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A Review on Grafting of Biofibers for Biocomposites

机译:生物复合材料生物纤维接枝研究进展

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摘要

A recent increase in the use of biofibers as low-cost and renewable reinforcement for the polymer biocomposites has been seen globally. Biofibers are classified into: lignocellulosic fibers (i.e., cellulose, wood and natural fibers), nanocellulose (i.e., cellulose nanocrystals and cellulose nanofibrils), and bacterial cellulose, while polymer matrix materials can be petroleum based or bio-based. Green biocomposites can be produced using both biobased fibers and polymers. Incompatibility between the hydrophilic biofibers and hydrophobic polymer matrix can cause performance failure of resulting biocomposites. Diverse efforts have focused on the modification of biofibers in order to improve the performances of biocomposites. “Grafting” copolymerization strategy can render the advantages of biofiber and impart polymer properties onto it and the performance of biocomposites can be tuned through changing grafting parameters. This review presents a short overview of various “grafting” methods which can be directly or potentially employed to enhance the interaction between biofibers and a polymer matrix for biocomposites. Major grafting techniques, including ring opening polymerization, grafting via coupling agent and free radical induced grafting, have been discussed. Improved properties such as mechanical, thermal, and water resistance have provided grafted biocomposites with new opportunities for applications in specific industries.
机译:在全球范围内,最近已经越来越多地使用生物纤维作为聚合物生物复合材料的低成本和可再生补强材料。生物纤维可分为:木质纤维素纤维(即纤维素,木材和天然纤维),纳米纤维素(即纤维素纳米晶体和纤维素纳米原纤维)和细菌纤维素,而聚合物基质材料可以是石油基或生物基的。可以使用生物基纤维和聚合物生产绿色生物复合材料。亲水性生物纤维和疏水性聚合物基质之间的不相容性可能导致所得生物复合材料的性能下降。为了改善生物复合材料的性能,各种努力集中在生物纤维的改性上。 “接枝”共聚策略可以赋予生物纤维以优势,并赋予其聚合物特性,并且可以通过更改接枝参数来调整生物复合材料的性能。这篇综述简要介绍了各种“接枝”方法,这些方法可以直接或潜在地用于增强生物纤维与生物复合材料的聚合物基质之间的相互作用。已经讨论了主要的接枝技术,包括开环聚合,通过偶联剂接枝和自由基诱导的接枝。机械,耐热和耐水性等性能的提高为接枝生物复合材料提供了在特定行业中应用的新机会。

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