Preparation method of barium titanate-based ceramic powder
A technology of ceramic powder and barium titanate, which is applied in the field of piezoelectric ceramics, can solve the problems of widening, slow and uneven heating of synthetic powder size distribution, and achieve a higher proportion of grain boundaries, increase the reaction rate, Evenly distributed effect
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example 1
[0022] Take 1mol of tetrabutyl titanate, add it to 500g of absolute ethanol, stir at 300r / min for 20min to obtain a mixed solution, take 1mol of barium nitrate, 0.002mol of ferric nitrate, and 10g of a mass fraction of 10% nitric acid solution, add 500g of deionized water , stirred at 300r / min for 20min, then added the mixture dropwise at 1mL / min, continued to stir until the dropwise addition was complete, then added 1L of oxalic acid solution with a molar concentration of 2mol / L, heated to 80°C for 2h in microwave, and cooled to room temperature Filter the filter residue, wash the filter residue twice with deionized water, then place the filter residue in a drying oven and dry at 80°C for 1 hour to obtain a precursor, which is placed in a muffle furnace and heated at 20°C / min to Calcined at 700°C for 1 hour, cooled to room temperature to obtain barium titanate nanopowder, took 100g barium titanate nanopowder, 1g dispersant OP-10, added 300g deionized water, stirred at 300r / min...
example 2
[0024] Take 1 mol of tetrabutyl titanate, add it to 800 g of absolute ethanol, stir at 350 r / min for 25 min to obtain a mixed solution, take 1 mol of barium nitrate, 0.003 mol of ferric nitrate, and 15 g of a mass fraction of 10% nitric acid solution, add 800 g of deionized water , stirred at 350r / min for 25min, then added the mixture dropwise at 1mL / min, continued to stir until the dropwise addition was complete, then added 1L of oxalic acid solution with a molar concentration of 2mol / L, and heated to 85°C for 2h in microwave, cooled to room temperature Filter the filter residue, wash the filter residue twice with deionized water, then place the filter residue in a drying oven, and dry it at 85°C for 1 hour to obtain a precursor, which is placed in a muffle furnace and heated at 20°C / min to Calcined at 720°C for 1 hour, cooled to room temperature to obtain barium titanate nanopowder, took 150g barium titanate nanopowder, 1g dispersant OP-10, added 500g deionized water, stirred...
example 3
[0026] Take 2mol of tetrabutyl titanate, add it to 1000g of absolute ethanol, and stir at 400r / min for 30min to obtain a mixed solution. Take 2mol of barium nitrate, 0.004mol of ferric nitrate, and 20g of a mass fraction of 10% nitric acid solution, and add it to 1000g of deionized water , stirred at 400r / min for 30min, then added dropwise the mixed solution at 2mL / min, continued to stir until the dropwise addition was complete, then added 2L oxalic acid solution with a molar concentration of 2mol / L, and heated to 90°C for 3h in microwave, cooled to room temperature Filter the filter residue, wash the filter residue 3 times with deionized water, then place the filter residue in a drying oven and dry at 90°C for 2 hours to obtain a precursor, which is placed in a muffle furnace and heated at 20°C / min to Calcined at 750°C for 2 hours, cooled to room temperature to obtain barium titanate nanopowder, took 200g barium titanate nanopowder, 2g dispersant OP-10, added 600g deionized wa...
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