首页> 外文会议>ASME International Design Engineering Technical Conferences >MECHANICS OF THE WHOLE SKIN LOCOMOTION MECHANISM CONCENTRIC SOLID TUBE MODEL: THE EFFECTS OF GEOMETRY AND FRICTION ON THE EFFICIENCY AND FORCE TRANSMISSION CHARACTERISTICS
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MECHANICS OF THE WHOLE SKIN LOCOMOTION MECHANISM CONCENTRIC SOLID TUBE MODEL: THE EFFECTS OF GEOMETRY AND FRICTION ON THE EFFICIENCY AND FORCE TRANSMISSION CHARACTERISTICS

机译:整个皮肤运动机制的机制同心固体管模型:几何形状与摩擦对效率和力传递特性的影响

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In this paper, the effects of cross-sectional geometry and friction on the mechanical advantage and efficiency of the whole skin locomotion (WSL) mechanism concentric solid tube (CST) model are presented. WSL is a novel locomotion mechanism for mobile robots, which is inspired by the motility mechanisms of single celled organisms that use cytoplasmic streaming to generate pseudopods for locomotion. It works by way of an elongated toroid which turns itself inside out in a single continuous motion, effectively generating the overall motion of the cytoplasmic streaming ectoplasmic tube in amoebae. WSL can be considered as a new class of mechanism that converts the expanding and contracting motion of rings to an everting motion of the body.A brief description of the WSL mechanism is presented first, followed by the mechanics of a single and multiple actuator rings over a CST showing the relationship between the input ring tension force and the output propulsion force for a quasi-static case. Then a study of the force transmission characteristics is presented by studying the effects of cross-section geometry and friction on the efficiency and mechanical advantage of a single actuator ring over a semicircular and composite cross section CST.
机译:本文介绍了横截面几何形状和摩擦对整个皮肤运动(WSL)机构同心固体管(CST)模型的机械优势和效率的影响。 WSL是移动机器人的新型机置机制,其受到使用细胞质流的单细胞生物的动力机制的启发,该机制使用细胞质流媒体来产生用于运动的假偶。它通过细长的环形方式起作用,该环形是在单个连续运动中旋转内部的,有效地产生了amoebae中细胞质流卵形管的总体运动。 WSL可以被视为一种新的机制,将环的扩展和收缩运动转换为身体的永远运动。首先提出了对WSL机制的简要描述,然后是单个和多个执行器环的机械磁带A CST表示准静态壳体的输入环张力与输出推进力之间的关系。然后通过研究横截面几何形状和摩擦对半致动器环的效率和机械优势在半圆形和复合横截面CST上的效果和机械优势来提出对力传输特性的研究。

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