Reconfigurable three-dimensional prototype system using digital materials

Keita Sekijima, Hiroya Tanaka
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引用次数: 5

Abstract

Digital materials are discrete elements such as LEGO Blocks that it can be a kind of reconfigurable 3D matters. There are two advantages of using digital material rather than a continuous material. Firstly, it is easy to change the form after shaping by assembling and disassembling the elements. Secondly, There is never that the error of the part impacts the whole form in the shaping because the elements can be connected exactly by the joint system. There are many researches of digital material focus on the modular connection by press fitting or bonding. Such a digital material can't be assembled and disassembled smoothly after shaped. In our research, we designed the digital material "Kelvin Block" (figure 1a) that specialized in smoothly reconfiguring, and we developed the machine "3D Assembler" (figure 1b) to arrange Kelvin Blocks automatically. The size of Kelvin Block is 40mmx40mmx40mm that is optimized to the volume of the joint system.
使用数字材料的可重构三维原型系统
数字材料是像乐高积木这样的离散元素,它可以是一种可重构的3D材料。使用数字材料比使用连续材料有两个优点。首先,通过组装和拆卸元件,可以很容易地改变成型后的形状。其次,在成形过程中,零件的误差永远不会影响到整体的形状,因为元件可以通过关节系统精确地连接起来。数字材料的研究主要集中在模数化的压接或粘接。这样的数字材料成型后无法顺利组装和拆卸。在我们的研究中,我们设计了专门用于顺利重新配置的数字材料“开尔文块”(图1a),并开发了自动排列开尔文块的机器“3D Assembler”(图1b)。开尔文块的尺寸为40mmx40mmx40mm,优化到关节系统的体积。
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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