Locking system of wallboard

The automatic locking system controlled by trusses and processors solves the problem of time-consuming and labor-intensive manual operation, achieving efficient and stable locking of fiberboard sheets, and improving production quality and user experience.

CN223889801UActive Publication Date: 2026-02-10中科先进(深圳)集成技术有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520223920.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2026-02-10
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

During the laying and fixing of fiberboard, manual operation is time-consuming and labor-intensive, and it is difficult to ensure the consistency of drilling accuracy and tightening force of each screw, resulting in uneven and loose installation of the boards, which affects the use effect and safety.

Method used

The automatic locking system consists of a truss, locking components, and a processor. The processor controls the position and attitude of the locking components to achieve automatic locking of the wall panels. It is also equipped with a dust removal component to pick up dust, and combined with guide rails and lifting components to improve movement efficiency.

Benefits of technology

It achieves automated locking of wall panels, reduces manual intervention, improves locking efficiency and quality, enhances user experience and production efficiency, and ensures the safety and stability of the locking system.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223889801U_ABST
    Figure CN223889801U_ABST
Patent Text Reader

Abstract

The utility model discloses a locking system of a wallboard. The locking system of the wallboard comprises a truss, at least one locking assembly and a processor. The truss is provided with a containing space, a wallboard to be fixed is arranged in the containing space, the locking assembly is arranged on the truss, the processor is connected with the locking assembly and used for adjusting the locking position and / or the locking posture of the locking assembly, and the locking assembly is used for locking the wallboard located in the containing space. According to the locking system, the wallboard to be fixed is automatically locked, the manual participation rate in the production process is reduced, the locking efficiency of the wallboard is improved, the production quality of the wallboard is improved, and the use experience of a user on the locking system is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of industrial production technology, and in particular to a locking system for wall panels. Background Technology

[0002] During the installation and fixing of fiberboard panels, tightening is a crucial step to ensure the stability and safe use of the panel structure. Traditionally, this step relies entirely on manual operation. However, due to the large number of screws, manual operation is not only time-consuming and labor-intensive, but also prone to omissions due to fatigue or oversight, affecting the overall assembly quality and stability. Furthermore, manual operation makes it difficult to guarantee the drilling accuracy and consistent tightening force of each screw, which may lead to unevenness or loosening of the panels after installation, thus affecting subsequent use and safety. Utility Model Content

[0003] To address the aforementioned technical problems, this application provides a wall panel locking system, comprising:

[0004] A truss has a accommodating space, within which the wall panel to be fixed is set;

[0005] At least one locking component is disposed on the truss;

[0006] A processor, connected to the locking assembly, is used to adjust the locking position and / or locking posture of the locking assembly, which is used to lock the wall panel located within the accommodating space.

[0007] The locking system further includes a dust removal component, which is spaced apart from the locking component. The processor is connected to the dust removal component and is used to adjust the dust removal position of the dust removal component. The dust removal component is used to extract the dust generated during the process of the locking component locking the wall panel.

[0008] The locking system further includes a first guide rail, at least one second guide rail, and a lifting assembly. The first guide rail is disposed on the truss, the second guide rail is disposed on the first guide rail, and the second guide rail is slidably disposed relative to the first guide rail. The lifting assembly is disposed on the second guide rail, and the lifting assembly is slidably disposed relative to the second guide rail.

[0009] The locking component and the dust removal component are mounted on the lifting component and are slidably disposed relative to the lifting component;

[0010] The processor controls the locking assembly to move closer to the wall panel along a first direction to lock the position of the wall panel that needs to be locked. The first direction is perpendicular to the extension direction of the first guide rail and the extension direction of the second guide rail.

[0011] The locking system includes a plurality of second guide rails, which are disposed on the first guide rail. The processor is used to control each second guide rail to move in its corresponding guide rail segment.

[0012] The locking system includes a plurality of locking components, which are respectively disposed on corresponding second guide rails. The processor is used to control the movement of each locking component on the corresponding guide rail segment.

[0013] The locking system includes two second guide rails and four locking components. The two second guide rails are disposed at opposite ends of the first guide rail, and the four locking components are respectively disposed at opposite ends of the corresponding second guide rails.

[0014] The processor controls the two second guide rails to move toward each other and controls the two locking components located on the same second guide rail to move toward each other, so as to lock the wall panel at the position where it needs to be locked.

[0015] The locking assembly includes a drilling module and a screw-locking module, which are spaced apart.

[0016] The processor is connected to the drilling module and is used to adjust the drilling position and / or drilling posture of the drilling module. The drilling module is used to drill holes in the positions of the wall panel that need to be locked.

[0017] The processor is also connected to the screw-locking module and is used to adjust the screw-locking position and / or screw-locking posture of the screw-locking module. The screw-locking module is used to insert screws into the holes drilled by the drilling module and tighten them.

[0018] The locking system further includes a screw feeder, which is located at the end of the second guide rail and connected to the screw-locking module located on the same second guide rail. The screw feeder is used to supply the screw-locking module with the required screws during the process of the screw-locking module inserting screws into the hole drilled by the drilling module for locking.

[0019] The locking system further includes a fixing component located within the accommodating space and positioned above the wall panel. The processor is connected to the fixing component. Before the locking component locks the wall panel, the fixing component presses down on the wall panel to fix it in place.

[0020] The locking system further includes an input component connected to the processor. The input component is used to input product information of the wall panel and obtain position information of the position where the wall panel needs to be locked. The processor is used to adjust the locking position and / or locking posture of the locking component based on the position information.

[0021] The beneficial effects of this application are as follows: Unlike existing technologies, the wall panel locking system provided in this application includes a truss, at least one locking component, and a processor. The truss has a receiving space, within which the wall panel to be fixed is placed. The locking component is mounted on the truss, and the processor is connected to the locking component to adjust its locking position and / or locking posture. The locking component is used to lock the wall panel located within the receiving space. This locking system achieves automatic locking of the wall panel to be fixed, reducing manual intervention in the production process, improving the locking efficiency of the wall panel, enhancing the production quality of the wall panel, and improving the user experience of the locking system. Attached Figure Description

[0022] 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.

[0023] in:

[0024] Figure 1 This is a schematic diagram of the structure of an embodiment of the locking system of this application;

[0025] Figure 2 yes Figure 1 A schematic diagram of the structure of region A in the middle.

[0026] Reference numerals: Locking system 1; Truss 11; Locking assembly 12; Drilling module 121; Screw locking module 122; Dust removal assembly 13; First guide rail 14; Second guide rail 15; Lifting assembly 16; Screw feeder 17. Detailed Implementation

[0027] The embodiments of this application will now be described in detail with reference to the accompanying drawings.

[0028] In the following description, specific details such as particular system architectures, interfaces, and technologies are presented for illustrative purposes rather than for limiting purposes, in order to provide a thorough understanding of this application.

[0029] In this application, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0030] In this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A alone, A and B simultaneously, and B alone. Additionally, the character " / " generally indicates that the preceding and following related objects are in an "or" relationship. Furthermore, "many" in this application means two or more. Moreover, the term "at least one" in this application means any combination of at least two of any one or more of a plurality of objects. For example, including at least one of A, B, and C can mean including any one or more elements selected from the set consisting of A, B, and C. Furthermore, the terms "first," "second," and "third" in this application are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features.

[0031] Please see Figure 1 , Figure 1 This is a structural schematic diagram of an embodiment of the locking system of this application. The wall panel locking system proposed in this application embodiment is applied in the production of prefabricated steel-concrete structure wall panels, realizing the fixing of fiberboard sheets to the column frame to form a steel-concrete structure wall panel; enabling the wall panel formed after locking to be shipped for use in modular buildings and other scenarios. The locking system 1 of this embodiment combines at least one locking component 12 and components such as a processor to the truss 11, so that the locking system 1 can be used as a workstation integrating automatic drilling and locking functions in the field of industrial production. The processor controls the locking component 12 to lock the wall panel to be fixed based on the processing position information of the wall panel to be fixed, so that the locking system 1 provided in this application embodiment can realize intelligent control in the field of industrial production through the processor, reducing the difficulty and labor intensity of manual operation, and improving the production efficiency of the locking system 1.

[0032] The wall panel locking system 1 provided in this application embodiment includes a truss 11, at least one locking component 12, and a processor (not shown).

[0033] The truss 11 has a receiving space, in which the wall panel to be fixed is disposed, and at least one locking component 12 is disposed on the truss 11. The processor is connected to the locking component 12 and is used to adjust the locking position and / or locking attitude of the locking component 12. The locking component 12 is used to lock the wall panel located in the receiving space.

[0034] The space may also contain a column frame, upon which the wall panel to be fixed is laid. The wall panel to be fixed can be the fiberboard material described above. The processor then controls the locking assembly 12 to lock the wall panel laid on the column frame to the column frame, thus forming a reinforced concrete structure wall panel.

[0035] The locking position may include parameters such as the distance and orientation of the locking component 12 on the truss 11 and the distance to the wall panel to be fixed. The locking posture may include parameters such as the angle and pitch posture of the locking component 12 during the locking process. This application does not limit these parameters.

[0036] Specifically, the processor can obtain the position information of the connection between the wall panel to be fixed and the column frame, and control the locking component 12 to adjust the locking position based on the position information. At the same time, it can also adjust the locking posture based on the state of the connection. The locking component 12 can lock multiple connection points between the wall panel and the column frame, so as to lock the wall panel in the accommodating space.

[0037] In one embodiment, the processor can obtain information about the wall panel to be fixed in advance, and then determine the position information of the connection between the wall panel and the column frame in advance. That is, the processor can obtain the position information of the locking component 12 to be locked in advance. After the wall panel to be fixed is placed in the accommodating space, the processor can adjust the locking position and / or locking posture of the locking component 12 based on the position information, control the locking component 12 to lock the wall panel to be fixed, realize the automatic locking of the wall panel to be fixed, and improve the production efficiency of the locking system 1.

[0038] Optionally, the locking system 1 may include an input component (not shown), which is connected to the processor and is used to input product information of the wall panel and obtain position information of the position where the wall panel needs to be locked. The processor can adjust the locking position and / or locking posture of the locking component 12 based on the position information.

[0039] The input component can be a smart device such as a computer. Users can upload product information of the wall panel to the computer, such as the design drawing of the wall panel (including the positions to be locked), and the computer is used to input the design drawing of the wall panel. Then, the layout software on the computer can plan the locking path of the locking component 12 according to the position information of the positions to be locked on the wall panel. The processor can further control the locking component 12 to move based on the locking path, and lock the positions to be locked on the wall panel in sequence, thereby improving the movement efficiency and locking efficiency of the locking component 12 and improving the production efficiency of the locking system 1.

[0040] In another embodiment, the locking system 1 may further include an identification component (not shown). The image acquisition camera in the identification component can acquire images of the wall panel to be fixed within the accommodating space. The image recognition module in the identification component can then scan and recognize the images acquired by the image acquisition camera to obtain the location information of the position on the wall panel to be locked. It can be understood that the position on the wall panel to be locked is the connection point between the wall panel and the column frame, as mentioned above. After obtaining the location information of the position on the wall panel to be fixed, the identification component can send this location information to the processor. Upon receiving the location information, the processor controls the locking component 12 to lock the wall panel to be fixed, thereby improving the production efficiency of the locking system 1. By setting the identification component to acquire the location information of the wall panel to be fixed, the locking operation can adapt to wall panels of different specifications. Furthermore, it avoids situations where, due to discrepancies between the actual wall panel manufacturing and the design drawings, locking based on the design drawings fails, thus improving the practicality and intelligence of the locking system 1.

[0041] In other embodiments, the processor in this application embodiment is used to perform operations such as receiving and processing the position information of the wall panel and the data of the locking component 12. The processor can be a CPU (Central Processing Unit) or an integrated circuit chip, and has signaling processing capabilities. The processor can also be a general-purpose processor, a digital signaling processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc., and this application does not limit it in this way.

[0042] Alternatively, please continue reading Figure 1 The locking system 1 also includes a dust removal component 13, which is spaced apart from the locking component 12. The processor is connected to the dust removal component 13 and is used to adjust the dust removal position of the dust removal component 13. The dust removal component 13 is used to extract the dust generated during the process of locking the wall panel by the locking component 12.

[0043] Specifically, during the locking process of the wall panel, the locking component 12 needs to drill holes in the area to be locked on the wall panel to facilitate subsequent locking operations. During this drilling process, a large amount of dust is generated. If the dust is not treated, it may float in the working environment, affecting the health of operators, or accumulate on the operating components, affecting their efficiency. Therefore, in this embodiment, the dust removal component 13 is spaced apart from the locking component 12. During the locking process, the dust removal component 13 immediately absorbs the generated dust, preventing it from floating in the working environment and causing damage.

[0044] The dust removal component 13 can follow the locking position of the locking component 12. That is, the processor can control the dust removal component 13 and the locking component 12 to move synchronously. As a result, the dust removal component 13 can approach the locking component 12 and suck up the dust at the locking position, thereby improving the dust removal efficiency of the dust removal component 13 and improving the production efficiency of the locking system 1.

[0045] Optionally, please refer to Figure 2 , Figure 2 yes Figure 1 A schematic diagram of the structure of the central region A. The locking assembly 12 may include a drilling module 121 and a screw-locking module 122.

[0046] Specifically, the drilling module 121 and the screw-locking module 122 are spaced apart. The processor is connected to the drilling module 121 and is used to adjust the drilling position and / or drilling posture of the drilling module 121. The drilling module 121 is used to drill holes in the locations of the wall panel that need to be locked. The drilling position can be the specific relative position of the drilling module 121 and the wall panel, and the drilling posture can be the drilling angle, drilling depth, etc. of the drilling module 121.

[0047] The processor is also connected to the screw-locking module 122 and is used to adjust the screw-locking position and / or screw-locking posture of the screw-locking module 122. The screw-locking module 122 is used to insert screws into the holes drilled by the drilling module 121 and tighten them. The screw-locking position can be the specific relative position of the screw-locking module 122 and the wall panel, which can be determined based on the drilling position; the screw-locking posture can be the angle at which the screw is inserted, etc., which can also be determined based on the drilling posture.

[0048] In summary, after the wall panel to be fixed is placed in the accommodating space, the processor can obtain the position information of the location on the wall panel that needs to be locked. Based on this position information, it controls at least one locking component 12 and a dust removal component 13 to move on the truss 11 to adjust the locking position and / or locking posture of the locking component 12, and the dust removal position of the dust removal component 13. After the locking component 12 and the dust removal component 13 move to the corresponding positions, the drilling module 121 is first controlled to drill holes in the locations that need to be locked, while the dust removal component 13 is controlled to suck up the generated dust. After the drilling module 121 has completed drilling, the processor further controls the screw-locking module 122 to insert screws into the holes drilled by the drilling module 121 and lock them in place. It is understood that during the operation of the screw-locking module 122, the dust removal component 13 can continue to operate, sucking up the debris generated by the screw-locking module 122 during the locking process, thereby improving the safety and practicality of the locking system 1.

[0049] After the locking assembly 12 locks a position on the wall panel that needs to be locked, the processor further controls the locking assembly 12 and the dust removal assembly 13 to move to the next position that needs to be locked and perform the locking operation. After all the positions on the wall panel that need to be locked are locked, the processor can control the locking assembly 12 and the dust removal assembly 13 to return to the initial position and wait to perform the locking operation for the next wall panel.

[0050] In one embodiment, the locking system 1 may further include a conveying component (not shown) that passes through the receiving space for conveying the wall panel to be fixed into the receiving space for locking.

[0051] Optionally, please refer to the following: Figure 1 and Figure 2 The locking system 1 also includes a first guide rail 14, at least one second guide rail 15, and a lifting assembly 16.

[0052] A first guide rail 14 is mounted on the truss 11, and a second guide rail 15 is mounted on the first guide rail 14. The second guide rail 15 and the first guide rail 14 are slidably arranged relative to each other. Specifically, two parallel first guide rails 14 can be mounted on the truss 11, and the two ends of the second guide rail 15 are respectively mounted on the first guide rails 14 to maintain the stability of the sliding of the second guide rail 15 relative to the first guide rails 14. A lifting assembly 16 is mounted on the second guide rail 15, and the lifting assembly 16 is slidably arranged relative to the second guide rail 15. A locking assembly 12 and a dust removal assembly 13 are mounted on the lifting assembly 16, and are slidably arranged relative to the lifting assembly 16.

[0053] The processor controls the locking assembly 12 to move closer to the wall panel in a first direction to lock the position of the wall panel that needs to be locked. The first direction is perpendicular to the extension direction of the first guide rail 14 and the second guide rail 15.

[0054] Specifically, such as Figure 1 The extending directions of the first guide rail 14 and the second guide rail 15 can be perpendicular to each other. Therefore, movement of the second guide rail 15 on the first guide rail 14 can drive the lifting assembly 16, the locking assembly 12, and the dust removal assembly 13 to move along the extending direction of the first guide rail 14. Conversely, movement of the lifting assembly 16 on the second guide rail 15 can drive the locking assembly 12 and the dust removal assembly 13 to move along the extending direction of the second guide rail 15, enabling horizontal movement of the locking assembly 12 and the dust removal assembly 13. By mounting the locking assembly 12 and the dust removal assembly 13 on the lifting assembly 16, synchronous movement of the locking assembly 12 and the dust removal assembly 13 can be achieved.

[0055] Furthermore, the locking assembly 12 and the dust removal assembly 13 slide on the lifting assembly 16 along a first direction. The first direction is perpendicular to the extension direction of the first guide rail 14 and the second guide rail 15, that is, the first direction is the direction of gravity. The processor can control the movement of the second guide rail 15 on the first guide rail 14, the movement of the lifting assembly 16 on the second guide rail 15, and the movement of the locking assembly 12 and the dust removal assembly 13 on the lifting assembly 16 to realize the three-dimensional movement of the locking assembly 12 and the dust removal assembly 13, thereby improving the movement efficiency of the locking assembly 12 and the dust removal assembly 13 and improving the production efficiency of the locking system 1.

[0056] Optionally, the locking system 1 may include multiple second guide rails 15 and multiple locking components 12. The multiple second guide rails 15 are disposed on the first guide rail 14, and each second guide rail 15 may be equipped with a locking component 12. Each second guide rail 15 has a corresponding guide rail segment on the first guide rail 14. The processor can control each second guide rail 15 to move on its corresponding guide rail segment, thereby driving the locking component 12 to perform a locking operation on the corresponding wall panel. Furthermore, if multiple locking components 12 are disposed on one second guide rail 15, each locking component 12 may also have a corresponding guide rail segment on the second guide rail 15. The controller can further control the movement of each locking component 12 on its corresponding guide rail segment.

[0057] Specifically, by setting multiple second guide rails 15 and locking components 12 on each second guide rail 15, multiple locking components 12 can simultaneously lock the wall panel, thereby improving the locking efficiency of the wall panel and increasing the production efficiency of the locking system 1.

[0058] In one embodiment, such as Figure 1 As shown, the locking system 1 may include two second guide rails 15 and four locking components 12. The two second guide rails 15 are disposed at opposite ends of the first guide rail 14, and the four locking components 12 are respectively disposed at opposite ends of the corresponding second guide rails 15.

[0059] The processor controls the two second guide rails 15 to move toward each other and controls the two locking components 12 located on the same second guide rail 15 to move toward each other, so as to lock the wall panel at the position where it needs to be locked.

[0060] Specifically, by controlling the two second guide rails 15 to move towards each other through the processor, and controlling the two locking components 12 located on the same second guide rail 15 to move towards each other, the locking components 12 can lock the beginning and end ends of the wall panel inward, thereby achieving orderly locking operation of the locking components 12, improving the efficiency of locking the wall panel, and improving the production efficiency of the locking system 1.

[0061] Optionally, the locking system 1 also includes a screw feeder 17, which is disposed at the end of the second guide rail 15 and connected to the screw locking module 122 located on the same second guide rail 15. The screw feeder is used to supply the required screws to the screw locking module 122 during the process of the screw locking module 122 inserting screws into the hole drilled by the drilling module for locking.

[0062] By placing the screw feeder at the end of the second guide rail 15, the screw feeder 17 can move along with the movement of the second guide rail 15, and supply screws to the locking assembly 12 without affecting the movement of the locking assembly 12 on the second guide rail 15, thereby improving the locking efficiency of the locking assembly 12.

[0063] Optionally, the locking system 1 also includes a fixing component (not shown). The fixing component is located within the accommodating space and is positioned above the wall panel. The processor is connected to the fixing component. Before the locking component 12 locks the wall panel, the fixing component presses down on the wall panel to fix it in place.

[0064] Specifically, the fixing component can be a spring-loaded lifting component, etc. After the wall panel is moved into the receiving space and before the locking component 12 starts operating, the processor can control the fixing component to press down, fixing the wall panel based on the downward force of the wall panel. Only then does the processor control the locking component 12 to lock the wall panel, avoiding the situation where the wall panel is displaced during the operation of the locking component 12, which would lead to a decrease in locking accuracy and improve the production efficiency of the locking system 1.

[0065] Through the above methods, the locking system 1 provided in this application can automatically lock the wall panel, thereby reducing manual operation while improving locking efficiency and quality, and thus realizing intelligent control of wall panel locking in the industrial production field.

[0066] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. A locking system for a wall panel, characterized in that, include: A truss has a accommodating space, within which the wall panel to be fixed is set; At least one locking component is disposed on the truss; A processor, connected to the locking assembly, is used to adjust the locking position and / or locking posture of the locking assembly, which is used to lock the wall panel located within the accommodating space.

2. The locking system according to claim 1, characterized in that, The locking system also includes a dust removal component, which is spaced apart from the locking component. The processor is connected to the dust removal component and is used to adjust the dust removal position of the dust removal component. The dust removal component is used to extract the dust generated during the process of the locking component locking the wall panel.

3. The locking system according to claim 2, characterized in that, The locking system further includes a first guide rail, at least one second guide rail, and a lifting assembly. The first guide rail is disposed on the truss, the second guide rail is disposed on the first guide rail, and the second guide rail is slidably disposed relative to the first guide rail. The lifting assembly is disposed on the second guide rail, and the lifting assembly is slidably disposed relative to the second guide rail. The locking component and the dust removal component are mounted on the lifting component and are slidably disposed relative to the lifting component; The processor controls the locking assembly to move closer to the wall panel along a first direction to lock the position of the wall panel that needs to be locked. The first direction is perpendicular to the extension direction of the first guide rail and the extension direction of the second guide rail.

4. The locking system according to claim 3, characterized in that, The locking system includes a plurality of second guide rails, which are disposed on the first guide rail, and the processor is used to control each second guide rail to move in its corresponding guide rail segment.

5. The locking system according to claim 4, characterized in that, The locking system includes a plurality of locking components, which are respectively disposed on corresponding second guide rails. The processor is used to control the movement of each locking component on the corresponding guide rail segment.

6. The locking system according to claim 5, characterized in that, The locking system includes two second guide rails and four locking components. The two second guide rails are disposed at opposite ends of the first guide rail, and the four locking components are respectively disposed at opposite ends of the corresponding second guide rails. The processor controls the two second guide rails to move toward each other and controls the two locking components located on the same second guide rail to move toward each other, so as to lock the wall panel at the position where it needs to be locked.

7. The locking system according to claim 3, characterized in that, The locking assembly includes a drilling module and a screw-locking module, which are spaced apart. The processor is connected to the drilling module and is used to adjust the drilling position and / or drilling posture of the drilling module. The drilling module is used to drill holes in the positions of the wall panel that need to be locked. The processor is also connected to the screw-locking module and is used to adjust the screw-locking position and / or screw-locking posture of the screw-locking module. The screw-locking module is used to insert screws into the holes drilled by the drilling module and tighten them.

8. The locking system according to claim 7, characterized in that, The locking system also includes a screw feeder, which is disposed at the end of the second guide rail and connected to the screw-locking module located on the same second guide rail. The screw feeder is used to supply the required screws to the screw-locking module during the process of the screw-locking module inserting screws into the hole drilled by the drilling module for locking.

9. The locking system according to claim 1, characterized in that, The locking system also includes a fixing component located within the accommodating space and positioned above the wall panel. The processor is connected to the fixing component. Before the locking component locks the wall panel, the fixing component presses down on the wall panel to fix it in place.

10. The locking system according to claim 1, characterized in that, The locking system also includes an input component connected to the processor. The input component is used to input the product information of the wall panel and obtain the position information of the position where the wall panel needs to be locked. The processor is used to adjust the locking position and / or locking posture of the locking assembly based on the position information.