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Novel high-strength,micro fibrillated cellulose-reinforced polypropylene composites using a cationic polymer as compatibilizer
Authors:Katsuhito Suzuki  Akihiro Sato  Hiroaki Okumura  Tadafumi Hashimoto  Antonio Norio Nakagaito  Hiroyuki Yano
Institution:1. Advanced Technology Laboratories, Oji Holdings Corporation, Shinonome, Koto-ku, Tokyo, 135-8558, Japan
2. New Business Development Division, SEIKO PMC Corporation, Midori-ku, Chiba, Chiba, 267-0056, Japan
4. Research Institute for Sustainable Humanosphere, Kyoto University, Gokasho, Uji, Kyoto, 611-0011, Japan
3. Research & Development Laboratory, Nippon Paper Industries Co., Ltd., Iida-machi, Iwakuni, Yamaguchi, 740-0003, Japan
5. Advanced Materials Division, Institute of Technology and Science, The University of Tokushima, Minamijosanjima-cho, Tokushima, 770-8506, Japan
Abstract:Novel high-strength, micro-fibrillated cellulose (MFC)-reinforced polypropylene (PP) composites were prepared using maleic anhydride polypropylene (MAPP) and a cationic polymer having a primary amino group (CPPA) as coupling agents. Un-dried kraft pulp was micro-fibrillated into nano- to submicron-wide fibrils by kneading with powdered PP and the coupling agents via a twin-screw extruder. The composites were prepared by injection molding. The MFC-reinforced PP composites containing both coupling agents MAPP and CPPA (combination system) showed extremely high mechanical strength compared with the MFC-reinforced composite containing only MAPP. The tensile strength of a 30 wt% MFC-PP composite containing the combination system was 27 % higher than that of the composite containing only MAPP, and more than 60 % higher than that of neat PP. In addition, the heat distortion temperature, under a 1.82-MPa flexural load, of the composite with the combination system was 17 °C higher than that of the composite with MAPP only, and 34 °C higher than that of neat PP. The anisotropy of the modulus and strength in the injection-molded MFC composites was lower than that of glass fiber-reinforced PP.
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