Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review

The utilization of environmentally friendly materials derived from agricultural sources is becoming more prevalent in the construction industry. Many studies have already been conducted on various agro-resources, providing a variety of information on the characteristics of botanical aggregates and b...

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Main Authors: Rafik Bardouh, Evelyne Toussaint, Sofiane Amziane, Sandrine Marceau
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:Cleaner Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666790824000995
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author Rafik Bardouh
Evelyne Toussaint
Sofiane Amziane
Sandrine Marceau
author_facet Rafik Bardouh
Evelyne Toussaint
Sofiane Amziane
Sandrine Marceau
author_sort Rafik Bardouh
collection DOAJ
description The utilization of environmentally friendly materials derived from agricultural sources is becoming more prevalent in the construction industry. Many studies have already been conducted on various agro-resources, providing a variety of information on the characteristics of botanical aggregates and bio-based concrete. However, the prediction of the mechanical behavior of bio-based concrete remains complex owing to the various factors that influence its properties. Hence, it is crucial to collect a multitude of diverse information scattered throughout the literature regarding the mechanical response of bio-based materials under different loading conditions.This paper review aims to evaluate the mechanical behavior law and mechanical properties of bio-based concrete under various loadings (compression, flexion, and shear) in accordance with multi-plant-aggregates and different mineral binders. The literature has provided around 120 papers listing a compilation of 18 plant aggregates sourced from various origins that are utilized in plant-based concrete. On the other side, a few types of aggregates and binders were introduced in the literature regarding the mechanical behavior of bio-based concrete. Several factors can affect the mechanical properties of bio-based concrete at the composite scale such as the formulation, the casting process (energy), the curing conditions, the morphology of the aggregates, the density, the porosity, the mineral matrix properties, and particles/binder physicochemical interactions. Hence, this paper elaborates on a conceptual understanding that focuses on the mechanical response of bio-based concrete in relation to the various influencing factors up to the application of these materials in building sector.
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series Cleaner Engineering and Technology
spelling doaj-art-971dc22c96f84b63ab8a30933e2179e52024-12-19T11:01:10ZengElsevierCleaner Engineering and Technology2666-79082024-12-0123100819Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art reviewRafik Bardouh0Evelyne Toussaint1Sofiane Amziane2Sandrine Marceau3Clermont Auvergne INP, Institut Pascal, UMR 6602 - UCA/CNRS, 63178, Aubière, FranceClermont Auvergne INP, Institut Pascal, UMR 6602 - UCA/CNRS, 63178, Aubière, FranceClermont Auvergne INP, Institut Pascal, UMR 6602 - UCA/CNRS, 63178, Aubière, France; Corresponding author.Université Gustave Eiffel, MAST-CPDM, 77454, Marne-la-Vallée, CEDEX 2, FranceThe utilization of environmentally friendly materials derived from agricultural sources is becoming more prevalent in the construction industry. Many studies have already been conducted on various agro-resources, providing a variety of information on the characteristics of botanical aggregates and bio-based concrete. However, the prediction of the mechanical behavior of bio-based concrete remains complex owing to the various factors that influence its properties. Hence, it is crucial to collect a multitude of diverse information scattered throughout the literature regarding the mechanical response of bio-based materials under different loading conditions.This paper review aims to evaluate the mechanical behavior law and mechanical properties of bio-based concrete under various loadings (compression, flexion, and shear) in accordance with multi-plant-aggregates and different mineral binders. The literature has provided around 120 papers listing a compilation of 18 plant aggregates sourced from various origins that are utilized in plant-based concrete. On the other side, a few types of aggregates and binders were introduced in the literature regarding the mechanical behavior of bio-based concrete. Several factors can affect the mechanical properties of bio-based concrete at the composite scale such as the formulation, the casting process (energy), the curing conditions, the morphology of the aggregates, the density, the porosity, the mineral matrix properties, and particles/binder physicochemical interactions. Hence, this paper elaborates on a conceptual understanding that focuses on the mechanical response of bio-based concrete in relation to the various influencing factors up to the application of these materials in building sector.http://www.sciencedirect.com/science/article/pii/S2666790824000995Plant-based concreteMechanical propertiesCompressionFlexionShearPhysicochemical interactions
spellingShingle Rafik Bardouh
Evelyne Toussaint
Sofiane Amziane
Sandrine Marceau
Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review
Cleaner Engineering and Technology
Plant-based concrete
Mechanical properties
Compression
Flexion
Shear
Physicochemical interactions
title Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review
title_full Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review
title_fullStr Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review
title_full_unstemmed Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review
title_short Mechanical behavior of bio-based concrete under various loadings and factors affecting its mechanical properties at the composite scale: A state-of-the-art review
title_sort mechanical behavior of bio based concrete under various loadings and factors affecting its mechanical properties at the composite scale a state of the art review
topic Plant-based concrete
Mechanical properties
Compression
Flexion
Shear
Physicochemical interactions
url http://www.sciencedirect.com/science/article/pii/S2666790824000995
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