计算机科学
3D打印
剪切(物理)
紧固件
过程(计算)
个性化
制作
工程制图
背景(考古学)
机械工程
人机交互
工程类
医学
古生物学
替代医学
岩土工程
病理
万维网
生物
操作系统
作者
Lingyun Sun,Deying Pan,Yuyang Zhang,Hongyi Hu,Junzhe Ji,Yue Tao,Shanghua Lou,Boyi Lian,Yitao Fan,Ye Tao,Guanyun Wang
标识
DOI:10.1145/3613904.3642906
摘要
Touch fastening structures are widely used to quickly assemble and disassemble an object with multiple parts. However, such structures are under-explored in the context of additive manufacturing for personal fabrication. We proposed Touch-n-Go, a method for designing touch-fastening structures with customizable mechanical properties such as holding capacities or shearing strength. Additionally, the customization of fastener patterns enables both static and dynamic connections, and the dynamic connections grant the freedom of rotation and translation. To facilitate the customization process, we developed a design tool that allows the integration of fastening structures on the surface of a 3D-printed object. Furthermore, we validated the fastening properties of Touch-n-Go through a series of experiments, and the result exhibits performances that match or even surpass off-the-shelf fasteners. Finally, we demonstrated the implementation of Touch-n-Go through a collection of applications.
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