Ceramic industry brick billet and preparation method thereof
A technology for ceramic industry and brick blanks, applied in the field of ceramic industry brick blanks and their preparation, can solve problems affecting the production efficiency and social benefits of enterprises, obstacles to the future development of enterprises, etc., and achieve the effects of high strength, reduced energy consumption, and reduced production costs.
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Embodiment 1
[0026] In this embodiment, the prepared ceramic industrial brick body includes the following components in weight percentage: 26% mullite, 24% cordierite, 30% orthoclase, and 20% plagioclase.
[0027] Concrete preparation steps are as follows:
[0028] (1) Mixing according to the weight percentage of the following raw materials: bentonite 7%, potassium feldspar 9%, albite 10%, polishing waste 74%;
[0029] (2) Spray dry the slurry prepared in step (1) to obtain a powder, use a press to make the powder into a green body, and dry it at 135°C;
[0030] (3) Calcining the green body produced in step (2) at a high temperature to generate mullite, cordierite, orthoclase and plagioclase crystal phases, that is, to obtain the industrial brick body.
[0031] The mixing process condition described in step (1) is: adopt ball mill ball mill, be 2: 2: 1 to carry out feeding by the mass ratio of slurry, ball, water, ball milling time is 10h, and the particle fineness of slurry reaches 3.5g ...
Embodiment 2
[0035] In this embodiment, the prepared ceramic industrial brick body includes the following components in weight percentage: 60% of mullite, 6% of cordierite, 16% of orthoclase, and 18% of plagioclase.
[0036] Concrete preparation steps are as follows:
[0037] (1) Mixing according to the weight percentage of the following raw materials: bentonite 10%, potassium feldspar 7%, albite 8%, polishing waste 75%;
[0038] (2) Spray dry the slurry prepared in step (1) to obtain a powder, use a press to make the powder into a green body, and dry it at 135°C;
[0039] (3) Calcining the green body produced in step (2) at a high temperature to generate mullite, cordierite, orthoclase and plagioclase crystal phases, that is, to obtain the industrial brick body.
[0040] The mixing process condition described in step (1) is: adopt ball mill ball mill, be 2: 2: 1 to carry out feeding by the mass ratio of slurry, ball, water, ball milling time is 10h, and the particle fineness of slurry re...
Embodiment 3
[0044] In this embodiment, the prepared ceramic industrial brick body includes the following components in weight percentage: 61% mullite, 25% cordierite, 8% orthoclase, and 6% plagioclase.
[0045] Concrete preparation steps are as follows:
[0046] (1) Mixing according to the weight percentage of the following raw materials: bentonite 10%, potassium feldspar 7%, albite 13%, polishing waste 70%;
[0047] (2) Spray dry the slurry prepared in step (1) to obtain a powder, use a press to make the powder into a green body, and dry it at 135°C;
[0048] (3) Calcining the green body produced in step (2) at a high temperature to generate mullite, cordierite, orthoclase and plagioclase crystal phases, that is, to obtain the industrial brick body.
[0049] The mixing process condition described in step (1) is: adopt ball mill ball mill, be 2: 2: 1 to carry out feeding by the mass ratio of slurry, ball, water, ball milling time is 10h, and the particle fineness of slurry reaches 3.8g ...
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Abstract
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Application Information
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