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中性稳定壳体的多参数驱动:一种灵活的无齿轮电机。

Multi-parameter actuation of a neutrally stable shell: a flexible gear-less motor.

作者信息

Hamouche W, Maurini C, Vidoli S, Vincenti A

机构信息

Sorbonne Universités, UPMC Univ Paris 06, CNRS, UMR 7190, Institut Jean Le Rond d'Alembert, F-75005 Paris, France.

Sapienza Università di Roma, Dip. di Ingegneria Strutturale e Geotecnica, Via Eudossiana 18, 00184 Rome, Italy.

出版信息

Proc Math Phys Eng Sci. 2017 Aug;473(2204):20170364. doi: 10.1098/rspa.2017.0364. Epub 2017 Aug 16.

Abstract

We have designed and tested experimentally a morphing structure consisting of a neutrally stable thin cylindrical shell driven by a multi-parameter piezoelectric actuation. The shell is obtained by plastically deforming an initially flat copper disc, so as to induce large isotropic and almost uniform inelastic curvatures. Following the plastic deformation, in a perfectly isotropic system, the shell is theoretically neutrally stable, having a continuous set of stable cylindrical shapes corresponding to the rotation of the axis of maximal curvature. Small imperfections render the actual structure bistable, giving preferred orientations. A three-parameter piezoelectric actuation, exerted through micro-fibre-composite actuators, allows us to add a small perturbation to the plastic inelastic curvature and to control the direction of maximal curvature. This actuation law is designed through a geometrical analogy based on a fully nonlinear inextensible uniform-curvature shell model. We report on the fabrication, identification and experimental testing of a prototype and demonstrate the effectiveness of the piezoelectric actuators in controlling its shape. The resulting motion is an apparent rotation of the shell, controlled by the voltages as in a 'gear-less motor', which is, in reality, a precession of the axis of principal curvature.

摘要

我们设计并通过实验测试了一种变形结构,它由一个由多参数压电驱动的中性稳定薄圆柱壳组成。该圆柱壳是通过对一个初始平坦的铜盘进行塑性变形而获得的,以便产生大的各向同性且几乎均匀的非弹性曲率。在塑性变形之后,在一个完全各向同性的系统中,理论上该圆柱壳是中性稳定的,具有一组连续的稳定圆柱形状,对应于最大曲率轴的旋转。小的缺陷使得实际结构具有双稳态,给出了优先取向。通过微纤维复合致动器施加的三参数压电驱动,使我们能够对塑性非弹性曲率添加一个小扰动,并控制最大曲率的方向。这种驱动规律是通过基于完全非线性不可伸长均匀曲率壳模型的几何类比设计的。我们报告了一个原型的制造、识别和实验测试,并证明了压电致动器在控制其形状方面的有效性。所产生的运动是壳的明显旋转,由电压控制,就像一个“无齿轮电机”,实际上是主曲率轴的进动。

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