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Architectural indoor ceramic tile laying structure and laying method
The invention provides an architectural indoor ceramic tile laying structure and laying method. The architectural indoor ceramic tile laying structure comprises a first cement layer, a buffer layer, asecond cement layer, a binder layer and a ceramic tile layer sequentially from bottom to top. The buffer layer is provided with a plurality of vertical rubber columns distributed at intervals. Holesbetween the multiple vertical rubber columns in the buffer layer are filled with fillers. According to the architectural indoor ceramic tile laying structure, the multiple vertical rubber columns andthe fillers are arranged between the first cement layer and the second cement layer to serve as the buffer layer, when thermal expansion and cold contraction occur, the buffer layer can achieve a certain buffer effect to consume stress through elastic deformation of the buffer layer, warping or deformation of ceramic tiles is prevented, thus deformation caused by thermal expansion and cold contraction of the ceramic tile ground laying structure can be avoided effectively, and close joint laying of the ceramic tiles is achieved accordingly.
本发明提供了一种建筑室内陶瓷砖铺贴结构和铺贴方法,所述建筑室内陶瓷砖铺贴结构由下至上依次包括第一水泥层、缓冲层、第二水泥层、粘结剂层和瓷砖层;所述缓冲层设置有若干竖直的橡胶柱,所述若干竖直的橡胶柱间隔分布,所述缓冲层中的若干竖直的橡胶柱之间的孔隙中由填充物填充。本发明的建筑室内陶瓷砖铺贴结构通过在第一水泥层和第二水泥成之间设置若干竖直的橡胶柱和填充物作为缓冲层,当发生热胀冷缩时,缓冲层可通过自身的弹性形变而起到一定的缓冲作用以消耗应力,防止瓷砖发生翘起或变形,从而可有效避免瓷砖地面铺贴结构的热涨冷缩造成变形,以实现瓷砖的密缝铺贴。
Architectural indoor ceramic tile laying structure and laying method
The invention provides an architectural indoor ceramic tile laying structure and laying method. The architectural indoor ceramic tile laying structure comprises a first cement layer, a buffer layer, asecond cement layer, a binder layer and a ceramic tile layer sequentially from bottom to top. The buffer layer is provided with a plurality of vertical rubber columns distributed at intervals. Holesbetween the multiple vertical rubber columns in the buffer layer are filled with fillers. According to the architectural indoor ceramic tile laying structure, the multiple vertical rubber columns andthe fillers are arranged between the first cement layer and the second cement layer to serve as the buffer layer, when thermal expansion and cold contraction occur, the buffer layer can achieve a certain buffer effect to consume stress through elastic deformation of the buffer layer, warping or deformation of ceramic tiles is prevented, thus deformation caused by thermal expansion and cold contraction of the ceramic tile ground laying structure can be avoided effectively, and close joint laying of the ceramic tiles is achieved accordingly.
本发明提供了一种建筑室内陶瓷砖铺贴结构和铺贴方法,所述建筑室内陶瓷砖铺贴结构由下至上依次包括第一水泥层、缓冲层、第二水泥层、粘结剂层和瓷砖层;所述缓冲层设置有若干竖直的橡胶柱,所述若干竖直的橡胶柱间隔分布,所述缓冲层中的若干竖直的橡胶柱之间的孔隙中由填充物填充。本发明的建筑室内陶瓷砖铺贴结构通过在第一水泥层和第二水泥成之间设置若干竖直的橡胶柱和填充物作为缓冲层,当发生热胀冷缩时,缓冲层可通过自身的弹性形变而起到一定的缓冲作用以消耗应力,防止瓷砖发生翘起或变形,从而可有效避免瓷砖地面铺贴结构的热涨冷缩造成变形,以实现瓷砖的密缝铺贴。
Architectural indoor ceramic tile laying structure and laying method
一种建筑室内陶瓷砖铺贴结构和铺贴方法
JI LINGYUN (author) / JIANG ZEFENG (author) / YANG JUNZHI (author)
2020-10-30
Patent
Electronic Resource
Chinese
IPC:
E04F
FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
,
Ausbau von Bauwerken, z.B. Treppen, Fußböden
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