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首页> 外文期刊>Composite interfaces >Poly (lactic acid)/Spartium junceum fibers biocomposites: effects of the fibers content and surface treatments on the microstructure and thermomechanical properties
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Poly (lactic acid)/Spartium junceum fibers biocomposites: effects of the fibers content and surface treatments on the microstructure and thermomechanical properties

机译:聚(乳酸)/脊髓浊纤维生物复合材料:纤维含量和表面处理对微观结构和热机械性能的影响

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摘要

The aim of this work was to study the effects of alkali and alkali-silane surface treatments on Spartium junceum (Sj) fibers characteristics. Then, untreated and surface treated fibers were incorporated into a poly(lactic acid) matrix and the properties of the composites were studied. To improve the adhesion at the interface between the PLA matrix and alkali-silane treated fibers, maleic anhydride-grafted poly (lactic acid) (PLA-g-MA) was added as a compatibilizer. FTIR and TGA analysis proved the efficiency of the alkali treatment in removing some non-cellulosic components, namely hemicelluloses and lignin. Also, XRD results showed that the applied chemical treatments contribute to the increase in the crystallinity index of the Sj fibers. The incorporation of Sj fibers was found to decrease notably the impact strength of PLA and to affect its thermal behavior by increasing the melting temperature of the composites. However, it has been observed that the treatments increased notably the composites impact properties. These results have been confirmed by scanning electron microscopy (SEM) observations of the composites fractured surfaces which revealed a more intimate contact between the Sj fibers and the PLA matrix after surface modification. Also, the PLA-g-MA acted positively on the adhesion in the interfacial region.
机译:这项工作的目的是研究碱和碱 - 硅烷表面处理对丘氏血管(SJ)纤维特性的影响。然后将未处理的和表面处理的纤维掺入聚(乳酸)基质中,并研究了复合材料的性质。为了改善PLA基质和碱性硅烷处理纤维之间的界面处的粘附,加入马来酸酐接枝的聚(乳酸)(PLA-G-MA)作为增容剂。 FTIR和TGA分析证明了碱处理在除去一些非纤维素成分中的效率,即半纤维素和木质素。此外,XRD结果表明,应用的化学处理有助于SJ纤维的结晶指数的增加。发现SJ纤维的掺入显着降低了PLA的冲击强度,并通过增加复合材料的熔化温度来影响其热行为。然而,已经观察到该处理显着增加复合材料的影响性质。这些结果通过扫描电子显微镜(SEM)的复合材料的观察结果来确认,所述复合材料的裂缝表面揭示了SJ纤维和PLA矩阵在表面改性之后的更紧密接触。而且,PLA-G-MA对界面区域中的粘附性呈正作用。

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