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首页> 外文期刊>Cellulose >Cellulose nanofibres as biomaterial for nano-reinforcement of poly[styrene-(ethylene-co-butylene)-styrene] triblock copolymer
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Cellulose nanofibres as biomaterial for nano-reinforcement of poly[styrene-(ethylene-co-butylene)-styrene] triblock copolymer

机译:纤维素纳米纤维作为聚纳米增强的生物材料(苯乙烯 - (乙烯 - 仲丁烯) - 苯乙烯]三嵌段共聚物

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摘要

Cellulose nanofibres (CNFs) obtained from waste mango wood scrap were used for the preparation of nanocomposites with SEBS (poly[styrene-(ethylene-co-butylene)-styrene]) and SEBS-g-MA (SEBS-maleic anhydride grafted). Results revealed the incompatibility of CNFs with unmodified SEBS due to the lack of interaction between polar and nonpolar groups. The polar maleic anhydride groups in SEBS-g-MA (mSEBS) demonstrated a strong interfacial interaction with CNFs showing a compatible association. Nanocomposite films with very minute loading of CNFs [0.005 phr (parts per hundred resin)] resulted in a substantial increment in Young's modulus (98% increment) and tensile strength (70% improvement) as compared to neat mSEBS film along with increment in elongation at break. The nanocomposite films showed the integration of CNFs as an interwoven thread-like structure in the polymer matrix at 0.001 phr. Polymer coated continuous foam/porous network microstructure was observed at 0.005 phr loading.
机译:从废芒果木质废料中获得的纤维素纳米纤维(CNF)用于用SEBS制备纳米复合材料(聚乙烯 - (乙烯 - (乙烯 - (乙烯 - 仲丁烯) - -Styrene])和SEBS-G-MA(SEBS-马来酸酐接枝)。 结果表明,由于极性和非极性组之间缺乏相互作用,CNFS与未修饰的SEB的不相容性。 SEBS-G-MA(MSEBS)中的极性马来酸酐基团表明了与显示相容性吻合的CNF的强界面相互作用。 纳米复合薄膜具有非常微小的CNFS [0.005phr(每百个树脂)]导致杨氏模量(增量98%)和拉伸强度(70%改善)相比,与伸长的伸长率较大,导致拉伸强度(70%改善) 在休息时。 纳米复合膜显示CNF在0.001phr的聚合物基质中作为交织螺纹状结构的整合。 聚合物涂覆的连续泡沫/多孔网络微观结构在0.005phrl荷载下观察到。

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