分层特征对周期性多孔固体临界屈曲强度的影响

Noureldeen Al Tamimi, M. Alkhader, Basit Ali, M. Nazzal
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引用次数: 1

摘要

周期性细胞状固体,由于其能够提供高刚度和强度重量比,在需要重量最小化的工程应用中已经变得很常见。这些应用涉及航空航天、海洋、可再生能源和汽车工业。周期性细胞状固体的工业相关性不断提高,促使开发方法来改善其弹性和破坏特性。在周期孔状固体中引入分层特征是改善其面内弹性和强度性能的最有效方法之一。将这种方法应用于铝蜂窝,结果使其面内刚度增加了一倍以上。然而,引入层次特征对周期性蜂窝固体的面外性质的影响,特别是蜂窝的面外性质尚未得到充分的研究。因此,本研究探讨了引入层次特征对蜂窝离面行为的影响。特别地,本工作利用有限元计算研究了引入层次结构对六边形蜂窝结构屈曲强度的影响。结果表明,在不增加蜂窝重量的情况下,精心引入层次结构可以使蜂窝的屈曲强度提高170%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of hierarchical features on the critical buckling strength of periodic cellular solids
Periodic cellular solids, due to their ability to provide high stiffness and strength to weight ratios, have become common in engineering applications requiring weight minimization. Such applications relate to aerospace, marine, renewable energy, and automotive industries. The continuously increasing industrial relevance of periodic cellular solids has motivated developing methodologies to improve their elastic and failure properties. Introducing hierarchical features in periodic cellular solids proved as one of the most effective methods to improve their in-plane elastic and strength properties. This approach was applied to aluminum honeycombs and resulted in more than doubling their in-plane stiffness. However, the effect of introducing hierarchical features on the out-of-plane properties of periodic cellular solids in general and honeycombs in particular has not been fully investigated yet. Accordingly, this work investigates the effect of introducing hierarchical features on the out-of-plane behavior of honeycombs. In particular, this work investigates, using finite element computations, the effect of introducing hierarchy on the buckling strength of hexagonal honeycombs. Results show that hierarchy when carefully introduced, can enhance the buckling strength of honeycombs by more than 170% without increasing their weight.
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