Anti-static floor convenient to install
By using a support structure and snap-fit fixing method, the problem of cumbersome installation of traditional antistatic flooring is solved, achieving a fast and stable installation effect, which is suitable for high-tech fields and places that require rapid deployment.
Patent Information
- Application Number
- CN202423022839.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-06
AI Technical Summary
The installation process of traditional antistatic flooring is cumbersome and unstable, especially in places where rapid deployment or frequent equipment replacement is required, which affects its application and service life.
The system employs a support structure, including a base plate and crossbars, which are connected to the anti-static plate via snap-fit fixing. The multiple snap-fit fixings of the support structure form a stable support structure, and the conductive edge strips ensure static electricity conduction, simplifying the installation process.
It enables rapid and stable installation of antistatic flooring, improves installation efficiency, enhances floor stability and service life, and is suitable for locations requiring rapid deployment or frequent equipment replacement.
Smart Images

Figure CN223468989U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of antistatic floor, concretely is an antistatic floor convenient to install. BACKGROUND
[0002] Antistatic floor, as a kind of professional floor decoration material, is widely used in electronic, computer, communication, medical treatment, laboratory and other high-tech fields and the place needing highly clean and antistatic environment due to its unique antistatic function.The main function is effectively preventing the generation and accumulation of static electricity, avoiding the damage of equipment, data loss and personnel injury caused by static discharge.Antistatic floor is usually made of conductive material or composite material containing conductive substance, has good conductive performance and wear resistance, corrosion resistance, easy cleaning and other characteristics.In addition, antistatic floor can effectively isolate the moisture of ground, keep indoor environment dry and clean, provide a stable and safe working environment for precision equipment.
[0003] Although antistatic floor has many advantages in function and performance, its installation process often faces many challenges.The installation of traditional antistatic floor usually needs complicated steps, including ground treatment, floor laying, connector installation, gap treatment, etc., which not only increases the installation difficulty and cost, but also may cause the instability of installation quality.Especially in some places needing rapid deployment or frequent equipment replacement, such as data center, laboratory, etc., the inconvenience of installation of traditional antistatic floor has become a big bottleneck restricting its application.In addition, the connection mode of traditional floor, such as screw fixing, glue bonding, etc., not only consumes time and effort, but also has problems such as loose connection, aging, etc., which affects the stability and service life of floor. UTILITY MODEL CONTENT
[0004] In order to overcome the deficiencies of prior art, the utility model provides an antistatic floor convenient to install, which can effectively solve the technical problem of the inconvenience of installation of current antistatic floor.
[0005] The technical scheme adopted by the utility model to solve its technical problems is:
[0006] The utility model provides an anti -static floor of convenient installation, including anti -static board body and support body, the support body is used for anti -static board body is held and is positioned, the support body includes a plurality of pad and a plurality of crosspieces, two adjacent pad are connected through crosspiece, and the horizontal plane of crosspiece is higher than the horizontal plane of pad, the pad is set with the installation slot for installing crosspiece, and one end of the installation slot is communicated with the side of pad, the bottom of installation slot is equipped with the first clamping groove that is concave downwards, the both ends of crosspiece are installed in the installation slot on two adjacent pad, and are fixed by inserting the first clamping block of the both ends of crosspiece concave downwards into the corresponding first clamping groove, the bottom four corner regions of anti -static board body are installed on different pad, and the outside of anti -static board body is close to the inside of adjacent crosspiece, the top of anti -static board body is equipped with the extension that covers the top of crosspiece and extends outward, and the pad is equipped with the second clamping block that is inserted into the inside fixed of anti -static board body.
[0007] Further, the number of installation slots and second clamping blocks provided on the same pad is four, and the installation slots and second clamping blocks are staggered.
[0008] Further, the bottom four corner regions of the anti-static board body are each provided with a second clamping slot for inserting and fixing the second clamping block.
[0009] Further, the center regions of the first clamping slot and the second clamping block are each provided with an air hole, and the air hole is communicated with the bottom of the pad.
[0010] Further, the pad is provided below with a foot base sleeve and a fixing plate connected to the bottom of the foot base sleeve, the bottom of the pad is connected with a plug rod inserted into the inside of the foot base sleeve and movable, and the outside of the foot base sleeve is provided with a locking member for locking the plug rod.
[0011] Further, the plug rod is provided along the length extension direction with a plurality of inner holes, the foot base sleeve is provided with outer holes aligned with the inner holes, and the locking member passes through the outer holes and the inner holes at the same time to lock and fix.
[0012] Further, the anti-static board body is sequentially stacked from bottom to top with a stretch plate layer, a foamed cement layer, a cold-rolled steel plate layer and an anti-static veneer layer, and the outside of the anti-static veneer layer, the cold-rolled steel plate layer and the stretch plate layer is collectively bonded with a conductive edge strip.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The anti-static floor provided by the utility model is connected by the multiple clamping fixing mode of the pad and the crosspiece during installation, forming a support body for accommodating and fixing the anti-static board body, and the anti-static body is fixed on the pad at the same time, and the stability of the internal structure of the support body is enhanced through the extension on the side, preventing the support body from loosening or falling off after being connected with the anti-static board body, and the overall structure is simple, convenient to install and improves the installation efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is whole structure connection schematic view of the embodiment of the utility model;
[0016] Figure 2 It is support body structure schematic view of the embodiment of the utility model;
[0017] Figure 3 It is mat connection anti-static plate body structure schematic view of the embodiment of the utility model;
[0018] Figure 4 It is cross bar structure schematic view of the embodiment of the utility model;
[0019] Figure 5 It is anti-static plate body bottom structure schematic view of the embodiment of the utility model;
[0020] Figure 6 It is anti-static plate body internal section structure schematic view of the embodiment of the utility model;
[0021] Figure 7 It is mat, plug pole and foot base sleeve connection structure schematic view of the embodiment of the utility model;
[0022] Mark in drawing:
[0023] 1-anti-static plate body, 2-support body, 3-foot base sleeve, 4-fixing plate, 5-plug pole, 6-locking piece;
[0024] 101-extension, 102-second clamping groove, 103-stretching plate layer, 104-foamed cement layer, 105-cold-rolled steel plate layer, 106-anti-static veneer layer, 107-conductive edge strip;
[0025] 201-mat, 202-cross bar, 203-mounting groove, 204-first clamping groove, 205-first clamping block, 206-second clamping block, 207-air hole;
[0026] 301-outer hole;
[0027] 501-inner hole. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0029] For example, Figures 1-7The utility model provides a kind of anti-static floor convenient to install, mainly for solving the problem of current anti-static floor installation inconvenient, too troublesome. The structure of the anti-static floor mainly includes anti-static board body 1 and support body 2 two parts, wherein, support body 2 is installed at the bottom of anti-static board body 1 for lifting positioning anti-static board body 1, so that anti-static board body 1 is suspended in the air above the ground. It needs to be pointed out that the number of anti-static board body 1 and support body 2 can be set to multiple, can be used in unlimited splicing anti-static board body 1, this embodiment illustrates the installation structure of single anti-static board body 1.
[0030] The structure of anti-static board body 1, stretching plate layer 103, foamed cement layer 104, cold-rolled steel plate layer 105 and anti-static veneer layer 106 are stacked in turn from bottom to top, and conductive edge strip 107 is additionally provided on the side by adhesive means, which is in contact with the outer side of anti-static veneer layer 106, cold-rolled steel plate layer 105 and stretching plate layer 103. Among them, stretching plate layer 103 usually serves as the bottom plate of the anti-static floor, providing certain strength and stability, which may be made of a specific material (such as ST14 deep-drawing steel plate) through a stretching process. Foamed cement layer 104 is located above the stretching plate layer 103, which plays a role in filling and enhancing the bearing structure. In addition, foamed cement has good lightness and strength, and can form a stable bearing layer after curing. Cold-rolled steel plate layer 105 is usually made of SPCC hard cold-rolled steel plate, which serves as the main support structure of the anti-static board. Cold-rolled steel plate has high mechanical strength and bearing capacity, and the surface is treated with conductive epoxy plastic spraying, which has anti-rust and anti-static properties. Anti-static veneer layer 106 is located at the top layer and directly contacts the user. It is usually made of PVC, HPL and other anti-static materials, which has good wear resistance, anti-static performance and easy cleaning characteristics, and can effectively prevent the generation and accumulation of static electricity to protect users from the harm of static electricity. Conductive edge strip 107 plays a key role in ensuring the overall anti-static performance of the anti-static floor. It mainly serves as a bridge connecting the anti-static board and the grounding system, ensuring that static electricity can be timely and effectively introduced into the ground, thereby preventing the accumulation of static electricity from causing harm to equipment and personnel. In addition, conductive edge strip 107 is usually made of materials with good conductive properties, such as metal (such as copper, aluminum, etc.) or conductive plastic, etc. These materials have good conductivity and corrosion resistance, which can ensure long-term stable anti-static effect.
[0031] In addition, in order to facilitate the installation of the anti-static board body 1 and the support body 2, an extension 101 is provided on the side of the anti-static board body 1, which can be quickly installed on the support body 2.
[0032] The structure of the support body 2 mainly comprises several base plates 201 and several cross bars 202. In this embodiment, four base plates 201 and four cross bars 202 are used to support and fix the anti-static plate body 1. When connected, two adjacent base plates 201 are connected by a cross bar 202, so that a square structure is formed between the base plate 201 and the cross bar 202, and the square structure is used to accommodate and fix the anti-static plate body 1. After the cross bar 202 is installed on the base plate 201, the horizontal plane of the cross bar 202 after installation is higher than that of the base plate 201, which facilitates the fixing of the anti-static plate body 1 accommodated inside.
[0033] When the cross bar 202 is connected to the base plate 201, an installation groove 203 for installing the cross bar 202 is formed on the base plate 201, and one end of the installation groove 203 is in communication with the side surface of the base plate 201. In order to further improve the fixing of the cross bar 202 in the installation groove 203, a first clamping groove 204 is formed on the bottom of the installation groove 203, and a first clamping block 205 protruding downward from both ends of the cross bar 202 is inserted into the corresponding first clamping groove 204 for fixing. This fixing method does not require the use of screws or other accessories for fixing, and is simple and firm to install.
[0034] At this time, when the anti-static plate body 1 is installed, the bottom corner area of the anti-static plate body 1 is fixed on the four base plates 201, and the outer side of the anti-static plate body 1 is tightly attached to the inner side of the four cross bars 202. In addition, an extension part 101 extending outward to cover the top of the cross bar 202 is arranged on the top of the anti-static plate body 1, which improves the stability of the structure built on the top. In addition, the anti-static plate body 1 is sealed and assembled with the adjacent anti-static plate body through the extension part 101. Therefore, the length of the extension part 101 can only reach half of the width of the top surface of the cross bar 202. When the base plate 201 fixes the anti-static plate body 1, a second clamping block 206 protruding upward is arranged on the side of the base plate 201 in contact with the anti-static plate body 1, which is inserted into the inside of the anti-static plate body 1 for fixing. Correspondingly, a second clamping groove 102 is formed in the bottom corner area of the anti-static plate body 1 for insertion and fixing of the second clamping block 206.
[0035] Since the anti-static plate body 1 can be spliced on the support body 2, the installation groove 203 and the second clamping block 206 arranged on the same base plate 201 are both four, and the installation groove 203 and the second clamping block 206 are staggered. When distributed, the installation groove 203 is close to the four side edges, and the second clamping block 206 is distributed in the four corner areas. In addition, in order to reduce the internal pressure during installation, air holes 207 are formed in the center areas of the first clamping groove 204 and the second clamping block 206, which are in communication with the bottom of the base plate 201, and the installation is more convenient.
[0036] The anti-static plate body 1 can be supported and fixed by the base plate 201, and can also be adjusted in height by the structure installed at the bottom of the base plate 201. A foot sleeve 3 and a fixed plate 4 connected to the bottom of the foot sleeve 3 are arranged below the base plate 201, the bottom of the base plate 201 is connected with an insertion rod 5 inserted into the inside of the foot sleeve 3 and moved, and a locking piece 6 for locking the insertion rod 5 is installed outside the foot sleeve 3. When adjusting the height of the base plate 201, the user only needs to move the insertion rod 5 up and down in the foot sleeve 3 at the top to the specified height, and then lock it by the locking piece 6.
[0037] In order to facilitate the installation of the locking piece 6 and to strengthen the fixation of the insertion rod 5 in the foot sleeve 3, a plurality of inner holes 501 are arranged in the insertion rod 5 along the length direction, and an outer hole 301 aligned with the inner holes 501 is arranged in the foot sleeve 3. When the insertion rod 5 is moved, the outer hole 301 can be aligned with different inner holes 501, and finally the locking piece 6 passes through the outer hole 301 and the corresponding inner hole 501 to be locked and fixed.
[0038] Compared with the prior art, the anti-static floor provided by the technical scheme is connected by the multiple clamping fixation mode of the base plate 201 and the cross rod 202 when installed, forming a bracket body 2 for accommodating and fixing the anti-static plate body 1. The anti-static body 1 is fixed on the base plate 201, and the stability of the internal structure of the bracket body 2 is strengthened by the side extension 101, preventing the bracket body 2 from loosening or falling off after being connected with the anti-static plate body 1. The overall structure is simple, convenient to install, and improves the installation efficiency.
[0039] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application, and any reference signs in the claims should not be regarded as limiting the claims.
Claims
1. An anti-static floor which is easy to install, comprising an anti-static plate body and a support body for holding the anti-static plate body in position, characterized in that: The support body comprises several pads and several crossbars, two adjacent pads are connected by a crossbar, and the horizontal plane of the crossbar is higher than the horizontal plane of the pad, the pad is provided with a mounting groove for mounting the crossbar, and one end of the mounting groove is in communication with the side of the pad, the bottom of the mounting groove is provided with a downwardly recessed first clamping groove, the two ends of the crossbar are mounted in the mounting grooves on the two adjacent pads, and the first clamping blocks protruding downward at the two ends of the crossbar are inserted into the corresponding first clamping grooves for fixation, the bottom corner regions of the anti-static plate body are mounted on different pads, and the outer side of the anti-static plate body is close to the inner side of the adjacent crossbar, the top of the anti-static plate body is provided with an extension part extending outward to cover the top of the crossbar, and the pad is provided with a second clamping block protruding upward and inserted into the inside of the anti-static plate body for fixation.
2. The anti-static floor of claim 1, wherein: The number of mounting grooves and second clamping blocks provided on the same pad is four, and the mounting grooves and second clamping blocks are staggered.
3. The anti-static floor of claim 1, wherein: The bottom corner regions of the anti-static plate body are provided with second clamping grooves for inserting and fixing the second clamping blocks.
4. The anti-static floor of claim 1, wherein: The central regions of the first clamping grooves and the second clamping blocks are provided with air holes in communication with the bottom of the pad.
5. The anti-static floor of claim 1, wherein: The lower side of the pad is provided with a foot base sleeve and a fixing plate connected to the bottom of the foot base sleeve, the bottom of the pad is connected with an insertion rod inserted into the inside of the foot base sleeve and movable, and the outer side of the foot base sleeve is provided with a locking member for locking the insertion rod.
6. The anti-static floor of claim 5, wherein: The insertion rod is provided with several inner holes along the length extension direction, the foot base sleeve is provided with outer holes aligned with the inner holes, and the locking member passes through the outer holes and the inner holes at the same time for locking and fixation.
7. The anti-static floor of any one of claims 1-6, wherein: The anti-static plate body is sequentially stacked from bottom to top with a stretch plate layer, a foamed cement layer, a cold-rolled steel plate layer and an anti-static veneer layer, and the outer sides of the anti-static veneer layer, the cold-rolled steel plate layer and the stretch plate layer are collectively bonded with a conductive edge strip.