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Effect of oxygen plasma treatment on tensile strength of date palm fibers and their interfacial adhesion with epoxy matrix

机译:氧等离子处理对枣椰子纤维抗张强度及其与环氧基质界面黏附的影响

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In recent years, natural fibers have received much attention from various industrial applications. As these fibers are lightweight, nonabrasive, low cost, ecofriendly and biodegradable, they can be sometimes considered as alternatives to synthetic fibers in lightweight composite structures. In this work, date palm fibers (DPFs) were treated by oxygen plasma at various plasma discharge power and exposure time. The effects of plasma treatment on tensile strength of DPF and interfacial adhesion between DPF and epoxy were determined by single fiber tensile test and microbond test, respectively. Scanning electron microscopy was used to investigate the surface morphologies of DPFs before and after the plasma treatment. The functional groups on the surface were studied by attenuated total reflectance-Fourier transform infrared spectroscope (ATR-FTIR). Decrease in hemicellulose and lignin content of DPF was indicated in ATR-FTIR spectra of the treated sample with plasma treatment. The results show that plasma treatment cleans the fiber surface and increases the surface roughness by etching effect. Moreover, fiber surface modification significantly improves tensile properties of DPFs and interfacial shear stress (IFSS) of fiber/matrix. However, the effects of plasma power and exposure time on tensile properties and IFSS values of DPFs are not found significant. Moreover, Weibull statistics show that plasma treatment could not decrease the variability in fiber strength due to the nature of fibers.
机译:近年来,天然纤维受到各种工业应用的关注。由于这些纤维是轻质的,非研磨性的,低成本的,环境友好的和可生物降解的,因此有时可以将它们视为轻质复合结构中合成纤维的替代品。在这项工作中,在各种等离子体放电功率和暴露时间下,通过氧等离子体处理枣椰子纤维(DPF)。分别通过单纤维拉伸试验和微粘合试验确定了等离子体处理对DPF抗张强度和DPF与环氧树脂之间界面粘合的影响。扫描电子显微镜用于研究等离子体处理前后DPF的表面形态。通过衰减全反射-傅立叶变换红外光谱仪(ATR-FTIR)研究了表面上的官能团。在血浆处理后的样品的ATR-FTIR光谱中表明DPF的半纤维素和木质素含量降低。结果表明,等离子处理可以清洁纤维表面,并通过蚀刻作用增加表面粗糙度。此外,纤维表面改性可显着改善DPF的拉伸性能和纤维/基质的界面剪切应力(IFSS)。然而,等离子体功率和暴露时间对DPF的拉伸性能和IFSS值的影响没有发现。此外,威布尔(Weibull)统计数据表明,由于纤维的性质,等离子体处理无法降低纤维强度的可变性。

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