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Double-layer laminated glass corner reinforcing structure and reinforcing method
The invention relates to a double-layer laminated glass corner reinforcing structure and method, and relates to the field of curtain wall construction. The reinforcing structure comprises two pieces of double-layer laminated glass installed at the corner, an aluminum alloy stand column and two aluminum alloy covered edges, and the double-layer laminated glass is sleeved with the aluminum alloy covered edges. The aluminum alloy stand column can be firmly erected through the aluminum alloy cross beam and the connecting assembly, then the end portion of the double-layer laminated glass is sleeved with the aluminum alloy covered edge, the aluminum alloy covered edge and the aluminum alloy stand column are tensioned and reinforced through the tensioning assembly, the second EPDM adhesive tape and the first EPDM adhesive tape are plugged into the buckle cover base pressing plate and the aluminum alloy stand column correspondingly, and then the aluminum alloy stand column and the double-layer laminated glass are fastened. The EPDM adhesive tape II and the EPDM adhesive tape I abut against the outer side and the inner side of the glass by screwing up the screw cap on the stainless steel bolt, so that compression type reinforcement is realized, and the purpose of ensuring the structural stability of the corner of the curtain wall by adopting extrusion type compression reinforcement treatment after the corner of the curtain wall is subjected to tensioning type reinforcement treatment and adopting a double reinforcement mode is achieved.
本申请涉及一种双层夹胶玻璃转角加固构造及加固方法,涉及幕墙施工领域。本加固构造包括安装在转角处的两个双层夹胶玻璃、铝合金立柱和两个铝合金包边,所述铝合金包边套设在双层夹胶玻璃上。本申请能够通过铝合金横梁和连接组件将铝合金立柱架设牢固,接着在双层夹胶玻璃的端部套上铝合金包边,在铝合金包边与铝合金立柱之间通过拉紧组件拉紧加固,扣盖底座压板与铝合金立柱上分别塞入EPDM胶条二和EPDM胶条一,通过拧紧不锈钢螺栓上的螺帽,使EPDM胶条二和EPDM胶条一抵在玻璃的外侧和内侧,实现压紧式加固,即可达到对幕墙转角处进行拉紧式加固处理后,再采用挤压式压紧加固处理,双重加固的方式以保证幕墙转角处结构稳定的目的。
Double-layer laminated glass corner reinforcing structure and reinforcing method
The invention relates to a double-layer laminated glass corner reinforcing structure and method, and relates to the field of curtain wall construction. The reinforcing structure comprises two pieces of double-layer laminated glass installed at the corner, an aluminum alloy stand column and two aluminum alloy covered edges, and the double-layer laminated glass is sleeved with the aluminum alloy covered edges. The aluminum alloy stand column can be firmly erected through the aluminum alloy cross beam and the connecting assembly, then the end portion of the double-layer laminated glass is sleeved with the aluminum alloy covered edge, the aluminum alloy covered edge and the aluminum alloy stand column are tensioned and reinforced through the tensioning assembly, the second EPDM adhesive tape and the first EPDM adhesive tape are plugged into the buckle cover base pressing plate and the aluminum alloy stand column correspondingly, and then the aluminum alloy stand column and the double-layer laminated glass are fastened. The EPDM adhesive tape II and the EPDM adhesive tape I abut against the outer side and the inner side of the glass by screwing up the screw cap on the stainless steel bolt, so that compression type reinforcement is realized, and the purpose of ensuring the structural stability of the corner of the curtain wall by adopting extrusion type compression reinforcement treatment after the corner of the curtain wall is subjected to tensioning type reinforcement treatment and adopting a double reinforcement mode is achieved.
本申请涉及一种双层夹胶玻璃转角加固构造及加固方法,涉及幕墙施工领域。本加固构造包括安装在转角处的两个双层夹胶玻璃、铝合金立柱和两个铝合金包边,所述铝合金包边套设在双层夹胶玻璃上。本申请能够通过铝合金横梁和连接组件将铝合金立柱架设牢固,接着在双层夹胶玻璃的端部套上铝合金包边,在铝合金包边与铝合金立柱之间通过拉紧组件拉紧加固,扣盖底座压板与铝合金立柱上分别塞入EPDM胶条二和EPDM胶条一,通过拧紧不锈钢螺栓上的螺帽,使EPDM胶条二和EPDM胶条一抵在玻璃的外侧和内侧,实现压紧式加固,即可达到对幕墙转角处进行拉紧式加固处理后,再采用挤压式压紧加固处理,双重加固的方式以保证幕墙转角处结构稳定的目的。
Double-layer laminated glass corner reinforcing structure and reinforcing method
一种双层夹胶玻璃转角加固构造及加固方法
WANG JINXIN (author) / LI FEI (author) / NIE XINJIE (author) / GUO NING (author) / CUI GUANGYUAN (author) / ZHANG YANGYANG (author) / HUANG XIAOLEI (author) / CHEN FUPENG (author)
2024-02-20
Patent
Electronic Resource
Chinese
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