Wear-resistant tile printing glaze, preparation method thereof, and glazed tiles
A technology for printing glaze and glazed tiles, applied in the field of ceramics, can solve the problems of insufficient bright and translucent colors, low transparency of the glazed layer, and easy damage to the surface of the ceramic tile, so as to improve the damage strength and pollution resistance, improve the initial melting temperature, natural texture
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[0078] Correspondingly, the present invention also provides a preparation method of the wear-resistant ceramic tile printing glaze, comprising the following steps:
[0079] A. Preparation of prefabricated components:
[0080] Take frit, feldspar and kaolinite by weight, for subsequent use;
[0081] Feed the frit, feldspar and kaolinite into the high alumina lined ball mill for ball milling for 24 hours to form a slurry and sieve;
[0082] The sieved slurry is sent to the roller dryer for drying, pulverized, milled and refined to obtain prefabricated components;
[0083] B. Preparation of printing glaze:
[0084] Weigh 95-110 parts of prefabricated components, 50-60 parts of printing paste and 20-30 parts of printing oil;
[0085] Send the prefabricated components, printing paste and printing oil into a high-alumina lined ball mill for ball milling for 2.5 hours, and after aging for 48 hours, the wear-resistant ceramic tile printing glaze is obtained.
[0086] Preferably, t...
Embodiment 1
[0095] A. Preparation of prefabricated components:
[0096] Take frit, feldspar and kaolinite by weight, for subsequent use;
[0097] Wherein said prefabricated component comprises following raw material to make by weight part:
[0098] 65 parts of frit;
[0099] 20 parts of feldspar;
[0100] Kaolinite 15 parts;
[0101] Described frit comprises following component formulation by weight percentage:
[0102] Fe 2 o 3 0.07%;
[0103] MgO 1.54%;
[0104] CaO 8.96%;
[0105] TiO 2 1.07%;
[0106] al 2 o 3 13.8%;
[0107] SiO 2 62.79%;
[0108] ZrO 2 0.02%;
[0109] PbO 1.2%;
[0110] ZnO 5.39%;
[0111] B 2 o 3 0.01%;
[0112] BaO 5.15%.
[0113] Feed the frit, feldspar and kaolinite into the high alumina lined ball mill for ball milling for 24 hours to form a slurry, pass through a 325-mesh sieve, and sieve with a sieve balance of ≤0.05 grams;
[0114] The sieved slurry is sent to a roller dryer, dried at a temperature of 200°C, pulverized, milled a...
Embodiment 2
[0121] A. Preparation of prefabricated components:
[0122] Take frit, feldspar and kaolinite by weight, for subsequent use;
[0123] Wherein said prefabricated component comprises following raw material to make by weight part:
[0124] 60 parts of frit;
[0125] 15 parts of feldspar;
[0126] Kaolinite 15 parts;
[0127] Described frit comprises following component formulation by weight percentage:
[0128] Fe 2 o 3 0.08%;
[0129] MgO 1.42%;
[0130] CaO 8.93%;
[0131] TiO 2 0.78%;
[0132] al 2 o 3 14.8%;
[0133] SiO 2 63.98%;
[0134] ZrO 2 0.01%;
[0135] PbO 1.0%;
[0136] ZnO 4.53%;
[0137] B 2 o 3 0.01%;
[0138] BaO 4.46%.
[0139] Feed the frit, feldspar and kaolinite into the high alumina lined ball mill for ball milling for 24 hours to form a slurry, pass through a 325-mesh sieve, and sieve with a sieve balance of ≤0.05 grams;
[0140] The sieved slurry is sent to a roller dryer, dried at a temperature of 200°C, pulverized, milled a...
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