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Compressive Elastic Modulus of Natural Fiber Based Binary Composites

机译:基于天然纤维的二元复合材料的压缩弹性模量

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The composites made of bamboo apus fiber - epoxy resin and charcoal tapioca starch with several compositions have been synthesized. Bamboo fiber powder as the rest of cutting process was refined and filtered by mesh 40 before used. Epoxy resin 1021A and hardener 1021B has been used as resin. The synthesis of epoxy resin-based composites was carried out via simple mixing method by adding adequate 70% ethanol solution before drying. The 100 mesh-filtered dry charcoal was mixed with tapioca mixture before it was pressed and dried to produce briquette composites. To study the compressive elastic modulus of the composites, pressure tests using Mark 10 Pressure Test Machine have been carried out. It was found that all the composites show maximum compressive elastic modulus at certain component compositions. The maximum elastic modulus for bamboo fiber-epoxy resin, charcoal - epoxy resin and charcoal-tapioca starch were observed at 52.9 %, 56.3 %, and 25.0 % of mass fraction of bamboo fiber, charcoal and tapioca starch, respectively.
机译:合成了由竹浮纤维 - 环氧树脂和具有多种组合物的木炭烟草淀粉制成的复合材料。竹纤维粉末作为切割过程的其余部分被精制并通过网状物40在使用之前通过网状物过滤。环氧树脂1021A和硬化剂1021B已被用作树脂。通过在干燥前添加足够的70%乙醇溶液,通过简单的混合方法进行环氧树脂基复合材料的合成。将100目过滤的干燥木炭与烟草混合物混合在压制并干燥以产生压块复合材料之前。为了研究复合材料的压缩弹性模量,已经进行了使用标记10压力试验机的压力测试。发现所有复合材料都显示出某些组分组合物的最大压缩弹性模量。竹纤维环氧树脂,木炭 - 环氧树脂和木炭 - 烟草淀粉的最大弹性模量分别观察到竹纤维,木炭和木薯淀粉的52.9%,56.3%和25.0%。

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