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首页> 外文期刊>Thin-Walled Structures >3D printed self-similar AlSi10Mg alloy hierarchical honeycomb architectures under in-plane large deformation
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3D printed self-similar AlSi10Mg alloy hierarchical honeycomb architectures under in-plane large deformation

机译:3D印刷自相似的Alsi10mg合金层次蜂窝架构在面内变形

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Self-similar hierarchical honeycombs with complicated cellular topologies are promising cores for lightweight sandwich structures ascribed to superior structural efficiency in terms of mitigating damage. In this paper, the in-plane compressive characteristics of AlSi10Mg alloy hierarchical honeycombs, fabricated using Selective Laser Melting (SLM) methodology, under large deformation are reported. The results suggest that higher hierarchies enhance the elastic modulus of honeycombs significantly, whereas the compressive strength is improved negligibly. There is a failure mechanism transition from cell wall bending dominated to cell wall fracture dominated with the increase of relative density and hierarchical order, and the failure mechanisms are related to the wall thickness with critical value of 0.345 mm. It is concluded that the in-plane failure of hierarchical honeycombs is dominated by the bending, axial compression and shear deformation of original unit cell walls. Besides, the parent material without heat treatment contributes to more excellent mechanical properties of hierarchical honeycombs owing to higher tensile strength and elastic modulus. This work enables to facilitate the structural design and optimization of high-performance hierarchical honeycomb metamaterials with desired properties and functions.
机译:具有复杂的细胞拓扑的自我相似的分层蜂窝是有前途的轻质夹层结构,以便在减轻损伤方面归因于卓越的结构效率。本文报道,报道了使用选择性激光熔化(SLM)方法制造的Alsi10mg合金等级蜂窝的面内压缩特性,在大变形下进行了大变形。结果表明,较高的层次结构显着增强了蜂窝状的弹性模量,而抗压强度可忽略地改善。从支架的细胞壁弯曲到电池壁骨折的故障机构过渡,其围绕着相对密度和分层顺序的增加,并且故障机构与壁厚有关的临界值为0.345mm。得出结论,等级蜂窝的面内失效由原始单元电池壁的弯曲,轴向压缩和剪切变形主导。此外,由于较高的拉伸强度和弹性模量,没有热处理的母材料有助于更优异的分层蜂窝的机械性能。这项工作使得能够促进具有所需性能和功能的高性能等级蜂窝页材料的结构设计和优化。

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