Study on FGNF/epoxy Composite Fabricated by Using Centrifugal Slurry-Pouring Method

S. Jamian, Siti Nur Azzwa Razali, Mohamad Rusydi Zainal Abidin
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Abstract

In this study, functionally graded natural fiber/epoxy (FGNF/epoxy) cylinders hybrid composite were fabricated using casting method. Coir husk and empty fruit bunch (EFB) were two type of natural fiber (NF) used in this study. The mechanical properties and microstructure of the composite was determined. Three different pouring height and compositions of NF were investigated i.e. 150, 250 and 300 mm and sample 1 (80% of epoxy, 10% of coir husk, 10% of EFB), sample 2 (80% of epoxy, 15% of coir husk, 5% of EFB) and sample 3 (80% of epoxy, 5% of coir husk 15% of EFB), respectively. As for comparison, epoxy cylinders contain 100% of epoxy was fabricated (sample 4). To characterize the FGNF/epoxy cylinders fabricated, the hardness, density and compression test were carried out. From the observation, it is found that the NF particles can be graded from upper to lower surface of the FGNF/epoxy cylinders by casting. Many NF particles concentrated at the middle and bottom part rather than at the top part of composite. The hardness and density test results show that the hardness and density value along the cylinder vary from the highest value at the lower surface to the lowest value at the upper surface due to the differences of NF composition along the cylinder. Due to difference in density of NF causes the natural fiber particles move to downward by gravity during casting. The compression test result show that sample 1 and sample 2 has recorded the highest and the lowest Young’s modulus, respectively. The Young’s modulus and yield strength of FGNF/epoxy is higher than pure epoxy cylinder composite. It appears that FGNF/epoxy with a gradient in NF composition is superior to the homogeneous composite.
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离心浇浆法制备FGNF/环氧复合材料的研究
本研究采用铸造法制备了功能梯度天然纤维/环氧树脂(FGNF/环氧树脂)圆柱体复合材料。本研究使用的两种天然纤维为椰壳纤维和空果束纤维。测定了复合材料的力学性能和显微组织。研究了三种不同的浇注高度和NF成分,即150、250和300 mm,样品1(80%环氧树脂,10%椰壳,10% EFB),样品2(80%环氧树脂,15%椰壳,5% EFB)和样品3(80%环氧树脂,5%椰壳,15% EFB)。作为对比,制备了含100%环氧树脂的环氧气瓶(样品4)。为了表征制备的FGNF/环氧气瓶,进行了硬度、密度和压缩试验。通过观察发现,通过铸造可以使NF颗粒从FGNF/环氧圆柱体的上表面向下表面梯度。许多纳滤颗粒集中在复合材料的中部和底部,而不是顶部。硬度和密度测试结果表明,由于NF成分在筒体上的差异,沿筒体的硬度和密度值由下表面的最大值到上表面的最小值不等。在铸造过程中,由于NF密度的差异,导致天然纤维颗粒在重力作用下向下移动。压缩试验结果表明,试样1和试样2的杨氏模量分别最高和最低。FGNF/环氧树脂的杨氏模量和屈服强度均高于纯环氧树脂圆柱复合材料。结果表明,具有梯度的FGNF/环氧树脂复合材料优于均相复合材料。
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