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Three-dimensional adjusting daylighting roof curtain wall system adapting to three-dimensional space and construction method
The invention relates to a three-dimensional adjusting daylighting roof curtain wall system adapting to a three-dimensional space and a construction method, and belongs to the field of curtain walls.The three-dimensional adjusting daylighting roof curtain wall system comprises a main keel and a secondary keel which are crossed, wherein daylighting roof arc glass is installed on the same side of the main keel and the secondary keel; a glass pressing plate is arranged on the outer side of the glass and used for fixing the glass; the main keel and the secondary keel are connected through a crossbeam connecting piece; the main keel and a main keel adjusting code piece below the main keel are fixedly connected through a fourth fastener; a connecting hole of the fourth fastener and the main keel adjusting code piece is a long round hole; a supporting arm of the main keel adjusting code piece and a supporting arm of a main keel base below the main keel adjusting code piece are adjusted andfixed in a height mode through a vertical long round hole; and the main keel base and a steel base below the main keel base are fixedly connected through a long round hole in the left-right direction.According to the scheme, the aluminum alloy keels are easy to machine and can be bent at will according to the shape of a daylighting roof, enough gaps are formed between the glass and the keels to meet the requirement for mutual displacement and dislocation, and the keels can be rotationally connected at any angle through the connecting structure.
本发明涉及一种适应立体空间的三维调节采光顶幕墙系统及施工方法,属于幕墙领域。包括十字交叉的主龙骨和次龙骨,采光顶弯弧玻璃安装在主龙骨和次龙骨同侧,在玻璃外侧设置了玻璃压板用于固定玻璃,主龙骨与次龙骨通过横梁连接件连接而成,紧固件四将主龙骨及其下方的主龙骨调节码件进行固定连接,紧固件四与两者的连接孔为长圆孔,主龙骨调节码件的支撑臂和其下方的主龙骨底座的支撑臂之间通过竖向的长圆孔实现高低调节固定,主龙骨底座与其下方的钢底座通过左右方向的长圆孔固定连接。本方案中铝合金龙骨加工简单,可以根据采光顶造型任意弯曲,玻璃和龙骨之间有足够的空隙来满足相互位移错动,连接构造可以实现龙骨之间的任意角度的旋转连接。
Three-dimensional adjusting daylighting roof curtain wall system adapting to three-dimensional space and construction method
The invention relates to a three-dimensional adjusting daylighting roof curtain wall system adapting to a three-dimensional space and a construction method, and belongs to the field of curtain walls.The three-dimensional adjusting daylighting roof curtain wall system comprises a main keel and a secondary keel which are crossed, wherein daylighting roof arc glass is installed on the same side of the main keel and the secondary keel; a glass pressing plate is arranged on the outer side of the glass and used for fixing the glass; the main keel and the secondary keel are connected through a crossbeam connecting piece; the main keel and a main keel adjusting code piece below the main keel are fixedly connected through a fourth fastener; a connecting hole of the fourth fastener and the main keel adjusting code piece is a long round hole; a supporting arm of the main keel adjusting code piece and a supporting arm of a main keel base below the main keel adjusting code piece are adjusted andfixed in a height mode through a vertical long round hole; and the main keel base and a steel base below the main keel base are fixedly connected through a long round hole in the left-right direction.According to the scheme, the aluminum alloy keels are easy to machine and can be bent at will according to the shape of a daylighting roof, enough gaps are formed between the glass and the keels to meet the requirement for mutual displacement and dislocation, and the keels can be rotationally connected at any angle through the connecting structure.
本发明涉及一种适应立体空间的三维调节采光顶幕墙系统及施工方法,属于幕墙领域。包括十字交叉的主龙骨和次龙骨,采光顶弯弧玻璃安装在主龙骨和次龙骨同侧,在玻璃外侧设置了玻璃压板用于固定玻璃,主龙骨与次龙骨通过横梁连接件连接而成,紧固件四将主龙骨及其下方的主龙骨调节码件进行固定连接,紧固件四与两者的连接孔为长圆孔,主龙骨调节码件的支撑臂和其下方的主龙骨底座的支撑臂之间通过竖向的长圆孔实现高低调节固定,主龙骨底座与其下方的钢底座通过左右方向的长圆孔固定连接。本方案中铝合金龙骨加工简单,可以根据采光顶造型任意弯曲,玻璃和龙骨之间有足够的空隙来满足相互位移错动,连接构造可以实现龙骨之间的任意角度的旋转连接。
Three-dimensional adjusting daylighting roof curtain wall system adapting to three-dimensional space and construction method
一种适应立体空间的三维调节采光顶幕墙系统及施工方法
YAN ZHENG (author) / LAI WUQING (author) / XIONG LIANBO (author)
2020-10-30
Patent
Electronic Resource
Chinese
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