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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Study on characterization of Furcraea foetida new natural fiber as composite reinforcement for lightweight applications
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Study on characterization of Furcraea foetida new natural fiber as composite reinforcement for lightweight applications

机译:Furcraea Foetida新型天然纤维表征作为轻量级应用复合加固的研究

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The exploration of new natural fibers in the field of polymer composites can contribute to increase the invention of natural reinforcements and expand their use in possible applications. In the present work, the physico-chemical, thermal, tensile and morphological properties of Furcraea foetida (FF) fiber are presented for the first time. Chemical analysis results shows that FF has relatively higher cellulose (68.35%) with lower hemicelluloses (11.46%) and lignin (12.32%). Structural analysis of FF was conducted by Fourier transform infrared and C-13 (CP-MAS) nuclear magnetic resonance spectroscopy. X-ray diffraction (XRD) analysis evidenced that FF has crystallinity index of 52.6% with crystalline size of 28.36 nmThe surface morphology of FF was investigated by scanning electron microscopy (SEM), energy dispersive X-ray micro analyzer (EDX) and atomic force microscopy (AFM). The thermogravimetric analysis (TGA) reveals thermal constancy of the fiber upto 320.5 degrees C with the kinetic activation energy of 66.64 kJ/mol, which can be used as reinforcements in thermoplastic green composite whose working temperatures is below 300 degrees C. The FF results were compared with those of other natural fibers, and indicated as a suitable alternative source for composite manufacture.
机译:在聚合物复合材料领域的新天然纤维的探索可以有助于增加天然增强的发明,并扩大其在可能的应用中的使用。在本作的工作中,首次提出了Furcraea Foetida(FF)纤维的物理化学,热,拉伸和形态学性质。化学分析结果表明,FF具有较高的纤维素(68.35%),下半纤维素(11.46%)和木质素(12.32%)。 FF的结构分析由傅里叶变换红外和C-13(CP-MAS)核磁共振光谱进行。 X射线衍射(XRD)分析证明了FF的结晶性指数为52.6%,结晶尺寸为28.36nm,通过扫描电子显微镜(SEM),能量分散X射线微分析仪(EDX)和原子力来研究FF的表面形态。显微镜(AFM)。热重分析(TGA)揭示了纤维的热恒定,高达320.5摄氏度,动力激活能量为66.64 kJ / mol,可用作热塑性绿色复合材料中的增强剂,其工作温度低于300℃。FF结果是与其他天然纤维的纤维相比,并表示为合适的复合制造替代源。

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