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Second RILEM International Conference on Concrete and Digital Fabrication

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

Table of Contents

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    Book Overview
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    Chapter 1 An Fe-Rich Slag-Based Mortar for 3D Printing
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    Chapter 2 Enhancing Buildability of 3D Printable Concrete by Spraying of Accelerating Admixture on Surface
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    Chapter 3 Effect of Wollastonite Micro-Fiber Addition on Properties of 3D-Printable ‘Just-Add-Water’ Geopolymers
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    Chapter 4 Synthesis of Hybridized Rheological Modifiers for 3D Concrete Printing
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    Chapter 5 Control of Strand Properties Produced with Shotcrete 3D Printing by Accelerator Dosage and Process Parameters
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    Chapter 6 Comparison of Printable Inorganic Binders - Key Properties for 3D Printable Materials
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    Chapter 7 Design of Energy-Efficient White Portland Cement Mortars for Digital Fabrication
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    Chapter 8 Use of the Chemical and Mineral Admixtures to Tailor the Rheology and the Green Strength of 3D Printing Cementitious Mixtures
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    Chapter 9 Characterising Concrete Mixes for 3D Printing
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    Chapter 10 Digital Fabrication of ‘Just-Add-Water’ Geopolymers: Effects of Curing Condition and Print-Time Interval
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    Chapter 11 Advances in Binder-Jet 3D Printing of Non-cementitious Materials
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    Chapter 12 Rubber-Cement Composites for Additive Manufacturing: Physical, Mechanical and Thermo-Acoustic Characterization
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    Chapter 13 Properties of Composite Modified with Limestone Powder for 3D Concrete Printing
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    Chapter 14 Effect of Limestone Powder Substitution on Fresh and Hardened Properties of 3D Printable Mortar
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    Chapter 15 Rheology Evaluation of Cement Paste with Nanoclays, Nanosilica and Polymeric Admixtures for Digital Fabrication
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    Chapter 16 Geopolymer Formulation for Binder Jet 3D Printing
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    Chapter 17 Lightweight Concrete 3D Printing by Selective Cement Activation – Investigation of Thermal Conductivity, Strength and Water Distribution
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    Chapter 18 Numerical Model Describing the Early Age Behavior of 3D Printed Concrete – Work in Progress
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    Chapter 19 Characterisation of the Layer Pressing Strategy for Concrete 3D Printing
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    Chapter 20 A Compendious Rheo-Mechanical Test for Printability Assessment of 3D Printable Concrete
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    Chapter 21 Effect of Metakaolin, Fly Ash and Polypropylene Fibres on Fresh and Rheological Properties of 3D Printing Based Cement Materials
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    Chapter 22 “The Slug Test”: Inline Assessment of Yield Stress for Extrusion-Based Additive Manufacturing
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    Chapter 23 Fresh and Hardened Properties of 3D-Printed Concrete Made with Dune Sand
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    Chapter 24 An Experimental Testing Procedure to Assess the Buildability Performance of 3D Printed Concrete Elements
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    Chapter 25 Investigation on the Rheological Behavior of Lightweight Foamed Concrete for 3D Printing Applications
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    Chapter 26 Experimental Investigation on the Early Age Tensile Strength of Fiber Reinforced Mortar Used in 3D Concrete Printing
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    Chapter 27 Transition from Fluid to Solid Concrete in the Flexible Mould Process
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    Chapter 28 Physico-Chemical Characterization at Early-Age of 3D Printed Mortar
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    Chapter 29 Gravity Driven Tests to Assess Mechanical Properties of Printable Cement-Based Materials at Fresh State
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    Chapter 30 Characterizing Extrudability for 3D Concrete Printing Using Discrete Element Simulations
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    Chapter 31 Investigation on Structural Build-Up of 3D Printable Foam Concrete
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    Chapter 32 Effect of Cement Type and Limestone Powder Content on Extrudability of Lightweight Concrete
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    Chapter 33 Numerical Modeling of an Extrusion-Based 3D Concrete Printing Process Considering a Spatially Varying Pseudo-Density Approach
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    Chapter 34 Evaluating the Influence of Aggregate Content on Pumpability of 3D Printable Concrete
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    Chapter 35 2D Numerical Modelling of Particle-Bed 3D Printing by Selective Paste Intrusion
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    Chapter 36 Effect of Vibration on the Rheology of Concrete for 3D Printing
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    Chapter 37 Prediction of the Yield Stress of Printing Mortar Ink
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    Chapter 38 Dynamic and Static Yield Stress Determination of Cementitious Paste with Admixtures
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    Chapter 39 Penetration Study of Liquid in Powder Bed for 3D Powder-Bed Printing
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    Chapter 40 Quantitative Evaluation of Orientation of Steel Fibers in 3D-Printed Ultra-High Performance Concrete
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    Chapter 41 Steel Fiber Links in 3D Printed Concrete
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    Chapter 42 Mechanical Characterization of Cement-Based Mortar Used in 3DCP Including Early-Age Creep Effects
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    Chapter 43 Influence of Pumping/Extrusion on the Air-Void System of 3D Printed Concrete
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    Chapter 44 Fire Behavior of a Printed Sample for Building
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    Chapter 45 Effect of Metallic Fibers on the Print Quality and Strength of 3D Printed Concrete
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    Chapter 46 Facilitating Ductile Failure of 3D Printed Concrete Elements in Fire
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    Chapter 47 High-Performance Light-Weight Concrete for 3D Printing
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    Chapter 48 Mechanical Characterization of Layer-by-Layer Interface in Concrete Elements Obtained by Additive Manufacturing
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    Chapter 49 Dynamic Behaviour of Layered 3D Printed Concrete Elements
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    Chapter 50 Characterizing the Fissility of 3D Concrete Printed Elements via the Cohesive Zone Method
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    Chapter 51 3D Printing of Concrete: The Influence on Chloride Penetration
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    Chapter 52 Effect of Heat Curing and E6-Glass Fibre Reinforcement Addition on Powder-Based 3DP Cement Mortar
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    Chapter 53 Effect of Polypropylene Fibres on the Mechanical Properties of Extrudable Cementitious Material
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    Chapter 54 Improving the Bonding Adhesion of the Cold Joints of Normal and Lightweight 3D Printing Mortars
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    Chapter 55 Interlayer Effect on Fracture Behavior of 3D Printing Concrete
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    Chapter 56 Auxetic Behavior of Cementitious Cellular Composites Under Uniaxial Compression and Cyclic Loading
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    Chapter 57 Impact of Particle Size and Grading on Aggregate-Bed 3D Concrete Printing
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    Chapter 58 Drying of 3D Printed Mortar Filaments at Early Age Assessed by X-Ray Computed Tomography
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    Chapter 59 Printed Concrete as Formwork Material: A Preliminary Study
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    Chapter 60 Bond of Reinforcement Cable in 3D Printed Concrete
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    Chapter 61 Experimental Investigation of Topology-Optimized Deep Reinforced Concrete Beams with Reduced Concrete Volume
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    Chapter 62 Studying the Bond Properties of Vertical Integrated Short Reinforcement in the Shotcrete 3D Printing Process
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    Chapter 63 Aligned Interlayer Fibre Reinforcement and Post-tensioning as a Reinforcement Strategy for Digital Fabrication
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    Chapter 64 Bending and Pull-Out Tests on a Novel Screw Type Reinforcement for Extrusion-Based 3D Printed Concrete
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    Chapter 65 Load Carrying Capacity and Failure Mode of 3D Printing Mortar Wall Panel Under Axial Compression Loading
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    Chapter 66 Application of 3D Printed Segments Designed by Topology Optimization Analysis to a Practical Scale Prestressed Pedestrian Bridge
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    Chapter 67 Potential Approaches for Reinforcing Complex Concrete Structures with Integrated Flexible Formwork
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    Chapter 68 Penetration Reinforcing Method for 3D Concrete Printing
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    Chapter 69 Combining Multiple Loads in a Topology Optimization Framework for Digitally Fabricated Concrete Structures
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    Chapter 70 Potential for the Integration of Continuous Fiber-Based Reinforcements in Digital Concrete Production
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    Chapter 71 3D Concrete Printing on Site: A Novel Way of Building Houses?
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    Chapter 72 Design Optimization for 3D Concrete Printing: Improving Structural and Thermal Performances
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    Chapter 73 Flexural Behaviour of AR-Glass Textile Reinforced 3D Printed Concrete Beams
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    Chapter 74 3D Concrete Printing - Free Form Geometries with Improved Ductility and Strength
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    Chapter 75 Print-Cast Concrete: Additive Manufacturing for 3D Printing Mortar in Robotically Fabricated Green Sand Molds
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    Chapter 76 3D Printing of a Cement-Based Mortar in a Complex Fluid Suspension: Analytical Modeling and Experimental Tests
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    Chapter 77 Experimental Study on 3D Printing of Concrete with Overhangs
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    Chapter 78 Inspection Methods for 3D Concrete Printing
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    Chapter 79 DIGITAL CONSTRUCTION: 3D Printing for Performative Houses
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    Chapter 80 Extended Lattice Model to Simulate the Printing Process of 3D Printed Cementitious Materials
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    Chapter 81 Quality Assessment of Printable Strain Hardening Cementitious Composites Manufactured in Two Different Printing Facilities
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    Chapter 82 More Than Meets the Eye? Robotisation and Normativity in the Dutch Construction Industry
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    Chapter 83 Influence of Processing Parameters on the Layer Geometry in 3D Concrete Printing: Experiments and Modelling
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    Chapter 84 Automating Concrete Construction: Digital Design of Non-prismatic Reinforced Concrete Beams
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    Chapter 85 Free Deposition Printing for Space Truss Structures
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    Chapter 86 Rapid Composite Formwork: An Automated and Customizable Process for Freeform Concrete Through Computational Design and Robotic Fabrication
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    Chapter 87 Simultaneous Reinforcement of Concrete While 3D Printing
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    Chapter 88 Additive Manufacturing by Extrusion of Lightweight Concrete - Strand Geometry, Nozzle Design and Layer Layout
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    Chapter 89 Extrusion Nozzle Shaping for Improved 3DP of Engineered Cementitious Composites (ECC/SHCC)
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    Chapter 90 Buildability of Geopolymer Concrete for 3D Printing with Microwave Heating
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    Chapter 91 High-Resolution Additive Formwork for Building-Scale Concrete Panels
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    Chapter 92 Architectural Applications and Workflows for Additive Fabrication with Concrete
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    Chapter 93 ACDC: The Admixture Controlled Digital Casting and Its Application to Thin Folded Concrete Structures
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    Chapter 94 Robot-Controlled Fabrication of Sprayed Concrete Elements as a Cyber-Physical-System
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    Chapter 95 Reinforced Particle-Bed Printing by Combination of the Selective Paste Intrusion Method with Wire and Arc Additive Manufacturing – A First Feasibility Study
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    Chapter 96 Knitting Concrete
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    Chapter 97 Concrete 3D Printing: System Development, Process Planning and Experimental Results
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    Chapter 98 Shape Accuracy Evaluation of Geopolymer Specimens Made Using Particle-Bed 3D Printing
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    Chapter 99 Environmental Impacts of 6-Axes Robotic Arm for 3D Concrete Printing
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    Chapter 100 Preliminary Productivity Analysis of Conventional, Precast and 3D Printing Production Techniques for Concrete Columns with Simple Geometry
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    Chapter 101 Preliminary Study of the Implications of 3D Printing on the Construction Supply Chain
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    Chapter 102 Fast Complexity: Additive Manufacturing for Prefabricated Concrete Slabs
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    Chapter 103 Architectonic Explorations of the Possibilities of 3D Concrete Printing: The Historic Building Fragment as Inspiration for New Applications with 3D Concrete Printing in Architecture
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    Chapter 104 A Robust Mortar and Printing System
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    Chapter 105 Design and Fabrication of a Non-standard, Structural Concrete Column Using Eggshell: Ultra-Thin, 3D Printed Formwork
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    Chapter 106 Complex Architecture in Printed Concrete: The Case of the Innsbruck University 350 th Anniversary Pavilion COHESION
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    Chapter 107 Shotcrete 3D Printing Technology for the Fabrication of Slender Fully Reinforced Freeform Concrete Elements with High Surface Quality: A Real-Scale Demonstrator
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    Chapter 108 UHPFRC Pavilion of 3-Dimentional Pentagon Tiling
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    Chapter 109 Field Considerations for Deploying Additive Construction
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    Chapter 110 Sustainable Reinforced Concrete Beams: Mechanical Optimisation and 3D-Printed Formwork
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    Chapter 111 Thermal and Sound Insulation of Large-Scale 3D Extrusion Printing Wall Panel
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Title
Second RILEM International Conference on Concrete and Digital Fabrication
Published by
Springer International Publishing, August 2020
DOI 10.1007/978-3-030-49916-7
ISBNs
978-3-03-049915-0, 978-3-03-049916-7
Editors

Bos, Freek P., Lucas, Sandra S., Wolfs, Rob J.M., Salet, Theo A.M.

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