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预处理椰壳纤维和纤维屑增强多层复合材料的热机械性能。

Thermo-mechanical properties of pretreated coir fiber and fibrous chips reinforced multilayered composites.

机构信息

Simonyi Károly Faculty of Engineering, University of Sopron, Sopron, Hungary.

Simonyi Károly Faculty of Engineering, Paper Research Institute, University of Sopron, Sopron, Hungary.

出版信息

Sci Rep. 2021 Feb 11;11(1):3618. doi: 10.1038/s41598-021-83140-0.

Abstract

Coir is one of the most important natural fibers having significant potentiality in structural biocomposites production. The long coir fiber (LCF) and short fibrous chips (CFC) were extracted from the husk of coconut. The dimensions of the CFC were within 1.0-12.5 mm and the LCF were within 2.0 mm. All the fibers and fibrous chips were treated with 5% NaOH (alkali) before the biocomposite manufacturing. Different percentages (8%, 10%, and 12%) of melamine-urea-formaldehyde (MUF) were used to produce the tri-layered medium density composite panels with 12 mm thickness. The mechanical properties (tensile, flexural, and internal bonding strengths) of coir reinforced multilayered composites has been studied for all the produced biocomposites. The morphological, micro-structural, and bonding mechanisms were investigated by Scanning electron microscope and Fourier-transform infrared spectroscopy analysis. Thermal properties of the biocomposites were studied by thermal conductivity, thermogravimetric analysis, and derivative thermogravimetry characterization. The moisture contents of the final composite panels were also investigated in this study. The main objective of this work is to investigate the influences of MUF on treated coir fiber and fibrous chips reinforced tri-layered biocomposites. Beside, a novel sustainable product is developed through reinforcing the fibrous chip with coir fiber in terms of multilayered biocomposite panels.

摘要

椰壳纤维是最重要的天然纤维之一,在结构生物复合材料的生产中具有巨大的潜力。长椰壳纤维(LCF)和短纤维状切屑(CFC)是从椰子外壳中提取的。CFC 的尺寸在 1.0-12.5mm 之间,LCF 的尺寸在 2.0mm 之间。在制造生物复合材料之前,所有纤维和纤维状切屑均用 5%的氢氧化钠(碱)处理。使用不同百分比(8%、10%和 12%)的三聚氰胺-尿素-甲醛(MUF)生产厚度为 12mm 的三层中密度复合板。对所有生产的生物复合材料进行了椰壳纤维增强多层复合材料的力学性能(拉伸、弯曲和内结合强度)研究。通过扫描电子显微镜和傅里叶变换红外光谱分析研究了形态、微观结构和结合机制。通过热导率、热重分析和导数热重分析对生物复合材料的热性能进行了研究。本研究还研究了最终复合板的水分含量。这项工作的主要目的是研究 MUF 对处理过的椰壳纤维和纤维状切屑增强的三层生物复合材料的影响。此外,通过在多层生物复合材料板中用椰壳纤维增强纤维状切屑,开发了一种新型可持续产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a26f/7878794/4d449da24730/41598_2021_83140_Fig1_HTML.jpg

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