Detachable stainless steel cleaning plate

By setting up staggered elastic connectors and connecting keels between the cleanroom panel and the center panel, the problems of slippage and inaccurate installation of the cleanroom panel in complex environments are solved, enabling rapid positioning and installation, enhancing connection strength and facilitating replacement, and improving adaptability.

CN223893650UActive Publication Date: 2026-02-10SHANDONG WISKIND STEEL BUILDING CO LTD
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Patent Information

Application Number
CN202520347642.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-10
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing cleanroom panels are prone to slippage and inaccurate installation in complex environments due to colloidal contamination, and are difficult to clean and replace, resulting in reduced connection strength.

Method used

The design features a detachable stainless steel cleanroom panel. By setting up staggered elastic connectors and connecting keels between the cleanroom panel and the center panel, it can achieve rapid positioning and installation, reduce the use of adhesives, and facilitate replacement and maintenance through detachable connectors and keel structure.

Benefits of technology

It improves the installation accuracy and connection strength of cleanroom panels, reduces the contaminated area, facilitates quick replacement and maintenance, and enhances the adaptability of cleanroom panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a detachable stainless steel clean plate, and relates to the technical field of clean rooms. Comprising a first cleaning plate, a center plate, a second cleaning plate and a connecting keel, the first cleaning plate and the second cleaning plate are connected to the two sides of the plate face of the center plate. The connecting keels are connected to the periphery of the side face of the center plate in a surrounding mode and can be in sealed connection with the first cleaning plate and the second cleaning plate. The first cleaning plate is provided with a first connecting piece, a first groove is formed in the center plate, a first elastic assembly is connected in the first groove, and the first connecting piece can be installed in the first groove in a penetrating mode and connected with the first elastic assembly in a clamped mode; the second cleaning plate is provided with a second connecting piece, a second groove is formed in the center plate, a second elastic assembly is connected in the second groove, and the second connecting piece can be installed in the second groove in a penetrating mode to be connected with the second elastic assembly in a clamped mode; the first connecting pieces and the second connecting pieces are distributed in a staggered mode in the length direction of the center plate.
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Description

Technical Field

[0001] This utility model belongs to the field of cleanroom technology, specifically relating to a detachable stainless steel cleanroom panel. Background Technology

[0002] Cleanroom panels, also known as purification panels, are composite panels made of materials such as color-coated steel sheets and stainless steel as the surface material. Cleanroom panels possess unique dustproof, antistatic, and antibacterial properties, and are widely used in cleanroom engineering fields with stringent indoor environmental requirements.

[0003] However, existing cleanroom panels, due to varying environments during practical applications, especially in complex workshops such as those with motors, gears, servo mechanical components, hydraulic and pneumatic starters, switches, or other operating equipment, are prone to dust generation and particle contamination from friction between moving surfaces. In addition, problems may arise such as difficult-to-clean stainless steel water stains, panel delamination and sagging, rusting, cracked and peeling sealant, and corrosion and red rust on the keel. These issues not only contaminate the cleanroom panel surface but also make replacement and maintenance difficult.

[0004] Although existing technologies can connect one set of cleanroom panels to another, the individual panels within each set are still mostly joined using large-area adhesive bonding. When the cleanroom panels become contaminated, the presence of adhesive and other contaminants makes quick cleaning and replacement difficult. Furthermore, during installation, operators need to apply adhesive on-site. Since the panels rely primarily on adhesive, uneven or excessive application can cause slippage between panels, resulting in inaccurate installation and positioning. This hinders quick replacement, installation, and maintenance, and also reduces connection strength. Utility Model Content

[0005] This invention provides a detachable stainless steel cleanroom panel to solve the problems of existing cleanroom panels where a large amount of adhesive is used between the panels, leading to slippage and inaccurate installation, and the difficulty in replacing the panels due to the presence of adhesive and other contaminants.

[0006] The technical solution adopted in this utility model is as follows:

[0007] A detachable stainless steel cleanroom panel includes a first cleanroom panel, a center panel, a second cleanroom panel, and a connecting keel; the first cleanroom panel and the second cleanroom panel are connected to both sides of the center panel; the connecting keel is connected to the sides of the center panel and can form a sealed connection with the first cleanroom panel and the second cleanroom panel.

[0008] The first clean plate has a first connector protruding from the surface of the first clean plate on the side facing the center plate. The center plate has a first groove corresponding to the position of the first connector. A first elastic component is connected in the first groove. The first connector can be inserted into the first groove and snapped into the first elastic component.

[0009] The second clean plate has a second connector protruding from the surface of the second clean plate on the side facing the center plate. The center plate has a second groove corresponding to the position of the second connector. A second elastic component is connected in the second groove. The second connector can be inserted into the second groove and snapped into the second elastic component.

[0010] The first connector and the second connector are staggered along the length of the center plate.

[0011] The detachable stainless steel cleanroom panel of this utility model also has the following additional technical features:

[0012] The first elastic component includes a first elastic element and a first spring element; the first elastic element has a first boss with a raised circumferential surface, one end of the first spring element is abutted and connected to the first boss, and the other end of the first spring element is abutted and connected to the bottom wall of the first groove.

[0013] The second elastic component includes a second elastic member and a second spring member; the second elastic member has a second boss with a raised circumferential surface, one end of the second spring member is abutted and connected to the second boss, and the other end of the second spring member is abutted and connected to the bottom wall of the second groove.

[0014] The connecting keel includes a first connecting keel, a second connecting keel, a third connecting keel, and a fourth connecting keel; the first connecting keel is connected to the front side of the center plate, the second connecting keel is connected to the rear side of the center plate, the third connecting keel is connected to the first side of the center plate, and the fourth connecting keel is connected to the second side of the center plate.

[0015] The connecting keel also includes a first corner keel, a second corner keel, a third corner keel, and a fourth corner keel; the first corner keel is connected between the first connecting keel and the third connecting keel, the second corner keel is connected between the first connecting keel and the fourth connecting keel, the third corner keel is connected between the second connecting keel and the third connecting keel, and the fourth corner keel is connected between the second connecting keel and the fourth connecting keel.

[0016] The first connecting keel has a plurality of protruding first buckles on the side facing the first clean plate, and the first clean plate has a first connecting groove corresponding to the first buckles on the side facing the first connecting keel. The first connecting groove has a first elastic protrusion, and the first buckle can engage with the first elastic protrusion.

[0017] The second connecting keel has multiple protruding second buckles on the side facing the first clean plate, and the first clean plate has a second connecting groove corresponding to the second buckles on the side facing the second connecting keel. The second connecting groove has a second elastic protrusion, and the second buckle can be engaged with the second elastic protrusion.

[0018] The first connecting keel is connected to a protruding first plug-in member. The bottom surface of the first clean plate has a first sliding groove for slidingly connecting the first plug-in member and a first plug-in groove communicating with the end of the first sliding groove, so that the first plug-in member can be inserted into the first sliding groove and slidably connected to the first plug-in groove along the first sliding groove.

[0019] The second connecting keel is connected to a protruding second plug-in member. The bottom surface of the first clean plate has a second sliding groove for slidingly connecting the second plug-in member and a second plug-in groove communicating with the end of the second sliding groove, so that the second plug-in member can be inserted into the second sliding groove and slidably connected to the second plug-in groove along the second sliding groove.

[0020] The first groove and the second groove are equally spaced along the center line of the center plate.

[0021] Due to the adoption of the above technical solution, the beneficial effects achieved by this utility model are as follows:

[0022] 1. A detachable stainless steel cleanroom panel according to this application includes a first cleanroom panel, a center panel, a second cleanroom panel, and a connecting keel; the first cleanroom panel and the second cleanroom panel are connected to both sides of the center panel; the connecting keel surrounds and connects to the sides of the center panel, and can form a sealed connection with the first cleanroom panel and the second cleanroom panel; the first cleanroom panel has a first connector protruding from the surface of the first cleanroom panel on the side facing the center panel, and the center panel has a first groove corresponding to the position of the first connector, a first elastic component is connected in the first groove, and the first connector can be inserted into the first groove and snapped into the first elastic component; the second cleanroom panel has a second connector protruding from the surface of the second cleanroom panel on the side facing the center panel, and the center panel has a second groove corresponding to the position of the second connector, a second elastic component is connected in the second groove, and the second connector can be inserted into the second groove and snapped into the second elastic component; the first connector and the second connector are staggered along the length direction of the center panel. This application enables a detachable connection between the first clean plate and the center plate in the same clean panel, and a detachable connection between the center plate and the second clean plate. The cooperation between the first connector and the first groove allows for quick positioning and installation between the first clean plate and the center plate, reducing the use of adhesives. When one of the components is damaged, it can be replaced in a timely manner, further improving the positioning accuracy and installation efficiency, and enhancing the connection strength of the entire stainless steel clean panel.

[0023] 2. In a preferred embodiment of the present invention, the first elastic component includes a first elastic member and a first spring member; the first elastic member has a first boss with a raised circumferential surface, one end of the first spring member is abutted and connected to the first boss, and the other end of the first spring member is abutted and connected to the bottom wall of the first groove.

[0024] The connection between the first elastic member and the first spring member enables the first elastic member to extend and retract along the first groove under the drive of the first spring member, allowing it to avoid the first connecting member so that the first connecting member can extend into the first groove, and to move toward the first connecting member to engage with the first connecting member.

[0025] 3. In a preferred embodiment of the present invention, the connecting keel includes a first connecting keel, a second connecting keel, a third connecting keel and a fourth connecting keel; the first connecting keel is connected to the front side of the center plate, the second connecting keel is connected to the rear side of the center plate, the third connecting keel is connected to the first side of the center plate, and the fourth connecting keel is connected to the second side of the center plate.

[0026] By placing the first, second, third, and fourth connecting keels on the four sides of the center plate, they can surround the center plate and provide isolation and protection. Furthermore, the first to fourth connecting keels are detachable, facilitating future replacement and maintenance.

[0027] 4. In a preferred embodiment of the present invention, the connecting keel further includes a first corner keel, a second corner keel, a third corner keel, and a fourth corner keel; the first corner keel is connected between the first connecting keel and the third connecting keel, the second corner keel is connected between the first connecting keel and the fourth connecting keel, the third corner keel is connected between the second connecting keel and the third connecting keel, and the fourth corner keel is connected between the second connecting keel and the fourth connecting keel.

[0028] By setting up first, second, third, and fourth corner keels, the first, second, third, and fourth connecting keels can be spliced ​​together to form a quadrilateral structure. When any of the keels is damaged, it can be replaced individually. Moreover, during installation, the first, second, third, and fourth connecting keels of different lengths can be adapted to different sizes of cleanroom panels, thus improving adaptability.

[0029] 5. In a preferred embodiment of the present invention, the side of the first connecting keel facing the first clean plate has a plurality of protruding first buckles, the side of the first clean plate facing the first connecting keel has a first connecting groove corresponding to the first buckle, the first connecting groove has a first elastic protrusion, and the first buckle can be engaged with the first elastic protrusion.

[0030] The first buckle in the first connecting keel and the first elastic protrusion in the first clean plate cooperate to connect, so that the first connecting keel and the first clean plate can be detachably connected. This increases the connection strength, reduces the use of adhesive, and further reduces the contaminated area of ​​the first clean plate. During installation, the corresponding connection between the first buckle and the first elastic protrusion enables quick positioning and assembly between the first clean plate and the first connecting keel, further improving the connection strength and the efficiency of assembly and disassembly. Attached Figure Description

[0031] The accompanying drawings, which are included to provide a further understanding of the present invention and constitute a part of this invention, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:

[0032] Figure 1 This is an exploded structural diagram of a detachable stainless steel cleanroom plate according to one embodiment of the present invention.

[0033] Figure 2 This is a structural diagram showing the cross-section of the connection between the first clean plate, the center plate, and the second clean plate of a detachable stainless steel clean plate according to one embodiment of the present invention.

[0034] Figure 3 This is a structural diagram showing the cross-section of the connection between the first connecting keel and the first clean plate in one embodiment of the present invention.

[0035] Figure 4 This is a structural diagram of the cross-section of the connection between the first connecting keel and the first clean plate in another embodiment of the present invention.

[0036] In the picture,

[0037] 1. First clean plate; 2. Middle plate; 3. Second clean plate;

[0038] 4. Connecting keel; 41. First connecting keel; 42. Second connecting keel; 43. Third connecting keel; 44. Fourth connecting keel; 45. First corner keel; 46. Second corner keel; 47. Third corner keel;

[0039] 5. First connector; 6. First groove;

[0040] 7. First elastic component; 71. First elastic element; 72. First spring element;

[0041] 8. Second connector; 9. Second groove;

[0042] 10. Second elastic component; 101. Second elastic element; 102. Second spring element;

[0043] 11. First buckle; 12. First elastic protrusion; 13. First connector; 14. First connector groove. Detailed Implementation

[0044] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0045] Furthermore, it should be understood in the description of this utility model that the terms "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0046] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a communication connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0047] In this invention, unless otherwise expressly specified and limited, the first feature "on" or "below" the second feature may be in direct contact with the first and second features, or indirect contact through an intermediate medium. In the description of this specification, references to terms such as "implementation," "example," "aspect," or "specific example" indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0048] To more clearly illustrate the overall concept of this utility model, a detailed description will be provided below with reference to the accompanying drawings.

[0049] This utility model relates to a detachable stainless steel cleanroom panel, such as... Figure 1-4 As shown, it includes a first clean plate 1, a center plate 2, a second clean plate 3, and a connecting keel 4; the first clean plate 1 and the second clean plate 3 are connected to both sides of the center plate 2; the connecting keel 4 surrounds and connects to the sides of the center plate 2, and can form a sealed connection with the first clean plate 1 and the second clean plate 3.

[0050] The first clean plate 1 has a first connector 5 protruding from the surface of the first clean plate 1 on the side facing the center plate 2. The center plate 2 has a first groove 6 corresponding to the position of the first connector 5. A first elastic component 7 is connected in the first groove 6. The first connector 5 can be inserted into the first groove 6 and snapped into the first elastic component 7.

[0051] The second clean plate 3 has a second connector 8 protruding from the surface of the second clean plate 3 on the side facing the center plate 2. The center plate 2 has a second groove 9 corresponding to the position of the second connector 8. A second elastic component 10 is connected in the second groove 9. The second connector 8 can be inserted into the second groove 9 and snapped into the second elastic component 10.

[0052] The first connector 5 and the second connector 8 are staggered along the length of the center plate 2.

[0053] The first clean plate 1 and the center plate 2 can be connected by an adhesive around their periphery, and the second clean plate 3 and the center plate 2 can be connected by an adhesive along their periphery. Preferably, a detachable connection is used at the middle position between the first clean plate 1 and the center plate 2, and a detachable connection is also used at the middle position between the second clean plate 3 and the center plate 2. This can further enhance the connection strength between the first clean plate 1, the center plate 2 and the second clean plate 3, reduce the use of adhesive, reduce the contaminated area, and facilitate future replacement and maintenance.

[0054] The center plate 2 has a first groove 6 and a second groove 9. The number of first grooves 6 and second grooves 9 is not limited, but at least two first grooves 6 and one second groove 9 are used. The first grooves 6 are located on both sides of the second groove 9. The first grooves 6 and second grooves 9 are equally spaced or not equally spaced. Preferably, the first grooves 6 and second grooves 9 are equally spaced along the center line of the center plate 2. Alternatively, the projections of the two first grooves 6 and the one second groove 9 onto the surface of the center plate 2 can form a triangle.

[0055] The connecting keel 4 is connected to the periphery of the center plate 2, and can be connected to the periphery of the connecting keel 4 by adhesive. The top surface of the connecting keel 4 can be connected to the bottom surface of the first clean plate 1, and the bottom surface of the connecting keel 4 can be connected to the top surface of the second clean plate 3. The connection between the connecting keel 4 and the first clean plate 1 and the second clean plate 3 forms a fully sealed connection to the periphery of the center plate 2.

[0056] This application enables a detachable connection between the first clean plate 1 and the center plate 2 in the same clean panel, and a detachable connection between the center plate 2 and the second clean plate 3. The cooperation between the first connector 5 and the first groove 6 allows for quick assembly between the first clean plate 1 and the center plate 2, further improving the positioning accuracy and installation efficiency, enhancing the connection strength of the entire stainless steel clean panel, reducing the use of adhesives, and facilitating timely replacement of any damaged component.

[0057] In a preferred embodiment, the first elastic component 7 includes a first elastic member 71 and a first spring member 72; the first elastic member 71 has a first boss with a raised circumferential surface, one end of the first spring member 72 is abutted and connected to the first boss, and the other end of the first spring member 72 is abutted and connected to the bottom wall of the first groove 6.

[0058] The connection between the first elastic member 71 and the first spring member 72 enables the first elastic member 71 to extend and retract along the first groove 6 under the drive of the first spring member 72, to move away from the first connector 5 so that the first connector 5 can extend into the first groove 6, and to move toward the first connector 5 to engage with the first connector 5.

[0059] Preferably, the first connector 5 has a protruding first connecting portion, and the first elastic member 71 has a first positioning portion that cooperates with the first connecting portion. The positioning and connection between the first clean plate 1 and the center plate 2 are achieved by the first connecting portion and the first positioning portion engaging.

[0060] like Figure 2 As shown, a first groove 6 is provided within the center plate 2. The first groove 6 has a T-shaped structure. For ease of description, the first groove 6 is described as including a horizontal groove extending in the horizontal direction and a vertical groove extending in the vertical direction. The vertical groove penetrates the top surface of the center plate 2, allowing the first connecting member 5 at the bottom of the first clean plate 1 to extend into the first groove 6 from one side of the vertical groove. When the first connecting member 5 contacts the first elastic member 71 located in the horizontal groove, pressing the first clean plate 1 causes the first connecting member 5 to continue moving along the vertical groove. This causes the first connecting part of the first connecting member 5 to have a contacting force against the first positioning part of the first elastic member 71. The first spring member 72 is compressed laterally, thereby causing the first elastic member 71 to move horizontally. The first connector 5 retracts laterally, providing clearance for the movement of the first connector 5 along the vertical groove. When the bottom surface of the first clean plate 1 contacts the top surface of the center plate 2, the first connector 5 stops moving along the vertical groove. At this time, the first connecting part of the first connector 5 is located below the first positioning part of the first elastic member 71. The elastic force of the compressed first spring member 72 is released, thereby causing the first elastic member 71 to extend laterally. That is, the first elastic member 71 moves relative to the first connector 5 until the first positioning part abuts against and connects to the first connecting part. The position of the first connector 5 in the first groove 6 is limited, realizing the snap-fit ​​connection between the first elastic member 71 and the first connector 5, and finally realizing the positioning and installation between the first clean plate 1 and the center plate 2.

[0061] In a preferred embodiment, the second elastic component 10 includes a second elastic member 101 and a second spring member 102; the second elastic member 101 has a second boss with a raised circumferential surface, one end of the second spring member 102 is abutted and connected to the second boss, and the other end of the second spring member 102 is abutted and connected to the bottom wall of the second groove 9.

[0062] The connection between the second elastic member 101 and the second spring member 102 enables the second elastic member 101 to extend and retract along the second groove 9 under the drive of the second spring member 102, to move away from the second connector 8 so that the second connector 8 can extend into the second groove 9, and to move toward the second connector 8 to engage with the second connector 8.

[0063] Preferably, the second connector 8 has a protruding second connecting portion, and the second elastic member 101 has a second positioning portion that cooperates with the second connecting portion. The positioning between the second clean plate 3 and the center plate 2 is achieved by the snap-fit ​​connection between the second connecting portion and the second positioning portion.

[0064] In a preferred embodiment, the connecting keel 4 includes a first connecting keel 41, a second connecting keel 42, a third connecting keel 43, and a fourth connecting keel 44; the first connecting keel 41 is connected to the front side of the center plate 2, the second connecting keel 42 is connected to the rear side of the center plate 2, the third connecting keel 43 is connected to the first side of the center plate 2, and the fourth connecting keel 44 is connected to the second side of the center plate 2.

[0065] By placing the first connecting keel 41, the second connecting keel 42, the third connecting keel 43, and the fourth connecting keel 44 on the four sides of the center plate 2 respectively, they can surround the center plate 2 and provide isolation and protection. Furthermore, the first connecting keel 41, the second connecting keel 42, the third connecting keel 43, and the fourth connecting keel 44 are detachable, which facilitates later replacement and maintenance.

[0066] In a preferred embodiment, the connecting keel 4 further includes a first corner keel 45, a second corner keel 46, a third corner keel 47, and a fourth corner keel; the first corner keel 45 is connected between the first connecting keel 41 and the third connecting keel 43, the second corner keel 46 is connected between the first connecting keel 41 and the fourth connecting keel 44, the third corner keel 47 is connected between the second connecting keel 42 and the third connecting keel 43, and the fourth corner keel is connected between the second connecting keel 42 and the fourth connecting keel 44.

[0067] One end of the first corner keel 45 can be inserted into the first connecting keel 41, and the other end of the first corner keel 45 can be inserted into the third connecting keel 43, thereby realizing the first corner keel being inserted into the first connecting keel 41 and the third connecting keel 43. Similarly, the second corner keel 46 is inserted into the first connecting keel 41 and the fourth connecting keel 44, the third corner keel 47 is inserted into the second connecting keel 42 and the third connecting keel 43, and the fourth corner keel is inserted into the second connecting keel 42 and the fourth connecting keel 44.

[0068] By setting up the first corner keel 45, the second corner keel 46, the third corner keel 47, and the fourth corner keel, the first connecting keel 41, the second connecting keel 42, the third connecting keel 43, and the fourth connecting keel 44 can be spliced ​​together to form a quadrilateral structure. When any part is damaged, it can be replaced in time. Moreover, during the assembly process, the first corner keel 45 can be adapted to the first connecting keel 41 and the second connecting keel 42 of different lengths according to the different sizes of the cleanroom panels, which improves the adaptability.

[0069] In a preferred embodiment, the side of the first connecting keel 41 facing the first clean plate 1 has a plurality of protruding first buckles 11, and the side of the first clean plate 1 facing the first connecting keel 41 has a first connecting groove corresponding to the first buckle 11. The first connecting groove has a first elastic protrusion 12, and the first buckle 11 can be engaged with the first elastic protrusion 12.

[0070] The first buckle 11 in the first connecting keel 41 and the first elastic protrusion 12 in the first clean plate 1 are connected in a cooperative manner, so that the first connecting keel 41 and the first clean plate 1 can be detachably connected, reducing the use of adhesive and reducing the contaminated area of ​​the first clean plate 1. During the installation process, the first buckle 11 and the first elastic protrusion 12 of the first connecting keel 41 are connected in a corresponding manner, realizing the rapid positioning and assembly between the first clean plate 1 and the first connecting keel 41, further improving the connection strength and the efficiency of rapid assembly and disassembly.

[0071] In a preferred embodiment, the side of the second connecting keel 42 facing the first clean plate 1 has a plurality of protruding second buckles, and the side of the first clean plate 1 facing the second connecting keel 42 has a second connecting groove corresponding to the second buckles. The second connecting groove has a second elastic protrusion, and the second buckle can be engaged with the second elastic protrusion.

[0072] The second buckle in the second connecting keel 42 and the second elastic protrusion in the first clean plate 1 cooperate to connect, so that the second connecting keel 42 and the first clean plate 1 can be detachably connected, reducing the input of adhesive and reducing the contaminated area of ​​the first clean plate 1. During the installation process, the second buckle of the second connecting keel 42 and the second elastic protrusion are connected to each other, realizing the rapid positioning and assembly between the first clean plate 1 and the second connecting keel 42, further improving the connection strength and the efficiency of assembly and disassembly.

[0073] In a preferred embodiment, the first connecting keel 41 is connected to a protruding first plug-in member 13, and the bottom surface of the first clean plate 1 has a first sliding groove for slidingly connecting the first plug-in member 13 and a first plug-in groove 14 communicating with the end of the first sliding groove. The first plug-in member 13 is inserted into the first sliding groove and slidably connected to the first plug-in groove 14 along the first sliding groove.

[0074] The top surface of the first connecting keel 41 has a first plug-in 13 protruding from the top surface. The first plug-in 13 has an L-shaped structure. Specifically, the first plug-in 13 has a first end that is perpendicularly connected to the top surface of the first connecting keel 41 and a second end that extends in a direction parallel to the top surface. The first end and the second end are perpendicularly connected to form an L-shaped structure. The second end of the first plug-in 13 is used to be inserted into the first plug-in groove 14.

[0075] The bottom surface of the first clean plate 1 has an inwardly recessed first groove and a first insertion groove 14 connected to one end of the first groove. The first insertion member 13 slides along the first groove, and the first insertion groove 14 is provided at the end of the first groove along the sliding direction. The first insertion groove 14 is provided inside the first clean plate 1 and has a first insertion interface. The first groove and the first insertion groove 14 are connected through the first insertion interface. With this configuration, in use, when the first connecting keel 41 is installed at the bottom of the first clean plate 1, the first insertion member 13 of the first connecting keel 41 is first inserted into the first groove so that the first insertion member 13 slides along the first groove. The second end of the first insertion member 13 can slide along the first groove until the second end of the first insertion member 13 is inserted into the first insertion groove 14, so that the first insertion member 13 and the first insertion groove 14 are connected, thereby realizing the insertion and fixing between the first connecting keel 41 and the first clean plate 1.

[0076] In a preferred embodiment, the second connecting keel 42 is connected with a protruding second plug-in member. The bottom surface of the first clean plate 1 has a second sliding groove for slidingly connecting the second plug-in member and a second plug-in groove communicating with the end of the second sliding groove. The second plug-in member is inserted into the second sliding groove and slidably connected to the second plug-in groove along the second sliding groove.

[0077] The top surface of the second connecting keel 42 has a second plug-in protruding from the top surface. The second plug-in has an L-shaped structure. Specifically, the second plug-in has a first section that is perpendicularly connected to the top surface of the second connecting keel 42 and a second section that extends in a direction parallel to the top surface. The first section and the second section are perpendicularly connected to form an L-shaped structure. The second section of the second plug-in is used to be inserted into the second plug-in groove.

[0078] The bottom surface of the first clean plate 1 has an inwardly recessed second sliding groove and a second insertion groove connected to one end of the second sliding groove. The second sliding groove penetrates the bottom surface of the first clean plate 1. The second insertion member slides along the second sliding groove. The second insertion groove is provided at the end of the second sliding groove along the sliding direction. The second insertion groove is located inside the first clean plate 1. The second insertion groove has a second insertion interface. The second sliding groove and the second insertion groove are connected through the second insertion interface.

[0079] With this configuration, during use, when the second connecting keel 42 is installed at the bottom of the first clean plate 1, the second connector of the second connecting keel 42 is first inserted into the second sliding groove, so that the second connector slides along the second sliding groove. The second segment of the second connector can slide along the second sliding groove until the second segment of the second connector is inserted into the second connector slot, so that the second connector and the second connector slot are connected to each other, thereby realizing the connection and fixation between the second connecting keel 42 and the first clean plate 1.

[0080] For any parts not mentioned in this utility model, existing technologies can be used or referenced.

[0081] The various embodiments in this specification are described in a progressive manner. The same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on describing the differences from other embodiments.

[0082] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.

Claims

1. A detachable stainless steel cleanroom panel, characterized in that, It includes a first clean panel, a center panel, a second clean panel, and a connecting keel; the first clean panel and the second clean panel are connected to both sides of the center panel; the connecting keel surrounds and connects to the sides of the center panel, and can form a sealed connection with the first clean panel and the second clean panel; The first clean plate has a first connector protruding from the surface of the first clean plate on the side facing the center plate. The center plate has a first groove corresponding to the position of the first connector. A first elastic component is connected in the first groove. The first connector can be inserted into the first groove and snapped into the first elastic component. The second clean plate has a second connector protruding from the surface of the second clean plate on the side facing the center plate. The center plate has a second groove corresponding to the position of the second connector. A second elastic component is connected in the second groove. The second connector can be inserted into the second groove and snapped into the second elastic component. The first connector and the second connector are staggered along the length of the center plate.

2. The detachable stainless steel cleanroom plate according to claim 1, characterized in that, The first elastic component includes a first elastic member and a first spring member; the first elastic member has a first boss with a raised circumferential surface, one end of the first spring member is abutted and connected to the first boss, and the other end of the first spring member is abutted and connected to the bottom wall of the first groove.

3. The detachable stainless steel cleanroom panel according to claim 1, characterized in that, The second elastic component includes a second elastic member and a second spring member; the second elastic member has a second boss with a raised circumferential surface, one end of the second spring member is abutted and connected to the second boss, and the other end of the second spring member is abutted and connected to the bottom wall of the second groove.

4. The detachable stainless steel cleanroom plate according to claim 1, characterized in that, The connecting keel includes a first connecting keel, a second connecting keel, a third connecting keel, and a fourth connecting keel; the first connecting keel is connected to the front side of the center plate, the second connecting keel is connected to the rear side of the center plate, the third connecting keel is connected to the first side of the center plate, and the fourth connecting keel is connected to the second side of the center plate.

5. A detachable stainless steel cleanroom plate according to claim 4, characterized in that, The connecting keel also includes a first corner keel, a second corner keel, a third corner keel, and a fourth corner keel; the first corner keel is connected between the first connecting keel and the third connecting keel, the second corner keel is connected between the first connecting keel and the fourth connecting keel, the third corner keel is connected between the second connecting keel and the third connecting keel, and the fourth corner keel is connected between the second connecting keel and the fourth connecting keel.

6. A detachable stainless steel cleanroom panel according to claim 5, characterized in that, The first connecting keel has a protruding first buckle on the side facing the first clean plate, and the first clean plate has a first connecting groove corresponding to the first buckle on the side facing the first connecting keel. The first connecting groove has a first elastic protrusion, and the first buckle can be engaged with the first elastic protrusion.

7. A detachable stainless steel cleanroom panel according to claim 5, characterized in that, The second connecting keel has a protruding second buckle on the side facing the first clean plate, and the first clean plate has a corresponding second connecting groove on the side facing the second connecting keel. The second connecting groove has a second elastic protrusion, and the second buckle can be engaged with the second elastic protrusion.

8. A detachable stainless steel cleanroom panel according to claim 4, characterized in that, The first connecting keel is connected to a protruding first plug-in member. The bottom surface of the first clean plate has a first sliding groove for slidingly connecting the first plug-in member and a first plug-in groove communicating with the end of the first sliding groove, so that the first plug-in member can be inserted into the first sliding groove and slidably connected to the first plug-in groove along the first sliding groove.

9. A detachable stainless steel cleanroom panel according to claim 4, characterized in that, The second connecting keel is connected to a protruding second plug-in member. The bottom surface of the first clean plate has a second sliding groove for slidingly connecting the second plug-in member and a second plug-in groove communicating with the end of the second sliding groove, so that the second plug-in member can be inserted into the second sliding groove and slidably connected to the second plug-in groove along the second sliding groove.

10. A detachable stainless steel cleanroom panel according to claim 1, characterized in that, The first groove and the second groove are equally spaced along the center line of the center plate.