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Third RILEM International Conference on Concrete and Digital Fabrication

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Cover of 'Third RILEM International Conference on Concrete and Digital Fabrication'

Table of Contents

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    Book Overview
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    Chapter 1 Zero-Waste Production of Lightweight Concrete Structures with Water-Soluble Sand Formwork
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    Chapter 2 An Early Trial on Milling 3D Printed Concrete Geometries: Observations and Insights of the Process
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    Chapter 3 Mobile Additive Manufacturing: A Case Study of Clay Formwork for Bespoke in Situ Concrete Construction
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    Chapter 4 Adaptive Foam Concrete in Digital Fabrication
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    Chapter 5 Mesh Mould Prefabrication
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    Chapter 6 The Production of a Topology-Optimized 3D-Printed Concrete Bridge
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    Chapter 7 Injection 3D Concrete Printing (I3DCP) Combined with Vector-Based 3D Graphic Statics
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    Chapter 8 3DCP Structures: The Roadmap to Standardization
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    Chapter 9 Mix Design for a 3D-Printable Concrete with Coarse Aggregates and Consideration of Standardisation
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    Chapter 10 Fresh and Hardened Properties of 3D Printable Foam Concrete Containing Porous Aggregates
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    Chapter 11 Sustainable 3D Concrete Printing with Large Aggregates
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    Chapter 12 Design and Fabrication of Spatially Graded Concrete Elements with Ice Aggregate Method
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    Chapter 13 Accelerating Early Age Properties of Ultra-Low Clinker Cements for Extrusion-Based 3D Printing
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    Chapter 14 Developing Printable Fly Ash–Slag Geopolymer Binders with Rheology Modification
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    Chapter 15 Formulation and Characterization of a Low Carbon Impact Cementitious Ink for 3D Printing
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    Chapter 16 Strategies for Reducing the Environmental Footprint of Additive Manufacturing via Sprayed Concrete
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    Chapter 17 Mechanical Performance of 3-D Printed Concrete Containing Fly Ash, Metakaolin and Nanoclay
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    Chapter 18 Incorporation and Characterization of Multi-walled Carbon Nanotube Concrete Composites for 3D Printing Applications
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    Chapter 19 Properties of 3D-Printable Ductile Fiber-Reinforced Geopolymer Composite
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    Chapter 20 Feasibility of Using Ultra-High Ductile Concrete to Print Self-reinforced Hollow Structures
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    Chapter 21 Development of Cementitious Metamaterial with Compressive Strain Hardening Characteristics
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    Chapter 22 Consistency of Mechanical Properties of 3D Printed Strain Hardening Cementitious Composites Within One Printing System
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    Chapter 23 Uncertainty Quantification of Concrete Properties at Fresh State and Stability Analysis of the 3D Printing Process by Stochastic Approach
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    Chapter 24 Simulation of 3D Concrete Printing Using Discrete Element Method
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    Chapter 25 Influence of Infill Pattern on Reactive MgO Printed Structures
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    Chapter 26 Evaluation of Durability of 3D-Printed Cementitious Materials for Potential Applications in Structures Exposed to Marine Environments
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    Chapter 27 Two Year Exposure of 3D Printed Cementitious Columns in a High Alpine Environment
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    Chapter 28 Salt Scaling Resistance of 3D Printed Concrete
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    Chapter 29 Influence of the Print Process on the Durability of Printed Cementitious Materials
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    Chapter 30 Freeze-Thaw Performance of 3D Printed Concrete: Influence of Interfaces
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    Chapter 31 Mechanical Properties and Failure Pattern of 3D Printed Hollow Cylinders and Wall Segments Under Uniaxial Loading
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    Chapter 32 Impact of Drying of 3D Printed Cementitious Pastes on Their Degree of Hydration
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    Chapter 33 The Environment’s Effect on the Interlayer Bond Strength of 3D Printed Concrete
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    Chapter 34 Evaluation of the Bond Strength Between 3D Printed and Self-compacting Concrete
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    Chapter 35 Interlocking 3D Printed Concrete Filaments Through Surface Topology Modifications for Improved Tensile Bond Strength
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    Chapter 36 Digitally Fabricated Keyed Concrete Connections
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    Chapter 37 A 3D Printing Platform for Reinforced Printed-Sprayed Concrete Composites
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    Chapter 38 Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements
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    Chapter 39 Shotcrete 3DCP Projection Angle and Speed Optimization: Experimental Approaches and Theoretical Modelling
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    Chapter 40 ARCS: Automated Robotic Concrete Spraying for the Fabrication of Variable Thickness Doubly Curved Shells
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    Chapter 41 Particle Bed Technique for Hempcrete
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    Chapter 42 Effect of Curing in Selective Cement Activation
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    Chapter 43 Evaluating the Effect of Methyl Cellulose on Hardened State Properties in Selective Cement Activation
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    Chapter 44 Selective Paste Intrusion: Stability of Cement Paste Mixtures Towards Changing Ambient Temperature
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    Chapter 45 Set-On Demand Concrete by Activating Encapsulated Accelerator for 3D Printing
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    Chapter 46 Using Limestone Powder as a Carrier for the Accelerator in Extrusion-Based 3D Concrete Printing
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    Chapter 47 Printability Assessment of Cement-Based Materials Using Uniaxial Compression Test
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    Chapter 48 Monitoring Strain Using Digital Image Correlation During Compressive and Tensile Loading: Assessment of Critical Strain of Cement-Based Materials Containing VMA
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    Chapter 49 Temperature Impact on the Structural Build-Up of Cementitious Materials – Experimental and Modelling Study
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    Chapter 50 Early Age Shear and Tensile Fracture Properties of 3D Printable Cementitious Mortar to Assess Printability Window
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    Chapter 51 A Strain-Based Constitutive Model Ensuring Aesthetic 3D Printed Concrete Structures: Limiting Differential Settlement of Filaments
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    Chapter 52 Process Control for Additive Manufacturing of Concrete Components
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    Chapter 53 Generative Structural Design: A Cross-Platform Design and Optimization Workflow for Additive Manufacturing
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    Chapter 54 A Closed-Loop Workflow for Quality Inspection and Integrated Post-processing of 3D-Printed Concrete Elements
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    Chapter 55 Force Flow Compliant Robotic Path Planning Approach for Reinforced Concrete Elements Using SC3DP
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    Chapter 56 Integrating Reinforcement with 3D Concrete Printing: Experiments and Numerical Modelling
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    Chapter 57 Flow-Based Pultrusion of Anisotropic Concrete: Mechanical Properties at Hardened State
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    Chapter 58 Core Winding: Force-Flow Oriented Fibre Reinforcement in Additive Manufacturing with Concrete
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    Chapter 59 Integration of Mineral Impregnated Carbon Fibre (MCF) into Fine 3D-Printed Concrete Filaments
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    Chapter 60 Flexural Behaviour of Steel-Reinforced Topology-Optimised Beams Fabricated by 3D Concrete Printing
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    Chapter 61 Fundamental Study on Automated Interlayer Reinforcing System with Metal Fiber Insertion for 3D Concrete Printer
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    Chapter 62 Robotically Placed Reinforcement Using the Automated Screwing Device – An Application Perspective for 3D Concrete Printing
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    Chapter 63 Proof-of-Concept: Sprayable SHCC Overlay Reinforcement Regime for Unreinforced 3D Printed Concrete Structure
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    Chapter 64 Pre-installed Reinforcement for 3D Concrete Printing
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    Chapter 65 Material Design and Rheological Behavior of Sustainable Cement-Based Materials in the Context of 3D Printing
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    Chapter 66 Measuring Plastic Shrinkage and Related Cracking of 3D Printed Concretes
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    Chapter 67 Automated Visual Inspection of Near Nozzle Droplet Formation for Quality Control of Additive Manufacturing
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    Chapter 68 Selected Test Methods for Assessing Fresh and Plastic-State 3D Concrete Printing Materials
Attention for Chapter 38: Influence of Material and Process Parameters on Hardened State Properties of Shotcrete 3D-Printed Elements
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