红麻负载对红麻/ABS复合材料结构和热性能的影响

Q3 Engineering
S. Mashelmie, M. Rabiatul Manisah, N. Bahiyah Baba, A. Mohd
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引用次数: 1

摘要

最近,许多制造商对在结构应用中使用纤维增强聚合物复合材料(frp)产生了兴趣。合成纤维,如碳纤维和玻璃纤维,已经在国际上商业化了几十年,但是它们造成了环境问题,因为合成纤维是不可生物降解的,一旦它们达到目的就很难回收,可能会污染环境。因此,像红麻这样的天然纤维复合材料由于其优越的物理和机械性能而成为合成纤维的可能替代品。红麻似乎是替代合成纤维的最佳候选材料,以实现环保的目标,同时还具有等比强度、低密度和可再生资源等优异性能。将红麻纤维经KOH处理后,加入到ABS基体中,采用双辊磨制得不同负荷(10%、15%、20%和25%)的复合材料。评价了纤维对复合材料性能的影响。对制备的材料进行了SEM、MFI、TGA和DSC分析。处理后的红麻纤维掺入量对红麻/ABS复合材料的性能有影响。在MFI值、初始降解温度和玻璃化转变温度分别为0.8208 g/10 min、322.63℃和130℃时,添加量为10 wt.%的红麻为最佳负载。与纯ABS相比,添加处理过的纤维可以降低复合材料的MFI,提高复合材料的热稳定性和Tg的典型效应。结果表明,需要继续研究以进一步分析更高的红麻负载,并进一步阐明复合材料的性能,以提高对红麻/ABS复合材料的认识。研究结果为人工合成纤维的替代提供了解决方案,为红麻纤维复合材料工业的可持续发展做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of kenaf loading on kenaf/ABS composites structure and thermal properties
Many manufacturers have recently become interested in using fiber-reinforced polymer composites (FRPs) in structural applications. Synthetic fibres, such as carbon and glass fibres, have been commercialised internationally for decades, but they cause environmental issues because synthetic fibres are non-biodegradable and difficult to recycle once they have served their purpose, potentially polluting the environment. Thus, natural fibre composites like kenaf is a possible replacement for synthetic fibre due to their superior physical and mechanical properties. Kenaf appears to be the best candidate for replacing synthetic fibres in order to accomplish the goal of environmental preservation while also displaying excellent properties such as equivalent specific strength, low density, and renewable resources. The kenaf fiber was treated in KOH and added to ABS matrix to produce new composites at different loading (10, 15, 20 and 25 wt.%) by using Two Roll Mill machine. The influence of the fiber on the composites properties was evaluated. The produced material was subjected to SEM, MFI, TGA and DSC analysis. The incorporation of the treated kenaf fiber has an influence on the properties of kenaf/ABS composites. The addition of 10 wt.% kenaf was found to be the best loading with MFI value, initial degradation temperature and glass transition temperature at 0.8208 g/10 min, 322.63°C and 130°C respectively. The fiber was well dispersed in the matrix and shown good adhesion to the ABS. The addition of treated fiber contribute to a reduction in the MFI, improved the thermal stability of the composites and typical effects of Tg of the composite compare to pure ABS. The results suggest the need to continue the study in order to further analyse higher kenaf loading and shed more light on the properties of the composites to improve understanding of kenaf/ABS composites. Obtained results are a solution to alternative of synthetic fibers, which may contribute to the sustainable development of composites materials industry through the utilization of kenaf fiber with ABS matrix.
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来源期刊
Journal of Achievements in Materials and Manufacturing Engineering
Journal of Achievements in Materials and Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.10
自引率
0.00%
发文量
15
期刊介绍: The Journal of Achievements in Materials and Manufacturing Engineering has been published by the Association for Computational Materials Science and Surface Engineering in collaboration with the World Academy of Materials and Manufacturing Engineering WAMME and the Section Metallic Materials of the Committee of Materials Science of the Polish Academy of Sciences as a monthly. It has 12 points which was received during the evaluation by the Ministry of Science and Higher Education journals and ICV 2017:100 on the ICI Journals Master list announced by the Index Copernicus. It is a continuation of "Proceedings on Achievements in Mechanical and Materials Engineering" published in 1992-2005. Scope: Materials[...] Properties[...] Methodology of Research[...] Analysis and Modelling[...] Manufacturing and Processingv Biomedical and Dental Engineering and Materials[...] Cleaner Production[...] Industrial Mangement and Organisation [...] Education and Research Trends[...]
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