The Effects of Henna Fillers on the Properties of Polyurethane Foam Composites
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Published:2020-09
Issue:
Volume:1010
Page:520-525
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ISSN:1662-9752
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Container-title:Materials Science Forum
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language:
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Short-container-title:MSF
Author:
Adnan Sinar Arzuria1, Zainuddin Firuz1, Ahmad Zaidi Nur Hidayah1, Zulkeply Nur Afikah1, Adzali Nur Maizatul Shima1, Che Daud Zuraidawani1
Affiliation:
1. Universiti Malaysia Perlis (UniMAP)
Abstract
Polyurethane (PU) foam were produced from polyol (PolyGreen R3110) and 4,4- diphenylmethane diisocyanate (Maskiminate 80) with distilled water as a blowing agent. Natural fibers have received more attention from researchers due to their ability to increase the properties of the polymer composites. In this work, PU/Henna foam composites were prepared by used Henna fibers at different loading of 5, 10, 15 and 20 wt. %. The effect of different Henna loading on PU foam were investigated by density, compression test, morphology and water absorption. Core density of PU/Henna foam composites increased with addition Henna compared to control PU and showed highest core density of 85.10 kgm-3. Compressive strength decreased to 0.53 MPa after Henna addition at 5 % PU/Henna foam composites. Henna addition to 20 % PU/Henna foam composites were reduced the compressive strength to 0.97 MPa due to stiffness effect of Henna that contributed to embrittlement of the cell wall. The distorted cell wall and less uniform of cell structure were proved by SEM due to Henna addition as compared to control PU. Water absorption percentage of PU/Henna foam composites were increased with Henna addition as compared to control PU. It is because hydrophilic properties of Henna tendency to absorb moisture.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference11 articles.
1. Sivertsen, K. (2007). Polymer foams. 3.063 Polymer Physics, p.1–2. 2. Bledzki, A. K., Zhang, W., and Chate, A. (2001). Natural-fibre-reinforced polyurethane microfoams. Composites Science and Technology, 61(16), p.2405–2411. 3. Suleman, S. et al. (2014). Synthesis and Characterization of Flexible and Rigid Polyurethane Foam, 2(5), p.701–710. 4. Choe, K. H., Lee, D. S., Seo, W. J., and Kim, W. N. (2004). Properties of Rigid Polyurethane Foams with Blowing Agents and Catalysts. Polymer Journal 36(5), pp.368-373. 5. Sibel, D., Fatma, E., Ecem, A., Huseyin, A. K., and Ozgur, M. S. (2017). Natural Fiber Reinforced Polyurethane Rigid Foam, GU J Sci 30(2), pp.97-109.
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1 articles.
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