Elevated temperature thermal properties of fire protective boards and insulation materials for light steel frame systems

& (2021) Elevated temperature thermal properties of fire protective boards and insulation materials for light steel frame systems. Journal of Building Engineering, 43, Article number: 102571.

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Description

New materials are increasingly used in the construction of cold-formed Light gauge Steel Frame (LSF) systems to achieve lightweight, more durable and fire resistant building systems. However, these materials are being used without good knowledge and understanding of their elevated temperature thermal properties. Hence a thorough investigation of the elevated temperature thermal properties was conducted for a range of building materials used in the LSF systems of Australia, New Zealand and Europe. Thermal property tests were conducted on gypsum plasterboards, calcium silicate boards, magnesium oxide boards, perlite boards, insulation materials and structural plywoods, totalling 21 potential LSF components. The thermal properties of specific heat at constant pressure, relative density, thermal conductivity and thermal diffusivity were determined using differential scanning calorimetry, thermogravimetric analysis and laser flash analysis and the guidelines of ASTM standard test methods. This paper presents the results of the elevated temperature thermal properties of a range of building materials used in the LSF systems. This advanced knowledge and understanding of the elevated temperature thermal properties will allow accurate predictions of the fire resistance of LSF systems using appropriate numerical and fire design methods and facilitate the development of improved LSF systems with enhanced fire resistance levels. Several materials such as gypsum plasterboards, calcium silicate boards, perlite board and rockwool fibre insulation have been identified to be suitable for use in LSF systems because of their high specific heat, low thermal conductivity, reduced mass loss and low bulk density.

Impact and interest:

20 citations in Scopus
11 citations in Web of Science®
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ID Code: 209748
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Mahendran, Mahenorcid.org/0000-0001-7306-8821
Measurements or Duration: 20 pages
Additional URLs:
Keywords: LSF systems, Thermal properties, Specific heat, Relative density, Thermal conductivity
DOI: 10.1016/j.jobe.2021.102571
ISSN: 2352-7102
Pure ID: 81719308
Divisions: Current > Research Centres > Centre for Materials Science
Current > QUT Faculties and Divisions > Faculty of Science
Current > QUT Faculties and Divisions > Faculty of Engineering
Current > Schools > School of Civil & Environmental Engineering
Copyright Owner: 2021 Elsevier Ltd.
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Deposited On: 19 Apr 2021 07:20
Last Modified: 18 May 2024 21:20