A machine room rapid construction anti-static device and a construction method thereof

The combination of hexagonal screws and copper foil tape simplifies the anti-static construction process for computer rooms, solves the problems of complex and long construction periods in traditional construction, and achieves a fast and effective grounding effect.

CN122121028APending Publication Date: 2026-05-29SHANXI NO 3 CONSTR ENG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANXI NO 3 CONSTR ENG
Filing Date
2026-03-09
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional anti-static construction procedures for computer rooms are complex, time-consuming, and difficult to control in terms of pass rate.

Method used

It adopts a combination structure of internal hexagonal screw, gasket and wide copper foil tape, and achieves rapid grounding through simple construction steps, including drilling holes on the base surface, installing expansion granules, applying copper foil tape, putting on gaskets and nuts, fixing plastic sleeves, and applying conductive coating.

Benefits of technology

It simplified the construction process, improved the effective grounding qualification rate, shortened the construction period, and reduced costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a machine room rapid construction anti-static device and a construction method thereof, and relates to the technical field of building construction. The device comprises an inner hexagonal screw rod, a gasket one and a gasket two. The bottom of the inner hexagonal screw rod is fixed in a hole formed in a base surface. The other end of the inner hexagonal screw rod is vertically upward. Two wide copper foil tapes are arranged on the two sides of the inner hexagonal screw rod and are parallelly attached to the base surface. Through holes are formed in the centers of the gasket one and the gasket two. The gasket one and the gasket two are sequentially sleeved on the inner hexagonal screw rod. The gasket one is pressed on the wide copper foil tapes. An M6 nut is threadedly connected to the inner hexagonal screw rod and is pressed on the gasket two. A plastic sleeve is sleeved on the end of the inner hexagonal screw rod that is exposed from the base surface and is fixed on the inner hexagonal screw rod. The application can improve the effective qualified rate of grounding, replace the complex construction process of the traditional grounding elevated floor copper foil grounding, effectively shorten the construction period and increase the cost.
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Description

Technical Field

[0001] This invention relates to the field of building construction technology, and in particular to a rapid construction anti-static device for computer rooms and its construction method. Background Technology

[0002] In traditional construction, rooms and large factories requiring static electricity control typically use anti-static raised floors with a grounding depth of 1 meter. A 1-meter copper foil mesh is used for connection. The construction sequence for raised floors is generally complex, typically following this order: base treatment and acceptance → marking and positioning → installation of the grounding system → bracket installation and leveling → beam installation → laying of the anti-static raised floor → edge finishing → gap sealing → anti-static performance testing → cleaning and acceptance. The grounding device involves laying an anti-static grounding trunk line according to design requirements. The trunk line is concealed along the wall or floor, with a fixed spacing not exceeding 1.5m, and is securely fixed to prevent loosening. The grounding trunk line is bolted to the building grounding body (such as the grounding electrode or grounding trunk line). Rust and oxide layers should be removed from the connection point, and conductive paste should be applied to ensure a reliable connection with a contact resistance of less than 0.1Ω. Grounding terminals are installed within the bracket installation area, and these terminals are welded or bolted to the grounding trunk line. Each grounding terminal should be clearly labeled. This construction process is complex, time-consuming, and the pass rate is difficult to control effectively. Summary of the Invention

[0003] The purpose of this invention is to provide a rapid construction anti-static device for computer rooms and its construction method, thereby solving the above-mentioned problems.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: This invention discloses a rapid construction anti-static device for computer rooms, comprising an internal hexagonal screw, a first washer, and a second washer. The bottom of the internal hexagonal screw is fixed in a hole on a base surface, and the other end of the internal hexagonal screw points vertically upward. Two wide copper foil tapes are provided on both sides of the internal hexagonal screw, and the wide copper foil tapes are applied parallel to the base surface. The center of each of the first and second washers has a through hole. The first and second washers are sequentially fitted onto the internal hexagonal screw, with the first washer pressing against the wide copper foil tape. An M6 nut is threaded onto the internal hexagonal screw, and the M6 ​​nut presses against the second washer. A plastic sleeve is fitted onto the end of the internal hexagonal screw that protrudes from the base surface, and the plastic sleeve is fixed to the internal hexagonal screw.

[0005] Furthermore, the internal hexagonal screw extends 16mm above the base surface.

[0006] Furthermore, the diameter of the first gasket is 60mm, and the diameter of the second gasket is 30mm.

[0007] Furthermore, the width of the wide copper foil tape is 10mm.

[0008] A method for constructing a rapid anti-static device for computer rooms includes the following steps: A. Prepare the substrate and apply the primer according to the corresponding drawings; B. Drill holes in the base surface. After drilling, clean up the dust and loose materials, and clean the base surface thoroughly. C. Install expansion granules in the drilled holes. The installed granules must be flush with the ground. Screw the hexagonal screw into the expansion granules, leaving the hexagonal screw 16mm above the ground. D. Place two 10mm wide copper foil tapes parallel to each other on both sides of the drilled hole; E. Place washer one and washer two onto the internal hex screw, press washer one onto the wide copper foil tape, and then tighten with the M6 ​​nut. F. Fit the matching plastic sleeve onto the protruding hexagonal socket screw and tighten it. G. Apply the black conductive coating as required, then apply the conductive top layer. After the bottom layer material has fully cured, remove the plastic sleeve. H. Carefully clean the exposed part of the internal hexagon screw and use an M6 nut to fix the wire lug to the internal hexagon screw; I. Finally, connect the grounding cable to the lug.

[0009] Furthermore, the drilling on the base surface requires a hole diameter of 8mm and a hole depth greater than 50mm.

[0010] Furthermore, ensure the plastic sleeve is securely fitted before applying the black conductive coating.

[0011] Compared with the prior art, the beneficial technical effects of the present invention are as follows: This invention can improve the effective qualification rate of grounding and replace the complicated construction process of traditional grounding raised floor copper foil grounding, effectively shortening the construction period and increasing costs. Attached Figure Description

[0012] The present invention will be further described below with reference to the accompanying drawings.

[0013] Figure 1 This is a top view of the anti-static device for rapid construction in computer rooms according to the present invention; Figure 2 Top view of the hexagon socket screw installation; Figure 3 Top view of the conductive coating application process; Figure 4 Top view of the conductive surface layer construction; Explanation of reference numerals in the attached diagram: 1. Hex socket screw; 2. Washer 1; 3. Washer 2; 4. M6 nut; 5. Wide copper foil tape; 6. Plastic sleeve. Detailed Implementation

[0014] like Figure 1 As shown, a rapid construction anti-static device for computer rooms includes an internal hexagonal screw 1, a first washer 2, and a second washer 3. The bottom of the internal hexagonal screw 1 is fixed in a hole opened on the base surface, and the other end of the internal hexagonal screw 1 is vertically upward. The internal hexagonal screw 1 is 16mm higher than the base surface.

[0015] Two wide copper foil tapes 5, each 10mm wide, are provided on both sides of the internal hexagonal screw 1. The wide copper foil tapes 5 are applied parallel to each other on the base surface. Both the first washer 2 and the second washer 3 have through holes in their centers. The first washer 2 and the second washer 3 are sequentially fitted onto the internal hexagonal screw 1, with the first washer 2 pressing against the wide copper foil tapes 5. The diameter of the first washer 2 is 60mm, and the diameter of the second washer 3 is 30mm.

[0016] An M6 nut 4 is threaded onto the internal hexagonal screw 1, and the M6 ​​nut 4 presses onto the washer 2 3.

[0017] A plastic sleeve 6 is fitted onto one end of the internal hexagonal screw 1 that protrudes from the base surface, and the plastic sleeve 6 is fixed to the internal hexagonal screw 1.

[0018] like Figure 2-4 As shown, a method for constructing a rapid anti-static device for a computer room includes the following steps: A. Prepare the substrate and apply the primer according to the corresponding drawings; B. Drill holes on the base surface. The holes on the base surface should have a diameter of 8mm and a depth of more than 50mm. After drilling, clean up the dust and loose debris and clean the base surface. C. Install expansion granules in the drilled holes. The installed granules must be flush with the ground. Screw the hexagonal screw into the expansion granules, leaving the hexagonal screw 16mm above the ground. D. Place two 10mm wide copper foil tapes parallel to each other on both sides of the drilled hole; E. Place washer one and washer two onto the internal hex screw, press washer one onto the wide copper foil tape, and then tighten with the M6 ​​nut. F. Fit the matching plastic sleeve onto the protruding internal hexagonal screw and tighten it; G. Before applying the black conductive coating, ensure that the plastic sleeve is tightened. Apply the black conductive coating as required, then apply the conductive top layer. After the bottom layer material has fully cured, remove the plastic sleeve. H. Carefully clean the exposed part of the internal hexagon screw and use an M6 nut to fix the wire lug to the internal hexagon screw; I. Finally, connect the grounding cable to the lug.

[0019] The embodiments described above are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Various modifications and improvements made by those skilled in the art to the technical solutions of the present invention without departing from the spirit of the present invention should fall within the protection scope defined by the claims of the present invention.

Claims

1. A rapid construction anti-static device for computer rooms, characterized in that: The device includes an internal hexagonal screw (1), a first washer (2), and a second washer (3). The bottom of the internal hexagonal screw (1) is fixed in a hole on the base surface. The other end of the internal hexagonal screw (1) is vertically upward. Two wide copper foil tapes (5) are provided on both sides of the internal hexagonal screw (1). The wide copper foil tapes (5) are attached to the base surface in parallel. The center of the first washer (2) and the second washer (3) are both provided with through holes. The first washer (2) and the second washer (3) are sequentially sleeved on the internal hexagonal screw (1). The first washer (2) is pressed on the wide copper foil tape (5). An M6 nut (4) is threaded onto the internal hexagonal screw (1). The M6 ​​nut (4) is pressed on the second washer (3). A plastic sleeve (6) is sleeved on the end of the internal hexagonal screw (1) that protrudes from the base surface. The plastic sleeve (6) is fixed on the internal hexagonal screw (1).

2. The anti-static device for rapid construction of computer rooms according to claim 1, characterized in that: The internal hexagonal screw (1) extends 16mm above the base surface.

3. The anti-static device for rapid construction of computer rooms according to claim 1, characterized in that: The diameter of the first gasket (2) is 60 mm, and the diameter of the second gasket (3) is 30 mm.

4. The anti-static device for rapid construction of computer rooms according to claim 1, characterized in that: The width of the wide copper foil tape (5) is 10 mm.

5. A construction method for a rapid construction anti-static device for computer rooms according to any one of claims 1-4, characterized in that, Includes the following steps: A. Prepare the substrate and apply the primer according to the corresponding drawings; B. Drill holes in the base surface. After drilling, clean up the dust and loose materials, and clean the base surface thoroughly. C. Install expansion granules in the drilled holes. The installed granules must be flush with the ground. Screw the hexagonal screw into the expansion granules, leaving the hexagonal screw 16mm above the ground. D. Place two 10mm wide copper foil tapes parallel to each other on both sides of the drilled hole; E. Place washer one and washer two onto the internal hex screw, press washer one onto the wide copper foil tape, and then tighten with the M6 ​​nut. F. Fit the matching plastic sleeve onto the protruding internal hexagonal screw and tighten it; G. Apply the black conductive coating as required, then apply the conductive top layer. After the bottom layer material has fully cured, remove the plastic sleeve. H. Carefully clean the exposed part of the internal hexagon screw and use an M6 nut to fix the wire lug to the internal hexagon screw; I. Finally, connect the grounding cable to the lug.

6. The construction method of the rapid construction anti-static device for computer rooms according to claim 5, characterized in that: The drilling on the base surface requires a hole diameter of 8mm and a hole depth greater than 50mm.

7. The construction method of the rapid construction anti-static device for computer rooms according to claim 5, characterized in that: Before applying the black conductive coating, ensure that the plastic sleeve is tightened.