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Extension twist deformation response of an auxetic cylindrical structure inspired by deformed cell ligaments

机译:由变形细胞韧带启发的辅助圆柱结构的延伸扭转变形响应

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Recent advances in artificial metamaterials have allowed unique structures to deform in distinct modes not previously found in traditional material form. Auxetic structures that induce twist through deformation have been a focus of recent research. In this paper a cell-based tubular structure with pre-deformed ligaments is proposed which exhibits efficient extension induced twist (EIT) without the limitations of buckling. An analytical model of the structure is proposed using cell parameters to characterize the non-linear twist-deformation relationship. Samples of the structure were fabricated using the Ultimaker 3 platform with elastomer based TPU 95a build material and PVA support material. The analytical model and FEM were validated by tensile experiments, where fabricated samples reached 60 degrees of non-linear axial twist over 40 mm of deformation. In order to further characterize the structure's twist response, key design parameters of the lattice structure were varied and modelled. Actuation through tensile elastic deformation has key advantages in reliability and reduced complexity. Due to these advantages, this technology has potential applications in aerospace, biomedical and robotic fields.
机译:人工超材料的最近进步使得独特的结构以先前未以传统材料形式发现的不同模式变形。通过变形引起扭曲的辅助结构一直是最近研究的焦点。在本文中,提出了一种基于细胞的管状结构,其具有预变形韧带,其在没有屈曲的限制的情况下表现出有效的延伸诱导的扭曲(EIT)。使用小区参数提出了一种结构的分析模型,以表征非线性扭曲变形关系。使用Ultimaker 3平台制造该结构的样品,其中基于弹性体的TPU 95A构建材料和PVA载体材料。通过拉伸实验验证了分析模型和有限元件,其中制造的样品达到60毫米的变形超过40mm的非线性轴向扭转。为了进一步表征结构的扭曲响应,晶格结构的关键设计参数变化和建模。通过拉伸弹性变形致动具有可靠性和复杂性降低的关键优点。由于这些优点,该技术在航空航天,生物医学和机器人领域具有潜在的应用。

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