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Curtain wall aluminum plate drainage system and construction method thereof
The invention relates to the field of steel structure building curtain walls, in particular to a curtain wall aluminum plate drainage system and a construction method thereof.The curtain wall aluminum plate drainage system comprises a connecting mechanism and a hot air mechanism, one end of the connecting mechanism is used for being fixedly connected to a steel structure building, and the other end of the connecting mechanism is used for being connected with a curtain wall aluminum plate; the end, used for being connected with the curtain wall aluminum plate, of the connecting mechanism is provided with a drainage space, and the drainage space is arranged in the vertical direction and used for conducting drainage on the junction of a curtain wall system. The hot air mechanism comprises a hot air blower and a hot air pipe, the hot air blower is located at the bottom of the drainage space, the hot air pipe is arranged in the drainage space in a penetrating mode, the hot air blower transmits hot air into the drainage space through the hot air pipe, and the hot air blown out by the hot air blower can effectively discharge moisture in the drainage space from top to bottom. The curtain wall system has the effect of solving the problem that the drainage performance of the whole curtain wall system is seriously affected due to the fact that the arrangement of a drainage system in the related technology is difficult to meet the drainage requirement of the special-shaped curved surface steel structure curtain wall connecting part.
本申请涉及钢结构建筑幕墙领域,尤其是涉及一种幕墙铝板排水系统及其施工方法,包括连接机构和热风机构,连接机构的一端用于固定连接在钢结构建筑上,连接机构的另一端用于与幕墙铝板相连接,连接机构用于与幕墙铝板相连接的一端设置有排水空间,排水空间呈竖直方向设置,排水空间用于幕墙系统交界处进行排水;热风机构包括热风机和热风管,热风机位于排水空间的底部,热风管穿设在排水空间内,热风机通过热风管将热风传递至排水空间内,热风机吹出的热风能够有效地从上至下将排水空间内的水分排出。本申请具有解决相关技术中的排水系统的设置难以满足异形曲面钢结构幕墙连接部的排水要求进而严重影响了整个幕墙系统的排水性能的问题的效果。
Curtain wall aluminum plate drainage system and construction method thereof
The invention relates to the field of steel structure building curtain walls, in particular to a curtain wall aluminum plate drainage system and a construction method thereof.The curtain wall aluminum plate drainage system comprises a connecting mechanism and a hot air mechanism, one end of the connecting mechanism is used for being fixedly connected to a steel structure building, and the other end of the connecting mechanism is used for being connected with a curtain wall aluminum plate; the end, used for being connected with the curtain wall aluminum plate, of the connecting mechanism is provided with a drainage space, and the drainage space is arranged in the vertical direction and used for conducting drainage on the junction of a curtain wall system. The hot air mechanism comprises a hot air blower and a hot air pipe, the hot air blower is located at the bottom of the drainage space, the hot air pipe is arranged in the drainage space in a penetrating mode, the hot air blower transmits hot air into the drainage space through the hot air pipe, and the hot air blown out by the hot air blower can effectively discharge moisture in the drainage space from top to bottom. The curtain wall system has the effect of solving the problem that the drainage performance of the whole curtain wall system is seriously affected due to the fact that the arrangement of a drainage system in the related technology is difficult to meet the drainage requirement of the special-shaped curved surface steel structure curtain wall connecting part.
本申请涉及钢结构建筑幕墙领域,尤其是涉及一种幕墙铝板排水系统及其施工方法,包括连接机构和热风机构,连接机构的一端用于固定连接在钢结构建筑上,连接机构的另一端用于与幕墙铝板相连接,连接机构用于与幕墙铝板相连接的一端设置有排水空间,排水空间呈竖直方向设置,排水空间用于幕墙系统交界处进行排水;热风机构包括热风机和热风管,热风机位于排水空间的底部,热风管穿设在排水空间内,热风机通过热风管将热风传递至排水空间内,热风机吹出的热风能够有效地从上至下将排水空间内的水分排出。本申请具有解决相关技术中的排水系统的设置难以满足异形曲面钢结构幕墙连接部的排水要求进而严重影响了整个幕墙系统的排水性能的问题的效果。
Curtain wall aluminum plate drainage system and construction method thereof
一种幕墙铝板排水系统及其施工方法
LIANG WEIMING (Autor:in) / LYU WENRUI (Autor:in) / WU ZHENGDI (Autor:in) / ZHENG JUNXIONG (Autor:in) / CHEN YUANXIU (Autor:in) / SHEN HONGLIANG (Autor:in) / SONG QIANMING (Autor:in) / LI BINGZHENG (Autor:in)
10.10.2023
Patent
Elektronische Ressource
Chinesisch
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