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Effect of graphene on the sound damping properties of flexible polyurethane foams

Authors
Kim, Ji MunKim, Do HoonKim, JiwanLee, Jung WookKim, Woo Nyon
Issue Date
Feb-2017
Publisher
SPRINGER
Keywords
polyurethane; foam; acoustic damping property; graphene; composite; morphology
Citation
MACROMOLECULAR RESEARCH, v.25, no.2, pp.190 - 196
Indexed
SCIE
SCOPUS
KCI
Journal Title
MACROMOLECULAR RESEARCH
Volume
25
Number
2
Start Page
190
End Page
196
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/84854
DOI
10.1007/s13233-017-5017-9
ISSN
1598-5032
Abstract
The sound absorption coefficient, airflow resistivity and cell size of polyurethane (PU) foam with graphene as a solid-type additive and tetramethylsilane (TEMS) as a liquid-type additive were investigated. The results show that the sound absorption coefficient and airflow resistivity are closely related, and that increase of the flow resistivity improves the sound absorption coefficient of the PU foam. For the PU foam/graphene (0.2 phr) composite, the values of the sound absorption coefficient and airflow resistivity were 0.52 (frequency range of 1600 to 2500 Hz) and 292,900 Ns/m(4), respectively, which were the highest values among the investigated additive species and additive content. The sound absorption coefficient of the PU foam/graphene (0.2 phr) composite increased by 18.2% compared with that of the PU foam without graphene. The results of the sound absorption coefficient and airflow resistivity of the PU foam suggest that graphene is an effective additive in the formation of the PU foam to decrease the cell size and increase the tortuous paths of the foams, and this small cell size consequently increases the acoustic damping properties of the PU foam.
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