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首页> 外文期刊>Journal of thermal analysis and calorimetry >Effect of sisal fiber filler on thermal properties of bio-based polyurethane composites
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Effect of sisal fiber filler on thermal properties of bio-based polyurethane composites

机译:Sisal纤维填料对生物基聚氨酯复合材料热性能的影响

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AbstractThis work is mainly focused on study of thermal and thermomechanical properties of obtained bio-based polyurethane (coded as bio-PU) composites via using different types of bio-components (bio-glycol, modified soybean oil and sisal fiber) in the procedure. The chemical structure, morphology and mechanical properties were also investigated and described in this manuscript in order to know more perfect characterization of produced composites. The bio-based polyurethane matrix of composites was synthesized via prepolymer method. Bio-PU composites were produced by dispersing 5 and 15?mass% of sisal fibers into the polyurethane matrix during their synthesis. To investigate the thermal stability of sisal fibers and bio-PU composites, the thermogravimetric method (TG) was used. Thermomechanical tests were performed by means of dynamic mechanical analysis (DMA). Based on the results of thermomechanical analysis, it was found that the sisal fibers amount has the impact on storage and loss modulus. Chemical structure was confirmed by FTIR spectra. Mechanical results and scanning microscopy images of the composites showed good interfacial adhesion between sisal fibers and the bio-based PU matrix.
机译:<头球>抽象 <帕拉ID =“则Par1”>此工作主要集中在获得生物基聚氨酯(编码为生物PU)的复合材料的热性能和热机械性能的研究通过使用不同类型的生物组分的(生物乙二醇,改性大豆油和剑麻纤维)中的程序。化学结构,形态和力学性能进行了研究,并在此手稿,以了解生产复合材料的更完美的特性描述。复合材料的生物基聚氨酯基质经由预聚物法合成。生物PU复合材料可以通过在合成过程中分散5和15?剑麻纤维进入聚氨酯基质的质量%生产。为了研究剑麻和生物PU复合材料的热稳定性,使用热重量法(TG)。热机械试验通过动态力学分析(DMA)来进行。基于热分析的结果,发现,剑麻纤维量对存储和损耗模量的影响。化学结构通过FTIR光谱证实。机械结果和复合材料的扫描显微镜图像显示剑麻纤维和基于生物的PU基质之间的良好的界面粘合。

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