Quasi-self focusing high intensity and large power ultrasonic transducer
A quasi-self focusing high strength large power ultrasonic transducer including a backing and a plurality of piezo-electric crystal sheets is disclosed. The backing has a double layer structure with an air cavity between the layers. At least four piezoelectric crystal sheets of the plurality of piezo-electric crystal sheets are adhered on an inside focusing face of the backing with a protective layer covering the surface of the sheets.
1. A quasi-self focusing ultrasonic transducer including
a backing; and
a plurality of piezo-electric crystal sheets,
wherein:
the backing has a double layer structure and there is an air cavity between the layers,
at least four piezo-electric crystal sheets of the plurality of piezo-electric crystal sheets are adhered on an inside focusing face of the backing,
a protective layer covers a surface of the sheets;
said backing is made of a material with low loss and high acoustic resistance;
the inside focusing face of the backing is a concave spherical zone surface;
a thickness of an inner layer of the backing is an integral multiple ±35% of ½ of a wavelength of a sound wave in the backing material under a working frequency emitted by the piezo-electric crystal sheets; and
the plurality of piezo-electric crystal sheets comprise between 4 and 24 piezo-electric crystal sheets of similar electroacoustical characteristics, with a radius of curvature at all points substantially identical to that of corresponding points of the inside focusing face of the backing, the between 4 and 24 piezo-electric crystal sheets being adhered on the inside focusing face of the backing.
2. The ultrasonic transducer of claim 1 , wherein: a caliber of the concave spherical zone surface of the inside focusing face of the backing is between 160 and 200 mm, and wherein the plurality of piezo-electric crystal sheets comprise between 4 and 8 piezo-electric crystal sheets.
3. The ultrasonic transducer of claim 1 , wherein: a caliber of the concave spherical zone surface of the inside face of the backing is between 200 and 500 mm and wherein the plurality of piezo-electric crystal sheets comprise between 6 and 24 piezo-electric crystal sheets.
4. The ultrasonic transducer of claim 3 , further comprising a hole on a central spherical zone surface of the backing for providing cooling water for a working face.
5. The ultrasonic transducer of claim 3 , further comprising a first hole for providing power feed to the plurality of piezo-electric crystal sheets on a central spherical zone surface of the backing and a second hole for providing cooling water for a working face on the central spherical zone surface of the backing.
6. The ultrasonic transducer of claim 2 , further comprising a hole on a central spherical zone surface of the backing for providing cooling water for a working face.
7. The ultrasonic transducer of claim 2 , further comprising a first hole for providing power feed to the plurality of piezo-electric crystal sheets on a central spherical zone surface of the backing and a second hole for providing cooling water for a working face on the central spherical zone surface of the backing.
8. The ultrasonic transducer of claim 1 , further comprising a hole on a central spherical zone surface of the backing for providing cooling water for a working face.
9. The ultrasonic transducer of claim 1 , further comprising a first hole for providing power feed to the plurality of piezo-electric crystal sheets on a central spherical zone surface of the backing and a second hole for providing cooling water for a working face on the central spherical zone surface of the backing.