Device for emitting torsional ultrasonic waves and transducer comprising said device
The invention relates to a wave-emitting device comprising an electromechanical actuator stimulated by a signal generator that allows it to generate torsional waves with a higher amplitude, and to an ultrasonic transducer comprising said device. The use of said devices allows the reconstruction of the structural characteristics of the materials subject to the waves generated by the emitter device.
1. A transducer, comprising:
an emitter device for emitting torsional ultrasonic waves, the emitter device comprising:
an electromechanical actuator;
a contact element; and
an electrical signal generator connected to the electromechanical actuator which is, in turn, attached to the contact element that comes into contact with a specimen, such that when the actuator receives electrical signals, it induces rotational movement of the contact element, and when said contact element comes into contact with the specimen, it induces torsional ultrasonic waves that go through said specimen wherein the contact element has a frustoconical shape including a smaller base attached to the electromechanical actuator and a larger base arranged at a distal end of the transducer and configured to come into contact with the specimen;
a proximal ring and a distal ring made from a non-conducting material; and
an attenuating element fixed to an outer face of the proximal ring that is farthest away from an area where the contact element contacts the specimen.
2. The transducer of claim 1 , further comprising a Faraday cage configured to cover the electromechanical actuator and eliminate or reduce electronic noise.
3. The transducer of claim 1 , further comprising two or more piezoelectric elements located equidistant from one another and placed between the proximal ring and the distal ring for receiving a signal that has passed through the specimen.
4. The transducer of claim 3 , wherein a polarization of the two or more piezoelectric elements is perpendicular to an axis of rotation of the proximal ring and of the distal ring and in a radial direction relative to the axis of rotation of the proximal ring and of the distal ring.
5. The transducer of claim 1 , wherein an axis of rotation of the proximal ring and of the distal ring coincides with an axis of rotation of the electromechanical actuator.
6. The transducer of claim 1 , wherein an outer face of the distal ring and a surface of the contact element that comes into contact with the specimen are located on a same plane.
7. A method for emitting torsional waves using the transducer of claim 1 , the method comprising stimulating the electromechanical actuator using an electrical signal produced by the electrical signal generator.
8. The method according to claim 7 , wherein the electrical signal used for stimulating the electromechanical actuator is an oscillating signal.
9. The method according to claim 8 , wherein the electrical signal used for stimulating the electromechanical actuator is a sinusoidal signal.
10. The method according to claim 8 , wherein the electrical signal used for stimulating the electromechanical actuator is a sine signal.
11. The method of claim 7 , wherein the method further comprises in vitro reconstruction of mechanical properties of the specimen.
12. The transducer of claim 1 , wherein the attenuating element comprises an attenuating resin.