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Transparent glaze, concave-convex micro-mold texture ceramic plate and preparation method of transparent glaze and concave-convex micro-mold texture ceramic plate
The invention provides a transparent glaze, a concave-convex micro-mold texture ceramic plate and a preparation method thereof. The transparent glaze comprises color-permeable dry particles and glaze slip in a mass ratio of 1: (4-5.3), through the specific transparent glaze formula, the melting performance is better, exhausting is facilitated, the glaze is more compact after being burnt, pores are fewer, and after multi-dimensional three-dimensional soft polishing, waxing treatment is not needed, and the good antifouling performance can also be achieved; the stripping ink and the cover glaze layer jointly act on the surface layer of the ceramic plate to form a concave-convex texture effect, and particularly, the vertical distance between concave parts and convex parts of the texture is controlled within the range of 0.35 mm, so that the problem that the concave parts of the texture are easy to get dirty and difficult to clean in the use process is solved; a multi-dimensional soft polishing technology is adopted in the preparation process of the concave-convex microdie texture ceramic plate, and three-dimensional multi-angle polishing and grinding treatment is carried out under different polishing pressure conditions through combination of various types of polishing and grinding blocks and precise mesh number control, so that rich changes of gloss and touch thickness are formed.
本发明提供了一种透明釉、凹凸微模肌理陶瓷板材及其制备方法。本发明所述透明釉包括质量比为1:(4~5.3)的透色干粒和釉浆;通过特定的透明釉料配方,熔融性能更好,利于排气,使釉料烧后更致密,毛孔更少,经多维立体柔抛后,无需打蜡处理,也可以具备良好的防污性能;且通过剥开墨水与所述面釉层共同作用在陶瓷板材的表层形成凹凸肌理效果,特别是肌理的凹陷与凸起的垂直距离控制在0.35mm范围内,解决使用过程中肌理凹陷易卡脏难打理的问题;还通过在凹凸微模肌理陶瓷板材制备过程中采用多维柔抛技术,通过多种类型抛光磨块的组合,和精准的目数控制,且在不同抛光压力条件下,进行立体多角度抛磨处理,形成光泽及触感粗细的丰富变化。
Transparent glaze, concave-convex micro-mold texture ceramic plate and preparation method of transparent glaze and concave-convex micro-mold texture ceramic plate
The invention provides a transparent glaze, a concave-convex micro-mold texture ceramic plate and a preparation method thereof. The transparent glaze comprises color-permeable dry particles and glaze slip in a mass ratio of 1: (4-5.3), through the specific transparent glaze formula, the melting performance is better, exhausting is facilitated, the glaze is more compact after being burnt, pores are fewer, and after multi-dimensional three-dimensional soft polishing, waxing treatment is not needed, and the good antifouling performance can also be achieved; the stripping ink and the cover glaze layer jointly act on the surface layer of the ceramic plate to form a concave-convex texture effect, and particularly, the vertical distance between concave parts and convex parts of the texture is controlled within the range of 0.35 mm, so that the problem that the concave parts of the texture are easy to get dirty and difficult to clean in the use process is solved; a multi-dimensional soft polishing technology is adopted in the preparation process of the concave-convex microdie texture ceramic plate, and three-dimensional multi-angle polishing and grinding treatment is carried out under different polishing pressure conditions through combination of various types of polishing and grinding blocks and precise mesh number control, so that rich changes of gloss and touch thickness are formed.
本发明提供了一种透明釉、凹凸微模肌理陶瓷板材及其制备方法。本发明所述透明釉包括质量比为1:(4~5.3)的透色干粒和釉浆;通过特定的透明釉料配方,熔融性能更好,利于排气,使釉料烧后更致密,毛孔更少,经多维立体柔抛后,无需打蜡处理,也可以具备良好的防污性能;且通过剥开墨水与所述面釉层共同作用在陶瓷板材的表层形成凹凸肌理效果,特别是肌理的凹陷与凸起的垂直距离控制在0.35mm范围内,解决使用过程中肌理凹陷易卡脏难打理的问题;还通过在凹凸微模肌理陶瓷板材制备过程中采用多维柔抛技术,通过多种类型抛光磨块的组合,和精准的目数控制,且在不同抛光压力条件下,进行立体多角度抛磨处理,形成光泽及触感粗细的丰富变化。
Transparent glaze, concave-convex micro-mold texture ceramic plate and preparation method of transparent glaze and concave-convex micro-mold texture ceramic plate
一种透明釉、凹凸微模肌理陶瓷板材及其制备方法
WEI SHOUQUAN (Autor:in) / ZHU SHIHAO (Autor:in) / HUANG WEIWEI (Autor:in) / XU XUEMENG (Autor:in) / PENG NING (Autor:in) / WU WENJIAN (Autor:in) / JIANG YUXIANG (Autor:in) / ZHANG YONGWEI (Autor:in) / SUN FAQIANG (Autor:in)
29.12.2023
Patent
Elektronische Ressource
Chinesisch
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