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Construction method of continuous multi-span large-span high-altitude aluminum alloy latticed shell structure
The invention relates to a construction method of a continuous multi-span large-span high-altitude aluminum alloy latticed shell structure. The construction method comprises the following steps of S1,mounting and fixing a hinged support to a building main body; S2, mounting and fixing dendriform column supporting structures to the hinged support; S3, fixedly connecting steel structure connectingjoints to the dendriform column supporting structures and fixedly connecting steel structure member bars to the steel structure connecting joints; S4, fixedly connecting first aluminum alloy member bars to steel and aluminum mixed joints and fixedly connecting the steel and aluminum mixed joints to the steel structure member bars; and S5, fixedly connecting aluminum alloy joints to the first aluminum alloy member bars and fixedly connecting second aluminum alloy member bars to the aluminum alloy joints. According to the construction method of the continuous multi-span large-span high-altitudealuminum alloy latticed shell structure, a purpose of safe and reliable construction of the large-span aluminum alloy latticed shell structure on multiple continuous high-rise buildings is achieved. The construction method is simple in splicing form and high in construction efficiency, and can achieve the continuous multi-span large-span high-altitude aluminum alloy latticed shell structure quickly and safely.
本发明涉及一种连续多跨大跨高空铝合金网壳结构的施工方法,其包括S1,将铰接支座安装固定于建筑主体上;S2,将树状柱支撑结构安装固定于铰接支座上;S3,将钢结构连接节点固定连接至树状柱支撑结构并将钢结构杆件固定连接至钢结构连接节点;S4,将第一铝合金杆件固定连接至钢铝混合节点并将钢铝混合节点固定连接至钢结构杆件;以及S5,将铝合金节点固定连接至第一铝合金杆件并将第二铝合金杆件固定连接至铝合金节点。根据本发明的连续多跨大跨高空铝合金网壳结构的施工方法实现了大跨度铝合金网壳结构在多幢连续高层建筑上安全可靠施工的目的,其拼装形式简单,施工效率高,可以快速安全实现连续多跨大跨高空铝合金网壳结构。
Construction method of continuous multi-span large-span high-altitude aluminum alloy latticed shell structure
The invention relates to a construction method of a continuous multi-span large-span high-altitude aluminum alloy latticed shell structure. The construction method comprises the following steps of S1,mounting and fixing a hinged support to a building main body; S2, mounting and fixing dendriform column supporting structures to the hinged support; S3, fixedly connecting steel structure connectingjoints to the dendriform column supporting structures and fixedly connecting steel structure member bars to the steel structure connecting joints; S4, fixedly connecting first aluminum alloy member bars to steel and aluminum mixed joints and fixedly connecting the steel and aluminum mixed joints to the steel structure member bars; and S5, fixedly connecting aluminum alloy joints to the first aluminum alloy member bars and fixedly connecting second aluminum alloy member bars to the aluminum alloy joints. According to the construction method of the continuous multi-span large-span high-altitudealuminum alloy latticed shell structure, a purpose of safe and reliable construction of the large-span aluminum alloy latticed shell structure on multiple continuous high-rise buildings is achieved. The construction method is simple in splicing form and high in construction efficiency, and can achieve the continuous multi-span large-span high-altitude aluminum alloy latticed shell structure quickly and safely.
本发明涉及一种连续多跨大跨高空铝合金网壳结构的施工方法,其包括S1,将铰接支座安装固定于建筑主体上;S2,将树状柱支撑结构安装固定于铰接支座上;S3,将钢结构连接节点固定连接至树状柱支撑结构并将钢结构杆件固定连接至钢结构连接节点;S4,将第一铝合金杆件固定连接至钢铝混合节点并将钢铝混合节点固定连接至钢结构杆件;以及S5,将铝合金节点固定连接至第一铝合金杆件并将第二铝合金杆件固定连接至铝合金节点。根据本发明的连续多跨大跨高空铝合金网壳结构的施工方法实现了大跨度铝合金网壳结构在多幢连续高层建筑上安全可靠施工的目的,其拼装形式简单,施工效率高,可以快速安全实现连续多跨大跨高空铝合金网壳结构。
Construction method of continuous multi-span large-span high-altitude aluminum alloy latticed shell structure
一种连续多跨大跨高空铝合金网壳结构的施工方法
OUYANG YUANWEN (Autor:in) / YIN JIAN (Autor:in) / LI QUANWEI (Autor:in) / LI ZHIQIANG (Autor:in) / WANG JUNYAO (Autor:in) / XIA JUN (Autor:in) / PEN CHUANGHUI (Autor:in) / QIU LIQIU (Autor:in) / ZHOU QIANNAN (Autor:in)
09.06.2020
Patent
Elektronische Ressource
Chinesisch
IPC:
E04B
Allgemeine Baukonstruktionen
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GENERAL BUILDING CONSTRUCTIONS
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