A pre-coated plate with a quick docking positioning structure and a docking structure thereof

By setting components such as pressure stabilizing grooves, moving grooves, connecting columns, and driving columns on the pre-coated plate, the pre-coated plate can be quickly connected and easily disassembled, solving the problem of cumbersome installation of existing pre-coated plates and improving the flexibility and convenience of operation.

CN122190437APending Publication Date: 2026-06-12JIANGSU JUNAN NEW MATERIAL SCI & TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGSU JUNAN NEW MATERIAL SCI & TECH CO LTD
Filing Date
2026-04-29
Publication Date
2026-06-12

AI Technical Summary

Technical Problem

The existing pre-coated panels have a complicated installation and removal process, making replacement or maintenance inconvenient.

Method used

A pre-coated plate with a quick docking and positioning structure was designed. By setting components such as pressure stabilizing groove, moving groove, through-joint column, positioning block and driving column on the pre-coated plate body, the quick docking and disassembly of the pre-coated plate can be realized. Stable connection and convenient separation can be achieved by using the cooperation of through-joint opening, positioning groove and elastic pressure plate.

Benefits of technology

It enables rapid and stable docking and convenient disassembly of multiple pre-coated panels, improving the convenience and flexibility of installation and disassembly.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122190437A_ABST
    Figure CN122190437A_ABST
Patent Text Reader

Abstract

The application discloses a pre-coated plate with a quick butt joint positioning structure and a butt joint structure thereof, which comprises a pre-coated plate body, a driving column, a moving plate strip, a penetrating column, a positioning block and an elastic pressing plate. The pre-coated plate with the quick butt joint positioning structure is designed, so that multiple pre-coated plates can be quickly and stably butt jointed, and the stable butt joint structure of two pre-coated plates is realized. The pre-coated plate is flexible and convenient to use. When being disassembled, the driving column is directly rotated, the positioning block is separated from the positioning groove, the pre-coated plate is moved upwards, the two pre-coated plates are separated, and the disassembly is convenient.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention belongs to the technical field of connection structure of pre-coated plates, and particularly relates to a pre-coated plate with a quick docking and positioning structure and its docking structure. Background Technology

[0002] Currently, pre-coated panels are widely used. They are resistant to aging, have good water resistance, and maintain a bright appearance, giving a clean look. Pre-coated panels are widely used in various fields such as subways, hospitals, tunnels, schools, stadiums, laundries, and office buildings. They demonstrate their superior performance in damp environments, such as kitchens, bathrooms, and balconies. Existing pre-coated panel installations often require multiple panels to be laid together to achieve a sealed surface. In current methods, multiple panels are sometimes connected by screws for stable installation. However, this structure is cumbersome to install and disassemble, and inconvenient for replacement or maintenance. Therefore, it is necessary to upgrade the existing structure to improve the ease of installation and disassembly of multiple pre-coated panels and enhance the flexibility of the drive operation. Summary of the Invention

[0003] To address the shortcomings of the prior art, the present invention provides a pre-coated plate and its docking structure that are convenient to install and disassemble, flexible in use, and have a quick docking and positioning structure.

[0004] To solve the above problems, the technical solution adopted by the present invention is as follows: A pre-coated plate with a quick-connection and positioning structure includes a pre-coated plate body, a drive column, a movable strip, a through-joint column, a positioning block, and an elastic pressure plate. The front end of the pre-coated plate body is provided with a pressure-stabilizing groove; the rear end of the pre-coated plate body is provided with a movable groove; a movable strip is slidably installed within the movable groove; multiple through-joint columns are evenly installed on the outer side of the movable strip, with their outer ends extending through the movable groove; positioning blocks are respectively installed on the outer ends of the through-joint columns; the drive column is rotatably engaged with the movable groove; the drive column is threadedly connected to the middle of the movable strip; an elastic pressure plate is telescopically installed within the pressure-stabilizing groove; multiple through-joint openings are evenly opened on the outer side of the pressure-stabilizing groove, extending downwards to the lower edge of the pressure-stabilizing groove; positioning grooves are respectively opened on the upper side of the through-joint openings.

[0005] Furthermore, the upper side of the movable slat is provided with multiple limiting rods; the upper side of the movable groove is provided with multiple limiting sliding grooves; the limiting rods are slidably engaged with the limiting sliding grooves.

[0006] Furthermore, multiple through channels are evenly opened on the outer side of the moving groove; the outer ends of the through columns extend out through the through channels respectively.

[0007] Furthermore, a drive opening is provided at the lower center of the pre-coated plate body; the outer end of the drive column extends to the drive opening.

[0008] Furthermore, the inner side of the pressure stabilizing groove is provided with multiple pressure-resistant channels; each pressure-resistant channel is provided with a pressure-resistant spring; the inner side of the elastic pressure plate is provided with multiple insertion posts; the insertion posts are inserted into the pressure-resistant channels, and the pressure-resistant springs elastically press against the inner end of the insertion posts outward.

[0009] Furthermore, the movable strip has a threaded channel in the middle; the drive column is rotatably screwed into the threaded channel.

[0010] Furthermore, the positioning blocks are distributed on the upper side of the outer end of the through-post.

[0011] A docking structure for a pre-coated plate with a quick docking positioning structure is provided. Two pre-coated plates are selected, designated as a first pre-coated plate and a second pre-coated plate. Multiple through-pins and positioning blocks at the rear end of the first pre-coated plate are pressed into the second pre-coated plate from below multiple through-openings at the front end, allowing the through-pins and positioning blocks to enter the pressure-stabilizing groove of the second pre-coated plate. Simultaneously, multiple positioning blocks on the first pre-coated plate press inward against the elastic pressure plate on the second pre-coated plate. Then, the first pre-coated plate is moved upward and aligned, causing the positioning blocks of the first pre-coated plate to move upward to the outside of the positioning groove of the second pre-coated plate. Finally, the first pre-coated plate is rotated... The drive column on the first pre-coated plate moves the movable strip, which in turn moves the connecting column and positioning block synchronously. This allows multiple positioning blocks of the first pre-coated plate to insert into the positioning grooves of the second pre-coated plate. At the same time, the elastic pressure plate on the second pre-coated plate presses against the outside of the multiple positioning blocks of the first pre-coated plate, thus achieving a stable docking structure between the first and second pre-coated plates. During disassembly, the drive column on the first pre-coated plate is rotated in the opposite direction, causing the multiple positioning blocks of the first pre-coated plate to disengage from the positioning grooves of the second pre-coated plate. Finally, the first pre-coated plate is pulled down, allowing the first and second pre-coated plates to be disassembled and separated.

[0012] The beneficial effects of this invention are as follows: This invention designs a pre-coated plate with a quick-connection and positioning structure, enabling rapid and stable docking of multiple pre-coated plates. Multiple through-holes are evenly distributed on the outer side of the pressure-stabilizing groove of the pre-coated plate. This allows multiple through-holes and positioning blocks of another pre-coated plate to press and penetrate from below these openings at the front end of the first pre-coated plate. The through-holes and positioning blocks are then moved upwards, aligning the positioning blocks with the positioning groove. Rotating the drive column moves the moving strip, which in turn moves the through-holes and positioning blocks synchronously, allowing multiple positioning blocks of one pre-coated plate to insert into the positioning groove of another pre-coated plate. Simultaneously, the elastic pressure plate of the other pre-coated plate presses outwards against the outer side of the positioning blocks of the first pre-coated plate. This achieves a stable docking structure between the two pre-coated plates, offering flexibility and convenience. Disassembly is also straightforward: simply rotate the drive column to separate the positioning blocks from the positioning groove, then move the pre-coated plate upwards to separate the two pre-coated plates. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of the pre-coated plate of the present invention.

[0014] Figure 2 This is a schematic diagram of the structure for positioning the two pre-coated plates together according to the present invention.

[0015] Figure 3 For the present invention Figure 2 A partially enlarged structural diagram.

[0016] Figure 4 For the present invention Figure 3 A schematic diagram of the structure in which the positioning block and the positioning groove are separated.

[0017] Figure 5 This is a side view of the through-hole and positioning groove of the voltage stabilizing groove of the present invention.

[0018] Figure 6 This is a side view of the multiple through-posts of the movable groove of the present invention. Detailed Implementation

[0019] The invention will now be described in further detail with reference to the accompanying drawings.

[0020] like Figures 1 to 6As shown, a pre-coated plate with a quick docking and positioning structure includes a pre-coated plate body 1, a drive column 2, a movable strip 3, a through-pin 4, a positioning block 5, and an elastic pressure plate 6. The front end of the pre-coated plate body 1 is provided with a pressure stabilizing groove 11; the rear end of the pre-coated plate body 1 is provided with a movable groove 12; a movable strip 3 is slidably installed in the movable groove 12; multiple through-pins 4 are evenly installed on the outer side of the movable strip 3, with the outer ends of the multiple through-pins 4 extending out of the movable groove 12; positioning blocks 5 are respectively installed on the outer ends of the through-pins 4; the drive column 2 is rotatably snapped onto the movable groove 12; the drive column 2 is threadedly connected to the middle of the movable strip 3; an elastic pressure plate 6 is telescopically installed in the pressure stabilizing groove 11; multiple through-pin openings 13 are evenly opened on the outer side of the pressure stabilizing groove 11, extending downwards to the lower edge of the pressure stabilizing groove 11; positioning grooves 14 are respectively opened on the upper side of the through-pin openings 13.

[0021] like Figures 1 to 6 As shown, in order to improve the stable sliding performance of the movable slat 3, a plurality of limiting rods 31 are provided on the upper side of the movable slat 3; a plurality of limiting sliding grooves 15 are opened on the upper side of the movable groove 12; and the limiting rods 31 are slidably engaged with the limiting sliding grooves 15.

[0022] like Figures 1 to 6 As shown, in order to facilitate the multiple through-pins 4 to pass through the side of the moving groove 12, multiple through-channels are evenly opened on the outer side of the moving groove 12; the outer ends of the through-pins 4 extend out through the through-channels respectively.

[0023] like Figures 1 to 6 As shown, in order to facilitate the rotation of the drive column 2, a drive opening 16 is provided at the lower center of the pre-coated plate body 1; the outer end of the drive column 2 extends to the drive opening 16.

[0024] like Figures 1 to 6 As shown, in order to generate outward pressure on the elastic pressure plate 6 and improve the insertion stability of the multiple positioning blocks 5, the inner side of the pressure stabilizing groove 11 is further provided with multiple pressure channels 17; each pressure channel 17 is provided with a pressure spring 7; the inner side of the elastic pressure plate 6 is provided with multiple insertion posts 61; the insertion posts 61 are inserted into the pressure channels 17, and the pressure spring 7 elastically presses against the inner end of the insertion post 61 outward.

[0025] like Figures 1 to 6 As shown, to facilitate the threaded connection of the drive column 2, a threaded channel is further provided in the middle of the movable strip 3; the drive column 2 is rotatably screwed into the threaded channel. Furthermore, the positioning blocks 5 are distributed on the upper side of the outer end of the through-column 4.

[0026] like Figures 1 to 6As shown, a docking structure for a pre-coated plate with a quick docking positioning structure is described. Two pre-coated plates are selected: a first pre-coated plate 8 and a second pre-coated plate 9. Multiple through-pins 4 and positioning blocks 5 at the rear end of the first pre-coated plate 8 are pressed into the second pre-coated plate 9 from below multiple through-openings 13 at the front end, causing the through-pins 4 and positioning blocks 5 to enter the pressure stabilizing groove 11 of the second pre-coated plate 9. Simultaneously, the multiple positioning blocks 5 on the first pre-coated plate 8 press inward against the elastic pressure plate 6 on the second pre-coated plate 9. Then, the first pre-coated plate 8 is moved upward and aligned, causing the positioning blocks 5 of the first pre-coated plate 8 to move upward to the outside of the positioning groove 14 of the second pre-coated plate 9. Finally, the first pre-coated plate 8 is rotated... The drive column 2 on the first pre-coated plate 8 causes the movable strip 3 to move. The movable strip 3 drives the through column 4 and the positioning block 5 to move synchronously, so that the multiple positioning blocks 5 of the first pre-coated plate 8 are inserted into the positioning groove 14 of the second pre-coated plate 9. At the same time, the elastic pressure plate 6 on the second pre-coated plate 9 presses against the outside of the multiple positioning blocks 5 of the first pre-coated plate 8, thus realizing a stable docking structure between the first pre-coated plate 8 and the second pre-coated plate 9. When disassembling, the drive column 2 on the first pre-coated plate 8 is rotated in the opposite direction, so that the multiple positioning blocks 5 of the first pre-coated plate 8 are disengaged from the positioning groove 14 of the second pre-coated plate 9. Finally, the first pre-coated plate 8 is pulled down, so that the first pre-coated plate 8 and the second pre-coated plate 9 are disassembled and separated.

[0027] This invention designs a pre-coated plate with a quick docking and positioning structure, which allows multiple pre-coated plates to be quickly and stably docked. By evenly opening multiple through-holes 13 on the outer side of the pressure stabilizing groove 11 of the pre-coated plate, multiple through-holes 4 and positioning blocks 5 of another pre-coated plate can be pressed into the pre-coated plate from below the multiple through-holes 13 at the front end of the pre-coated plate. Then, the multiple through-holes 4 and positioning blocks 5 are moved upward, so that the positioning blocks 5 are aligned with the positioning groove 14. Then, the drive column 2 is rotated, so that the moving plate 3 moves. The moving plate 3 drives the through-holes 4 and positioning blocks 5 to move synchronously, so that the multiple positioning blocks 5 of one pre-coated plate are inserted into the positioning groove 14 of another pre-coated plate. At the same time, the elastic pressure plate 6 of the other pre-coated plate presses against the outside of the multiple positioning blocks 5 of one pre-coated plate. This achieves a stable docking structure for the two pre-coated plates, which is flexible and convenient to use. When disassembling, simply rotate the drive column 2 to separate the positioning blocks 5 from the positioning groove 14, and then move the pre-coated plate upward to separate the two pre-coated plates. This makes disassembly convenient.

[0028] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A pre-coated plate with a quick-connection and positioning structure, characterized in that, The device includes a pre-coated plate body, a drive column, a movable strip, a connecting column, a positioning block, and an elastic pressure plate. The front end of the pre-coated plate body has a pressure-stabilizing groove; the rear end of the pre-coated plate body has a movable groove; a movable strip is slidably installed within the movable groove; multiple connecting columns are evenly installed on the outer side of the movable strip, with their outer ends extending through the movable groove; positioning blocks are respectively installed on the outer ends of the connecting columns; the drive column is rotatably engaged with the movable groove; the drive column is threadedly connected to the middle of the movable strip; an elastic pressure plate is telescopically installed within the pressure-stabilizing groove; multiple connecting openings are evenly opened on the outer side of the pressure-stabilizing groove, extending downwards to the lower edge of the pressure-stabilizing groove; positioning grooves are respectively opened on the upper side of the connecting openings.

2. The pre-coated plate with a quick docking and positioning structure according to claim 1, characterized in that, The upper side of the movable slat is provided with multiple limiting rods; the upper side of the movable groove is provided with multiple limiting sliding grooves; the limiting rods are slidably engaged with the limiting sliding grooves.

3. The pre-coated plate with a quick docking and positioning structure according to claim 1, characterized in that, Multiple through channels are evenly opened on the outer side of the moving groove; the outer ends of the through columns extend out through the through channels respectively.

4. The pre-coated plate with a quick docking and positioning structure according to claim 1, characterized in that, The pre-coated plate body has a drive opening at the lower center; the outer end of the drive column extends to the drive opening.

5. The pre-coated plate with a quick docking and positioning structure according to claim 1, characterized in that, The pressure stabilizing groove has multiple pressure-resistant channels on its inner side; each pressure-resistant channel is equipped with a pressure-resistant spring; the elastic pressure plate has multiple insertion posts on its inner side; the insertion posts are inserted into the pressure-resistant channels, and the pressure-resistant springs elastically press against the inner end of the insertion posts outward.

6. The pre-coated plate with a quick docking and positioning structure according to claim 1, characterized in that, The movable plate has a threaded channel in the middle; the drive column is rotatably screwed into the threaded channel.

7. The pre-coated plate with a quick docking and positioning structure according to claim 1, characterized in that, The positioning blocks are distributed on the upper side of the outer end of the through-post.

8. A docking structure for a pre-coated plate with a quick docking positioning structure according to claim 1, characterized in that, Two pre-coated plates are selected, namely a first pre-coated plate and a second pre-coated plate. Multiple through-pins and positioning blocks at the rear end of the first pre-coated plate are pressed into the second pre-coated plate from below multiple through-openings at the front end, causing the through-pins and positioning blocks to enter the pressure-stabilizing groove of the second pre-coated plate. Simultaneously, multiple positioning blocks on the first pre-coated plate press inward against the elastic pressure plate on the second pre-coated plate. Then, the first pre-coated plate is moved upward and aligned, causing the positioning blocks of the first pre-coated plate to move upward to the outside of the positioning groove of the second pre-coated plate. Finally, by rotating the drive pin on the first pre-coated plate, the moving plate... The first pre-coated plate moves synchronously with the connecting post and positioning block by moving the plate strip, so that multiple positioning blocks of the first pre-coated plate are inserted into the positioning groove of the second pre-coated plate. At the same time, the elastic pressure plate on the second pre-coated plate presses against the outside of the multiple positioning blocks of the first pre-coated plate, thus achieving a stable docking structure between the first and second pre-coated plates. During disassembly, the driving post on the first pre-coated plate is rotated in the opposite direction, so that the multiple positioning blocks of the first pre-coated plate are disengaged from the positioning groove of the second pre-coated plate. Finally, the first pre-coated plate is pulled down, so that the first and second pre-coated plates are disassembled and separated.