The novel synthesis of mechanisms for continuous origami based on the topological graph theory

IF 4.5 1区 工程技术 Q1 ENGINEERING, MECHANICAL
Zhihao Xia , Chunxu Tian , Luquan Li , Dan Zhang
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引用次数: 0

Abstract

Crease design is one of the most significant problems in continuous origami mechanisms. In this paper, a novel synthesis method is proposed to create creases. First, the basic operations of screw motion are described based on screw theory. Then, an innovative approach named loop splitting is demonstrated. This approach is then employed to analyse the motion output of single-loop and multiloop parallel mechanisms through the step-by-step disassembly of branches. According to the idea of loop splitting, two theorems used to design continuous origami mechanisms are proposed and proven. Furthermore, the categories of continuous origami mechanisms are described in this paper, and splicing design requirements for the initial origami units are proposed. In addition, three different categories of origami mechanisms based on the proposed design method are introduced: single-vertex with 4 creases, single-vertex with 6 creases, and combinations of single-vertex with 4 and 6 creases. Finally, the efficiency of the newly presented synthesis method is demonstrated via the construction of prototypes.
基于拓扑图理论的连续折纸机制的新合成
折痕设计是连续折纸机构中最重要的问题之一。本文提出了一种新颖的折痕合成方法。首先,基于螺杆理论描述了螺杆运动的基本操作。然后,演示了一种名为 "分环 "的创新方法。然后,采用这种方法通过逐步分解分支来分析单回路和多回路并联机构的运动输出。根据拆环思想,提出并证明了两个用于设计连续折纸机构的定理。此外,本文还描述了连续折纸机构的类别,并提出了初始折纸单元的拼接设计要求。此外,根据所提出的设计方法,介绍了三种不同类别的折纸机构:带有 4 条折痕的单翼机构、带有 6 条折痕的单翼机构以及带有 4 条和 6 条折痕的单翼机构组合。最后,通过制作原型展示了新提出的合成方法的效率。
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来源期刊
Mechanism and Machine Theory
Mechanism and Machine Theory 工程技术-工程:机械
CiteScore
9.90
自引率
23.10%
发文量
450
审稿时长
20 days
期刊介绍: Mechanism and Machine Theory provides a medium of communication between engineers and scientists engaged in research and development within the fields of knowledge embraced by IFToMM, the International Federation for the Promotion of Mechanism and Machine Science, therefore affiliated with IFToMM as its official research journal. The main topics are: Design Theory and Methodology; Haptics and Human-Machine-Interfaces; Robotics, Mechatronics and Micro-Machines; Mechanisms, Mechanical Transmissions and Machines; Kinematics, Dynamics, and Control of Mechanical Systems; Applications to Bioengineering and Molecular Chemistry
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