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Wind-pressure-resistant aluminum plate suspended ceiling system for large-space top surface and mounting construction method of wind-pressure-resistant aluminum plate suspended ceiling system
The invention relates to a wind-pressure-resistant aluminum plate suspended ceiling system for a large-space top surface, the suspended ceiling system comprises an aluminum plate, a connecting fitting structure and angle steel, the angle steel is located in a conversion layer, and a base layer of the conversion layer is welded on the top surface in a large space of a building to form a horizontal plane; the plurality of aluminum plates are adjustably fixed on the angle steel through a connecting fitting structure, and the trend of the aluminum plates is perpendicular to the angle steel; the connecting fitting structure comprises a plurality of connecting fittings connected with each aluminum plate, and each connecting fitting comprises an upper connecting piece, a lower connecting piece and a plastic pad; the invention further relates to an installation and construction method of the wind-pressure-resistant aluminum plate suspended ceiling system for the large-space top face. The aluminum plate suspended ceiling system is applied to the internal space of a large building where typhoons often occur, adapts to the situation that the internal and external wind pressure difference is large under the typhoons, avoids suspended ceiling deformation and cracking, not only guarantees rigid resistance when the typhoons come at the connecting position, but also can adapt to tiny deformation caused by settlement of the building.
本发明涉及到一种大空间顶面用的抗风压铝板吊顶系统,该吊顶系统包括有铝板、连接配件结构和角钢,所述的角钢处于转换层中,该转换层的基层焊接在建筑物大空间内部顶面上形成水平面,多块所述的铝板通过连接配件结构可调节地固定在角钢上,所述铝板的走向垂直于所述的角钢;所述的连接配件结构包括有多个与每块铝板连接的连接配件,该连接配件组成上包括有上连接件、下连接件和塑胶垫;还涉及到大空间顶面用的抗风压铝板吊顶系统的安装施工方法。本发明的铝板吊顶系统应用在经常有台风的大型建造的内部空间中,适应台风下内外风压差较大的情形,避免吊顶变形和开裂,既保证连接处台风来临时的刚性抵抗,又能够适应大楼本身沉降而造成的微小形变。
Wind-pressure-resistant aluminum plate suspended ceiling system for large-space top surface and mounting construction method of wind-pressure-resistant aluminum plate suspended ceiling system
The invention relates to a wind-pressure-resistant aluminum plate suspended ceiling system for a large-space top surface, the suspended ceiling system comprises an aluminum plate, a connecting fitting structure and angle steel, the angle steel is located in a conversion layer, and a base layer of the conversion layer is welded on the top surface in a large space of a building to form a horizontal plane; the plurality of aluminum plates are adjustably fixed on the angle steel through a connecting fitting structure, and the trend of the aluminum plates is perpendicular to the angle steel; the connecting fitting structure comprises a plurality of connecting fittings connected with each aluminum plate, and each connecting fitting comprises an upper connecting piece, a lower connecting piece and a plastic pad; the invention further relates to an installation and construction method of the wind-pressure-resistant aluminum plate suspended ceiling system for the large-space top face. The aluminum plate suspended ceiling system is applied to the internal space of a large building where typhoons often occur, adapts to the situation that the internal and external wind pressure difference is large under the typhoons, avoids suspended ceiling deformation and cracking, not only guarantees rigid resistance when the typhoons come at the connecting position, but also can adapt to tiny deformation caused by settlement of the building.
本发明涉及到一种大空间顶面用的抗风压铝板吊顶系统,该吊顶系统包括有铝板、连接配件结构和角钢,所述的角钢处于转换层中,该转换层的基层焊接在建筑物大空间内部顶面上形成水平面,多块所述的铝板通过连接配件结构可调节地固定在角钢上,所述铝板的走向垂直于所述的角钢;所述的连接配件结构包括有多个与每块铝板连接的连接配件,该连接配件组成上包括有上连接件、下连接件和塑胶垫;还涉及到大空间顶面用的抗风压铝板吊顶系统的安装施工方法。本发明的铝板吊顶系统应用在经常有台风的大型建造的内部空间中,适应台风下内外风压差较大的情形,避免吊顶变形和开裂,既保证连接处台风来临时的刚性抵抗,又能够适应大楼本身沉降而造成的微小形变。
Wind-pressure-resistant aluminum plate suspended ceiling system for large-space top surface and mounting construction method of wind-pressure-resistant aluminum plate suspended ceiling system
一种大空间顶面用的抗风压铝板吊顶系统及安装施工方法
WANG JIASHENG (author) / ZHANG NIANCI (author) / LI XINDAN (author) / HE BAO (author) / WU ENPING (author) / YANG MU (author)
2024-11-19
Patent
Electronic Resource
Chinese
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