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Design and Fabrication of Resilient Sandwich Composite Structures with Multi-stable Energy Absorption Core

机译:具有多稳态能量吸收芯的弹性夹芯复合结构的设计与制作

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Composite sandwich structures, while offering desirable mechanical properties such as light weight, high flexural rigidity and energy dissipation under loading, alsosuffer from inelastic damage accumulation under loading conditions. With a greaterdemand placed on composite structures to perform in extreme environmentalconditions, it is necessary for composite sandwich structures to not only absorb impact,but also dissipate the impact energy without accumulating permanent damage - that is, be resilient to damage. In this paper, we present a novel sandwich core design strategyto incorporate energy absorbing core structures that rely on structural buckling todissipate energy. These cores are printed using a stereolithography (SLA) desktop 3D printer. A parametric study to better understand the energy dissipating bucklingbehavior is performed using an experimentally validated finite element analysis. Using the insights provided by the computational model and experiments, recommendations are made for an optimal core design.
机译:复合三明治结构,同时提供所需的机械性能,如重量轻,高弯曲刚度和装载下的能量耗散 在负载条件下遭受无弹性损伤积累。更伟大 在极端环境下表演复合结构的需求 条件,是复合夹层结构的必要,不仅吸收撞击, 但也消散了影响能量而不积累永久性损伤 - 这是有弹性的损坏。在本文中,我们提出了一种新的三明治核心设计策略 融合依靠结构屈曲的能量吸收芯结构 消散能量。使用立体光刻(SLA)桌面3D打印机打印这些核心。参数学研究更好地理解节能屈曲 使用实验验证的有限元分析进行行为。使用计算模型和实验提供的见解,建议采用最佳的核心设计。

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