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Design of 3D-printed assembly mechanisms based on special wooden joinery techniques and its application to a robotic hand

机译:基于特殊木细木工技术的3D打印装配机构设计及其在机械手中的应用

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Recently, it has become possible to easily design and fabricate robotic systems in the laboratory and at home due to the recent development of 3D printer technology. On the other hand, the strength of the plastic materials used in reasonably priced 3D printers and the accuracy of the printed parts are generally low. These problems affect the part-joining quality. Therefore, this paper describes a design method inspired by ancient Japanese wooden joinery techniques for assembling 3D-printed parts and presents the design of a robotic hand as its application. The joinery techniques use special shapes to assemble components and allow us to assemble the robotic hand without glue, screws or nails and to easily disassemble it.
机译:最近,由于3D打印机技术的最新发展,在实验室和家庭中轻松设计和制造机器人系统成为可能。另一方面,价格合理的3D打印机中使用的塑料材料的强度和打印零件的精度通常较低。这些问题影响零件的接合质量。因此,本文描述了一种受日本古代木工细木工技术启发的组装3D打印部件的设计方法,并介绍了机械手的设计及其应用。细木工技术使用特殊的形状来组装组件,并允许我们组装无需胶水,螺钉或钉子的机械手,并轻松拆卸它。

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