首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Evaluation of the influence of design in the mechanical properties of honeycomb cores used in composite panels
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Evaluation of the influence of design in the mechanical properties of honeycomb cores used in composite panels

机译:复合板中使用的蜂窝芯力学性能影响的评价

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摘要

The aerospace, automotive, and marine industries are heavily reliant on sandwich panels with cellular material cores. Although honeycombs with hexagonal cells are the most commonly used geometries as cores, recently there have been new alternatives in the design of lightweight structures. The present work aims to evaluate the mechanical properties of metallic and polymeric honeycomb structures, with configurations recently proposed and different in-plane orientations, produced by additive and subtractive manufacturing processes. Structures with configurations such as regular hexagonal honeycomb (Hr), lotus (Lt), and hexagonal honeycomb with Plateau borders (Pt), with 0°, 45°, and 90° orientations were analyzed. To evaluate its properties, three-point bending tests were performed, both experimentally and by numerical modeling, by means of the finite element method. Honeycombs of two aluminum alloys and polylactic acid were fabricated. The structures produced in aluminum were obtained either by selective laser melting technology or by machining, while polylactic acid structures were obtained by material extrusion using fused filament fabrication. From the stress distribution analysis and the load–displacement curves, it was possible to evaluate the strength, stiffness, and absorbed energy of the structures. Failure modes were also analyzed for polylactic acid honeycombs. In general, a strong correlation was observed between numerical and experimental results. The results show that the stiffness and absorbed energy increase in the order, Hr, Pt, Lt, and with the orientation through the sequence, 45°, 90°, 0°. Thus, Lt structures with 0° orientation seem to be good alternatives to the traditional honeycombs used in sandwich composite panels for those industrial applications where low weight, high stiffness, and large energy-absorbing capacity are required.
机译:航空航天,汽车和海洋产业严重依赖于夹层面板,具有细胞材料核心。虽然具有六边形细胞的蜂窝是核心最常用的几何形状,但最近在轻质结构设计中有新的替代品。本作者旨在评估金属和聚合物蜂窝结构的机械性能,最近提出的配置和不同的面内取向,由添加剂和减法制造方法产生。分析了具有0°,45°和90°定向的常规六边形蜂窝(HR),莲花(LT),莲花(PT),莲花(LT)和六边形蜂窝状,六边形蜂窝等结构的结构进行了分析。为了评估其性质,通过有限元方法,通过实验和通过数值模拟进行三点弯曲试验。制造两个铝合金和聚乳酸的蜂窝状。通过选择性激光熔化技术或通过加工获得铝中产生的结构,而通过使用稠合丝制造的材料挤出获得聚乳酸结构。从应力分布分析和负载 - 位移曲线来看,可以评估结构的强度,刚度和吸收能量。对聚乳酸蜂窝分析,还分析了失效模式。通常,在数值和实验结果之间观察到强烈的相关性。结果表明,顺序,HR,Pt,LT的刚度和吸收能量,并通过序列的取向,45°,90°,0°。因此,具有0°定向的LT结构似乎是用于夹层复合板的传统蜂窝的良好替代品,用于那些需要低重量,高刚度和大的能量吸收能力的工业应用。

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