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Enhanced hexa-missing rib auxetics for achieving targeted constant NPR and in-plane isotropy at finite deformation

机译:增强的六到缺失肋骨辅助,用于在有限变形下实现目标常数NPR和面内各向同性

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The standard hexa-missing rib structure (i.e. missing rib structure with six zigzag ligaments) exhibits in-plane isotropy at small deformation, and has a relatively constant negative Poisson's ratio (NPR) over a finite deformation range. However, its auxeticity is relatively low, and the in-plane isotropy effect degrades rapidly with deformation. The present work aims to improve these two mechanical properties over a large deformation range, without significantly compromising the deformation range with constant NPR as well as the overall stiffness. First, the deformation mechanisms underlying a standard hexa-missing rib structure is elaborated. To enhance the auxeticity effect and to delay the loss of in-plane isotropy, an enhanced design with honeycomb reinforcement between the ligaments is proposed. By changing the size of the honeycomb reinforcement, the enhanced design is able to achieve tunable constant NPR ranging from -0.2 to -1.0 over a large deformation range, and yet maintaining its in-plane isotropy. Moreover, these enhanced properties are achieved without compromising the overall stiffness of the structure. Depending on the nature of engineering applications, the deformation range with a constant NPR can be further extended if desired, by having wavy connecting ligaments in the enhanced design. For the latter design, the structure is more compliant than the base design. It is shown that the target enhanced properties can be achieved over a large deformation range using linear elastic or nonlinear base materials.
机译:标准的六爪缺失肋结构(即,缺血韧带有六个锯齿状韧带)在小变形下在平面各向同位,并且在有限变形范围内具有相对恒定的负泊松比(NPR)。然而,其辅助性相对较低,并且面内各向同性效果随变形迅速降低。目前的作品旨在通过大变形范围改善这两个机械性能,而不会显着影响具有恒定NPR的变形范围以及整体刚度。首先,阐述了标准的六肩缺失肋结构下面的变形机制。提高辅助效应并延迟面内各向同性的损失,提出了一种增强的韧带之间蜂窝增强的设计。通过改变蜂窝增强件的尺寸,增强的设计能够在大变形范围内实现从-0.2至-1.0的可调恒定NPR,但保持其面内各向同性。此外,实现了这些增强的性能而不会影响结构的总刚度。根据工程应用的性质,如果需要,可以进一步延长具有恒定NPR的变形范围,通过增强设计中的波浪连接韧带,可以进一步延长。对于后一种设计,该结构比基本设计更符合。结果表明,使用线性弹性或非线基材可以在大变形范围内实现目标增强性能。

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