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Esparto wool as reinforcement in hybrid polyurethane composite foams

► Esparto wool as reinforcement in rigid polyurethane composite foams. ► Esparto and montmorillonite combination promoted finer cellular structures. ► Esparto foams showed lower compression properties due to higher open-cell contents. ► Esparto incorporation led to polyurethane foams with higher the...

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Published in:Industrial crops and products 2011-11, Vol.34 (3), p.1641-1648
Main Authors: Antunes, Marcelo, Cano, Álvaro, Haurie, Laia, Velasco, José Ignacio
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Language:English
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cited_by cdi_FETCH-LOGICAL-c351t-ae91866b4e1304667320914d08e67936dabd875a14f3ad886389e2afd5a9ed7e3
cites cdi_FETCH-LOGICAL-c351t-ae91866b4e1304667320914d08e67936dabd875a14f3ad886389e2afd5a9ed7e3
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creator Antunes, Marcelo
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description ► Esparto wool as reinforcement in rigid polyurethane composite foams. ► Esparto and montmorillonite combination promoted finer cellular structures. ► Esparto foams showed lower compression properties due to higher open-cell contents. ► Esparto incorporation led to polyurethane foams with higher thermal conductivities. In the present work polyurethane foams containing variable concentrations of nano-sized clay and esparto wool were prepared and studied, with the objective of developing new multi-scalar rigid foams. The addition of montmorillonite clay favoured foaming and the formation of finer and homogeneous cellular structures, resulting in foams with compressive elastic moduli and collapse stresses lower than that of the polyurethane foams. Nevertheless, a comparative analysis versus the foams’ relative density demonstrated that both properties follow one single trend for the two materials. The combination of esparto and montmorillonite further reduced the cell size of foams, at the same time promoting higher open cell contents, resulting in the foams with the lowest mechanical properties. Although no important differences in thermal conductivity were found with adding montmorillonite, its value decreasing with reducing the relative density, the incorporation of esparto led to higher thermal conductivities, independently of the relative density. The combination of esparto and montmorillonite resulted in foams with thermal conductivities halfway between the esparto-reinforced and the montmorillonite-reinforced foams, related to a higher open cell content.
doi_str_mv 10.1016/j.indcrop.2011.06.016
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ispartof Industrial crops and products, 2011-11, Vol.34 (3), p.1641-1648
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language eng
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source Elsevier
subjects Assaigs de materials
Enginyeria dels materials
Esparto
Foams
Materials
Materials plàstics i polímers
Montmorillonite
Poliuretans
Polyurethane
Polyurethanes
Propietats mecàniques
Testing
Àrees temàtiques de la UPC
title Esparto wool as reinforcement in hybrid polyurethane composite foams
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