Material choice to optimise the performance index of isogrid structures

C. Bellini, Filippo Berto, V. Di Cocco, Francesco Iacoviello, L. P. Mocanu
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Abstract

Three key qualities should define the structures used in the aviation industry: they should be light, rigid, and strong. These goals can be met by selecting lightweight, high-performance materials like titanium alloy or composites, but careful structural design is also crucial to improve mechanical performance. The structures known as isogrids, which consist of a skin reinforced by a lattice frame, offer an effective way to meet the aforementioned specifications. The structural performances of isogrid-stiffened cylinders composed of various materials were compared in the current work. The structures under investigation were composed of titanium alloy, carbon fibre composite material, or a combination of both. A FEM model was proposed and validated by comparison with experimental results obtained from a composite material structure, and then it was used to simulate the behaviour of all the other structures. While there was some variation in the strength of the parts, it was discovered that the stiffness was almost uniform throughout all of the structures that were examined. But when the weight of the various constructions was taken into account, some very intriguing findings emerged: the composite material-only structure proved to be the most effective because it had the highest specific performances.
优化等径格栅结构性能指标的材料选择
航空业使用的结构应具备三个关键品质:重量轻、刚度高、强度大。这些目标可以通过选择轻质、高性能的材料(如钛合金或复合材料)来实现,但精心的结构设计对于提高机械性能也至关重要。由网格框架加固的表皮组成的等格网结构是满足上述要求的有效方法。本研究比较了由不同材料组成的等格网加固圆柱体的结构性能。所研究的结构由钛合金、碳纤维复合材料或两者的组合组成。通过与复合材料结构的实验结果进行比较,提出并验证了有限元模型,然后使用该模型模拟所有其他结构的行为。虽然各部分的强度存在一些差异,但研究发现,所有受检结构的刚度几乎都是一致的。但是,当考虑到各种结构的重量时,一些非常有趣的发现出现了:纯复合材料结构被证明是最有效的,因为它具有最高的特定性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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