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菲克纤维及其加工副产物对基于环氧树脂的生物复合材料的形态、热和机械性能的影响。

Effect of fique fibers and its processing by-products on morphology, thermal and mechanical properties of epoxy based biocomposites.

机构信息

Research Group for Manufacturing Technologies GITEM, Universidad Autónoma de Occidente, Cali, Colombia.

出版信息

Sci Rep. 2022 Sep 7;12(1):15143. doi: 10.1038/s41598-022-18934-x.

Abstract

This work examines the morphology, mechanical and thermal properties of biocomposites based on epoxy resin-EP and fique (Furcraea andina), a native crop of South America. The EP-fique biocomposites were prepared using fique powder-FP an industrial waste generated during fique processing, nonwoven fique fiber mats-NWF and unidirectional fique fiber mats-UF oriented at 0° and 90°. The addition of fique into EP matrix restricts EP macromolecule chains movement and enhance the thermal stability of EP. SEM images showed that fique form used (powder or fiber) and mat arrangement can generate changes in the biocomposites morphology. Mechanical characterization show that fique powder and fique fibers oriented at 90° acts as fillers for the epoxy matrix while the fique fibers oriented at 0° reinforce EP matrix increasing the tensile and flexural modulus up to 5700 and 1100% respectively and tensile and flexural strength up to 277% and 820% in comparison with neat EP. The obtained results can increase the interest in researching and developing products from fique Powders and other natural fibers processing byproducts thus reducing the abundance of waste in soil and landfills and environmental concerns and suggest that the EP-fique biocomposites are promising to be used in the automotive sector.

摘要

这项工作研究了基于环氧树脂-EP 和菲奎尔纤维(Furcraea andina)的生物复合材料的形态、力学和热性能,菲奎尔纤维是南美洲的一种本地作物。EP-菲奎尔生物复合材料是通过菲奎尔纤维粉末-FP(菲奎尔加工过程中产生的工业废料)、无纺菲奎尔纤维垫-NWF 和 0°和 90°取向的单向菲奎尔纤维垫-UF 制备的。菲奎尔在 EP 基质中的添加限制了 EP 大分子链的运动,并提高了 EP 的热稳定性。SEM 图像显示,所使用的菲奎尔形态(粉末或纤维)和垫子排列可以改变生物复合材料的形态。力学性能表明,90°取向的菲奎尔粉末和纤维充当 EP 基质的填料,而 0°取向的菲奎尔纤维增强了 EP 基质,使拉伸和弯曲模量分别提高了 5700%和 1100%,拉伸和弯曲强度分别提高了 277%和 820%,与纯 EP 相比。研究结果可以提高人们对研究和开发菲奎尔粉末和其他天然纤维加工副产物产品的兴趣,从而减少土壤和垃圾填埋场中废物的丰度和环境问题,并表明 EP-菲奎尔生物复合材料有望在汽车行业中得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfb2/9452679/939eeeee7421/41598_2022_18934_Fig1_HTML.jpg

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