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首页> 外文期刊>Journal of Applied Polymer Science >Composites of poly(lactic acid) with flax fibers modified by interstitial polymerization
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Composites of poly(lactic acid) with flax fibers modified by interstitial polymerization

机译:间隙聚合改性亚麻纤维与聚乳酸的复合材料

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摘要

Natural fiber composites were designed and optimized to achieve good mechanical properties and resistance to growth of living organisms. Composite materials were prepared from poly(lactic acid) (PLA) with flax fibers, where the flax fibers had been subjected to interstitial polymerization to replace the water in the cellulose fibers. Before polymerization, the flax fibers were extracted with sodium hydroxide and acetone to remove lignin, pectin, and waxes from the cellulose. Differential scanning calorimetry was used to study the crystallization and melting of the composites as compared with pure PLA. The surface wetting of the fibers and morphology of the composites were studied by scanning electron microscopy and optical microscopy. Mechanical properties were studied using dynamic mechanical analysis. The influence of the interstitial polymerization on the dynamic storage modulus was found to be significant. The composites of polymerization treated flax, with acetone washed fibers, had higher storage moduli than the unwashed fiber composites, which suggested adhesion between flax fibers, and the matrix was improved by the treatments. The composites were subjected to moist environmental conditions to test for development of mold and fungi, and the acetone washed polymerization treated flax composites were resistant to these growths. (c) 2005 Wiley Periodicals, Inc. J Appl Polym Sci 99: 2305-2313, 2006
机译:对天然纤维复合材料进行了设计和优化,以实现良好的机械性能和对生物体生长的抵抗力。由具有亚麻纤维的聚乳酸(PLA)制备复合材料,其中亚麻纤维已经进行间隙聚合以代替纤维素纤维中的水。聚合前,用氢氧化钠和丙酮萃取亚麻纤维,以除去纤维素中的木质素,果胶和蜡。与纯PLA相比,差示扫描量热法用于研究复合材料的结晶和熔融。通过扫描电子显微镜和光学显微镜研究了纤维的表面润湿性和复合材料的形态。使用动态力学分析研究了力学性能。发现间隙聚合对动态储能模量的影响是显着的。经聚合处理的亚麻纤维复合物,用丙酮洗涤过的纤维比未经洗涤的纤维复合物具有更高的储能模量,这表明亚麻纤维之间的粘合性,并且通过处理改善了基质。将该复合材料置于潮湿的环境条件下测试霉菌和真菌的生长,并且丙酮洗涤的聚合处理的亚麻复合材料对这些生长具有抵抗力。 (c)2005 Wiley Periodicals,Inc. J Appl Polym Sci 99:2305-2313,2006年

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