Multifunctional wall
By limiting the position of the fixed wall and the partition wall with the first and second connecting members in the connecting assembly, the clamping member ensures a tight connection, and the limiting member restricts movement, the problem of unstable connection of the partition wall is solved and a stable wall structure is achieved.
Patent Information
- Application Number
- CN202421989391.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-08-15
AI Technical Summary
Partition walls are prone to unstable connections during use, resulting in shaking and instability.
A connection assembly is used, including a first connection member and a second connection member connected to the fixed wall, a clamping member ensures a tight connection between the fixed wall and the partition wall, and a limit member limits the movement of the partition wall in the vertical and longitudinal directions by abutting the connection member.
It improves the connection stability of fixed walls and partition walls, enhances the overall structural strength and safety of the wall, is suitable for high-load and high-stability occasions, and reduces installation complexity and time.
Smart Images

Figure CN223386822U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of construction, and in particular to a multifunctional wall. Background Art
[0002] Currently, partition walls within multifunctional walls are becoming increasingly flexible and customizable to meet diverse spatial needs. These partitions often feature movable, folding, or sliding designs, allowing for easy reconfiguration of space layouts based on user needs. Furthermore, the material choices and finishes of partition walls are becoming more diverse to accommodate diverse decor styles and functional requirements, while also prioritizing environmental sustainability. With the advancement of technology, some partition walls are also incorporating intelligent features, such as adjustable lighting, sound, and temperature, to provide users with a more comfortable and convenient experience.
[0003] However, partition walls are prone to unstable connections and shaking during use. Therefore, a multifunctional wall with improved connection stability is needed. Utility Model Content
[0004] In view of this, it is necessary to provide a multifunctional wall with improved connection stability to solve the above problems.
[0005] An embodiment of the present application provides a multifunctional wall, comprising:
[0006] A fixed wall is installed on the ground in a vertical direction, and a plurality of the fixed walls are symmetrically arranged in the vertical direction and the longitudinal direction;
[0007] A partition wall is installed on the ground in a vertical direction and is connected to the fixed wall at both ends in the longitudinal direction;
[0008] A connecting assembly is connected to the fixed wall in a vertical and longitudinal direction and is connected to the partition wall, and the connecting assembly includes:
[0009] A first connecting member, whose two ends are respectively connected to two adjacent fixed walls that are longitudinally symmetrical and in the same vertical direction, and is vertically connected to the partition wall;
[0010] The second connecting member has two ends respectively connected to the two adjacent fixed walls that are symmetrical along the longitudinal direction and in another same vertical direction; is connected to the first connecting member, and is vertically connected to the partition wall.
[0011] In at least one embodiment of the present application, the connection component includes:
[0012] A clamping member, one end of which is connected to the fixed wall and the other end of which is connected to the partition wall, wherein the plurality of clamping members are symmetrical in the vertical direction at the midpoint of the distance between two adjacent fixed walls at the same longitudinal position, and are symmetrical in the longitudinal direction at the midpoint of the distance between two adjacent fixed walls at the same vertical position;
[0013] The limiting member is closely connected to the fixed wall and abuts against the connecting member, and the plurality of limiting members are symmetrical in the vertical direction of the midpoint of the distance between two adjacent fixed walls with the same longitudinal position.
[0014] In at least one embodiment of the present application, the connection component further includes:
[0015] A connecting block is fitted and connected to one end of the partition wall away from the clamping piece, and is fixedly connected to the connecting piece. The connecting block is located between the partition wall and the connecting piece, and multiple connecting pieces are symmetrical in the vertical direction of the midpoint of the distance between two adjacent fixed walls with the same longitudinal position, and are longitudinally symmetrical in the vertical direction of the midpoint of the distance between two adjacent fixed walls with the same vertical position.
[0016] In at least one embodiment of the present application, the connecting member includes:
[0017] A first bending portion is tightly connected to the partition wall to limit the movement of the partition wall in the vertical direction;
[0018] The second bending portion is integrally formed with the first bending portion, and the second bending portions of the two symmetrical connecting members form a limiting cavity and abut against the limiting member to limit the movement of the partition wall in the longitudinal direction.
[0019] In at least one embodiment of the present application, the limiting member includes:
[0020] A first fitting portion is longitudinally fitted and connected to the partition wall;
[0021] a first clamping portion abutting against the first connecting member in the longitudinal direction and located in the limiting cavity;
[0022] The second clamping portion abuts against the second connecting member along the longitudinal direction and is located in the limiting cavity.
[0023] In at least one embodiment of the present application, the angle between the first clamping portion and the second clamping portion is set to y, satisfying the relationship:
[0024] 120°<y<150°.
[0025] In at least one embodiment of the present application, the partition wall comprises:
[0026] A partition portion, connected to the fixed wall in the longitudinal direction to achieve partition;
[0027] The second fitting portion is fixedly connected to the fixed wall along a vertical direction.
[0028] In at least one embodiment of the present application, the partition wall includes a limiting portion, which is longitudinally fitted with the first fitting portion, and the end away from the fitting portion is abutted against the first bend, and is located between the first fitting portion and the first bend portion to limit the partition wall in the vertical direction.
[0029] In at least one embodiment of the present application, the angle at which the two second bent portions form the limiting cavity is set to x, satisfying the relationship:
[0030] 30°<x<45°.
[0031] In at least one embodiment of the present application, the connecting member is configured as a light steel structure.
[0032] The multifunctional wall provided above is limited by the first connecting member and the second connecting member in the connecting assembly with the fixed wall and the partition wall. The clamping member ensures a tight connection between the fixed wall and the partition wall, and the limiting member limits the movement of the partition wall in the vertical and longitudinal directions by abutting the connecting member, thereby improving the connection stability between the fixed wall and the partition wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 A three-dimensional diagram of the multifunctional wall described in this application;
[0034] Figure 2 This is an exploded top view of the multifunctional wall described in this application;
[0035] Figure 3 This is a schematic diagram of the connection between the connector and the partition wall described in this application;
[0036] Figure 4 This is a top-down cross-sectional view of the multifunctional wall described in this application;
[0037] Figure 5 for Figure 4 A partial enlarged view of the middle AA;
[0038] Figure 6 for Figure 4 A partial enlarged view of the middle BB;
[0039] Figure 7 A top view of the limiting member described in this application;
[0040] Figure 8 A top view of the connector described in this application;
[0041] Description of main component symbols
[0042] 100. Multifunctional wall; 10. Fixed wall; 20. Partition wall; 21. Partition portion; 22. Second fitting portion; 23. Limiting portion; 30. Connecting assembly; 31. First connecting member; 32. Second connecting member; 3132. Limiting cavity; 31321. First bending portion; 31322. Second bending portion; 33. Clamping member; 34. Limiting member; 341. First fitting portion; 342. First clamping portion; 343. Second clamping portion; 35. Connecting block; 40. Vertical direction; 50. Perpendicular direction; 60. Longitudinal direction. DETAILED DESCRIPTION
[0043] The embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.
[0044] It should be noted that when a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and similar expressions used herein are for illustrative purposes only.
[0045] An embodiment of the present application provides a multifunctional wall, comprising: a fixed wall, a partition wall, and a connection assembly. The fixed wall is installed on the ground in the vertical direction, and a plurality of the fixed walls are arranged side by side symmetrically in the vertical direction and in the longitudinal direction; the partition wall is installed on the ground in the vertical direction and is connected to the fixed wall at both ends in the longitudinal direction; the connection assembly is connected to the fixed wall in the vertical direction and in the longitudinal direction, and is connected to the partition wall, and the connection assembly includes a first connection member and a second connection member. The two ends of the first connection member are respectively connected to two adjacent fixed walls that are symmetrical in the longitudinal direction and in the same vertical direction, and are vertically connected to the partition wall; the two ends of the second connection member are respectively connected to two adjacent fixed walls that are symmetrical in the longitudinal direction and in another same vertical direction; and are connected to the first connection member and are vertically connected to the partition wall.
[0046] The multifunctional wall provided above is limited by the first connecting member and the second connecting member in the connecting assembly with the fixed wall and the partition wall. The clamping member ensures a tight connection between the fixed wall and the partition wall, and the limiting member limits the movement of the partition wall in the vertical and longitudinal directions by abutting the connecting member, thereby improving the connection stability between the fixed wall and the partition wall.
[0047] The following embodiments of the present application are described in detail with reference to the accompanying drawings. In the absence of conflict, the following embodiments and features therein may be combined with each other.
[0048] See also Figures 1-8 The embodiment of the present application provides a multifunctional wall 100 comprising: a fixed wall 10, a partition wall 20, and a connecting assembly 30. The fixed wall 10 is installed on the ground along the vertical direction 40, and multiple fixed walls 10 are symmetrically arranged side by side along the vertical direction 50 and the longitudinal direction 60. The partition wall 20 is installed on the ground along the vertical direction 40 and is connected to the fixed wall 10 at both ends along the longitudinal direction 60. The connecting assembly 30 is connected to the fixed wall 10 along the vertical direction 50 and the longitudinal direction 60, and is also connected to the partition wall 20. The connecting assembly 30 includes a first connecting member 31 and a second connecting member 32. The first connecting member 31 is connected to two adjacent fixed walls 10 symmetrically along the longitudinal direction 60 and in the same vertical direction 50 at both ends, and is also connected perpendicularly to the partition wall 20. The second connecting member 32 is connected to two adjacent fixed walls 10 symmetrically along the longitudinal direction 60 and in another same vertical direction 50 at both ends. The first connecting member 31 is connected to the first connecting member 31 and is also connected perpendicularly to the partition wall 20.
[0049] Specifically, the fixed wall 10 serves as the main structure of the wall, supporting the stability of the entire wall. Its vertical installation on the ground ensures a solid foundation for the wall. The symmetrical, side-by-side design enhances the overall structural strength of the wall, allowing it to better distribute stress when subjected to external forces. The symmetrical, side-by-side arrangement of the fixed walls 10 not only improves the wall's stability but also enhances its appearance. Furthermore, this design ensures a more uniform distribution of external forces across the wall, reducing stress concentration and thus extending the wall's service life.
[0050] Furthermore, during the wall installation process, the fixed wall 10 is first installed vertically on the ground, forming the wall's foundation structure. Subsequently, other wall components, such as the partition wall 20 and the connecting components 30, are connected to the fixed wall 10 according to design requirements. The design of the fixed wall 10 is suitable for various scenarios requiring stable walls, such as commercial buildings, residential buildings, and factories. The stability of the fixed wall 10 is particularly important in applications that must withstand significant external forces or require long-term use.
[0051] The primary function of the partition wall 20 is to divide space and fulfill the wall's partitioning function. Furthermore, by connecting to the fixed wall 10, the partition wall 20 also enhances the wall's overall structural strength. The design of the partition wall 20 allows for flexible division of space into different areas while maintaining stability, meeting diverse usage requirements. Furthermore, the connection between the partition wall 20 and the fixed wall 10 enhances the wall's overall stability.
[0052] Furthermore, during the wall installation process, the partition wall 20 is mounted on the ground and connected to the fixed wall 10 via the connecting assembly 30. This connection allows the partition wall 20 and the fixed wall 10 to form a single unit, jointly withstanding external forces. The design of the partition wall 20 is particularly suitable for use in spaces requiring spatial division, such as offices, shopping malls, and exhibition halls. Through the flexible arrangement of the partition wall 20, different spatial layouts can be created to meet diverse usage requirements.
[0053] Furthermore, the connection assembly 30 is connected to the fixed wall 10 along the vertical direction 50 and the longitudinal direction 60, and is also connected to the partition wall 20. The connection assembly 30 includes a first connector 31 and a second connector 32. The function of the connection assembly 30 is to connect the fixed wall 10 and the partition wall 20 to form a stable wall structure. The first connector 31 and the second connector 32 respectively connect the fixed wall 10 and the partition wall 20, ensuring a tight connection between the various wall components.
[0054] Furthermore, the design of the connection assembly 30 makes the connection between the fixed wall 10 and the partition wall 20 more stable and reliable, thereby improving the overall structural strength of the wall. At the same time, the flexibility of the connection assembly 30 also makes the installation and maintenance of the wall more convenient. During the installation process, the connection assembly 30 is first connected to the partition wall 20, and then connected to the fixed wall 10. Through precise design and installation, the connection assembly 30 can ensure a tight connection between the fixed wall 10 and the partition wall 20, forming a stable whole. The design of the connection assembly 30 is suitable for various wall structures that require a stable connection. Whether in commercial buildings or residential buildings, the connection assembly 30 can effectively connect the fixed wall 10 and the partition wall 20, ensuring the stability and safety of the wall.
[0055] In summary, the various features of the multifunctional wall 100 work together to form a stable and reliable wall structure. Through the meticulous design of the fixed wall 10, partition wall 20, and connecting assembly 30, the wall not only possesses excellent structural strength but also offers the flexibility to adapt to diverse usage requirements. This design enables the multifunctional wall 100 to demonstrate its superior performance in a variety of application scenarios.
[0056] In a specific embodiment, the connection assembly 30 includes a clamping member 33 and a limiting member 34. One end of the clamping member 33 is connected to the fixed wall 10, and the other end is connected to the partition wall 20. Multiple clamping members 33 are symmetrically arranged 50 degrees vertically from the midpoint of two adjacent fixed walls 10 that are in the same longitudinal position along 60 degrees, and are also symmetrically arranged 60 degrees vertically from the midpoint of two adjacent fixed walls 10 that are in the same longitudinal position along 50 degrees. The limiting member 34 is closely connected to the fixed wall 10 and abuts against the connection member. Multiple limiting members 34 are symmetrically arranged 50 degrees vertically from the midpoint of two adjacent fixed walls 10 that are in the same longitudinal position along 60 degrees.
[0057] Specifically, the design of the clamping members 33 makes the connection between the fixed wall 10 and the partition wall 20 tighter, effectively preventing the wall from loosening or shifting during use. The symmetrical layout of the clamping members 33 ensures that the wall can evenly distribute stress when subjected to external forces, thereby improving the structural strength of the entire wall. The design of the clamping members 33 makes the installation process more convenient, allowing the fixed wall 10 and the partition wall 20 to be quickly connected together, improving construction efficiency. The tight connection of the clamping members 33 makes the overall structure of the wall more stable, extending the service life of the wall. The symmetrical layout of the clamping members 33 makes the appearance of the wall more beautiful and at the same time enhances the wall's load-bearing capacity.
[0058] Furthermore, during installation, one end of the clamping member 33 is first connected to the fixed wall 10 to ensure stable fixation. Next, the other end of the clamping member 33 is connected to the partition wall 20 along the vertical direction 50. The clamping action of the clamping member 33 secures the fixed wall 10 and the partition wall 20 together. Because the clamping members 33 are symmetrically arranged along the longitudinal direction 60 and the vertical direction 50, they ensure uniform and stable connection of the walls in all directions.
[0059] Furthermore, the stoppers 34, through their abutment with the connectors, restrict the vertical and longitudinal movement of the partition wall 20 in the 60° direction, ensuring that the wall maintains a stable position during use. The snug connection between the stoppers 34 and the fixed wall 10 further enhances the stability of the wall connection, forming a solid, integrated whole between the fixed wall 10, the partition wall 20, and the connector assembly 30. The stoppers 34 effectively prevent deformation or damage to the wall when subjected to external forces, thereby improving the structural safety of the wall.
[0060] During installation, the stopper 34 is first fitted and connected to the fixed wall 10 to ensure that the stopper 34 is stably fixed. Then, after the connecting assembly 30 is installed in place, the stopper 34 abuts against the connecting member, and the limiting effect of the stopper 34 prevents the partition wall 20 from moving in the vertical and longitudinal directions 60 degrees.
[0061] Furthermore, the above structures are suitable for applications requiring high-strength and high-stability walls. The role of the stopper 34 is particularly important in areas prone to earthquakes or with strong winds, effectively improving the wall's earthquake and wind resistance, ensuring the safety and stability of the building.
[0062] In summary, the clamping member 33 and the limiting member 34, as important components of the connection assembly 30, play a key role in the design of the multifunctional wall 100. Through their unique structures and functions, they collectively enhance the connection stability, structural strength, and safety of the wall, providing a strong guarantee for the stability and durability of the building.
[0063] In a specific embodiment, the connection assembly 30 further includes a connection block 35. The connection block 35 is affixed to an end of the partition wall 20 away from the clamping member 33 and fixedly connected to the connection member. The connection block 35 is located between the partition wall 20 and the connection member, and the plurality of connection members are symmetrical along the longitudinal direction 60°, with the midpoints of the distance between two adjacent fixed walls 10 being the same, and symmetrical along the longitudinal direction 60°, with the midpoints of the distance between two adjacent fixed walls 10 being the same, and symmetrical along the vertical direction 50°, with the midpoints of the distance between two adjacent fixed walls 10 being the same.
[0064] Specifically, the connecting block 35, as part of the connecting assembly 30, primarily serves to enhance the stability of the connection between the partition wall 20 and the connecting member. By fitting the connecting block 35 to the end of the partition wall 20 away from the clamping member 33 and securely connecting it to the connecting member, the connecting block 35 effectively distributes and withstands the stress and load between the partition wall 20 and the connecting member, thereby ensuring the stability and safety of the entire wall.
[0065] Furthermore, the provision of connecting blocks 35 strengthens the connection between the partition wall 20 and the connector, allowing the wall to maintain a stable structural form when subjected to external forces, reducing the possibility of deformation or damage. Through the connecting action of connecting blocks 35, the wall can withstand greater loads, improving its overall load-bearing capacity and making it suitable for various high-load applications. The design of connecting blocks 35 facilitates the installation process, reduces installation complexity and difficulty, and improves construction efficiency.
[0066] Furthermore, during installation, first ensure that the partition wall 20 and the fixed wall 10 are securely connected via the clamping member 33 and other components. Next, the connecting block 35 is fitted onto the end of the partition wall 20 away from the clamping member 33, ensuring a tight fit with no gaps between the connecting block 35 and the partition wall 20. The connecting block 35 is then fixedly connected to the connecting member, typically by welding, bolting, or other methods. Finally, the symmetrical arrangement of the multiple connecting blocks 35 along the longitudinal direction 60 and the vertical direction 50 ensures the stability and uniformity of the entire connection assembly 30.
[0067] Furthermore, the design of the connecting blocks 35 is particularly suitable for wall applications requiring high strength and stability. For example, the multifunctional wall 100 with connecting blocks 35 can be used in interior partition walls 20 of commercial buildings, partition walls of large exhibition halls, and non-load-bearing walls of high-rise buildings. In these applications, the wall must withstand certain loads and external forces while also requiring structural stability, safety, and reliability. The use of connecting blocks 35 can effectively meet these requirements, improving the overall performance and service life of the wall.
[0068] In summary, the connecting block 35, as a crucial component of the connecting assembly 30 of the multifunctional wall 100, provides strong support for the wall's stability, load-bearing capacity, and ease of installation through its specific structure and connection method. In various wall applications requiring high loads and high stability, the connecting block 35 plays a vital role, providing solid support for the building's safety and stability.
[0069] In a specific embodiment, the connector includes a first bend 31321 and a second bend 31322. The first bend 31321 is securely connected to the partition wall 20, limiting the vertical movement of the partition wall 20 in the vertical direction 50°. The second bend 31322 is integrally formed with the first bend 31321. The second bends 31322 of the two symmetrical connectors form a limiting cavity 3132, which abuts against the limiting member 34, limiting the longitudinal movement of the partition wall 20 in the longitudinal direction 60°.
[0070] Specifically, the main function of the first bent portion 31321 is to be clamped and connected to the partition wall 20 to ensure that the partition wall 20 does not move or misalign in the vertical direction 50. It provides a stable support structure to fix the connection between the partition wall 20 and the fixed wall 10 more firmly.
[0071] Furthermore, the clamping connection of the first bent portion 31321 provides greater stability in the vertical direction 50, effectively resisting vibration and displacement caused by external factors (such as wind and earthquakes). Compared to traditional connection methods, the clamping connection method is simpler, reduces the complexity and time consumption during the installation process, and improves construction efficiency.
[0072] Furthermore, the second bend 31322 is integrally formed with the first bend 31321 to form a limiting cavity 3132, which abuts against the limiting member 34 to limit the movement of the partition wall 20 in the longitudinal 60-degree direction. This ensures the stability of the partition wall 20 in the horizontal direction and prevents it from horizontal displacement or shaking. Through the cooperation of the second bend 31322 and the limiting member 34, the movement of the partition wall 20 in the longitudinal 60-degree direction is effectively limited, improving the horizontal stability of the entire wall and making it more sturdy and durable. A stable structure means a higher load-bearing capacity. This design enables the wall to withstand greater external forces and is suitable for various high-load application scenarios.
[0073] Furthermore, during the wall installation process, the first bent portion 31321 is first clamped and connected to the partition wall 20 to ensure that the partition wall 20 is fixed in the vertical direction 50. Next, the second bent portion 31322 is engaged with the stopper 34 to form a stopper cavity 3132, thereby limiting the movement of the partition wall 20 in the longitudinal direction 60. The entire actuation process is simple and quick, and a stable wall connection is achieved with a single installation.
[0074] In summary, this connector design with a first bend 31321 and a second bend 31322 is particularly suitable for wall applications requiring high stability and load-bearing capacity. For example, this connector design can be used in interior partition walls 20 of commercial buildings, partition walls of large exhibition halls, and non-load-bearing walls of high-rise buildings. In these applications, the wall must withstand certain loads and external forces while also requiring structural stability, safety, and reliability. This connector design effectively meets these requirements, improving the overall performance and service life of the wall.
[0075] In a specific embodiment, the limiting member 34 includes a first abutting portion 341, a first clamping portion 342, and a second clamping portion 343. The first abutting portion 341 is abutted and connected to the partition wall 20 in the longitudinal direction 60°. The first clamping portion 342 abuts the first connecting member 31 along the longitudinal direction 60° and is located within the limiting cavity 3132. The second clamping portion 343 abuts the second connecting member 32 along the longitudinal direction 60° and is located within the limiting cavity 3132.
[0076] Specifically, the first affixed portion 341 is affixed to the partition wall 20 longitudinally 60 degrees, ensuring a stable connection between the retaining member 34 and the partition wall 20, thereby maintaining the structural stability of the entire connection assembly 30. The affixed connection increases the contact area between the retaining member 34 and the partition wall 20, making the connection more secure and reducing loosening or displacement due to external forces.
[0077] Furthermore, the first clamping portion 342 abuts the first connector 31 along the longitudinal direction 60 and is located within the limiting cavity 3132, thereby securing and limiting the position of the first connector 31. The clamping design ensures that the first connector 31 remains in the preset position when subjected to force, thereby improving the structural stability and load-bearing capacity of the entire wall.
[0078] Furthermore, the second clamping portion 343 abuts the second connecting member 32 along the longitudinal direction 60 and is located within the limiting cavity 3132, cooperating with the first clamping portion 342 to secure and limit the second connecting member 32. The double clamping design enhances the connection strength between the connecting member and the limiting member 34, making the entire connecting assembly 30 more stable when subjected to external forces and reducing the possibility of deformation.
[0079] Furthermore, during the wall installation process, the fixed wall 10 and the partition wall 20 are first connected using the clamping member 33. Subsequently, the first abutting portion 341 of the retaining member 34 is abutted against the partition wall 20 to ensure the stable position of the retaining member 34. Next, the first connecting member 31 and the second connecting member 32 are installed in their corresponding positions and secured to the connecting members using the first clamping portion 342 and the second clamping portion 343 of the retaining member 34. In this way, the connecting members are securely restrained within the retaining cavity 3132, achieving a stable connection for the entire wall.
[0080] In summary, due to its high stability and load-bearing capacity, this multifunctional wall 100 is particularly suitable for applications requiring high-strength connections and secure support. For example, this wall structure can be used in interior partition walls 20 of commercial buildings to ensure a stable connection between the partition walls 20 and the fixed walls 10, improving the structural safety of the entire space. Furthermore, this multifunctional wall 100 is also required in large exhibition halls, warehouses, factories, and other places to meet the high requirements for wall stability and load-bearing capacity.
[0081] In a specific implementation example, the angle between the first clamping portion 342 and the second clamping portion 343 is set to y, which satisfies the relationship:
[0082] 120°<y<150°.
[0083] Specifically, the main function is to ensure a stable connection between the retaining member 34 and the connecting member, and to effectively limit the partition wall 20 in the longitudinal direction 60. By setting the angle y between the first clamping portion 342 and the second clamping portion 343 to between 120° and 150°, the contact area between the clamping portion and the connecting member can be ensured to be moderate, and neither a weak connection due to a too small angle nor a reduced limiting effect due to an excessively large angle can be achieved.
[0084] Furthermore, the appropriate angle y design allows for a tighter connection between the clamping portion and the connector, effectively reducing loosening or displacement due to external forces, thereby enhancing the structural stability of the entire wall. A stable connection structure means a higher load-bearing capacity, making this multifunctional wall 100 suitable for various high-load applications such as commercial buildings and exhibition halls. The appropriate angle design facilitates assembly of the clamping portion and connector, improving construction efficiency and reducing installation costs.
[0085] Furthermore, during the wall installation process, the first fitting portion 341 of the retaining member 34 is first fitted longitudinally 60 degrees to the partition wall 20. Then, the first connecting member 31 and the second connecting member 32 are respectively installed in corresponding positions, so that the first clamping portion 342 and the second clamping portion 343 respectively abut against the connecting members. Since the angle y between the first clamping portion 342 and the second clamping portion 343 is set between 120° and 150°, the clamping portion can fit tightly against the connecting member, achieving a stable connection. Finally, the entire wall is assembled and fixed using other connecting components 30, such as the clamping member 33 and the connecting block 35.
[0086] In a specific embodiment, the partition wall 20 includes a partition portion 21 and a second fitting portion 22. The partition portion 21 is connected to the fixed wall 10 along the longitudinal direction 60 to achieve partitioning. The second fitting portion 22 is fixedly connected to the fixed wall 10 along the vertical direction 50.
[0087] Specifically, partition portion 21 is the main portion of partition wall 20, and its primary function is to connect to fixed wall 10 along longitudinal direction 60 to provide a partition. By providing partition portion 21, an originally open space can be divided into multiple independent or relatively independent areas to meet different usage requirements.
[0088] Furthermore, the design of the partitions 21 allows for flexible and adaptable space division. The location and number of partition walls 20 can be adjusted according to actual needs, optimizing space utilization. The partition walls 20 enhance privacy between different areas and improve the privacy of the space. As part of the space, the design and material selection of the partition walls 20 can be coordinated with the overall decoration style, thus beautifying the space.
[0089] Furthermore, during the wall installation process, the installation of the partition portion 21 is a key step. First, the position and height of the partition wall 20 are determined. Then, the partition portion 21 is connected to the fixed wall 10 along the longitudinal direction 60°. This connection process may require the use of specific connectors or fixings to ensure the stability and firmness of the partition wall 20. Once installed, the partition wall 20 can function as a partition.
[0090] Furthermore, the second fitting portion 22 connects the partition wall 20 to the fixed wall 10. Its primary function is to securely connect the partition wall 20 to the fixed wall 10 along the vertical direction 50, ensuring the stability and firmness of the partition wall 20. The tight fit and secure connection between the second fitting portion 22 and the fixed wall 10 effectively enhances the overall structural stability of the partition wall 20, preventing it from shaking or shifting during use. The design of the second fitting portion 22 simplifies and improves the installation process of the partition wall 20, reducing installation difficulty and cost. This secure connection ensures the safety of the partition wall 20 during use, avoiding potential safety hazards caused by a loose connection.
[0091] To summarize, when installing the partition wall 20, first ensure that the position and verticality of the fixed wall 10 are accurate. Then, align the second fitting portion 22 with the fixed wall 10 and secure them together using appropriate fasteners or connection methods. Once secured, the position and angle of the partition wall 20 can be further adjusted to ensure it meets your requirements.
[0092] In a specific implementation example, the partition wall 20 includes a limiting portion 23, which is fitted with the first fitting portion 341 along the longitudinal direction 60, and the end away from the fitting portion is abutted against the first bend, and is located between the first fitting portion 341 and the first bend portion 31321 to limit the partition wall 20 in the vertical direction 50.
[0093] Specifically, the limiting portion 23 is a key component of the partition wall 20. Its primary function is to mate with the first fitting portion 341 along the longitudinal direction 60, thereby ensuring the stability and positioning accuracy of the partition wall 20 in the vertical direction 50. The close fit between the limiting portion 23 and the first fitting portion 341 provides additional support to the partition wall 20 in the vertical direction 50, thereby enhancing the stability of its overall structure. The provision of the limiting portion 23 makes it easier for the partition wall 20 to achieve the desired position and angle during installation, improving installation precision and efficiency. Because the limiting portion 23 effectively limits the movement of the partition wall 20 in the vertical direction 50, it reduces the risk of damage due to shaking or displacement, thereby extending the service life of the partition wall 20.
[0094] Furthermore, the limiting portion 23 and the first abutment portion 341 mate along the longitudinal direction 60, forming a secure connection point for the partition wall 20 in the vertical direction 50, ensuring a tight connection between the partition wall 20 and the fixed wall 10. This abutment along the longitudinal direction 60 creates a strong connection between the limiting portion 23 and the first abutment portion 341, further enhancing the connection strength between the partition wall 20 and the fixed wall 10. This abutment design prevents the partition wall 20 from dislocating or moving when subjected to external forces, ensuring the stability and reliability of the wall structure.
[0095] Furthermore, the end of the limiting portion 23 facing away from the first abutting portion 341 abuts against the first bent portion 31321, forming an effective limiting structure for restricting the movement of the partition wall 20 in the vertical direction 50. Through the design of the abutting structure, the limiting portion 23 can effectively limit the range of movement of the partition wall 20 in the vertical direction 50, preventing it from sagging or deformation due to gravity or other factors. Limiting vertical movement ensures the stability and safety of the partition wall 20 during use and reduces safety risks caused by wall movement.
[0096] Furthermore, during the installation of the multifunctional wall 100, the fixed wall 10 is installed first, followed by the partition wall 20. When installing the partition wall 20, ensure that the limiting portion 23 is tightly fitted with the first contact portion 341 along the longitudinal direction 60, and that the end of the limiting portion 23 facing away from the contact portion abuts against the first bent portion 31321. In this way, the partition wall 20 is securely connected between the fixed walls 10, forming an effective limiting structure.
[0097] In a specific implementation example, the angle between the two second bending portions 31322 forming the limiting cavity 3132 is set to x, which satisfies the relationship:
[0098] 30°<x<45°.
[0099] Specifically, the limiting cavity 3132 is formed by the two second bent portions 31322. Its primary function is to provide a space for accommodating and limiting the movement of the limiting member 34 or other related components. The formation of the limiting cavity 3132 strengthens the interaction between the second bent portions 31322 and the limiting member 34, thereby enhancing the structural stability of the entire connection assembly 30. The presence of the limiting cavity 3132 precisely controls the range of movement of the partition wall 20 in the longitudinal direction 60, preventing excessive movement or misalignment.
[0100] Furthermore, the angle of the limiting cavity 3132 is set to x (satisfying the relationship: 30°<x<45°) to ensure that the shape and size of the limiting cavity 3132 can adapt to the shape and size of the limiting member 34 or other related components, thereby achieving an effective limiting effect. By setting a reasonable angle range (30°<x<45°), the limiting cavity 3132 can adapt to limiting members 34 of different sizes and shapes, thereby improving the versatility and adaptability of the entire connection assembly 30. The appropriate angle range can ensure a closer interaction between the limiting cavity 3132 and the limiting member 34, thereby optimizing the limiting effect and reducing the risk of structural loosening or damage due to movement.
[0101] Furthermore, during installation, when the partition wall 20 is installed between the fixed walls 10, the stopper 34 interacts with the second bent portion 31322 of the connector. Because the angle of the stopper cavity 3132 is set to x (satisfying the relationship: 30° < x < 45°), the stopper 34 can be precisely positioned within the stopper cavity 3132 and abut against the first bent portion 31321. This effectively restricts the movement of the partition wall 20 in the vertical direction 50.
[0102] In a specific implementation example, the connecting member is configured as a light steel structure.
[0103] Specifically, the connector is configured as a light steel structure, meaning that the connector is made of lightweight, high-strength steel. This material selection allows the connector to maintain sufficient strength while reducing the weight of the entire wall, making it easier to transport and install.
[0104] Furthermore, lightweight steel construction makes connectors even lighter, reducing the overall weight of the wall while maintaining structural stability and strength, improving construction efficiency. Lightweight steel materials are recyclable, meeting environmental requirements. Furthermore, their light weight reduces energy consumption during transportation. Lightweight steel connectors offer excellent adaptability and plasticity, allowing them to accommodate wall components of varying shapes and sizes, enhancing the versatility and flexibility of the wall.
[0105] In this way, the multifunctional wall 100 provided above is limited with the fixed wall 10 and the partition wall 20 by the first connecting member 31 and the second connecting member 32 in the connecting assembly 30, the clamping member 33 ensures a tight connection between the fixed wall 10 and the partition wall 20, and the limiting member 34 limits the movement of the partition wall 20 in the vertical and longitudinal 60 directions by abutting the connecting member, thereby improving the connection stability between the fixed wall 10 and the partition wall 20.
[0106] The above is only an implementation method of the present application. It should be pointed out that for ordinary technicians in this field, improvements can be made without departing from the creative concept of the present application, but these all fall within the scope of protection of the present application.
Claims
1. A multifunctional wall, characterized in that: include: A fixed wall is installed on the ground in a vertical direction, and a plurality of the fixed walls are symmetrically arranged in the vertical direction and the longitudinal direction; A partition wall is installed on the ground in a vertical direction and is connected to the fixed wall at both ends in the longitudinal direction; A connecting assembly is connected to the fixed wall in a vertical and longitudinal direction and is connected to the partition wall, and the connecting assembly includes: A first connecting member, whose two ends are respectively connected to two adjacent fixed walls that are longitudinally symmetrical and in the same vertical direction, and is vertically connected to the partition wall; The second connecting member has two ends respectively connected to the two adjacent fixed walls that are symmetrical along the longitudinal direction and in another same vertical direction; is connected to the first connecting member, and is vertically connected to the partition wall.
2. A multifunctional wall according to claim 1, characterized in that: The connection component includes: A clamping member, one end of which is connected to the fixed wall and the other end of which is connected to the partition wall, wherein the plurality of clamping members are symmetrical in the vertical direction at the midpoint of the distance between two adjacent fixed walls at the same longitudinal position, and are symmetrical in the longitudinal direction at the midpoint of the distance between two adjacent fixed walls at the same vertical position; The limiting member is closely connected to the fixed wall and abuts against the connecting member, and the plurality of limiting members are symmetrical in the vertical direction of the midpoint of the distance between two adjacent fixed walls with the same longitudinal position.
3. A multifunctional wall according to claim 2, characterized in that: The connection component further includes: A connecting block is fitted and connected to one end of the partition wall away from the clamping piece, and is fixedly connected to the connecting piece. The connecting block is located between the partition wall and the connecting piece, and multiple connecting pieces are symmetrical in the vertical direction of the midpoint of the distance between two adjacent fixed walls with the same longitudinal position, and are longitudinally symmetrical in the vertical direction of the midpoint of the distance between two adjacent fixed walls with the same vertical position.
4. A multifunctional wall according to claim 3, characterized in that: The connecting piece includes: The first bending portion is tightly connected to the partition wall to limit the vertical movement of the partition wall; The second bending portion is integrally formed with the first bending portion, and the second bending portions of the two symmetrical connecting members form a limiting cavity and abut against the limiting member to limit the movement of the partition wall in the longitudinal direction.
5. The multifunctional wall according to claim 4, characterized in that: The limiting member includes: A first fitting portion is longitudinally fitted and connected to the partition wall; a first clamping portion abutting against the first connecting member in the longitudinal direction and located in the limiting cavity; The second clamping portion abuts against the second connecting member along the longitudinal direction and is located in the limiting cavity.
6. The multifunctional wall according to claim 5, characterized in that: The included angle between the first clamping portion and the second clamping portion is set to y, which satisfies the relationship: 120°<y<150°。 7. The multifunctional wall according to claim 1, characterized in that: The partition wall comprises: A partition portion, connected to the fixed wall in the longitudinal direction to achieve partition; The second fitting portion is fixedly connected to the fixed wall along a vertical direction.
8. The multifunctional wall according to claim 5, characterized in that: The partition wall includes a limiting portion, which is longitudinally fitted with the first fitting portion, and one end away from the fitting portion abuts against the first bend and is located between the first fitting portion and the first bend to limit the partition wall in the vertical direction.
9. The multifunctional wall according to claim 8, characterized in that: The angle of the limiting cavity formed by the two second bending parts is set to x, which satisfies the relationship: 30°<x<45°。 10. The multifunctional wall according to claim 4, characterized in that , the connecting parts are set as light steel structures.