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通过弹性能量释放实现蜿蜒运动。

Serpentine locomotion through elastic energy release.

作者信息

Dal Corso F, Misseroni D, Pugno N M, Movchan A B, Movchan N V, Bigoni D

机构信息

DICAM-University of Trento, via Mesiano 77, Trento, Italy.

Laboratory of Bio-Inspired and Graphene Nanomechanics, via Mesiano 77, Trento, Italy.

出版信息

J R Soc Interface. 2017 May;14(130). doi: 10.1098/rsif.2017.0055.

Abstract

A model for serpentine locomotion is derived from a novel perspective based on concepts from configurational mechanics. The motion is realized through the release of the elastic energy of a deformable rod, sliding inside a frictionless channel, which represents a snake moving against lateral restraints. A new formulation is presented, correcting previous results and including situations never analysed so far, as in the cases when the serpent's body lies only partially inside the restraining channel or when the body has a muscle relaxation localized in a small zone. Micromechanical considerations show that propulsion is the result of reactions tangential to the frictionless constraint and acting on the snake's body, a counter-intuitive feature in mechanics. It is also experimentally demonstrated that the propulsive force driving serpentine motion can be directly measured on a designed apparatus in which flexible bars sweep a frictionless channel. Experiments fully confirm the theoretical modelling, so that the presented results open the way to exploration of effects, such as variability in the bending stiffness or channel geometry or friction, on the propulsive force of snake models made up of elastic rods.

摘要

一种基于构型力学概念的全新视角推导出了蛇形运动模型。该运动通过一根可变形杆的弹性能量释放来实现,该杆在无摩擦通道内滑动,此通道代表一条在侧向约束下移动的蛇。提出了一种新的公式,修正了先前的结果,并涵盖了迄今从未分析过的情况,比如蛇的身体仅部分位于约束通道内,或者身体在小区域内有肌肉松弛的情况。微观力学分析表明,推进力是与无摩擦约束相切并作用于蛇身体上的反作用力的结果,这在力学中是一个违反直觉的特征。实验还表明,可以在一个设计好的装置上直接测量驱动蛇形运动的推进力,在该装置中柔性杆扫过一个无摩擦通道。实验充分证实了理论模型,因此所呈现的结果为探索诸如弯曲刚度、通道几何形状或摩擦力的变化等因素对由弹性杆构成的蛇模型推进力的影响开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9bc/5454295/286d33154993/rsif20170055-g1.jpg

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