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Single degree of freedom everting ring linkages with nonorientable topology

机译:具有非定向拓扑的单自由度外翻环链接

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摘要

Linkages are assemblies of rigid bodies connected through joints. They serve as the basis for force- and movement-managing devices ranging from ordinary pliers to high-precision robotic arms. Aside from planar mechanisms, like the well-known four-bar linkage, only a few linkages with a single internal degree of freedom—meaning that they can change shape in only one way and may thus be easily controlled—have been known to date. Here, we present “Möbius kaleidocycles,” a previously undiscovered class of single-internal degree of freedom ring linkages containing nontrivial examples of spatially underconstrained mechanisms. A Möbius kaleidocycle is made from seven or more identical links joined by revolute hinges. These links dictate a specific twist angle between neighboring hinges, and the hinge orientations induce a nonorientable topology equivalent to the topology of a 3π-twist Möbius band. Apart from having many technological applications, including perhaps the design of organic ring molecules with peculiar electronic properties, Möbius kaleidocycles raise fundamental questions about geometry, topology, and the limitations of mobility for closed loop linkages.
机译:链接是通过关节连接的刚体的装配体。它们是从普通钳子到高精度机械臂的力和运动管理设备的基础。迄今为止,除了平面机构(如众所周知的四连杆机构)外,只有很少的具有单个内部自由度的连杆机构-意味着它们只能以一种方式改变形状,因此很容易控制。在这里,我们介绍“莫比乌斯kaleidocycles”,这是以前未发现的单内部自由度环键类,其中包含空间上受约束的机制的重要例子。莫比乌斯万花筒由七个或更多相同的链节构成,并通过旋转铰链连接。这些链接规定了相邻铰链之间的特定扭转角,并且铰链方向引起了与 3 π 扭曲莫比乌斯乐队。除了具有许多技术应用(包括可能设计具有独特电子特性的有机环分子)以外,莫比乌斯万花筒还提出了有关几何形状,拓扑结构以及闭环连接的迁移率限制的基本问题。

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