Connecting structure for module wall splicing
Through the combined connection structure of frame vertical rod, cross rod and built-in screw, the problems of inconvenient installation and difficulty in disassembly of module walls are solved, and convenient installation and disassembly of module walls are achieved, and resource waste is avoided.
Patent Information
- Application Number
- CN202422089083.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing module wall splicing structure is inconvenient during installation, difficult to disassemble during disassembly, and even requires damage to be removed, resulting in waste of resources.
The connecting structure of the frame vertical rod and the frame horizontal rod are combined with the built-in screw, and the installation and disassembly of the module wall is achieved through sliding connections and threaded connections, and the built-in screw connection is used to avoid damage to the module wall.
It realizes convenient installation and disassembly of module walls, avoids waste of resources, and ensures that module walls can be reused.
Smart Images

Figure CN223088694U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wall splicing, in particular to a connection structure for splicing module walls. Background Technique
[0002] In the field of building decoration, partition walls are one of the important methods for dividing indoor spaces. Although traditional fixed partition walls have good airtightness and privacy, they lack flexibility and cannot arbitrarily change the internal state of the space. Once people have different requirements for the internal space of a building at different times, fixed partition walls will inevitably bring many limitations. Movable partition walls can meet people's requirements for changes in the internal space of a building at different times. Therefore, wall splicing technology has emerged. The spliced wall has a large combination space: it can be spliced with small screens or large screens; it can be spliced one-on-one with single screens or mixed with large and small screens. According to the system scale and application requirements put forward by customers for the splicing curtain wall system, and according to the use environment of the system, appropriate products and splicing methods can be selected to design specific implementation plans to meet the application requirements of the system. However, after the existing spliced walls are spliced, they are not easy to disassemble. Even after use, the splicing modules need to be damaged to be removed, resulting in a large waste of resources.
[0003] The application number is CN202021521364.1, which discloses a wall splicing module assembly, including a fixing plate and a sound insulation pad; there are two fixing plates, the sound insulation pad is fixedly connected between the two fixing plates and the long sides of the two fixing plates are misaligned; a first module wall is provided between each pair of opposite long sides of the two fixing plates, the first module wall is provided with elongated protrusions and elongated grooves distributed along the long side, and the elongated protrusions and elongated grooves are connected by an inclined surface; the elongated protrusions and elongated grooves are adapted, and the elongated protrusions and elongated grooves on one side are misaligned and opposite to the elongated protrusions and elongated grooves on the other side; a second module wall is provided between the two opposite short sides of the two fixing plates; the second module wall includes two limiting strips, and the two limiting strips are respectively fixed to the inner sides of the two fixing plates along the two short sides one by one. The utility model realizes the installation of modular wall panels, and compared with the existing wall masonry, the construction is simpler and more efficient.
[0004] However, the above new structure is inconvenient to install during installation and is not easy to disassemble during disassembly. Even after use, the splicing modules need to be damaged to be removed, resulting in a waste of resources. Content of the Utility Model
[0005] The purpose of the utility model is to provide a connection structure for splicing module walls to solve the problems raised in the above background technique.
[0006] To solve the above technical problems, the present utility model is realized through the following technical solutions:
[0007] The present utility model is a connection structure for splicing modular walls, including a frame vertical rod. One side of the frame vertical rod is provided with a frame horizontal rod and a first modular wall. The upper end of the frame horizontal rod is provided with the first modular wall, and the other side of the first modular wall is provided with a second modular wall; a first built-in screw and a conduit are installed in the middle of the first modular wall, a second built-in screw and a conduit are installed in the middle of the second modular wall, and a heat-insulating leather strip is installed outside the first built-in screw, the second built-in screw and the conduit.
[0008] Further, the bottom end of one side of the frame vertical rod is connected to the frame horizontal rod by screws, and the upper end of the frame horizontal rod is slidably connected to the first modular wall and the second modular wall.
[0009] Further, one side of the first modular wall is connected to the frame vertical rod by a plurality of first built-in screws, and the other side of the first modular wall is connected to the second modular wall by a plurality of second built-in screws.
[0010] Further, a plurality of circular grooves are formed in the middle of the first modular wall and the second modular wall, and a plurality of heat-insulating leather strips are slidably connected thereto.
[0011] Further, a plurality of first built-in screws, second built-in screws and conduits are installed in the inner cavity of the heat-insulating leather strip, and the first built-in screw and the second built-in screw are symmetrically installed on the upper and lower sides of the conduit.
[0012] Further, the first built-in screw and the second built-in screw respectively penetrate through the first modular wall and the second modular wall, and a circular groove is formed at the top end of the first built-in screw and is threadedly connected to the bottom end of the second built-in screw.
[0013] The present utility model has the following beneficial effects:
[0014] (1) Through the arrangement of the first built-in screw and the second built-in screw, the first modular wall is installed on one side of the frame vertical rod by the first built-in screw, and then the second modular wall is fixedly installed on the other side of the first modular wall by the second built-in screw, so as to facilitate the installation and disassembly of the modular wall, and the connection method by the built-in screw will not damage the modular wall, so that the modular wall can be reused.
[0015] Of course, it is not necessary for any product implementing the present utility model to achieve all the above advantages at the same time. Description of the Drawings
[0016] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the attached drawings required for the description of the embodiments. Obviously, the attached drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other attached drawings can also be obtained based on these attached drawings.
[0017] Figure 1 Front view schematic diagram of the structure of the present utility model;
[0018] Figure 2 Top view schematic diagram of the structure of the present utility model;
[0019] Figure 3 Front view sectional schematic diagram of the structure of the present utility model;
[0020] Figure 4 Top view sectional schematic diagram of the structure of the present utility model;
[0021] Figure 5 Schematic diagram of the rod members of the structure of the present utility model;
[0022] In the attached drawings, the list of components represented by each reference numeral is as follows:
[0023] In the figure: 1, vertical frame rod; 2, horizontal frame rod; 3, first module wall; 4, second module wall; 5, first built-in screw; 6, second built-in screw; 7, wiring pipe; 8, thermal insulation strip. Specific embodiments
[0024] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the attached drawings in the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.
[0025] Please refer to Figure 1 - Figure 5 As shown, the present utility model is a connection structure for splicing module walls, including a vertical frame rod 1. A horizontal frame rod 2 and a first module wall 3 are installed on one side of the vertical frame rod 1. The first module wall 3 is installed above the horizontal frame rod 2. A second module wall 4 is installed on the other side of the first module wall 3. A first built-in screw 5 and a wiring pipe 7 are installed in the middle of the first module wall 3. A second built-in screw 6 and a wiring pipe 7 are installed in the middle of the second module wall 4. A thermal insulation strip 8 is installed outside the first built-in screw 5, the second built-in screw 6 and the wiring pipe 7.
[0026] The purpose of such a setting is to first install the frame vertical rod 1 and the frame horizontal rod 2 in the working area. The first module wall 3 is installed at the upper end of the frame horizontal rod 2 through a sliding connection. Then, the first built-in screw 5 is used to fix the first module wall 3 on one side of the frame vertical rod 1. Next, the second module wall 4 is installed at the upper end of the frame horizontal rod 2 through a sliding connection. Then, the second built-in screw 6 is used to fix the second module wall 4 on the other side of the first module wall 3. Thus, new module walls can be continuously installed on the other side of the module wall, and when disassembling, only the built-in screws need to be removed on one side of the module wall to disassemble the module wall.
[0027] One end of the bottom of one side of the frame vertical rod 1 is connected to the frame horizontal rod 2 by screws. The upper end of the frame horizontal rod 2 is connected to the first module wall 3 and the second module wall 4 through a sliding connection.
[0028] The purpose of such a setting is to install the frame horizontal rod 2 on one side of the frame vertical rod 1, and install the first module wall 3 and the second module wall 4 at the upper end of the frame horizontal rod 2 through a sliding connection. Thus, the installation of the module wall by means of a sliding connection can save manpower, and the use of the frame horizontal rod 2 can fix the positions of the first module wall 3 and the second module wall 4 to prevent the module wall from shifting during the installation process.
[0029] One side of the first module wall 3 is connected to the frame vertical rod 1 by a plurality of first built-in screws 5, and the other side of the first module wall 3 is connected to the second module wall 4 by a plurality of second built-in screws 6.
[0030] The purpose of such a setting is to install the first module wall 3 on one side of the frame vertical rod 1 by using the first built-in screw 5, and then fix and install the second module wall 4 on the other side of the first module wall 3 by the second built-in screw 6. Thus, the installation and disassembly of the module wall are convenient, and the connection by the built-in screw will not cause damage to the module wall, enabling the module wall to be used again.
[0031] A plurality of circular grooves are opened in the middle of the first module wall 3 and the second module wall 4, and a plurality of heat preservation strips 8 are connected through a sliding connection.
[0032] A plurality of first built-in screws 5, second built-in screws 6 and wire pipes 7 are installed in the inner cavity of the heat preservation strip 8. The first built-in screws 5 and the second built-in screws 6 are symmetrically installed on the upper and lower sides of the wire pipe 7.
[0033] The first built-in screw 5 and the second built-in screw 6 respectively penetrate the first module wall 3 and the second module wall 4. A circular groove is opened at the top end of the first built-in screw 5 and is threadedly connected to the bottom end of the second built-in screw 6.
[0034] The purpose of such a setting is to wrap the thermal insulation strip 8 around the first built-in screw 5, the second built-in screw 6, and the line pipe 7, so as to enhance the thermal insulation effect and prevent temperature difference from damaging the built-in screw and the line pipe 7.
[0035] During use, first install the frame vertical rod 1 and the frame horizontal rod 2 in the working area. Install the first module wall 3 on the upper end of the frame horizontal rod 2 through a sliding connection. Then use the first built-in screw 5 to fix the first module wall 3 on one side of the frame vertical rod 1. Next, install the second module wall 4 on the upper end of the frame horizontal rod 2 through a sliding connection. Then use the second built-in screw 6 to fix the second module wall 4 on the other side of the first module wall 3. Thus, new module walls can be continuously installed on the other side of the module wall. And when disassembling, only need to remove the built-in screw on one side of the module wall to disassemble the module wall, which is convenient for the installation and disassembly of the module wall. Moreover, the connection method through the built-in screw will not damage the module wall, enabling the module wall to be reused.
[0036] The preferred embodiments of the present utility model disclosed above are only used to help illustrate the present utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the present utility model to the specific embodiments described. Obviously, many modifications and variations can be made according to the content of this specification. This specification selects and specifically describes these embodiments to better explain the principle and practical application of the present utility model, so that those skilled in the relevant technical field can well understand and utilize the present utility model. The present utility model is only limited by the claims and their full scope and equivalents.
Claims
1. A connecting structure for splicing modular walls, including a frame vertical rod (1), characterized in that: One side of the frame vertical rod (1) is provided with a frame cross rod (2) and a first module wall (3). The upper end of the frame cross rod (2) is provided with the first module wall (3). The other side of the first module wall (3) is provided with a second module wall (4). In the middle of the first module wall (3), a first built-in screw rod (5) and a wiring pipe (7) are installed. In the middle of the second module wall (4), a second built-in screw rod (6) and a wiring pipe (7) are installed. Heat preservation strips (8) are installed outside the first built-in screw rod (5), the second built-in screw rod (6) and the wiring pipe (7).
2. The connecting structure for modular wall splicing according to claim 1, characterized in that: One side of the bottom end of the frame vertical rod (1) is connected to the frame cross rod (2) by screws. The upper end of the frame cross rod (2) is connected to the first module wall (3) and the second module wall (4) by sliding connection.
3. The connection structure for modular wall splicing according to claim 1, characterized in that: One side of the first module wall (3) is connected to the frame vertical rod (1) by a plurality of first built-in screw rods (5). The other side of the first module wall (3) is connected to the second module wall (4) by a plurality of second built-in screw rods (6).
4. A connecting structure for modular wall splicing according to claim 1, characterized in that: A plurality of circular grooves are formed in the middle of the first module wall (3) and the second module wall (4), and a plurality of heat preservation strips (8) are connected by sliding connection.
5. A connecting structure for splicing modular walls according to claim 1, characterized in that: A plurality of first built-in screw rods (5), second built-in screw rods (6) and wiring pipes (7) are installed in the inner cavity of the heat preservation strip (8). The first built-in screw rod (5) and the second built-in screw rod (6) are symmetrically installed on the upper and lower sides of the wiring pipe (7).
6. The connecting structure for splicing module walls according to claim 1, characterized in that: The first built-in screw rod (5) and the second built-in screw rod (6) respectively penetrate through the first module wall (3) and the second module wall (4). A circular groove is formed at the top end of the first built-in screw rod (5) and is threadedly connected to the bottom end of the second built-in screw rod (6).
Citation Information
Patent Citations
Wall splicing module assembly
CN212926559U
Cited By
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