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Energy-saving auxiliary frame ventilation structure and installation method thereof
The invention discloses an energy-saving auxiliary frame ventilation structure and an installation method thereof. The energy-saving auxiliary frame ventilation structure comprises an energy-saving auxiliary frame which is fixedly connected to a wall through an expansion bolt, the energy-saving auxiliary frame comprises a bottom profile and a top profile, the upper end face of the top profile is connected with a main frame, a plurality of ventilation structural bodies are embedded between the bottom profile and the top profile, a first positioning plate and a second positioning plate are fixedly arranged on the upper end face of the bottom profile and are located on the two sides of the ventilation structural bodies respectively, the ventilation structural bodies comprise inner side ventilation pieces and outer side ventilation pieces, the inner side ventilation pieces and the outer side ventilation pieces are of non-closed profile structures, and inner cavities of the inner side ventilation pieces and inner cavities of the outer side ventilation pieces communicate with each other to form a ventilation channel. By means of the energy-saving auxiliary frame ventilation structure and the installation method thereof, ventilation can be achieved under the condition that the door and window overall structure is not affected, the structural strength and the overall supporting capacity of the energy-saving auxiliary frame can be improved, the installation strength of the main frame is guaranteed, and meanwhile, the good insect-proof, rain-proof and snow-proof effects are achieved.
本发明公开了一种节能附框通风换气结构及其安装方法,包括节能附框,节能附框通过膨胀螺栓固定连接于墙体上。节能附框包括底部型材和顶部型材,顶部型材的上端面连接主框,底部型材和顶部型材之间嵌设有多个通风结构体。底部型材的上端面固定设置有第一定位板和第二定位板,第一定位板和第二定位板分别位于通风结构体的两侧。通风结构体包括内侧通风件和外侧通风件,内侧通风件和外侧通风件为非封闭式型材结构,内侧通风件的内腔和外侧通风件的内腔相互连通以构成通风换气通道。本发明可在不影响门窗整体结构的情况下实现通风换气,可提高节能附框的结构强度和整体支承能力,保证主框的安装强度,同时具有良好的防虫防雨雪效果。
Energy-saving auxiliary frame ventilation structure and installation method thereof
The invention discloses an energy-saving auxiliary frame ventilation structure and an installation method thereof. The energy-saving auxiliary frame ventilation structure comprises an energy-saving auxiliary frame which is fixedly connected to a wall through an expansion bolt, the energy-saving auxiliary frame comprises a bottom profile and a top profile, the upper end face of the top profile is connected with a main frame, a plurality of ventilation structural bodies are embedded between the bottom profile and the top profile, a first positioning plate and a second positioning plate are fixedly arranged on the upper end face of the bottom profile and are located on the two sides of the ventilation structural bodies respectively, the ventilation structural bodies comprise inner side ventilation pieces and outer side ventilation pieces, the inner side ventilation pieces and the outer side ventilation pieces are of non-closed profile structures, and inner cavities of the inner side ventilation pieces and inner cavities of the outer side ventilation pieces communicate with each other to form a ventilation channel. By means of the energy-saving auxiliary frame ventilation structure and the installation method thereof, ventilation can be achieved under the condition that the door and window overall structure is not affected, the structural strength and the overall supporting capacity of the energy-saving auxiliary frame can be improved, the installation strength of the main frame is guaranteed, and meanwhile, the good insect-proof, rain-proof and snow-proof effects are achieved.
本发明公开了一种节能附框通风换气结构及其安装方法,包括节能附框,节能附框通过膨胀螺栓固定连接于墙体上。节能附框包括底部型材和顶部型材,顶部型材的上端面连接主框,底部型材和顶部型材之间嵌设有多个通风结构体。底部型材的上端面固定设置有第一定位板和第二定位板,第一定位板和第二定位板分别位于通风结构体的两侧。通风结构体包括内侧通风件和外侧通风件,内侧通风件和外侧通风件为非封闭式型材结构,内侧通风件的内腔和外侧通风件的内腔相互连通以构成通风换气通道。本发明可在不影响门窗整体结构的情况下实现通风换气,可提高节能附框的结构强度和整体支承能力,保证主框的安装强度,同时具有良好的防虫防雨雪效果。
Energy-saving auxiliary frame ventilation structure and installation method thereof
一种节能附框通风换气结构及其安装方法
CHEN SHIWEI (author) / LI WEI (author) / KONG XIAOLONG (author) / ZHANG CHI (author) / LI ZHIYUAN (author)
2021-12-17
Patent
Electronic Resource
Chinese
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