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Mechanical characterization of HDPE reinforced with cellulose from rice husk biomass

机译:稻壳生物质纤维素加固HDPE的机械表征

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High-density polyethylene (HDPE) reinforced with cellulose from rice husk (RH) were prepared and studied. The RH biomass was submitted to acid extraction and bleaching process and then analyzed for its cellulose extraction efficiency by X-ray diffraction (XRD) and Fourier transformation infrared spectroscopy (FTIR). After that, the RH cellulose (RHC) was incorpored to the HDPE matrix by melt blending with different filler contents (5, 10 and 15 wt%), and then characterized in terms of mechanical properties and morphology. The RHC incorporation in the HDPE matrix resulted in an increase in elastic modulus regardless the filler content added; also, the impact resistance was maintained for RHC contents up to 10%. The morphological analysis of the composites showed that the cellulose was well dispersed in the matrix, which contributed to the improvement of the final rigidity of these materials, indicating the feasibility of incorporating this residue in the production of HDPE composites.
机译:制备和研究用米壳(RH)纤维素增强的高密度聚乙烯(HDPE)。将Rh生物量提取至酸提取和漂白过程,然后通过X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)分析其纤维素提取效率。之后,通过用不同的填料(5,10和15wt%)通过熔融混合掺入Rh纤维素(RHC),并用不同的填料(5,10和15wt%),然后在机械性能和形态方面表征。无论添加填料含量,HDPE矩阵中的RHC掺入导致弹性模量的增加;而且,将抗冲击性保持为RHC含量高达10%。复合材料的形态学分析表明,纤维素在基质中分散良好,这有助于提高这些材料的最终刚性,表明在生产HDPE复合材料的生产中将该残基掺入该残余物的可行性。

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