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Designing bioinspired composite reinforcement architectures via 3D magnetic printing

机译:通过3D磁性打印设计受生物启发的复合材料增强结构

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摘要

Discontinuous fibre composites represent a class of materials that are strong, lightweight and have remarkable fracture toughness. These advantages partially explain the abundance and variety of discontinuous fibre composites that have evolved in the natural world. Many natural structures out-perform the conventional synthetic counterparts due, in part, to the more elaborate reinforcement architectures that occur in natural composites. Here we present an additive manufacturing approach that combines real-time colloidal assembly with existing additive manufacturing technologies to create highly programmable discontinuous fibre composites. This technology, termed as ‘3D magnetic printing', has enabled us to recreate complex bioinspired reinforcement architectures that deliver enhanced material performance compared with monolithic structures. Further, we demonstrate that we can now design and evolve elaborate reinforcement architectures that are not found in nature, demonstrating a high level of possible customization in discontinuous fibre composites with arbitrary geometries.
机译:间断纤维复合材料代表一类材料,该材料坚固,轻巧且具有出色的断裂韧性。这些优势部分解释了自然界中不断发展的不连续纤维复合材料的丰富性和多样性。许多天然结构的性能优于传统的合成结构,部分原因是天然复合材料中出现了更为复杂的增强结构。在这里,我们提出了一种将实时胶体组装与现有增材制造技术相结合的增材制造方法,以创建高度可编程的不连续纤维复合材料。这项被称为“ 3D磁性打印”的技术使我们能够重新创建复杂的,受生物启发的增强架构,与单片结构相比,该架构可提供增强的材料性能。此外,我们证明了我们现在可以设计和开发自然界中未发现的精心设计的增强结构,这表明具有任意几何形状的不连续纤维复合材料具有很高的定制可能性。

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