Formaldehyde removal ceramic tile and preparation method thereof
A technology for ceramic tiles and formaldehyde, applied in the field of ceramic manufacturing, can solve the problems of poor formaldehyde removal effect and high cost of ceramic tiles, and achieve the effect of reducing dosage and cost
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Embodiment 1
[0028] Obtain polished finished ceramic tiles, and under normal temperature conditions, evenly spray a nano-silica solution with a concentration of 10% on the surface of the ceramic tile body through an automatic spraying device (such as a spray gun), and then grind and squeeze the surface of the ceramic tile through a male and self-rotating grinding head. During this process, the nano-silica particles will be filled into the microporous structure of the tile body, and a layer of relatively smooth silica coating will be formed on the tile body.
[0029] Under normal temperature conditions, the nano-titanium dioxide solution with a concentration of 10% is evenly sprayed on the surface of the above-mentioned silica coating through an automatic spraying device (such as a spray gun), and then polished and extruded by a male and self-rotating grinding head. Titanium dioxide particles are embedded in the above-mentioned silicon dioxide coating, and a titanium dioxide coating is forme...
Embodiment 2
[0033] Obtain polished finished ceramic tiles, and under normal temperature conditions, evenly spray a nano-silicon dioxide solution with a concentration of 20% on the surface of the ceramic tile body through an automatic spraying device (such as a spray gun), and then grind and squeeze the surface of the ceramic tile through a male and self-rotating grinding head. During this process, the nano-silica particles will be filled into the microporous structure of the tile body, and a layer of relatively smooth silica coating will be formed on the tile body.
[0034] Under normal temperature conditions, the nano-titanium dioxide solution with a concentration of 20% is evenly sprayed on the surface of the above-mentioned silica coating through an automatic spraying device (such as a spray gun), and then polished and extruded by a male-rotary grinding head. The titanium dioxide particles are embedded in the above-mentioned silicon dioxide coating, and a titanium dioxide coating is for...
Embodiment 3
[0038] Obtain the fired ceramic tiles, under normal temperature conditions, evenly spray the nano silicon dioxide solution with a concentration of 30% on the surface of the ceramic tile body through an automatic spraying device (such as a spray gun), and then grind and extrude it through a male and self-rotating grinding head. During this process, the nano-silica particles will be filled into the microporous structure of the tile body, and a layer of relatively smooth silica coating will be formed on the tile body.
[0039] Under normal temperature conditions, the nano-titanium dioxide solution with a concentration of 30% is evenly sprayed on the surface of the above-mentioned silica coating through an automatic spraying device (such as a spray gun), and then polished and extruded by a male and self-rotating grinding head. Titanium dioxide particles are embedded in the above-mentioned silicon dioxide coating, and a titanium dioxide coating is formed on the silicon dioxide coati...
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Abstract
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