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Effects of multiwall carbon nanotube and perfluoroalkane additives on the sound absorption properties of flexible polyurethane foams

Authors
Ryu, Seung ChanKim, Do HoonKim, JiwanLee, Jung WookKim, Woo Nyon
Issue Date
May-2018
Publisher
WILEY
Citation
POLYMER COMPOSITES, v.39, pp.E1087 - E1098
Indexed
SCIE
SCOPUS
Journal Title
POLYMER COMPOSITES
Volume
39
Start Page
E1087
End Page
E1098
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/76075
DOI
10.1002/pc.24508
ISSN
0272-8397
Abstract
The sound absorption properties and airflow resistivity of polyurethane foams (PUFs) with multiwall carbon nanotube (MWCNT), perfluoroalkane (PFA), dimethylsiloxane (HMDS), and MWCNT/PFA hybrid additives were investigated with varying additive content. The results show the close relationship of the sound absorption coefficient and airflow resistivity, and increasing flow resistivity was found to improve the sound absorption coefficient of the PUF. For the PUF with MWCNT (at 0.50 phr)/PFA (at 1.25 phr) hybrid additives, the sound absorption coefficient and airflow resistivity were 0.80 (in the frequency range of 1,600-2,500 Hz) and 439,900 Ns/m(4), respectively, which were the highest values among the investigated additive species and additive content. The sound absorption coefficient of the PUF with MWCNT (at 0.50 phr)/PFA (at 1.25 phr) was increased by 82.0% compared to that of the PUF without additives, probably because the PUF has the smallest cell size among the additive species and compositions investigated in this study. The results of the sound absorption coefficient, airflow resistivity, and cell size of the PUF suggest that to decrease the cell size and to increase the tortuous paths of the foams, MWCNT/PFA hybrid additives appeared to be the most effective additives and showed synergistic effects in the formation of PUF, and its small cell size increased the sound absorption properties of PUF. POLYM. COMPOS., 39:E1087-E1098, 2018. (c) 2017 Society of Plastics Engineers
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