화학공학소재연구정보센터
학회 한국화학공학회
학술대회 2016년 가을 (10/19 ~ 10/21, 대전컨벤션센터)
권호 22권 2호, p.1418
발표분야 고분자
제목 Multiwall carbon nanotube and graphene fillers for improving acoustic damping properties of flexible polyurethane foams
초록 Sound absorption coefficient, air flow resistivity, and cell size of the polyurethane foam/multiwall carbon nanotube composites and PUF/graphene composites were investigated with the additive content. The results show that the sound absorption coefficient and air flow resistivity are closely related, and that the increase of flow resistivity improves the sound absorption coefficient of the composites. For the PUF/MWCNT (0.2 phr) composite, the values of sound absorption coefficient and air flow resistivity were the highest values among the investigated MWCNT content, respectively. This is maybe due to that the PUF/MWCNT (0.2 phr) composite showed the smallest cell size among the MWCNT compositions. The increase in sound absorption coefficient and flow resistivity of the PUF/MWCNT (0.2 phr) composites is because of increasing the tortuous paths by the small cell size. It is suggested that the MWCNT or graphene which can act as a nucleating agent caused decreasing the cell size and increasing the tortuous paths of the foams, and this small cell size consequently increased acoustic damping properties of the PUF/MWCNT or PUF/graphene composites.
저자 김도훈, 김우년
소속 고려대
키워드 고분자복합재료
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