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Composite floor slab construction method based on aluminum alloy formwork support
The invention discloses a composite floor slab construction method based on aluminum alloy formwork support. The composite floor slab construction method comprises the following construction steps that S1, construction preparation is achieved: formwork matching design of an aluminum alloy formwork support system is completed; S2, the aluminum alloy formwork support system is installed; S3, composite floor slabs are hoisted, specifically, the composite floor slabs are arranged at the top of the aluminum alloy formwork support system in a hoisting mode and supported by aluminum alloy formworks and keel fixed tops, and the composite floor slabs are connected through reserved steel bars on the composite floor slabs bonded by steel bars; S4, concrete pouring is conducted, specifically, concrete is poured to the position above a composite floor slab; and S5, an aluminum formwork keel support system is dismantled and turned over, specifically, after concrete curing is achieved, an aluminum alloy formwork support system structure except aluminum formwork fixed tops is dismantled, and turning over is conducted. According to the composite floor slab construction method based on the aluminum alloy formwork support, the composite floor slab is supported through aluminum formwork keels and the aluminum formwork fixed tops, when a plurality of aluminum formwork fixed tops exist, all the aluminum formwork keels are connected through the aluminum alloy formworks, horizontal stability is guaranteed, and overturning is prevented in the hoisting process.
本发明公开了一种基于铝合金模板支撑的叠合楼板施工方法,施工步骤包括:步骤S1.施工准备,完成铝合金模板支撑体系配模设计;步骤S2.铝合金模板支撑体系安装;步骤S3.叠合楼板吊装,叠合楼板通过吊装的方式设置在铝合金模板支撑体系顶部并受到铝合金模板与龙骨固顶的支撑,叠合楼板之间通过钢筋绑扎叠合楼板上的预留钢筋连接;步骤S4.混凝土浇筑,浇筑混凝土至叠合楼板的上方;步骤S5.铝模龙骨支撑体系拆除和周转,在混凝土养护后拆除除铝模固顶外的铝合金模板支撑体系结构,进行周转。本发明使用铝模龙骨与铝模固顶对叠合楼板进行支撑,当多个铝模固顶存在,通过铝合金模板连接各个铝模龙骨,保证水平稳定,吊装过程防倾覆。
Composite floor slab construction method based on aluminum alloy formwork support
The invention discloses a composite floor slab construction method based on aluminum alloy formwork support. The composite floor slab construction method comprises the following construction steps that S1, construction preparation is achieved: formwork matching design of an aluminum alloy formwork support system is completed; S2, the aluminum alloy formwork support system is installed; S3, composite floor slabs are hoisted, specifically, the composite floor slabs are arranged at the top of the aluminum alloy formwork support system in a hoisting mode and supported by aluminum alloy formworks and keel fixed tops, and the composite floor slabs are connected through reserved steel bars on the composite floor slabs bonded by steel bars; S4, concrete pouring is conducted, specifically, concrete is poured to the position above a composite floor slab; and S5, an aluminum formwork keel support system is dismantled and turned over, specifically, after concrete curing is achieved, an aluminum alloy formwork support system structure except aluminum formwork fixed tops is dismantled, and turning over is conducted. According to the composite floor slab construction method based on the aluminum alloy formwork support, the composite floor slab is supported through aluminum formwork keels and the aluminum formwork fixed tops, when a plurality of aluminum formwork fixed tops exist, all the aluminum formwork keels are connected through the aluminum alloy formworks, horizontal stability is guaranteed, and overturning is prevented in the hoisting process.
本发明公开了一种基于铝合金模板支撑的叠合楼板施工方法,施工步骤包括:步骤S1.施工准备,完成铝合金模板支撑体系配模设计;步骤S2.铝合金模板支撑体系安装;步骤S3.叠合楼板吊装,叠合楼板通过吊装的方式设置在铝合金模板支撑体系顶部并受到铝合金模板与龙骨固顶的支撑,叠合楼板之间通过钢筋绑扎叠合楼板上的预留钢筋连接;步骤S4.混凝土浇筑,浇筑混凝土至叠合楼板的上方;步骤S5.铝模龙骨支撑体系拆除和周转,在混凝土养护后拆除除铝模固顶外的铝合金模板支撑体系结构,进行周转。本发明使用铝模龙骨与铝模固顶对叠合楼板进行支撑,当多个铝模固顶存在,通过铝合金模板连接各个铝模龙骨,保证水平稳定,吊装过程防倾覆。
Composite floor slab construction method based on aluminum alloy formwork support
一种基于铝合金模板支撑的叠合楼板施工方法
LIU JIE (author) / LIAO JUN (author) / LONG SHAOZHANG (author) / HUANG JUN (author) / HAN FEILONG (author)
2021-11-30
Patent
Electronic Resource
Chinese
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