A kind of high temperature resistant wave-absorbing coating and preparation method thereof
A wave-absorbing coating and high-temperature resistance technology, applied in radiation-absorbing coatings, fire-retardant coatings, coatings, etc., can solve the problems of low adhesion, poor high temperature resistance, high surface density, etc., to overcome the poor high temperature resistance, Improved absorbing performance and simple operation
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Embodiment 1
[0022] In this embodiment, the preparation method of the wave-absorbing coating is implemented according to the following steps:
[0023] Weigh 36g of carbon powder, 45g of silica powder, 21g of silicon powder, and 17.7g of cobalt powder and mix them in a ball mill jar; ball mill for 1 hour at a speed of 240r / min; take out the obtained powder and place it in a graphite crucible, and place it in a high-temperature furnace Sintering at 1600°C for 4 hours in an inner argon atmosphere, the temperature rise rate is 5°C / min to 1000°C, 2.5°C / min to 1600°C, keep warm for 4 hours and then cool to room temperature; after cooling, grind the powder taken out, and grind 80g of powder The solid content was added to 227g of silicate with a solid content of 40%, and after mixing and dispersing evenly, a high-temperature-resistant wave-absorbing coating was obtained.
Embodiment 2
[0025] In this embodiment, the preparation method of the wave-absorbing coating is implemented according to the following steps:
[0026] Weigh 36g of carbon powder, 45g of silica powder, 21g of silicon powder, and 17.7g of cobalt powder and mix them in a ball mill jar; ball mill for 1 hour at a speed of 240r / min; take out the obtained powder and place it in a graphite crucible, and place it in a high-temperature furnace Sintering at 1600°C for 4 hours in an inner helium atmosphere, the temperature rise rate is 5°C / min to 1000°C, 2.5°C / min to 1600°C, keep warm for 4 hours and then cool to room temperature; after cooling, grind the powder taken out, and grind 100g of powder The solid content was added to 227g aluminum sol with a solid content of 40%, and after mixing and dispersing evenly, a high-temperature resistant wave-absorbing coating was obtained.
Embodiment 3
[0028] In this embodiment, the preparation method of the wave-absorbing coating is implemented according to the following steps:
[0029] Weigh 36g of carbon powder, 45g of silica powder, 21g of silicon powder, and 8.85g of cobalt powder and mix them in a ball mill jar; ball mill for 1 hour at a speed of 240r / min; take out the obtained powder and place it in a graphite crucible, and place it in a high-temperature furnace Sintering at 1600°C for 4 hours in an inner argon atmosphere, the temperature rise rate is 5°C / min to 1000°C, 2.5°C / min to 1600°C, keep warm for 4 hours and then cool to room temperature; after cooling, grind the powder taken out, and grind 80g of powder The body was added to 227g of silica sol with a solid content of 40%, and after mixing and dispersing evenly, a high-temperature-resistant wave-absorbing coating was obtained.
[0030] From figure 1 It can be seen from the figure that the main component of the wave absorbing agent powder material prepared in ...
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