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Assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint
The invention discloses an assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint, and relates to the technical field of assembly type buildings, and the assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint comprises a prefabricated shear wall and a fully-prefabricated floor slab; one end or the middle part of the fully-prefabricated floor slab is arranged between the upper prefabricated shear wall and the lower prefabricated shear wall; compared with a traditional cast-in-place structure, the prefabricated parts are manufactured and maintained in a factory, safety and reliability of a building structure can be better guaranteed, on-site wet operation is reduced, lower carbon and environment friendliness are achieved, and the construction site is low-carbon, green and efficient. The connecting joint of the fully-prefabricated floor slab and the prefabricated shear wall has the characteristics of stable force transmission performance, simple and efficient construction method, good economic effect and the like, has the advantages of high construction speed, reduction of template material cost, labor cost, management cost and the like, and is safe and attractive. The method can adapt to low carbon and environmental protection of a modern engineering structure, reduces carbon emission for achieving the purposes of carbon peak reaching and carbon neutralization, and meets the requirements of green building development of industrialization and informatization of modern buildings.
本发明公开一种装配式全预制楼板与预制剪力墙连接节点,涉及装配式建筑技术领域,包括预制剪力墙和全预制楼板;所述全预制楼板的一端或中部设置于上下两个所述预制剪力墙之间;预制构件工厂制作养护,较传统现浇结构更能保证建筑结构的安全可靠,减少了现场的湿作业,更低碳环保,使施工现场低碳、绿色、高效。所述全预制楼板与预制剪力墙连接节点,不仅具有稳固的传力性能,而且施工方法简单高效,经济效果好等特点,施工速度快,降低了模板材料费、人工费、管理费等优点,节点安全、美观。能适应现代工程结构低碳环保,为碳达峰和碳中和的目标降低碳的排放,符合现代建筑工业化、信息化的绿色建筑发展的要求。
Assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint
The invention discloses an assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint, and relates to the technical field of assembly type buildings, and the assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint comprises a prefabricated shear wall and a fully-prefabricated floor slab; one end or the middle part of the fully-prefabricated floor slab is arranged between the upper prefabricated shear wall and the lower prefabricated shear wall; compared with a traditional cast-in-place structure, the prefabricated parts are manufactured and maintained in a factory, safety and reliability of a building structure can be better guaranteed, on-site wet operation is reduced, lower carbon and environment friendliness are achieved, and the construction site is low-carbon, green and efficient. The connecting joint of the fully-prefabricated floor slab and the prefabricated shear wall has the characteristics of stable force transmission performance, simple and efficient construction method, good economic effect and the like, has the advantages of high construction speed, reduction of template material cost, labor cost, management cost and the like, and is safe and attractive. The method can adapt to low carbon and environmental protection of a modern engineering structure, reduces carbon emission for achieving the purposes of carbon peak reaching and carbon neutralization, and meets the requirements of green building development of industrialization and informatization of modern buildings.
本发明公开一种装配式全预制楼板与预制剪力墙连接节点,涉及装配式建筑技术领域,包括预制剪力墙和全预制楼板;所述全预制楼板的一端或中部设置于上下两个所述预制剪力墙之间;预制构件工厂制作养护,较传统现浇结构更能保证建筑结构的安全可靠,减少了现场的湿作业,更低碳环保,使施工现场低碳、绿色、高效。所述全预制楼板与预制剪力墙连接节点,不仅具有稳固的传力性能,而且施工方法简单高效,经济效果好等特点,施工速度快,降低了模板材料费、人工费、管理费等优点,节点安全、美观。能适应现代工程结构低碳环保,为碳达峰和碳中和的目标降低碳的排放,符合现代建筑工业化、信息化的绿色建筑发展的要求。
Assembly type fully-prefabricated floor slab and prefabricated shear wall connecting joint
一种装配式全预制楼板与预制剪力墙连接节点
ZHANG SHUAI (Autor:in) / ZHANG XINLONG (Autor:in) / LIU QINGDONG (Autor:in) / QIN WENPING (Autor:in) / CHEN QIFEI (Autor:in) / ZHENG YUANWEI (Autor:in) / ZHENG FANGTONG (Autor:in) / LI TIANYU (Autor:in) / WANG XUELI (Autor:in) / TAN ZHIQING (Autor:in)
12.01.2024
Patent
Elektronische Ressource
Chinesisch
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