Aluminum nitride ceramic low-temperature sintering aid system
A low-temperature sintering technology for aluminum nitride ceramics, applied in the field of sintering aid system, can solve the problems of ineffective cost reduction, thermal conductivity decrease, long holding time, etc., and achieve low sintering cost, high thermal conductivity, simple and reliable process Effect
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Embodiment 1
[0037] Add 95g of aluminum nitride powder and 5g of sintering aids titanium oxide and vanadium oxide to 21g of ethanol / butanone solvent system (the mass ratio of ethanol and acetone is 40:60), the ratio of titanium oxide and vanadium oxide is 1:1 . Using 2g triolein as a dispersant, adding 8g PVB as a binder and 8g DBP as a plasticizer after ball milling, defoaming and casting after ball milling again, and preparing a cast film with a thickness of 0.15-0.2mm. After the cast film is debonded, it is sintered in a carbon tube furnace, and the temperature is raised to 1650 °C at a rate of 5 °C / min, and the sintering is achieved by keeping the temperature for 2 hours. A dense and complete aluminum nitride substrate can be obtained.
Embodiment 2
[0039] Add 94g of aluminum nitride powder and 6g of sintering aids titanium oxide and niobium oxide to 21g of ethanol / toluene solvent system (the mass ratio of ethanol and toluene is 40:60), and the ratio of titanium oxide and niobium oxide is 1:2. Using 2.5g phosphate ester as dispersant, after ball milling, add 8.5g PVB as binder, 9g DBP as plasticizer, after ball milling again, defoaming, casting, and prepare casting film with thickness of 0.15-0.2mm. After the cast film is debonded, it is sintered in a carbon tube furnace, and the temperature is raised to 1650 °C at a rate of 5 °C / min, and the sintering is achieved by keeping the temperature for 2 hours. A dense and complete aluminum nitride substrate can be obtained.
Embodiment 3
[0041] Add 93g of aluminum nitride powder and 7g of sintering aids titanium oxide and tantalum oxide to 21g of ethanol / n-hexane solvent system (the mass ratio of ethanol and n-hexane is 50:50), the ratio of titanium oxide and tantalum oxide is 1: 3. Using 2.0g castor oil as dispersant, after ball milling, add 9g PVB as binder, 10g DBP as plasticizer, after ball milling again, defoaming, casting, and prepare cast film with thickness of 0.15-0.2mm. After the cast film is debonded, it is sintered in a carbon tube furnace, and the temperature is raised to 1650°C at a rate of 5°C / min, and the sintering is achieved by holding the heat for 2 hours. A dense and complete aluminum nitride substrate can be obtained.
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