Effect of Composite Composition on Mechanical Properties of Banana Fiber Composites with Epoxy Matrix for Functional Materials

Yoga Ahdiat Fakhrudi, Kholis Nur Faidzin, R. M. Bisono
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Abstract

Technological developments and the influence of globalization have an impact on increasing the need for the amount of material for industry. The many disadvantages of metal materials due to their large mass, difficult manufacturing processes, corrosive properties, and high production costs have resulted in reduced use of metal materials in various products. Nowadays, there are many replacement materials with mechanical properties that can resemble metal materials such as composites. The role of composites is very important in the development of today's industrial world. This study wanted to determine the effect of the composite composition of rias banana fiber and teak sawdust with epoxy resin on the mechanical properties of the composite. The results showed that the comparison of the composition of the composite using rias banana fiber and teak sawdust with an epoxy matrix had an effect on the mechanical properties. Increasing the percentage of resin composition increases the value of the surface hardness of the composite. The highest level of Rockwell hardness with a value of 117 HRB in sample D and the lowest 109 HRB in sample A. While the highest max strength value was produced by sample C with a composition of teak sawdust: rias banana fiber: epoxy is 20% : 40% : 40 %. The conclusion of this research is the more resin composition will increase the composite hardness test value.
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复合成分对环氧基香蕉纤维功能材料力学性能的影响
技术发展和全球化的影响对工业材料需求量的增加产生了影响。由于金属材料质量大、制造工艺困难、具有腐蚀性、生产成本高等缺点,导致金属材料在各种产品中的使用减少。目前,有许多替代材料具有类似金属材料的机械性能,如复合材料。复合材料在当今工业世界的发展中起着非常重要的作用。本研究旨在研究香蕉纤维与柚木木屑与环氧树脂的复合成分对复合材料力学性能的影响。结果表明:香蕉纤维与柚木木屑环氧基复合材料的组成对比对复合材料的力学性能有影响。增加树脂成分的百分比增加复合材料的表面硬度值。样品D的洛氏硬度最高,为117 HRB,样品a的洛氏硬度最低,为109 HRB;样品C的最大强度值为柚木锯末:香蕉纤维:环氧树脂为20%:40%:40%。本研究的结论是树脂成分越多,复合硬度测试值越高。
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