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Bending behavior of sandwich composite structures with tunable 3D-printed core materials

机译:具有可调3D打印芯材的三明治复合结构的弯曲行为

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We combine 3D printing technique, numerical analysis, and experiments to design a new class of sandwich composites that exhibit various bending behaviors. These programmed sandwich structures contain 3D printed core materials with truss, conventional honeycomb, and re-entrant honeycomb topologies. Three-point bending tests are performed to investigate the bending behavior of these sandwich composites with two types of carbon fiber reinforced polymer face sheets. Under bending deformation, sandwich composites with truss core materials provide highest flexural stiffness and strength that are desirable in structural components. The sandwich composites with re-entrant honeycomb core exhibit a sequential snap-through instability which significantly enhances the energy absorption abilities. Our experimental and numerical results indicate that architected core structures can be utilized to tailor the bending properties as well as failure mechanisms. These findings offer new insights into the study of nonlinear mechanical response of sandwich structures, which can benefit a wide range of industries and applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们将3D打印技术,数值分析和实验相结合,以设计出表现出各种弯曲行为的新型夹心复合材料。这些程序化的夹心结构包含具有桁架,常规蜂窝和可重入蜂窝拓扑的3D打印芯材。进行了三点弯曲测试,以研究这些夹心复合材料与两种类型的碳纤维增强聚合物面板的弯曲行为。在弯曲变形下,具有桁架芯材料的夹心复合材料可提供结构部件所需的最高抗弯刚度和强度。具有凹角蜂窝状芯的夹心复合材料表现出连续的卡扣不稳定性,从而显着增强了能量吸收能力。我们的实验和数值结果表明,可以使用结构化的核心结构来调整弯曲特性以及破坏机制。这些发现为研究夹层结构的非线性机械响应提供了新的见识,可以使广泛的行业和应用受益。 (C)2017 Elsevier Ltd.保留所有权利。

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