Highlight glaze for ancient building porcelain as well as preparation method and application of highlight glaze
A technology of ancient architectural porcelain and glass beads, applied in the field of high-gloss glaze for ancient architectural porcelain and its preparation, can solve the problems of high firing temperature, high cost, damage, etc., achieve sufficient interface area, avoid enamel defects, and facilitate stress The effect of passing
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Embodiment 1
[0027] A high-gloss glaze for ancient architectural porcelain, comprising the following components in parts by weight: 30 parts of potassium feldspar, 15 parts of hollow nanoparticles, 10 parts of modified glass microspheres, 20 parts of quartz, 6 parts of niobium oxide, and 8 parts of magnesium oxide , 12 parts of sodium hydroxymethyl cellulose, 8 parts of barium chromate, 20 parts of kaolin and 60 parts of water.
[0028] A preparation method for high-gloss glaze for ancient building porcelain, comprising the following steps:
[0029] S1: Stir and mix the above-mentioned potassium feldspar, modified glass beads, quartz, niobium oxide, magnesium oxide, barium chromate, kaolin and water, after mixing evenly, ball mill into a glaze slurry, pass through a 400-mesh sieve, and set aside;
[0030] S2: Stir and mix sodium hydroxymethyl cellulose and hollow nanoparticles, after mixing evenly, set aside;
[0031] S3: Mix the glaze slurry obtained in step S1 and the mixture obtained i...
Embodiment 2
[0039] A high-gloss glaze for ancient architectural porcelain, comprising the following components in parts by weight: 20 parts of potassium feldspar, 10 parts of hollow nanoparticles, 8 parts of modified glass microspheres, 15 parts of quartz, 3 parts of niobium oxide, and 6 parts of magnesium oxide , 10 parts of sodium hydroxymethyl cellulose, 5 parts of barium chromate, 18 parts of kaolin and 50 parts of water.
[0040] A preparation method for high-gloss glaze for ancient building porcelain, comprising the following steps:
[0041] S1: Stir and mix the above-mentioned potassium feldspar, modified glass beads, quartz, niobium oxide, magnesium oxide, barium chromate, kaolin and water, after mixing evenly, ball mill into a glaze slurry, pass through a 400-mesh sieve, and set aside;
[0042] S2: Stir and mix sodium hydroxymethyl cellulose and hollow nanoparticles, after mixing evenly, set aside;
[0043] S3: Mix the glaze slurry obtained in step S1 and the mixture obtained in...
Embodiment 3
[0051]A high-gloss glaze for ancient architectural porcelain, comprising the following components in parts by weight: 25 parts of potassium feldspar, 12 parts of hollow nanoparticles, 9 parts of modified glass microspheres, 18 parts of quartz, 5 parts of niobium oxide, and 7 parts of magnesium oxide , 11 parts of hydroxymethyl cellulose sodium, 6 parts of barium chromate, 19 parts of kaolin and 55 parts of water.
[0052] A preparation method for high-gloss glaze for ancient building porcelain, comprising the following steps:
[0053] S1: Stir and mix the above-mentioned potassium feldspar, modified glass beads, quartz, niobium oxide, magnesium oxide, barium chromate, kaolin and water, after mixing evenly, ball mill into a glaze slurry, pass through a 400-mesh sieve, and set aside;
[0054] S2: Stir and mix sodium hydroxymethyl cellulose and hollow nanoparticles, after mixing evenly, set aside;
[0055] S3: Mix the glaze slurry obtained in step S1 and the mixture obtained in ...
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