A platform for research: civil engineering, architecture and urbanism
Coloring and glazing treatment process for molded cement tiles
The invention belongs to the technical field of cement tile processes, and particularly relates to a mould pressing cement tile coloring and glazing treatment process which comprises the following four procedures: step one, cleaning the surface of a cement tile blank; secondly, ground coat is prepared, the cement tile blank is subjected to ground coat baking, and then the cement tile blank is aired; 3, color paste is applied to the surface of the cement tile in a throwing and spraying mode, the process is cyclically carried out during throwing and spraying, the surface of the whole cement tile is covered with the color paste to form a glaze layer, and then the cement tile is aired; fourthly, oily acrylic acid with the concentration of 70%-90% is taken to conduct glaze sealing on the surface of the cement tile, color increasing is completed, and the cement tile is aired after glaze sealing; the cement tile treated by the process has a tighter glaze layer, the water resistance and the freezing resistance are greatly improved, the ground coat layer and the glaze sealing layer are arranged on the surface of the cement tile, and meanwhile, the tile surface is subjected to color enhancing treatment, so that the color is brighter, and the weather resistance is more prominent; the anti-freezing tile is high in strength, and the glaze layer is tighter, so that the tile has higher adaptability to temperature change, the anti-freezing performance is more excellent, and the durability is high.
本发明属于水泥瓦工艺技术领域,具体为一种模压水泥瓦上色加釉面处理工艺,包括四道工序,工序一:清洁水泥瓦胚的表面;工序二:制备底釉,将水泥瓦胚进行底釉烘烤,而后晾置;工序三:使用甩淋的方式向水泥瓦表面施加色浆,甩淋时循环前行,将色浆覆盖在整个水泥瓦的表面形成釉面层,而后进行晾置;工序四:取浓度70‑90%的油性丙烯酸,对水泥瓦的表面进行封釉,完成增色、封釉后晾置;经过本工艺处理的水泥瓦具有更紧密的釉面层,防水性和防冻性都大幅提高,在水泥瓦表面设置有底釉层和封釉层,同时对瓦面进行增色处理,色泽更加鲜艳,耐候性更加突出;强度大,釉面层更加紧密,使得瓦面对于温度变化有更强的适应性,防冻性能更优良,耐用性高。
Coloring and glazing treatment process for molded cement tiles
The invention belongs to the technical field of cement tile processes, and particularly relates to a mould pressing cement tile coloring and glazing treatment process which comprises the following four procedures: step one, cleaning the surface of a cement tile blank; secondly, ground coat is prepared, the cement tile blank is subjected to ground coat baking, and then the cement tile blank is aired; 3, color paste is applied to the surface of the cement tile in a throwing and spraying mode, the process is cyclically carried out during throwing and spraying, the surface of the whole cement tile is covered with the color paste to form a glaze layer, and then the cement tile is aired; fourthly, oily acrylic acid with the concentration of 70%-90% is taken to conduct glaze sealing on the surface of the cement tile, color increasing is completed, and the cement tile is aired after glaze sealing; the cement tile treated by the process has a tighter glaze layer, the water resistance and the freezing resistance are greatly improved, the ground coat layer and the glaze sealing layer are arranged on the surface of the cement tile, and meanwhile, the tile surface is subjected to color enhancing treatment, so that the color is brighter, and the weather resistance is more prominent; the anti-freezing tile is high in strength, and the glaze layer is tighter, so that the tile has higher adaptability to temperature change, the anti-freezing performance is more excellent, and the durability is high.
本发明属于水泥瓦工艺技术领域,具体为一种模压水泥瓦上色加釉面处理工艺,包括四道工序,工序一:清洁水泥瓦胚的表面;工序二:制备底釉,将水泥瓦胚进行底釉烘烤,而后晾置;工序三:使用甩淋的方式向水泥瓦表面施加色浆,甩淋时循环前行,将色浆覆盖在整个水泥瓦的表面形成釉面层,而后进行晾置;工序四:取浓度70‑90%的油性丙烯酸,对水泥瓦的表面进行封釉,完成增色、封釉后晾置;经过本工艺处理的水泥瓦具有更紧密的釉面层,防水性和防冻性都大幅提高,在水泥瓦表面设置有底釉层和封釉层,同时对瓦面进行增色处理,色泽更加鲜艳,耐候性更加突出;强度大,釉面层更加紧密,使得瓦面对于温度变化有更强的适应性,防冻性能更优良,耐用性高。
Coloring and glazing treatment process for molded cement tiles
一种模压水泥瓦上色加釉面处理工艺
HAO TIANMING (author) / GU XIAOLI (author)
2024-10-22
Patent
Electronic Resource
Chinese
Engineering Index Backfile | 1933
Polymer Impregnated Cement Mortar Floor Tiles
British Library Conference Proceedings | 1986
|