Fabricated frame filler wall structure
By designing the prefabricated frame filling wall structure, and using components such as slide chutes, baffles and bolts to achieve flexible assembly of filling walls, the problem of difficulty in controlling the size of filling walls in the prior art is solved, and construction efficiency and safety are improved.
Patent Information
- Application Number
- CN202422631397.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-30
AI Technical Summary
The existing prefabricated frame structures are mostly integrated or simply assembled, making it difficult to flexibly control the length and height of the filling wall, resulting in inconvenience in construction.
A prefabricated frame filling wall structure is designed, and several first outer frames and corner frame mechanisms are used to realize flexible assembly and concrete pouring of the filling wall through components such as sliding chutes, baffles, connecting plates and bolts to meet different construction needs.
It improves production efficiency and construction speed, and can flexibly adjust the length and height of the filling wall according to needs, enhances the flexibility and safety of construction, and simplifies the construction process.
Smart Images

Figure CN223281492U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of construction engineering, in particular to an assembled frame filling wall structure. Background Art
[0002] PC is called PC components in the field of residential industrialization, such as prefabricated reinforced concrete column foundation, prefabricated steel structure steel column foundation, street light billboard column reinforced concrete foundation, and prefabricated floor slabs. The corresponding traditional cast-in-place concrete requires on-site mold making, on-site pouring and on-site maintenance. The infill wall is a building structure that is a wall filled between columns in a frame structure. The infill wall is mostly made of sintered porous bricks, small hollow concrete blocks and aerated concrete blocks, etc., which play a role of enclosure and separation and do not bear weight. The infill wall of the shear wall structure is generally built with aerated concrete blocks.
[0003] During the construction of concrete infill walls, in order to facilitate concrete pouring and speed up the construction progress, prefabricated frame structures are often used for auxiliary construction. However, existing prefabricated frame structures are mostly formed in one piece, or simply assembled from several structures. As a result, in actual use, it is difficult to flexibly control the length or height of the infill wall according to actual construction requirements, resulting in certain inconveniences in the construction of the infill wall. To address the existing problems, an prefabricated frame infill wall structure is proposed. Utility Model Content
[0004] The purpose of the utility model is to solve the shortcomings of the existing technology that the existing assembled frame structures are mostly formed in one piece, or simply assembled by several structures, which makes it difficult to flexibly control the size of the filling wall, and to propose an assembled frame filling wall structure.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] An assembled frame filling wall structure is designed, comprising a plurality of first outer frames, wherein every two of the first outer frames form a group, and the first outer frames in each group are symmetrically spaced apart, a first connecting plate is fixedly connected in an array in the middle of each of the first outer frames, first sliding grooves are provided on two opposite sides of each group of the first outer frames, and a plurality of baffles are installed in corresponding arrays on both sides in the middle of each group of the first outer frames, and end plates are fixedly installed at both ends of each baffle, and the end plates are slidably inserted in the first sliding grooves.
[0007] Preferably, a reinforcement plate is fixedly installed in an array in the middle of each group of baffles, a groove is opened on the upper end of each baffle, and an inserting plate is fixedly installed on the lower end of each baffle corresponding to the groove.
[0008] Preferably, one of the first outer frames in each group is provided with an array of fixed protrusions on both sides of the outer end, and another of the first outer frames in each group is provided with mounting grooves on both sides corresponding to the protrusions, and a mounting bolt is installed through each of the protrusions, and the mounting bolt is threadedly connected and passes through the end plate.
[0009] Preferably, connecting pieces are fixedly mounted on the upper and lower ends of each of the first outer frames.
[0010] Preferably, it also includes several groups of bent angle frame mechanisms, which are correspondingly arranged at the outer ends of the first outer frames, and each group of the bent angle frame mechanisms includes two second outer frames, the two second outer frames are arranged at right angles, the middle array of each second outer frame is fixedly installed with a second connecting plate, the outer side array of the two second outer frames is arranged with an outer bent plate, and the inner side array of the two second outer frames is arranged with an inner plate.
[0011] Preferably, second sliding grooves are provided on both sides of the inner sides of the two second outer frames, and slides are fixedly installed at both ends of the outer curved plate and the inner plate, and the slides are slidably inserted into the second sliding grooves. One of the second outer frames has protrusions fixedly installed on both sides, and the other second outer frame has corresponding installation grooves on both sides, and the upper and lower ends of the second outer frame have corresponding connecting parts fixedly installed.
[0012] Preferably, a limit plate is fixedly connected to the outer sides of the two second outer frames.
[0013] The utility model proposes an assembled frame infill wall structure, which has the following beneficial effects:
[0014] 1. By setting up the frame filling wall structure in an assembled manner, on the one hand, it can greatly facilitate the production of sub-structures, improve the production speed, and also facilitate batch transportation. On the other hand, in actual use, the assembled frame structure can better adapt to the use environment, and personnel can flexibly assemble it according to needs, which greatly reduces the difficulty of assembly. At the same time, the utility model can not only change the length of the filling wall by using baffles of a specific length through the coordination of each group of first outer frames and several groups of baffles, but also control the height of the filling wall by changing the number of baffles assembled. Moreover, the first outer frame can be connected and assembled between the protrusions and the mounting grooves of another adjacent group of first outer frames, so that the concrete of the entire filling wall can be directly poured more quickly.
[0015] 2. By assembling the two second outer frames with the outer curved plates and inner plates in the angle frame mechanism, the two second outer frames can be connected with the first outer frame and several groups of baffles. When pouring the filling wall, facing the curved wall, it can also be pre-erected and cast in one go, without having to continue to cast and shape the right-angle wall part later, which greatly speeds up the construction speed, greatly improves the firmness and safety of the filling wall, and extends the service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a front structural schematic diagram of an assembled frame infill wall structure proposed by the utility model.
[0017] Figure 2 This is an enlarged schematic diagram of the A-section structure of an assembled frame infill wall structure proposed in the present invention.
[0018] Figure 3 This is a schematic diagram of the disassembled structure of an assembled frame infill wall structure proposed by the present invention.
[0019] Figure 4 This is a schematic structural diagram of the angle frame mechanism of an assembled frame infill wall structure proposed by the present invention.
[0020] In the figure: 1. first outer frame; 11. first slide groove; 12. slot; 13. protrusion; 14. mounting groove; 15. mounting bolt; 2. connecting piece; 3. baffle; 31. end plate; 4. reinforcement plate; 5. first connecting plate; 6. closing plate; 7. bending angle frame mechanism; 71. second outer frame; 711. second slide groove; 72. second connecting plate; 73. outer bending plate; 74. inner plate; 75. limit plate. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0022] Example 1
[0023] Reference Figure 1-4The truss 1 and the truss 1 are connected by a plurality of fixed plates 5, each of which is connected by a plurality of fixed plates 5. The truss 1 and the truss 1 are connected by a plurality of fixed plates 5. The truss 1 and the truss 1 are connected by a plurality of fixed plates 5.
[0024] The reinforcement plate 4 is fixedly installed in the middle of each group of baffles 3. The reinforcement plate 4 is a steel plate structure. On the one hand, it is convenient for the assembly of each group of baffles 3. On the other hand, the reinforcement plate 4 also plays a role of a skeleton, which can enhance the quality of concrete pouring. In each group of first outer frames 1, one of the first outer frames 1 is fixedly installed with a protrusion 13 on both sides of the outer end. In each group of first outer frames 1, another first outer frame 1 is provided with mounting grooves 14 on both sides corresponding to the protrusions 13. Each protrusion 13 is penetrated by a mounting bolt 15, and the mounting bolt 15 is threadedly connected to the end plate 31. The connection and assembly between adjacent first outer frames 1 can be achieved through the protrusion 13, the mounting groove 14, and the mounting bolt 15, which is convenient for expanding the size of concrete pouring. The upper and lower ends of each first outer frame 1 are fixedly installed with a connecting piece 2, and a bolt is installed in the connecting piece 2, which can be assembled and connected with the upper and lower first outer frames 1. At the same time, the outer ends of the first outer frames 1 at both ends are provided with a slot 12, and a closing plate 6 is inserted in the slot 12, which can be sealed at both ends according to actual needs.
[0025] By setting up the frame filling wall structure in an assembled manner, on the one hand, it can greatly facilitate the production of sub-structures, improve the production speed, and also facilitate batch transportation. On the other hand, in actual use, the assembled frame structure can better adapt to the use environment, and personnel can flexibly assemble it according to needs, which greatly reduces the difficulty of assembly. At the same time, the utility model can not only change the length of the filling wall by using baffles 3 of a specific length through the coordination of each group of first outer frames 1 and several groups of baffles 3, but also control the height of the filling wall by changing the assembly number of baffles 3. Moreover, the first outer frame 1 can be connected and assembled with another adjacent group of first outer frames 1 through the protrusions 13 and the mounting grooves 14, so that the concrete of the filling wall as a whole can be directly poured more quickly.
[0026] Example 2
[0027] According to Example 1, if the filling wall has a corner structure in Example 1, it is difficult to cast it in one go. Figure 1-4 As another preferred embodiment of the present invention, based on embodiment 1, it further includes several sets of angle frame mechanisms 7;
[0028] The bending angle frame mechanism 7 is correspondingly arranged at the outer end of the first outer frame 1. Each group of bending angle frame mechanisms 7 includes two second outer frames 71. The two second outer frames 71 are arranged at right angles. A second connecting plate 72 is fixedly installed in the middle array of each second outer frame 71. The setting of the second connecting plate 72 makes the outer end of the second outer frame 71 relatively open. Therefore, during the combined pouring, the concrete can be solidified with the first outer frame 1 or the adjacent second connecting plate 72, thereby realizing rapid filling and molding. The outer side array of the two second outer frames 71 is arranged with an outer bending plate 73, and the inner side array of the two second outer frames 71 is arranged with an inner plate 74. Both the inner plate 74 and the outer bending plate 73 are convenient for flexible assembly and assembly.
[0029] Second sliding grooves 711 are opened on both sides of the inner sides of the two second outer frames 71, and slides are fixedly installed at both ends of the outer curved plate 73 and the inner plate 74. The slides are slidably inserted into the second sliding grooves 711. One of the second outer frames 71 has protrusions 13 fixedly installed on both sides, and the other second outer frame 71 has mounting grooves 14 opened on both sides. Connecting parts 2 are fixedly installed on the upper and lower ends of the second outer frame 71.
[0030] A limiting plate 75 is provided on the outer sides of the two second outer frames 71 for fixed connection. The function of the limiting plate 75 is to fix the adjacent second outer frames 71 and enhance stability. By assembling the two second outer frames 71 with the outer bending plate 73 and the inner plate 74 in the bending frame mechanism 7, it can be connected with the first outer frame 1 and several groups of baffles 3. When pouring the filling wall, facing the curved wall, it can also be pre-erected and cast in one go without continuing to cast and form the right-angle wall part later, which greatly speeds up the construction speed, and greatly improves the strength and safety of the filling wall, thereby extending the service life.
[0031] Working principle: First, place a group of first outer frames 1 symmetrically on the cast ground, and adjust the spacing according to the length of the baffle 3. When multiple groups of first outer frames 1 are required for assembly, the protrusions 13 on the adjacent first outer frames 1 are installed in the installation grooves 14 respectively, and fastened with the installation bolts 15. The connection between the first outer frame 1 and the second outer frame 71 is realized in the same way. Then, the end plates 31 at both ends of the baffle 3 are inserted into the first slide groove 11 respectively to realize assembly. The connection between the upper and lower first outer frames 1 or the second outer frames 71 is fastened by the connector 2 and bolts. When the assembly is completed, concrete is poured into the interior until it solidifies and takes shape.
[0032] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An assembled frame infill wall structure, comprising a plurality of first outer frames (1), characterized in that: Every two of the first outer frames (1) form a group, and each group of the first outer frames (1) are symmetrically spaced apart. A first connecting plate (5) is fixedly connected in an array in the middle of each of the first outer frames (1). First sliding grooves (11) are provided on two opposite sides of each group of the first outer frames (1). A plurality of baffles (3) are installed in corresponding arrays on both sides of the middle of each group of the first outer frames (1). An end plate (31) is fixedly installed at both ends of each baffle (3), and the end plate (31) is slidably inserted into the first sliding groove (11).
2. The assembled frame infill wall structure according to claim 1, characterized in that: A reinforcement plate (4) is fixedly installed in an array in the middle of each group of baffles (3), a groove is provided at the upper end of each baffle (3), and an inserting plate is fixedly installed at the lower end of each baffle (3) corresponding to the groove.
3. The assembled frame infill wall structure according to claim 2, characterized in that: One of the first outer frames (1) in each group of the first outer frames (1) is fixedly provided with an array of protrusions (13) on both sides of the outer ends thereof, and another of the first outer frames (1) in each group of the first outer frames (1) is provided with mounting grooves (14) on both sides corresponding to the protrusions (13), and each of the protrusions (13) is penetrated by a mounting bolt (15), and the mounting bolt (15) is threadedly connected and penetrates the end plate (31).
4. The assembled frame infill wall structure according to claim 2, characterized in that: Connecting pieces (2) are fixedly mounted on the upper and lower ends of each first outer frame (1).
5. The assembled frame infill wall structure according to claim 2, characterized in that: The invention also includes a plurality of groups of bend frame mechanisms (7), wherein the bend frame mechanisms (7) are correspondingly arranged at the outer ends of the first outer frames (1), and each group of the bend frame mechanisms (7) includes two second outer frames (71), wherein the two second outer frames (71) are arranged at right angles, and a second connecting plate (72) is fixedly installed in the middle array of each second outer frame (71), an outer bend plate (73) is arranged in an array on the outer sides of the two second outer frames (71), and an inner plate (74) is arranged in an array on the inner sides of the two second outer frames (71).
6. The assembled frame infill wall structure according to claim 5, characterized in that: Second sliding grooves (711) are provided on both sides of the inner sides of the two second outer frames (71), and slides are fixedly installed at both ends of the outer curved plate (73) and the inner plate (74), and the slides are slidably inserted into the second sliding grooves (711). One of the second outer frames (71) has protrusions (13) fixedly installed on both sides, and the other second outer frame (71) has mounting grooves (14) correspondingly provided on both sides, and the upper and lower ends of the second outer frame (71) are fixedly installed with connecting parts (2).
7. The assembled frame infill wall structure according to claim 6, characterized in that: Limiting plates (75) are fixedly connected to the outer sides of the two second outer frames (71).