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Novel fibre metal laminate sandwich composite structure with sisal woven core

机译:剑麻编织芯的新型纤维金属层压夹芯复合结构

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摘要

Fibre metal laminates (FMLs) have been widely used to manufacture airframe components. This work describes novel sisal fibre reinforced aluminium laminates (SiRALs) that have been prepared by cold pressing techniques and tested under tensile, flexural and impact loading. The pristine sisal fabric and the sisal fibre reinforced composites (SFRCs) were also tested to understand the difference in mechanical performance of the sisal fibre metal laminates. The SiRALs achieved not only the highest modulus and strength, but also the highest specific properties. The mean specific tensile strength and modulus of the SIRALs reached increases of 132% and 267%, respectively, when compared to the sisal fibre reinforced composites (SFRCs). Moreover, the mean specific flexural strength and modulus of the SiRALs were significantly higher than SFRCs, revealing increases of 430% and 973%, respectively. A delamination fracture mode was noted for SiRALs under bending testing. The SiRALs can be considered promising and sustainable composite materials for structural and multifunctional applications.
机译:纤维金属层压板(FML)已被广泛用于制造机身部件。这项工作描述了新型剑麻纤维增强铝层压板(SiRALs),这些层压板已经通过冷压技术制备并在拉伸,弯曲和冲击载荷下进行了测试。还对原始的剑麻织物和剑麻纤维增强复合材料(SFRC)进行了测试,以了解剑麻纤维金属层压板的机械性能差异。 SiRAL不仅获得了最高的模量和强度,而且还获得了最高的特定性能。与剑麻纤维增强复合材料(SFRC)相比,SIRAL的平均比抗张强度和模量分别增加了132%和267%。此外,SiRAL的平均比弯曲强度和模量明显高于SFRC,分别增加了430%和973%。在弯曲测试下,SiRALs出现了分层断裂模式。 SiRALs被认为是用于结构和多功能应用的有前途且可持续的复合材料。

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