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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Design and Analysis of a Stiffness Adjustable Structure Using an Endoskeleton
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Design and Analysis of a Stiffness Adjustable Structure Using an Endoskeleton

机译:内骨骼刚度可调结构的设计与分析

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In this paper, we present a novel stiffness adjustable structure that changes its stiffness by pulling a tendon. It adopts an endoskeleton structure where rigid segments and compliant segments are alternately connected in series. The stiffness of this structure is controlled by compressing the compliant segments with an axial force. A tendon that runs through the endoskeleton and is fixed at the tip provides the axial compression force when pulled. We analyze the structure using the cylindrical isolation bearing model. The bending stiffness of the proposed structure was simulated and compared with experimental results. The structure can be stiffened approximately fifty-times the original stiffness. This stiffness adjustable structure can be used to increase the efficiency of a system that uses compliance, e.g., a robotic fish that uses a compliant fin for its propulsion system.
机译:在本文中,我们提出了一种新颖的可调节硬度的结构,该结构可通过拉动腱来改变其刚度。它采用了内部骨架结构,其中刚性段和柔性段交替交替连接。通过用轴向力压缩柔性段来控制该结构的刚度。穿过内骨骼并固定在尖端的肌腱在拉动时会提供轴向压缩力。我们使用圆柱隔离轴承模型来分析结构。模拟了该结构的弯曲刚度,并与实验结果进行了比较。该结构的刚度约为原始刚度的五十倍。这种刚度可调结构可用于提高使用顺应性的系统的效率,例如,将顺应性鳍用于其推进系统的机器人鱼。

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