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Impact Strength and Water Uptake Behaviors of Fully Bio-Based PA11-SGW Composites

机译:完全生物基PA11-SGW复合材料的冲击强度和吸水行为

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摘要

Composite materials have attracted the attention of some industrial fields due to their lightness and relatively good mechanical properties. One of these properties is impact strength, essential to ensure the processability and application of these materials under impact conditions. In addition, it is known that water absorption has a plasticizing effect in polymers and polymer composites which can change the properties of such materials and limit their use. Moreover, this effect worsens when hydrophilic reinforcement is used. In this work, the impact and water uptake behavior of totally bio-based composites from polyamide 11 (PA11) and lignocellulosic pine fibers mechanically processed as stone groundwood (SGW) were studied. The impact resistance of PA11 and its composites was higher than expected, obtaining better results than those of polyolefin-based materials. The evaluated mechanical properties and the micrographs showed an adequate interface. The water uptake test showed that PA11 and its composites had non-Fickian and Fickian case I behaviours, respectively. It was found that the maximum water absorbance was similar to that of SGW reinforced polypropylene.
机译:复合材料由于其轻便和相对良好的机械性能而吸引了一些工业领域的关注。这些特性之一是冲击强度,这对于确保这些材料在冲击条件下的可加工性和应用至关重要。另外,已知吸水在聚合物和聚合物复合物中具有增塑作用,这可以改变这种材料的性质并限制其使用。此外,当使用亲水性增强剂时,该效果恶化。在这项工作中,研究了聚酰胺11(PA11)和机械加工成石磨材(SGW)的木质纤维素松树纤维的全生物基复合材料的冲击性能和吸水性能。 PA11及其复合材料的抗冲击性高于预期,比聚烯烃基材料获得更好的结果。评估的机械性能和显微照片显示出足够的界面。吸水率测试表明,PA11及其复合材料分别具有非Fickian和Fickian的I行为。发现最大吸水率与SGW增强的聚丙烯相似。

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