High-strength efficient heat preservation all-aluminum modular building structure
Through the modular assembly design of aluminum building structure, rapid assembly and insulation material injection are achieved using connectors and reinforcement rods, which solves the problem of waste of transportation and installation time caused by welding connections and improves construction period efficiency.
Patent Information
- Application Number
- CN202422035535.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-21
AI Technical Summary
Existing aluminum building structures mostly use welding connections, which leads to inconvenient transportation and wasted installation and decoration time, which affects the construction period.
It adopts a modular assembly design, and uses building frames, frame frames, reinforcement rods and connectors for rapid assembly, and uses connection holes, injection holes and installation holes to achieve structural reinforcement and injection of insulation materials.
It realizes rapid assembly and insulation of aluminum building structures, avoids waste of transportation and installation time caused by welding, and improves construction period efficiency.
Smart Images

Figure CN223074907U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of all-aluminum building structures, in particular to a high-strength and efficient heat-insulating all-aluminum modular building structure. Background Art
[0002] Due to its unique physical and chemical properties, aluminum building structures have been widely used in modern buildings, such as in small buildings like space capsule rooms.
[0003] Most of the existing aluminum building structures are connected by welding. For example, welding is completed in the factory, which is not convenient for transportation. Welding on site after transportation will waste the time for installation and decoration, thus affecting the construction period.
[0004] Therefore, aiming at the situation that most of the existing aluminum building structures are connected by welding, which is not convenient for transportation after welding, and welding on site after transportation will waste the time for installation and decoration, a high-strength and efficient heat-insulating all-aluminum modular building structure can be designed. It adopts a modular assembly method to quickly assemble the structure on the target site, and at the same time uses the assembled structure to reinforce the structure. Summary of the Utility Model
[0005] In order to overcome the problem that most aluminum building structures are connected by welding. For example, welding is completed in the factory, which is not convenient for transportation. Welding on site after transportation will waste the time for installation and decoration, thus affecting the construction period.
[0006] The technical solution of the utility model is: a high-strength and efficient heat-insulating all-aluminum modular building structure, including a building frame, building strengthening rods, a frame body frame, frame body strengthening rods, connection holes, injection holes, installation holes, a first connecting piece and a second connecting piece; multiple groups of building strengthening rods are arranged inside the building frame, a frame body frame is arranged on one side of the building frame, multiple groups of frame body strengthening rods are arranged inside the frame body frame, multiple groups of connection holes are opened on both sides of the building frame and the frame body frame, multiple groups of injection holes are opened on both sides of the building frame and the frame body frame, multiple groups of installation holes are arranged on one side of the building frame, first connecting pieces are arranged at both ends of the building strengthening rods and the frame body strengthening rods, and a second connecting piece is arranged on one side of the first connecting piece.
[0007] Preferably, the building frame and the frame body frame are set as the main structure, the building frame is reinforced by the building strengthening rods, the frame body frame is reinforced by the frame body strengthening rods, the first connecting piece and the second connecting piece penetrate the connection holes to connect the building strengthening rods and the frame body strengthening rods, sound insulation and heat insulation materials are injected into the building frame and the frame body frame through the injection holes, and subsequent installation of customized walls is facilitated through the installation holes.
[0008] Preferably, building connecting plates are provided on both sides of the building frame, and a mounting plate is provided on one side of the building frame, and the mounting holes are located on one side of the mounting plate; the connecting holes and the injection holes are formed in the building connecting plates, and the mounting holes are formed in the mounting plate.
[0009] Preferably, a finishing board is provided on one side of the frame body, and a frame body connecting plate is provided on the other side of the frame body; the finishing board and the frame body connecting plate facilitate the subsequent installation of customized doors, ceilings and other finishing items.
[0010] Preferably, the connecting holes are equidistant from each other, the injection holes are equidistant from each other, the connecting holes and the injection holes are arranged alternately, and the building reinforcing bars and the frame body reinforcing bars are arranged corresponding to the connecting holes; the equidistant connecting holes facilitate uniform installation and fixation, and the equidistant injection holes facilitate uniform material filling.
[0011] Preferably, an insertion hole is formed on one side of the first connecting piece, and the first connecting piece is threadedly connected to the building reinforcing bar and the frame body reinforcing bar; the insertion hole facilitates the connection between the first connecting piece and the second connecting piece.
[0012] Preferably, a plurality of groups of fixing holes are formed on the outer side of the first connecting piece, fixing bolts are arranged in the fixing holes, and the fixing bolts are threadedly connected to the first connecting piece; the fixing holes accommodate the fixing bolts to fix the second connecting piece.
[0013] Preferably, an insertion rod is provided on one side of the second connecting piece, a fixing groove is formed at one end of the insertion rod, and the second connecting piece is threadedly connected to the building reinforcing bar and the frame body reinforcing bar; the insertion rod facilitates the connection between the first connecting piece and the second connecting piece, and the fixing groove facilitates the fixing of the second connecting piece by the fixing bolt.
[0014] The beneficial effects of the present utility model are as follows:
[0015] 1. Compared with the traditional aluminum building structures which mostly use welding for connection, such as welding is completed in the factory and it is not convenient for transportation, and welding again at the site will waste the installation and decoration time, thus affecting the construction period. The device is assembled in a modular way, the aluminum materials are processed and then transported to the target site for assembly, and at the same time, a structure convenient for assembly is designed, avoiding the waste of operation time caused by welding and increasing the practical value of the device;
[0016] 2. When splicing, after aligning the building reinforcement rod with the connection holes in the building connection plate, pass the first connecting piece through the connection holes and thread it with one end of the building reinforcement rod, and thread the second connecting piece with the other end of the building reinforcement rod to connect and fix the building reinforcement rod to the building connection plate. Then, after connecting the frame reinforcement rod to the frame as well, move multiple groups of building frames and frame structures to appropriate positions, insert the insertion rod into the insertion hole, and insert and tighten the fixing bolts into the fixing holes so that the fixing bolts are inserted into the fixing grooves to connect and fix the first connecting piece and the second connecting piece, thereby fixing multiple groups of building frames and frame structures, so as to solve the problem that most aluminum building structures are mostly connected by welding. For example, welding completed in the factory is not convenient for transportation, and welding again after transporting to the site will waste the time for installation and decoration, thus affecting the construction period.
[0017] 3. When injecting the sound insulation and heat insulation material, inject the sound insulation and heat insulation material into the interiors of the building frame and the frame structure through the material injection holes. After injecting multiple times from different material injection holes, the interiors of the building frame and the frame structure will be filled with the sound insulation and heat insulation material. The building reinforcement rod and the frame reinforcement rod can provide a climbing platform for the material, and the sound insulation and heat insulation material can climb on the outer sides of the building reinforcement rod and the frame reinforcement rod, enabling the material to adhere more firmly to the interiors of the building frame and the frame structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 Shown is a three-dimensional structure schematic diagram of a high-strength, highly efficient heat-insulating all-aluminum modular building structure of the present utility model;
[0019] Figure 2 Shown is a three-dimensional structure schematic diagram of a building frame of a high-strength, highly efficient heat-insulating all-aluminum modular building structure of the present utility model;
[0020] Figure 3 Shown is a three-dimensional structure schematic diagram of a frame structure of a high-strength, highly efficient heat-insulating all-aluminum modular building structure of the present utility model;
[0021] Figure 4 Shown is a three-dimensional structure schematic diagram of a first connecting piece of a high-strength, highly efficient heat-insulating all-aluminum modular building structure of the present utility model.
[0022] Description of the reference numerals: 1. Building frame; 101. Building connection plate; 102. Mounting plate; 2. Building reinforcement rod; 3. Frame structure; 301. Finishing board; 302. Frame connection plate; 4. Frame reinforcement rod; 5. Connection hole; 6. Material injection hole; 7. Mounting hole; 8. First connecting piece; 801. Insertion hole; 802. Fixing hole; 803. Fixing bolt; 9. Second connecting piece; 901. Insertion rod; 902. Fixing groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0024] Please refer to Figures 1 - 4 , the present utility model provides an embodiment: a high-strength and efficient heat-insulating all-aluminum modular building structure, which includes a building frame 1, building strengthening bars 2, a frame body 3, frame body strengthening bars 4, connection holes 5, injection holes 6, installation holes 7, a first connector 8 and a second connector 9; a plurality of groups of building strengthening bars 2 are arranged inside the building frame 1, a frame body 3 is arranged on one side of the building frame 1, a plurality of groups of frame body strengthening bars 4 are arranged inside the frame body 3, a plurality of groups of connection holes 5 are opened on both sides of the building frame 1 and the frame body 3, injection holes 6 are opened on both sides of the building frame 1 and the frame body 3, a plurality of groups of installation holes 7 are arranged on one side of the building frame 1, first connectors 8 are arranged at both ends of the building strengthening bars 2 and the frame body strengthening bars 4, and a second connector 9 is arranged on one side of the first connector 8.
[0025] Please refer to Figure 2 , in this embodiment, building connecting plates 101 are arranged on both sides of the building frame 1, an installation plate 102 is arranged on one side of the building frame 1, and the installation holes 7 are located on one side of the installation plate 102; the connection holes 5 and the injection holes 6 are opened through the building connecting plates 101, and the installation holes 7 are opened through the installation plate 102.
[0026] Please refer to Figure 3 , in this embodiment, a finishing board 301 is arranged on one side of the frame body 3, and a frame body connecting plate 302 is arranged on the other side of the frame body 3; it is convenient to install customized decoration items such as doors and ceilings subsequently through the finishing board 301 and the frame body connecting plate 302, the connection holes 5 are equal in spacing, the injection holes 6 are equal in spacing, the connection holes 5 and the injection holes 6 are arranged alternately, and the building strengthening bars 2 and the frame body strengthening bars 4 are arranged corresponding to the connection holes 5; it is convenient to install and fix evenly through the connection holes 5 with equal spacing, and it is convenient to fill materials evenly through the injection holes 6 with equal spacing.
[0027] Please refer to Figure 4, in this embodiment, an insertion hole 801 is provided on one side of the first connecting member 8. The first connecting member 8 is threadedly connected to the building reinforcing bar 2 and the frame reinforcing bar 4. The insertion hole 801 facilitates the connection between the first connecting member 8 and the second connecting member 9. A plurality of fixing holes 802 are provided on the outer side of the first connecting member 8, and fixing bolts 803 are arranged in the fixing holes 802. The fixing bolts 803 are threadedly connected to the first connecting member 8. The second connecting member 9 is fixed by accommodating the fixing bolts 803 through the fixing holes 802. An insertion rod 901 is provided on one side of the second connecting member 9, and a fixing groove 902 is provided at one end of the insertion rod 901. The second connecting member 9 is threadedly connected to the building reinforcing bar 2 and the frame reinforcing bar 4. The insertion rod 901 facilitates the connection between the first connecting member 8 and the second connecting member 9, and the fixing groove 902 facilitates the fixing of the second connecting member 9 by the fixing bolts 803.
[0028] During splicing, after aligning the building reinforcing bar 2 with the connection hole 5 in the building connecting plate 101, the first connecting member 8 is passed through the connection hole 5 and threadedly connected to one end of the building reinforcing bar 2, and the second connecting member 9 is threadedly connected to the other end of the building reinforcing bar 2 to fix the building reinforcing bar 2 to the building connecting plate 101. After connecting the frame reinforcing bar 4 to the frame 3, when moving a plurality of building frames 1 and frame 3 to a suitable position, the insertion rod 901 is inserted into the insertion hole 801, and the fixing bolts 803 are inserted into the fixing holes 802 and tightened, so that the fixing bolts 803 are inserted into the fixing groove 902 to connect and fix the first connecting member 8 and the second connecting member 9, thereby fixing a plurality of building frames 1 and frame 3.
[0029] When injecting the sound insulation and heat insulation material, the sound insulation and heat insulation material is injected into the interiors of the building frame 1 and the frame 3 from the injection holes 6. After injecting from different injection holes 6 multiple times, the interiors of the building frame 1 and the frame 3 will be filled with the sound insulation and heat insulation material. The building reinforcing bar 2 and the frame reinforcing bar 4 can provide a climbing platform for the material, and the sound insulation and heat insulation material can climb on the outer sides of the building reinforcing bar 2 and the frame reinforcing bar 4, so that the material can be more firmly attached to the interiors of the building frame 1 and the frame 3.
[0030] Through the above steps, by setting the building frame 1 and the frame 3 as the main structure, the building frame 1 is reinforced by the building reinforcing bar 2, the frame 3 is reinforced by the frame reinforcing bar 4, the first connecting member 8 and the second connecting member 9 pass through the connection hole 5 to connect the building reinforcing bar 2 and the frame reinforcing bar 4, the sound insulation and heat insulation material is injected into the building frame 1 and the frame 3 through the injection holes 6, and the subsequent installation of the customized wall is facilitated through the installation holes 7.
[0031] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the gist of the present utility model within the scope of knowledge possessed by those skilled in the art.
Claims
1. A high-strength and highly heat-insulating all-aluminum modular building structure, including a building frame (1); characterized in that: It further includes building reinforcing bars (2), a frame (3), frame reinforcing bars (4), connection holes (5), injection holes (6), mounting holes (7), a first connector (8) and a second connector (9); multiple groups of building reinforcing bars (2) are arranged on the inner side of the building frame (1), a frame (3) is arranged on one side of the building frame (1), multiple groups of frame reinforcing bars (4) are arranged on the inner side of the frame (3), multiple groups of connection holes (5) are formed on both sides of the building frame (1) and the frame (3), multiple groups of injection holes (6) are formed on both sides of the building frame (1) and the frame (3), multiple groups of mounting holes (7) are arranged on one side of the building frame (1), both ends of the building reinforcing bars (2) and the frame reinforcing bars (4) are provided with the first connectors (8), and a second connector (9) is arranged on one side of the first connector (8).
2. The high-strength and highly heat-insulating all-aluminum modular building structure according to claim 1, characterized in that: Building connection plates (101) are arranged on both sides of the building frame (1), a mounting plate (102) is arranged on one side of the building frame (1), and the mounting holes (7) are located on one side of the mounting plate (102).
3. The high-strength and highly heat-insulating all-aluminum modular building structure according to claim 1, characterized in that: A finishing plate (301) is arranged on one side of the frame (3), and a frame connection plate (302) is arranged on the other side of the frame (3).
4. A high-strength and highly heat-insulating all-aluminum modular building structure according to claim 1, characterized in that: The connection holes (5) are equally spaced, the injection holes (6) are equally spaced, the connection holes (5) and the injection holes (6) are arranged alternately, and the building reinforcing bars (2) and the frame reinforcing bars (4) are arranged corresponding to the connection holes (5).
5. The high-strength and highly heat-insulating all-aluminum modular building structure according to claim 1, characterized in that: An insertion hole (801) is formed on one side of the first connector (8), and the first connector (8) is threadedly connected to the building reinforcing bars (2) and the frame reinforcing bars (4).
6. The high-strength and highly heat-insulating all-aluminum modular building structure according to claim 1, characterized in that: Multiple groups of fixing holes (802) are formed on the outer side of the first connector (8), fixing bolts (803) are arranged in the fixing holes (802), and the fixing bolts (803) are threadedly connected to the first connector (8).
7. The high-strength and highly heat-insulating all-aluminum modular building structure according to claim 6, characterized in that: An insertion rod (901) is arranged on one side of the second connector (9), a fixing groove (902) is formed at one end of the insertion rod (901), and the second connector (9) is threadedly connected to the building reinforcing bars (2) and the frame reinforcing bars (4).