Portable purification plate mounting structure

Through the design of the limit block and insertion block of the metal frame, combined with the guide rod and return spring, the problem of difficulty in disassembling the purification plate is solved, the stable installation and high sealing of the purification plate are achieved, and the flexibility and stability of the purification plate are improved.

CN223189919UActive Publication Date: 2025-08-05ANHUI WATER RESOURCES DEV
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Patent Information

Application Number
CN202422765044.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-08-05
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The panels, core materials and connecting frames of the existing purification boards are difficult to disassemble, which limits the flexibility of the purification board and its later maintenance and recycling, and the connection positioning between multiple purification boards is unstable.

Method used

The metal frame structure is adopted, with a first receiving groove in the horizontal frame and a second receiving groove in the mulatto frame. Through the coordination of the limiting block and the insertion block, the purifying plate is stable. Combined with the design of the guide rod and the return spring, the insertion block is ensured to closely cooperate with the purification plate, and the sealing is enhanced by using rubber blocks.

Benefits of technology

It realizes the stable installation and easy disassembly of the purification plate, improves the stability of the metal frame and the sealing performance of the overall structure, and ensures high standards for the purification environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of purification plates, in particular to a portable purification plate mounting structure, which comprises a metal frame for protecting a purification plate, the metal frame is formed by matching a transverse frame and a vertical frame, a first accommodating groove for inserting the purification plate is arranged in the transverse frame, and the purification plate is arranged in the vertical frame through the first accommodating groove. The transverse frames are inserted into the upper ends and the lower ends of the purification plates, second containing grooves for the purification plates to be inserted are formed in the vertical frames, limiting blocks are arranged in the first containing grooves, the two ends of the vertical frames are fixedly connected with insertion blocks, and the positions of the insertion blocks at the head ends and the tail ends of the vertical frames are limited through the limiting blocks in the first containing grooves in the upper ends and the lower ends of the purification plates. And the vertical frame and the transverse frame are matched to form a stable metal frame for accommodating the purification plate, so that the purification plate is convenient to mount and dismount subsequently. By means of the components, a convenient installation structure can be provided for installation of the purification plate.
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Description

Technical Field

[0001] The utility model relates to the technical field of purification boards, and particularly relates to a portable installation structure for purification boards. Background Technique

[0002] Purification boards are mainly composed of a panel, a core material, and a connecting frame. The panel is usually made of materials such as color-coated plates, stainless steel plates, and aluminum alloy plates, and has properties such as dust prevention, anti-static electricity, and antibacterial. The core material is made of materials such as rock wool, silica rock, and polyurethane, and has properties such as sound insulation, heat preservation, and fire prevention. The connecting frame is made of metal materials and can connect the panel and the core material to improve the overall performance and stability of the purification board. However, in the existing purification board technology, the core material is usually extruded between the connecting frame and the panel. Once the panel and the connecting frame are extruded and formed, it is not convenient to disassemble them. This limits the flexibility and later maintenance, recycling, and utilization of the purification board.

[0003] Chinese Patent CN221033501U discloses a purification board installation with flexible disassembly and assembly functions, including a metal frame and a core material. The metal frame is composed of several horizontal frames and vertical frames. The horizontal frames are snap-connected to the vertical frames to form an installation groove, and the core material is located in this installation groove. The vertical frame is provided with a first snap groove and a second snap groove, while the horizontal frame has corresponding first snap blocks and second snap blocks. The first snap block is snap-connected in the first snap groove, and the second snap block is snap-connected in the second snap groove. This design allows the horizontal frame and the vertical frame to be disassembled from each other, enabling the purification board to be assembled and disassembled flexibly. In addition, both the first snap groove and the second snap groove are designed as trapezoids with a wider inner width and a narrower outer width, and rubber strips are provided at both ends of the core material to enhance the structural stability and sealing performance. This structure not only facilitates later recycling and utilization but also allows different types of core materials to be replaced according to needs, thereby improving the applicability and flexibility of the purification board.

[0004] The stability of the vertical frame and the horizontal frame of the device in this patent cannot be guaranteed after snap connection. Only the flexible disassembly and assembly are guaranteed, and the positioning of the connection between multiple purification boards cannot be guaranteed. Content of the Utility Model

[0005] In view of the above problems, a portable installation structure for purification boards is provided, including a metal frame for protecting the purification boards. The metal frame is composed of a horizontal frame and a vertical frame in cooperation. A first receiving groove for inserting the purification board is provided in the horizontal frame. Through the first receiving groove, the horizontal frame is inserted into the upper and lower ends of the purification board. In the vertical frame, a second receiving groove for inserting the purification board is provided. A limiting block is provided in the first receiving groove. Insertion blocks are fixedly connected to both ends of the vertical frame. The positions of the insertion blocks at both ends of the vertical frame are limited by the limiting blocks in the first receiving grooves at the upper and lower ends of the purification board, so that the vertical frame and the horizontal frame cooperate to form a stable metal frame to accommodate the purification board, facilitating the subsequent installation and disassembly of the purification board.

[0006] Preferably, the limiting block is provided with a plurality of through holes, and guide rods matching the number of through holes are provided in the first receiving groove. The guide rods are slidably connected to the through holes, and a return spring for resetting the limiting block is provided on the guide rods. After the insertion block is inserted into the first receiving groove, the insertion block abuts against the limiting block, and the limiting block is reset by the return spring to push the insertion block abutting against it to abut against the purification board.

[0007] Preferably, an insertion port is provided on the side of the first receiving groove for the insertion block to insert. The insertion block enters the first receiving groove through the insertion port. The limiting block is provided with a guiding inclined surface at the abutting part of the insertion port and the insertion block, and the insertion block is provided with an insertion inclined surface at the abutting part of the insertion port and the limiting block. When the insertion block completely enters the first receiving groove through the insertion port, the insertion block is provided with an adapting inclined surface at the contact part with the limiting block for cooperating with the insertion inclined surface.

[0008] Preferably, positioning grooves are provided at both ends of the horizontal frame, and positioning blocks are provided at both ends of the vertical frame. After the insertion block completely enters the first receiving groove through the insertion port, the limiting block is reset to drive the insertion block to move, and the movement of the insertion block drives the vertical frame to move, and the movement of the vertical frame causes the positioning blocks at both ends of it to insert into the positioning grooves on the horizontal frame.

[0009] Preferably, mutually adapting splicing blocks are provided on two adjacent vertical frames. Through the positioning of the splicing blocks, two adjacent purification boards can be accurately spliced without gaps.

[0010] Preferably, rubber blocks are provided between the splicing blocks of the purification board after splicing is completed. The rubber blocks are used to enhance the overall airtightness of the splicing structure.

[0011] The beneficial effects of the present utility model compared with the prior art are:

[0012] 1. The utility model forms a metal frame through the cooperation of a horizontal frame and a vertical frame. Among them, a first accommodation groove is provided in the horizontal frame, a second accommodation groove is arranged in the vertical frame, as well as a limiting block in the first accommodation groove and insertion blocks at both ends of the vertical frame, realizing the stable installation of the purification board. This structural design not only simplifies the installation process but also significantly improves the stability of the metal frame, ensuring the reliability of the purification board during installation and use.

[0013] 2. In the utility model, the combined use of the first accommodation groove and the limiting block, as well as the ingenious design of the guide rod and the return spring, provides accurate guidance and stable positioning for the insertion block. This design allows the purification board to be quickly and accurately installed in place. At the same time, the addition of the return spring ensures the tight fit between the insertion block and the purification board, enhancing the stability and durability of the overall structure.

[0014] 3. The utility model adds rubber blocks between the splicing blocks, further improving the airtight performance after the purification boards are spliced. This design effectively prevents the penetration of air and other substances, ensuring the high-standard requirements of the purification environment. In addition, through the interaction of the guiding inclined surface and the matching inclined surface, the precise fit between the insertion block and the limiting block is achieved, further improving the accuracy and convenience of the installation of the purification board. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three-dimensional view of a portable installation structure for purification boards.

[0016] Figure 2 is a portable installation structure for purification boards Figure 1 exploded view.

[0017] Figure 3 is a three-dimensional view of the metal frame of a portable installation structure for purification boards.

[0018] Figure 4 is a portable installation structure for purification boards Figure 3 partial enlarged view at A in.

[0019] Figure 5 is a front view of a portable installation structure for purification boards.

[0020] Figure 6 is a portable installation structure for purification boards Figure 5 sectional view taken along B - B in.

[0021] Figure 7 is a top view of the horizontal frame of a portable installation structure for purification boards.

[0022] Figure 8 is a portable installation structure for purification boards Figure 7 sectional view taken along C - C in.

[0023] Figure 9 It is a three-dimensional view of a vertical frame of a portable purification board installation structure.

[0024] The reference numerals in the figure are: 1, metal frame; 2, horizontal frame; 21, first receiving groove; 22, limiting block; 221, through hole; 222, guiding inclined surface; 23, guiding rod; 231, return spring; 24, insertion port; 25, positioning groove; 3, vertical frame; 31, second receiving groove; 32, insertion block; 321, insertion inclined surface; 322, adapting inclined surface; 33, positioning block; 4, splicing block; 5, rubber strip. Specific embodiments

[0025] To further understand the features, technical means, specific purposes, and functions achieved by the present invention, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0026] Refer to Figures 1 - 9 : A portable purification board installation structure, including a metal frame 1 for protecting the purification board. The metal frame 1 is composed of a horizontal frame 2 and a vertical frame 3 in cooperation. The horizontal frame 2 is provided with a first receiving groove 21 for inserting the purification board. Through the first receiving groove 21, the horizontal frame 2 is inserted into the upper and lower ends of the purification board. Inside the vertical frame 3, there is a second receiving groove 31 for inserting the purification board. A limiting block 22 is provided in the first receiving groove 21. Insertion blocks 32 are fixedly connected to both ends of the vertical frame 3. The positions of the insertion blocks 32 at both ends of the vertical frame 3 are limited by the limiting blocks 22 in the first receiving grooves 21 at the upper and lower ends of the purification board, so that the vertical frame 3 and the horizontal frame 2 cooperate to form a stable metal frame 1 to accommodate the purification board, facilitating the subsequent installation and disassembly of the purification board.

[0027] In the prior art, the stability of the spliced metal frame 1 cannot be guaranteed. In this regard, in the present invention, the metal frame 1 is composed of a horizontal frame 2 and a vertical frame 3 in cooperation. The horizontal frame 2 is provided with a first receiving groove 21 for inserting the purification board. Through the first receiving groove 21, the horizontal frame 2 is inserted into the upper and lower ends of the purification board. The vertical frame 3 is provided with a second receiving groove 31 for inserting the purification board. A limiting block 22 is provided in the first receiving groove 21, and insertion blocks 32 are fixedly connected to both ends of the vertical frame 3. By using the limiting blocks 22 in the first receiving grooves 21 at the upper and lower ends of the purification board, the positions of the insertion blocks 32 at both ends of the vertical frame 3 can be limited, so that the vertical frame 3 and the horizontal frame 2 can cooperate to form a stable integral metal frame 1, thereby accommodating and protecting the purification board. This design makes the installation process of the metal frame 1 simpler than the prior art. While being simple to install, the stability of the metal frame 1 is also better, and this structural design facilitates the subsequent installation and disassembly of the purification board.

[0028] Reference Figures 3 - 9 : The limiting block 22 is provided with a plurality of through holes 221. A guide rod 23 matching the number of the through holes 221 is arranged in the first receiving groove 21. The guide rod 23 is slidably connected with the through holes 221. A return spring 231 for resetting the limiting block 22 is arranged on the guide rod 23. After the insertion block 32 is inserted into the first receiving groove 21, the insertion block 32 abuts against the limiting block 22, and the limiting block 22 is reset by the return spring 231 to push the insertion block 32 in abutment with it to abut against the purification plate.

[0029] The limiting block 22 is provided with a plurality of through holes 221, and the number of these through holes 221 matches the number of the guide rods 23 in the first receiving groove 21. The guide rods 23 are designed to be slidably connected with the through holes 221, allowing the limiting block 22 to move on the guide rods 23. The guide rods 23 are equipped with return springs 231. The function of these springs is to push the limiting block 22 to reset when the insertion block 32 is inserted into the first receiving groove 21 and abuts against the limiting block 22. The reset action of the limiting block 22 further pushes the insertion block 32 to closely abut against the purification plate, ensuring that the purification plate is firmly installed in the metal frame 1, realizing the convenient installation and disassembly of the purification plate.

[0030] Reference Figures 3 - 9 : An insertion port 24 is provided on the side of the first receiving groove 21 for the insertion block 32 to insert. The insertion block 32 enters the first receiving groove 21 through the insertion port 24. The limiting block 22 is provided with a guiding inclined surface 222 at the abutting part of the insertion port 24 and the insertion block 32. The insertion block 32 is provided with an insertion inclined surface 321 at the abutting part of the insertion port 24 and the limiting block 22. After the insertion block 32 completely enters the first receiving groove 21 through the insertion port 24, the insertion block 32 is provided with an adapting inclined surface 322 matching the insertion inclined surface 321 at the contact part with the limiting block 22.

[0031] An insertion port 24 is provided on the side of the first receiving groove 21, specifically for the insertion of the insertion block 32. The insertion block 32 enters the first receiving groove 21 through this insertion port 24. During the insertion process, the limiting block 22 is designed with a guiding inclined surface 222 at the insertion port 24, which interacts with the abutting part of the insertion block 32 - that is, the insertion inclined surface 321 on the insertion block 32. This design enables the insertion block 32 to smoothly slide into the first receiving groove 21 along the guiding inclined surface 222. After the insertion block 32 completely enters the first receiving groove 21 through the insertion port 24, the adapting inclined surface 322 on the insertion block 32 cooperates with the guiding inclined surface 222 on the limiting block 22 to ensure that the insertion block 32 is correctly positioned and firmly abuts against the limiting block 22, completing the installation of the purification plate.

[0032] Reference Figures 3 - 9: The two ends of the horizontal frame 2 are provided with positioning grooves 25, and the two ends of the vertical frame 3 are provided with positioning blocks 33. When the insertion block 32 completely enters the first receiving groove 21 through the insertion opening 24, the limiting block 22 resets to drive the insertion block 32 to move. The movement of the insertion block 32 drives the vertical frame 3 to move, and the movement of the vertical frame 3 causes the positioning blocks 33 at its two ends to be inserted into the positioning grooves 25 on the horizontal frame 2.

[0033] The two ends of the horizontal frame 2 are designed with positioning grooves 25, while the two ends of the vertical frame 3 are equipped with positioning blocks 33. During the installation process, the insertion block 32 first completely enters the first receiving groove 21 through the insertion opening 24, triggering the reset of the limiting block 22, and then driving the insertion block 32 to move along the first receiving groove 21. The movement of the insertion block 32 further prompts the vertical frame 3 to move along its length direction until the positioning blocks 33 at the two ends of the vertical frame 3 are accurately inserted into the positioning grooves 25 on the horizontal frame 2, completing the stable installation of the purification board. This series of actions ensures the rapid installation and precise positioning of the purification board.

[0034] Refer to Figure 2 : On two adjacent vertical frames 3, there are splicing blocks 4 that are adapted to each other. Through the positioning of the splicing blocks 4, two adjacent purification boards can be accurately spliced without gaps.

[0035] Between two adjacent metal frames 1, the vertical frame 3 is designed with splicing blocks 4 that are adapted to each other. Through the positioning function of these splicing blocks 4, two adjacent purification boards can be accurately aligned during splicing, achieving a tight splicing without leaving any gaps, ensuring the integrity and sealing of the purification board installation.

[0036] Refer to Figure 2 : Between the splicing blocks 4 of the purification board after splicing, there are rubber blocks, and the rubber blocks are used to enhance the overall airtightness of the assembled structure. [[ID=##]]

[0037] These rubber blocks play a role after the purification board is spliced, mainly used to enhance the overall airtightness of the spliced structure, thereby ensuring seamless docking between the purification boards, preventing air leakage or penetration of other substances, and improving the sealing performance of the purification board installation structure.

[0038] The above embodiments only represent one or several implementation manners of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims

1. A convenient purification panel installation structure, comprising a metal frame (1) for protecting the purification panel, characterized in that: The metal frame (1) is formed by a horizontal frame (2) and a vertical frame (3). The horizontal frame (2) is provided with a first receiving groove (21) for inserting the purification plate. The horizontal frame (2) is inserted into the upper and lower ends of the purification plate through the first receiving groove (21). The vertical frame (3) is provided with a second receiving groove (31) for inserting the purification plate. The first receiving groove (21) is provided with a limiting block (22). The two ends of the vertical frame (3) are fixedly connected with the insertion blocks (32). The positions of the insertion blocks (32) at the head and tail ends of the vertical frame (3) are limited by the limiting blocks (22) in the first receiving grooves (21) at the upper and lower ends of the purification plate, so that the vertical frame (3) and the horizontal frame (2) cooperate to form a stable metal frame (1) to accommodate the purification plate, thereby facilitating the subsequent installation and removal of the purification plate.

2. A portable purification panel installation structure according to claim 1, characterized in that: The limit block (22) is provided with a plurality of through holes (221), and a guide rod (23) matching the number of the through holes (221) is provided in the first receiving groove (21). The guide rod (23) is slidably connected to the through holes (221), and a return spring (231) for returning the limit block (22) is provided on the guide rod (23). After the insertion block (32) is inserted into the first receiving groove (21), the insertion block (32) abuts against the limit block (22), and the limit block (22) is reset by the return spring (231), pushing the insertion block (32) abutting against it to abut against the purification plate.

3. A portable purification panel installation structure according to claim 2, characterized in that: The first receiving groove (21) is provided with an insertion opening (24) on the side thereof for inserting the insertion block (32). The insertion block (32) enters the first receiving groove (21) through the insertion opening (24). The limiting block (22) is provided with a guide inclined surface (222) at the abutting portion between the insertion opening (24) and the insertion block (32). The insertion block (32) is provided with an insertion inclined surface (321) at the abutting portion between the insertion opening (24) and the limiting block (22). When the insertion block (32) completely enters the first receiving groove (21) through the insertion opening (24), the insertion block (32) is provided with an adapting inclined surface (322) that matches the insertion inclined surface (321) at the contact portion with the limiting block (22).

4. A portable purification panel installation structure according to claim 1, characterized in that: The transverse frame (2) is provided with positioning grooves (25) at both ends, and the vertical frame (3) is provided with positioning blocks (33) at both ends. When the insertion block (32) completely enters the first receiving groove (21) through the insertion opening (24), the limit block (22) is reset to drive the insertion block (32) to move, and the movement of the insertion block (32) drives the vertical frame (3) to move. The movement of the vertical frame (3) causes the positioning blocks (33) at both ends thereof to be inserted into the positioning grooves (25) on the transverse frame (2).

5. The portable purification panel installation structure according to claim 1, characterized in that: Two adjacent vertical frames (3) are provided with mutually adapted splicing blocks (4). By positioning the splicing blocks (4), two adjacent purification panels can be accurately spliced together without leaving any gaps.

6. A portable purification panel installation structure according to claim 5, characterized in that: Rubber blocks are provided between the splicing blocks (4) of the purification plate after splicing is completed, and the rubber blocks are used to enhance the airtightness of the entire splicing structure.

Citation Information

Patent Citations

  • A purification panel installation structure with flexible disassembly and assembly functions

    CN221033501U