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Preparation and characterization of biodegradable composites based on Brazilian cassava starch, corn starch and green coconut fibers

机译:基于巴西木薯淀粉,玉米淀粉和绿色椰子纤维的可生物降解复合材料的制备和表征

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摘要

Increasing search for new materials with high premium on eco-friendliness, new trend is emerging in materials development such as composites, which are well established for a wide variety of applications. With growing interest and importance of renewable bioresources has led to more stress on the use of locally available materials. This paper presents preliminary results on the preparation and characterization of composites based on Brazilian coconut fibers and starches of cassava and corn. The raw materials were characterized for their morphology, chemical composition, and thermal properties and X-ray diffraction studies. Coir fibers were also tested for their tensile properties showing increasing strength and Young's modulus with decreasing diameter, while the % elongation remaining constant. Lignin content of coir was found to be 35%. Structure and properties of composites containing 0, 5 10, 15% fibers in both the matrices and prepared by compression molding would be compared. For the 2 types of starch, there was an increase in the tensile strength by the increasing proportion of fiber. The effect of moisture in the composite stress affects the strength and percentage elongation. The water absorption was higher in the composites made from cassava starch.
机译:随着人们越来越多地寻求对生态友好性要求更高的新材料,诸如复合材料之类的材料开发正在出现新的趋势,复合材料已经为各种应用奠定了良好的基础。随着人们对可再生生物资源的兴趣与重要性的增长,导致对使用当地可用材料的压力越来越大。本文介绍了基于巴西椰子纤维以及木薯和玉米淀粉的复合材料的制备和表征的初步结果。对原料进行了形貌,化学组成,热性能和X射线衍射研究。还测试了椰壳纤维的拉伸性能,显示出随着直径的减小强度和杨氏模量增加,而伸长率%保持恒定。发现椰壳的木质素含量为35%。将比较两种基质中都包含0%,5%,10%,15%纤维并通过压模制备的复合材料的结构和性能。对于两种类型的淀粉,通过增加纤维比例可以提高抗张强度。水分在复合应力中的作用会影响强度和延伸率。木薯淀粉制成的复合材料的吸水率更高。

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