Anti-static floor with edge telescopic structure

By designing movable components on the anti-static floor, the movable panels can move under different environmental conditions, solving the edge problems caused by the materials due to thermal expansion and contraction of the materials, and achieving dynamic adaptability and maintenance of the anti-static performance of the floor.

CN222991087UActive Publication Date: 2025-06-17XINYU MAIQUAN DECORATION MATERIALS CO LTD
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Patent Information

Application Number
CN202421140205.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-23
Publication Date
2025-06-17
Estimated Expiration
2034-05-23

AI Technical Summary

Technical Problem

Traditional anti-static floors cause cracking of edges, curling or uneven joints due to thermal expansion and contraction of materials when the ambient temperature and humidity change, which affects the aesthetics and anti-static properties and increases maintenance costs.

Method used

An anti-static floor with an edge telescopic structure is designed. By setting movable components between the anti-static board and the movable board, including connecting plates, connecting rods, movable grooves and movable blocks, the movable board is realized, thereby achieving dynamic adaptability of the floor under different environmental conditions.

Benefits of technology

The design ensures the flatness and continuity of the floor surface without sacrificing its anti-static properties, meeting the modern building's need to value both aesthetics and function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-static floor with an edge telescopic structure, which relates to the technical field of anti-static floors and comprises an anti-static plate, a plurality of connecting strips are arranged at the bottom of the anti-static plate, a plurality of movable plates are arranged on the surface of the anti-static plate, and movable components are arranged between the anti-static plate and the movable plates and used for enabling the movable plates to move. The movable assembly comprises a connecting plate, a connecting rod, a movable groove and a movable block. According to the floor, through the movable assembly between the movable plate and the anti-static plate, flatness and continuity of the surface of the floor are guaranteed, the anti-static performance of the floor is not sacrificed, and the requirements of modern buildings for attractiveness and functions are met.
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Description

Technical Field

[0001] The utility model relates to the technical field of ball mills, specifically an anti-static floor with an edge telescopic structure. Background Technique

[0002] When traditional anti-static floors face changes in environmental temperature and humidity, the edges of the floors often crack, warp, or the joints become uneven due to the thermal expansion and contraction characteristics of the materials. This not only affects the aesthetics of the floors but also may reduce their anti-static performance and increase maintenance costs. Especially for large-area laying occasions, the lack of an effective edge telescopic adjustment mechanism will limit the overall stability and service life of the floors.

[0003] In response to the above problems, although some anti-static floors on the market have tried to alleviate them by reserving expansion joints or using flexible materials at the edges, these solutions often fail to effectively solve the dynamic adaptability problem of the floors under different environmental conditions and may sacrifice a certain amount of structural strength and aesthetics. Content of the Utility Model

[0004] The purpose of the utility model is to solve the disadvantages existing in the background technique and provide an anti-static floor with an edge telescopic structure. Through the movable components between the movable plate and the anti-static plate, it not only ensures the flatness and continuity of the floor surface but also does not sacrifice its anti-static performance, meeting the requirements of modern buildings for both aesthetics and functionality.

[0005] To achieve the above purpose, the utility model provides the following technical solution. An anti-static floor with an edge telescopic structure includes: an anti-static plate, a plurality of connecting bars are arranged at the bottom of the anti-static plate, a plurality of movable plates are arranged on the surface of the anti-static plate, and a movable component is arranged between the anti-static plate and the movable plate for the movable plate to be movable. The movable component includes: a connecting plate, a connecting rod, a movable groove, and a movable block.

[0006] Further, both of the two connecting plates are connected to one side surface of the plurality of movable plates, the connecting rod is connected to the top of the connecting plate, a plurality of movable grooves are opened on one side surface of the anti-static plate, movable blocks are arranged inside the plurality of movable grooves, and one end of the connecting rod is connected to the movable block.

[0007] Further, positioning blocks are connected to both side surfaces of the movable block, positioning holes are opened at the top of the positioning blocks, a plurality of fixing holes are opened on the surface of the anti-static plate and are matched with the positioning holes, and positioning rods are arranged inside the positioning holes.

[0008] Further, connecting grooves are opened on one side surface of the plurality of movable plates close to the anti-static plate, a second connecting plate is arranged inside the connecting grooves, and one side surface of the second connecting plate is connected to the surface of the anti-static plate.

[0009] Further, one side of the connecting bar is rotatably connected to a rotating rod through a bearing seat. One end of the rotating rod is connected to a rotating block, and a pressing plate is connected to the surface of the rotating block.

[0010] Further, a plurality of fixing grooves are formed on one side of the anti-static plate. Connecting holes that cooperate with the rotating block are formed inside the plurality of fixing grooves, and openings that cooperate with the pressing plate are formed on the inner wall of the connecting holes.

[0011] Further, cushion blocks are arranged inside the plurality of fixing grooves, and a rubber pad that cooperates with the cushion blocks is arranged on one side of the pressing plate.

[0012] The advantages of the present utility model are that through the movable components between the movable plate and the anti-static plate, the flatness and continuity of the floor surface are ensured, and its anti-static performance is not sacrificed, meeting the requirements of modern architecture for both aesthetics and functionality. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the overall structure of the present utility model.

[0014] Figure 2 It is a cross-sectional view of the overall structure of the present utility model.

[0015] Figure 3 It is a side cross-sectional view of the anti-static plate of the present utility model.

[0016] Figure 4 It is a schematic diagram of the structure of the movable block of the present utility model.

[0017] Figure 5 It is a schematic diagram of the structure of the rotating block of the present utility model.

[0018] Figure 6 In the present utility model Figure 2 Enlarged view of part A.

[0019] Figures 1-6 In the figure: 1. Anti-static plate; 101. Connecting bar; 102. Movable plate; 2. Connecting plate; 201. Connecting rod; 202. Movable groove; 203. Movable block; 204. Positioning block; 205. Positioning hole; 206. Fixing hole; 207. Positioning rod; 208. Connecting groove; 209. Second connecting plate; 3. Rotating rod; 301. Rotating block; 302. Pressing plate; 303. Fixing groove; 304. Connecting hole; 305. Opening. DETAILED DESCRIPTION OF THE INVENTION

[0020] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application.

[0021] An anti-static floor with an edge telescopic structure is provided in an embodiment of the present application. The anti-static floor with an edge telescopic structure.

[0022] The following will detail the anti-static floor with an edge telescopic structure. It should be noted that the description order of the following embodiments does not limit the preferred order of the embodiments.

[0023] The present application will be described in detail below in conjunction with the accompanying drawings and specific implementation manners. Please refer to Figures 1-6 In [the figure], an anti-static floor with an edge telescopic structure provided in this embodiment includes: an anti-static plate 1. A plurality of connecting bars 101 are provided at the bottom of the anti-static plate 1. A plurality of movable plates 102 are provided on the surface of the anti-static plate 1. An activity component is provided between the anti-static plate 1 and the movable plate 102 for the movable plate 102 to be movable. The activity component includes: a connecting plate 2, a connecting rod 201, an activity groove 202, and an activity block 203.

[0024] Among them, two connecting plates 2 are both connected to one side surface of a plurality of movable plates 102. The connecting rod 201 is connected to the top of the connecting plate 2. A plurality of activity grooves 202 are all opened on one side surface of the anti-static plate 1. A plurality of activity blocks 203 are all arranged inside the plurality of activity grooves 202. One end of the connecting rod 201 is connected to the activity block 203. When the movable plate 102 needs to be moved, the connecting rod 201 can be moved through the sliding connection between the activity groove 202 and the activity block 203. When the connecting rod 201 moves, it can drive the connecting plate 2 to move together, so that the movable plate 102 can start to move away from the anti-static plate 1, thus achieving the telescopic effect.

[0025] Among them, positioning blocks 204 are connected to both side surfaces of the activity block 203. Positioning holes 205 are opened at the top of the positioning blocks 204. A plurality of fixing holes 206 that cooperate with the positioning holes 205 are opened on the surface of the anti-static plate 1. A positioning rod 207 is arranged inside the positioning hole 205. Before moving the movable plate 102, first grasp the positioning rod 207, and after grasping, pull the positioning rod 207 outwards. When the positioning rod 207 moves, it will leave the inside of the fixing hole 206. When the positioning rod 207 leaves the inside of the fixing hole 206, the limit fixation of the positioning block 204 is released, so that the activity block 203 can start to move, and thus the movable plate 102 can be moved to meet different installation size requirements.

[0026] Among them, connection grooves 208 are formed on one side surface of a plurality of movable plates 102 close to the anti-static plate 1. A second connecting plate 209 is arranged inside the connection groove 208. One side surface of the second connecting plate 209 is connected to the surface of the anti-static plate 1. When the movable plate 102 moves, the second connecting plate 209 will be exposed, avoiding the appearance of gaps between the anti-static plate 1 and the movable plate 102. At the same time, the materials of the movable plate 102 and the second connecting plate 209 are the same as the material of the anti-static plate 1.

[0027] Among them, one side surface of the connecting bar 101 is rotatably connected to a rotating rod 3 through a bearing seat. One end of the rotating rod 3 is connected to a rotating block 301. A pressing plate 302 is connected to the surface of the rotating block 301. A plurality of fixing grooves 303 are formed on one side surface of the anti-static plate 1. Connection holes 304 that cooperate with the rotating block 301 are formed inside the plurality of fixing grooves 303. An opening 305 that cooperates with the pressing plate 302 is formed on the inner wall of the connection hole 304. When fixing the anti-static plate 1, the rotating block 301 can be rotated so that the position of the pressing plate 302 corresponds to the position of the opening 305. When the position of the pressing plate 302 corresponds to the opening 305, the anti-static plate 1 can be placed, enabling the rotating block 301 to pass through the connection hole 304 and allowing the pressing plate 302 to pass through the opening 305 and enter the inside of the fixing groove 303. After the pressing plate 302 enters the inside of the fixing groove 303, the rotating block 301 can be rotated. After the rotating block 301 rotates, it will drive the pressing plate 302 to rotate together. After the pressing plate 302 rotates, it will move away from the position of the opening 305. After the pressing plate 302 moves away from the inside of the opening 305, it will contact the bottom end of the fixing groove 303, thereby fixing the anti-static plate 1.

[0028] Among them, a cushion block is arranged inside the plurality of fixing grooves 303, and a rubber pad that cooperates with the cushion block is arranged on one side surface of the pressing plate 302. The cushion block in the fixing groove 303 and the rubber pad of the pressing plate 302 can make the pressing plate 302 in close contact with the inside of the fixing groove 303, ensuring the fixing effect of the anti-static plate 1.

[0029] In the above embodiments, the descriptions of the respective embodiments have their own focuses. For the parts not detailed in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0030] The above has introduced in detail an anti-static floor with an edge telescopic structure provided by the embodiments of the present application. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the technical solution and its core idea of the present application; those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. An antistatic floor with an edge telescopic structure, characterized in that: include: An antistatic plate (1), wherein a plurality of connecting strips (101) are arranged at the bottom of the antistatic plate (1), a plurality of movable plates (102) are arranged on the surface of the antistatic plate (1), and a movable component is arranged between the antistatic plate (1) and the movable plate (102) for enabling the movable plate (102) to move, the movable component comprising: a connecting plate (2), a connecting rod (201), a movable groove (202) and a movable block (203); two connecting plates (2) are connected to one side of the plurality of movable plates (102), and the connecting rod (201) is connected to the connecting plate (2). The top of the antistatic plate (1) is provided with a plurality of movable grooves (202) on one side of the antistatic plate (1); a movable block (203) is arranged inside the plurality of movable grooves (202); one end of the connecting rod (201) is connected to the movable block (203); both sides of the movable block (203) are connected to positioning blocks (204); a positioning hole (205) is arranged on the top of the positioning block (204); a plurality of fixing holes (206) matching with the positioning holes (205) are arranged on the surface of the antistatic plate (1); a positioning rod (207) is arranged inside the positioning hole (205).

2. The antistatic floor with edge telescopic structure according to claim 1, characterized in that: A connection groove (208) is provided on a side of the plurality of movable plates (102) close to the antistatic plate (1), a second connection plate (209) is provided inside the connection groove (208), and a side of the second connection plate (209) is connected to the surface of the antistatic plate (1).

3. The antistatic floor with edge telescopic structure according to claim 2, characterized in that: One side of the connecting strip (101) is rotatably connected to a rotating rod (3) via a bearing seat, one end of the rotating rod (3) is connected to a rotating block (301), and the surface of the rotating block (301) is connected to a pressing plate (302).

4. The antistatic floor with edge telescopic structure according to claim 3, characterized in that: A plurality of fixing grooves (303) are provided on one side of the antistatic plate (1); connection holes (304) matching with the rotating block (301) are provided inside the plurality of fixing grooves (303); and openings (305) matching with the pressing plate (302) are provided on the inner walls of the connection holes (304).

5. The antistatic floor with edge telescopic structure according to claim 4, characterized in that: A plurality of said fixing grooves A cushion block is arranged inside (303), and a rubber pad matching with the cushion block is arranged on one side of the pressure plate (302).