A method for manufacturing a glass-ceramic composite plate and its product
A technology of glass-ceramic ceramics and a manufacturing method, applied in the field of ceramic tile manufacturing, can solve the problem of inability to produce metallic luster, and achieve the effects of strong pattern integrity, strong expressiveness and strong metallic texture
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Embodiment 1
[0037] A glass-ceramic composite plate such as figure 1 As shown, it includes a base layer 1 and a protective colored glass-ceramic decorative layer 2 from bottom to top, and pits 3 are distributed on the surface of the colored glass-ceramic decorative layer.
[0038] The above-mentioned method for manufacturing a glass-ceramic composite panel with a specification of 1000*1000mm, the steps include in sequence:
[0039] A. The raw material ingredients are ball milled for spray granulation, and then pressed to form adobe and dried to form the bottom base layer 1;
[0040] B. First, through screen printing a kind of fineness distribution of 20-100 mesh (of which 20-30 mesh accounts for 5%, 30-100 mesh accounts for 95%), and the initial melting temperature is 1050 ℃. The formation of fine colored frit 1.5kg Fine colored microcrystalline layer 21, and then print 0.5 kg of fine colored frit with a fineness distribution of 30-100 mesh and an initial melting temperature of 1060° C. t...
Embodiment 2
[0049] A method for manufacturing a glass-ceramic composite plate with a specification of 1000*1000mm, the steps include:
[0050] A. The raw material ingredients are ball milled for spray granulation, and then pressed to form adobe and dried to form a bottom layer 1. After spraying water, apply a layer of protective glaze;
[0051] B. Through screen printing, one kind of fineness distribution is 20-100 mesh (20-30 mesh accounts for 2%, 30-100 mesh accounts for 98%), and 1 kg of fine colored frit with an initial melting temperature of 1080 ° C forms a fine colored frit microcrystalline layer 21;
[0052] C. Coarse colored frit with a fineness of 4-20 mesh and an initial melting temperature of 1080°C, and a fineness of 4-30 mesh (wherein 20-30 mesh accounts for 5%, and 4-20 mesh accounts for 95%) with an initial melting temperature of 1100°C Coarse colored frit and fineness 4-30 mesh (wherein 20-30 mesh accounts for 2%, 4-20 mesh accounts for 98%) thick colored frit with incip...
Embodiment 3
[0059] A method for manufacturing a glass-ceramic composite plate with a specification of 1000*1000mm, the steps include:
[0060] A. The raw material ingredients are ball milled for spray granulation, and then pressed to form adobe and dried to form the bottom base layer 1;
[0061] B. Printing 1.2 kg of fine colored frit with a fineness distribution of 30-100 mesh and an initial melting temperature of 1050° C. to form a fine colored microcrystalline layer 21 by hollowing out the roller;
[0062] C. Coarse colored frit with a fineness of 4-20 mesh and an initial melting temperature of 1080°C, and a fineness of 4-30 mesh (wherein 20-30 mesh accounts for 5%, and 4-20 mesh accounts for 95%) with an initial melting temperature of 1100°C Coarse colored frit and fineness 4-30 order (wherein 20-30 order accounts for 2%, and 4-20 order accounts for 98%) coarse colored frit with incipient melting temperature 1080 ℃ is mixed and clothed 6kg brick adobe after step C Afterwards, a coars...
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Abstract
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