Nucleated glass composite material and process for preparing same
A technology of glass-ceramics and composite materials, which is applied in the field of glass-ceramic composite materials and its preparation, can solve the problems of crystal growth failing to break through particle boundaries, failing to break through particle boundaries, etc., achieving short cycle times, low production costs, and artistic The effect of improving the aesthetic level
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Embodiment 1
[0025] By chemical composition: SiO 2 48.42%, Al 2 o 3 5.16%, Na 2 O+K 2 O 4.01%, CaO 14.9%, ZnO 23.53%, BaO 3.98%, plus clarifying agent 0.6% of the total amount of the above materials, select the corresponding quartz, feldspar, calcium carbonate, barium carbonate, zinc oxide below 0.1mm , clarifying agent and other raw materials, weighed according to the formula, mixed evenly, and melted in a glass furnace with a melting temperature of 1480°C. The melt is water-quenched after being clarified, and extruded by a pair of rollers during water-quenching to obtain surface-layer glass-ceramic pellets of ≤6mm.
[0026] By chemical composition: SiO 2 68.27%, Al 2 o 3 17.66%, Fe 2 o 3 0.67%, TiO 2 0.11%, CaO 1.01%, MgO 1.21%, K 2 O 1.62%, Na 2O 4.79%, loss on ignition 4.66%, select various raw materials such as corresponding kaolin, china stone (soil), clay, bentonite, quartz, feldspar (potassium, albite), talc, etc., and crush to below 5mm. Weigh according to the fo...
Embodiment 2
[0029] Carry out according to each step of embodiment 1, but increase the manganese dioxide of 1.6% in addition in the composition of surface layer glass-ceramic, obtain the high-grade glass-ceramic-ceramic composite brick that spreads out spherical crystal like this.
Embodiment 3
[0031] Carry out according to each step of embodiment 1, but increase the nickel oxide of 0.3% in addition in the composition of surface layer glass-ceramic, obtain the high-grade glass-ceramic-ceramic composite brick that is all over spherical crystal of brown like this.
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