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Self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall and construction method
The invention discloses a self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall and a construction method. The self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall comprises a thermal insulation plate. A first concrete layer and a second concrete layer are arranged on the two sides of the heat preservation plate correspondingly. Steel wire meshes are arranged in the first concrete layer and the second concrete layer; a first double-end stud is arranged in the heat preservation plate in a penetrating mode. The screwing directions of threads on the two sides of the first double-end stud are opposite; the two ends of the first double-end stud penetrate through the corresponding steel wire meshes respectively; a first nut and a second nut are arranged at the two ends of the first double-end stud; each first nut is arranged on the side, away from the heat preservation plate, of the corresponding steel wire mesh. Each second nut is arranged on the side, close to the heat preservation plate, of the corresponding steel wire mesh. The double-end stud with the threads on the two sides opposite in screwing direction is arranged, the two nuts are arranged on the two sides of the steel wire mesh to be in threaded connection with the double-end stud, and therefore bidirectional reverse fixing of the nuts and the double-end stud can be achieved, the heat preservation plate and the steel wire mesh can be firmly fixed, and loosening is avoided.
本发明公开了一种可自承重超低能耗框架结构填充保温外墙及施工方法,包括保温板;保温板两侧均分别设有第一混凝土层和第二混凝土层;第一混凝土层和第二混凝土层内部均设有钢丝网;保温板内部穿设有第一双头螺柱;第一双头螺柱两侧螺纹旋向相反;第一双头螺柱两端分别穿过相对应的钢丝网;第一双头螺柱两端均设有第一螺母和第二螺母;每个第一螺母均设置于相对应的钢丝网远离保温板一侧;每个第二螺母均设置于相对应的钢丝网靠近保温板一侧。本发明通过设置两侧螺纹旋向相反的双头螺柱,并在钢丝网两侧设置两个螺母与双头螺柱螺纹连接,从而可以实现螺母和双头螺柱的双向反向固定,进而可以牢牢固定保温板和钢丝网,避免产生松动。
Self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall and construction method
The invention discloses a self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall and a construction method. The self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall comprises a thermal insulation plate. A first concrete layer and a second concrete layer are arranged on the two sides of the heat preservation plate correspondingly. Steel wire meshes are arranged in the first concrete layer and the second concrete layer; a first double-end stud is arranged in the heat preservation plate in a penetrating mode. The screwing directions of threads on the two sides of the first double-end stud are opposite; the two ends of the first double-end stud penetrate through the corresponding steel wire meshes respectively; a first nut and a second nut are arranged at the two ends of the first double-end stud; each first nut is arranged on the side, away from the heat preservation plate, of the corresponding steel wire mesh. Each second nut is arranged on the side, close to the heat preservation plate, of the corresponding steel wire mesh. The double-end stud with the threads on the two sides opposite in screwing direction is arranged, the two nuts are arranged on the two sides of the steel wire mesh to be in threaded connection with the double-end stud, and therefore bidirectional reverse fixing of the nuts and the double-end stud can be achieved, the heat preservation plate and the steel wire mesh can be firmly fixed, and loosening is avoided.
本发明公开了一种可自承重超低能耗框架结构填充保温外墙及施工方法,包括保温板;保温板两侧均分别设有第一混凝土层和第二混凝土层;第一混凝土层和第二混凝土层内部均设有钢丝网;保温板内部穿设有第一双头螺柱;第一双头螺柱两侧螺纹旋向相反;第一双头螺柱两端分别穿过相对应的钢丝网;第一双头螺柱两端均设有第一螺母和第二螺母;每个第一螺母均设置于相对应的钢丝网远离保温板一侧;每个第二螺母均设置于相对应的钢丝网靠近保温板一侧。本发明通过设置两侧螺纹旋向相反的双头螺柱,并在钢丝网两侧设置两个螺母与双头螺柱螺纹连接,从而可以实现螺母和双头螺柱的双向反向固定,进而可以牢牢固定保温板和钢丝网,避免产生松动。
Self-bearing ultralow-energy-consumption frame structure filling thermal insulation outer wall and construction method
一种可自承重超低能耗框架结构填充保温外墙及施工方法
GU SHAOHUA (author) / GU HAOHANG (author) / ZHANG XIAOMENG (author) / XIE JIAN (author) / WANG LIJUN (author) / SUN SHILIN (author)
2024-06-14
Patent
Electronic Resource
Chinese
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