Splicing type self-locking light load-bearing wall structure

By using a modular, self-locking, lightweight load-bearing wall structure, and employing connectors and fixing plates to secure the joints, rapid installation and enhanced connection strength are achieved. This solves the problems of low installation efficiency and poor aesthetics in load-bearing walls, resulting in a highly efficient and tight connection.

CN223738779UActive Publication Date: 2025-12-30SHAANXI BEAUTIFUL HOME CONSTRUCTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422838227.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-12-30
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

The existing load-bearing walls have low installation efficiency and poor aesthetics, especially when connected with screws, there are gap problems.

Method used

It adopts a modular, self-locking, lightweight load-bearing wall structure, which quickly fixes the connecting plates through connectors, uses protrusions and recesses to enhance the connection strength, and achieves rapid installation and fixation through fixing plates and snap rods.

Benefits of technology

It improves the installation efficiency and aesthetics of load-bearing walls, enhances connection strength, and reduces installation time and connection gaps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a splicing type self-locking light load-bearing wall structure, and relates to the technical field of indoor decoration devices, and the splicing type self-locking light load-bearing wall structure comprises a plurality of connecting plates which are connected in sequence; in the first direction of the connecting plates, connecting pieces are arranged on the sides, close to each other, of the adjacent connecting plates in a central symmetry mode. And the connecting pieces are used for fixing the adjacent connecting plates. The bearing wall structure has the effect of improving the mounting efficiency and attractiveness of the bearing wall structure.
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Description

Technical Field

[0001] This application relates to the field of interior decoration equipment technology, and in particular to a splicing self-locking lightweight load-bearing wall structure. Background Technology

[0002] With the development of social life, people have higher demands for home decoration styles. For example, they not only have higher requirements for the quality of home decoration, but also for aesthetics.

[0003] In related technologies, the installation of load-bearing walls is a crucial part of interior decoration, and its efficiency and quality play a vital role in the overall efficiency and quality of the decoration. Currently, there are two methods for installing load-bearing walls: one is by directly pouring concrete, but this method requires a large site and is gradually fading from view in interior decoration; the other method is by assembling connecting plates on-site, where construction workers fix multiple connecting plates together with screws to form a load-bearing wall.

[0004] Regarding the aforementioned technologies, workers use screws to fix multiple connecting plates to form a load-bearing wall. When processing the load-bearing wall, workers need to install multiple screws one by one, which reduces the installation efficiency of the load-bearing wall. At the same time, connecting multiple connecting plates with screws to form a load-bearing wall will result in gaps between adjacent connecting plates, which will have a certain impact on the aesthetics of the load-bearing wall. Utility Model Content

[0005] To improve the installation efficiency and aesthetics of load-bearing wall structures, this application provides a splicing self-locking lightweight load-bearing wall structure.

[0006] This application provides a modular, self-locking, lightweight load-bearing wall structure, which adopts the following technical solution:

[0007] A modular, self-locking, lightweight load-bearing wall structure includes multiple connecting plates connected in sequence; wherein, along a first direction of the connecting plates, connectors are symmetrically arranged on the side of adjacent connecting plates that are close to each other; the connectors are used to fix the adjacent connecting plates.

[0008] By adopting the above technical solution, when installing load-bearing walls, two connecting plates are brought close together until they contact each other. The two connecting plates are then slid along a first direction, thus securing them in place with the help of the connectors. The connectors allow for rapid assembly of the two connecting plates, improving the installation efficiency of load-bearing wall structures.

[0009] Optionally, the connecting plate includes two first plate segments, two second plate segments, and a filling portion; the two first plate segments are symmetrically arranged about the first direction; wherein, the two second plate segments are respectively disposed on both sides of the two first plate segments, and a receiving cavity is formed between the two first plate segments and the two second plate segments; the filling portion is disposed in the receiving cavity; and the connecting member is disposed on the first plate segment.

[0010] By adopting the above technical solution, the connecting plate is configured as a first plate segment, two second plate segments, and a filling part. This allows for rapid processing of the connecting plate through modular processing. Furthermore, the filling part between the first and second plate segments can enhance the strength and sound insulation effect of the connecting plate, thereby improving its quality.

[0011] Optionally, one side of the first plate segment has a protrusion, and the first plate segment in the adjacent connecting plate has a recess corresponding to the protrusion. When the protrusion extends into the recess, the first plate segment in the adjacent connecting plate contacts.

[0012] By adopting the above technical solution, two connecting plates are brought close to each other, with the protrusion of one connecting plate extending into the recess of the other connecting plate. The protrusion and recess can make the adjacent connecting plates fit tightly together, enhancing the fixing effect between the adjacent connecting plates.

[0013] Optionally, the connector includes a fixing plate, a fixing source, and a snap-fit ​​rod; the snap-fit ​​rod is disposed on the fixing plate, and there is a gap between the end of the snap-fit ​​rod and the fixing plate; the fixing plate is disposed on the first plate segment, and the fixing plate has a snap-fit ​​groove into which the snap-fit ​​rod extends; wherein, when the snap-fit ​​rod on the fixing plate disposed on one connecting plate extends into the snap-fit ​​groove on the fixing plate disposed on another adjacent connecting plate, the adjacent connecting plates are fixed together; the fixing source is disposed on the fixing plate and is used to fix the fixing plate to the connecting plate.

[0014] By adopting the above technical solution, two connecting plates are brought close to each other. The locking rod on the fixing plate of one connecting plate extends into the locking groove of the fixing plate of the other connecting plate. The two connecting plates are moved along the first direction so that the locking rod of the fixing plate of one connecting plate is fully inserted into the locking groove of the fixing plate of the other connecting plate. When the adjacent connecting plates are in contact with each other, the installation and fixing between the adjacent connecting plates is realized. This can realize the rapid installation between adjacent connecting plates and improve the installation efficiency of load-bearing walls.

[0015] Optionally, the fixing source includes a fixing screw; the fixing plate has a fixing hole, and the fixing screw passes through the fixing plate to fix the fixing plate to the connecting plate.

[0016] By adopting the above technical solution, when it is necessary to fix the fixing plate on the connecting plate, the fixing plate is placed in the corresponding position on the connecting plate, the fixing screw is passed through the fixing hole, the fixing screw is adjusted, and the fixing screw installs the fixing plate on the connecting plate, thereby achieving the purpose of installing the fixing plate on the connecting plate.

[0017] Optionally, along the first direction, the fixing piece has a plurality of fixing holes, and the plurality of fixing holes are spaced apart.

[0018] By adopting the above technical solution, multiple fixing holes are provided on the fixing plate along the first direction. The multiple fixing holes can disperse the stress on the fixing plate, improve the connection strength between adjacent connecting plates, and thus improve the fixing life between the two connecting plates.

[0019] Optionally, along the second direction of the connecting plate, the fixing plate has multiple rows of fixing holes, wherein the fixing screws on adjacent rows of fixing holes are in different positions.

[0020] By adopting the above technical solution, multiple rows of fixing holes are set on the fixing plate, and the fixing screws set on adjacent rows of fixing holes are in different positions. In this way, the fixing effect of the fixing screws on the fixing plate can be balanced, making the fixing force between the fixing plate and the connecting plate relatively uniform. This can improve the fixing effect of the fixing screws on the fixing plate, thereby improving the connection strength of adjacent connecting plates.

[0021] Optionally, one side of the first plate segment has a fixing groove for mounting the fixing piece; when the fixing piece is placed in the fixing groove, the side of the fixing piece away from the bottom wall of the fixing groove is at the same horizontal plane as the side of the first plate segment, and along the first direction, there is a gap between the end of the fixing piece with the snap-fit ​​groove and the side wall of the fixing groove.

[0022] By adopting the above technical solution, when installing the fixing plate, the fixing plate is placed into the fixing groove, and the fixing plate is fixed to the connecting plate using fixing screws. The fixing groove can better realize the installation of the fixing plate, improve the connection strength between the fixing plate and the connecting plate, and thus further improve the connection strength between the two connecting plates. At the same time, there is a gap between the fixing plate and the side wall of the fixing groove. When two adjacent connecting plates are spliced, the snap-fit ​​rod set on the fixing plate on one side of the connecting plate first enters the gap between the fixing plate and the side wall of the fixing groove. The connecting plate is moved, and the snap-fit ​​rod enters into the snap-fit ​​groove. The snap-fit ​​and the snap-fit ​​groove engage. This makes it easy for the snap-fit ​​rod set on the fixing plate on the connecting plate to extend into the snap-fit ​​groove set on the fixing plate on the other connecting plate.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. By bringing two connecting plates close together, the locking rod on the fixing plate of one connecting plate extends into the locking groove of the fixing plate of the other connecting plate. The two connecting plates are moved along the first direction so that the locking rod of the fixing plate of one connecting plate is fully inserted into the locking groove of the fixing plate of the other connecting plate. When the adjacent connecting plates are in contact with each other, the installation and fixing between the adjacent connecting plates is achieved. This enables the rapid installation between adjacent connecting plates and improves the installation efficiency of load-bearing walls.

[0025] 2. By setting multiple rows of fixing holes on the fixing plate, and setting the fixing screws in different positions on adjacent rows of fixing holes, the fixing effect of the fixing screws on the fixing plate can be balanced, making the fixing force between the fixing plate and the connecting plate relatively uniform. This can improve the fixing effect of the fixing screws on the fixing plate, thereby improving the connection strength of adjacent connecting plates.

[0026] 3. The fixed groove allows for better installation of the fixing plate, improving the connection strength between the fixing plate and the connecting plate, and further enhancing the connection strength between the two connecting plates. Simultaneously, a gap exists between the fixing plate and the side wall of the fixed groove. When two adjacent connecting plates are joined, the snap-fit ​​rod on the fixing plate of one connecting plate first enters the gap between the fixing plate and the side wall of the fixed groove. Moving the connecting plate, the snap-fit ​​rod enters the snap-fit ​​groove, and the snap-fit ​​plate and snap-fit ​​groove engage. This facilitates the insertion of the snap-fit ​​rod on the fixing plate of one connecting plate into the snap-fit ​​groove on the fixing plate of the other connecting plate. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 This is a schematic diagram of the overall structure of a splicing self-locking lightweight load-bearing wall structure according to this application.

[0029] Figure 2 This is a schematic diagram of adjacent connecting plates in a splicing self-locking lightweight load-bearing wall structure according to this application.

[0030] Figure 3 yes Figure 2 Enlarged view of part A.

[0031] Figure 4 yes Figure 2 Enlarged view of part B.

[0032] Figure 5 yes Figure 4 Enlarged view of part C.

[0033] Figure 6 This is a schematic diagram of adjacent connecting plates in a splicing self-locking lightweight load-bearing wall structure, according to another embodiment of this application.

[0034] Figure 7 This is a schematic diagram of the structure where the fixing piece and the clip are connected.

[0035] Explanation of reference numerals in the attached drawings: 1. Connecting plate; 11. First plate segment; 111. Fixing groove; 112. Protrusion; 113. Recess; 12. Second plate segment; 13. Filling part; 2. Connecting piece; 21. Fixing plate; 211. Snap-fit ​​groove; 212. Fixing hole; 213. Row of fixing holes; 214. Snap-fit ​​post; 215. Mounting hole; 216. Tapered part; 217. Elastic element; 22. Fixing source; 221. Fixing screw; 23. Snap-fit ​​rod. Detailed Implementation

[0036] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0037] This application discloses a splicing self-locking lightweight load-bearing wall structure.

[0038] A modular, self-locking, lightweight load-bearing wall structure includes multiple connecting plates 1 connected sequentially. Connectors 2 are symmetrically arranged on the sides of adjacent connecting plates 1 that are close to each other, along a first direction. The connectors 2 are used to fix adjacent connecting plates 1. When fabricating the load-bearing wall, two connecting plates 1 are brought close together. As the two connecting plates 1 move close together, they are moved along the first direction. Under the action of the connectors 2, the adjacent connecting plates 1 are connected and fixed. By fixing multiple connecting plates 1, the installation and fabrication of the load-bearing wall structure are achieved.

[0039] In some embodiments of this disclosure, the connecting plate 1 includes two first plate segments 11, two second plate segments 12, and a filling portion 13; the two first plate segments 11 are symmetrically arranged about a first direction; wherein, the two second plate segments 12 are respectively disposed on both sides of the two first plate segments 11, and a receiving cavity is formed between the two first plate segments 11 and the two second plate segments 12; the filling portion 13 is disposed within the receiving cavity; and the connecting member 2 is disposed on the first plate segment 11. By setting the connecting plate 1 in the form of a combination of multiple plate segments, it is convenient to transport the connecting plate 1 and reduce the area occupied by the connecting plate 1, thereby making the load-bearing wall structure suitable for a variety of different environments.

[0040] As an example, the second segment 12 can be made of particleboard, the first segment 11 can be made of solid wood, and the filling part 13 can be made of foam. Of course, the segment structure of the connecting plate 1 can be made of other materials, which will not be specifically shown in this embodiment.

[0041] In some embodiments of this disclosure, to improve the connection strength between adjacent connecting plates 1, one side of the first plate segment 11 has a protrusion 112, and the first plate segment 11 in the adjacent connecting plates 1 has a recess 113 corresponding to the protrusion 112. When the protrusion 112 extends into the recess 113, the first plate segments 11 in the adjacent connecting plates 1 come into contact. The protrusion 112 and the recess 113 provided on the first plate segment 11 can improve the connection strength between adjacent connecting plates 1, thereby improving the strength of the load-bearing wall structure.

[0042] In some embodiments of this disclosure, the connector 2 includes a fixing plate 21, a fixing source 22, and a snap-fit ​​rod 23; the snap-fit ​​rod 23 is fixed to the fixing plate 21 by welding, and there is a gap between the end of the snap-fit ​​rod 23 and the fixing plate 21; the fixing plate 21 is mounted on the first plate segment 11, and the fixing plate 21 has a snap-fit ​​groove 211 into which the snap-fit ​​rod 23 extends; wherein, when the snap-fit ​​rod 23 on the fixing plate 21 of one connecting plate 1 extends into the snap-fit ​​groove 211 on the fixing plate 21 of another adjacent connecting plate 1, the adjacent connecting plates 1 are fixed together; the fixing source 22 is mounted on the fixing plate 21, and the fixing source 22 is used to fix the fixing plate 21 to the connecting plate 1.

[0043] As an example, the fixing source 22 includes a fixing screw 221; the fixing plate 21 has a fixing hole 212, through which the fixing screw 221 passes to fix the fixing plate 21 to the connecting plate 1.

[0044] In some embodiments of this disclosure, the fixing piece 21 has a plurality of fixing holes 212 along the first direction, and the plurality of fixing holes 212 are spaced apart. By providing a plurality of fixing holes 212 on the fixing piece 21, the fixing force between the fixing piece 21 and the connecting plate 1 can be dispersed, thereby helping to improve the connection strength between the fixing piece 21 and the connecting plate 1.

[0045] Furthermore, to enhance the connection strength between the fixing plate 21 and the connecting plate 1, the fixing plate 21 has multiple rows of fixing holes 213 along the second direction of the connecting plate 1, wherein the fixing screws 221 on adjacent rows of fixing holes 213 are positioned differently. This balances the fixing force between the fixing plate 21 and the connecting plate 1, thereby further enhancing the connection strength between the fixing plate 21 and the connecting plate 1, and consequently improving the strength of the load-bearing wall structure.

[0046] In some embodiments of this disclosure, one side of the first plate segment 11 has a fixing groove 111 for mounting a fixing piece 21. When the fixing piece 21 is placed in the fixing groove 111, the side of the fixing piece 21 away from the bottom wall of the fixing groove 111 is at the same horizontal plane as the side of the first plate segment 11, and along the first direction, there is a gap between one end of the fixing piece 211 with the snap-fit ​​groove 211 and the side wall of the fixing groove 111. When two adjacent connecting plates 1 are spliced, the snap-fit ​​rod 23 provided on the fixing piece 21 of one connecting plate 1 first enters into the gap between the fixing piece 21 and the fixing groove 11 on the other connecting plate 1, and continues to push the connecting plate 1, the snap-fit ​​rod 23 extends into the snap-fit ​​groove 111, realizing the installation between adjacent connecting rods 1. At the same time, the fixing groove 111 can limit the fixing piece 21, preventing the fixing piece 21 from loosening due to long-term use, thereby improving the service life of the load-bearing wall structure to a certain extent.

[0047] It is understood that in the embodiments of this disclosure, the snap-fit ​​rod 23 includes a thin straight portion and an enlarged portion connected to the thin straight portion (not specifically labeled in the accompanying drawings). When adjacent connecting plates 1 are connected, the thin straight portion is located in the snap-fit ​​groove 211, and the enlarged portion is located on the side of the fixing piece 21 facing the bottom of the fixing groove 111, and can abut against one side of the fixing piece 21.

[0048] See Figure 6 , Figure 7This application also provides an embodiment: The embodiment of this application differs from the above-mentioned embodiment in that: In this embodiment, the fixing plate 21 is provided with locking posts 214 on both sides of the end near the locking rod 23, and two locking posts 214 on one fixing plate 21 are connected by an elastic member 217; the elastic member 217 applies a force to the two locking posts 214 to bring them closer together, and the fixing plate 21 is provided with a groove that cooperates with the locking post 214 to limit the movement of the locking post 214 along the first direction and stabilize the position of the locking post 214 on the fixing plate 21. The elastic member 216 is located between the fixing plate 21 and the connecting plate 1; the fixing plate 21 is provided with mounting holes 215 on both sides of the end near the locking groove 211, and the locking posts 214 on the fixing plate 21 of one connecting plate 1 and the mounting holes 215 on the fixing plate 21 of the other connecting plate 1 that are connected to each other correspond one-to-one. The fixing piece 21 has a tapered end, called a tapered portion 216, at the end where the snap-fit ​​groove 211 is provided. When two adjacent connecting plates 1 are mated, the fixing pieces 21 on the two connecting plates 1 approach each other. At this time, the fixing pieces 21 on the two connecting plates 1 are in a staggered state in the first direction. Among the two opposing fixing pieces 21, the snap-fit ​​rod 23 and snap-fit ​​post 214 on one fixing piece 21 are located outside the range of the other fixing piece 21. They approach each other along the first direction, and the snap-fit ​​rod 23 moves closer to the snap-fit ​​groove 211. Two snap-fit ​​posts 214 approach the tapered portion 216 of the fixing plate 21. The tapered ends gradually push the two snap-fit ​​posts 214 apart, and the two snap-fit ​​posts 214 on the same fixing plate 21 gradually move away from each other. When the fixing plates 21 of the two connecting plates 1 are completely aligned, the snap-fit ​​rod 23 fully cooperates with the snap-fit ​​groove 211 to form a snap-fit. The snap-fit ​​posts 214 are aligned with the mounting holes 215. Under the action of the elastic element 216, the snap-fit ​​posts 214 are stably located in the mounting holes 215, reducing the random movement of the two connecting plates 1 along the first direction.

[0049] Furthermore, in this embodiment, the fixing piece 21 provided on one side of the connecting plate 1 may have a fixing groove 111; the fixing piece 21 provided on the connecting plate 1 adjacent to this connecting plate 1 may not have a fixing groove 111, and the fixing groove 111 on one connecting plate 1 is used to accommodate two stacked fixing pieces 21. In this way, when two adjacent connecting plates 1 are close to each other, the fixing piece 21 on the connecting plate 1 without a fixing groove 111 can extend into the fixing groove 111 of the other connecting plate 1. This can reduce the connection gap between two adjacent connecting plates 1 and help improve the connection quality between the two adjacent connecting plates 1.

[0050] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A self-locking lightweight load-bearing wall structure in segments, characterized in that: The utility model provides a connecting plate (1) is connected in sequence, wherein, along the first direction of the connecting plate (1), the side center symmetry of adjacent connecting plate (1) is provided with connecting piece (2), and the connecting piece (2) is used for fixing adjacent connecting plate (1). The connecting plate (1) comprises two first plate segments (11), two second plate segments (12) and a filling part (13). The two first plate segments (11) are symmetrically arranged about the first direction. The two second plate segments (12) are respectively arranged on the two sides of the two first plate segments (11), and the two first plate segments (11) and the two second plate segments (12) form an accommodating cavity. The filling part (13) is arranged in the accommodating cavity. The connecting piece (2) is arranged on the first plate segment (11). The connecting piece (2) comprises a fixing sheet (21), a fixing source (22) and a clamping rod (23). The clamping rod (23) is arranged on the fixing sheet (21), and the end of the clamping rod (23) has a gap with the fixing sheet (21). The fixing sheet (21) is arranged on the first plate segment (11), and the fixing sheet (21) has a clamping groove (211) into which the clamping rod (23) extends. When the clamping rod (23) on the fixing sheet (21) arranged on one connecting plate (1) extends into the clamping groove (211) on the fixing sheet (21) arranged on another adjacent connecting plate (1), the adjacent connecting plates (1) are fixed. The fixing source (22) is arranged on the fixing sheet (21) to fix the fixing sheet (21) and the connecting plate (1).

2. The drywall structure according to claim 1, wherein: One side of the first plate segment (11) has a protruding part (112), and the first plate segment (11) in the adjacent connecting plate (1) has a recessed part (113) corresponding to the protruding part (112). When the protruding part (112) extends into the recessed part (113), the first plate segment (11) in the adjacent connecting plate (1) is in contact.

3. The drywall structure according to claim 1, wherein: The fixing source (22) comprises a fixing screw (221). The fixing sheet (21) has a fixing hole (212), and the fixing screw (221) passes through the fixing sheet (21) to fix the fixing sheet (21) and the connecting plate (1).

4. The drywall structure according to claim 3, wherein: Along the first direction, the fixing sheet (21) has a plurality of fixing holes (212), and the plurality of fixing holes (212) are distributed at intervals.

5. The drywall structure according to claim 3, wherein: Along the second direction of the connecting plate (1), the fixing sheet (21) has a plurality of fixing hole rows (213), wherein the positions of the fixing screws (221) arranged on adjacent fixing hole rows (213) are different.

6. The drywall structure of claim 1, wherein: One side of the first plate segment (11) has a fixing groove (111) for mounting the fixing sheet (21); when the fixing sheet (21) is placed in the fixing groove (111), the side of the fixing sheet (21) away from the bottom wall of the fixing groove (111) is in the same horizontal plane as the side of the first plate segment (11), and along the first direction, the fixing sheet (21) has a gap between one end of the clamping groove (211) and the side wall of the fixing groove (111).