Detachable anti-static floor

By using a snap-fit ​​design for the support components and connecting rods, combined with high-strength metal and anti-static composite materials, the problems of inconvenient installation and insufficient stability of anti-static flooring are solved, achieving rapid splicing and a stable effect, making it suitable for high-requirement environments.

CN224106799UActive 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 convenient or quick to install, lacks stability, and has messy wiring that makes it difficult to repair.

Method used

The system uses support components and connecting rods to form a square array. The floor is fixed by snap-fit ​​and positioned using pins and locking mechanisms, avoiding traditional screw connections. It combines high-strength metal materials and anti-static composite materials to achieve rapid assembly and stability.

Benefits of technology

It improves the installation efficiency and stability of the floor, has excellent anti-static properties, is easy to disassemble and maintain, is suitable for high-requirement environments, and meets the safe operation requirements of electronic equipment.

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Abstract

The utility model belongs to the technical field of floors, and discloses a detachable anti-static floor which comprises a floor body, a supporting column assembly and a connecting rod. The plurality of supporting column assemblies are uniformly distributed and arranged to form a plurality of squares; a floor is detachably and fixedly arranged on the four supporting column assemblies of each square; the floor and the four corresponding supporting column assemblies are arranged in a clamped mode. Every two adjacent supporting column assemblies are detachably and fixedly connected through a connecting rod. The detachable anti-static floor is convenient and efficient to install, the supporting column assemblies and the connecting rods are fixed through the plug pins, assembling is rapid and convenient, and the working efficiency is improved; rapid splicing and mounting can be realized; the supporting column assemblies are evenly distributed and arranged according to a square array to form a plurality of square structures, the floor is installed on the supporting column assemblies in a clamped mode, the locking mechanism drives the four inserting blocks to move synchronously through an external square-head spanner, and the floor is fixed in an inserted mode; a large-area floor is formed, and the stability is improved; the anti-static performance is realized.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of floor, more particularly, to a detachable anti-static floor. BACKGROUND

[0002] The anti-static raised floor is mainly applied to the laying of the ground in computer rooms, data processing centers, laboratories, television transmitting station control rooms, broadcast control rooms, monitoring machine rooms, central control rooms, etc. At present, before laying the existing anti-static floor, the connecting lines such as cables, network cables and optical fiber cables need to be laid, and the anti-static floor is fixed and supported on the ground by using a support frame. Since the types of lines are various and there is no regularizing device, the lines are very messy and it is difficult to identify the lines for maintenance in the later period.

[0003] The document with the prior art publication number CN220868701U provides a detachable anti-static floor, which comprises a bottom plate body, the bottom plate body comprises a fixing seat, an anti-static floor is movably installed in the fixing seat, a support plate is welded on the inner wall of the fixing seat, a limiting plate is movably installed on the top of the support plate, the limiting plate is in contact with the bottom of the anti-static floor, an opening is formed in the fixing seat, a movable column is movably installed in the opening, and a movable plate is movably installed at one end of the movable column. When the detachable anti-static floor is used, bolts of corresponding lengths are installed on the support plate, the limiting plate is installed on the support plate, and one end of the bolt supports the limiting plate, so as to adjust the height difference between the top of the bottom plate and the top of the fixing seat according to the thickness of the floor.

[0004] The prior art scheme in the above has the following defects although the structure of the prior art can achieve the related 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 installation is complex, and the operation efficiency is low.

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

[0006] 1. Technical problem to be solved

[0007] The purpose of the present application is to provide a detachable anti-static floor, which solves the technical problems proposed in the background art, realizes convenient and efficient installation of the detachable anti-static floor, fixes and positions a plurality of support column assemblies and connecting rods through a latch, does not need to use a traditional screw connection mode, assembles quickly and conveniently to improve work efficiency, realizes quick splicing and installation, arranges the support column assemblies in a square array to form a plurality of square structures, installs a floor to the support column assemblies, moves four insertion blocks synchronously by an external square head wrench to drive a locking mechanism, inserts and fixes the floor, constitutes a large-area floor, improves stability, and has an anti-static performance.

[0008] 2. Technical solution

[0009] The technical solution of the present application provides a detachable anti-static floor, which comprises a floor, a support assembly and a connecting rod.

[0010] The number of the floor, the support assembly and the connecting rod is several.

[0011] The several support assemblies are arranged in a square array, and each square is formed by four support assemblies which are detachably fixedly arranged with the floor; and the floor is detachably fixedly arranged with the corresponding four support assemblies.

[0012] The two adjacent support assemblies are detachably fixedly connected through the connecting rod.

[0013] The support assembly and the connecting rod are made of high-strength metal material, and the surface is treated to prevent rust, so as to ensure the stability and durability during long-term use.

[0014] The floor is made of special composite material, which is composed of a high-strength fiber reinforced layer and an anti-static conductive layer. The surface layer is treated specially, and has good anti-static performance, which can quickly dissipate the static charge carried by the human body or equipment, and prevent static electricity from damaging sensitive electronic components. The material also has excellent physical properties and wear resistance, and can withstand long-term high-frequency stepping and equipment movement, and is not easy to wear and tear.

[0015] Through the above technical solution, the several support assemblies are arranged in a square array; the plurality of support assemblies and the connecting rod are fixedly connected together; the support assemblies are arranged in a square array to form several square structures; and the floor is detachably fixedly arranged on the support assemblies; and a large-area floor is formed, which has the properties of stability and anti-static.

[0016] As an optional solution of the utility model, the support assembly comprises a support, a cover plate, a locking mechanism, a bolt and a handle.

[0017] The cover plate is detachably fixedly arranged on the upper end of the support through bolts.

[0018] The support is provided with a locking mechanism.

[0019] Four bolts are slidably arranged on the support, and the handle is detachably fixedly arranged on the bolt; and the bolt and the handle are connected through thread cooperation. A spring is arranged between the outer side of the bolt and the support.

[0020] In the above technical solution, the support is detachably fixedly arranged with the floor, and the support is detachably fixedly arranged with the connecting rod. The floor is clamped and fixed by the locking mechanism. The connecting rod can be positioned and fixed by the bolt.

[0021] As an optional solution of the utility model, the locking mechanism comprises a screw rod, a lifting seat, a connecting plate and an insertion block.

[0022] The lifting seat is slidably arranged on the support, the support is provided with a square hole, the cross section of the lifting seat is square, and the lifting seat is in sliding fit with the square hole on the support.

[0023] The screw rod is in bolted connection with the lifting seat, and the screw rod is rotatably arranged on the cover plate.

[0024] Four connecting plates are rotatably arranged at the lower end of the lifting seat in a uniform manner, the other end of the connecting plate is rotatably provided with an insertion block, the insertion block is in sliding fit with the support, the support is provided with a sliding groove matched with the insertion block, and the insertion block is in plug-in fit with the floor.

[0025] A square recess is formed in the upper end of the screw rod, when the detachable anti-static floor is assembled, the screw rod is rotated by an external square wrench, the locking mechanism drives the four insertion blocks to move synchronously, the floor is fixed by plug-in or the plug-in is cancelled, and the external square wrench is in plug-in fit with the square recess on the screw rod.

[0026] According to the technical scheme, the lifting seat is moved up and down by rotating the screw rod, the four insertion blocks are moved synchronously by the connecting plate, and the floor is fixed by plug-in or the plug-in is cancelled.

[0027] As an optional solution of the utility model, the support comprises a supporting column, a bottom plate, a supporting plate, a positioning column, a positioning pipe and a guide sleeve.

[0028] The bottom plate is fixedly arranged at the lower end of the supporting column, and the supporting plate is fixedly arranged at the upper end of the supporting column.

[0029] The square hole is formed in the positioning column, the supporting plate and the supporting column, and the lifting seat is in sliding fit with the positioning column, the supporting plate and the supporting column.

[0030] The recess matched with the cover plate is formed in the positioning column.

[0031] The supporting plate is of a square structure, the four positioning pipes are fixedly arranged on the supporting plate in a uniform manner, the guide sleeve is fixedly arranged on the positioning pipe, and the circular hole is formed in the corresponding position of the positioning pipe and the guide sleeve.

[0032] The positioning pipe is in plug-in fit with the connecting rod, and the bolt is slidably arranged on the guide sleeve.

[0033] The guide groove and the clamping groove are formed in the guide sleeve, the clamping groove is in communication with the guide groove, the push handle can slide in the guide groove and be clamped in the clamping groove.

[0034] As an optional scheme of the utility model, the floor is composed of a surface anti-static PVC layer, a middle conductive reinforcing layer and a bottom high-strength PVC supporting layer from top to bottom. The surface anti-static PVC layer has excellent anti-static performance and wear resistance by adding permanent anti-static master batch, and does not need additional facing, simplifying the production process. The middle conductive reinforcing layer adopts a composite material mixed with carbon fiber and conductive carbon black to form a continuous conductive network, which is stable in conductive performance and lower in cost. The bottom high-strength PVC supporting layer adopts a honeycomb structure design.

[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 the grounding system.

[0036] 3. Beneficial effects

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

[0038] 1. High stability and strong bearing capacity: The column assemblies are arranged in a square array and fixedly connected by connecting rods to form a stable support frame, and a plurality of square structures are connected with each other to constitute a large-area floor, which can effectively disperse ground load, has strong bearing capacity, can withstand high-frequency treading and equipment movement, improves the compressive strength, and meets the stringent requirements of electronic computer rooms, data centers and other places on ground stability and bearing capacity.

[0039] 2. Excellent anti-static performance: The floor is made of special composite material, the surface is added with permanent anti-static master batch, the middle conductive reinforcing layer is composed of a continuous conductive network of carbon fiber and conductive carbon black mixed material, and the conductive wires are connected with the grounding system, which can quickly dissipate static charges carried by the human body or equipment, effectively prevent static electricity from damaging sensitive electronic components, provide a safe operating environment for electronic equipment, and is suitable for places with extremely high anti-static requirements.

[0040] 3. Convenient installation and disassembly: The floor and the column assembly adopt a clamping mode, the column assembly and the connecting rod are positioned by a latch and connected by a bolt, and the splicing can be completed by simple operation during installation; special tools are not needed for disassembly, and the components can be quickly separated. This modular design makes the installation process simple and efficient, greatly shortens the construction period, and is particularly suitable for the rapid installation and removal requirements of temporary places such as temporary computer rooms and exhibition halls.

[0041] 4. Flexible maintenance and replacement: Since the components are detachable, when a floor, column assembly or connecting rod is damaged, it can be replaced individually without damaging the entire floor system, reducing maintenance and time costs. At the same time, this design also facilitates the maintenance and repair of pipelines and equipment under the floor.

[0042] 5. Efficient locking and fixing: the locking mechanism cooperates with the screw rod, lifting seat, connecting plate and plug block. Only by rotating the screw rod can the four plug blocks be moved synchronously to realize quick plug-in fixing or canceling of the floor, which is simple to operate and uniform in locking force, further improving the stability and reliability of the floor connection compared with the traditional single-point locking method. BRIEF DESCRIPTION OF DRAWINGS

[0043] Figure 1 The overall schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0044] Figure 2 The back structure schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0045] Figure 3 The strut assembly schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0046] Figure 4 The locking mechanism schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0047] Figure 5 The support schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0048] Figure 6 The floor schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0049] Figure 7 The connecting rod schematic view of the detachable anti-static floor disclosed in a preferred embodiment of the present application is shown in the figure.

[0050] Reference signs:

[0051] 1, floor; 2, strut assembly; 3, connecting rod; 11, plug plate; 12, plug groove; 13, arc-shaped groove; 21, support; 22, cover plate; 23, locking mechanism; 231, screw rod; 24, plug pin; 25, push handle; 26, spring; 27, lifting seat; 28, connecting plate; 29, plug block; 211, support column; 212, bottom plate; 213, supporting plate; 214, positioning column; 215, positioning tube; 216, guide sleeve; 31, reduced tube end; 32, pin hole. DETAILED DESCRIPTION

[0052] The present application will be further described in detail below in conjunction with the accompanying drawings of the specification.

[0053] Reference Figure 1 and Figure 2 The present application provides a detachable anti-static floor, comprising: a floor 1, a strut assembly 2 and a connecting rod 3.

[0054] The number of the floor 1, the pillar assembly 2 and the connecting rod 3 is several;

[0055] The several pillar assemblies 2 are arranged in a square array, and each square is formed by four pillar assemblies 2 which are detachably fixed with the floor 1.

[0056] The adjacent two pillar assemblies 2 are detachably fixed by the connecting rod 3.

[0057] The pillar assembly 2 and the connecting rod 3 are made of high-strength metal material, and the surface is treated to prevent rust, ensuring the stability and durability of long-term use.

[0058] The floor 1 is made of special composite material, which is composed of high-strength fiber reinforced layer and anti-static conductive layer inside. The surface layer is treated specially, with good anti-static performance, and the surface resistance value is controlled between 10 6 -10 9 Ω, which can quickly dissipate static charges carried by the human body or equipment, prevent static electricity from damaging sensitive electronic components. The material also has excellent physical properties, with a compressive strength of more than 80MPa, a wear resistance level of T-class standard, and can withstand long-term high-frequency stepping and equipment movement, and is not prone to wear and tear, etc.

[0059] In this technical scheme, the several pillar assemblies 2 are arranged in a square array; the plurality of pillar assemblies 2 and the connecting rod 3 are fixedly connected together, the pillar assemblies are arranged in a square array to form several square structures, and the floor 1 is detachably fixed to the pillar assemblies 2; a large-area floor is formed to improve stability and has anti-static performance. The detachable anti-static floor system is widely used in computer rooms, data centers, communication machine rooms, laboratories, precision instrument production workshops and other places with high requirements for anti-static and floor stability. At the same time, its convenient disassembly and installation characteristics are also suitable for temporary machine rooms, exhibition halls and other temporary places.

[0060] Referring to Figure 3 , the pillar assembly 2 comprises a support 21, a cover plate 22, a locking mechanism 23, a bolt 24 and a handle 25;

[0061] The cover plate 22 is detachably fixed on the upper end of the support 21 by bolts;

[0062] The support 21 is provided with a locking mechanism 23;

[0063] Four sliding pins 24 are evenly arranged on the support 21, and a push handle 25 is detachably fixed on the sliding pin 24; the sliding pin 24 and the push handle 25 are connected through threaded cooperation.

[0064] In this technical scheme, the support 21 is clamped with the floor 1, and the support 21 is inserted with the connecting rod 3. The floor 1 is clamped and fixed by the locking mechanism 23. The connecting rod 3 can be positioned and fixed by the sliding pin 24.

[0065] Referring to Figure 4 , the locking mechanism 23 comprises a screw rod 231, a lifting seat 27, a connecting plate 28 and an insertion block 29;

[0066] The lifting seat 27 is arranged on the support 21 and can slide up and down. A square hole is formed in the support 21, and the cross section of the lifting seat 27 is square. The lifting seat 27 is in sliding cooperation with the square hole in the support 21.

[0067] The screw rod 231 is connected with the lifting seat 27 through bolt cooperation. The screw rod 231 is rotatably arranged on the cover plate 22.

[0068] Four connecting plates 28 are rotatably arranged on the lower end of the lifting seat 27. The other end of the connecting plate 28 is rotatably provided with an insertion block 29. The insertion block 29 is in sliding cooperation with the support 21, and a sliding groove matched with the insertion block 29 is formed in the support 21. The insertion block 29 is in insertion cooperation with the floor 1.

[0069] A square groove is formed in the upper end of the screw rod 231.

[0070] When the detachable anti-static floor is assembled, the screw rod 231 is rotated by an external square wrench, so that the locking mechanism 23 drives the four insertion blocks 29 to move synchronously, and the floor 1 is inserted and fixed or the insertion is cancelled. The external square wrench is in insertion cooperation with the square groove in the screw rod 231.

[0071] In this technical scheme, the lifting seat 27 is moved up and down by rotating the screw rod 231, and the four insertion blocks 29 are moved synchronously by the connecting plate 28, so that the floor 1 is inserted and fixed or the insertion is cancelled.

[0072] Referring to Figure 5 , the support 21 comprises a supporting column 211, a bottom plate 212, a supporting plate 213, a positioning column 214, a positioning pipe 215 and a guide sleeve 216.

[0073] The bottom plate 212 is fixedly arranged at the lower end of the supporting column 211, and the supporting plate 213 is fixedly arranged at the upper end of the supporting column 211. The positioning column 214 is fixedly arranged above the supporting plate 213.

[0074] The positioning column 214, the supporting plate 213 and the supporting column 211 are provided with square holes; the lifting seat 27 is in sliding fit with the positioning column 214, the supporting plate 213 and the supporting column 211.

[0075] The positioning column 214 is provided with a groove matched with the cover plate 22.

[0076] The supporting plate 213 is in square structure, and four positioning tubes 215 are fixedly arranged on the supporting plate 213 in a uniformly distributed manner; a guide sleeve 216 is fixedly arranged on the positioning tube 215; and a circular hole is formed in the positioning tube 215 at a position corresponding to the guide sleeve 216.

[0077] The positioning tube 215 is in plug-in fit with the connecting rod 3; and the bolt 24 is slidably arranged on the guide sleeve 216.

[0078] The guide sleeve 216 is provided with a guide groove and a clamping groove, and the clamping groove is in communication with the guide groove; the push handle 25 can slide in the guide groove and can be clamped in the clamping groove.

[0079] With reference to Figure 5 , the floor 1 is provided with an arc-shaped groove 13 at each corner thereof; the arc-shaped groove 13 is matched with the positioning column 214;

[0080] The floor 1 is fixedly provided with an insertion plate 11 at each corner thereof; the insertion plate 11 is provided with an insertion groove 12; and the insertion groove 12 is in plug-in fit with the insertion block 29.

[0081] In this technical scheme, when the locking mechanism 23 drives the four insertion blocks 29 to be plugged into the insertion grooves 12, the floor 1 is fixed.

[0082] With reference to Figure 6 , the connecting rod 3 is provided with a reduced tube end 31 at each end thereof; and the reduced tube end 31 is provided with a pin hole 32;

[0083] The reduced tube end 31 is in plug-in fit with the positioning tube 215 on the support column assembly 2; the bolt 24 is in plug-in fit with the pin hole 32; and when the bolt 24 is inserted into the pin hole 32, the floor 1 is fixedly positioned.

[0084] Further, the floor 1 is sequentially composed of a surface anti-static PVC layer, a middle conductive reinforcing layer and a bottom high-strength PVC supporting layer from top to bottom. The surface anti-static PVC layer is made of permanent anti-static master batch, so that the surface resistance is stabilized at 10 6 -10 9Ω between, have excellent anti-static performance and wear resistance, at the same time without additional surface, simplify production process; The middle conductive reinforcing layer adopts the composite material mixed by carbon fiber and conductive carbon black, forms continuous conductive network, and the conductive performance is stable and the cost is lower;The bottom high-strength PVC support layer adopts the honeycomb structure design, reduces weight while ensuring compressive strength, can replace materials such as solid wood board and plywood, and the compressive strength can reach 70MPa, meets the demand of conventional use. It is suitable for the place that is high to construction efficiency.

[0085] Further, a plurality of conductive wires 4 are arranged on the middle conductive reinforcing layer, and the conductive wires 4 are connected with the grounding system.

[0086] The working principle of the detachable anti-static floor is as follows: a plurality of pillar assemblies 2 are arranged in a square array; the plurality of pillar assemblies 2 and the connecting rods 3 are fixedly connected together and are fixed and positioned by the bolts 24, without using the traditional screw connection mode, so that the assembly is quick and convenient to improve the work efficiency; the pillar assemblies are arranged in a square array to form a plurality of square structures, the floor 1 is clamped and installed on the pillar assemblies 2, the locking mechanism 23 is driven by the square wrench to synchronously move the four plug blocks 29, and the floor 1 is inserted and fixed; a large-area floor is formed to improve the stability and has the anti-static performance. Quick splicing and installation can be realized.

[0087] The detachable anti-static floor is convenient and efficient to install, the plurality of pillar assemblies 2 and the connecting rods 3 can be fixed and positioned by the bolts 24, without using the traditional screw connection mode, so that the assembly is quick and convenient to improve the work efficiency; quick splicing and installation can be realized. The pillar assemblies are arranged in a square array to form a plurality of square structures, the floor 1 is clamped and installed on the pillar assemblies 2, the locking mechanism 23 is driven by the square wrench to synchronously move the four plug blocks 29, and the floor 1 is inserted and fixed; a large-area floor is formed to improve the stability; and the floor has the anti-static performance.

[0088] The above-described embodiments are only used to illustrate the technical solutions of the utility model, rather than limit them; although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced equivalently; and 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 embodiments of the utility model.

Claims

1. A demountable anti-static floor comprising: The floor, the pillar assembly and the connecting rod are characterized in that: The number of the floor, the pillar assembly and the connecting rod is several; the several pillar assemblies are arranged uniformly to form several squares; four pillar assemblies of each square are fixed together to form the floor; the floor is connected with the four pillar assemblies through clamping; two adjacent pillar assemblies are connected through the connecting rod.

2. The detachable anti-static floor according to claim 1, wherein: The pillar assembly comprises a support, a cover plate, a locking mechanism, a bolt and a handle; The upper end of the support is fixed with the cover plate; the cover plate is fixed on the upper end of the support through bolts; the support is provided with the locking mechanism; four bolts are slidably arranged on the support; the handle is fixed on the bolt through thread connection; the bolt and the handle are connected through thread cooperation; the spring is arranged between the outer side of the bolt and the support.

3. The detachable anti-static floor according to claim 1, wherein: The locking mechanism comprises a screw rod, a lifting seat, a connecting plate and a plug; The lifting seat is slidably arranged on the support; the lifting seat and the square hole on the support are in sliding fit; the screw rod and the lifting seat are connected through bolts; the screw rod is rotatably arranged on the cover plate; Four connecting plates are rotatably arranged on the lower end of the lifting seat; the other end of the connecting plate is rotatably provided with the plug; the plug is in sliding fit with the support; the plug is in plug-in fit with the floor.

4. The demountable anti-static floor of claim 2, wherein: The support comprises a supporting column, a bottom plate, a supporting plate, a positioning column, a positioning tube and a guide sleeve; The bottom plate is fixed on the lower end of the supporting column; the supporting plate is fixed on the upper end of the supporting column; the positioning column is fixed above the supporting plate; the lifting seat is in sliding fit with the positioning column, the supporting plate and the supporting column; The positioning column is provided with a groove matched with the cover plate; the supporting plate is in square structure; four positioning tubes are fixed on the supporting plate; the guide sleeve is fixed on the positioning tube; the circular hole is arranged on the positioning tube corresponding to the guide sleeve; the positioning tube is in plug-in fit with the connecting rod; the bolt is slidably arranged on the guide sleeve.

5. The demountable anti-static floor of claim 4, wherein: The guide sleeve is provided with a guide groove and a clamping groove; the handle can slide in the guide groove and be clamped in the clamping groove.

6. The demountable anti-static floor of claim 3, wherein: The upper end of the screw rod is provided with a square groove; the external square head wrench is in plug-in fit with the square groove on the screw rod; when the detachable anti-static floor is assembled, the screw rod is rotated through the external square head wrench to realize that the locking mechanism drives the four plugs to move synchronously to realize the plug-in fit or the cancellation of the plug-in fit of the floor.

7. The demountable anti-static floor of claim 1, wherein: The floor comprises a surface anti-static PVC layer, a middle conductive reinforcing layer and a bottom high-strength PVC supporting layer; the surface anti-static PVC layer has excellent anti-static performance and wear resistance by adding permanent anti-static master batch; the middle conductive reinforcing layer adopts a composite material mixed with carbon fiber and conductive carbon black to form a continuous conductive network; the bottom high-strength PVC supporting layer adopts a honeycomb structure design.

8. The demountable anti-static floor of claim 7, wherein: A plurality of conductive wires are arranged on the middle conductive reinforcing layer; the conductive wires are connected with the grounding system.

9. The demountable anti-static floor of claim 1, wherein: The pillar assembly and the connecting rod are made of high-strength metal material and are subjected to rust prevention treatment on the surface.

10. The demountable anti-static floor of claim 4, wherein: The four corners of the floor are provided with arc grooves; the arc grooves are matched with the positioning columns; the four corners of the floor are fixed with the plugs; the plugs are provided with plug-in grooves; the plug-in grooves are in plug-in fit with the plugs.

Citation Information

Patent Citations

  • Detachable anti-static floor

    CN220868701U