A transverse gradient short fiber piezoelectric composite material and its preparation method
A piezoelectric composite material and piezoelectric composite technology, which are applied in the material selection of piezoelectric devices or electrostrictive devices, the manufacture/assembly of piezoelectric/electrostrictive devices, and the selection of device materials. Electric fiber polarization dead zone and other problems, to achieve the effect of precise and controllable structure size, simple and easy process, and low requirements
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[0038] Please refer to figure 2 with image 3 , the embodiment of the present invention also provides a method for preparing a transverse gradient short fiber piezoelectric composite material, comprising the following steps:
[0039] S1. Alternately stacking multiple piezoelectric thin layers 11 and multiple polymer thin layers 22 to obtain a piezoelectric composite structure 5. Both sides of each polymer thin layer 22 are respectively connected to a piezoelectric thin layer 11, and multiple The width of the piezoelectric thin layer 11 changes in a gradient.
[0040] For the convenience of subsequent description, the length direction along the plane where the piezoelectric thin layer 11 is located is defined as the first direction, and the width direction along the plane where the piezoelectric thin layer 11 is located is defined as the second direction.
[0041] Specifically, a plurality of piezoelectric thin layers 11 and a plurality of polymer thin layers 22 are spliced ...
Embodiment 1
[0055] This embodiment provides a method for preparing a transversely gradient short fiber piezoelectric composite material. PZT is used as the piezoelectric phase and epoxy resin is used as the polymer phase. The method of the present invention is used to prepare the transversely gradient short fiber reinforced piezoelectric composite material. The specific process as follows:
[0056] 1. Using PZT ceramics and epoxy resin as raw materials, the lamination-cutting method is used to prepare such as figure 2 The piezoelectric composite structure 5 shown in the above, wherein the number of piezoelectric thin layers 11 is 9, the initial thickness of piezoelectric thin layers 11 is 0.2 mm, and the thickness increment is 0.05 mm; the number of polymer thin layers 22 is 8, and the thickness is 0.2 mm; the thickness of the piezoelectric composite structure 5 is the sum of the thicknesses of all piezoelectric thin layers 11 and polymer thin layers 22, which is 5.2 mm; the thickness of...
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