Claims
- 1. An ultrasonic transducer comprising a transducer body having a major front surface for radiating ultrasonic energy to a propagation medium, said transducer comprising a piezoelectric member having a curved shape including a curved front surface, and said transducer further including a graded frequency region created by grinding of the curved front surface of the piezoelectric element along a grinding plane, and defined by the area of intersection of the grinding plane and the front surface of the curved piezoelectric member.
- 2. An ultrasonic transducer according to claim 1 wherein the piezoelectric component comprises a composite material comprising a ceramic embedded in polymer matrix.
- 3. An ultrasonic transducer according to claim 1 wherein the transducer comprises a single element transducer.
- 4. An ultrasonic transducer according to claim 1 wherein the transducer comprises an annular array.
- 5. An ultrasonic transducer according to claim 1 wherein the transducer comprises a linear array.
- 6. An ultrasonic transducer according to claim 1 wherein said transducer comprises a phased array.
- 7. An ultrasonic transducer according to claim 1 wherein the transducer comprises a 1.5 dimensional array.
- 8. An ultrasonic transducer according to claim 1 wherein said transducer comprises a matrix array.
- 9. An ultrasonic transducer according to claim 1 wherein the piezoelectric member has a total major front surface, and the area of intersection between the grinding plane and the major front surface of piezoelectric member is less than the total major front surface of the piezoelectric member.
- 10. An ultrasonic transducer according to claim 1 wherein the piezoelectric member has a total major front surface, and the area of intersection between the grinding plane and the major front surface of piezoelectric member corresponds to the total major front surface of the piezoelectric member.
- 11. An ultrasonic broadband composite transducer having graded frequency characteristics, said transducer comprising:
a composite member composed of vertical ceramic pillars distributed with progressively increasing spacing therebetween, as viewed in side elevation between the center of composite member and the outermost edge thereof, so that the longitudinal velocity characteristics of the transducer are shifted an amount proportional to the ceramic volume ratio of the composite member.
- 12. A method for manufacturing frequency graded ultrasonic transducers according to claim 11 wherein at least one major face of the composite member is curved so that the composite member has a graded thickness.
- 13. A method for manufacturing frequency graded ultrasonic transducers according to claim 11 wherein the widths of the ceramic pillars decrease between the center of transducer and the outermost edge.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of application Ser. No. 09/810,947 filed on Mar. 20, 2001.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09810947 |
Mar 2001 |
US |
Child |
10390764 |
Mar 2003 |
US |