Aragón J L, Quintero-Torres R, Domínguez-Juárez J L, Iglesias E, Ronda S, Montero de Espinosa F
Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Apartado Postal 1-1010, Querétaro 76230, Mexico.
Instituto de Tecnologías Físicas y de la Información "Leonardo Torres Quevedo", Consejo Superior de Investigaciones Científicas, Serrano 144, 28006 Madrid, Spain.
Ultrasonics. 2016 Sep;71:177-182. doi: 10.1016/j.ultras.2016.06.009. Epub 2016 Jun 25.
By using the principles behind phononic crystals, a periodic array of circular holes made along the polarization thickness direction of piezoceramic resonators are used to stop the planar resonances around the thickness mode band. In this way, a piezoceramic resonator adequate for operation in the thickness mode with an in phase vibration surface is obtained, independently of its lateral shape. Laser vibrometry, electric impedance tests and finite element models are used to corroborate the performances of different resonators made with this procedure. This method can be useful in power ultrasonic devices, physiotherapy and other external medical power ultrasound applications where piston-like vibration in a narrow band is required.
通过运用声子晶体背后的原理,沿压电陶瓷谐振器的极化厚度方向制作周期性排列的圆形孔,以抑制厚度模式带周围的平面共振。通过这种方式,可获得适用于厚度模式且振动表面同相的压电陶瓷谐振器,而与它的横向形状无关。利用激光测振、电阻抗测试和有限元模型来证实采用此工艺制作的不同谐振器的性能。该方法可应用于功率超声设备、物理治疗及其他需要窄带内活塞式振动的外部医用功率超声应用中。