Preparation method of infrared coating used for household cooking utensils, and preparation method of infrared coat
A technology of infrared paint and cooker, which is applied in the preparation, synthesis and preparation of infrared paint with high emissivity of infrared paint and coating, can solve the problem that the high-temperature resistance cannot meet the requirements for use of civil cookers and cannot be widely used in civil cookers , the problem of poor thermal shock resistance, etc., to achieve the effect of excellent energy saving effect, fewer types of raw materials, and strong thermal shock resistance
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Embodiment 1
[0023] By weight, 15 parts of TiO 2 , 30 parts of CuO, 55 parts of Cr 2 o 3 Mix it with 200 parts of absolute ethanol and add it to a ball mill, wet ball mill for 4 hours, and dry to obtain a mixed powder; the mixed powder is roasted at 1000°C for 1 hour in an oxygen atmosphere, and passed through a 200-mesh sieve to obtain an infrared composite filler;
[0024] Use alumina sol as the adhesive, mix according to the ratio of infrared composite filler: alumina sol = 1:2, and then ball mill for 1 hour to obtain infrared coating; use the reverse pull method to coat the coating on the substrate to form a thickness of 0.15-0.20mm Infrared coating.
[0025] The obtained coating has an emissivity greater than 0.88 in the entire infrared range. After being kept at 1200°C for 10 minutes, it is quenched in water for 5 times, and the coating does not fall off or crack. Using it on civilian stoves can save energy by 10%.
Embodiment 2
[0027] By weight, 15 parts of TiO 2 , 25 parts of CuO, 60 parts of Cr 2 o 3 Mix with 150 parts of absolute ethanol and add to a ball mill, wet ball mill for 4 hours, and dry to obtain a mixed powder; the mixed powder is roasted at 1200°C for 1 hour in a nitrogen atmosphere, and passed through a 200-mesh sieve to obtain an infrared composite filler;
[0028] Use silica sol as the adhesive, mix according to the ratio of infrared composite filler: silica sol=2:1, and then ball mill for 1 hour to obtain infrared coating; use the reverse pull method to coat the coating on the substrate to form a thickness of 0.15-0.20 mm of infrared coating.
[0029] The obtained coating has an emissivity greater than 0.96 in the entire infrared range. After being kept at 1200°C for 10 minutes, it is water quenched 7 times, and the coating does not fall off or crack. Using it on civilian stoves can save energy by 30%.
Embodiment 3
[0031] In parts by weight, 10 parts of TiO 2 , 20 parts of CuO, 70 parts of Cr 2 o 3 Mix and add to a ball mill, dry ball mill for 4 hours, and dry to obtain a mixed powder; the mixed powder is roasted at a high temperature of 1200°C for 1 hour in an oxygen atmosphere, and passed through a 200-mesh sieve to obtain an infrared composite filler;
[0032] Use alumina sol as the adhesive, mix according to the ratio of infrared composite filler: alumina sol = 1:2, and then ball mill for 1 hour to obtain the infrared coating; use the reverse pull method to coat the coating on the substrate to form a thickness of 0.15-0.20mm Infrared coating.
[0033] The obtained coating has an emissivity greater than 0.91 in the entire infrared range. After being kept at 1200° C. for 10 minutes, it is water quenched 5 times, and the coating does not fall off or crack. Using it on civilian stoves can save energy by 15%.
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