Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels
Sandwich panels (also known as insulated panels) have been traditionally used for industrial buildings and warehouses, but nowadays are being increasingly a favorable choice in building construction, mainly in wall cladding and roofing systems. This paper presents the results of an experimental and...
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doaj-340f215165c446f29766d5243c9edbeb2020-11-25T03:55:19ZengElsevierJournal of Materials Research and Technology2238-78542020-09-019594879497Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panelsMichel Murillo A.0Bernardo F. Tutikian1Roberto Christ2Luis F.O. Silva3Makeli Maschen4Leandro Gómez P.5Marcos L.S. Oliveira6Universidad de la Costa, Barranquilla, Colombia; Corresponding author.Universidad de la Costa, Barranquilla, Colombia; Universidade do Vale do Rio dos Sinos, São Leopoldo, BrazilUniversidade do Vale do Rio dos Sinos, São Leopoldo, BrazilUniversidad de la Costa, Barranquilla, ColombiaFaculdade Meridional IMED, Rio Grande do Sul, BrazilUniversidad de la Costa, Barranquilla, ColombiaUniversidad de la Costa, Barranquilla, Colombia; Faculdade Meridional IMED, Rio Grande do Sul, BrazilSandwich panels (also known as insulated panels) have been traditionally used for industrial buildings and warehouses, but nowadays are being increasingly a favorable choice in building construction, mainly in wall cladding and roofing systems. This paper presents the results of an experimental and statistical comparative analysis of Fire Reaction development in sandwich panels consisting of steel sheeting and Polyisocyanurate (PIR) foam core. All these PIR core sandwich panels with joints kept the same dimensions (1000 mm × 1500 mm) + (500 mm × 1500 mm), but different thicknesses (30, 50, 100 and 150 mm). Five Single Burning Item (SBI) tests were carried out on individual PIR sandwich panels with vertical joints and their results were compared between themselves. It was possible to observe through an analysis of variance that there is an influence of the sample thickness in the individual results of the SBI test parameters; however, this variability has no significant influence on the Fire Reaction performance of the samples. Overall, the importance of these alternative sandwich panels is the increase in performance in the constructive processes and the offered comfort through its thermal insulation characteristics.http://www.sciencedirect.com/science/article/pii/S2238785420314897Analysis of varianceCore sandwich panelFire reactionPIR foamSBI test |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Michel Murillo A. Bernardo F. Tutikian Roberto Christ Luis F.O. Silva Makeli Maschen Leandro Gómez P. Marcos L.S. Oliveira |
spellingShingle |
Michel Murillo A. Bernardo F. Tutikian Roberto Christ Luis F.O. Silva Makeli Maschen Leandro Gómez P. Marcos L.S. Oliveira Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels Journal of Materials Research and Technology Analysis of variance Core sandwich panel Fire reaction PIR foam SBI test |
author_facet |
Michel Murillo A. Bernardo F. Tutikian Roberto Christ Luis F.O. Silva Makeli Maschen Leandro Gómez P. Marcos L.S. Oliveira |
author_sort |
Michel Murillo A. |
title |
Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels |
title_short |
Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels |
title_full |
Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels |
title_fullStr |
Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels |
title_full_unstemmed |
Analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels |
title_sort |
analysis of the influence of thickness on fire reaction performance in polyisocyanurate core sandwich panels |
publisher |
Elsevier |
series |
Journal of Materials Research and Technology |
issn |
2238-7854 |
publishDate |
2020-09-01 |
description |
Sandwich panels (also known as insulated panels) have been traditionally used for industrial buildings and warehouses, but nowadays are being increasingly a favorable choice in building construction, mainly in wall cladding and roofing systems. This paper presents the results of an experimental and statistical comparative analysis of Fire Reaction development in sandwich panels consisting of steel sheeting and Polyisocyanurate (PIR) foam core. All these PIR core sandwich panels with joints kept the same dimensions (1000 mm × 1500 mm) + (500 mm × 1500 mm), but different thicknesses (30, 50, 100 and 150 mm). Five Single Burning Item (SBI) tests were carried out on individual PIR sandwich panels with vertical joints and their results were compared between themselves. It was possible to observe through an analysis of variance that there is an influence of the sample thickness in the individual results of the SBI test parameters; however, this variability has no significant influence on the Fire Reaction performance of the samples. Overall, the importance of these alternative sandwich panels is the increase in performance in the constructive processes and the offered comfort through its thermal insulation characteristics. |
topic |
Analysis of variance Core sandwich panel Fire reaction PIR foam SBI test |
url |
http://www.sciencedirect.com/science/article/pii/S2238785420314897 |
work_keys_str_mv |
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