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Intro
Preface
Acknowledgments
Contents
RILEM Publications
3D Modelling and Printing
Use of Automated Control Machining Tools for Design, Construction, and Testing with Hydraulic Physical Models
1 Introduction
2 'Traditional' Constructive Methods
3 'Novel' Constructive Technologies
3.1 Framework
3.2 CNC Cutting-Subtracting Manufacturing
3.3 3D Modeling and Printing-Additive Manufacturing
3.4 Automation for Experimental Measurements and Control
4 Examples of Application of 'Novel' Constructive Technologies

4.1 3D Printing of a Complex-Shaped Flip Bucket
4.2 3D Printing of a Failed Dam with PLC Material
4.3 CNC Machining of a Mid-Bottom Spillway
4.4 Producing an Entire Physical Model Based on 'Novel' Technologies
5 Conclusions
References
3D Modelling and Printing for the Design of the Wooden Structure of the Church of San Martín de Plasencia, Spain
1 Introduction
1.1 The Wooden Structure of the San Martíns' Church
1.2 Modifications in the '60 s of the Twentieth Century and Fire in 2020
1.3 Objective
2 Use of the 3D Model for Checking the Structural Design

2.1 Digital Model of the Supporting Structure
2.2 Detection of Previous Structural Anomalies
2.3 Digital and Physical Models to Justify the Optimal Structural Form
2.4 Structural Basis
2.5 Dimensioning and Checking of Timber Transversal Sections
2.6 Structural-Legal Justification
3 Method Carried Out for 3D Modelling and 3D Printing
4 Conclusions
References
Biomaterials, Nanomaterials, and New Materials
Thermal Properties of Polymer Adhesive Modified with TiO2 Used for Structural Strengthening
1 Introduction
2 Materials and Methods

2.1 Epoxy Resin and Granite Powder
2.2 Thermal Analysis
3 Results and Discussion
4 Conclusions
References
Production and Characterization of Polymeric Capsules Containing Rejuvenators for Asphalt Mixtures Self-healing Purposes
1 Introduction
2 Experiments
2.1 Materials
2.2 Preparation of Microcapsules
2.3 Testing Methods
3 Results and Discussions
3.1 Characterization of Microcapsules
3.2 Self-healing of Bituminous Mastic
4 Conclusions
References
A Review of Laboratory Tests to Evaluate Agro-Industrial Wastes Properties as Building Materials

1 Introduction
2 Testing Agro-Industrial Wastes and Composites
2.1 Agro-Industrial Wastes
2.2 Composites
2.3 Bio-Susceptibility
3 Discussion
4 Conclusions
References
Geotechnical Characterization of Vegetal Biomass Ashes Based Materials for Liner Production
1 Introduction
2 Methodology
3 Results and Discussion
3.1 Geotechnical Characterization
3.2 Mechanical Performance
3.3 Hydraulic Conductivity
3.4 Chemical and Mineralogical Composition
4 Conclusion
References
An Input in the Asian Wasp Nest (AWN) Study
1 Introduction
2 Context

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