Transition phase assisted low-temperature sintering method of boron nitride multi-phase ceramic
A technology of multiphase ceramics and low temperature sintering, which is applied in the sintering field of boron nitride multiphase ceramics, can solve the problems of high sintering temperature, coarse grains of multiphase ceramics, poor mechanical properties, etc. The effect of large and low production cost
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specific Embodiment approach 1
[0023] Specific implementation mode 1: The transition phase-assisted low-temperature sintering method of boron nitride composite ceramics in this implementation mode is as follows:
[0024] 1. Add the composite sintering aid into the alcohol dispersion medium, ball mill for 10-48 hours, then dry at 80°C-150°C for 10-48 hours, then pass the dried mixed powder through a 200-mesh standard sieve to obtain the composite sintering aid powder;
[0025] 2. Add the composite sintering aid powder and boron nitride powder into the alcohol dispersion medium according to the volume ratio of (5~35):(65~95), and after ball milling for 10~48 hours, at 80℃~150℃ Drying for 10 to 48 hours, passing through a 200-mesh standard sieve to obtain evenly mixed boron nitride composite powder;
[0026] 3. Heat up the boron nitride composite powder at a heating rate of 10-20°C / min under vacuum or an inert atmosphere, start pressurizing at 800°C-1000°C, and pressurize to 20MPa~ at 1000°C-1400°C 60MPa, ke...
specific Embodiment approach 2
[0032] Embodiment 2: This embodiment differs from Embodiment 1 in that the dispersion medium in step 1 can also be an aqueous solution of absolute ethanol or absolute ethanol with a mass fraction of 55% to 95% of absolute ethanol. Others are the same as in the first embodiment.
specific Embodiment approach 3
[0033] Embodiment 3: The difference between this embodiment and Embodiment 1 or 2 is that the titanium dioxide can be zirconium dioxide, hafnium dioxide or tantalum dioxide. Others are the same as those in the first or second embodiment.
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