香蕉纤维增强聚合物复合材料力学性能评价研究进展

Q3 Environmental Science Acta Innovations Pub Date : 2022-03-14 DOI:10.32933/actainnovations.42.5
S. P. Gairola, Y. Tyagi, Nitin Gupta
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引用次数: 2

摘要

在快速发展的今天,复合材料的使用与环境污染、可再生和可生物降解资源密切相关。一位研究人员正在寻找环保材料。天然纤维和合成纤维有各种形状和尺寸。天然纤维包括黄麻、麦草、稻壳香蕉纤维、菠萝叶纤维、棉花、剑麻、椰子、燕麦和甘蔗渣。印度每年生产13.5吨香蕉纤维。茶叶袋、纸张和聚合物复合增强材料只是香蕉纤维的几个应用。介绍了用环氧树脂和其他多种天然纤维制备香蕉纤维的方法。通过将香蕉纤维与一些现有技术相结合,将减少浪费,提高能源效率,同时支持可持续性。这项工作涵盖了香蕉纤维,以及它们的用途、应用和机械质量,以及香蕉纤维如何改善机械性能。
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Mechanical properties evaluation of banana fibre reinforced polymer Composites: A review
In today's fast-developing world, the use of composite materials is closely related to environmental pollution, renewable and biodegradable resources. A researcher is looking for environmentally friendly materials. Natural and synthetic fibres come in a wide range of shapes and sizes. Natural fibres include jute, straw wheat, rice husk banana fibre, pineapple leaf fibre, cotton, Sisal, Coir, Oats, and Bagasse. Every year, 13.5 tonnes of banana fibre are produced in India. Teabags, paper, and polymer composite reinforcement are just a few of the applications for banana fibre. This article focuses on the manufacture of banana fibre with epoxy and a variety of other natural fibres. By combining banana fibre with some current technology, waste will be reduced, and energy efficiency will be increased, all while supporting sustainability. Banana fibres are covered in this work, along with their uses, applications, and mechanical qualities, as well as how banana fibre might improve mechanical properties.
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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