Benarab Mohamed, Belaadi Ahmed, Bedjaoui Azzedine, Boumaaza Messaouda, Ghernaout Djamel
Department of Mechanical Engineering, Faculty of Technology, University 20 Août 1955-Skikda, El-Hadaiek Skikda, Algeria; Laboratory LGMM, University 20 August 1955-Skikda, Algeria.
Department of Mechanical Engineering, Faculty of Technology, University 20 Août 1955-Skikda, El-Hadaiek Skikda, Algeria.
Int J Biol Macromol. 2025 May;307(Pt 4):141940. doi: 10.1016/j.ijbiomac.2025.141940. Epub 2025 Mar 18.
Plant fibers (like cotton, jute, etc.) provide essential materials for human civilization. Here, we study natural fibers (NFs) derived from the Vicia faba (Vf) plant stems, which were examined in this research to assess their potential as a sustainable substitute in plant fiber-based industries. Their previously unexplored morphological, physicochemical, and thermomechanical characteristics are the main focus of the research. X-ray diffraction (XRD), scanning electron microscopy, thermogravimetric analysis (TGA), Fourier-transform infrared spectroscopy, and Weibull distribution (WD) analysis were among the methods used. According to XRD, Vf fibers (VfFs) feature crystallites that measure 2.98 nm and have a crystallinity index of 60 %. VfFs showed a failure strain of 1.47 ± 0.40 %, a Young's modulus of 4.15 ± 0.36 GPa, and an average tensile strength of 56.37 ± 13.33 MPa. The maximum likelihood method of statistical WD analysis was used to examine these properties. TGA revealed that VfFs had an activation energy of 89.40 kJ/mol and are thermally stable up to 352 °C. These findings support an environmentally friendly approach to material enhancement by highlighting the potential of VfFs for usage in lightweight biocomposites and their applications in the textile industry.
植物纤维(如棉花、黄麻等)为人类文明提供了重要材料。在此,我们研究了源自蚕豆(Vf)植物茎的天然纤维(NFs),本研究对其进行了检测,以评估它们在植物纤维基产业中作为可持续替代品的潜力。它们此前未被探索的形态、物理化学和热机械特性是本研究的主要重点。所使用的方法包括X射线衍射(XRD)、扫描电子显微镜、热重分析(TGA)、傅里叶变换红外光谱和威布尔分布(WD)分析。根据XRD结果,Vf纤维(VfFs)的微晶尺寸为2.98纳米,结晶度指数为60%。VfFs的断裂应变率为1.47±0.40%,杨氏模量为4.15±0.36吉帕,平均拉伸强度为56.37±13.33兆帕。采用统计WD分析的最大似然法对这些性能进行了研究。TGA显示VfFs的活化能为89.40千焦/摩尔,热稳定性高达352℃。这些发现通过突出VfFs在轻质生物复合材料中的使用潜力及其在纺织工业中的应用,支持了一种环保的材料增强方法。