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Sound absorption and physical properties of carbonized fiberboards with three different densitiesopen access

Authors
Lee, M.Park, S.-B.Byeon, H.-S.
Issue Date
2014
Publisher
Korean Society of Wood Science Technology
Keywords
Carbonization; High density fiberboard; Low density fiberboard; Medium density fiberboard; Physical property; Sound absorption
Citation
Journal of the Korean Wood Science and Technology, v.42, no.5, pp 555 - 562
Pages
8
Indexed
SCOPUS
KCI
Journal Title
Journal of the Korean Wood Science and Technology
Volume
42
Number
5
Start Page
555
End Page
562
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/20169
DOI
10.5658/WOOD.2014.42.5.555
ISSN
1017-0715
Abstract
Characteristics of carbonized liberboard such as chemical materials absorption, electromagnetic shielding, and electrical and mechanical performance were determined in previous studies. The carbonized board therefore confirmed that having excellent abilities of these characteristics. In this study, the effect of density on physical properties and sound absorption properties of carbonized fiberboards at 800°C were investigated for the potential use of carbonized fiberboards as a replacement of conventional sound absorbing material. The thickness of fiberboards after carbonization was reduced 49.9%. 40.7%, and 43.3% in low density liberboard (LDF). medium density liberboard (MDF), and high density liberboard (HDF), respectively. Based on SEM images, porosity of carbonized liberboard increased by carbonization due to removing adhesives. Moreover, carbonization did not destroy structure of wood fiber based on SEM results. Carbonization process influenced contraction of liberboard. The sound absorption coefficient of carbonized low density liberboard (c-LDF) was higher than those of carbonized medium density liberboard (c-MDF) and carbonized high density liberboard (c-HDF). This result was similar with original fiberboards, which indicated sound absorbing ability was not significantly changed by carbonization compared to that of original fiberboards. Therefore, the sound absorbing coefficient may depend on source, texture, and density of fiberboard rather than carbonization.
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농업생명과학대학 > Department of Environmental Materials Science > Journal Articles

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