High-strength anti-static floor

Through innovative design of the frame, connecting pipes, support leg components, and auxiliary support components, the problems of inconvenient installation and insufficient strength of antistatic flooring have been solved, achieving rapid installation and high-strength antistatic flooring, and enhancing the stability and antistatic performance of the flooring.

CN224106797UActive Publication Date: 2026-04-10QINGDAO RUNTIAN ENVIRONMENTAL PROTECTION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing antistatic flooring is not quick to install, lacks stability, has low overall strength, and is prone to deformation and damage in the middle.

Method used

The design incorporates a frame, connecting pipes, leg components, and auxiliary support components. It enables rapid installation and positioning through magnetic and bolt connections. The overall strength is enhanced by using high-strength metal materials and an aluminum alloy frame, and the floor structure is reinforced by reinforcing seats and auxiliary support components.

Benefits of technology

It enables rapid assembly and stability of the flooring, improves the overall strength and service life of the flooring, and enhances the anti-static properties and resistance to deformation of the flooring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of floors, and discloses a high-strength anti-static floor which comprises a frame, a floor body, connecting pipes, supporting leg assemblies and auxiliary supporting assemblies. Floors are fixedly arranged on the frames; the plurality of supporting leg assemblies are uniformly distributed and arranged to form a plurality of squares; the square support assemblies are jointly, detachably and fixedly provided with a frame. The frame is clamped with the four corresponding support assemblies; every two adjacent supporting leg assemblies are detachably and fixedly connected through a connecting pipe. An auxiliary supporting assembly is detachably and fixedly arranged below each frame. According to the utility model, rapid assembly of the connecting pipe, the supporting leg assembly and the frame is realized, and the working efficiency is improved; the ground is supported and protected through the frame, and the overall strength of the floor is improved; the frame and the floor can be supported in an auxiliary mode through the auxiliary supporting assembly, and the overall strength of the floor is further improved; the auxiliary supporting assembly is connected with the frame in a magnetic attraction mode, and rapid installation and positioning can be achieved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of floor, in particular to a high-strength anti-static floor. BACKGROUND

[0002] The anti-static technology of computer room belongs to part of computer room safety and protection. Problems caused by static electricity are difficult for hardware personnel to find out, and sometimes software personnel mistakenly think that it is a software failure, thereby causing work confusion. Anti-static floor is used in computer room design and construction. Anti-static floor, also known as dissipative static floor, can dissipate static electricity when it is grounded or connected to any lower potential point.

[0003] The prior art with the publication number CN220395086U provides an anti-static floor with high strength, which comprises a PVC anti-static floor, mounting beams and sound insulation pads. The bottom of the PVC anti-static floor is provided with reinforcing ribs at equal intervals. Four groups of mounting beams are placed on the outer side of the bottom of the PVC anti-static floor. The bottom of the mounting beam is provided with a support. The top of the support is fixedly provided with a top plate. The bottom of the PVC anti-static floor is provided with a sound insulation pad. The bottom of the sound insulation pad is provided with a lightweight foamed cement board. Four groups of feet are installed on the bottom of the lightweight foamed cement board. In the use process, the reinforcing ribs can improve the structural strength of the PVC anti-static floor, thereby improving the stress capacity of the PVC anti-static floor, making the PVC anti-static floor more stable and durable when bearing on the top, and the sound insulation pad can absorb the collision noise on the top of the PVC anti-static floor and block the noise from the floor below, so that people can obtain better use experience.

[0004] The prior art in the above has the following defects although the structure of the prior art can achieve the beneficial effects: 1. The floor of the prior art is not convenient and fast to install, and the stability of the floor after installation is not enough. 2. The overall strength of the floor is not high, especially the middle position of the floor is easy to deform and damage when being pressed by heavy objects.

[0005] In view of this, we propose a high-strength anti-static floor. SUMMARY

[0006] 1. Technical problem to be solved

[0007] 1. The purpose of the application is to provide a high-strength anti-static floor, which solves the technical problems proposed in the background art, realizes the rapid assembly of the connecting pipe, the supporting leg assembly and the frame, improves the work efficiency, supports and protects the floor through the frame, improves the overall strength of the floor, can assist the frame and the floor through the auxiliary supporting assembly, and further improves the overall strength of the floor. The auxiliary supporting assembly is connected to the frame through magnetic attraction, which can realize the beneficial effects of rapid installation and positioning.

[0008] 2. Technical solution

[0009] The technical solution of the present application provides a high-strength anti-static floor, comprising: a frame, a floor, a connecting pipe, a leg assembly, and an auxiliary support assembly.

[0010] The number of frames, floors, connecting pipes, leg assemblies, and auxiliary support assemblies is several.

[0011] The frame is fixedly provided with a floor; the floor can be fixed on the frame by bonding or screw connection. A stable overall structure is formed, effectively preventing the floor from loosening or shifting during use.

[0012] The several leg assemblies are arranged in several squares; the leg assemblies in each square are fixedly provided with a frame which can be disassembled; the frame is connected with the corresponding four leg assemblies.

[0013] The adjacent two leg assemblies are connected by the connecting pipe; the connecting pipe and the leg assembly are made of high-strength metal material, and the surface is treated by anti-rust treatment, such as hot-dip galvanizing, anti-rust paint spraying, etc. The hot-dip galvanizing process can form a dense zinc layer on the surface of the metal, effectively isolating air and moisture, preventing metal rust and corrosion; the anti-rust paint spraying can select different performance paints according to actual needs, such as epoxy zinc-rich paint with excellent corrosion resistance, etc., to ensure the stability and durability of long-term use. The connecting mode of the connecting pipe and the leg assembly can adopt bolt connection or buckle connection, the bolt connection can provide reliable connection strength, and the buckle connection is simple to operate, convenient for quick installation and disassembly.

[0014] The auxiliary support assembly is fixedly arranged under each frame. The auxiliary support assembly provides auxiliary support for the frame and the floor, and provides overall strength. The auxiliary support assembly provides auxiliary support for the frame and the floor, greatly improving the overall strength. When bearing a large load, the auxiliary support assembly can share part of the pressure, reduce the deformation amount of the frame and the floor, and prolong the service life of the floor.

[0015] The frame is made of aluminum alloy material.

[0016] According to the above technical solution, the connecting pipe and the leg assembly are connected together to form several squares, the auxiliary support assembly is installed under the frame, and then the frame is connected and installed between the frame and the floor. A large-area bottom plate is formed, and the overall strength of the bottom plate is improved by the frame and the auxiliary support assembly.

[0017] As an optional scheme of the utility model, a floor clamping groove is formed in the upper part of the frame, and the floor is installed in the floor clamping groove and can be fixed by bonding or screwing.

[0018] The reinforcing seat is fixedly arranged below the frame and is fixedly connected with the frame, and can be fixed by welding.

[0019] The square grooves can be filled with soundproofing materials, heat-insulating materials, fireproofing materials and other beneficial materials according to actual requirements.

[0020] The square column is fixedly arranged at each of the four corners of the lower side of the reinforcing seat, and the clamping grooves are arranged in the square column.

[0021] According to the above technical scheme, the floor is fixedly installed into the floor clamping groove of the frame, and the frame is positioned and fixed by the square column.

[0022] As an optional scheme of the utility model, the supporting leg assembly comprises a supporting leg, a bottom plate, a supporting plate, a positioning seat, a positioning column and a plug-in assembly.

[0023] The bottom plate is fixedly arranged below the supporting leg, and the rubber pad is arranged below the bottom plate.

[0024] The positioning seat is fixedly arranged above the supporting plate, and the four positioning columns are fixedly arranged above the supporting plate.

[0025] The guiding frame is symmetrically arranged below the supporting plate.

[0026] As an optional scheme of the utility model, the top surface of the connecting pipe is provided with a recess at both ends, the bottom surface of the connecting pipe is provided with a circular hole corresponding to the recess, and a hexagonal socket head bolt is detachably arranged in the recess.

[0027] According to the above technical scheme, after the frame is placed on the frame composed of the connecting pipe and the supporting leg assembly, the hexagonal socket head bolt and the threaded hole in the positioning column are used for positioning and fixing.

[0028] As an optional scheme of the utility model, the auxiliary supporting assembly comprises a pad plate, a supporting rod, a top disc and a magnetic block B.

[0029] The pad plate is fixedly arranged at the lower end of the supporting rod, and the top disc is fixedly arranged at the upper end of the supporting rod.

[0030] The top plate is fixedly arranged at the center position below the reinforcing seat of the frame, and the magnetic block A is fixedly arranged on the top plate.

[0031] As an optional scheme of the utility model, the plug-in assembly comprises a countersunk head screw sleeve, a screw rod, a push plate, a fixed plate, a connecting plate and a plug rod.

[0032] The countersunk head screw sleeve is rotatably arranged on the positioning seat, the lower end of the countersunk head screw sleeve is provided with the screw rod through threaded connection, the lower end of the screw rod is fixedly provided with the push plate, the two ends of the push plate are symmetrically fixedly provided with the fixed plate, and the fixed plate is symmetrically provided with the two connecting plates. The other end of the connecting plate is rotatably provided with the plug rod. The plug rod is in sliding fit with the corresponding guide frame. The shape and size of the connecting plate can be adjusted according to actual needs. The plug rod is in plug-in fit with the clamping groove on the square column.

[0033] Through the above technical scheme, the countersunk head screw sleeve is rotated by the external hexagonal wrench, the countersunk head screw sleeve drives the screw rod and the push plate to move up and down, the push plate drives the fixed plate to drive the two connecting plates to move, the connecting plate drives the plug rod to move, and the plug rod is inserted into the clamping groove on the square column to be fixed (or separated from the clamping groove to cancel the fixation).

[0034] As an optional scheme of the utility model, the floor is sequentially provided with an anti-static UV paint, a carbon fiber impregnated wood base layer, a high-density HDF board and a bottom aluminum foil film from top to bottom. The bottom aluminum foil film is connected with a grounding terminal.

[0035] As an optional scheme of the utility model, a plurality of conductive wires are arranged on the middle conductive reinforcing layer, and the conductive wires are connected with a grounding system.

[0036] 3. Beneficial effects

[0037] One or more technical schemes in the technical scheme of the application have at least the following technical effects or advantages:

[0038] 2. The utility model can realize quick assembly of the continuous pipe, the supporting leg assembly and the frame, and improve work efficiency.

[0039] 3. The frame supports and protects the ground, thereby improving the overall strength of the floor.

[0040] 4. The auxiliary supporting assembly can assist in supporting the frame and the floor, thereby further improving the overall strength of the floor.

[0041] 5. The reinforcing seat is fixedly arranged below the frame, the reinforcing seat is fixedly connected with the frame, and a plurality of square grooves are uniformly arranged on the reinforcing seat in the horizontal direction. These square grooves can reduce the weight of the reinforcing seat and improve the practicability and strength of the floor structure without affecting the strength. DRAWINGS

[0042] Figure 1The overall schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application;

[0043] Figure 2 The bottom structure schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application;

[0044] Figure 3 The schematic view of the pipe and leg assembly of the high-strength anti-static floor disclosed in a preferred embodiment of the present application in the assembled state;

[0045] Figure 4 The frame schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application;

[0046] Figure 5 The leg assembly schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application;

[0047] Figure 6 The plug-in assembly schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application;

[0048] Figure 7 The pipe schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application;

[0049] Figure 8 The auxiliary support assembly schematic view of the high-strength anti-static floor disclosed in a preferred embodiment of the present application.

[0050] Reference signs:

[0051] 1, frame; 2, floor; 3, pipe; 4, leg assembly; 5, auxiliary support assembly; 6, inner hexagonal countersunk head bolt; 11, floor clamping groove; 12, square column; 13, reinforcing seat; 14, square groove; 15, clamping groove; 16, top plate; 17, magnetic block A; 31, sink groove; 41, leg; 42, bottom plate; 43, supporting plate; 44, positioning seat; 45, positioning column; 46, plug-in assembly; 47, guide frame; 461, countersunk head sleeve; 462, screw rod; 463, push plate; 464, fixed plate; 465, connecting plate; 466, plug rod; 51, pad plate; 52, supporting rod; 53, top disc; 54, magnetic block B. DETAILED DESCRIPTION

[0052] The present application is further described in detail below with reference to the accompanying drawings.

[0053] Reference Figure 1 , Figure 2 and Figure 3 The present application provides a high-strength anti-static floor, comprising: a frame 1, a floor 2, a pipe 3, a leg assembly 4, and an auxiliary support assembly 5.

[0054] The number of each of the following components is as follows: Frame 1, Floor 2, Connecting Pipe 3, Support Leg Assembly 4, and Auxiliary Support Assembly 5.

[0055] Floorboards 2 are fixedly installed on each frame 1; floorboards 2 can be fixed to the frame 1 by adhesive or screws. This forms a stable overall structure and effectively prevents floorboards 2 from loosening or shifting during use.

[0056] Several support leg components 4 are evenly distributed to form several squares; each square's support component is detachably fixed with a frame 1; the frame 1 is snapped into the corresponding four support components.

[0057] Each adjacent outrigger assembly 4 is detachably and securely connected by a connecting pipe 3. Both the connecting pipe 3 and the outrigger assembly 4 are made of high-strength metal and undergo rust-proofing treatment, such as hot-dip galvanizing or spraying with rust-preventive paint. Hot-dip galvanizing forms a dense zinc layer on the metal surface, effectively isolating it from air and moisture and preventing rust and corrosion. The application of rust-preventive paint allows for the selection of paints with different properties, such as epoxy zinc-rich paint with excellent corrosion resistance, ensuring long-term stability and durability. The connection between the connecting pipe 3 and the outrigger assembly 4 can be achieved using bolts or snap-fit ​​connections. Bolt connections provide reliable connection strength, while snap-fit ​​connections are simple to operate and facilitate quick installation and disassembly.

[0058] Each frame 1 is detachably and fixedly equipped with an auxiliary support assembly 5 at its base. The auxiliary support assembly 5 provides supplementary support to the frame 1 and the floor 2, enhancing overall strength. This significantly improves the overall strength of the frame 1 and floor 2. Under heavy loads, the auxiliary support assembly 5 can share some of the pressure, reducing deformation of the frame 1 and floor 2 and extending the service life of the floor.

[0059] Frame 1 is made of aluminum alloy.

[0060] In this technical solution, multiple connecting pipes 3 and support leg assemblies 4 are connected together to form several squares. Auxiliary support assemblies 5 are installed below the frame 1, and then the frame 1 is snapped into place between the frame 1 and the floor 2. This forms a large-area base plate, and the overall strength of the base plate is improved through the frame 1 and the auxiliary support assemblies 5.

[0061] Reference Figure 4 The upper part of the frame 1 has a floor slot 11, and the floor 2 is installed in the floor slot 11 and can be fixed by adhesive or screws.

[0062] The frame 1 is fixedly provided with a reinforcing seat 13 below, and the reinforcing seat 13 is fixedly connected with the frame 1 together, which can be fixed by welding. A plurality of square grooves 14 are uniformly arranged on the reinforcing seat 13 in the horizontal direction. These square grooves 14 can reduce the weight of the reinforcing seat 13 on the one hand, and improve the practicability and strength of the floor structure on the premise of not affecting the strength on the other hand.

[0063] The square grooves 14 can be filled with beneficial materials such as sound insulation materials, thermal insulation materials, fireproof materials, etc. When filled with sound insulation materials (such as sound-absorbing cotton, soundproof felt, etc.), the sound can be effectively absorbed and blocked, reducing the propagation of noise generated by personnel walking and equipment running in the space, creating a quiet working environment for places such as data centers and computer rooms that require noise control; filling thermal insulation materials (such as polystyrene foam board, polyurethane foam, etc.) can adjust the indoor temperature to a certain extent, reduce heat transfer, and achieve the effect of energy saving and heat preservation; filling fireproof materials (such as rock wool, glass wool, etc.) can improve the fireproof performance of the floor and enhance the fire safety of the place.

[0064] The four corners of the reinforcing seat 13 are fixedly provided with square columns 12, and the square columns 12 are crossly provided with clamping grooves 15.

[0065] In this technical solution, the floor 2 is fixedly installed into the floor clamping groove 11 of the frame 1, and the frame 1 is positioned and fixed by the square columns 12. The overall strength is improved by the reinforcing seat 13.

[0066] With reference to Figure 5 , the leg assembly 4 comprises a leg 41, a bottom plate 42, a supporting plate 43, a positioning seat 44, a positioning column 45 and a plug-in assembly 46.

[0067] The bottom plate 42 is fixedly arranged below the leg 41, and the rubber pad is arranged below the bottom plate 42.

[0068] The positioning seat 44 is fixedly arranged above the supporting plate 43, and the four positioning columns 45 are fixedly arranged above the supporting plate 43.

[0069] The guiding frames 47 are symmetrically arranged below the supporting plate 43.

[0070] The plug-in assembly 46 is arranged on the leg 41, and the plug-in assembly 46 is plug-in matched with the frame 1.

[0071] With reference to Figure 6 , the plug-in assembly 46 comprises a countersunk screw sleeve 461, a screw rod 462, a push plate 463, a fixed plate 464, a connecting plate 465 and a plug rod 466.

[0072] The countersunk screw sleeve 461 is provided with a hexagonal countersunk groove.

[0073] The countersunk screw 461 is rotatably arranged on the positioning seat 44, and the lower end of the countersunk screw 461 is provided with a screw rod 462 in threaded connection, the lower end of the screw rod 462 is fixedly provided with a push plate 463, the two ends of the push plate 463 are symmetrically fixedly provided with fixed plates 464, and the fixed plates 464 are symmetrically provided with two connecting plates 465; the other end of the connecting plate 465 is rotatably provided with an insertion rod 466; the insertion rod 466 is in sliding fit with the corresponding guide frame 47. The shape and size of the connecting plate 465 can be adjusted according to actual needs. The insertion rod 466 is in plug fit with the clamping groove 15 on the square column 12.

[0074] In this technical solution, the countersunk screw 461 is twisted by an external hex wrench, the countersunk screw 461 drives the screw rod 462 and the push plate 463 to move up and down, the push plate 463 drives the two fixed plates 464 to move by driving the two fixed plates 464, the two connecting plates 465 drive the insertion rod 466 to move, and the insertion rod 466 is inserted into the clamping groove 15 on the square column 12 to be fixed (or separated from the clamping groove 15 to cancel the fixation).

[0075] Referring to Figure 7 , the top surface of the connecting pipe 3 is provided with a sink groove 31 at both ends, and the bottom surface of the connecting pipe 3 is provided with a circular hole corresponding to the sink groove 31, and the sink groove 31 is detachably provided with an internal hexagonal countersunk bolt 6; the positioning column 45 is provided with a threaded hole; the internal hexagonal countersunk bolt 6 is in threaded fit with the threaded hole on the positioning column 45.

[0076] In this technical solution, after the frame 1 is placed on the frame composed of the connecting pipe 3 and the leg assembly 4, the internal hexagonal countersunk bolt 6 and the threaded hole on the positioning column 45 are used for positioning and fixing. The stability is improved.

[0077] Referring to Figure 4 and 8 , the auxiliary support assembly 5 comprises a pad plate 51, a support rod 52, a top disc 53 and a magnetic block B 54.

[0078] The lower end of the support rod 52 is fixedly provided with the pad plate 51, and the upper end of the support rod 52 is fixedly provided with the top disc 53; the top disc 53 is fixedly provided with the magnetic block B 54 at the center position; the pad plate 51 is fixedly provided with a rubber pad below, which plays a role of anti-skid.

[0079] The top plate 16 is fixedly arranged at the lower center position of the reinforcing seat 13 of the frame 1, and the magnetic block A 17 is fixedly arranged on the top plate 16; the auxiliary support assembly 5 can be fixed to the frame 1 through the magnetic block B 54 and the magnetic block A 17, so as to realize the rapid installation and positioning of the auxiliary support assembly 5.

[0080] In the technical scheme, the auxiliary support assembly 5 can be fixed to the frame 1 through the magnetic block B54 and the magnetic block A17, so that the auxiliary support assembly 5 is quickly installed and positioned. The middle position of the frame 1 and the floor 2 is effectively supported through the auxiliary support assembly 5, so that the overall strength is improved. The middle position of the frame 1 and the floor 2 is effectively supported through the auxiliary support assembly 5, so that the load borne by the frame 1 and the floor 2 is shared, and the overall strength is further improved, and the deformation of the middle part of the floor caused by stress is reduced.

[0081] Further, the floor 2 is sequentially provided with an anti-static UV paint (containing nano zinc oxide), a carbon fiber impregnated wood base layer (or embedded copper wire), a high-density HDF board (moisture-proof treatment) and a bottom aluminum foil film from top to bottom. The nano zinc oxide contained in the anti-static UV paint has good anti-static performance, can effectively remove static electricity generated on the surface of the floor, prevent static electricity from accumulating to damage electronic equipment, and the UV paint can also enhance the wear resistance and scratch resistance of the surface of the floor; the carbon fiber impregnated wood base layer has high strength and good conductivity, and if the embedded copper wire is used, the excellent conductivity of the copper wire can further improve the conductivity of the floor and quickly guide the static electricity to the ground; the high-density HDF board is subjected to moisture-proof treatment, can effectively resist the influence of the humid environment on the floor, ensure the structural stability of the floor, and avoid deformation and damage due to moisture; the bottom aluminum foil film not only has a moisture-proof effect, but also provides a mounting basis for the grounding terminal, and the grounding terminal is connected to the aluminum foil film, and the grounding terminal is connected to the external grounding system to realize effective release of static electricity.

[0082] Further, a plurality of conductive wires are arranged on the middle conductive reinforcing layer (carbon fiber impregnated wood base layer or embedded copper wire structure layer), and the conductive wires are connected with the grounding system. The conductive wires are distributed in a grid or radial manner, can more widely and efficiently collect and conduct static electricity generated on the surface of the floor, ensure that the static electricity can be quickly released to the ground through the grounding system, and further improve the anti-static performance of the floor.

[0083] The working principle of the high-strength anti-static floor is that: a plurality of leg assemblies 4 are arranged in a square array; the plurality of leg assemblies 4 and the connecting pipe 3 are fixedly connected together and are fixed and positioned by the internal hexagon countersunk head bolt 6; the column assemblies are arranged in a square array to form a plurality of square structures, the auxiliary support assembly 5 is fixed to the lower side of the frame 1 in a magnetic attraction manner; the frame 1 is clamped and installed on the leg assembly 4 and the connecting pipe 3, the external hexagonal wrench is used to drive the four insertion rods 466 to move synchronously, and the insertion rods 466 are inserted into the clamping grooves 15 on the frame 1 to clamp and fix the frame 1 and the floor 2; a large-area floor is formed, the stability is improved, and the anti-static performance is achieved. The floor can be quickly spliced and installed, and is convenient to disassemble and maintain.

[0084] The utility model discloses can realize the quick assembly of the pipe 3, the supporting leg subassembly 4 and frame 1, improve work efficiency, support and protect the floor 2 through frame 1, improve the overall strength of floor. Can through the auxiliary support subassembly 5 to the frame 1 and floor 2 carry out the auxiliary support, further improve the overall strength of floor, the auxiliary support subassembly 5 is connected through magnetic attraction to the frame 1, can realize quick installation positioning. The reinforcing seat 13 is fixedly arranged below the frame 1, the reinforcing seat 13 is fixedly connected together with the frame 1, and a plurality of square grooves 14 are evenly arranged on the reinforcing seat 13 in the horizontal direction. These square grooves 14 reduce the weight of the reinforcing seat 13 on the one hand, and on the other hand, improve the practicability and strength of the floor structure without affecting the strength.

[0085] The above-described and above-mentioned examples are only used to illustrate the technical solutions of the utility model, and not to limit them. Although the utility model has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can still be modified, or some technical features can be replaced equivalently. These modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the utility model.

Claims

1. A high strength anti-static floor comprising: Frame, floor, connecting pipe, leg assembly, auxiliary support assembly; characterized in that: The number of frames, floors, connecting pipes, leg assemblies and auxiliary support assemblies is several; Each frame is fixedly provided with a floor; The several leg assemblies are evenly arranged to form several squares; Each square of the support assembly is fixedly provided with a frame which can be disassembled; The frame is connected with the corresponding four support assemblies; The two adjacent leg assemblies are connected through the connecting pipe which can be disassembled; The lower part of each frame is fixedly provided with an auxiliary support assembly which can be disassembled; The frame and the floor are supported by the auxiliary support assembly to provide overall strength.

2. The high-strength, anti-static floor according to claim 1, wherein: The upper part of the frame is provided with a floor clamping groove, and the floor is installed in the floor clamping groove. The lower part of the frame is fixedly provided with a reinforcing seat, and the reinforcing seat is fixedly connected with the frame; The lower part of the reinforcing seat is fixedly provided with a square column at four corners, and a clamping groove is formed on the square column.

3. The high-strength, anti-static flooring of claim 1, wherein: The leg assembly comprises a leg, a bottom plate, a supporting plate, a positioning seat, a positioning column and a plug-in assembly. The lower part of the leg is fixedly provided with a bottom plate; The upper part of the leg is fixedly provided with a supporting plate. The upper part of the supporting plate is fixedly provided with a positioning seat; Four positioning columns are fixedly arranged on the upper part of the supporting plate. The lower part of the supporting plate is symmetrically provided with a guide frame; The leg is provided with a plug-in assembly; The plug-in assembly is plug-in matched with the frame.

4. The high-strength, anti-static floor according to claim 3, wherein: The plug-in assembly comprises a countersunk screw, a screw rod, a push plate, a fixed plate, a connecting plate and a plug rod. The countersunk screw is rotatably arranged on the positioning seat, the lower end of the countersunk screw is threadedly connected with the screw rod, the lower end of the screw rod is fixedly provided with the push plate, the two ends of the push plate are symmetrically fixedly provided with the fixed plate, two connecting plates are symmetrically arranged on the fixed plate; The other end of the connecting plate is rotatably provided with the plug rod; The plug rod is slidingly matched with the corresponding guide frame; The plug rod is plug-in matched with the clamping groove on the square column.

5. The high-strength, anti-static floor according to claim 4, wherein: The top surface of the connecting pipe is provided with a sink at both ends, the bottom surface of the connecting pipe is provided with a circular hole corresponding to the sink, and an internal hexagonal countersunk bolt is detachably arranged in the sink; A threaded hole is formed in the positioning column.

6. The high strength anti-static flooring of claim 1, wherein: The auxiliary support assembly comprises a pad plate, a supporting rod, a top disc and a magnetic block B; The lower end of the supporting rod is fixedly provided with the pad plate, and the upper end of the supporting rod is fixedly provided with the top disc; The magnetic block B is fixedly arranged at the center position of the top disc; The lower part of the pad plate is fixedly provided with a rubber pad; The lower part of the reinforcing seat of the frame is fixedly provided with a top plate, and the top plate is fixedly provided with a magnetic block A.

7. The high strength anti-static flooring of claim 2, wherein: A plurality of square grooves are evenly arranged in the horizontal direction on the reinforcing seat; The square grooves are filled with sound insulation materials, thermal insulation materials or fireproof materials according to actual needs.

8. The high strength anti-static flooring of claim 1, wherein: The floor is sequentially provided with an anti-static UV paint, a carbon fiber impregnated wood base layer, a high-density HDF board and a bottom aluminum foil film from top to bottom; The bottom aluminum foil film is connected with a grounding terminal.

9. The high strength anti-static flooring of claim 8, wherein: A plurality of conductive wires are arranged on the middle conductive reinforcing layer, and the conductive wires are connected with a grounding system.

Citation Information

Patent Citations

  • High-strength anti-static floor

    CN220395086U