A platform for research: civil engineering, architecture and urbanism
Roof embedded integrated expansion joint structure
The invention discloses a roof pre-embedded integrated expansion joint structure which comprises two vertical side plates, two vertical side plates, two vertical side plates and two vertical side plates. The bottoms of the two vertical side plates extend back to back to form the pressure-bearing flanges; the middle parts of the two vertical side plates extend back to back to form the water stop flange, and a clamping gap is formed between the vertical side plates and the water stop flange; the rubber plate is movably and vertically arranged in the two telescopic gaps, the top of the rubber plate extends to form an upper flange, the bottom of the rubber plate extends to form a lower flange, the two opposite sides of the rubber plate respectively form pulling flanges, and the clamping gaps are clamped on the pulling flanges; a plurality of upper rib plates connected among the upper flange, the upper parts of the vertical side plates and the upper parts of the pulling flanges are formed at the upper part of the steel plate, and a plurality of lower rib plates connected among the lower flange, the lower parts of the vertical side plates and the lower parts of the pulling flanges are formed at the lower part of the steel plate. The roof expansion joint structure solves the problem that an existing roof expansion joint structure is prone to water leakage.
本发明公开了一种屋面预埋一体式伸缩缝结构,包括:两个竖向侧板,两个竖向侧板之间形成伸缩缝隙;承压翼缘,两个竖向侧板的底部背向延伸形成有承压翼缘;止水翼缘,两个竖向侧板的中部背向延伸形成有止水翼缘,竖向侧板和止水翼缘中形成有一个夹持缝隙;可活动地竖向设置于两个伸缩缝隙中的橡胶板,其顶部延伸形成有上翼缘,橡胶板的底部延伸形成有下翼缘,其相对两侧分别形成有拉结翼缘,夹持缝隙夹持于拉结翼缘,其上部形成有连接于上翼缘、竖向侧板的上部以及拉结翼缘的上部之间的多个上肋板,其下部形成有连接于下翼缘、竖向侧板的下部以及拉结翼缘的下部之间的多个下肋板。本发明解决了现有的屋面伸缩缝结构易出现漏水现象的问题。
Roof embedded integrated expansion joint structure
The invention discloses a roof pre-embedded integrated expansion joint structure which comprises two vertical side plates, two vertical side plates, two vertical side plates and two vertical side plates. The bottoms of the two vertical side plates extend back to back to form the pressure-bearing flanges; the middle parts of the two vertical side plates extend back to back to form the water stop flange, and a clamping gap is formed between the vertical side plates and the water stop flange; the rubber plate is movably and vertically arranged in the two telescopic gaps, the top of the rubber plate extends to form an upper flange, the bottom of the rubber plate extends to form a lower flange, the two opposite sides of the rubber plate respectively form pulling flanges, and the clamping gaps are clamped on the pulling flanges; a plurality of upper rib plates connected among the upper flange, the upper parts of the vertical side plates and the upper parts of the pulling flanges are formed at the upper part of the steel plate, and a plurality of lower rib plates connected among the lower flange, the lower parts of the vertical side plates and the lower parts of the pulling flanges are formed at the lower part of the steel plate. The roof expansion joint structure solves the problem that an existing roof expansion joint structure is prone to water leakage.
本发明公开了一种屋面预埋一体式伸缩缝结构,包括:两个竖向侧板,两个竖向侧板之间形成伸缩缝隙;承压翼缘,两个竖向侧板的底部背向延伸形成有承压翼缘;止水翼缘,两个竖向侧板的中部背向延伸形成有止水翼缘,竖向侧板和止水翼缘中形成有一个夹持缝隙;可活动地竖向设置于两个伸缩缝隙中的橡胶板,其顶部延伸形成有上翼缘,橡胶板的底部延伸形成有下翼缘,其相对两侧分别形成有拉结翼缘,夹持缝隙夹持于拉结翼缘,其上部形成有连接于上翼缘、竖向侧板的上部以及拉结翼缘的上部之间的多个上肋板,其下部形成有连接于下翼缘、竖向侧板的下部以及拉结翼缘的下部之间的多个下肋板。本发明解决了现有的屋面伸缩缝结构易出现漏水现象的问题。
Roof embedded integrated expansion joint structure
屋面预埋一体式伸缩缝结构
YI JIANZHUO (author) / LI BAOJIANG (author) / ZHANG XISHENG (author) / MOU DEBAO (author) / LIU QUAN (author) / ZHANG HAOTIAN (author)
2022-12-30
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
Movement of a roof expansion joint
Taylor & Francis Verlag | 1987
|Metal roof gutter expansion joint connecting structure and gutter structure
European Patent Office | 2024
|Waterproof structure based on expansion joint of connecting bridge roof
European Patent Office | 2023
|