Piezoelectric material and magnetoelectric composite
A technology of magnetoelectric composite materials and piezoelectric materials, applied in the selection of materials, piezoelectric/electrostrictive/magnetostrictive devices, circuits, etc., can solve problems such as low magnetoelectric effect, human body and environmental hazards, and achieve Strong magnetoelectric effect, strong resonance magnetoelectric effect, and the effect of increasing the magnetoelectric voltage coefficient
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Embodiment 1
[0021] Piezoelectric material preparation:
[0022] 1. Preparation of precursor powder by sol-gel method: prepare 0.5% mol chromium (Cr) doped barium titanate (BaTiO3) precursor powder. The raw material used is barium carbonate (BaCO 3 ), titanium dioxide (TiO 2 ), chromium trioxide (Cr 2 o 3 ) and citric acid CIT (C 6 h 8 o 7 ·H 2 O). The molar ratio of barium carbonate, titanium dioxide, chromium trioxide and citric acid is 1:0.995:0.0025:3.2. After fully stirring the raw materials in distilled water, place them on a heating magnetic stirrer, heat and stir for several hours, until the solution in the beaker becomes a uniformly fused translucent liquid. Place the beaker in a drying oven and dry it for several hours until the water is completely evaporated into a solid state. The solid material was ground into fine powder, and placed in a muffle furnace for pre-sintering at 400°C for 6 hours to obtain the desired precursor powder of 0.5% molCr doped barium titanate. ...
Embodiment 2
[0028] Piezoelectric material preparation:
[0029] 1. Preparation of precursor powder by sol-gel method: the raw material used is barium carbonate (BaCO 3 ), titanium dioxide (TiO 2 ), chromium trioxide (Cr 2 o 3 ) and citric acid CIT (C 6 h 8 o 7 ·H 2 O). The molar ratio of barium carbonate, titanium dioxide, chromium trioxide and citric acid is 1:0.99:0.005:3.2. After fully stirring the raw materials in distilled water, place them on a heating magnetic stirrer, heat and stir for several hours, until the solution in the beaker becomes a uniformly fused translucent liquid. Place the beaker in a drying oven and dry it for several hours until the water is completely evaporated into a solid state. The solid material was ground into fine powder, and placed in a muffle furnace for pre-sintering at 450° C. for 6.5 hours to obtain the desired precursor powder of 1.0% molCr doped barium titanate.
[0030]2. Tablet pressing and sintering: Press the powder on a tablet press. ...
Embodiment 3
[0037] Piezoelectric material preparation:
[0038] 1. Preparation of precursor powder by sol-gel method: the raw material used is barium carbonate (BaCO 3 ), titanium dioxide (TiO 2 ) and chromium trioxide (Cr 2 o 3 ) and complexing agent citric acid CIT (C 6 h 8 o 7 ·H 2 O). The molar ratio of barium carbonate, titanium dioxide, chromium trioxide and citric acid is 1:0.985:0.0075:3. After fully stirring the raw materials in distilled water, place them on a heating magnetic stirrer, heat and stir for several hours, until the solution in the beaker becomes a uniformly fused translucent liquid. Place the beaker in a drying oven and dry it for several hours until the water is completely evaporated into a solid state. The solid material was ground into fine powder, and placed in a muffle furnace for pre-calcination at 400°C for 6 hours to obtain the desired precursor powder of 1.5% molCr doped barium titanate.
[0039] 2. Tablet pressing and sintering: Press the powder ...
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