Slip-resistant glaze, preparation method thereof and preparation method of slip-resistant glaze brick
An anti-slip, silicon dioxide technology, applied in the field of ceramics, can solve problems such as slipping and falling accidents, and achieve the effect of not rough hand feeling, durable effect and easy cleaning
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Embodiment 1
[0026] The anti-slip glaze comprises the following components in mass fraction: 45% of silicon dioxide, 11% of sodium hydroxide, 16% of aluminum oxide, 1% of ferric oxide, 3% of calcium oxide, 2% of magnesium oxide, Potassium oxide 5%, sodium oxide 2%, zinc oxide 5%, barium oxide 10%.
[0027] Weigh the raw materials according to the above component configuration, mix the raw materials evenly, use a ball mill to add water and grind to 100-200 mesh powder, add the raw materials into the mixing tank, and mix the components at a high speed for a certain period of time to make a slurry The slurry is sprayed into the drying tower from the nozzle by the diaphragm pump in the feeding system at a certain pressure. The energy of the pressure is converted into kinetic energy. Split into liquid droplets; mist particles and hot air work in a mixed flow mode. The hot air enters the tower through the hot air distributor on the top cover. The hot air distributor produces a downward streamlin...
Embodiment 2
[0030] The anti-skid glaze comprises the following components in mass fraction: 50% of silicon dioxide, 16% of sodium hydroxide, 15% of aluminum oxide, 1% of ferric oxide, 1% of calcium oxide, 2% of magnesium oxide, Potassium oxide 3%, sodium oxide 2%, zinc oxide 3%, barium oxide 7%.
[0031] Configure the raw materials according to the above components, mix the raw materials evenly, use a ball mill to add water and grind to 100-200 mesh powder, add the raw materials into the mixing tank, and mix the components at a high speed for a certain period of time to make a slurry. The slurry is sprayed into the drying tower from the nozzle at a certain pressure by the diaphragm pump in the feeding system, the energy of the pressure is converted into kinetic energy, and the slurry is sprayed from the nozzle from bottom to top to form a high-speed liquid film, which then splits into Liquid droplets; mist particles and hot air work in a mixed flow mode. The hot air enters the tower throu...
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