Preparation method of ceramic glaze for prolonging florescence
A technology for ceramic glaze and vases, which is applied in the field of preparation of ceramic glazes for prolonging the flowering period, can solve the problems of not prolonging the flowering period and the like, and achieve the effects of improving the decorative effect, prolonging the flowering period and increasing the size
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Embodiment 1
[0016] A preparation method for prolonging flowering period ceramic glaze, comprising the following steps:
[0017] (1) In parts by weight, add 62 parts of tourmaline powder with an average particle size of 40-80 μm, 2 parts of holmium oxide, 4 parts of yttrium oxide, 11 parts of grinding aid, and 35 parts of water into the stirring ball mill, and ball milling After 20 hours, after spray drying and granulation, a functional additive with an average particle size of 100nm was obtained;
[0018] (2) In parts by weight, add 31 parts of cryolite, 28 parts of talc, 45 parts of quartz, 6 parts of kaolin, 5 parts of tungsten oxide, 1 part of lithium oxide, 14 parts of functional additives, and 38 parts of water into a porcelain ball mill for grinding After processing for 2 hours, the glaze slurry was obtained;
[0019] (3) After cleaning the inner and outer surfaces of the vase, use hydrofluoric acid solution to modify the inner and outer surfaces of the vase, and then use the spray...
Embodiment 2
[0024] A preparation method for prolonging flowering period ceramic glaze, comprising the following steps:
[0025] (1) In parts by weight, add 66 parts of tourmaline powder with an average particle size of 40-80 μm, 4 parts of holmium oxide, 5 parts of yttrium oxide, 13 parts of grinding aid, and 38 parts of water into the stirring ball mill, and ball milling After 22 hours, after spray drying and granulation, a functional additive with an average particle diameter of 60nm was obtained;
[0026] (2) In parts by weight, add 33 parts of cryolite, 30 parts of talc, 48 parts of quartz, 8 parts of kaolin, 7 parts of tungsten oxide, 2 parts of lithium oxide, 16 parts of functional additives, and 40 parts of water into a porcelain ball mill for grinding After processing for 2.5 hours, the glaze slurry was obtained;
[0027] (3) After cleaning the inner and outer surfaces of the vase, use hydrofluoric acid solution to modify the inner and outer surfaces of the vase, then use the spr...
Embodiment 3
[0032] A preparation method for prolonging flowering period ceramic glaze, comprising the following steps:
[0033] (1) In parts by weight, 70 parts of tourmaline powder with an average particle size of 80 μm, 6 parts of holmium oxide, 7 parts of yttrium oxide, 14 parts of grinding aid, and 42 parts of water were added to the stirring ball mill, and ball milled for 24 hours Finally, after spray drying and granulation, the functional additive with an average particle diameter of 100nm is obtained;
[0034] (2) In parts by weight, add 36 parts of cryolite, 33 parts of talc, 52 parts of quartz, 10 parts of kaolin, 8 parts of tungsten oxide, 3 parts of lithium oxide, 17 parts of functional additives and 44 parts of water into a porcelain ball mill for grinding treatment After 3 hours, a glaze slurry was obtained;
[0035] (3) After cleaning the inner and outer surfaces of the vase, use hydrofluoric acid solution to modify the inner and outer surfaces of the vase, then use the spr...
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