Go to:
Logótipo
Comuta visibilidade da coluna esquerda
Você está em: Start > Publications > View > Sound absorption properties of polyurethane foams derived from crude glycerol and liquefied coffee grounds polyol
Publication

Publications

Sound absorption properties of polyurethane foams derived from crude glycerol and liquefied coffee grounds polyol

Title
Sound absorption properties of polyurethane foams derived from crude glycerol and liquefied coffee grounds polyol
Type
Article in International Scientific Journal
Year
2017
Authors
Gama, N
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Silva, R
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Ferreira, A
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Barros Timmons, A
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Journal
Title: Polymer TestingImported from Authenticus Search for Journal Publications
Vol. 62
Pages: 13-22
ISSN: 0142-9418
Publisher: Elsevier
Other information
Authenticus ID: P-00N-28N
Abstract (EN): The main objective of this study was to evaluate the sound absorption properties of rigid polyurethane foams (PUFs) produced from crude glycerol (CG) and/or liquefied coffee grounds derived polyol (POL). The lignin content of POL proved to have a major influence on the structure and mechanical properties of the foams. Indeed, the POL content increased the cell size of the foams and their stiffness, which subsequently influenced the sound absorption coefficients. The POL derived foam has slightly higher sound absorption coefficient values at lower frequencies, while the CG foam has higher sound absorption coefficient values at higher frequencies. In turn, the foam prepared using a 50/50 mixture of polyols presents slightly higher sound absorption coefficient values in the medium frequencies range due to a balance between the cell structure and the mechanical properties. The results obtained seem to suggest that the mechanisms involved in sound wave absorption depend on the formulation used to prepare the foams. Additionally higher POL contents improved the thermal stability of PUFs as well as their mechanical properties. From this work the suitability of CG and/or POL derived PUFs as sound absorbing materials has been proven.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 10
Documents
We could not find any documents associated to the publication.
Related Publications

Of the same journal

Water based scintillator ink for printed X-ray radiation detectors (2018)
Article in International Scientific Journal
Oliveira, J; Martins, PM; Correia, V; Hilliou, L; Petrovykh, D; Lanceros Mendez, S
Thermal stability of P3HT and P3HT:PCBM blends in the molten state (2013)
Article in International Scientific Journal
Rodrigues, A; Castro, MCR; Farinha, ASF; Oliveira, M; Tome, JPC; Machado, AV; Raposo, MMM; L. Hilliou; Bernardo, G
Thermal expansion of epoxy and polyester polymer mortars - plain mortars and fibre-reinforced mortars (2003)
Article in International Scientific Journal
M. C. S. Ribeiro; J. M. L. Reis; António J. M. Ferreira; António Torres Marques
Tensile and impact behavior of polypropylene/low density polyethylene blends (2005)
Article in International Scientific Journal
Strapasson, R; Amico, SC; Manuel Fernando R Pereira; Sydenstricker, THD
Surface functionalization of polypropylene (PP) by chitosan immobilization to enhance human fibroblasts viability (2020)
Article in International Scientific Journal
Diana S. Morais; B. Ávila; C. Lopes; Miguel A. Rodrigues; Filipe Vaz; Vera A. Machado; Maria Helena Fernandes; Rui Miranda Guedes; Maria Ascensão Lopes

See all (34)

Recommend this page Top
Copyright 1996-2025 © Faculdade de Direito da Universidade do Porto  I Terms and Conditions  I Acessibility  I Index A-Z
Page created on: 2025-07-18 at 03:33:57 | Privacy Policy | Personal Data Protection Policy | Whistleblowing