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Self-bending elastic waves and obstacle circumventing in wireless power transfer.

Authors :
Tol, S.
Xia, Y.
Ruzzene, M.
Erturk, A.
Source :
Applied Physics Letters. 4/17/2017, Vol. 110 Issue 16, p1-5. 5p.
Publication Year :
2017

Abstract

We demonstrate self-bending of elastic waves along convex trajectories by means of geometric and phased arrays. Potential applications include ultrasonic imaging and manipulation, wave focusing, and wireless power transfer around obstacles. The basic concept is illustrated through a geometric array, which is designed to implement a phase delay profile among the array elements that leads to self-bending along a specified circular trajectory. Experimental validation is conducted for the lowest asymmetric Lamb wave mode in a thin plate over a range of frequencies to investigate the bandwidth of the approach. Experiments also illustrate the functionality of the array as a transmitter to deliver elastic wave energy to a receiver/harvester located behind a large obstacle for electrical power extraction. It is shown that the trajectory is not distorted by the presence of the obstacle and circumventing is achieved. A linear phased array counterpart of the geometric array is then constructed to illustrate the concept by imposing proper time delays to the array elements, which allows the generation of different trajectories using the same line source. This capability is demonstrated by tailoring the path diameter in the phased array setting, which offers the flexibility and versatility to induce a variety of convex trajectories for self-bending elastic waves. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00036951
Volume :
110
Issue :
16
Database :
Academic Search Index
Journal :
Applied Physics Letters
Publication Type :
Academic Journal
Accession number :
122611214
Full Text :
https://doi.org/10.1063/1.4981251