Wear-resistant antifouling ceramic tile with starlight diamond effect and preparation method thereof
A technology of ceramic tiles and starlight, which is applied in the field of ceramic materials, can solve the problems of affecting the service life of tiles, poor wear resistance of glazed tiles, and complicated preparation processes, and achieves low production costs, strong antifouling performance, and simple preparation processes.
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Embodiment 1
[0036] The wear-resistant and anti-fouling ceramic brick with starlight diamond effect described in Example 1 includes a body, a bottom glaze, a surface glaze, an inkjet layer, a starlight glaze layer and a glue layer that are sequentially compounded from bottom to top; the starlight The glaze layer is made of starlight glaze granules. The starlight glaze granules are counted in parts by mass. The raw materials are as follows: 15 parts of corundum, 7 parts of mullite, 4 parts of alumina, 25 parts of potassium feldspar, 15 parts of quartz sand, 4 parts of zinc, 5 parts of barium carbonate and 10 parts of calcined talc.
[0037] in:
[0038] The particle size of starlight glaze particles after grinding is 200 mesh.
[0039] In parts by weight, the green body is prepared from 15 parts of potassium feldspar, 15 parts of albite, 7 parts of cryolite, 5 parts of brown corundum, 25 parts of kaolin, 10 parts of coal gangue and 5 parts of pitch rock.
[0040] In parts by weight, the b...
Embodiment 2
[0053]The wear-resistant and anti-fouling ceramic brick with starlight diamond effect described in Example 2 includes a body, a bottom glaze, a surface glaze, an inkjet layer, a starlight glaze layer and a glue layer that are sequentially compounded from bottom to top; the starlight The glaze layer is made of starlight glaze granules. The starlight glaze granules are measured in parts by mass. The raw materials are as follows: 10 parts of corundum, 10 parts of mullite, 6 parts of alumina, 30 parts of potassium feldspar, 10 parts of quartz sand, 3 parts of zinc, 7 parts of barium carbonate and 12 parts of calcined talc.
[0054] in:
[0055] The particle size of starlight glaze particles after grinding is 250 mesh.
[0056] In parts by weight, the green body is prepared from 10 parts of potassium feldspar, 20 parts of albite, 5 parts of cryolite, 3 parts of brown corundum, 30 parts of kaolin, 8 parts of coal gangue and 8 parts of pitch rock.
[0057] In parts by weight, the b...
Embodiment 3
[0070] The wear-resistant and anti-fouling ceramic brick with starlight diamond effect described in Example 3 includes a body, a bottom glaze, a surface glaze, an inkjet layer, a starlight glaze layer and a glue layer that are sequentially compounded from bottom to top; the starlight The glaze layer is made of starlight glaze granules. The starlight glaze granules are counted in parts by mass. The raw materials are as follows: 12 parts of corundum, 5 parts of mullite, 5 parts of alumina, 20 parts of potassium feldspar, 20 parts of quartz sand, oxidized 5 parts of zinc, 3 parts of barium carbonate and 8 parts of calcined talc.
[0071] in:
[0072] The particle size of starlight glaze particles after grinding is 150 mesh.
[0073] In parts by weight, the green body is prepared from 20 parts of potassium feldspar, 25 parts of albite, 10 parts of cryolite, 8 parts of brown corundum, 20 parts of kaolin, 12 parts of coal gangue and 7 parts of pitch rock.
[0074] In parts by weig...
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