Auxetic Thin-Walled Square Tubes Subjected to Oblique Loading

Dilek Atilla Yolcu, Fatih İlgen, B. O. Baba
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Abstract

The use of auxetic structures with a negative Poisson’s ratio in thin-walled tubes, which are widely used in many fields, is one of the topics discussed recently. This is because re-entrant auxetic tubes are generally more resistant to loads such as compression and impact than conventional honeycomb structures due to their high indentation resistance. However, there is limited information in the literature regarding the use of these structures on different sides of the thin-walled tube. In addition, there are few studies on how the compressive behavior of the re-entrant auxetic structure changes when subjected to an oblique load. In this study, the effect of oblique loading on thin-walled square tubes with re-entrant and traditional honeycomb structures on the sides was investigated numerically. The side faces of the tubes were designed using auxetic re-entrant and conventional honeycomb cells with constant ligament properties. Four different types of square tubes were created with the designed re-entrant auxetic and conventional honeycomb side faces. These structures are; all side faces re-entrant (RRRR), all side faces honeycomb (HHHH), opposite side faces re-entrant-honeycomb (RHRH), and adjacent side faces re-entrant-honeycomb (RRHH). Oblique loads were applied to the edges and corners of these structures and their behavior was examined. The results showed that the use of different lattice structures on the thin-walled tubes significantly affected their behavior.
倾斜载荷作用下的补体薄壁方管
负泊松比结构在薄壁管中的应用是近年来研究的热点之一,在许多领域得到了广泛的应用。这是因为再入式减压管通常比传统的蜂窝结构更能抵抗诸如压缩和冲击等载荷,因为它们具有高抗压痕性。然而,关于在薄壁管的不同侧面使用这些结构的文献资料有限。此外,关于斜荷载作用下再入式结构压缩性能变化的研究较少。本文采用数值模拟方法,研究了斜向载荷对方薄壁再入孔管和传统蜂窝结构方薄壁管的影响。管的侧面采用辅助再入式和具有恒定韧带特性的传统蜂窝细胞设计。四种不同类型的方形管被设计成可再入式和传统的蜂窝状侧面。这些结构是;所有侧面朝向重入式(RRRR),所有侧面朝向蜂巢式(HHHH),相对侧面朝向重入式蜂巢式(RHRH),相邻侧面朝向重入式蜂巢式(RRHH)。在这些结构的边缘和角落施加斜荷载,并对其性能进行了测试。结果表明,不同晶格结构对薄壁管的性能有显著影响。
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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