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Compressive strength of flax fibre bundles within the stem and comparison with unidirectional flax/epoxy composites

机译:沥青纤维束在杆内的抗压强度及与单向亚麻/环氧复合材料的比较

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摘要

Flax (Linum usitatissimum L.) fibres are commonly used as reinforcement of composite materials. Nevertheless, literature shows that the compressive strength of flax-based composites is rather modest compared with materials reinforced by synthetic fibres. The present article investigates the compressive strength of flax fibre bundles both within the stems and in unidirectional (UD) composites. In this way, an optimised arrangement of fibre bundles inside the plant is assumed. Damage mechanisms are found to be similar in the stem and within flax-based UD materials, namely by buckling of fibre bundles, a typical failure mechanism of UD composites. Inside the stems, this phenomenon is highlighted by nanotomography, which underlines the key role of the woody core in the buckling resistance of the plant. For UD, failure can also be studied by scanning electron microscopy (SEM). The same ranges of average compressive strength values are estimated for flax fibre bundles, being 206 MPa within the stem and 242 MPa within UD composites. Finally, this study highlights that, if a flax stem is an optimised natural structure, the compressive strength of flax fibre bundles seems to be a limiting factor for structural applications of flax-based composite materials.
机译:亚麻(Linum UsitatissimumL1)纤维通常用作复合材料的增强。然而,文献表明,与合成纤维增强的材料相比,亚麻基复合材料的抗压强度相当适度。本文研究了血管纤维束在茎和单向(UD)复合材料中的抗压强度。以这种方式,假设植物内部的纤维束的优化布置。发现损伤机制在阀杆和基于亚麻的UD材料内相似,即通过弯曲纤维束,典型的UD复合材料的典型故障机理。在茎内,这种现象是通过纳米分析突出的,这强调了木质芯在植物屈曲阻力中的关键作用。对于UD,还可以通过扫描电子显微镜(SEM)来研究失败。估计亚麻纤维束的相同平均压缩强度值范围,在茎和242MPa内,在UD复合材料中是206MPa。最后,本研究突出显示,如果亚麻杆是优化的自然结构,则亚麻纤维束的抗压强度似乎是基于亚麻的复合材料的结构应用的限制因素。

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