首页|植物纤维增强生物质基聚氨酯复合材料研究进展

植物纤维增强生物质基聚氨酯复合材料研究进展

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以生物质原料如木质纤维、植物油等为起始原料,制得生物质基多元醇,进而得到生物质基聚氨酯,这种聚氨酯与植物纤维复合所得的材料具有良好的力学性能.在植物纤维增强树脂基复合材料中,亲水性的植物纤维与疏水性的树脂基体相容性较差,对植物纤维进行表面改性可改善其相容性.碱处理可除去纤维表面的杂质、半纤维素和木质素,使表面粗糙度增加,有利于纤维与基体之间形成机械互锁,增强界面结合.纤维形态和纤维含量对其在基体中的分散性、界面性质以及复合材料的力学性能都有影响.长纤维容易缠绕,产生应力集中;粒状纤维尺寸较小时,界面结合较好;纤维含量过高时在基体中的分散和浸润性变差.植物纤维的亲水性促进了复合材料的吸水,更易于生物降解.
Progress in Plant Fiber-Reinforced Bio-Based Polyurethane Composites
A kind of bio-based polyurethane composite was prepared by adding plant fiber into bio-based polyurethane that was synthesized from diisocyanate and bio-polyol component derived from lignocellulose or vegetable oil.This bio-based composite presents good mechanical properties.In the composite,hydrophilic plant fiber shows poor compatibility with the hydrophobic polymer matrix which can be improved by the surface modification of plant fiber.Alkali treatment removes parts of hemicellulose,lignin,wax and other components from the fiber surface,resulting in better mechanical interlocking between the fiber and matrix and the interfacial adhesion is enhanced.Both the fiber morphology and fiber content have significant impacts on the dispersion of fiber in the matrix.Long fibers are liable to be tangled when mixed with other materials,leading to stress concentration in the composite.Granular fiber with smaller particle size favors interfacial combination.Too high fiber loading leads to its insufficient wetting by the matrix,which promotes the agglomeration of fibers.The hydrophilic plant fiber is responsible for the composite's moisture absorption and the biodegradation in humid conditions.

plant fiberpolyurethaneinterfacial adhesionsurface modificationmechanical properties

黄国红、谌凡更

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湖北工业大学绿色轻工材料湖北省重点实验室,湖北武汉430068

华南理工大学制浆造纸工程国家重点实验室,广东广州510641

植物纤维 聚氨酯 界面结合 表面改性 力学性能

绿色轻工材料湖北省重点实验室开放基金

省重点实验室科2013重点-2号

2015

高分子材料科学与工程
中国石油化工股份有限公司科技开发部 国家自然科学基金委员会化学科学部 高分子材料工程国家重点实验室 四川大学高分子研究所

高分子材料科学与工程

CSTPCDCSCD北大核心EI
影响因子:0.563
ISSN:1000-7555
年,卷(期):2015.31(6)
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