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Commercial application of aluminum honeycomb and foam in load bearing tubular structures

机译:铝蜂窝和泡沫在承重管状结构中的商业应用

摘要

Small dimension engineering tubular structures subjected to a complex load system are designed like hollow circular shells. For minimum weight design, the ratio between the shell radius and the thickness has to be as large as possible, but its maximum value is limited by the onset of local buckling. Tubular natural structures subjected to a complex load system have often an outer shell of solid material supported by a low density, compliant core, which makes them more resistant to local buckling. Biomimicking of natural constructions offer the potential to improve the design of small diameter tubular engineering structures. Here, the fabrication technology of biomimicked engineering tubular structures integrating aluminum foam or honeycomb as core material is discussed. A viability analysis is presented including technical performance, cost, utility, and risk assessments. Aluminum compliant core shells have potential for substituting CFRP and aluminum tubular structures in aerospace and high-level sport applications. The case of sailboat masts was considered in detail. Results of our analysis proved that use of honeycomb as core material can lead to a significant reduction of the mast weight. Business opportunities based on this application are discussed.
机译:承受复杂载荷系统的小尺寸工程管状结构的设计类似于空心圆形壳体。对于最小的重量设计,壳体半径和厚度之间的比例必须尽可能大,但其最大值受局部屈曲的限制。承受复杂载荷系统的管状自然结构通常具有由低密度,顺应性芯支撑的固体材料外壳,这使得它们更能抵抗局部屈曲。天然建筑的仿生技术具有改善小直径管状工程结构设计的潜力。在此,讨论了以泡沫铝或蜂窝为芯材的仿生工程管状结构的制造技术。提出了可行性分析,包括技术性能,成本,效用和风险评估。符合铝标准的芯壳在航空航天和高级运动应用中具有取代CFRP和铝管状结构的潜力。详细考虑了帆船桅杆的情况。我们的分析结果证明,使用蜂窝作为芯材可以显着降低桅杆重量。讨论了基于此应用程序的商机。

著录项

  • 作者

    Bartolucci Stefano 1976-;

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  • 年度 2004
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