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High Renewable Content Sandwich Structures Based on Flax-Basalt Hybrids and Biobased Epoxy Polymers

机译:基于亚麻玄武岩杂种和生物化环氧聚合物的高可再生含量夹层结构

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摘要

In the last years, a growing interest in the development of high environmental efficiency materials has been detected and this situation is more accentuated in the field of polymers and polymer composites. In this work, green composite sandwich structures with high renewable content have been developed with core cork materials. The base resin for composites was a biobased epoxy resin derived from epoxidized vegetable oils. Hybrid basalt-flax fabrics have been used as reinforcements for composites and the influence of the stacking sequence has been evaluated in order to optimize the appropriate laminate structure for the sandwich bases. Core cork materials with different thickness have been used to evaluate performance of sandwich structures thus leading to high renewable content composite sandwich structures. Results show that position of basalt fabrics plays a key role in flexural fracture of sandwich structures due to differences in stiffness between flax and basalt fibers.
机译:在过去几年中,已经检测到对高环境效率材料的发展的兴趣,并且这种情况在聚合物和聚合物复合材料领域更加突出。在这项工作中,具有高可再生含量的绿色复合夹层结构已经开发出核心软木材料。复合材料的基础树脂是衍生自环氧化植物油的生物化环氧树脂。混合玄武岩 - 亚麻织物已被用作复合材料的增强件,并且已经评估了堆叠序列的影响,以优化夹层底座的适当层压结构。具有不同厚度的核心软木材料已用于评估夹层结构的性能,从而导致高可再生含量复合夹层结构。结果表明,由于亚麻和玄武岩纤维之间的刚度差异,玄武岩织物的位置在夹层结构的弯曲骨折中起着关键作用。

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