优化叶柄纤维/聚酯增强生物复合材料的纤维含量、长度及其对总体性能的影响

IF 3.9 3区 化学 Q2 POLYMER SCIENCE
Siga Selvin Deva Kumar, Rajesh Resselian, Dev Anand Manoharan, Yesudhasan Thooyavan, Joseph Selvi Binoj
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引用次数: 0

摘要

尽管植物纤维具有更好的机械性能,但现在它们已受到足够的重视,在复合材料生产中被用作替代合成材料的另一种成分。各行各业都在努力保护大自然的生态平衡,以避免灾难性的自然灾害。本研究调查了在不饱和聚酯树脂(UPR)基质生物复合材料中增强的Licuala grandis叶柄纤维(LGLSFs)的热、机械、形态和吸湿能力。生物复合材料通过压缩成型技术制成,具有不同的重量比和尺寸。含有 30 重量比和 5 毫米长 LGLSF 的生物复合材料具有最佳的机械性能,其冲击(5.4 J/cm2)、硬度(70.4 HRRW)、弯曲(58 MPa)和拉伸(64.9 MPa)值相同。此外,将 LGLSF 增强层延长至 15 毫米后,生物复合材料试样的拉伸、弯曲、硬度和冲击特性分别提高了 9.09%、9.65%、14.8% 和 6.25%。通过分析傅立叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)和 X 射线衍射光谱(XRD),确定了生物复合材料的商业用途可行性。生物复合材料试样具有足够的疏水性、较低的密度和高达 236 ℃ 的耐热性,因此非常适合用于汽车和航空内饰,而这些都是通过 LGLSF 和 UPR 足够的重量比以及 LGLSF 的尺寸实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Optimization of fiber content, length and its effect on overall properties of Licuala grandis leaf stalk fiber/polyester reinforced bio‐composites

Optimization of fiber content, length and its effect on overall properties of Licuala grandis leaf stalk fiber/polyester reinforced bio‐composites
Despite their better mechanical qualities, plant fibers are now appreciated enough to be employed as an additional component in composite manufacture rather than synthetic materials. Industries are making efforts to preserve nature's ecological equilibrium in order to avoid catastrophic natural disasters. This study investigated thermal, mechanical, morphological, and moisture‐capture capabilities of Licuala grandis leaf stalk fibers (LGLSFs) reinforced in an unsaturated polyester resin (UPR) matrix biocomposite. Biocomposites were fabricated by compression molding technology, with different weight ratios and sizes. The biocomposite containing 30 wt.% and 5 mm length LGLSF had best mechanical properties, with equal impact (5.4 J/cm2), hardness (70.4 HRRW), flexural (58 MPa), and tensile (64.9 MPa) values. Furthermore, prolonging LGLSF reinforcement to 15 mm increased the bio‐composite specimen's tensile, flexural, hardness, and impact characteristics by 9.09%, 9.65%, 14.8%, and 6.25%, respectively. The Fourier transform infrared (FTIR), scanning electron microscopy (SEM), and X‐ray diffraction (XRD) spectra were analyzed to determine the bio‐composite's feasibility for commercial use. The bio‐composite specimen is ideal for usage in vehicle and aviation upholstery due to its sufficient hydrophobicity, lowered density, and heat resistance up to 236 °C, which are accomplished through a sufficient weight ratio of LGLSF and UPR, as well as LGLSF dimensions.
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来源期刊
Journal of Polymer Science
Journal of Polymer Science POLYMER SCIENCE-
CiteScore
6.30
自引率
5.90%
发文量
264
期刊介绍: Journal of Polymer Research provides a forum for the prompt publication of articles concerning the fundamental and applied research of polymers. Its great feature lies in the diversity of content which it encompasses, drawing together results from all aspects of polymer science and technology. As polymer research is rapidly growing around the globe, the aim of this journal is to establish itself as a significant information tool not only for the international polymer researchers in academia but also for those working in industry. The scope of the journal covers a wide range of the highly interdisciplinary field of polymer science and technology.
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