Ceiling wallboard modular arc connecting piece of clean room maintenance structure
Through modular design and quick-connect installation using a card slot structure, combined with flexible inserts and magnetic materials, the problem of complex installation and time-consuming disassembly of existing arc connectors is solved, enabling efficient installation and disassembly of ceilings and wall panels in cleanrooms.
Patent Information
- Application Number
- CN202423089636.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing arc connectors have complex structures, are time-consuming and labor-intensive to install, and are inconvenient to disassemble and maintain, which affects the construction and maintenance efficiency of cleanrooms.
It adopts a modular design, using a card block and card slot structure for quick plug-in installation, and uses elastic plugs and magnetic materials to achieve quick fixing and disassembly. It includes a first quick-release component and a second quick-release component, which simplifies the installation process, improves installation efficiency, and allows for convenient disassembly through quick separation using magnets.
It enables rapid installation and disassembly of ceiling and wall panels, improving the efficiency of cleanroom construction and maintenance, saving manpower, and simplifying operating procedures.
Smart Images

Figure CN223738833U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleanroom technology, specifically to a modular arc connector for ceiling and wall panels in a cleanroom maintenance structure. Background Technology
[0002] Cleanroom technology refers to a specially designed and constructed environment that strictly controls airborne contaminants such as dust, temperature, humidity, pressure, and microorganisms to ensure that the environment meets certain cleanliness requirements during production or experimental processes. Cleanroom technology is widely used in high-precision, high-standard industries such as semiconductor manufacturing, pharmaceutical production, aerospace, microelectronics, optical product manufacturing, and biomedical research.
[0003] In cleanrooms, the ceiling needs to be trimmed near the walls, which may require some cutting. Wall panels need to connect to the ceiling, so connectors are needed. Rounded connectors can make the connection between the ceiling and wall panels smoother and more aesthetically pleasing.
[0004] In the process of realizing this utility model, the inventors discovered the following problems with the existing technology: 1. The existing arc connector structure is relatively complex. When users install the ceiling, wall panels and connectors, it usually takes a lot of time, which affects the construction efficiency of the clean room; 2. The existing arc connectors are usually fixed by bolts. When users need to disassemble the ceiling or wall panels for maintenance and replacement, it is time-consuming and laborious, and inconvenient for maintenance of the ceiling or wall panels. Utility Model Content
[0005] The purpose of this utility model is to provide a modular arc-shaped connector for ceiling and wall panels in a cleanroom maintenance structure, to solve the problems of inconvenient installation and maintenance of arc-shaped connectors mentioned in the background art. To achieve the above objective, this utility model provides the following technical solution: A modular arc-shaped connector for ceiling and wall panels in a cleanroom maintenance structure, comprising a ceiling and wall panels. A first mounting block is installed at one end of the ceiling, a first mounting plate is installed on one side surface of the first mounting block, and a first locking block is installed on one side surface of the first mounting plate. A second mounting block is installed at one end of the wall panel, a second mounting plate is installed on one side surface of the second mounting block, a second locking block is installed on one side surface of the second mounting plate, and a connecting block is installed on one side surface of the second locking block. A first quick-release assembly and a second quick-release assembly are installed on the inner wall of the connecting block.
[0006] The first quick-release assembly includes a first housing mounted on the inner wall of the connecting block, a first insert rod mounted on the inner wall of the first housing, a first slider mounted on the outer wall of the first insert rod, and a first spring provided on one side surface of the first insert rod.
[0007] The second quick-release assembly includes a second housing mounted on the inner wall of the connecting block, a second insert rod mounted on the inner wall of the second housing, a second slider mounted on the outer wall of the second insert rod, and a second spring provided on one side surface of the second insert rod.
[0008] More preferably, the inner wall of the connecting block has a slot whose internal dimensions are consistent with the external dimensions of the first and second locking blocks.
[0009] More preferably, a first insertion hole with an internal size structure that matches the external size structure of the first insertion rod is provided on one side surface of the first card block, and the first insertion rod forms an elastic mechanism with the first spring through the first housing.
[0010] More preferably, a second insertion hole with an internal size structure that matches the external size structure of the second insertion rod is provided on one side surface of the second card block, and the second insertion rod forms an elastic mechanism with the second spring through the second housing.
[0011] More preferably, the inner wall of the connecting block is provided with a positioning block, and the inner walls of the first and second locking blocks are provided with positioning grooves whose internal dimensions are consistent with the external dimensions of the positioning block.
[0012] More preferably, the outer walls of the first mounting block and the second mounting block are provided with anti-slip strips, and the anti-slip strips are symmetrically distributed about the central axis of the first mounting block and the second mounting block, respectively.
[0013] More preferably, both the first and second inserts are made of magnetic material, and the inner side of the connecting block is provided with a magnet placement groove.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0015] This invention employs an easy-to-install design. The inner wall of the connecting block has a slot whose internal dimensions match the external dimensions of the first and second locking blocks. This allows for quick insertion and installation of the ceiling panel into the connecting block via the first locking block and the slot, and also facilitates the insertion and installation of the wall panel into the connecting block via the second locking block and the slot. When the ceiling panel is inserted into the connecting block via the first locking block, it compresses the first insert rod, causing it to retract into the first housing. The first insert rod then slides along the inner wall of the first housing via a first slider, compressing the first spring. After the ceiling panel and connecting block are inserted, the first insertion hole is located on one side of the first insert rod, facilitating quick fixation of the ceiling panel and the connecting block. Similarly, the wall panel can be quickly fixed, effectively improving installation efficiency and saving significant manpower and physical resources.
[0016] This utility model adopts a design that facilitates maintenance. When it is necessary to separate the ceiling from the connecting block, simply attach a specific magnet to the magnet placement slot. The specific magnet attracts the first insertion rod, causing the first insertion rod to move to one side. The first insertion rod slides on the inner wall of the first housing through the first slider, and the first spring is compressed. Then, the first insertion rod is pulled out from the first insertion hole of the first locking block. Then, the ceiling can be pulled out from the connecting block through the first locking block. Similarly, the wall panel and the connecting block can be quickly unlocked, which facilitates the maintenance and replacement of the ceiling and wall panel. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0018] Figure 2 This is an enlarged structural diagram of the connector of this utility model;
[0019] Figure 3 This is a fully enlarged cross-sectional view of the first quick-release component of this utility model;
[0020] Figure 4 This is a fully enlarged cross-sectional view of the second quick-release component of this utility model.
[0021] In the diagram: 1. Ceiling; 2. Wall panel; 3. First mounting block; 4. First mounting plate; 5. First locking block; 6. Second mounting block; 7. Second mounting plate; 8. Second locking block; 9. Connecting block; 10. First quick-release assembly; 1001. First housing; 1002. First insert rod; 1003. First slider; 1004. First spring; 11. Second quick-release assembly; 1101. Second housing; 1102. Second insert rod; 1103. Second slider; 1104. Second spring. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figures 1 to 4 This utility model provides a technical solution: a modular arc connector for ceiling and wall panels in a cleanroom maintenance structure, including a ceiling 1 and a wall panel 2. A first mounting block 3 is installed at one end of the ceiling 1, a first mounting plate 4 is installed on one side surface of the first mounting block 3, a first locking block 5 is installed on one side surface of the first mounting plate 4, a second mounting block 6 is installed at one end of the wall panel 2, a second mounting plate 7 is installed on one side surface of the second mounting block 6, a second locking block 8 is installed on one side surface of the second mounting plate 7, a connecting block 9 is installed on one side surface of the second locking block 8, and a first quick-release assembly 10 and a second quick-release assembly 11 are installed on the inner wall of the connecting block 9.
[0024] The first quick-release assembly 10 includes a first housing 1001 installed on the inner wall of the connecting block 9, a first insert rod 1002 installed on the inner wall of the first housing 1001, a first slider 1003 installed on the outer wall of the first insert rod 1002, and a first spring 1004 provided on one side surface of the first insert rod 1002.
[0025] The second quick-release assembly 11 includes a second housing 1101 installed on the inner wall of the connecting block 9. A second insert rod 1102 is installed on the inner wall of the second housing 1101. A second slider 1103 is installed on the outer wall of the second insert rod 1102. A second spring 1104 is provided on one side surface of the second insert rod 1102.
[0026] In this embodiment, as Figure 1 As shown, the inner wall of the connecting block 9 has a slot whose internal dimensions are consistent with the external dimensions of the first card block 5 and the second card block 8. This design facilitates the quick insertion and installation of the ceiling 1 with the connecting block 9 through the first card block 5 and the slot, and also facilitates the insertion and installation of the wall panel 2 with the connecting block 9 through the second card block 8 and the slot, effectively improving the installation efficiency.
[0027] In this embodiment, as Figure 2As shown, a first insertion hole with an internal size structure that matches the external size structure of the first insertion rod 1002 is provided on one side surface of the first locking block 5. The first insertion rod 1002 forms an elastic mechanism with the first housing 1001 and the first spring 1004. With this design, when the ceiling 1 is inserted into the connecting block 9 through the first locking block 5, the first insertion rod 1002 will be squeezed, causing the first insertion rod 1002 to retract into the first housing 1001. The first insertion rod 1002 slides on the inner wall of the first housing 1001 through the first slider 1003, and the first spring 1004 is compressed. After the ceiling 1 and the connecting block 9 are inserted, the first insertion hole is located on one side of the first insertion rod 1002, which facilitates the quick fixation of the ceiling 1 and the connecting block 9.
[0028] In this embodiment, as Figure 2 As shown, a second insertion hole with an internal dimension structure that matches the external dimension structure of the second insertion rod 1102 is provided on one side surface of the second locking block 8. The second insertion rod 1102 forms an elastic mechanism with the second spring 1104 through the second housing 1101. With this design, when the wall panel 2 is inserted into the connecting block 9 through the second locking block 8, the second insertion rod 1102 will be squeezed, causing the second insertion rod 1102 to retract into the second housing 1101. The second insertion rod 1102 slides on the inner wall of the second housing 1101 through the second slider 1103, and the second spring 1104 is compressed. After the wall panel 2 and the connecting block 9 are inserted, the second insertion hole is located on one side of the second insertion rod 1102, which facilitates the quick fixing of the wall panel 2 and the connecting block 9.
[0029] In this embodiment, as Figure 2 As shown, the inner wall of the connecting block 9 is provided with a positioning block, and the inner walls of the first locking block 5 and the second locking block 8 are provided with positioning grooves whose internal dimensions and structures are consistent with the external dimensions and structures of the positioning block; with this design, when the ceiling 1 and the wall panel 2 are installed with the connecting block 9, they can be effectively positioned by the positioning block and the positioning groove.
[0030] In this embodiment, as Figure 1 As shown, the outer walls of the first mounting block 3 and the second mounting block 6 are provided with anti-slip strips, and the anti-slip strips are symmetrically distributed about the central axis of the first mounting block 3 and the second mounting block 6, respectively. This design can effectively improve the connection between the first mounting block 3 and the ceiling 1, and can also improve the connection between the second mounting block 6 and the wall panel 2.
[0031] In this embodiment, as Figure 3As shown, both the first insertion rod 1002 and the second insertion rod 1102 are made of magnetic material, and the inner side of the connecting block 9 is provided with a magnet placement groove. With this design, when it is necessary to separate the ceiling 1 from the connecting block 9, it is only necessary to attach a specific magnet to the magnet placement groove. Through the attraction of the specific magnet to the first insertion rod 1002, the first insertion rod 1002 is moved to one side. The first insertion rod 1002 slides on the inner wall of the first housing 1001 through the first slider 1003, the first spring 1004 is compressed, and then the first insertion rod 1002 is pulled out from the first insertion hole of the first locking block 5. Then the ceiling 1 can be pulled out from the connecting block 9 through the first locking block 5. Similarly, the wall panel 2 can be quickly disassembled, which effectively improves the disassembly efficiency.
[0032] The usage and advantages of this utility model: The modular arc connector for the ceiling and wall panels of this cleanroom maintenance structure operates as follows:
[0033] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the first mounting block 3, the first mounting plate 4, and the first locking block 5 are pre-installed on one side of the ceiling 1, and the second mounting block 6, the second mounting plate 7, and the second locking block 8 are pre-installed on one side of the wall panel 2. When the user needs to install the ceiling 1, the connecting block 9, and the wall panel 2, the ceiling 1 can be quickly inserted and installed with the connecting block 9 through the first locking block 5 and the slot. Similarly, the wall panel 2 can be easily inserted and installed with the connecting block 9 through the second locking block 8 and the slot. When the ceiling 1 is inserted with the connecting block 9 through the first locking block 5, it will squeeze the first insertion rod 1002, causing the first insertion rod 1002 to retract into the first housing 1001. The first insertion rod 1002 slides on the inner wall of the first housing 1001 through the first slider 1003, and the first spring 1004 is compressed. After the ceiling 1 and the connecting block 9 are inserted, the first insertion hole is located on one side of the first insertion rod 1002, facilitating the quick fixing of the ceiling 1 and the connecting block 9. Simultaneously, when the wall panel 2 is inserted through the second locking block... When the wall panel 2 is inserted into the connecting block 9, the second insert rod 1102 is squeezed, causing the second insert rod 1102 to retract into the second housing 1101. The second insert rod 1102 slides on the inner wall of the second housing 1101 through the second slider 1103, and the second spring 1104 is compressed. After the wall panel 2 and the connecting block 9 are inserted, the second insertion hole is located on one side of the second insert rod 1102, which facilitates the quick fixation of the wall panel 2 and the connecting block 9. When it is necessary to separate the ceiling 1 from the connecting block 9, it is only necessary to attach a specific magnet to the magnet placement slot, drive the first insert rod 1002 to one side, and the first insert rod 1002 slides on the inner wall of the first housing 1001 through the first slider 1003, the first spring 1004 is compressed, and then the first insert rod 1002 is pulled out from the first insertion hole of the first locking block 5. Then the ceiling 1 can be pulled out from the connecting block 9 through the first locking block 5. Similarly, the wall panel 2 can be quickly disassembled, which effectively improves the disassembly efficiency.
[0034] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A modular ceiling-to-wall panel arcuate connection for clean room maintenance structures comprising a ceiling panel (1) and a wall panel (2), characterized in that: One end of the ceiling (1) is provided with a first mounting block (3), one side surface of the first mounting block (3) is provided with a first mounting plate (4), one side surface of the first mounting plate (4) is provided with a first clamping block (5), one end of the wall plate (2) is provided with a second mounting block (6), one side surface of the second mounting block (6) is provided with a second mounting plate (7), one side surface of the second mounting plate (7) is provided with a second clamping block (8), one side surface of the second clamping block (8) is provided with a connecting block (9), the inner wall of the connecting block (9) is provided with a first quick release assembly (10) and a second quick release assembly (11). The first quick release assembly (10) comprises a first housing (1001) mounted on the inner wall of the connecting block (9), the inner wall of the first housing (1001) is provided with a first insertion rod (1002), the outer wall of the first insertion rod (1002) is provided with a first sliding block (1003), and one side surface of the first insertion rod (1002) is provided with a first spring (1004). The second quick release assembly (11) comprises a second housing (1101) mounted on the inner wall of the connecting block (9), the inner wall of the second housing (1101) is provided with a second insertion rod (1102), the outer wall of the second insertion rod (1102) is provided with a second sliding block (1103), and one side surface of the second insertion rod (1102) is provided with a second spring (1104).
2. A modular ceiling wall panel arcuate connector for clean room maintenance structures according to claim 1, wherein: The inner wall of the connecting block (9) is provided with a clamping groove with an internal size structure consistent with the external size structure of the first clamping block (5) and the second clamping block (8).
3. A modular ceiling wall panel arcuate connector for clean room maintenance structures according to claim 1, wherein: One side surface of the first clamping block (5) is provided with a first insertion hole with an internal size structure consistent with the external size structure of the first insertion rod (1002), and the first insertion rod (1002) forms an elastic mechanism with the first housing (1001) and the first spring (1004).
4. A modular ceiling wall panel arcuate connector for clean room maintenance structures according to claim 1, wherein: One side surface of the second clamping block (8) is provided with a second insertion hole with an internal size structure consistent with the external size structure of the second insertion rod (1102), and the second insertion rod (1102) forms an elastic mechanism with the second housing (1101) and the second spring (1104).
5. A modular ceiling wall panel arcuate connector for clean room maintenance structures according to claim 1, wherein: The inner wall of the connecting block (9) is provided with a positioning block, and the inner wall of the first clamping block (5) and the second clamping block (8) is provided with a positioning groove with an internal size structure consistent with the external size structure of the positioning block.
6. A modular ceiling wall panel arcuate connector for clean room maintenance structures as defined in claim 1, wherein: The outer wall of the first mounting block (3) and the second mounting block (6) is provided with anti-skid strips, and the anti-skid strips are symmetrically distributed about the central axis of the first mounting block (3) and the second mounting block (6), respectively.
7. A modular ceiling wall panel arcuate connector for clean room maintenance structures according to claim 1, wherein: The first insertion rod (1002) and the second insertion rod (1102) are both made of magnetic material, and the inner side of the connecting block (9) is provided with a magnet placing groove.