Stair-shaped machine room anti-static floor closing structure

By using adjustable supports, longitudinal keels, and angle steel sections in the stepped computer room, the problems of fixing and sealing the stepped antistatic floor were solved, achieving stable and aesthetically pleasing antistatic floor installation and enhancing the floor's safety and overall integrity.

CN223689247UActive Publication Date: 2025-12-19SHANXI WUJIAN GRP CO LTD
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Patent Information

Application Number
CN202520048103.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-12-19
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

During the construction of antistatic flooring, how to effectively fix and seal the edges of stepped antistatic flooring to ensure its safety protection function and aesthetics?

Method used

The structure employs adjustable upper and lower supports, longitudinal and transverse keels, and angle steel sections. By adjusting the height of the supports and the position of the angle steel sections, the installation and edge sealing of the stepped antistatic floor can be achieved, ensuring the stability and integrity of the floor.

Benefits of technology

This technology enables stable installation and aesthetically pleasing enclosure of stepped antistatic flooring, improving the floor's stress stability and overall integrity, and enhancing both safety and aesthetics.

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Patent Text Reader

Abstract

The utility model discloses an anti-static floor closing structure of a stepped machine room, and belongs to the technical field of anti-static floor construction. The anti-static floor mainly comprises an upper adjustable support, a lower adjustable support, an upper longitudinal keel, a lower longitudinal keel, an upper transverse keel, a lower transverse keel, an upper angle steel section, a lower angle steel section, an upper transverse surface anti-static floor, a lower transverse surface anti-static floor and a vertical surface anti-static floor. According to the utility model, the installation of the stepped anti-static floor with different elevations on the transverse surface is realized through the adjusting supports, the longitudinal keels, the transverse keels and other structures, the edge sealing installation of the vertical anti-static floor is realized through the angle steel sections, and the elevation adjustment of the lower anti-static floor with the transverse surface is realized through the height adjustment of the lower adjustable supports; the elevation of the upper transverse surface anti-static floor is adjusted by adjusting the height of the upper adjustable support, and the perpendicularity of the vertical surface anti-static floor is adjusted by adjusting the positions of the upper angle steel section and the lower angle steel section.
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Description

TECHNICAL FIELD

[0001] The utility model relates to anti -static floor construction technical field, specifically is a ladder type computer room anti -static floor closed structure. BACKGROUND

[0002] In recent years, with the rapid development of intelligentization, the construction of large data center, monitoring computer room can be seen everywhere, and for the safety, the floor in data center, computer room all adopt anti -static floor, for data center, it stores a large number of servers, storage equipment and other electronic information equipment, these equipment is very sensitive to static electricity, anti -static floor can the static electricity generated by human body and equipment be quickly introduced into the ground, avoid static electricity to cause damage to equipment, such as leading to equipment failure, data loss etc., ensure the stable operation of data center, for computer room, anti -static floor can effectively prevent static electricity interference computer normal operation, protect computer hardware and stored data, reduce the failure and data error caused by static electricity.

[0003] But in the actual construction process of anti -static floor, due to the actual need of data center, computer room and other building structures, there will inevitably be ladder structure, therefore, the anti -static floor at different elevations needs to be fixed and installed and edge finishing treatment, to ensure the safety protection function and finishing appearance of anti -static floor. SUMMARY

[0004] The utility model discloses a ladder type computer room anti -static floor closed structure is provided to solve the problems in the prior art.

[0005] The utility model discloses a ladder type computer room anti -static floor closed structure is provided to solve the problems in the prior art.

[0006] A ladder type computer room anti -static floor closed structure, including upper adjustable support, lower adjustable support, upper longitudinal keel, lower longitudinal keel, upper transverse keel, lower transverse keel, upper angle steel section, lower angle steel section, upper transverse anti -static floor, lower transverse anti -static floor and facade anti -static floor.

[0007] The upper adjustable support includes an upper flange plate, a lower flange plate and a stand column, the top end of the stand column is fixedly connected to the center of the right plate edge of the upper flange plate, and the bottom end of the stand column is fixedly connected to the center of the top surface of the lower flange plate.

[0008] The lower adjustable support includes an upper flange plate, a lower flange plate and a stand column, the top end of the stand column is fixedly connected to the center of the bottom surface of the upper flange plate, and the bottom end of the stand column is fixedly connected to the center of the top surface of the lower flange plate.

[0009] The lower flange plate of the upper adjustable support is arranged in close contact with the upper flange plate of the lower adjustable support, and the two are fixedly connected through rivets.

[0010] The upper longitudinal keel is supported on the upper flange plate of the upper adjustable support and fixedly connected by self-tapping screws.

[0011] The lower longitudinal keel is supported on the right half of the lower flange plate of the upper adjustable support, and the lower longitudinal keel, the right half of the lower flange plate of the upper adjustable support and the right half of the upper flange plate of the lower adjustable support are fixedly connected by self-tapping screws.

[0012] The upper transverse keel is supported on the upper flange plate of the upper adjustable support, the upper angle steel segment is supported on the upper transverse keel, and the upper angle steel segment, the upper transverse keel and the upper flange plate of the upper adjustable support are fixedly connected by self-tapping screws.

[0013] The lower transverse keel is supported on the lower flange plate of the upper adjustable support, the lower angle steel segment is supported on the lower transverse keel, and the lower angle steel segment, the lower transverse keel and the upper flange plate of the upper adjustable support are fixedly connected by self-tapping screws.

[0014] The upper transverse anti-static floor is installed on the upper longitudinal keel, the lower transverse anti-static floor is installed on the lower longitudinal keel, and the vertical anti-static floor is installed between the upper angle steel segment on the upper transverse keel and the lower angle steel segment on the lower transverse keel.

[0015] Further, the vertical column in the upper adjustable support and the lower adjustable support comprises an upper connecting cylinder, a lower connecting rod and an adjusting nut, the top end of the upper connecting cylinder is fixedly connected with the upper flange plate, the bottom end of the lower connecting rod is fixedly connected with the lower flange plate, the lower connecting rod is inserted into the upper connecting cylinder and is in sliding connection with the upper connecting cylinder, and the adjusting nut is sleeved on the lower connecting rod and is in thread engagement with the lower connecting rod.

[0016] Further, the lower flange plate of the upper adjustable support is the same size as the upper flange plate of the lower adjustable support.

[0017] Further, the lower flange plate of the lower adjustable support is larger than the upper flange plate.

[0018] Further, a male corner sealing strip is installed between the right plate edge of the upper transverse anti-static floor and the upper plate edge of the vertical anti-static floor, and a female corner sealing strip is installed between the left plate edge of the lower transverse anti-static floor and the lower plate edge of the vertical anti-static floor.

[0019] The utility model discloses through adjusting support, longitudinal keel, transverse keel etc. Structure realized the installation of the horizontal surface antistatic floor of different elevation of ladder type, on this basis again through angle steel section realized the edge sealing installation of facade antistatic floor.

[0020] The utility model discloses ladder type computer lab antistatic floor closed structure scientific design, reasonable in structure, simple construction has strengthened the stability of ladder type antistatic floor stress and the integrity of closed, and appearance is more beautiful, and the safety has been effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the vertical section schematic view of the utility model structure.

[0022] Figure 2 It is the structure schematic view of the upper adjustable support in the utility model structure.

[0023] Figure 3 It is the structure schematic view of the lower adjustable support in the utility model structure.

[0024] In the drawing: 1 - upper adjustable support, 2 - lower adjustable support, 3 - upper longitudinal keel, 4 - lower longitudinal keel, 5 - upper transverse keel, 6 - lower transverse keel, 7 - upper angle steel section, 8 - lower angle steel section, 9 - upper horizontal surface antistatic floor, 10 - lower horizontal surface antistatic floor, 11 - facade antistatic floor, 12 - rivet, 13 - self tapping screw, 14 - upper connecting cylinder, 15 - lower connecting rod, 16 - adjusting nut, 17 - male corner edge sealing strip, 18 - female corner edge sealing strip. DETAILED DESCRIPTION

[0025] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and 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 the ordinary skill in the art without creative labor belong to the range of the utility model protection.

[0026] In the description of the utility model, it is necessary to explain that the orientation or position relation indicated by the terms "upper", "lower", "left", "right", "vertical", "horizontal" etc. is based on the drawings, and the direction or position relation is changed when the drawings are oriented. Figure 1The shown orientation or position relationship is only for facilitating the description of the utility model and simplifying the description, and is not indicative or suggestive of the indicated device or element having a specific orientation, being constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model.

[0027] As Figure 1 shown, the embodiment provides a ladder type computer room anti-static floor closed structure, including upper adjustable support 1, lower adjustable support 2, upper longitudinal keel 3, lower longitudinal keel 4, upper transverse keel 5, lower transverse keel 6, upper angle steel section 7, lower angle steel section 8, upper transverse anti-static floor 9, lower transverse anti-static floor 10 and facade anti-static floor 11.

[0028] The upper adjustable support 1 includes upper flange plate, lower flange plate and stand column, the top end of the stand column is fixedly connected with the center of the right plate edge of the upper flange plate, and the bottom end of the stand column is fixedly connected with the center of the top surface of the lower flange plate.

[0029] The lower adjustable support 2 includes upper flange plate, lower flange plate and stand column, the top end of the stand column is fixedly connected with the center of the bottom surface of the upper flange plate, and the bottom end of the stand column is fixedly connected with the center of the top surface of the lower flange plate.

[0030] The lower flange plate of the upper adjustable support 1 is arranged in close contact with the upper flange plate of the lower adjustable support 2, and the two are fixedly connected through rivets 12.

[0031] The upper longitudinal keel 3 is supported on the upper flange plate of the upper adjustable support 1 and is fixedly connected with the same through self-tapping screws 13.

[0032] The lower longitudinal keel 4 is supported on the right half of the lower flange plate of the upper adjustable support 1, and the lower longitudinal keel 4, the right half of the lower flange plate of the upper adjustable support 1 and the right half of the upper flange plate of the lower adjustable support 2 are fixedly connected through self-tapping screws 13.

[0033] The upper transverse keel 5 is supported on the upper flange plate of the upper adjustable support 1, the upper angle steel section 7 is supported on the upper transverse keel 5, and the upper angle steel section 7, the upper transverse keel 5 and the upper flange plate of the upper adjustable support 1 are fixedly connected through self-tapping screws 13.

[0034] The lower transverse keel 6 is supported on the lower flange plate of the upper adjustable support 1, the lower angle steel section 8 is supported on the lower transverse keel 6, and the lower angle steel section 8, the lower transverse keel 6 and the upper flange plate of the upper adjustable support 1 are fixedly connected through self-tapping screws 13.

[0035] The upper horizontal anti-static floor 9 is installed on the upper longitudinal keel 3, the lower horizontal anti-static floor 10 is installed on the lower longitudinal keel 4, and the vertical anti-static floor 11 is installed between the upper angle steel section 7 on the upper horizontal keel 5 and the lower angle steel section 8 on the lower horizontal keel 6.

[0036] In this embodiment, as shown in Figure 2 and Figure 3 The vertical column in the upper adjustable support 1 and the lower adjustable support 2 includes an upper connecting cylinder 14, a lower connecting rod 15, and an adjusting nut 16. The top end of the upper connecting cylinder 14 is fixedly connected with the upper flange plate, the bottom end of the lower connecting rod 15 is fixedly connected with the lower flange plate, the lower connecting rod 15 is inserted into the upper connecting cylinder 14 and is in sliding connection with the upper connecting cylinder 14, and the adjusting nut 16 is sleeved on the lower connecting rod 15 and is in thread engagement with the lower connecting rod 15.

[0037] In this embodiment, the lower flange plate of the upper adjustable support 1 is the same size as the upper flange plate of the lower adjustable support 2.

[0038] In this embodiment, the lower flange plate of the lower adjustable support 2 is larger than the upper flange plate.

[0039] In this embodiment, a male corner sealing strip 17 is installed between the right plate edge of the upper horizontal anti-static floor 9 and the upper plate edge of the vertical anti-static floor 11, and a female corner sealing strip 18 is installed between the left plate edge of the lower horizontal anti-static floor 10 and the lower plate edge of the vertical anti-static floor 11.

[0040] The construction method of the closed structure of the stepped type computer room anti-static floor according to the embodiment is as follows:

[0041] 1) The upper adjustable support 1 and the lower adjustable support 2 are placed in alignment, the lower flange plate of the upper adjustable support 1 is attached to the upper flange plate of the lower adjustable support 2, and the two are fixedly connected into a whole by rivets 12.

[0042] 2) The upper and lower longitudinal keels 3, 4 are placed on the upper and lower flange plates of the upper adjustable support 1, respectively, and the upper and lower longitudinal keels 3, 4 are fixedly connected with the upper adjustable support 1 into a whole by self-tapping screws 13.

[0043] 3) The height of the upper and lower adjustable supports 1, 2 is adjusted to ensure the elevation of the installation of the upper and lower horizontal anti-static floors 9, 10.

[0044] 4) The upper and lower horizontal keels 5, 6 are installed on the upper and lower flange plates of the upper adjustable support 1, respectively, and the lower angle steel section 8 is installed on the lower horizontal keel 6, and the lower angle steel section 8, the lower horizontal keel 6, and the upper adjustable support 1 are connected and fixed into a whole by self-tapping screws 13.

[0045] 5) temporarily install the upper angle steel section 7 on the upper transverse keel 5, cut the vertical anti-static floor 11 to the appropriate height according to the height of the upper angle steel section 7, cut a groove on the inner surface of the vertical anti-static floor 11 at the appropriate position, fix the corresponding angle steel section in the groove, adjust the verticality of the vertical anti-static floor 11 by adjusting the position of the upper angle steel section 7, after reaching the requirement, connect and fix the upper angle steel section 7, the upper transverse keel 5 and the upper adjustable support 1 into a whole through the self-tapping screw 13, and complete the installation of the vertical anti-static floor 11.

[0046] 6) install the upper and lower horizontal anti-static floors 9 and 10 on the upper and lower longitudinal keels 3 and 4.

[0047] 7) install the male corner sealing strip 17 between the right plate edge of the upper horizontal anti-static floor 9 and the upper plate edge of the vertical anti-static floor 11, and install the female corner sealing strip 18 between the left plate edge of the lower horizontal anti-static floor 10 and the lower plate edge of the vertical anti-static floor 11, and the construction is completed.

[0048] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A stepped antistatic floor enclosure structure for computer rooms, characterized in that: The upper adjustable support, the lower adjustable support, the upper longitudinal keel, the lower longitudinal keel, the upper transverse keel, the lower transverse keel, the upper angle steel section, the lower angle steel section, the upper horizontal anti-static floor, the lower horizontal anti-static floor and the vertical anti-static floor are provided. The upper adjustable support comprises an upper flange plate, a lower flange plate and a vertical column, the top end of the vertical column is fixedly connected to the center of the right plate edge of the upper flange plate, and the bottom end of the vertical column is fixedly connected to the center of the top surface of the lower flange plate. The lower adjustable support comprises an upper flange plate, a lower flange plate and a vertical column, the top end of the vertical column is fixedly connected to the center of the bottom surface of the upper flange plate, and the bottom end of the vertical column is fixedly connected to the center of the top surface of the lower flange plate. The lower flange plate of the upper adjustable support is arranged in close contact with the upper flange plate of the lower adjustable support, and the two are fixedly connected through rivets. The upper longitudinal keel is supported on the upper flange plate of the upper adjustable support and is fixedly connected to the upper flange plate through self-tapping screws. The lower longitudinal keel is supported on the right half of the lower flange plate of the upper adjustable support, and the lower longitudinal keel, the right half of the lower flange plate of the upper adjustable support and the right half of the upper flange plate of the lower adjustable support are fixedly connected through self-tapping screws. The upper transverse keel is supported on the upper flange plate of the upper adjustable support, the upper angle steel section is supported on the upper transverse keel, and the upper angle steel section, the upper transverse keel and the upper flange plate of the upper adjustable support are fixedly connected through self-tapping screws. The lower transverse keel is supported on the lower flange plate of the upper adjustable support, the lower angle steel section is supported on the lower transverse keel, and the lower angle steel section, the lower transverse keel and the upper flange plate of the upper adjustable support are fixedly connected through self-tapping screws. The upper horizontal anti-static floor is installed on the upper longitudinal keel, the lower horizontal anti-static floor is installed on the lower longitudinal keel, and the vertical anti-static floor is installed between the upper angle steel section on the upper transverse keel and the lower angle steel section on the lower transverse keel.

2. The stepped machine room electrostatic floor closure structure according to claim 1, wherein: The vertical column in the upper adjustable support and the lower adjustable support comprises an upper connecting cylinder, a lower connecting rod and an adjusting nut, the top end of the upper connecting cylinder is fixedly connected to the upper flange plate, the bottom end of the lower connecting rod is fixedly connected to the lower flange plate, the lower connecting rod is inserted into the upper connecting cylinder and is in sliding connection with the upper connecting cylinder, and the adjusting nut is sleeved on the lower connecting rod and is in thread engagement with the lower connecting rod.

3. The stepped machine room electrostatic floor closure structure according to claim 1, wherein: The lower flange plate of the upper adjustable support is the same in size as the upper flange plate of the lower adjustable support.

4. The stepped machine room electrostatic floor closure structure according to claim 3, wherein: The lower flange plate of the lower adjustable support is larger than the upper flange plate.

5. The stepped containment structure for an electronic equipment room according to any one of claims 1 to 4, wherein: A male corner sealing strip is installed between the right plate edge of the upper horizontal anti-static floor and the upper plate edge of the vertical anti-static floor, and a female corner sealing strip is installed between the left plate edge of the lower horizontal anti-static floor and the lower plate edge of the vertical anti-static floor.