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Bio-Polyamide 11 Hybrid Composites Reinforced with Basalt/Flax Interwoven Fibers: A Tough Green Composite for Semi-Structural Applications

机译:玄武岩/亚麻交织纤维增强的生物聚酰胺11杂化复合材料:半结构应用的坚韧绿色复合材料

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Intraply hybrid green composites were prepared by film stacking and hot-pressing of bio-based polyamide 11 (PA11) sheets and commercial hybrid fabrics made by interweaving flax and basalt fibers (2/2 twill structure). Two matrices were considered, one of them containing a plasticizing agent. After preliminary thermal and rheological characterizations of the neat matrices, the laminates were studied in terms of flexural properties at low and high deformation rates, and the results were interpreted in the light of morphological analyses (scanning electron and optical microscopy). Despite the poor interfacial adhesion detected for all investigated composite samples, the latter exhibited a good combination of flexural strength, modulus, and impact resistance. Such well-balanced mechanical properties make the studied samples potential candidates for semi-structural applications, e.g., in the transportation sector.
机译:通过将生物基聚酰胺11(PA11)片材进行薄膜堆叠和热压,以及通过将亚麻纤维和玄武岩纤维(2/2斜纹织物)交织制成的商用混合织物,来制备内部混合绿色复合材料。考虑了两种基质,其中一种包含增塑剂。在对纯基质进行初步的热和流变学表征后,研究了层压板在低变形率和高变形率下的挠曲性能,并根据形态学分析(扫描电子和光学显微镜)对结果进行了解释。尽管对于所有研究的复合材料样品都检测到较差的界面粘合性,但后者显示出抗弯强度,模量和抗冲击性的良好组合。这种良好平衡的机械性能使得所研究的样品成为半结构应用(例如在运输领域)的潜在候选者。

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