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Passive low-energy-consumption unit curtain wall structure
The invention relates to a passive low-energy-consumption unit curtain wall structure. The passive low-energy-consumption unit curtain wall structure comprises aluminum alloy stand columns, an aluminum alloy cross beam is fixed to an aluminum alloy stand column, the aluminum alloy stand column is divided into two parts including an aluminum alloy male stand column and an aluminum alloy female stand column, and a plurality of pieces of energy-saving glass are symmetrically and fixedly connected to the two sides of the bottom of the aluminum alloy stand column; and glass seam gaps between the energy-saving glass are sealed by self-adhesion waterproof breathable films on four sides, ethylene-propylene-diene monomer rubber strips are packaged between the energy-saving glass and the aluminum alloy stand columns, the ethylene-propylene-diene monomer rubber strips are in a tooth-shaped protrusion shape, and tooth-shaped protrusions can absorb glass size deviation and installation deviation and play a sealing role at the same time. According to the passive low-energy-consumption unit curtain wall structure, the problem of heat loss between the glass of a traditional curtain wall system is effectively solved by matching with a PA66 heat insulation strip and a warm edge partition strip between the energy-saving glass, the glass seam gaps are sealed by four edges of a self-adhesion waterproof breathable film, and the problem that water and dust enter the traditional curtain wall system due to external sealing failure is effectively solved.
本发明涉及一种被动式低能耗单元体幕墙结构,包括铝合金立柱,铝合金横梁固定在铝合金立柱上,铝合金立柱分为两个部分,包括铝合金公立柱和铝合金母立柱,铝合金立柱的底部两侧对称固定连接有若干个节能玻璃,节能玻璃之间的玻璃缝间隙采用自粘防水透气膜四边封闭,节能玻璃与铝合金立柱之间封装有三元乙丙胶条,三元乙丙胶条为齿状凸起状,齿状凸起能在吸收玻璃尺寸偏差及安装偏差的同时起到封闭的作用,配合节能玻璃之间的PA66隔热条和暖边隔条,有效解决传统幕墙系统的玻璃间的热流失问题,玻璃缝间隙采用自粘防水透气膜四边封闭,有效解决传统幕墙系统的因外部密封失效而产生的进水及灰尘进入。
Passive low-energy-consumption unit curtain wall structure
The invention relates to a passive low-energy-consumption unit curtain wall structure. The passive low-energy-consumption unit curtain wall structure comprises aluminum alloy stand columns, an aluminum alloy cross beam is fixed to an aluminum alloy stand column, the aluminum alloy stand column is divided into two parts including an aluminum alloy male stand column and an aluminum alloy female stand column, and a plurality of pieces of energy-saving glass are symmetrically and fixedly connected to the two sides of the bottom of the aluminum alloy stand column; and glass seam gaps between the energy-saving glass are sealed by self-adhesion waterproof breathable films on four sides, ethylene-propylene-diene monomer rubber strips are packaged between the energy-saving glass and the aluminum alloy stand columns, the ethylene-propylene-diene monomer rubber strips are in a tooth-shaped protrusion shape, and tooth-shaped protrusions can absorb glass size deviation and installation deviation and play a sealing role at the same time. According to the passive low-energy-consumption unit curtain wall structure, the problem of heat loss between the glass of a traditional curtain wall system is effectively solved by matching with a PA66 heat insulation strip and a warm edge partition strip between the energy-saving glass, the glass seam gaps are sealed by four edges of a self-adhesion waterproof breathable film, and the problem that water and dust enter the traditional curtain wall system due to external sealing failure is effectively solved.
本发明涉及一种被动式低能耗单元体幕墙结构,包括铝合金立柱,铝合金横梁固定在铝合金立柱上,铝合金立柱分为两个部分,包括铝合金公立柱和铝合金母立柱,铝合金立柱的底部两侧对称固定连接有若干个节能玻璃,节能玻璃之间的玻璃缝间隙采用自粘防水透气膜四边封闭,节能玻璃与铝合金立柱之间封装有三元乙丙胶条,三元乙丙胶条为齿状凸起状,齿状凸起能在吸收玻璃尺寸偏差及安装偏差的同时起到封闭的作用,配合节能玻璃之间的PA66隔热条和暖边隔条,有效解决传统幕墙系统的玻璃间的热流失问题,玻璃缝间隙采用自粘防水透气膜四边封闭,有效解决传统幕墙系统的因外部密封失效而产生的进水及灰尘进入。
Passive low-energy-consumption unit curtain wall structure
一种被动式低能耗单元体幕墙结构
OU ANTAO (Autor:in) / JINAIMUSHA (Autor:in) / LU CHUNMING (Autor:in) / YAN GUANGMANG (Autor:in) / HU XIAOMING (Autor:in) / ZHENG HAILE (Autor:in)
25.01.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
E04B
Allgemeine Baukonstruktionen
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