Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency

In recent years, the integration of Nanoclay (NC) into concrete has garnered significant global attention due to its potential added benefits and importance in the construction industry. However, the existing literature lacks sufficient experimental validation and empirical analysis pertaining to se...

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Main Authors: Hameed O.M., Usman F., Hayder G., Al-Ani Y.
Other Authors: 58652361900
Format: Article
Published: International Information and Engineering Technology Association 2024
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spelling my.uniten.dspace-340842024-10-14T11:17:54Z Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency Hameed O.M. Usman F. Hayder G. Al-Ani Y. 58652361900 55812540000 56239664100 55337314700 energy consumption mechanical characteristics mechanical performance Nanoclay sustainability thermal properties In recent years, the integration of Nanoclay (NC) into concrete has garnered significant global attention due to its potential added benefits and importance in the construction industry. However, the existing literature lacks sufficient experimental validation and empirical analysis pertaining to several unexplored key properties, such as thermal resistance, conductivity, diffusivity, and fire resistance. This study aims to address these knowledge gaps and contribute to the current body of literature by providing a comprehensive review of the advantageous effects of NC incorporation on the aforementioned properties of concrete. A thorough examination of available data was conducted, focusing on the mechanical and thermal characteristics of concrete after the inclusion of NC in the mix design. The findings of this critical review indicate that the incorporation of NC into concrete can reduce building energy consumption and enhance thermal insulation properties. Moreover, the integration of NC in concrete was found to improve various thermal features, including thermal stability, fire resistance, thermal performance, thermal behavior, resistance to thermal cracking, and resistance to thermal degradation. In addition, the inclusion of NC in concrete was observed to decrease thermal conductivity, thereby facilitating effective thermal insulation and resulting in lower energy consumption during heating and cooling periods. Simultaneously, the integration of NC was found to bolster the compressive, flexural, and tensile mechanical properties of concrete. Furthermore, the incorporation of NC into concrete materials has the potential to mitigate negative environmental impacts, such as pollution and poor air quality. This comprehensive review provides valuable insights into the benefits of NC integration in concrete, paving the way for further research and innovative applications in the construction industry. � 2023 Lavoisier. All rights reserved. Final 2024-10-14T03:17:54Z 2024-10-14T03:17:54Z 2023 Article 10.18280/acsm.470405 2-s2.0-85174346010 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85174346010&doi=10.18280%2facsm.470405&partnerID=40&md5=1e918a50058424bf210d707e569e0a3d https://irepository.uniten.edu.my/handle/123456789/34084 47 4 225 235 All Open Access Bronze Open Access International Information and Engineering Technology Association Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic energy consumption
mechanical characteristics
mechanical performance
Nanoclay
sustainability
thermal properties
spellingShingle energy consumption
mechanical characteristics
mechanical performance
Nanoclay
sustainability
thermal properties
Hameed O.M.
Usman F.
Hayder G.
Al-Ani Y.
Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency
description In recent years, the integration of Nanoclay (NC) into concrete has garnered significant global attention due to its potential added benefits and importance in the construction industry. However, the existing literature lacks sufficient experimental validation and empirical analysis pertaining to several unexplored key properties, such as thermal resistance, conductivity, diffusivity, and fire resistance. This study aims to address these knowledge gaps and contribute to the current body of literature by providing a comprehensive review of the advantageous effects of NC incorporation on the aforementioned properties of concrete. A thorough examination of available data was conducted, focusing on the mechanical and thermal characteristics of concrete after the inclusion of NC in the mix design. The findings of this critical review indicate that the incorporation of NC into concrete can reduce building energy consumption and enhance thermal insulation properties. Moreover, the integration of NC in concrete was found to improve various thermal features, including thermal stability, fire resistance, thermal performance, thermal behavior, resistance to thermal cracking, and resistance to thermal degradation. In addition, the inclusion of NC in concrete was observed to decrease thermal conductivity, thereby facilitating effective thermal insulation and resulting in lower energy consumption during heating and cooling periods. Simultaneously, the integration of NC was found to bolster the compressive, flexural, and tensile mechanical properties of concrete. Furthermore, the incorporation of NC into concrete materials has the potential to mitigate negative environmental impacts, such as pollution and poor air quality. This comprehensive review provides valuable insights into the benefits of NC integration in concrete, paving the way for further research and innovative applications in the construction industry. � 2023 Lavoisier. All rights reserved.
author2 58652361900
author_facet 58652361900
Hameed O.M.
Usman F.
Hayder G.
Al-Ani Y.
format Article
author Hameed O.M.
Usman F.
Hayder G.
Al-Ani Y.
author_sort Hameed O.M.
title Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency
title_short Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency
title_full Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency
title_fullStr Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency
title_full_unstemmed Investigation of Mechanical and Thermal Performance of Nanoclay Modified Concrete for Energy Efficiency
title_sort investigation of mechanical and thermal performance of nanoclay modified concrete for energy efficiency
publisher International Information and Engineering Technology Association
publishDate 2024
_version_ 1814060056660934656
score 13.214268