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首页> 外文期刊>Polymers for advanced technologies >Biocomposites based on ramie fibers and poly(L-lactic acid) (PLLA): morphology and properties
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Biocomposites based on ramie fibers and poly(L-lactic acid) (PLLA): morphology and properties

机译:基于麻纤维和聚(L-乳酸)(PLLA)的生物复合材料:形态和性能

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摘要

We herein report effects of morphology of PLLA and natural fiber on combination properties of biocomposites based on PLLA and ramie fibers. For this purpose, short ramie fiber (FIB), ramie fabric (FAB), PLLA film (FPLLA), and PLLA powder (PPLLA) were used to investigate the structure-property relationship of PLLA biocomposites with 30 wt% ramie fiber prepared by hot compression molding. It is revealed that mechanical properties of biocomposites are strongly dependent on the morphology of PLLA and FAB. DMA test shows that the improved storage modulus was due to the better dispersion of FIB. DSC and POM tests show that PLLA/FIB biocomposites have the highest spherulite growth rate. TGA test shows that char residue at high temperature is affected by the dispersion of PLLA and ramie fiber. SEM images exhibit the different interfacial adhesion character of FIB and FAB in the PLLA matrix after the ramie fiber treated with alkali and silane. PLLA/FAB biocomposites have not only better anti-dripping properties when burning but also better aging resistance in UV-irradiation hydrothermal aging, and which can be attributed to fiber bundle and laminated PLLA biocomposites structure.
机译:我们在此报告了PLLA和天然纤维的形态对基于PLLA和麻纤维的生物复合材料的组合性能的影响。为此,使用短麻纤维(FIB),麻织物(FAB),PLLA膜(FPLLA)和PLLA粉末(PPLLA)来研究热法制备的含30 wt%麻纤维的PLLA生物复合材料的结构-性能关系。压缩成型。结果表明,生物复合材料的机械性能强烈依赖于PLLA和FAB的形态。 DMA测试表明,改善的储能模量是由于FIB的分散性更好。 DSC和POM测试表明PLLA / FIB生物复合材料具有最高的球晶生长速率。 TGA测试表明,高温下的焦炭残留物受到PLLA和麻纤维分散的影响。 SEM图像显示了alkali麻纤维经碱和硅烷处理后,FILA和FAB在PLLA基质中的界面粘合特性不同。 PLLA / FAB生物复合材料不仅在燃烧时具有更好的抗滴落性能,而且在紫外线辐射水热老化中具有更好的抗老化性,这可归因于纤维束和层压PLLA生物复合材料的结构。

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