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Preparation method of micro-carved super-wear-resistant diamond glaze ceramic tile and micro-carved super-wear-resistant diamond glaze ceramic tile
The invention discloses a preparation method of a micro-carved super-wear-resistant diamond glaze ceramic tile. The preparation method comprises the steps of (1) providing a ceramic tile green body; (2) moving the ceramic tile green body to a position below a screen printing plate; (3) distributing printing glaze to the screen printing plate, and dripping the printing glaze to the surface of the ceramic tile green body through meshes to form a glaze dripping layer; (4) repeating the steps (2) and (3) for at least two times by using the screen printing plate with meshes with different pore diameters, and forming a plurality of glaze dripping layers on the surface of the ceramic tile green body so as to obtain a to-be-sintered green body, wherein the plurality of glaze dripping layers are overlapped with one another, and a plurality of micro carving holes are formed in the surface of the ceramic tile green body; and (5) sintering the to-be-sintered green body to obtain the micro-carved super-wear-resistant diamond glaze ceramic tile finished product, wherein the pore diameter of each mesh is 150-250 [mu]m. Correspondingly, the invention further discloses the micro-carved super-wear-resistant diamond glaze ceramic tile. By implementing the method, the anti-skid performance of the ceramic tile with the micro-carved super-wear-resistant diamond glaze effect is greatly improved, so that the ceramic tile is more similar to natural marble, and the decorative effect is improved.
本发明公开了一种微雕超耐磨钻石釉瓷砖的制备方法,其包括:(1)提供瓷砖生坯;(2)将瓷砖生坯移动至网版的下方;(3)将印刷釉分布至网版上,印刷釉经网孔滴漏至瓷砖生坯的表面,形成滴釉层;(4)以设有不同孔径网孔的网版重复步骤(2)和(3)至少两次,在瓷砖生坯表面上形成多个滴釉层,即得到待烧坯体;其中,多个滴釉层相互叠加,在瓷砖生坯表面形成多个微雕孔;(5)将待烧坯体烧成,即得到微雕超耐磨钻石釉瓷砖成品;其中,网孔的孔径为150~250μm。相应的,本发明还公开了一种微雕超耐磨钻石釉瓷砖。实施本发明,大幅度提升具有微雕超耐磨钻石釉效果瓷砖的防滑性能,使得其更加类似天然大理石,提升装饰作用。
Preparation method of micro-carved super-wear-resistant diamond glaze ceramic tile and micro-carved super-wear-resistant diamond glaze ceramic tile
The invention discloses a preparation method of a micro-carved super-wear-resistant diamond glaze ceramic tile. The preparation method comprises the steps of (1) providing a ceramic tile green body; (2) moving the ceramic tile green body to a position below a screen printing plate; (3) distributing printing glaze to the screen printing plate, and dripping the printing glaze to the surface of the ceramic tile green body through meshes to form a glaze dripping layer; (4) repeating the steps (2) and (3) for at least two times by using the screen printing plate with meshes with different pore diameters, and forming a plurality of glaze dripping layers on the surface of the ceramic tile green body so as to obtain a to-be-sintered green body, wherein the plurality of glaze dripping layers are overlapped with one another, and a plurality of micro carving holes are formed in the surface of the ceramic tile green body; and (5) sintering the to-be-sintered green body to obtain the micro-carved super-wear-resistant diamond glaze ceramic tile finished product, wherein the pore diameter of each mesh is 150-250 [mu]m. Correspondingly, the invention further discloses the micro-carved super-wear-resistant diamond glaze ceramic tile. By implementing the method, the anti-skid performance of the ceramic tile with the micro-carved super-wear-resistant diamond glaze effect is greatly improved, so that the ceramic tile is more similar to natural marble, and the decorative effect is improved.
本发明公开了一种微雕超耐磨钻石釉瓷砖的制备方法,其包括:(1)提供瓷砖生坯;(2)将瓷砖生坯移动至网版的下方;(3)将印刷釉分布至网版上,印刷釉经网孔滴漏至瓷砖生坯的表面,形成滴釉层;(4)以设有不同孔径网孔的网版重复步骤(2)和(3)至少两次,在瓷砖生坯表面上形成多个滴釉层,即得到待烧坯体;其中,多个滴釉层相互叠加,在瓷砖生坯表面形成多个微雕孔;(5)将待烧坯体烧成,即得到微雕超耐磨钻石釉瓷砖成品;其中,网孔的孔径为150~250μm。相应的,本发明还公开了一种微雕超耐磨钻石釉瓷砖。实施本发明,大幅度提升具有微雕超耐磨钻石釉效果瓷砖的防滑性能,使得其更加类似天然大理石,提升装饰作用。
Preparation method of micro-carved super-wear-resistant diamond glaze ceramic tile and micro-carved super-wear-resistant diamond glaze ceramic tile
微雕超耐磨钻石釉瓷砖的制备方法及微雕超耐磨钻石釉瓷砖
NAN SHUNZHI (author)
2021-04-23
Patent
Electronic Resource
Chinese
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