Thermal-insulation corrosion-resistant ancient building ceramic and preparation method thereof
An ancient building ceramics, corrosion-resistant technology, applied in the field of ceramics, can solve the problems of lack of famous brand products, affecting the economic benefits of enterprises, affecting the status of Chinese building sanitary ceramics, etc., to shorten the drying time, improve mechanical strength and dielectric properties, plasticity strong effect
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Embodiment 1
[0028] This embodiment provides a heat-insulating and corrosion-resistant ancient building ceramics, including tire material and glaze. The tire material includes the following raw materials in parts by weight: 35 parts of kaolin, 22 parts of quartz, 20 parts of potassium feldspar, 12 parts of clay, 3 parts of talc, 1 part of zircon sand; the glaze includes the following raw materials in parts by weight: 25 parts of orthoclase, 18 parts of mullite, 15 parts of zinc oxide, 15 parts of calcium oxide, 1 part of talc, 4 parts of zircon sand 2 parts, 2 parts strontium ore, 2 parts plant ash, 2 parts copper oxide, 1 part molybdenum silicide.
[0029] This embodiment also provides a method for making heat-insulating and corrosion-resistant ancient building ceramics, comprising the following steps:
[0030] Step 1. Weigh the tire material according to the weight ratio and pulverize it, put it into a ball mill and add water for wet grinding. The weight ratio of adding water during wet ...
Embodiment 2
[0037]This embodiment provides a heat-insulating and corrosion-resistant ancient building ceramics, including tire material and glaze. The tire material includes the following raw materials in parts by weight: 36 parts of kaolin, 23 parts of quartz, 21 parts of potassium feldspar, 13 parts of clay, 4 parts of talc, 1 part of zircon sand; the glaze includes the following raw materials in parts by weight: 26 parts of orthoclase, 19 parts of mullite, 16 parts of zinc oxide, 16 parts of calcium oxide, 1 part of talc, 5 parts of zircon sand 3 parts of strontium ore, 3 parts of plant ash, 2 parts of copper oxide, and 1 part of molybdenum silicide.
[0038] This embodiment also provides a method for making heat-insulating and corrosion-resistant ancient building ceramics, comprising the following steps:
[0039] Step 1. Weigh the tire material according to the weight ratio and pulverize it, put it into a ball mill and add water for wet grinding. The weight ratio of adding water durin...
Embodiment 3
[0046] This embodiment provides a heat-insulating and corrosion-resistant ancient building ceramics, including tire material and glaze, and the tire material includes the following raw materials in parts by weight: 38 parts of kaolin, 25 parts of quartz, 22 parts of potassium feldspar, and 14 parts of clay , 5 parts of talc, 1 part of zircon sand; the glaze includes the following raw materials in parts by weight: 28 parts of orthoclase, 20 parts of mullite, 16 parts of zinc oxide, 16 parts of calcium oxide, 2 parts of talc, zircon sand 6 parts, 3 parts strontium ore, 3 parts plant ash, 3 parts copper oxide, 2 parts molybdenum silicide.
[0047] This embodiment also provides a method for making heat-insulating and corrosion-resistant ancient building ceramics, comprising the following steps:
[0048] Step 1. Weigh the tire material according to the weight ratio and pulverize it, put it into a ball mill and add water for wet grinding. The weight ratio of adding water during wet ...
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