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3D printing shear wall structure and construction method thereof
The invention provides a 3D printing shear wall structure and a construction method thereof, and relates to the technical field of building structures. Comprising a 3D printing mold shell, a first reinforcement cage and a second reinforcement cage, the 3D printing mold shell is formed by 3D printing of ultra-high performance concrete, and the 3D printing mold shell comprises an outer mold shell and tie units which are arranged in a cavity surrounded by the outer mold shell in the longitudinal direction of the horizontal plane at intervals; the first reinforcement cage and the second reinforcement cage are arranged in the outer formwork so that a containing cavity used for containing the first reinforcement cage and the second reinforcement cage can be formed in the outer formwork, and the first reinforcement cage and the second reinforcement cage are installed in the containing cavity and poured with concrete. By means of the scheme, the labor input in the shear wall construction process can be effectively reduced, the construction quality and stress performance of the shear wall are guaranteed, the concrete 3D printer can conduct continuous operation, the construction efficiency is improved, meanwhile, noise, dust pollution and material waste in the construction process are reduced, and green production of a construction site is achieved.
本发明提供了一种3D打印剪力墙结构及其施工方法,涉及建筑结构技术领域。包括:3D打印模壳、第一钢筋笼和第二钢筋笼,其中,所述3D打印模壳通过超高性能混凝土3D打印而成,所述3D打印模壳包括外模壳以及在外模壳包围的空腔内沿水平面的纵向间隔布置的拉结单元,以在所述外模壳内形成用于放置所述第一钢筋笼与第二钢筋笼的放置空腔,所述第一钢筋笼与第二钢筋笼安装于所述放置空腔内且浇灌有混凝土。通过本发明方案,能有效减小剪力墙施工过程中的人工投入,保证剪力墙的施工质量和受力性能,混凝土3D打印机能进行连续作业提高施工效率,同时减小施工过程中的噪音、粉尘污染和材料浪费,实现建筑工地绿色生产。
3D printing shear wall structure and construction method thereof
The invention provides a 3D printing shear wall structure and a construction method thereof, and relates to the technical field of building structures. Comprising a 3D printing mold shell, a first reinforcement cage and a second reinforcement cage, the 3D printing mold shell is formed by 3D printing of ultra-high performance concrete, and the 3D printing mold shell comprises an outer mold shell and tie units which are arranged in a cavity surrounded by the outer mold shell in the longitudinal direction of the horizontal plane at intervals; the first reinforcement cage and the second reinforcement cage are arranged in the outer formwork so that a containing cavity used for containing the first reinforcement cage and the second reinforcement cage can be formed in the outer formwork, and the first reinforcement cage and the second reinforcement cage are installed in the containing cavity and poured with concrete. By means of the scheme, the labor input in the shear wall construction process can be effectively reduced, the construction quality and stress performance of the shear wall are guaranteed, the concrete 3D printer can conduct continuous operation, the construction efficiency is improved, meanwhile, noise, dust pollution and material waste in the construction process are reduced, and green production of a construction site is achieved.
本发明提供了一种3D打印剪力墙结构及其施工方法,涉及建筑结构技术领域。包括:3D打印模壳、第一钢筋笼和第二钢筋笼,其中,所述3D打印模壳通过超高性能混凝土3D打印而成,所述3D打印模壳包括外模壳以及在外模壳包围的空腔内沿水平面的纵向间隔布置的拉结单元,以在所述外模壳内形成用于放置所述第一钢筋笼与第二钢筋笼的放置空腔,所述第一钢筋笼与第二钢筋笼安装于所述放置空腔内且浇灌有混凝土。通过本发明方案,能有效减小剪力墙施工过程中的人工投入,保证剪力墙的施工质量和受力性能,混凝土3D打印机能进行连续作业提高施工效率,同时减小施工过程中的噪音、粉尘污染和材料浪费,实现建筑工地绿色生产。
3D printing shear wall structure and construction method thereof
一种3D打印剪力墙结构及其施工方法
HU HONGSONG (author) / XIA HAOJIAN (author) / BASHA SEYED HOMAYOUN (author)
2024-04-05
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
B33Y
ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
,
Additive (generative) Fertigung, d. h. die Herstellung von dreidimensionalen [3D] Bauteilen durch additive Abscheidung, additive Agglomeration oder additive Schichtung, z. B. durch 3D- Drucken, Stereolithografie oder selektives Lasersintern
/
E04C
STRUCTURAL ELEMENTS
,
Bauelemente
/
E04G
SCAFFOLDING
,
Baugerüste
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