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Assembled polypropylene fiber sludge ceramsite concrete wall based on rough surface connection and construction method thereof
The invention provides an assembled polypropylene fiber sludge ceramsite concrete wall based on rough surface connection. The wall comprises a prefabricated panel, the left side face and the right side face of the prefabricated panel are both rough surfaces, and horizontal reinforced bars and vertical reinforced bars are arranged in the prefabricated panel; field-cast vertical edge artifacts and field-cast connecting columns are connected with the prefabricated panel through the rough surfaces, longitudinal bars are arranged in the prefabricated panel, the longitudinal bars and the horizontal reinforced bars are connected in an embedded mode, reliable anchoring is achieved by spot welding the joints one by one, and a connecting structure in the horizontal direction is formed; the wall further comprises sleeves provided with concave and convex grooves, the upper ends of the vertical reinforced bars are inserted into the sleeves, after grouting materials are poured into the sleeves and hardened, reliable connection between the vertical reinforced bars and the sleeves is achieved, polypropylene fiber sludge ceramsite concrete is poured, and a connecting structure in the vertical direction is formed, wherein the prefabricated panel is made of polypropylene fiber sludge ceramsite concrete. The invention further provides the construction method of the wall. According to the assembled polypropylene fiber sludge ceramsite concrete wall based on the rough surface connection and the construction method thereof, through the innovation of materials, connecting methods and forms of reinforcement, and compared with a traditional assembled wall, the wall has the advantages of being energy dissipated, shock absorbed, ecological, environment protective, fast in construction, ecological and practical.
Assembled polypropylene fiber sludge ceramsite concrete wall based on rough surface connection and construction method thereof
The invention provides an assembled polypropylene fiber sludge ceramsite concrete wall based on rough surface connection. The wall comprises a prefabricated panel, the left side face and the right side face of the prefabricated panel are both rough surfaces, and horizontal reinforced bars and vertical reinforced bars are arranged in the prefabricated panel; field-cast vertical edge artifacts and field-cast connecting columns are connected with the prefabricated panel through the rough surfaces, longitudinal bars are arranged in the prefabricated panel, the longitudinal bars and the horizontal reinforced bars are connected in an embedded mode, reliable anchoring is achieved by spot welding the joints one by one, and a connecting structure in the horizontal direction is formed; the wall further comprises sleeves provided with concave and convex grooves, the upper ends of the vertical reinforced bars are inserted into the sleeves, after grouting materials are poured into the sleeves and hardened, reliable connection between the vertical reinforced bars and the sleeves is achieved, polypropylene fiber sludge ceramsite concrete is poured, and a connecting structure in the vertical direction is formed, wherein the prefabricated panel is made of polypropylene fiber sludge ceramsite concrete. The invention further provides the construction method of the wall. According to the assembled polypropylene fiber sludge ceramsite concrete wall based on the rough surface connection and the construction method thereof, through the innovation of materials, connecting methods and forms of reinforcement, and compared with a traditional assembled wall, the wall has the advantages of being energy dissipated, shock absorbed, ecological, environment protective, fast in construction, ecological and practical.
Assembled polypropylene fiber sludge ceramsite concrete wall based on rough surface connection and construction method thereof
HUANG WEI (author) / LI BIN (author) / ZHANG CHENGHUA (author) / SHI ANREN (author) / CHEN JIANCANG (author)
2015-06-17
Patent
Electronic Resource
English
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