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Flax fiber-reinforced composite lattice cores: A low-cost and recyclable approach

机译:亚麻纤维增强复合晶格芯:一种低成本且可回收的方法

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摘要

Lightweight, low cost, and recyclability are priorities in various material selections. In this study, flax fiber-reinforced lattice cores with redesigned lattice geometry were developed and manufactured by vacuum-assisted resin infusion and slot assembly method. Anorthotropic constitutive model of the redesigned lattice cores was proposed, and the elastic compliance matrix was expressed with lattice geometry and properties of parent materials. Then, lattice structures with composites and foam sandwich trusses were fabricated and compressed, respectively. Specific nominal stiffness and strength values of the latter were approximately 1.5 x and 2 x those of their monolithic counterparts. Subsequently, mechanical property sensitivity of defects formed during processing was simulated, and the results provided additional insights to optimize the lattice design. A property-cost chart was specially created, and flax fiber-reinforced lattice cores proved to be promising candidates for automotive lightweight industry because of their economy and recyclability. (C) 2017 Published by Elsevier Ltd.
机译:轻巧,低成本和可回收性是各种材料选择的重点。在这项研究中,通过真空辅助树脂灌注和缝隙组装方法开发并制造了具有重新设计的晶格几何形状的亚麻纤维增强晶格芯。提出了重新设计的晶格核的正交各向异性本构模型,并用晶格的几何形状和母体材料的性能表示了弹性柔度矩阵。然后,分别制造和压缩具有复合材料和泡沫夹层桁架的晶格结构。后者的特定标称刚度和强度值分别是其整体对应物的1.5倍和2倍。随后,模拟了加工过程中形成的缺陷的机械性能敏感性,结果为优化晶格设计提供了更多的见解。专门创建了物业成本图表,并且亚麻纤维增强的晶格芯由于其经济性和可回收性而被证明是汽车轻量化行业的有希望的候选者。 (C)2017由Elsevier Ltd.发布

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