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Integrated aluminum alloy formwork construction method applied to composite floor slab
The invention provides an integrated aluminum alloy formwork construction method applied to a composite floor slab. The integrated aluminum alloy formwork construction method comprises the steps that preparation before construction is conducted, and aluminum alloy formwork BIM model construction is conducted based on a construction drawing and composite floor slab target construction information; measuring and setting out are conducted, the position of an aluminum alloy formwork supporting system is determined according to the design requirement and the aluminum alloy formwork BIM model, and meanwhile a positioning line and a structure side line are set up; a supporting system is built, reinforcing steel bars of a wall body and beam columns are bound, a wall formwork and a beam formwork are erected, and the beam formwork is supported through an adjustable independent support; an aluminum formwork system is installed, specifically, an aluminum formwork keel is installed between the wall formwork and the beam formwork, and an aluminum formwork is laid on the aluminum formwork keel; the composite floor slabs are hoisted, the composite floor slabs are laid on the aluminum formworks in a hoisting mode, the composite floor slabs are bound through reserved steel bars, the composite floor slabs are bound together with the reserved steel bars of the walls and the beam columns, the forming quality of the composite floor slabs is remarkably improved, and construction convenience is effectively improved.
本发明提供一种应用于叠合楼板的一体式铝合金模板施工方法,包括施工前准备,基于施工图纸和叠合楼板目标施工信息进行铝合金模板BIM模型构建;测量放线,根据设计要求和铝合金模板BIM模型确定铝合金模板支撑体系的位置,同时放好定位线和结构边线;支撑体系搭建,扎绑好墙体和梁柱的钢筋,架设好墙模板和梁模板,且梁模板使用可调节独立支撑进行支撑;铝模板体系安装,在墙模板和梁模板之间安装铝模龙骨,在铝模龙骨上铺设铝模板;叠合楼板吊装,通过吊装的方式将叠合楼板铺设在铝模板上,叠合楼板之间通过预留钢筋扎绑,叠合楼板与墙体和梁柱的预留钢筋也一同扎绑,本发明叠合楼板成型质量得到显著提高,施工便捷性得到了有效的提升。
Integrated aluminum alloy formwork construction method applied to composite floor slab
The invention provides an integrated aluminum alloy formwork construction method applied to a composite floor slab. The integrated aluminum alloy formwork construction method comprises the steps that preparation before construction is conducted, and aluminum alloy formwork BIM model construction is conducted based on a construction drawing and composite floor slab target construction information; measuring and setting out are conducted, the position of an aluminum alloy formwork supporting system is determined according to the design requirement and the aluminum alloy formwork BIM model, and meanwhile a positioning line and a structure side line are set up; a supporting system is built, reinforcing steel bars of a wall body and beam columns are bound, a wall formwork and a beam formwork are erected, and the beam formwork is supported through an adjustable independent support; an aluminum formwork system is installed, specifically, an aluminum formwork keel is installed between the wall formwork and the beam formwork, and an aluminum formwork is laid on the aluminum formwork keel; the composite floor slabs are hoisted, the composite floor slabs are laid on the aluminum formworks in a hoisting mode, the composite floor slabs are bound through reserved steel bars, the composite floor slabs are bound together with the reserved steel bars of the walls and the beam columns, the forming quality of the composite floor slabs is remarkably improved, and construction convenience is effectively improved.
本发明提供一种应用于叠合楼板的一体式铝合金模板施工方法,包括施工前准备,基于施工图纸和叠合楼板目标施工信息进行铝合金模板BIM模型构建;测量放线,根据设计要求和铝合金模板BIM模型确定铝合金模板支撑体系的位置,同时放好定位线和结构边线;支撑体系搭建,扎绑好墙体和梁柱的钢筋,架设好墙模板和梁模板,且梁模板使用可调节独立支撑进行支撑;铝模板体系安装,在墙模板和梁模板之间安装铝模龙骨,在铝模龙骨上铺设铝模板;叠合楼板吊装,通过吊装的方式将叠合楼板铺设在铝模板上,叠合楼板之间通过预留钢筋扎绑,叠合楼板与墙体和梁柱的预留钢筋也一同扎绑,本发明叠合楼板成型质量得到显著提高,施工便捷性得到了有效的提升。
Integrated aluminum alloy formwork construction method applied to composite floor slab
应用于叠合楼板的一体式铝合金模板施工方法
ZHAO CHEN (author) / ZHANG BOWEN (author) / CHANG YIFAN (author) / SONG LONGCHAO (author) / XU DANDAN (author) / ZHANG GUIXIAN (author)
2022-11-01
Patent
Electronic Resource
Chinese
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