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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Two-Configuration Synthesis of Origami-Guided Planar, Spherical and Spatial Revolute-Revolute Chains
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Two-Configuration Synthesis of Origami-Guided Planar, Spherical and Spatial Revolute-Revolute Chains

机译:折纸引导的平面,球形和空间旋转-旋转链的两种构型综合

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This paper presents a topological and dimensional kinematic synthesis methodology that can be used to constrain the movement of kinematic planar, spherical, and spatial revolute-revolute dyads (RR dyads). The approach is inspired by a subcategory of origami called rigid origami, which deals with highly overconstrained spatial deployable linkages. An example is the Miura-ori folding pattern used to deploy solar panels in space. In addition to this application, this linkage also provides an interesting way to constrain general RR dyads so that they perform a single DOF motion. Here, these mechanisms are called origami-guided RR chains, and computer aided design models (CAD) of the planar, spherical and spatial type are presented. The dimensional synthesis approach allows us to constrain consecutive links using R or C joints so that the links satisfy two arbitrarily predefined task positions. This leads to what we call the two-configuration synthesis of linkages, and we examine a concrete synthesis procedure for an origami-guided spatial RR chain, which is also built using rapid prototyping. The procedure actually combines the two-configuration synthesis approach with the synthesis of the spatial TS dyad, and the paper provides an outlook on further ways to apply the two-configuration synthesis and also to synthesize the origami-guided RR chains.
机译:本文提出了一种拓扑和维运动学综合方法论,可用于约束运动学平面,球形和空间革命性革命性二分体(RR dyads)的运动。该方法受折纸子类别(称为刚性折纸)的启发,该子类别处理高度受限的空间可部署链接。一个示例是Miura-ori折叠模式,用于在太空中部署太阳能电池板。除此应用程序外,此链接还提供了一种有趣的方法来约束一般的RR二元组,以便它们执行单个DOF运动。在这里,这些机制称为折纸导向的RR链,并介绍了平面,球形和空间类型的计算机辅助设计模型(CAD)。尺寸综合方法允许我们使用R或C关节约束连续的链接,以使链接满足两个任意预定的任务位置。这导致了所谓的链接的两种配置合成,并且我们研究了折纸引导的空间RR链的具体合成过程,该过程也使用快速原型制作而成。该程序实际上将两种配置的合成方法与空间TS dyad的合成相结合,并且本文为应用两种配置的合成以及折纸引导的RR链的进一步应用提供了展望。

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