Advanced Engineering Cementitious Composites and Concrete Sustainability

Concrete, one of the most often-used building materials today, is the cornerstone of modern buildings all over the world, being used for foundations, pavements, building walls, architectural structures, highways, bridges, overpasses, and so on. Because of its adaptability, concrete may be found in p...

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Other Authors: Burduhos Nergis, Dumitru Doru (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2023
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DOAB: description of the publication
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520 |a Concrete, one of the most often-used building materials today, is the cornerstone of modern buildings all over the world, being used for foundations, pavements, building walls, architectural structures, highways, bridges, overpasses, and so on. Because of its adaptability, concrete may be found in practically every construction, in some form or another. Yet, the diverse nature of its components, their combinations, and their doses result in a very wide range of concrete kinds with varying properties. As a result, concrete is a material that is always evolving and is popular even now, especially when it comes to circular economy.Other ways of concrete manufacturing are now being researched to lessen or remove the limits of this material, which are connected to its brittleness and poor environmental effects. As a result, the development of engineering cementitious composites has resulted in a significant reduction in flexibility issues, while the introduction of new additives and the optimization of the manufacturing process has resulted in a significant reduction in the negative effects of virgin raw material exploitation. In-depth research is still required to optimize and increase the sustainability of these advanced engineering cementitious composites or alternative concretes.In this Special Issue (SI), state-of-the-art research and review articles on the emerging material systems for AM are collected, with a focus on the process-structure-properties relationships. In total, eleven research papers and six reviews have been collected. 
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653 |a alkali-activated 
653 |a underwater placement 
653 |a class C fly ash 
653 |a seawater 
653 |a fresh water 
653 |a concrete 
653 |a compressive strength 
653 |a NDT 
653 |a ultrasonic pulse velocity 
653 |a modulus of elasticity 
653 |a phosphate-based geopolymers 
653 |a thermal behaviour 
653 |a thermogravimetry-differential thermal analysis 
653 |a phase analysis 
653 |a geopolymer 
653 |a pore 
653 |a tomography imaging 
653 |a sintering 
653 |a wheat straw ash 
653 |a global warming potential 
653 |a water absorption 
653 |a microstructure and pore structure 
653 |a waste material 
653 |a heavy duty application 
653 |a rice husk ash 
653 |a supplementary cementitious material 
653 |a waste management 
653 |a scientometric analysis 
653 |a eco-friendly construction material 
653 |a artificial lightweight aggregate 
653 |a aggregate crushing value 
653 |a aggregate impact value 
653 |a thermal properties 
653 |a pozzolanic materials 
653 |a green concrete 
653 |a biochar 
653 |a durability properties 
653 |a SWOT 
653 |a techno-economic analysis 
653 |a geopolymer concrete 
653 |a waste wood ash 
653 |a environmental impact mechanical properties 
653 |a durability 
653 |a eco-friendly concrete 
653 |a waste glass 
653 |a workability 
653 |a splitting tensile strength 
653 |a flexural strength 
653 |a kaolin 
653 |a ceramic 
653 |a zirconia 
653 |a reinforcement 
653 |a self-consolidating concrete 
653 |a SCC 
653 |a fly ash 
653 |a GGBS 
653 |a microsilica 
653 |a sustainable concrete 
653 |a high strength 
653 |a crushed 
653 |a powder 
653 |a hardened 
653 |a fresh 
653 |a slump 
653 |a compressive 
653 |a splitting 
653 |a flexural 
653 |a equation 
653 |a geopolymers 
653 |a polymer fiber reinforced geopolymers 
653 |a interfacial bonding 
653 |a desert sand 
653 |a engineered cementitious composites (ECCs) 
653 |a particle size 
653 |a uniaxial tension 
653 |a toughness 
653 |a rapid tooling 
653 |a geopolymer metal composite 
653 |a additive manufacturing 
653 |a injection moulding process 
653 |a n/a 
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