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首页> 外文期刊>Journal of Composite Materials >Effects of the hygrothermal environment on the mechanical properties of flax fibres
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Effects of the hygrothermal environment on the mechanical properties of flax fibres

机译:湿热环境对亚麻纤维力学性能的影响

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Since flax is the most promising plant for the reinforcement of polymer-based composites in structural applications, we have chosen to investigate its hygrothermal characteristics which can be useful for the understanding of the behaviour of other plant fibres. The flax fibres were exposed to different hygrothermal conditions: in an oven at various controlled temperatures (–40 to 140℃) and measured relative humidity, in a climate chamber at 50% relative humidity for define temperatures between 25℃ and 85℃, or different determined aging conditions. The correlation of these hygrothermal conditions to the evolution of the mechanical properties gives evidence of the prominent influence of water over temperature on the microstructural changes of flax fibres. The mechanical parameters drastically decrease in usually prescribed hygrothermal aging conditions for organic matrix composite materials, the strength being particularly sensitive to the presence of water. These evolutions were correlated to the fibre microstructure modifications induced by water absorption as revealed by electron microscopy analyses. These findings could be useful for understanding the behaviour of polymer matrix biocomposites in severe hygrothermal conditions.
机译:由于亚麻是在结构应用中增强聚合物基复合材料的最有希望的植物,因此我们选择研究其湿热特性,这对于理解其他植物纤维的行为很有用。亚麻纤维暴露在不同的湿热条件下:在烤箱中以各种受控温度(–40至140℃)并测量相对湿度,在气候室中以50%相对湿度定义25℃至85℃之间的温度,或不同确定的老化条件。这些湿热条件与机械性能演变之间的相关性提供了证据,证明水对亚麻纤维微观结构变化的影响很大。在通常规定的有机基质复合材料的湿热老化条件下,机械参数急剧降低,强度对水的存在特别敏感。这些演变与通过电子显微镜分析揭示的由吸水引起的纤维微结构改性相关。这些发现可能有助于理解聚合物基生物复合材料在严重湿热条件下的行为。

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