Active magnetizing glaze ceramic
A glazed porcelain and active technology, applied in the field of enamel, can solve the problems of porcelain lacking magnetic substances, excess minerals and harmful substances, lack of effective combination of various magnetic substances, and lack of magnetization function, etc., to achieve bright color and aesthetics The effect of lifting and improving surface gloss
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[0026] The preparation technology that the present invention makes product will adopt following steps:
[0027] Step 1. Take the iron ore prepared in advance and send it into the calciner for calcination. The iron ore after calcination is brown. The calcination temperature is 1250°C-1350°C and the calcination time is 7-10 hours. Take it out and set aside;
[0028] Step 2. Take the silica prepared in advance and put it into a calciner for calcining. The calcined silica is white. The calcining temperature is 1250°C-1350°C and the calcining time is 7-10 hours. Take it out and set aside;
[0029] Step 3: Take the pre-calcined iron ore and silica according to the proportion, send them into the ball mill, and take the pre-prepared quartz stone, white feldspar, yellow feldspar, black stone, Mayan stone, ox bone, black wool soil, wind cave according to the proportion The soil and calcite are sent into a ball mill, mixed, and the ball milling time is 15-17 hours, and ground into powder...
Embodiment 1
[0034] An active magnetized glazed porcelain, including a matrix sintered in the porcelain body and glazed porcelain on the inner and outer layers of the matrix, the material for making the glazed porcelain is composed of 65-80% base material and 20-35% magnetized material by weight percentage , the main components of the base material include quartz stone, white feldspar, yellow feldspar, black stone, Mayan stone, ox bone, black wool soil, wind cave soil and calcite. The magnetization material is composed of iron ore and silica, and the addition of iron ore and silica The amount by weight percentage is: 60-70% of iron ore, and 30-40% of silica.
[0035] The percentage by weight of each component in the base material is: 21% of quartz stone, 6% of albino feldspar, 27% of yellow feldspar, 8.5% of black stone, 7.3% of Mayan stone, 3.6% of bovine bone, 2.4% of black wool soil, wind Burrow soil 18.2% and calcite 6%.
[0036] The iron ore is calcined iron ore, and the calcining te...
Embodiment 2
[0046] An active magnetized enamel, including a carcass, the enamel is sintered on the inner and outer layers of the carcass, and the materials for making the enamel include 15-17% of quartz stone, 3-4% of white feldspar, and 15- 22%, black stone 7-10%, Mayan stone 6-10%, ox bone 3-4%, black wool soil 2-5%, wind hole soil 5-15% and calcite 5-10%, in the glaze Iron ore and silica are arranged in the porcelain material, and the weight percentages of iron ore and silica are: 12-20% of iron ore and 6-15% of silica.
[0047] The iron ore is calcined iron ore, and the calcining temperature is 1250°C-1350°C.
[0048] The silica is calcined silica, and the calcining temperature is 1250°C-1350°C.
[0049] The preparation process takes the following steps:
[0050] Step 1. Take the iron ore prepared in advance and put it into a calciner for calcination. The iron ore after calcination is brown. The calcination temperature is 1300°C±10°C, and the calcination time is 9 hours. Take it out...
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