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Fabricated photovoltaic composite wall structure and construction technology thereof
The invention provides an assembly type photovoltaic composite wall structure and a construction technology thereof, and relates to the technical field of assembly type walls, the assembly type photovoltaic composite wall structure comprises a plurality of steel net film lattice wallboards, a plurality of vertically arranged lattice column frameworks and a plurality of transversely arranged constraint beam frameworks, each of the latticed column framework and the constraint beam framework comprises a plurality of parallel longitudinal bars and a plurality of stirrups which are perpendicular to the longitudinal bars and are fixedly arranged on the longitudinal bars; the two adjacent lattice column frameworks and the two adjacent constraint beam frameworks form a mounting space of the steel mesh film lattice wallboard; the steel mesh film lattice wall plate comprises two opposite mold mesh plates, a heat preservation layer is arranged between the two mold mesh plates, and the two mold mesh plates are connected through a steel bar pulling truss. A plurality of mounting grooves matched with stirrups of the lattice column framework and the constraint beam framework are formed in the side edge of the thermal insulation layer; wherein the side edges of the adjacent and mutually perpendicular heat preservation layers abut against each other; the side edges of the formwork net plates on the outer sides of the two steel net film lattice wallboards perpendicular to each other are welded and fixed, and the side edges of the formwork net plates on the inner sides of the two steel net film lattice wallboards are bent by 90 degrees to be welded and fixed to the lattice column framework. Concrete is poured into the latticed column framework, the constraint beam framework and the steel mesh film latticed wallboards; a photovoltaic assembly is arranged on the outer side of a wall body of the steel mesh film lattice wallboard, and an electric heating assembly is arranged on the inner side. The lattice column framework is wrapped inside through the formwork net plates on the inner side and the outer side and connected in a welding mode, too many fasteners are not needed, the installation steps of the whole wall are simplified, and the assembly efficiency is improved.
本发明提供了一种装配式光伏复合墙结构及其施工工艺,涉及装配式墙技术领域,包括多个钢网膜格构墙板,以及多个互相搭接固定的竖向设置的格构柱骨架和横向设置的约束梁骨架;格构柱骨架和约束梁骨架均包括多个平行的纵筋以及与纵筋垂直且固定设置在纵筋上的多个箍筋;相邻的两个格构柱骨架和两个约束梁骨架构成钢网膜格构墙板的安装空间;钢网膜格构墙板包括相对设置的两块模网板,两块模网板之间设置有保温层,两块模网板通过钢筋拉结桁架连接;保温层的侧边开设有多个与格构柱骨架和约束梁骨架的箍筋配合的安装槽;其中,相邻且互相垂直的保温层的侧边抵接;互相垂直的两个钢网膜格构墙板外侧的模网板的侧边焊接固定,内侧的模网板的侧边折弯呈90度与格构柱骨架焊接固定;格构柱骨架、约束梁骨架及钢网膜格构墙板内均浇筑混凝土;钢网膜格构墙板的墙体外侧设置有光伏组件,内侧设置有电热组件。本发明通过内外侧的模网板将格构柱骨架包裹在内,并通过焊接的方式进行连接,不用太多的紧固件,简化了整个墙体的安装步骤,提高了装配效率。
Fabricated photovoltaic composite wall structure and construction technology thereof
The invention provides an assembly type photovoltaic composite wall structure and a construction technology thereof, and relates to the technical field of assembly type walls, the assembly type photovoltaic composite wall structure comprises a plurality of steel net film lattice wallboards, a plurality of vertically arranged lattice column frameworks and a plurality of transversely arranged constraint beam frameworks, each of the latticed column framework and the constraint beam framework comprises a plurality of parallel longitudinal bars and a plurality of stirrups which are perpendicular to the longitudinal bars and are fixedly arranged on the longitudinal bars; the two adjacent lattice column frameworks and the two adjacent constraint beam frameworks form a mounting space of the steel mesh film lattice wallboard; the steel mesh film lattice wall plate comprises two opposite mold mesh plates, a heat preservation layer is arranged between the two mold mesh plates, and the two mold mesh plates are connected through a steel bar pulling truss. A plurality of mounting grooves matched with stirrups of the lattice column framework and the constraint beam framework are formed in the side edge of the thermal insulation layer; wherein the side edges of the adjacent and mutually perpendicular heat preservation layers abut against each other; the side edges of the formwork net plates on the outer sides of the two steel net film lattice wallboards perpendicular to each other are welded and fixed, and the side edges of the formwork net plates on the inner sides of the two steel net film lattice wallboards are bent by 90 degrees to be welded and fixed to the lattice column framework. Concrete is poured into the latticed column framework, the constraint beam framework and the steel mesh film latticed wallboards; a photovoltaic assembly is arranged on the outer side of a wall body of the steel mesh film lattice wallboard, and an electric heating assembly is arranged on the inner side. The lattice column framework is wrapped inside through the formwork net plates on the inner side and the outer side and connected in a welding mode, too many fasteners are not needed, the installation steps of the whole wall are simplified, and the assembly efficiency is improved.
本发明提供了一种装配式光伏复合墙结构及其施工工艺,涉及装配式墙技术领域,包括多个钢网膜格构墙板,以及多个互相搭接固定的竖向设置的格构柱骨架和横向设置的约束梁骨架;格构柱骨架和约束梁骨架均包括多个平行的纵筋以及与纵筋垂直且固定设置在纵筋上的多个箍筋;相邻的两个格构柱骨架和两个约束梁骨架构成钢网膜格构墙板的安装空间;钢网膜格构墙板包括相对设置的两块模网板,两块模网板之间设置有保温层,两块模网板通过钢筋拉结桁架连接;保温层的侧边开设有多个与格构柱骨架和约束梁骨架的箍筋配合的安装槽;其中,相邻且互相垂直的保温层的侧边抵接;互相垂直的两个钢网膜格构墙板外侧的模网板的侧边焊接固定,内侧的模网板的侧边折弯呈90度与格构柱骨架焊接固定;格构柱骨架、约束梁骨架及钢网膜格构墙板内均浇筑混凝土;钢网膜格构墙板的墙体外侧设置有光伏组件,内侧设置有电热组件。本发明通过内外侧的模网板将格构柱骨架包裹在内,并通过焊接的方式进行连接,不用太多的紧固件,简化了整个墙体的安装步骤,提高了装配效率。
Fabricated photovoltaic composite wall structure and construction technology thereof
一种装配式光伏复合墙结构及其施工工艺
ZHANG CHENGHUA ( Autor:in ) / HAO RENZHUO ( Autor:in ) / CHENG LIANG ( Autor:in ) / REN XIANG ( Autor:in ) / QIN QING ( Autor:in ) / SHANG CHUNLIN ( Autor:in ) / GAO ZHIGANG ( Autor:in ) / XIONG GUANGHONG ( Autor:in ) / DU BAOPING ( Autor:in ) / QIU JISHENG ( Autor:in ) ... [mehr]
24.09.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
E04C
STRUCTURAL ELEMENTS
,
Bauelemente
/
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
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