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Water Uptake Behavior and Young Modulus Prediction of Composites Based on Treated Sisal Fibers and Poly(Lactic Acid)

机译:剑麻纤维和聚乳酸处理复合材料的吸水性能和年轻模量预测

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摘要

The main aim of this work was to study the effect of sisal fiber surface treatments on water uptake behavior of composites based on untreated and treated fibers. For this purpose, sisal fibers were treated with different chemical treatments. All surface treatments delayed the water absorption of fibers only for a short time of period. No significant differences were observed in water uptake profiles of composites based on fibers with different surface treatments. After water uptake period, tensile strength and Young modulus values of sisal fiber/poly(lactic acid) (PLA) composites were decreased. On the other hand, composites based on NaOH + silane treated fibers showed the lowest diffusion coefficient values, suggesting that this treatment seemed to be the most effective treatment to reduce water diffusion rate into the composites. Finally, Young modulus values of composites, before water uptake period, were predicted using different micromechanical models and were compared with experimental data.
机译:这项工作的主要目的是研究剑麻纤维表面处理对基于未处理和处理过的纤维的复合材料吸水行为的影响。为此,对剑麻纤维进行了不同的化学处理。所有表面处理仅在短时间内延迟了纤维的吸水率。在基于具有不同表面处理的纤维的复合材料的吸水曲线中未观察到显着差异。吸水一段时间后,剑麻纤维/聚乳酸(PLA)复合材料的拉伸强度和杨氏模量值降低。另一方面,基于NaOH +硅烷处理的纤维的复合材料显示出最低的扩散系数值,这表明该处理似乎是降低水向复合材料中扩散速度的最有效处理。最后,采用不同的微力学模型预测了复合材料在吸水前的杨氏模量,并与实验数据进行了比较。

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