Assessment of mechanical performance of sustainable structural mud insulated panels

Composite construction materials are extensively employed and have proven to be more effective than their individual components, such as steel and concrete. This is because composites combine the strengths of different materials, resulting in enhanced properties such as increased strength-to-weight...

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Main Authors: Khan A., Adil M., Dan D., Khan M.A., Ahmad M., Khan M.S., Sabri M.M.S.
Other Authors: 57688436300
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Published: Frontiers Media SA 2025
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spelling my.uniten.dspace-368842025-03-03T15:45:29Z Assessment of mechanical performance of sustainable structural mud insulated panels Khan A. Adil M. Dan D. Khan M.A. Ahmad M. Khan M.S. Sabri M.M.S. 57688436300 57190854049 7004963131 59414734000 58731610900 58512912900 57205074229 Bending moments Bending strength Bending tests Bond strength (materials) Compressive strength Galvanizing Honeycomb structures Sandwich structures Structural panels Tensile testing Absorption tests Composite construction Diagonal tension Insulated panels Mechanical Mechanical performance Mud house Property Sandwiched panel structural mud insulated panel Sustainable construction Compression testing Composite construction materials are extensively employed and have proven to be more effective than their individual components, such as steel and concrete. This is because composites combine the strengths of different materials, resulting in enhanced properties such as increased strength-to-weight ratios, better durability, and improved thermal efficiency. However, despite the strong structural properties and energy-saving benefits of reinforced concrete sandwich panels, their use is restricted in many rural regions of developing nations like Pakistan, largely because of the economic limitations faced by the communities. Therefore, this study introduces cost-effective structural mud insulated panels (SMIPs) that utilize mud wythes and evaluates their mechanical performance. These panels consist of a lightweight Expanded Polystyrene (EPS) foam core, sandwiched between two galvanized steel-reinforced mud layers. The study includes flexural, compression, diagonal tension, and water absorption tests. Flexural tests revealed that the panels have substantial load-bearing capacity under bending forces. Whereas, Compression tests showed that the panels possess adequate strength and stiffness to support moderate structural loads. Additionally, Diagonal tension tests confirmed the panels? ability to resist significant in-plane loads. Water absorption tests also indicated that the panels demonstrated adequate moisture resistance, staying within the acceptable limit of 15%. These findings highlight the mechanical and hydric properties of SMIPs, underscoring their potential in sustainable construction, especially in economically constrained regions. Copyright ? 2024 Khan, Adil, Dan, Khan, Ahmad, Khan and Sabri. Final 2025-03-03T07:45:29Z 2025-03-03T07:45:29Z 2024 Article 10.3389/fmats.2024.1495750 2-s2.0-85209409155 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85209409155&doi=10.3389%2ffmats.2024.1495750&partnerID=40&md5=452103a9a3183797a6a8175128a69eaa https://irepository.uniten.edu.my/handle/123456789/36884 11 1495750 All Open Access; Gold Open Access Frontiers Media SA 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 Bending moments
Bending strength
Bending tests
Bond strength (materials)
Compressive strength
Galvanizing
Honeycomb structures
Sandwich structures
Structural panels
Tensile testing
Absorption tests
Composite construction
Diagonal tension
Insulated panels
Mechanical
Mechanical performance
Mud house
Property
Sandwiched panel structural mud insulated panel
Sustainable construction
Compression testing
spellingShingle Bending moments
Bending strength
Bending tests
Bond strength (materials)
Compressive strength
Galvanizing
Honeycomb structures
Sandwich structures
Structural panels
Tensile testing
Absorption tests
Composite construction
Diagonal tension
Insulated panels
Mechanical
Mechanical performance
Mud house
Property
Sandwiched panel structural mud insulated panel
Sustainable construction
Compression testing
Khan A.
Adil M.
Dan D.
Khan M.A.
Ahmad M.
Khan M.S.
Sabri M.M.S.
Assessment of mechanical performance of sustainable structural mud insulated panels
description Composite construction materials are extensively employed and have proven to be more effective than their individual components, such as steel and concrete. This is because composites combine the strengths of different materials, resulting in enhanced properties such as increased strength-to-weight ratios, better durability, and improved thermal efficiency. However, despite the strong structural properties and energy-saving benefits of reinforced concrete sandwich panels, their use is restricted in many rural regions of developing nations like Pakistan, largely because of the economic limitations faced by the communities. Therefore, this study introduces cost-effective structural mud insulated panels (SMIPs) that utilize mud wythes and evaluates their mechanical performance. These panels consist of a lightweight Expanded Polystyrene (EPS) foam core, sandwiched between two galvanized steel-reinforced mud layers. The study includes flexural, compression, diagonal tension, and water absorption tests. Flexural tests revealed that the panels have substantial load-bearing capacity under bending forces. Whereas, Compression tests showed that the panels possess adequate strength and stiffness to support moderate structural loads. Additionally, Diagonal tension tests confirmed the panels? ability to resist significant in-plane loads. Water absorption tests also indicated that the panels demonstrated adequate moisture resistance, staying within the acceptable limit of 15%. These findings highlight the mechanical and hydric properties of SMIPs, underscoring their potential in sustainable construction, especially in economically constrained regions. Copyright ? 2024 Khan, Adil, Dan, Khan, Ahmad, Khan and Sabri.
author2 57688436300
author_facet 57688436300
Khan A.
Adil M.
Dan D.
Khan M.A.
Ahmad M.
Khan M.S.
Sabri M.M.S.
format Article
author Khan A.
Adil M.
Dan D.
Khan M.A.
Ahmad M.
Khan M.S.
Sabri M.M.S.
author_sort Khan A.
title Assessment of mechanical performance of sustainable structural mud insulated panels
title_short Assessment of mechanical performance of sustainable structural mud insulated panels
title_full Assessment of mechanical performance of sustainable structural mud insulated panels
title_fullStr Assessment of mechanical performance of sustainable structural mud insulated panels
title_full_unstemmed Assessment of mechanical performance of sustainable structural mud insulated panels
title_sort assessment of mechanical performance of sustainable structural mud insulated panels
publisher Frontiers Media SA
publishDate 2025
_version_ 1825816196924047360
score 13.244413