Effect of fiber stacking sequence and orientation on quasi- static indentation properties of sustainable hybrid carbon/ramie fiber epoxy composites

Q2 Materials Science
Shukur Abu Hassan , J.S. Binoj , Kheng Lim Goh , B. Brailson Mansingh , K.C. Varaprasad , Mohd Yazid Yahya , Faten Ermala Che Othman , Usaid Ahmed , Didik Nurhadiyanto , Mujiyono , A.P. Wulandari
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引用次数: 17

Abstract

Hybrid polymer composites reinforced with synthetic and natural fibers are gaining more interest in current composite technology in an effort to promote sustainability without sacrificing the performance of synthetic fiber reinforced polymer composites. The goal of this study is to see how the fiber stacking sequence of carbon and ramie fiber, as well as the orientation of ramie fiber, affects the quasi-static indentation behaviour of carbon/ramie fiber reinforced epoxy hybrid composites. The hybrid composite specimens were made using a hand layup approach followed by a hot pressing process. The quasi-static indentation properties of carbon/ramie fiber reinforcements in epoxy matrix were investigated using a hemispherical indenter at varying indenter displacement rates of 10, 20, and 30 ​mm/min for the stated stacking sequence and orientation. The indentation resistance qualities of carbon/ramie fiber reinforced epoxy hybrid composites were evaluated in terms of indentation force, hybrid composite specimen energy absorption capability, and hybrid composite specimen damage caused by hemispherical indenter penetration. The results reveal that a carbon/ramie fiber reinforced epoxy hybrid composite with 5 ramie fiber layers has better energy absorption capabilities, absorbing 114.926 ​J at a 20 ​mm/min indentation rate. Similarly, the indentation force in hybrid composites increases as the number of carbon/ramie fiber layers increases. These results indicate that carbon/ramie fiber reinforced epoxy hybrid composites have a great potential towards low velocity impact applications.

纤维堆积顺序和取向对可持续复合碳/苎麻环氧复合材料准静态压痕性能的影响
在不牺牲合成纤维增强聚合物复合材料性能的前提下,以合成纤维和天然纤维增强的混合聚合物复合材料在当前复合材料技术中越来越受到关注。本研究的目的是了解碳纤维和苎麻纤维的纤维堆叠顺序以及苎麻纤维的取向如何影响碳/苎麻纤维增强环氧杂化复合材料的准静态压痕行为。混合复合材料试样采用手铺法,然后热压过程。采用半球形压头,在不同的压头位移速率(10、20和30 mm/min)下,对环氧基碳纤维/苎麻增强材料的准静态压痕性能进行了研究。从压痕力、杂化复合材料试样能量吸收能力和半球形压痕刺入对杂化复合材料试样的损伤等方面评价了碳纤维/苎麻纤维增强环氧复合材料的抗压痕性能。结果表明:碳纤维/苎麻纤维增强环氧复合材料具有较好的吸能性能,当压痕速率为20 mm/min时,吸能达到114.926 J;同样,混杂复合材料的压痕力随着碳/苎麻纤维层数的增加而增加。这些结果表明,碳/苎麻纤维增强环氧复合材料具有很大的低速冲击应用潜力。
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来源期刊
Current Research in Green and Sustainable Chemistry
Current Research in Green and Sustainable Chemistry Materials Science-Materials Chemistry
CiteScore
11.20
自引率
0.00%
发文量
116
审稿时长
78 days
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