A kind of fluoride ceramic crucible and its manufacturing method
A manufacturing method and technology of ceramic crucibles, applied in the fields of fluoride ceramic crucibles and their manufacture, fluoride corrosion-resistant crucibles and their manufacture, can solve problems such as poor resistance to fluoride corrosion, and achieve safe production, corrosion prevention, and stability The effect of the reaction environment
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Embodiment 1
[0037] A fluoride ceramic crucible, the specific preparation method is as follows:
[0038] (1) Using calcium fluoride ceramic powder (300 mesh particle size, 99.95% purity) as the crucible base material, the calcium fluoride ceramic powder was first vacuum heat-treated at 800°C for 2 hours, and the vacuum degree was 10 -2 Pa, then crush the agglomerated powder and pass through an 80-mesh sieve to obtain calcium fluoride ceramic powder under the sieve.
[0039] (2) Add sintering aid lead fluoride (1000 orders of particle size, purity is 99.9%) in calcium fluoride ceramic powder under the sieve, wherein, lead fluoride addition is 1% of the total mass of ceramic powder and sintering aid, After mixing for 20 hours by dry method, pass through an 80-mesh sieve again to obtain the under-sieved mixed powder.
[0040] (3) Put the under-sieved mixed powder into the designed crucible mold with a relative filling density of about 40%, and then release it after cold isostatic pressing at...
Embodiment 2
[0045] A fluoride ceramic crucible, the specific preparation method is as follows:
[0046] (1) Using calcium fluoride ceramic powder (300 mesh size, 99.95% purity) as the base material of the crucible, the calcium fluoride ceramic powder is subjected to a high temperature vacuum heat treatment at 800°C for 2 hours, and the vacuum degree is 10 -2 Pa. Afterwards, the agglomerated powder was crushed and passed through a 80-mesh sieve to obtain under-sieved calcium fluoride ceramic powder.
[0047] (2) Add sintering aid lead fluoride (1000 orders of particle size, purity is 99.9%) in calcium fluoride ceramic powder under the sieve, wherein, lead fluoride addition is 1% of the total mass of ceramic powder and sintering aid, After mixing the powder for 20 hours, pass through an 80-mesh sieve again to obtain the under-sieved mixed powder.
[0048] (3) Put the under-sieved mixed powder into the designed crucible mold with a relative filling density of about 40%, and then release it...
Embodiment 3
[0053] A fluoride ceramic crucible, the specific preparation method is as follows:
[0054] (1) Using calcium fluoride ceramic powder (300 mesh particle size, 99.95% purity) as the base material of the crucible, the calcium fluoride ceramic powder is subjected to a high temperature vacuum heat treatment at 800°C for 2 hours, and the vacuum degree is 10 -2 Pa, then crush the agglomerated powder and pass through an 80-mesh sieve to obtain calcium fluoride ceramic powder under the sieve.
[0055] (2) Add sintering aid lead fluoride (1000 orders of particle size, purity is 99.9%) in calcium fluoride ceramic powder under the sieve, wherein, lead fluoride addition is 1% of the total mass of ceramic powder and sintering aid, After mixing the powder for 20 hours, pass through an 80-mesh sieve again to obtain the under-sieved mixed powder.
[0056] (3) Put the under-sieve mixed powder into the designed crucible mold with a relative filling density of about 40%, and then release it aft...
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