An omnidirectional shear horizontal wave transducer based on ring array of face-shear (d24) piezoelectric ceramics
arXiv:1606.05842 · doi:10.1016/j.ultras.2016.10.011
Abstract
The non-dispersive fundamental shear horizontal (SH0) wave in plate-like structures is of practical importance in non-destructive testing (NDT) and structural health monitoring (SHM). Theoretically, an omnidirectional SH0 transducer phased array system can be used to inspect defects in a large plate in the similar manner to the phased array transducers used in medical B-scan ultrasonics. However, very few omnidirectional SH transducers have been proposed so far. In this work, an omnidirectional SH wave piezoelectric transducer (OSH-PT) was proposed which consists of a ring array of twelve face-shear (d24) trapezoidal PZT elements. Each PZT element can produce face-shear deformation under applied voltage, resulting in circumferential shear deformation in the OSH-PT and omnidirectional SH waves in the hosting plate. Both finite element simulations and experiments were conducted to examine the performance of the proposed OSH-PT. Experimental testing shows that the OSH-PT exhibits good omnidirectional properties, on matter it is used as a SH wave transmitter or a SH wave receiver. This work may greatly promote the applications of SH waves in NDT and SHM.
15 pages, 8 figures
References in corpus (3)
- Excitation and reception of pure shear horizontal waves by using face-shear d24 mode piezoelectric wafers
- Excitation of fundamental shear horizontal wave by using face-shear (d36) piezoelectric ceramics
- Realization of face-shear piezoelectric coefficient d36 in PZT ceramics via ferroelastic domain engineering
Cited by in corpus (4)
- A nearly perfect omnidirectional shear-horizontal (SH) wave transducer based on a thickness poled, thickness-shear (d15) piezoelectric ring
- In-plane selective excitation of arbitrary vibration modes using thickness-shear (d15) piezoelectric transducers
- A practical omni-directional SH wave transducer for structural health monitoring based on two thickness-poled piezoelectric half-rings
- Controllable SH wave radiation patterns generated by finite-size face-shear piezoelectric transducers for structural health monitoring