Inorganic radiation coating material for kiln interior walls
A radiation coating and interior wall technology, which is applied in the field of inorganic materials, can solve problems affecting the use effect and service life, cracking and falling off of radiation materials, easy cracking and falling off of coatings, etc., and achieves low-cost sources, convenient use, and source wide range of effects
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Embodiment 1
[0011] A method for preparing an inorganic radiation coating material for an inner wall of a kiln, comprising the following steps:
[0012] (1) Weigh 1 kg of kaolin, 50 kg of silica sol, and 50 kg of chromite powder;
[0013] (2) Mix the powdery raw materials evenly and mix them with the silica sol evenly, then the coating operation in the kiln can be carried out.
[0014] Performance Testing:
[0015] Radiation performance: According to the experimental method of GB4653-84, the total normal emissivity is measured, and the normal total emissivity of the above coating ε n =0.89, which is higher than the standard normal full emissivity ε n Should not be less than 0.85 technical conditions.
[0016] Thermal Shock Stability: The test was carried out according to the test method of YB / T134-1998. The test temperatures were 1000°C and 1200°C respectively. The result: after more than 9 times of rapid cooling and rapid heating, no peeling and cracking of the detected coating occurre...
Embodiment 2
[0018] A method for preparing an inorganic radiation coating material for an inner wall of a kiln, comprising the following steps:
[0019] (1) Weigh 2 kg of kaolin, 60 kg of silica sol, 58 kg of chromite powder, and 2 kg of ferric oxide;
[0020] (2) Mix the powdery raw materials evenly and mix them with the silica sol evenly, then the coating operation in the kiln can be carried out.
[0021] Performance Testing:
[0022] Radiation performance: According to the experimental method of GB4653-84, the total normal emissivity is measured, and the normal total emissivity of the above coating ε n =0.9, which is higher than the standard normal full emissivity ε n Should not be less than 0.85 technical conditions.
[0023] Thermal Shock Stability: The test was carried out according to the test method of YB / T134-1998. The test temperatures were 1000°C and 1200°C respectively. The result: after more than 9 times of rapid cooling and rapid heating, no peeling and cracking of the det...
Embodiment 3
[0025] A method for preparing an inorganic radiation coating material for an inner wall of a kiln, comprising the following steps:
[0026] (1) Weigh 2 kg of kaolin, 60 kg of silica sol, 58 kg of chromite powder, and 2 kg of silicon carbide;
[0027] (2) Mix the powdery raw materials evenly and mix them with the silica sol evenly, then the coating operation in the kiln can be carried out.
[0028] Performance Testing:
[0029] Radiation performance: According to the experimental method of GB4653-84, the total normal emissivity is measured, and the normal total emissivity of the above coating ε n =0.92, which is higher than the standard normal full emissivity ε n Should not be less than 0.85 technical conditions.
[0030] Thermal Shock Stability: The test was carried out according to the test method of YB / T134-1998. The test temperatures were 1000°C and 1200°C respectively. The result: after more than 9 times of rapid cooling and rapid heating, no peeling and cracking of the...
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