CN211369403U - Anti-static movable floor - Google Patents

Anti-static movable floor Download PDF

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Publication number
CN211369403U
CN211369403U CN201921932399.1U CN201921932399U CN211369403U CN 211369403 U CN211369403 U CN 211369403U CN 201921932399 U CN201921932399 U CN 201921932399U CN 211369403 U CN211369403 U CN 211369403U
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China
Prior art keywords
floor
plate
upper side
mounting
supporting
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CN201921932399.1U
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Chinese (zh)
Inventor
周跃武
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SHANGHAI BEISHENG BUILDING ENGINEERING DEVELOPMENT CO LTD
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SHANGHAI BEISHENG BUILDING ENGINEERING DEVELOPMENT CO LTD
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Priority to CN201921932399.1U priority Critical patent/CN211369403U/en
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Abstract

The utility model relates to an anti-static movable floor, which comprises a bracket and a floor; the plurality of supports comprise a support plate, a support piece and a mounting plate; the supporting plate is horizontally fixed on the ground; the supporting piece is vertically fixed in the middle of the upper side face of the supporting plate, and the supporting piece is of a telescopic structure and used for adjusting the height of the mounting plate; the mounting plate is horizontally fixed on the upper end surface of the supporting piece; the floor is provided with a plurality of blocks which are fixed on the upper sides of the plurality of brackets, wherein four corners of one floor are lapped on the upper side surfaces of the four brackets; the upper side surface of the floor is pasted with a high-wear-resistance anti-static veneer; conductive edge strips are embedded around the floor. The utility model discloses a set up the support and be retractable structure, can be more convenient highly adjust the support, the installation is more convenient.

Description

Anti-static movable floor
Technical Field
The utility model relates to a floor, in particular to prevent static raised floor.
Background
The anti-static movable floor is an overhead anti-static floor which is connected by a bracket and a cross beam and is used for guiding the generated static electricity to the ground.
The existing anti-static movable floor comprises supports, cross beams and floors, wherein the supports are arranged on the ground and are uniformly arranged at intervals according to the size of the floor; the cross beam is fixed among the brackets; the floor is arranged on the cross beam.
When installing, at first set for the position of support mounting on subaerial, fix a position the installation to the support, then fix the crossbeam on each support, then lay the crossbeam with the floor on, after the installation is accomplished, there is certain interval between floor and the ground, wherein relatively conveniently carry out laying of electric wire and with relatively conveniently ventilate etc. and set up, when the installation, there is higher requirement to the roughness on the floor of laying, however, the roughness on ground may not be very good, need revise ground when the installation, or adjust in the below of support with filling up gasket etc. so, the installation is more troublesome.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an anti-static raised floor, it is retractable structure through setting up the support, can be more convenient highly adjusting the support, and the installation is more convenient.
The above object of the present invention can be achieved by the following technical solutions: an anti-static movable floor comprises a bracket and a floor; the plurality of supports comprise a support plate, a support piece and a mounting plate; the supporting plate is horizontally fixed on the ground; the supporting piece is vertically fixed in the middle of the upper side face of the supporting plate, and the supporting piece is of a telescopic structure and used for adjusting the height of the mounting plate; the mounting plate is horizontally fixed on the upper end surface of the supporting piece; the floor is provided with a plurality of blocks which are fixed on the upper sides of the plurality of brackets, wherein four corners of one floor are lapped on the upper side surfaces of the four brackets; the upper side surface of the floor is pasted with a high-wear-resistance anti-static veneer; conductive edge strips are embedded around the floor.
By adopting the technical scheme, when the anti-static floor is installed, the bracket is firstly installed at the determined position, then the floor is installed on the fixed bracket, the plurality of floors are spliced to form the complete anti-static floor, the arranged high-wear-resistance anti-static veneering can increase the wear resistance of the surface of the floor and reduce the wear to the floor, the generated static can be timely transmitted to the underground by the conductive edge strips, and the anti-static function of the floor is enhanced; set up support piece and be retractable structure, can be more convenient when the installation adjust the height of support, when the roughness of bottom plate is not good, can be more convenient adjust its roughness to the standard of requirement, the installation is more convenient.
The utility model discloses further set up to: the support comprises a support column, a sliding sleeve and a rotating sleeve; the cross section of the supporting column is rectangular and is vertically fixed in the middle of the upper side surface of the supporting plate; the inner ring of the cross section of the sliding sleeve is rectangular, the outer ring of the cross section of the sliding sleeve is circular, and the sliding sleeve is sleeved on the support column; the mounting plate is horizontally fixed on the upper end face of the sliding sleeve; the rotating sleeve is rotatably supported on the supporting plate and sleeved outside the sliding sleeve; the rotating sleeve is connected with the sliding sleeve through threads.
Through adopting above-mentioned technical scheme, the rotatory sleeve that rotates through sliding sleeve and the cooperation between the sleeve that rotates, makes sliding sleeve rise, and through pillar and sliding sleeve's cooperation, makes sliding sleeve can not appear the pivoted condition along the gliding in-process of pillar, can not exert an influence to the position of mounting panel, only need rotate when adjusting the support height the sleeve can, the operation is more convenient.
The utility model discloses further set up to: the lower extreme of rotating sleeve's lateral surface is provided with protruding edge to the outside protrusion, set up in the backup pad with rotate the sleeve and protruding along the cavity of shape adaptation.
Through adopting above-mentioned technical scheme, realize rotating sleeve and rotate the function on supporting and the bottom plate, the structure is fairly simple, and is more firm to rotating sleeve's fixed, is difficult for producing and rocks.
The utility model discloses further set up to: and a blocking edge is vertically arranged on the outer side of the rotating sleeve.
Through adopting above-mentioned technical scheme, when rotatory rotating sleeve, can take off and keep off along last, compare in the outward appearance and do not have the rotating sleeve who keeps off along, more convenient hard.
The utility model discloses further set up to: the middle part of the upper side surface of the mounting plate is provided with a mounting block which is of a cross structure and is divided into four areas; the corners of the floor are positioned in each area, and the side surfaces of the floor are attached to the side surfaces of the mounting blocks.
By adopting the technical scheme, when the floor is installed on the support, the position of the floor can be defined conveniently through the installation block, and the floor is installed on a preset position conveniently.
The utility model discloses further set up to: the floor comprises a plate surface and a limiting plate; the limiting plate is arranged on the lower side surface of the plate surface and is arranged along the edge of the plate surface in a circle, and the size of the outer side surface of the limiting plate is smaller than that of the plate surface; the conductive edge strip is arranged on the outer side surface of the limiting plate, the limiting plate is attached to the side surface of the mounting block, and the conductive edge strip is clamped between the limiting plate and the mounting block; the plate surfaces are lapped on the upper side of the mounting block, and four plate surfaces on one bracket are connected and cover the upper side of the mounting block.
Through adopting above-mentioned technical scheme, when carrying out the installation on floor, paste the limiting plate with the side of installation piece mutually, fix the position on floor, the border of face is taken on the installation piece, covers the support in the downside of face, can realize better wholeness on the floor, has strengthened the aesthetic property on floor.
The utility model discloses further set up to: and a rubber pad is arranged on the upper side surface of the mounting block.
Through adopting above-mentioned technical scheme, when someone walks on the floor, can weaken the transmission of vibration from the floor to the support, form certain buffering between bottom plate and support, weaken passing of vibration, can reduce the wearing and tearing that cause the floor, prolong the life on floor.
The utility model discloses further set up to: the upper side surface of the mounting block is provided with a groove which is of a cross structure; the lower side surface of the rubber pad is provided with a convex block which is of a cross-shaped structure; the lug is embedded in the groove.
Through adopting above-mentioned technical scheme, inlay the lug with the rubber pad downside in the recess, can be with the more firm fixing of rubber pad on the installation piece, the condition of relative slip is difficult to appear on the installation piece to the rubber pad, and the shock attenuation effect of rubber pad is more stable.
To sum up, the utility model discloses following beneficial effect has:
1. the support is arranged to be of a telescopic structure, so that the height of the support can be conveniently adjusted when the floor is installed, the sliding sleeve can ascend and descend along the direction of the support column by rotating the rotating sleeve, and the flatness of the floor is adjusted to the required standard;
2. by arranging the mounting blocks, when the floor is mounted on the support, the position of the floor can be conveniently found, four floors on one support can be conveniently aligned and mounted, adjustment and positioning are not needed, and convenience is brought;
3. set up the rubber pad through setting up on the installation piece, can play certain cushioning effect, the wearing and tearing of support to the floor when less appearing vibrating can be fixed more firmly the installation piece with the rubber pad through set up in the recess of lug embedding installation piece in rubber pad bottom, the condition of dislocation is difficult to appear in the rubber pad, and the cushioning effect who plays is more stable.
Drawings
FIG. 1 is a schematic view of an anti-static raised floor;
FIG. 2 is an exploded view of the bracket;
FIG. 3 is a bottom schematic view of an anti-static raised floor;
fig. 4 is a sectional view for showing the structure of the rotating sleeve.
In the figure, 1, a bracket; 11. a support plate; 12. a support member; 121. a support pillar; 122. a sliding sleeve; 123. rotating the sleeve; 1231. a convex edge; 1232. blocking edges; 13. mounting a plate; 14. mounting blocks; 141. a groove; 15. a rubber pad; 151. a bump; 2. a floor; 21. plate surface; 22. a limiting plate; 3. high wear-resistant anti-static veneering; 4. conductive edge strips.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Examples
Referring to fig. 1, an anti-static raised floor comprises a bracket 1 and a floor 2; the plurality of supports 1 are made of metal and arranged on the ground, the mounting positions of the supports 1 are determined in advance according to the size of the floor 2, and the supports 1 are fixed on the ground through expansion bolts; the floor 2 is also made of metal and is arranged on each support 1, and four corners of one floor 2 are lapped on the four supports 1; in addition, referring to fig. 3, a high wear-resistant anti-static veneer 3 is attached to the upper side surface of the floor 2, and conductive edgings 4 are embedded around the veneer, so that an anti-static effect is achieved.
Referring to fig. 2 and 3, the bracket 1 includes a support plate 11, a support 12 and a mounting plate 13, wherein the support plate 11 is horizontally arranged on the ground; the supporting member 12 is vertically fixed at the middle position of the upper side of the supporting plate 11; the mounting plate 13 is horizontally fixed on the upper end face of the support member 12; an installation block 14 is arranged on the upper side surface of the installation plate 13, the installation block 14 is of a cross-shaped structure, and the installation plate 13 is divided into four areas; one corner of floor 2 is taken on mounting panel 13, be in one of them region, floor 2 includes face 21 and limiting plate 22, limiting plate 22 sets up on the downside of face 21, the border round setting around face 21, and limiting plate 22's lateral surface is in the inboard of face 21's lateral surface, electrically conductive strake 4 sets up on limiting plate 22's lateral surface, limiting plate 22 and the side laminating of installation piece 14, face 21 is taken on installation piece 14, its border is located the central line position of installation piece 14, the face 21 of four floors 2 on a mounting panel 13 meets, cover support 1 at the downside on floor 2.
Referring to fig. 2, in order to reduce the vibration between the floor 2 and the bracket 1 during walking, a rubber pad 15 is arranged on the upper side surface of the mounting block 14, and the rubber pad 15 is also of a cross structure, and the size of the cross section of the rubber pad 15 is the same as that of the cross section of the mounting block 14; when the shock absorber is installed, the edge of the plate surface 21 is lapped on the rubber pad 15, and a certain shock absorption effect can be achieved; in order to fix the rubber pad 15 on the mounting block 14 more firmly and prevent relative sliding on the mounting block 14, a groove 141 is arranged on the upper side surface of the mounting block 14; the groove 141 is cross-shaped and is arranged in the middle of the upper side surface of the mounting block 14; the middle position of the lower side surface of the rubber pad 15 is provided with a convex block 151 in a downward protruding mode, the convex block 151 is matched with the groove 141, the convex block 151 is embedded in the groove 141, the rubber pad 15 is fixed on the installation block 14, relative dislocation is not prone to occurring between the rubber pad 15 and the installation block 14 in the subsequent process, and the played damping effect is more stable.
When carrying out the installation on floor 2, according to the construction requirement, there is higher requirement to the roughness on the floor 2 of laying, for the convenience of adjusting floor 2, the utility model discloses set up support 1 and be retractable structure, highly revise floor 2's roughness through adjustment support 1.
Referring to fig. 2, the support 12 includes a stay 121, a sliding sleeve 122, and a rotating sleeve 123; the support column 121 is vertically fixed in the middle of the upper side of the support plate 11, and the cross section of the support column is rectangular; the sliding sleeve 122 is sleeved on the support post 121, the inner side of the cross section of the sliding sleeve 122 is rectangular, the outer side of the cross section of the sliding sleeve 122 is circular, the sliding sleeve can slide on the support post 121, and the mounting plate 13 is horizontally fixed on the upper end face of the sliding sleeve 122; the rotating sleeve 123 is rotatably supported on the supporting plate 11, has an annular cross section, and is sleeved on the outer side of the sliding sleeve 122; referring to fig. 4, the lower end of the side surface of the rotating sleeve 123 is provided with a convex edge 1231 protruding outwards, the supporting plate 121 is provided with a cavity matched with the rotating sleeve 123 and the convex edge 1231 in shape, and the rotating sleeve 123 rotates therein; the inner side surface of the rotating sleeve 123 is provided with threads, the outer side surface of the sliding sleeve 122 is also provided with threads, the threads are matched with the threads on the rotating sleeve 123, and the rotating sleeve 123 rotates to drive the sliding sleeve 122 to slide along the direction of the support column 121; in order to facilitate the rotation of the rotating sleeve 123, a stop edge 1232 is vertically disposed on the outer side of the rotating sleeve 123 for grasping during the rotation.
When the anti-static floor 2 is installed, firstly, the support 1 is fixed to a preset position on the ground, then the flatness of the mounting plate 13 is detected through a detection instrument, if the mounting plate 13 of a certain support 1 is higher or lower, the sliding sleeve 122 is made to ascend or descend along the direction of the support column 121 by rotating the rotating sleeve 123, the height of the mounting plate 13 is adjusted to a required height, then the rubber pad 15 is fixed to the corresponding mounting block 14, the convex block 151 is embedded into the groove 141 to fix the rubber pad 15, then the floor 2 is placed on the support 1, one floor 2 is lapped on four adjacent supports 1, a plurality of floors 2 are sequentially installed, and the laying of the anti-static floor 2 is completed.
The support 1 is arranged to be capable of lifting, when the floor 2 is installed to adjust the flatness of the floor, the height of the floor can be adjusted by rotating the rotating sleeve 123, the flatness of the floor 2 can be conveniently adjusted to a required standard, and the operation is convenient; the rubber pad 15 can play a role in shock absorption, so that the vibration transmitted from the floor 2 to the bracket 1 is weakened, and the damage to the floor 2 in the subsequent process is small; in addition, through setting up recess 141 and protruding edge 151 and cooperateing, can be with the fixed more firm of rubber pad 15, the rubber pad 15 is difficult to appear the dislocation at the in-process that uses, and the shock attenuation effect of realization is more stable.
The embodiment of this embodiment is the utility model discloses preferred embodiment is not according to this restriction the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. An antistatic raised floor is characterized in that: comprises a bracket (1) and a floor (2); the number of the brackets (1) is multiple, and the brackets comprise supporting plates (11), supporting pieces (12) and mounting plates (13); the supporting plate (11) is horizontally fixed on the ground; the supporting piece (12) is vertically fixed at the middle position of the upper side surface of the supporting plate (11), and the supporting piece (12) is of a telescopic structure and used for adjusting the height of the mounting plate (13); the mounting plate (13) is horizontally fixed on the upper end surface of the support piece (12); the floor boards (2) are fixed on the upper sides of the brackets (1), and four corners of one floor board (2) are lapped on the upper side surfaces of the four brackets (1); the upper side surface of the floor (2) is adhered with a high-wear-resistance anti-static veneer (3); and conductive edge strips (4) are embedded around the floor (2).
2. An antistatic raised floor as claimed in claim 1, wherein: the support (12) comprises a support column (121), a sliding sleeve (122) and a rotating sleeve (123); the cross section of the supporting column (121) is rectangular and is vertically fixed in the middle of the upper side surface of the supporting plate (11); the inner ring of the cross section of the sliding sleeve (122) is rectangular, the outer ring of the cross section of the sliding sleeve (122) is circular, and the sliding sleeve (122) is sleeved on the supporting column (121); the mounting plate (13) is horizontally fixed on the upper end surface of the sliding sleeve (122); the rotating sleeve (123) is rotatably supported on the supporting plate (11) and sleeved on the outer side of the sliding sleeve (122); the rotating sleeve (123) is connected with the sliding sleeve (122) through threads.
3. An antistatic raised floor as claimed in claim 2, wherein: the lower extreme of the lateral surface of rotating sleeve (123) outwards the protrusion be provided with protruding edge (1231), set up on backup pad (11) with rotating sleeve (123) and protruding cavity along (1231) shape adaptation.
4. An antistatic raised floor as claimed in claim 2, wherein: the outside of the rotating sleeve (123) is vertically provided with a blocking edge (1232).
5. An antistatic raised floor as claimed in claim 1, wherein: the middle part of the upper side surface of the mounting plate (13) is provided with a mounting block (14), the mounting block (14) is of a cross structure, and the mounting plate (13) is divided into four areas; the corners of the floor (2) are positioned in each area, and the side surfaces of the floor (2) are attached to the side surfaces of the mounting blocks (14).
6. An antistatic raised floor as claimed in claim 5, wherein: the floor (2) comprises a plate surface (21) and a limiting plate (22); the limiting plate (22) is arranged on the lower side surface of the plate surface (21) and is arranged along the edge of the plate surface (21) in a circle, and the size of the outer side surface of the limiting plate is smaller than that of the plate surface (21); the conductive edge strips (4) are arranged on the outer side face of the limiting plate (22), the limiting plate (22) is attached to the side face of the mounting block (14), and the conductive edge strips (4) are clamped between the limiting plate (22) and the mounting block (14); the plate surfaces (21) are lapped on the upper side of the mounting block (14), and the four plate surfaces (21) on one bracket (1) are connected and cover the upper side of the mounting block (14).
7. An antistatic raised floor as claimed in claim 6, wherein: the upper side surface of the mounting block (14) is provided with a rubber pad (15).
8. An antistatic raised floor as claimed in claim 7, wherein: a groove (141) is formed in the upper side face of the mounting block (14), and the groove (141) is of a cross-shaped structure; a convex block (151) is arranged on the lower side surface of the rubber pad (15), and the convex block (151) is of a cross structure; the projection (151) is embedded in the groove (141).
CN201921932399.1U 2019-11-07 2019-11-07 Anti-static movable floor Active CN211369403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921932399.1U CN211369403U (en) 2019-11-07 2019-11-07 Anti-static movable floor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921932399.1U CN211369403U (en) 2019-11-07 2019-11-07 Anti-static movable floor

Publications (1)

Publication Number Publication Date
CN211369403U true CN211369403U (en) 2020-08-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921932399.1U Active CN211369403U (en) 2019-11-07 2019-11-07 Anti-static movable floor

Country Status (1)

Country Link
CN (1) CN211369403U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112727004A (en) * 2020-12-29 2021-04-30 北京市金龙腾装饰股份有限公司 Floor paving structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112727004A (en) * 2020-12-29 2021-04-30 北京市金龙腾装饰股份有限公司 Floor paving structure
CN112727004B (en) * 2020-12-29 2022-04-22 北京市金龙腾装饰股份有限公司 Floor paving structure

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