A plate member with a snap-fastening structure
By designing snap-fit components, positioning components, and fixing components, the problems of low installation efficiency and inaccurate positioning of the panels are solved, achieving rapid installation, flatness, and stability, thus meeting the needs of efficient installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN ZHIZAO AITEJIA TECH CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-08-04
AI Technical Summary
The lack of quick-installation components when fastening existing panels results in low installation efficiency and inaccurate positioning, affecting the flatness and aesthetics of the structure and making it difficult to meet the requirements for efficient installation.
It employs a snap-fit component, a positioning component, and a fixing component. The snap-fit component achieves quick snap-fit through the cooperation of the snap-fit groove, the sliding protrusion, and the snap-fit protrusion. The positioning component uses a magnetic positioning block to provide precise positioning. The fixing component enhances the fastening effect by engaging the fixing protrusion with the snap-fit hole.
It enables rapid installation of panels, ensuring the flatness and aesthetics of the structure, while enhancing the stability and strength of the structure, enabling it to withstand external impacts and vibrations, and meeting the requirements for efficient installation.
Smart Images

Figure CN224591716U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fastening plate technology, specifically a plate with a snap-fit fastening structure. Background Technology
[0002] The existing Chinese patent document CN211396014U discloses a metal plate fastening structure, which includes a first panel, a first fastening part, and a second fastening part. There are at least two fastening structures, and the second fastening part of any one of the fastening structures fastens onto the first fastening part of an adjacent fastening structure. The first fastening part and the second fastening part fasten into each other, so that the structures of two adjacent fastening structures are tightly fitted together, making the structure more stable, improving the wind resistance of the metal plate, and facilitating installation.
[0003] However, in existing technologies, there is a lack of components for rapid installation when the panels are fastened together. As a result, operators need to spend a lot of time adjusting the position of the panels and finding suitable fastening points during the assembly process, resulting in low installation efficiency. Some fastening structures lack precise assistance during the positioning process, which can easily lead to fastening deviations and affect the flatness and aesthetics of the overall structure. It is difficult to meet the needs of some application scenarios with high requirements for installation efficiency.
[0004] Therefore, this utility model proposes a plate with a fastening and locking structure to solve the above problems. Utility Model Content
[0005] The purpose of this utility model is to provide a plate with a fastening structure to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a plate with a fastening structure, comprising a plate body, a first wave keel, and a second wave keel, wherein the first wave keel and the second wave keel are provided inside the plate body;
[0007] The main body of the plate is provided with a snap-fit component, a positioning component, and a fixing component. The snap-fit component is provided on the first wave keel and the second wave keel, and the fixing component is provided on the snap-fit component.
[0008] Preferably, the main body of the plate includes a first plate and a second plate, the first plate is disposed at one end of the first wave keel, and the second plate is disposed at the inner end of the second plate with a second wave keel.
[0009] Preferably, the snap-fit groove in the snap-fit assembly is fixedly disposed on the inner side of the first plate and the second plate, and sliding protrusions are provided at both ends of the snap-fit groove, and snap-fit protrusions are fixedly disposed on the sliding protrusions.
[0010] Preferably, the snap-fit protrusion in the snap-fit assembly is adapted to slide and snap-fit in the sliding groove, and the sliding groove is fixedly disposed on the first wave keel and the second wave keel.
[0011] Preferably, the magnetic positioning block in the positioning component is fixedly disposed at the top end of the snap-fit groove, and the magnetic positioning block is in close contact with the ends of the first wave keel and the second wave keel.
[0012] Preferably, the fixing protrusions in the fixing assembly are evenly distributed on the snap-fit protrusions, the fixing protrusions are adapted to snap into the snap-fit holes, and the snap-fit holes are evenly distributed in the sliding grooves.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: By setting up a snap-fit component, the snap-fit groove, sliding protrusion, and snap-fit protrusion can be used to achieve quick snap-fit of the panels, greatly shortening the installation time and improving the assembly efficiency; the magnetic positioning block in the positioning component can provide precise positioning assistance when the panels are snapped together, avoiding snap-fit deviation and ensuring the flatness and aesthetics of the overall structure; at the same time, the first wave keel and the second wave keel enhance the structural strength of the panel body, enabling it to effectively disperse stress when subjected to force; the fixing component further enhances the fastening effect of the panels after snapping together by snapping the fixing protrusion with the snap-fit hole, and can effectively prevent the panels from loosening even under external impact or long-term vibration, improving the structural stability and reliability, thereby meeting the needs of various application scenarios with high installation efficiency requirements. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the snap-fit assembly structure of this utility model;
[0016] Figure 3 This is a schematic diagram of the positioning component structure of this utility model;
[0017] Figure 4 This is a schematic diagram of the fixing component structure of this utility model.
[0018] In the figure: main body of plate 1, first wave keel 2, snap-fit component 3, positioning component 4, fixing component 5, second wave keel 6, first plate 101, second plate 102, snap-fit groove 301, sliding protrusion 302, snap-fit protrusion 303, sliding groove 304, magnetic positioning block 401, fixing protrusion 501, snap-fit hole 502. Detailed Implementation
[0019] The technical solutions in the embodiments of this utility model will be clearly and completely described below. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0020] Example 1: Please refer to Figures 1-2 A plate component with a fastening and locking structure includes a plate body 1, a first wave keel 2, and a second wave keel 6. The first wave keel 2 and the second wave keel 6 are provided inside the plate body 1. The plate body 1 is provided with a snap-fit component 3, a positioning component 4, and a fixing component 5. The snap-fit component 3 is provided on the wave keel 2, and the fixing component 5 is provided on the snap-fit component 3.
[0021] The main body of the plate includes a first plate 101 and a second plate 102. The first plate 101 is disposed at one end of the first wave keel 2, and the second plate 102 is disposed at the inner end of the second wave keel 6.
[0022] In use, the first plate 101 is placed at one end corresponding to the first wave keel 2, and the second plate 102 is placed at one end corresponding to the second wave keel 6, thus initially building the basic framework of the plate body 1. During placement, the first wave keel 2 and the second wave keel 6 are made of high-hardness stainless steel “V-shaped wave keels”. After bending and laser welding, they are fixed inside the first plate 101 and the second plate 102. With their own wave-shaped structure, they can effectively disperse the external force on the plate and improve the overall structural strength of the plate body 1. After roughly positioning the various parts of the plate body 1, the subsequent operation of the snap-fit component 3, positioning component 4 and fixing component 5 can be prepared.
[0023] Example 2: Based on Example 1, please refer to... Figures 2-3 The snap-fit groove 301 in the snap-fit assembly 3 is fixedly disposed inside the first plate 101 and the second plate 102. Sliding protrusions 302 are provided at both ends of the snap-fit groove 301, and snap-fit protrusions 303 are fixedly disposed on the sliding protrusions 302.
[0024] The snap-fit protrusion 303 in the snap-fit assembly 3 is adapted to slide and snap-fit in the sliding groove 304, and the sliding groove 304 is fixedly set on the first wave keel 2 and the second wave keel 6.
[0025] In use, align the snap-fit grooves 301 on the inner sides of the first plate 101 and the second plate 102 with the sliding grooves 304 on the first wave keel 2 and the second wave keel 6, and push the plates to make the snap-fit protrusions 303 slide along the sliding grooves 304. The sliding protrusions 302 can move flexibly on both sides of the snap-fit grooves 301, which is convenient for fine-tuning the snap-fit position. When the snap-fit protrusions 303 slide into the appropriate position of the sliding grooves 304, the plates are initially snapped together. During this process, the snap-fit assembly 3 achieves rapid snap-fit by cooperating with the snap-fit grooves 301, the sliding protrusions 302 and the snap-fit protrusions 303. After the snap-fit connection, it can be welded and fixed for further stable connection. Compared with the traditional plate snap-fit method, there is no need to repeatedly adjust the position, which greatly shortens the installation time and improves the assembly efficiency. Moreover, the matching design of the snap-fit protrusions 303 and the sliding grooves 304 ensures the stability of the plate connection and lays a solid foundation for the subsequent fixing steps.
[0026] Example 3: Based on Example 2, please refer to... Figures 3-4 The magnetic positioning block 401 in the positioning component 4 is fixedly installed at the top end of the snap-fit groove 301, and the magnetic positioning block 401 is in close contact with the ends of the first wave keel 2 and the second wave keel 6.
[0027] The fixing protrusions 501 in the fixing component 5 are evenly arranged on the snap-fit protrusions 303. The fixing protrusions 501 are adapted to snap-fit in the snap-fit holes 502. The snap-fit holes 502 are evenly arranged in the sliding grooves 304.
[0028] In use, after the snap-fit assembly 3 initially snaps the panels together, the magnetic positioning block 401 in the positioning assembly 4 will automatically adhere to the ends of the first wave keel 2 and the second wave keel 6. The magnetic force is used to accurately assist in positioning, preventing the panels from having misalignment and ensuring the flatness and aesthetics of the overall structure. After positioning is completed, the fixing protrusion 501 is aligned with the snap-fit hole 502 and pressed down to make the fixing protrusion 501 snap into the snap-fit hole 502. The tight snap-fit between the fixing protrusion 501 and the snap-fit hole 502 further enhances the fastening effect after the panels are snapped together. Even if the panels are subjected to external impact or long-term vibration, it can effectively prevent loosening, improve the structural stability and reliability, and enable the panels to meet the needs of various application scenarios with high requirements for installation efficiency and structural strength.
[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A plate with a fastening structure, comprising a plate body (1), a first wave keel (2), and a second wave keel (6), wherein the plate body (1) is provided with the first wave keel (2) and the second wave keel (6). Its features are: It includes a snap-fit component (3), a positioning component (4), and a fixing component (5). The snap-fit component (3) is disposed on the first wave keel (2) and the second wave keel (6), and the fixing component (5) is disposed on the snap-fit component (3).
2. A plate component with a fastening structure according to claim 1, characterized in that: The main body of the plate (1) includes a first plate (101) and a second plate (102). The first plate (101) is disposed at one end of the first wave keel (2), and the second plate (102) is disposed at the inner end of the second wave keel (6).
3. A plate member with a fastening structure according to claim 1, characterized in that: The snap-fit groove (301) in the snap-fit assembly (3) is fixedly disposed inside the first plate (101) and the second plate (102). Sliding protrusions (302) are provided at both ends of the snap-fit groove (301), and snap-fit protrusions (303) are fixedly disposed on the sliding protrusions (302).
4. A plate member with a fastening structure according to claim 3, characterized in that: The snap-fit protrusion (303) in the snap-fit assembly (3) is adapted to slide and snap-fit in the sliding groove (304), and the sliding groove (304) is fixedly set on the first wave keel (2) and the second wave keel (6).
5. A plate component with a fastening structure according to claim 1, characterized in that: The magnetic positioning block (401) in the positioning component (4) is fixedly installed at the top end of the snap-fit groove (301), and the magnetic positioning block (401) is in close contact with the ends of the first wave keel (2) and the second wave keel (6).
6. A plate member with a fastening structure according to claim 1, characterized in that: The fixing protrusions (501) in the fixing component (5) are evenly arranged on the snap-fit protrusions (303), and the fixing protrusions (501) are adapted to snap-fit in the snap-fit holes (502), which are evenly arranged in the sliding grooves (304).