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Design of a Hybrid Honeycomb Unit Cell with Enhanced In-Plane Mechanical Properties

机译:具有增强的面内机械性能的混合蜂窝单元单元的设计

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Sandwich structures with honeycomb core are widely used in the lightweight design and impact energy absorption applications in automotive, sporting, and aerospace industries. Recently, the auxetic honeycombs with negative Poisson's ratio attract substantial attention for different engineering products. In this study, we implement Additive Manufacturing technology, experimental testing, and Finite Element Analysis (FEA) to design and investigate the mechanical behavior of a novel unit cell for sandwich structure core. The new core model contains the conventional and auxetic honeycomb cells beside each other to create a Hybrid Honeycomb (HHC) for the sandwich structure. The different designs of unit cells with the same volume fraction of 15% are 3D-printed using Fused Deposition Modeling technique, and the comparative study on the mechanical behavior of conventional honeycomb, auxetic honeycomb, and HHC structures is conducted. The quasi-static uniaxial compression tests are performed on the printed samples to investigate the mechanical behavior of the printed structures. The deformation and failure modes of the different designs are studied at the cell level utilizing FEA of the compression test and experimental observation. The compressive strength of the different design is measured using three experimental tests. The new HHC unit cell design shows significantly higher mechanical properties than the auxetic and the conventional designs. Modifying the design variables of hybrid cellular core structure allows us to tailor the mechanical properties and deformation pattern in macro level to achieve the desired mechanical properties in sandwich structures.
机译:带蜂窝芯的夹层结构广泛用于汽车,体育和航空航天行业的轻质设计和冲击能量吸收应用。最近,具有负面泊松比的辅助蜂窝,对不同的工程产品的重大关注。在这项研究中,我们实施了添加剂制造技术,实验测试和有限元分析(FEA)来设计和研究夹层结构芯的新型单元电池的力学行为。新的核心模型含有彼此旁边的常规和辅助蜂窝细胞,以制造用于夹层结构的混合蜂窝状(HHC)。使用融合沉积建模技术的3D印刷具有相同体积分数的单位细胞的不同设计,以及传统蜂窝,扶巢和HHC结构的力学行为的比较研究。在印刷样​​品上执行准静态的单轴压缩测试,以研究印刷结构的力学行为。在利用压缩试验的FEA和实验观察的细胞层面研究了不同设计的变形和失效模式。使用三种实验测试测量不同设计的抗压强度。新的HHC单位细胞设计显示比辅助和传统设计明显更高的机械性能。改变混合蜂窝芯结构的设计变量使我们能够在宏观水平中定制机械性能和变形图案,以在夹层结构中实现所需的机械性能。

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