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Flexible connection structure suitable for fabricated steel structure and enclosure wallboards and installation method
The invention discloses a flexible connection structure suitable for a fabricated steel structure and enclosure wallboards and an installation method, and relates to the field of enclosure wallboard connection nodes. The flexible connection structure comprises H-shaped steel beams, H-shaped steel columns and the enclosure wallboards; the multiple enclosure wallboards are assembled in a steel structure frame formed by the H-shaped steel beams and the H-shaped steel columns in parallel; each H-shaped steel beam comprises an upper flange and a web plate and a lower flange; the top of each enclosure wallboard is connected with the lower flange of the H-shaped steel beam located on the upper portion through at least one U-shaped connecting plate; and extruded polystyrene foam plates fill the spaces between the adjacent enclosure wallboards, between the enclosure wallboards and the H-shaped steel beams and between the enclosure wallboards and the H-shaped steel columns. The requirement that the enclosure wallboards of a building do not resist the horizontal effect is met, it is guaranteed that the stress mode of the structure is matched with the design intention, the stress performance is more reasonable, component design and batch and standardization of production and manufacturing are facilitated, the structure is simple, the construction is convenient, and the flexible connection structure has great significance in promoting wide application of steel structure prefabricated buildings.
本发明公开了一种适用于装配式钢结构和围护墙板的柔性连接结构及安装方法,涉及围护墙板连接节点领域,包括H型钢梁、H型钢柱、围护墙板,多块围护墙板并列装配于通过H型钢梁和H型钢柱构成的钢结构框架中,所述H型钢梁包括上翼缘,腹板,下翼缘,每块围护墙板的顶部至少通过一个U型连接板与位于上方的H型钢梁的下翼缘连接;相邻围护墙板间,围护墙板与H型钢梁、H型钢柱之间填入挤塑聚苯乙烯泡沫板。本发明实现了建筑需要围护墙板不参与抵抗水平作用的需求,保证了结构的受力模式与设计意图相匹配,受力性能更合理,有利于构件设计与生产制作的批量化、标准化,构造简单、施工方便,对推动钢结构装配式建筑广泛应用具有重大意义。
Flexible connection structure suitable for fabricated steel structure and enclosure wallboards and installation method
The invention discloses a flexible connection structure suitable for a fabricated steel structure and enclosure wallboards and an installation method, and relates to the field of enclosure wallboard connection nodes. The flexible connection structure comprises H-shaped steel beams, H-shaped steel columns and the enclosure wallboards; the multiple enclosure wallboards are assembled in a steel structure frame formed by the H-shaped steel beams and the H-shaped steel columns in parallel; each H-shaped steel beam comprises an upper flange and a web plate and a lower flange; the top of each enclosure wallboard is connected with the lower flange of the H-shaped steel beam located on the upper portion through at least one U-shaped connecting plate; and extruded polystyrene foam plates fill the spaces between the adjacent enclosure wallboards, between the enclosure wallboards and the H-shaped steel beams and between the enclosure wallboards and the H-shaped steel columns. The requirement that the enclosure wallboards of a building do not resist the horizontal effect is met, it is guaranteed that the stress mode of the structure is matched with the design intention, the stress performance is more reasonable, component design and batch and standardization of production and manufacturing are facilitated, the structure is simple, the construction is convenient, and the flexible connection structure has great significance in promoting wide application of steel structure prefabricated buildings.
本发明公开了一种适用于装配式钢结构和围护墙板的柔性连接结构及安装方法,涉及围护墙板连接节点领域,包括H型钢梁、H型钢柱、围护墙板,多块围护墙板并列装配于通过H型钢梁和H型钢柱构成的钢结构框架中,所述H型钢梁包括上翼缘,腹板,下翼缘,每块围护墙板的顶部至少通过一个U型连接板与位于上方的H型钢梁的下翼缘连接;相邻围护墙板间,围护墙板与H型钢梁、H型钢柱之间填入挤塑聚苯乙烯泡沫板。本发明实现了建筑需要围护墙板不参与抵抗水平作用的需求,保证了结构的受力模式与设计意图相匹配,受力性能更合理,有利于构件设计与生产制作的批量化、标准化,构造简单、施工方便,对推动钢结构装配式建筑广泛应用具有重大意义。
Flexible connection structure suitable for fabricated steel structure and enclosure wallboards and installation method
一种适用于装配式钢结构和围护墙板的柔性连接结构及安装方法
ZHANG ZHI (author) / LIU YUANZHEN (author) / CHEN ZHENHAI (author) / ZHANG JIAGUANG (author) / ZHENG ZHI (author) / ZHANG JINPING (author) / WANG TAO (author) / CHENG JUNXIN (author) / WANG MINGQING (author) / XIE MINJIE (author)
2021-10-22
Patent
Electronic Resource
Chinese
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