Prefabricated green assembly type modular building wall

By using a combined structure of an insulating frame and a recycled waste paper pressed block in the prefabricated modular building wall, combined with the fixed screw and concrete components, the problem of insulation material falling off and installation surface mismatch is solved, and higher firmness and assembly convenience are achieved.

CN223135392UActive Publication Date: 2025-07-22CHONGQING LONGCHUAN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422152814.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-07-22
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

In existing prefabricated modular building walls, the insulation material is located inside the wall and is prone to fall off, resulting in the rust of the pull-up parts and mismatch of the installation surface, which affects the service life and assembly convenience of the building wall.

Method used

The insulation frame and the recycled waste paper pressed block are used as the insulation layer, and fixed by fixing screws and slurry mesh, combined with concrete members and fixing members to form a solid structure to ensure that the insulation material is not easy to fall off, and convenient assembly is achieved through the fixing grooves and fixing blocks.

Benefits of technology

It improves the firmness of the insulation components, extends the service life of building walls, reduces the impact of cutting on assembly, and improves assembly convenience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223135392U_ABST
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Abstract

The utility model relates to the technical field of fabricated buildings, in particular to a prefabricated green fabricated modular building wall which comprises a heat preservation component, a first reinforcing component, a second reinforcing component, a first concrete component, a second concrete component, a first fixing component and a second fixing component. The heat preservation component comprises a heat preservation frame, a recycled waste paper pressing block is arranged on the front side of the heat preservation frame, and the first reinforcing component and the second reinforcing component each comprise a pulp hanging net. The heat preservation frame and the recycled waste paper press fit block serve as a heat preservation layer, materials are environmentally friendly, manufacturing cost is reduced, the heat preservation component is fixed through the heat preservation component and the second reinforcing component and wrapped through the first concrete component and the second concrete component, firmness of the heat preservation component is improved, and the heat preservation effect is improved. And the building wall body is connected and fixed through the first fixing component and the second fixing component, so that the assembling convenience of the building wall body is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of assembled buildings, in particular to a prefabricated green assembled modular building wall. Background Art

[0002] Prefabricated buildings refer to buildings that transfer a large amount of on-site work in traditional construction methods to factories, where building components and accessories are processed and manufactured in factories, transported to construction sites, and assembled and installed on site through reliable connection methods. Prefabricated modular building walls are a key component of the prefabricated building system. Their characteristics are that they achieve fast and efficient construction through factory prefabrication and on-site assembly.

[0003] A Chinese patent discloses an assembled modular building wall (authorization announcement number CN220686404U). The patent technology has an ingenious structural design and a simple and practical installation structure. However, the assembled modular building wall relies on tie pieces to fix the insulation material, but the insulation material is located inside the wall. After cutting, the insulation material is completely exposed. The material falling off will cause the tie pieces to leak and rust, affecting the service life of the building wall and the protectiveness of the building wall. The building walls are fixed by the outer snap-fit position. Due to the different sizes of the installation surface, cutting is required, which makes it impossible to fix the building walls after cutting, which is not conducive to the convenience of building wall assembly. Therefore, those skilled in the art provide a prefabricated green assembled modular building wall to solve the problems raised in the above background technology. Utility Model Content

[0004] The purpose of the utility model is to provide a prefabricated green assembled modular building wall to solve the problems raised in the above background technology.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] Prefabricated green assembled modular building wall, including a thermal insulation component, a first reinforcement component, a second reinforcement component, a first concrete component, a second concrete component, a first fixing component and a second fixing component. The first reinforcement component is located at the front side of the thermal insulation component, the second reinforcement component is located at the rear side of the thermal insulation component, the first concrete component is located at the front side of the first reinforcement component, the second concrete component is located at the rear side of the second reinforcement component, the first fixing component is located at the front side of the first concrete component, the second fixing component is located at the rear side of the second concrete component. A fixing screw is installed inside the thermal insulation component. The thermal insulation component includes a thermal insulation frame, and a recycled waste paper pressing block is arranged on the front side of the thermal insulation frame. Both the first reinforcement component and the second reinforcement component include a grouting net, both the first concrete component and the second concrete component include a concrete layer. Reinforcement holes are formed inside the concrete layer, and clamping grooves are formed on the outer side of the concrete layer. The second fixing component includes a panel, and a clamping block is arranged on the inner side of the panel.

[0007] As a further scheme of the present utility model: a first fixing hole is formed on the front side of the thermal insulation frame, a fixing ring is arranged on the front side of the grouting net, a second fixing hole is formed on the front side of the fixing ring, a slot is formed on one side of the panel, and a plug board is arranged on the other side of the panel.

[0008] As a further scheme of the present utility model: the front end of the fixing screw is located inside the first reinforcement component, the rear end of the fixing screw is located inside the second reinforcement component, and both the first reinforcement component and the second reinforcement component are fixed to the outer side of the thermal insulation component through the fixing screw.

[0009] As a further scheme of the present utility model: steel bars are arranged inside the reinforcement holes, the positions of the clamping grooves and the clamping blocks correspond to each other, and the clamping block slides inside the clamping groove.

[0010] As a further scheme of the present utility model: the fixing screw is located inside the first fixing hole, and the outer end of the fixing screw is located inside the first fixing hole.

[0011] As a further scheme of the present utility model: the positions of the slot and the plug board correspond to each other, and the plug board slides inside the slot.

[0012] Compared with the prior art, the beneficial effects of the present utility model are:

[0013] 1. The prefabricated green assembled modular building wall of the utility model uses a heat preservation frame and recycled waste paper pressed blocks as the heat preservation layer. The materials are green and environmentally friendly, reducing the production cost. The recycled waste paper pressed blocks are embedded inside the heat preservation frame in a pressed block manner, reducing the leakage amount of the recycled waste paper pressed blocks after cutting and the falling-off amount of the recycled waste paper pressed blocks. The heat preservation component is fixed by the heat preservation component and the second reinforcement component, and is covered by the first concrete component and the second concrete component, improving the firmness of the heat preservation component, the service life of the building wall, and the protection performance of the building wall;

[0014] 2. The connection and fixation of the building wall are carried out through the first fixing component and the second fixing component, reducing the influence of cutting on assembly and improving the convenience of building wall assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a structural schematic diagram of a prefabricated green assembled modular building wall;

[0016] Figure 2 It is an exploded view of a prefabricated green assembled modular building wall;

[0017] Figure 3 It is a structural schematic diagram of the heat preservation component in a prefabricated green assembled modular building wall;

[0018] Figure 4 It is a structural schematic diagram of the first reinforcement component in a prefabricated green assembled modular building wall;

[0019] Figure 5 It is a structural schematic diagram of the first concrete component in a prefabricated green assembled modular building wall;

[0020] Figure 6 It is a structural schematic diagram of the second fixing component in a prefabricated green assembled modular building wall.

[0021] In the figure: 1. Heat preservation component; 2. First reinforcement component; 3. Second reinforcement component; 4. First concrete component; 5. Second concrete component; 6. First fixing component; 7. Second fixing component; 8. Fixing screw; 9. Heat preservation frame; 10. Recycled waste paper pressed block; 11. Grouting mesh; 12. Concrete layer; 13. Reinforcing bar hole; 14. Panel; 15. Clamping groove; 16. Clamping block; 17. First fixing hole; 18. Fixing ring; 19. Second fixing hole; 20. Slot; 21. Insertion plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Please refer to Figures 1 to 6, in the embodiment of the present utility model, a prefabricated green assembled modular building wall includes a heat preservation member 1, a first reinforcement member 2, a second reinforcement member 3, a first concrete member 4, a second concrete member 5, a first fixing member 6 and a second fixing member 7. The first reinforcement member 2 is located at the front side of the heat preservation member 1, the second reinforcement member 3 is located at the rear side of the heat preservation member 1, the first concrete member 4 is located at the front side of the first reinforcement member 2, the second concrete member 5 is located at the rear side of the second reinforcement member 3, the first fixing member 6 is located at the front side of the first concrete member 4, and the second fixing member 7 is located at the rear side of the second concrete member 5. A fixing screw 8 is installed inside the heat preservation member 1. The heat preservation member 1 includes a heat preservation frame 9. A recycled waste paper pressing block 10 is arranged on the front side of the heat preservation frame 9. Both the first reinforcement member 2 and the second reinforcement member 3 include a slurry hanging net 11. Both the first concrete member 4 and the second concrete member 5 include a concrete layer 12. A steel bar hole 13 is formed inside the concrete layer 12, and a clamping groove 15 is formed outside the concrete layer 12. The second fixing member 7 includes a panel 14, and a clamping block 16 is arranged on the inner side of the panel 14. The front end of the fixing screw 8 is located inside the first reinforcement member 2, and the rear end of the fixing screw 8 is located inside the second reinforcement member 3. Both the first reinforcement member 2 and the second reinforcement member 3 are fixed to the outer side of the heat preservation member 1 through the fixing screw 8. Steel bars are arranged inside the steel bar hole 13. The positions of the clamping groove 15 and the clamping block 16 correspond to each other, and the clamping block 16 slides inside the clamping groove 15. For the production of the prefabricated green assembled modular building wall, a concrete mold is used to make the heat preservation frame 9. The heat preservation frame 9 is aerated concrete. A pressing machine is used to extrude recycled waste paper to make the recycled waste paper pressing block 10, and the recycled waste paper pressing block 10 is embedded into the heat preservation frame 9 to complete the production of the heat preservation member 1. The first reinforcement member 2 is placed on the front side of the heat preservation member 1, and the second reinforcement member 3 is placed on the rear side of the heat preservation member 1. The heat preservation member 1, the first reinforcement member 2 and the second reinforcement member 3 are fixed through the fixing screw 8. The assembled heat preservation member 1, the first reinforcement member 2 and the second reinforcement member 3 are placed into a mold, and the first concrete member 4 and the second concrete member 5 are poured. Clamping grooves 15 are arranged on the outer sides of both the first concrete member 4 and the second concrete member 5, and steel bar holes 13 are arranged inside both the first concrete member 4 and the second concrete member 5. The first fixing member 6 and the second fixing member 7 are made. Clamping blocks 16 are arranged on the inner sides of both the first fixing member 6 and the second fixing member 7. Then, the made prefabricated green assembled modular building wall is carried to the assembly position, the combination of the heat preservation member 1, the first reinforcement member 2, the second reinforcement member 3, the first concrete member 4 and the second concrete member 5 is cut, and the combination of the heat preservation member 1, the first reinforcement member 2, the second reinforcement member 3, the first concrete member 4 and the second concrete member 5 is docked.The clamping block 16 inside the first fixing member 6 is clamped into the clamping groove 15 outside the first concrete member 4, fixing the first fixing member 6 to the outside of the first concrete member 4. The clamping block 16 inside the second fixing member 7 is clamped into the clamping groove 15 outside the second concrete member 5, fixing the second fixing member 7 to the outside of the second concrete member 5, completing the assembly of the combined body of the adjacent heat preservation member 1, the first reinforcement member 2, the second reinforcement member 3, the first concrete member 4 and the second concrete member 5, and inserting steel bars into the inside of the steel bar holes 13.

[0023] At Figure 2 , 3 , 4, 5, 6: A first fixing hole 17 is formed in the front side of the heat preservation frame 9, a fixing ring 18 is arranged on the front side of the grouting net 11, a second fixing hole 19 is formed in the front side of the fixing ring 18, a slot 20 is formed in one side of the panel 14, an insertion plate 21 is arranged on the other side of the panel 14, the fixing screw 8 is located at the inner position of the first fixing hole 17, the outer end of the fixing screw 8 is located at the inner position of the first fixing hole 17, the positions of the slot 20 and the insertion plate 21 correspond to each other, the insertion plate 21 slides inside the slot 20, the heat preservation frame 9 is provided with the first fixing hole 17, the first reinforcement member 2 is placed on the front side of the heat preservation member 1, the second reinforcement member 3 is placed on the rear side of the heat preservation member 1, the heat preservation member 1, the first reinforcement member 2 and the second reinforcement member 3 are fixed by the fixing screw 8 passing through the first fixing hole 17 and the second fixing hole 19, the combined body of the heat preservation member 1, the first reinforcement member 2, the second reinforcement member 3, the first concrete member 4 and the second concrete member 5 is butted, the first fixing member 6 is fixed to the outside of the first concrete member 4, the second fixing member 7 is fixed to the outside of the second concrete member 5, completing the assembly of the combined body of the adjacent heat preservation member 1, the first reinforcement member 2, the second reinforcement member 3, the first concrete member 4 and the second concrete member 5, inserting steel bars into the inside of the steel bar holes 13, the insertion plate 21 slides into the slot 20, and the adjacent panels 14 are assembled.

[0024] The working principle of the present utility model is as follows: First, the production of prefabricated green assembled modular building walls is carried out. A heat preservation frame 9 is made using a concrete mold. The heat preservation frame 9 is made of aerated concrete. A waste paper pressing block 10 is made by pressing recycled waste paper using a pressing machine. The waste paper pressing block 10 is embedded inside the heat preservation frame 9 to complete the production of the heat preservation component 1. The heat preservation frame 9 is provided with a first fixing hole 17. The first reinforcing component 2 is placed on the front side of the heat preservation component 1, and the second reinforcing component 3 is placed on the rear side of the heat preservation component 1. The fixing screw 8 passes through the first fixing hole 17 and the second fixing hole 19 to fix the heat preservation component 1, the first reinforcing component 2, and the second reinforcing component 3. The assembled heat preservation component 1, first reinforcing component 2, and second reinforcing component 3 are placed into a mold, and the first concrete component 4 and the second concrete component 5 are poured. Both the outer sides of the first concrete component 4 and the second concrete component 5 are provided with clamping grooves 15, and both the interiors of the first concrete component 4 and the second concrete component 5 are provided with steel bar holes 13. The production of the first fixing component 6 and the second fixing component 7 is carried out. Both the inner sides of the first fixing component 6 and the second fixing component 7 are provided with clamping blocks 16. Then, the production of the prefabricated green assembled modular building wall is carried to the assembly position, and the combination of the heat preservation component 1, first reinforcing component 2, second reinforcing component 3, first concrete component 4, and second concrete component 5 is cut. The combination of the heat preservation component 1, first reinforcing component 2, second reinforcing component 3, first concrete component 4, and second concrete component 5 is docked. The clamping block 16 on the inner side of the first fixing component 6 is clamped into the clamping groove 15 on the outer side of the first concrete component 4 to fix the first fixing component 6 to the outer side of the first concrete component 4. The clamping block 16 on the inner side of the second fixing component 7 is clamped into the clamping groove 15 on the outer side of the second concrete component 5 to fix the second fixing component 7 to the outer side of the second concrete component 5, completing the assembly of the combination of the heat preservation component 1, first reinforcing component 2, second reinforcing component 3, first concrete component 4, and second concrete component 5 at the adjacent position. Steel bars are inserted into the steel bar holes 13, and the insertion plate 21 slides into the insertion slot 20 to assemble the adjacent panel 14.

[0025] The above is only the preferred specific implementation mode of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent replacements or changes, and all should be covered within the protection scope of the present utility model.

Claims

1. Prefabricated green assembled modular building wall, comprising a thermal insulation member (1), a first reinforcement member (2), a second reinforcement member (3), a first concrete member (4), a second concrete member (5), a first fixing member (6) and a second fixing member (7), wherein the first reinforcement member (2) is located at the front side of the thermal insulation member (1), the second reinforcement member (3) is located at the rear side of the thermal insulation member (1), the first concrete member (4) is located at the front side of the first reinforcement member (2), the second concrete member (5) is located at the rear side of the second reinforcement member (3), the first fixing member (6) is located at the front side of the first concrete member (4), the second fixing member (7) is located at the rear side of the second concrete member (5), characterized in that, A fixing screw (8) is installed inside the heat preservation member (1). The heat preservation member (1) includes a heat preservation frame (9). A recycled waste paper pressing block (10) is arranged on the front side of the heat preservation frame (9). The first reinforcement member (2) and the second reinforcement member (3) both include a grouting mesh (11). The first concrete member (4) and the second concrete member (5) both include a concrete layer (12). A steel bar hole (13) is formed inside the concrete layer (12). A clamping groove (15) is formed on the outer side of the concrete layer (12). The second fixing member (7) includes a panel (14), and a clamping block (16) is arranged on the inner side of the panel (14).

2. The prefabricated green assembled modular building wall according to claim 1, characterized in that A first fixing hole (17) is formed on the front side of the heat preservation frame (9). A fixing ring (18) is arranged on the front side of the grouting mesh (11). A second fixing hole (19) is formed on the front side of the fixing ring (18). A slot (20) is formed on one side of the panel (14), and a plug board (21) is arranged on the other side of the panel (14).

3. The prefabricated green assembled modular building wall according to claim 1, characterized in that, The front end of the fixing screw (8) is located inside the first reinforcement member (2), and the rear end of the fixing screw (8) is located inside the second reinforcement member (3). The first reinforcement member (2) and the second reinforcement member (3) are both fixed to the outer side of the heat preservation member (1) through the fixing screw (8).

4. The prefabricated green assembled modular building wall according to claim 1, wherein, A steel bar is arranged inside the steel bar hole (13). The positions of the clamping groove (15) and the clamping block (16) correspond to each other, and the clamping block (16) slides inside the clamping groove (15).

5. The prefabricated green assembled modular building wall according to claim 2, wherein, The fixing screw (8) is located inside the first fixing hole (17), and the outer end of the fixing screw (8) is located inside the first fixing hole (17).

6. The prefabricated green assembled modular building wall according to claim 2, wherein The positions of the slot (20) and the plug board (21) correspond to each other, and the plug board (21) slides inside the slot (20).

Citation Information

Patent Citations

  • Fabricated modular building wall

    CN220686404U