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Characterization of novel natural cellulosic fibers from purple bauhinia for potential reinforcement in polymer composites

机译:从紫色紫荆纤维中呈紫色紫荆纤维的特征在聚合物复合材料中的潜在增强

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The aim of the present work was to extract novel natural cellulosic fibers from the leaves of purple bauhinia trees. To the best of our knowledge, this is the first time that, the morphological, physical, chemical, structural, mechanical, and thermal properties of purple bauhinia fibers (PBFs) have been investigated and characterized. The lateral surface of PBFs exhibited impurities, and cellulosic and non-cellulosic constituents, while, the transverse section appeared porous. The high cellulose (60.54%) and low hemicellulose (9.17%) contents of PBFs indicated the potential to exploit the fibers as a reinforcement material in polymer composites. Analysis of the functional groups present in the PBFs confirmed the cellulose and hemicellulose contents. The crystallinity index of the PBFs was found to be 54.98%, and the crystallites were ordered in nature. The optimal mechanical properties were found to be a tensile strength of 373.3 MPa, a tensile modulus of 5.31 GPa and an elongation at break of 6.9%. The maximum degradation temperature of the PBFs was 341 degrees C, and the thermal activation energy of the fibers was determined using three different approaches. The results showed that, these fibers have the potential to be used as a reinforcement material for the fabrication of polymer composites with better mechanical and thermal properties.
机译:本研究的目的是从紫荆树叶中提取新的天然纤维素纤维。据我们所知,这是首次对紫紫荆纤维(PBF)的形态、物理、化学、结构、机械和热性能进行研究和表征。PBF的侧面含有杂质、纤维素和非纤维素成分,而横截面则呈现多孔。PBF的高纤维素含量(60.54%)和低半纤维素含量(9.17%)表明,PBF有潜力在聚合物复合材料中用作增强材料。对PBF中存在的官能团的分析证实了纤维素和半纤维素的含量。结果表明,PBFs的结晶度指数为54.98%,晶体结构有序。最佳力学性能为373.3MPa的拉伸强度、5.31GPa的拉伸模量和6.9%的断裂伸长率。PBFs的最高降解温度为341℃,使用三种不同的方法测定了纤维的热活化能。结果表明,这些纤维有潜力用作增强材料,以制备具有更好机械和热性能的聚合物复合材料。

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