclaimed Concrete Granulate to SCC
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    Chapter 66 Particle Interactions in Silica Systems in Presence of Superplasticizer
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    Chapter 67 Fresh Concrete Pumping Arrest Investigation for Thixotropy by a CFD Modelling Approach
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    Chapter 68 Numerical Simulation of the Flow Behavior of Newtonian Fluids in a Wide Gap Rheometer by CFD
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    Chapter 69 Segregation of Granular Material During the Transport in Pipes
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    Chapter 70 Synthesis and Analysis of Spherical Cementitious Model Particles
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    Chapter 71 Comparison of Water-Isopropanol Replacement and Lyophilisation for Hydration Stop of Cementitious Suspensions
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    Chapter 72 Rheological Properties of Silica Beads in the Presence of Different Polymers and Electrolyte
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    Chapter 73 A Plasticity Theory Approach for the Stability Analysis of Vertical Layers of Concrete in the Fresh State
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    Chapter 74 Hydrating Cement Particle Interaction Model for Yield Stress Analysis
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    Chapter 75 Measuring Thixotropic Properties in a Truck Mixer - Analysis by Numerical Simulation Using the PFI Material Model
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    Chapter 76 Computational Segregation Analysis During Casting of SCC
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Title
Rheology and Processing of Construction Materials
Published by
Springer International Publishing, October 2019
DOI 10.1007/978-3-030-22566-7
ISBNs
978-3-03-022565-0, 978-3-03-022566-7
Editors

Mechtcherine, Viktor, Khayat, Kamal, Secrieru, Egor

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 36 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 36 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 16 44%
Student > Bachelor 5 14%
Researcher 4 11%
Student > Master 4 11%
Other 1 3%
Other 2 6%
Unknown 4 11%
Readers by discipline Count As %
Engineering 16 44%
Materials Science 6 17%
Chemistry 2 6%
Computer Science 1 3%
Physics and Astronomy 1 3%
Other 4 11%
Unknown 6 17%