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首页> 外文期刊>Journal of Cleaner Production >Characterization of physical, mechanical, thermal and morphological properties of agro-waste betel nut (Areca catechu) husk fibre
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Characterization of physical, mechanical, thermal and morphological properties of agro-waste betel nut (Areca catechu) husk fibre

机译:农用槟榔(Areca catechu)壳纤维的物理,机械,热和形态学特性表征

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This paper investigates the physical, thermal, mechanical and morphological properties of betel nut husk fibre, in order to assess their suitability as lignocellulosic reinforcement for polymer composites. Betel nut husk (BNH) fibres of three different stages of maturity were evaluated to study the effect of fibre maturity on the thermal, physical and mechanical properties of BNH fibre. The thermal stability of BNH fibre was studied using the thermogravimetric analysis (TGA) technique. It was found that the thermal stability of the BNH fibre is influenced by the maturity of the BNH fibre due to the different amounts of cellulose, hemicellulose, lignin, and moisture in the BNH fibre at each stage of maturity (raw, ripe, matured). The BNH fibres showed decrease in fibre length and fibre diameter, and increase in density with the increase in fibre maturity. SEM micrographs of BNH fibre surface revealed the existence of rough and perforated surface of BNH fibre. Whereas, the cross-sectional of the BNH fibre showed that the raw BNH fibres were observed with bigger lumen, whilst ripe BNH fibre exhibits a slightly smaller and elongated lumen. In contrast, matured BNH fibre showed more compact structures instead of hollow-like lumen structures. In terms of mechanical properties, the BNH fibre tensile properties were found to be comparable to coir and kenaf fibre, which have been widely used as reinforcement in polymer composites.
机译:本文研究了槟榔果壳纤维的物理,热,机械和形态学特性,以评估其作为聚合物复合材料木质纤维素增强剂的适用性。对三个不同成熟阶段的槟榔壳(BNH)纤维进行了评估,以研究纤维成熟度对BNH纤维的热,物理和机械性能的影响。使用热重分析(TGA)技术研究了BNH纤维的热稳定性。发现BNH纤维的热稳定性受BNH纤维成熟度的影响,这归因于BNH纤维在每个成熟阶段(原始,成熟,成熟)中纤维素,半纤维素,木质素和水分的含量不同。随着纤维成熟度的增加,BNH纤维的纤维长度和直径减小,密度增加。 BNH纤维表面的SEM照片揭示了BNH纤维表面的粗糙和穿孔。而BNH纤维的横截面表明,观察到的原始BNH纤维的内腔较大,而成熟的BNH纤维的内腔稍小且细长。相反,成熟的BNH纤维显示出更紧密的结构,而不是中空状的内腔结构。在机械性能方面,发现BNH纤维的拉伸性能与椰壳纤维和洋麻纤维相当,后者已广泛用作聚合物复合材料的增强材料。

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