Lead-free ceramic material with high energy storage and charge-discharge performance and preparation method thereof
A technology of charge and discharge performance and ceramic materials, applied in the field of ceramic materials and their preparation, can solve the problems of low breakdown electric field strength, large residual polarization strength, low energy storage density, etc., and achieve good temperature stability and frequency stability. , good stability, small loop area effect
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[0046] The preparation method of the lead-free high energy storage and charge-discharge performance ceramic material of the present invention comprises the following steps:
[0047] (1) According to chemical formula (1-x) (Na 0.5 Bi 0.5 ) 0.7 Sr 0.3 TiO 3 -xSr(Ti 0.85 Zr 0.15 )O 3 will analyze pure SrCO 3 、Na 2 CO 3 、TiO 2 , ZrO 2 and Bi 2 o 3 The ingredients, where x represents the mole fraction, and 0.10≤x≤0.40, use absolute ethanol as the medium, mix evenly through ball milling for 20-25 hours, then dry at 100°C, pass through a 120-mesh sieve, briquette, and pass through 850 Pre-calcined at ~950°C for 2-6 hours to obtain a block solid, then crush the block solid and pass through a 120-mesh sieve to obtain a pre-calcined powder;
[0048] (2) The calcined powder obtained in step (1) is ball-milled for 20 to 25 hours with absolute ethanol as the medium, then dried at 100° C., and passed through a 120-mesh sieve to obtain the raw material powder;
[0049] (3) The...
Embodiment 1
[0065] The chemical formula of the ceramic material in this case is: (1-x)(Na 0.5 Bi 0.5 ) 0.7 Sr 0.3 TiO 3 -xSr(Ti 0.85 Zr 0.15 )O 3 , wherein x represents the mole fraction, and x=0.10.
[0066] The preparation method of the above-mentioned lead-free high energy storage and charge-discharge performance ceramic material comprises the following steps:
[0067] (1) According to chemical formula (1-x) (Na 0.5 Bi 0.5 ) 0.7 Sr 0.3 TiO 3 -xSr(Ti 0.85 Zr 0.15 )O 3 will analyze pure SrCO 3 、Na 2 CO 3 、TiO 2 , ZrO 2 and Bi 2 o 3 The ingredients, where x represents the mole fraction, and x=0.10, use absolute ethanol as the medium, mix uniformly by ball milling for 20 hours, then dry at 100°C, pass through a 120-mesh sieve, briquette, and then pre-calcined at 850°C for 2 hours, block solids were obtained, and then the block solids were pulverized and passed through a 120-mesh sieve to obtain calcined powder;
[0068] (2) The calcined powder obtained in step (1) wa...
Embodiment 2
[0073] The chemical formula of the ceramic material in this case is: (1-x)(Na 0.5 Bi 0.5 ) 0.7 Sr 0.3 TiO 3 -xSr(Ti 0.85 Zr 0.15 )O 3 , where x represents the mole fraction, and x=0.20.
[0074] The preparation method of the above-mentioned lead-free high energy storage and charge-discharge performance ceramic material comprises the following steps:
[0075] 1) According to chemical formula (1-x) (Na 0.5 Bi 0.5 ) 0.7 Sr 0.3 TiO 3 -xSr(Ti 0.85 Zr 0.15 )O 3 will analyze pure SrCO 3 、Na 2 CO 3 、TiO 2 , ZrO 2 and Bi 2 o 3 The ingredients, where x represents the mole fraction, and x=0.20, use absolute ethanol as the medium, mix uniformly by ball milling for 24 hours, then dry at 100°C, pass through a 120-mesh sieve, briquette, and then pre-calcined at 900°C for 4 hours, block solids were obtained, and then the block solids were pulverized and passed through a 120-mesh sieve to obtain calcined powder;
[0076] (2) The calcined powder obtained in step (1) was b...
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