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Processing method of piezoelectric composite material

A technology of piezoelectric composite materials and piezoelectric materials, applied in the manufacture/assembly of piezoelectric/electrostrictive devices, piezoelectric devices/electrostrictive devices, piezoelectric/electrostrictive/magnetostrictive devices, etc. It can solve the problems of failure of material performance to meet expectations, piezoelectric phase collapse, high scrap rate, etc., meet performance requirements and reduce the difficulty of manufacturing process, reduce cumulative errors, and improve processing accuracy.

Pending Publication Date: 2021-07-02
广州多浦乐电子科技股份有限公司
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AI Technical Summary

Problems solved by technology

[0004] The cutting-filling method is mainly used to prepare piezoelectric composite materials with a frequency of 0.5-10MHz. For the processing of piezoelectric composite materials above 15MHz, due to the thin blade of the cutting knife, affected by the processing distance, processing depth and processing method, it is easy to cause Defects such as piezoelectric phase collapse, fracture, and irregular grooving lead to a high scrap rate. Even if the above defects do not occur, the material properties may fail to meet expectations due to mechanical stress damage and other reasons
Therefore, the existing cut-fill method cannot meet the performance and consistency processing requirements of high-frequency array transducers, which seriously restricts the production of high-frequency array transducers

Method used

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  • Processing method of piezoelectric composite material
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  • Processing method of piezoelectric composite material

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Embodiment Construction

[0046] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments, so that those skilled in the art can better understand the present invention and implement it, but the examples given are not intended to limit the present invention.

[0047] Such as figure 1 Shown is a flow chart of an embodiment of the processing method of the piezoelectric composite material of the present invention. The processing method of the piezoelectric composite material of the present embodiment comprises the following steps:

[0048] 1) Lay the second surface of the piezoelectric material on the plane; the length and width of the piezoelectric material in this embodiment are ≥30*30mm, and the length and width of the first and second surfaces are respectively the length and width of the piezoelectric material , that is, the first surface and the second surface are respectively two parallel surfaces opposite to the piezoelectric mater...

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Abstract

The invention discloses a processing method of a piezoelectric composite material. The processing method comprises the following steps: 1) attaching a second surface of the piezoelectric material to a plane; 2) cutting the first surface of the piezoelectric material and forming a first cutting groove on the first surface; (3) filling the first cutting groove with a polymer, and curing the polymer; (4) taking down the piezoelectric material from the plane; (5) attaching the first face of the piezoelectric material to the plane; (6) cutting the second face of the piezoelectric material along the first cutting groove, a second cutting groove is formed in the second face, so that the first cutting groove and the second cutting groove are communicated; (7) filling the second cutting groove with a polymer, and curing the polymer; and 8) taking down the piezoelectric material from the plane to obtain the piezoelectric composite material. The processing method of the piezoelectric composite material can meet the processing requirements of array piezoelectric materials and the requirements of improving the yield and consistency, and has the advantages of being simple and low in cost.

Description

technical field [0001] The invention belongs to the technical field of general piezoelectric devices, in particular to a processing method of piezoelectric composite materials. Background technique [0002] Piezoelectric ultrasonic transducer is the core component of ultrasonic nondestructive testing, which realizes the conversion between electrical energy and acoustic energy through the piezoelectric effect of piezoelectric elements. Piezoelectric elements are generally divided into piezoelectric ceramics, piezoelectric crystals, piezoelectric polymers, and piezoelectric composites. Piezoelectric composite materials refer to functional materials composed of piezoelectric ceramics and polymers combined in a certain way. Since piezoelectric composite materials have the advantages of both piezoelectric phase and polymer phase, they are widely used in industrial non-destructive testing, medical Ultrasonic imaging and other fields have important applications, among which 1-3 pi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01L41/33H01L41/335H01L41/08H10N30/08H10N30/00H10N30/085
CPCH10N30/00H10N30/08H10N30/085
Inventor 蔡庆生邓宇骆琦吴俊伟
Owner 广州多浦乐电子科技股份有限公司
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