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Development of a Manufacturing Method for Truss Core Panels Based on Origami-Forming

机译:基于折纸成型的桁架核心板制造方法的开发

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Sandwich panels, for example, honeycomb structure, are widely used in various stages because they are lightweight and have high stiffness. Recently, an origami structure called truss core panel (TCP) has become known as a lightweight structure that has the same bending stiffness and better aspects in shear strength and in-plane compressive load than honeycomb panel. However, there are some difficulties in forming the TCP in general. In this study, a new forming process for TCP based on origami-forming is developed. In particular, the TCP is partitioned into several parts that can be developed into 2D crease patterns. After that, blanks of material are cut in the shape of these crease patterns and are formed by a robot system to get the desired 3D shape. In this paper, a partition method by dividing the TCP into pyramid cells and sheet plate is presented, which allows for the manufacture of a wider range of structure than before. Tool arrangement for a robot device and a countermeasure for springback are considered. By applying an origami unfolding technique, an improvement in the partition method is proposed by dividing the TCP into cell rows, and then searching for a crease pattern in order to fold that cell row. The cutting method of every cell is modified to reduce the number of facets, thereby simplifying the process. Finally, a crease pattern based on this new cutting method is presented for producing cell rows with any given number of cells.
机译:夹心板,例如蜂窝结构,由于其重量轻且具有高刚度而被广泛用于各个阶段。近来,被称为桁架芯板(TCP)的折纸结构已经成为一种轻质结构,其具有与蜂窝板相同的弯曲刚度,并且在剪切强度和平面内压缩载荷方面具有更好的方面。但是,总体上形成TCP存在一些困难。在这项研究中,开发了一种新的基于折纸成型的TCP成型工艺。特别是,TCP分为几个部分,可以将其开发为2D折痕模式。之后,将材料的毛坯切割成这些折痕图案的形状,并由机器人系统形成以获得所需的3D形状。在本文中,提出了一种通过将TCP分为金字塔形单元和薄板的分区方法,该方法允许制造比以前更广泛的结构。考虑了用于机器人装置的工具布置和回弹的对策。通过应用折纸展开技术,提出了一种改进分区方法的方法,即将TCP分为多个单元行,然后搜索折痕模式以折叠该单元行。修改了每个单元的切割方法以减少切面的数量,从而简化了过程。最后,提出了一种基于这种新切割方法的折痕图案,用于产生具有任意给定数量的单元格的单元格行。

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