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首页> 外文期刊>Review of Agricultural Entomology >Effect of Moisture in Flax Fibres on the Quality of their Composites
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Effect of Moisture in Flax Fibres on the Quality of their Composites

机译:亚麻纤维中的水分对其复合材料质量的影响

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摘要

Moisture present in plant fibres is considered to be detrimental to the performance of composites. In general, a drying stage is performed on the plant fibre fabrics before manufacturing the composites since it is seemed to allow better output. This work provides an analysis of the effect of moisture in flax fibres on the overall quality of epoxy/flax biocomposites. Flax fibre fabrics were conditioned at different relative humidity (RH) environments and composites were manufactured by vacuum infusion technique. Composites were characterized by mechanical and microstructural analysis. Results showed that manufacturing composites with highly humid fabrics (95% RH) generates post processing deformation of finished parts and also leads to poor microstructural quality. The moisture in the fibres with different RH reduced the stiffness (from 23.74 to 17.67 GPa for Young's modulus and from 16.28 to 11.82 GPa for flexural modulus) but increased their fracture strain (from 1.87 to 2.64). Tensile strength displayed an optimum value (287.96 MPa) for fabrics conditioned at 50% RH, but flexural strength decreases continuously from 225.12 to 152.34 MPa as the moisture in the fabric increases.
机译:植物纤维中存在的水分被认为对复合材料的性能有害。通常,在制造复合材料之前,对植物纤维织物进行干燥步骤,因为这似乎可以提供更好的输出。这项工作分析了亚麻纤维中水分对环氧/亚麻生物复合材料整体质量的影响。亚麻纤维织物在不同的相对湿度(RH)环境下进行调理,并通过真空灌注技术制造复合材料。通过机械和微观结构分析来表征复合材料。结果表明,使用高湿织物(相对湿度为95%)制造复合材料时,会产生成品零件的后加工变形,并导致不良的微结构质量。具有不同RH的纤维中的水分降低了刚度(杨氏模量从23.74降低到17.67 GPa,弯曲模量从16.28降低到11.82 GPa),但断裂应变增加了(从1.87到2.64)。对于在50%RH条件下处理的织物,抗张强度显示出最佳值(287.96 MPa),但是随着织物中水分的增加,抗弯强度从225.12 MPa连续降低到152.34 MPa。

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