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Polypropylene Composites Reinforced with Biodegraded Sugarcane Bagasse Fibers: Static and Dynamic Mechanical Properties

机译:生物降解甘蔗渣纤维增强的聚丙烯复合材料:静态和动态力学性能

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The present work aimed to study sugarcane bagasse fibers pre-treated with fungi and using NaOH/ anthraquinone (AQ) in chemical pulping processes for applications in composite materials. Bagasse was decayed with 250 mg of Ceriporiopsis subvermispora inoculum in a 20 L bioreactor. After that, samples were submitted to similar conditions of decaying without inoculum charge. Decayed and undecayed fibers were treated with NaOH 12.5 wt%, 0.15 of AQ and a 12:1 (v/w) liquor:bagasse ratio at 160?°C. Then, all obtained fibers were characterized according to their chemical composition. Dried biotreated (decayed) and control (undecayed) fibers were mixed through an extruder process with polypropylene. Later, composite granulates were injected directly in mold with cavities for tensile, flexural and shear tests. Composite materials with 10 and 20 wt% fibers were submitted to static mechanical standard tests and DMA (Dynamic Mechanical Analysis) to evaluate the effect of biotreatment. Biotreatment, cook time (pulping), and fiber content contributed to improvements in the mechanical properties of the composites. The interface between fiber and matrix was increased with the biotreatment and pulping of fibers. Furthermore, DMA results also showed that fiber incorporation into PP improved the modulus, mainly for biotreated fibers/PP composites. The T g (tan ?′ data) from composites was dislocated at lower temperatures with respect to neat PP due to the influence of fibers on matrix.
机译:本工作旨在研究用真菌预处理的甘蔗渣纤维,并在化学制浆工艺中使用NaOH /蒽醌(AQ)进行复合材料的应用。在20升生物反应器中,用250 mg松柏头孢菌接种蔗渣使甘蔗渣腐烂。此后,样品在没有接种电荷的情况下也经历了相似的衰变条件。腐烂和未腐烂的纤维在160°C下用12.5 wt%的NaOH,0.15的AQ和12:1(v / w)的液:蔗渣比处理。然后,根据它们的化学组成对所有获得的纤维进行表征。经过生物处理(腐烂)和对照(未腐烂)的干燥纤维通过挤出机工艺与聚丙烯混合。随后,将复合颗粒直接注入具有腔体的模具中,以进行拉伸,弯曲和剪切测试。纤维含量为10%和20%的复合材料经过静态机械标准测试和DMA(动态力学分析)以评估生物处理的效果。生物处理,蒸煮时间(制浆)和纤维含量有助于改善复合材料的机械性能。随着纤维的生物处理和制浆,纤维与基质之间的界面增加。此外,DMA结果还表明,将纤维掺入PP可以改善模量,主要用于生物处理的纤维/ PP复合材料。由于纤维对基体的影响,相对于纯聚丙烯,复合材料的T g(tanδ'数据)在较低的温度下错位。

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