Humidity-sensitive porous ceramic, atomizing core and preparation method thereof
A porous ceramic and moisture-sensitive technology, which is applied in the field of atomizing core and its preparation, and the field of moisture-sensitive porous ceramics, which can solve the problem that the atomizing core cannot prevent dry burning in time
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[0033] The preparation method of moisture-sensitive porous ceramics of the present invention comprises the following steps:
[0034] (1) Weigh component A, component B, component C, pore-forming agent, and sintering aid according to the formula, and place them in a ball milling device for mixing and ball milling; the component A is SnO 2 , ZnO, TiO 2 One or more of them, the B component is LiZnVO 4 、ZnCrVO 4 , V 2 o 5 , Fe 2 o 3 One or more of, the C component is Li 2O, Na 2 O, K 2 One or more of O, MgO, CaO;
[0035] (2) Bake and dry the mixed material after ball milling to obtain mixed powder;
[0036] (3) Heat the paraffin to a melting state, add the mixed powder while stirring, and continue stirring for 1-8 hours after the addition to obtain a paraffin slurry;
[0037] (4) injecting the paraffin slurry into the pre-prepared mould, cooling and forming, and obtaining a wax mold after demoulding;
[0038] (5) Put the wax mold into the furnace for preheating to rem...
Embodiment 1
[0043] The moisture-sensitive porous ceramic of the embodiment of the present invention is made of a matrix material, the matrix material includes A component, B component, C component, pore forming agent and sintering aid, and the A component includes SnO 2 , ZnO, TiO 2 , B component includes ZnCrVO 4 , V 2 o 5 , the C component includes Li 2 O, MgO, CaO, 10 parts of component A, 5 parts of component B, 5 parts of component C, 20 parts of pore-forming agent is 150 micron graphite, and 10 parts of sintering aid is oleic acid.
Embodiment 2
[0045] The moisture-sensitive porous ceramic of the embodiment of the present invention is made of a matrix material, the matrix material includes A component, B component, C component, pore forming agent and sintering aid, and the A component includes SnO 2 , ZnO, TiO 2 , B component includes ZnCrVO 4 , V 2 o 5 , the C component includes Li 2 O, MgO, CaO, wherein 10 parts of A component, 5 parts of B component, 5 parts of C component, 20 parts of pore-forming agent is 150 micron graphite, 10 parts of sintering aid is oleic acid, 20 parts of nano silica. Nano-silica is silica sol with a particle diameter of 150nm, and the amount of nano-silica in the silica sol is calculated by the solid content of silica therein.
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Abstract
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