首页> 外文期刊>Journal of Polymers and the Environment >Influence of Paper Content and Matrix Selection on the Porosity, Crystallinity and Water Uptake of Thermoplastic Paper Composites
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Influence of Paper Content and Matrix Selection on the Porosity, Crystallinity and Water Uptake of Thermoplastic Paper Composites

机译:纸张含量和基体选择对热塑性纸复合材料的孔隙度,结晶度和吸水率的影响

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Pulp and paper fibers have favorable reinforcement properties, such as constant fiber quality, while being widely available at low cost. However, they also have severe drawbacks related to water uptake and material degradation. In this work, paper was used for sustainable reinforcement in thermoplastic composite laminates, which were characterized by thermal analysis and moisture uptake tests. The porosity of the composite samples with varying paper content and matrix material was determined by thermogravimetric analysis and related to their water uptake. Polypropylene and polyamide 12 matrix composites had the lowest porosities, between 2 and 6 vol%, and thus comparatively low water uptake. Additionally, the influence of moisture uptake on the mechanical properties of the composites was investigated by tensile testing, which resulted in a significant decrease in modulus and strength in the wet state. After drying, however, 70-90% of the original tensile properties were regained. Additionally, a nucleating effect of the paper surface could be observed, which led to a linear increase in matrix crystallinity with increasing paper content.
机译:纸浆和纸纤维具有良好的增强性能,例如恒定的纤维质量,同时以低成本广泛获得。但是,它们也具有与吸水和材料降解有关的严重缺陷。在这项工作中,纸用于热塑性复合材料层压板的可持续补强,其特征在于热分析和水分吸收测试。通过热重分析确定纸含量和基质材料不同的复合样品的孔隙率,并与它们的吸水率有关。聚丙烯和聚酰胺12基复合材料的孔隙率最低,在2%至6%(体积)之间,因此吸水率较低。另外,通过拉伸试验研究了水分吸收对复合材料的机械性能的影响,这导致湿态下的模量和强度显着降低。然而,干燥后,恢复了原始拉伸性能的70-90%。另外,可以观察到纸表面的成核作用,这导致随着纸含量的增加,基质结晶度线性增加。

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