CN204983539U - Prevent static aluminum alloy raised floor - Google Patents

Prevent static aluminum alloy raised floor Download PDF

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Publication number
CN204983539U
CN204983539U CN201520555815.6U CN201520555815U CN204983539U CN 204983539 U CN204983539 U CN 204983539U CN 201520555815 U CN201520555815 U CN 201520555815U CN 204983539 U CN204983539 U CN 204983539U
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China
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block
lattice
single lattice
substrate
unit ventilators
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CN201520555815.6U
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Chinese (zh)
Inventor
姜兴斌
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Tianjin Wanshunyuan Room Equipment Co Ltd
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Tianjin Wanshunyuan Room Equipment Co Ltd
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Abstract

The utility model provides a prevent static aluminum alloy raised floor, includes the base plate, the base plate is square configuration, the parcel all around of base plate has the welt, be equipped with a plurality of ventilations group on the base plate, it constitutes to be equipped with at least one ventilation unit in the ventilation group, ventilation unit is last to be equipped with a plurality of ventilation holes, the ventilation hole is run through the base plate, base plate square configuration's four corners is equipped with reinforced block, fixed orifices, be equipped with the buffering ring between the ventilation group. The beneficial effects are that: durable firm, bearing capacity is strong, the wire casing buries in the base plate below, prevents to trample the electric wire and causes danger, erect the floor, prevent that the bottom surface from soaking to cause danger, through ventilation hole realization circulation of air, improve heat -sinking capability, the ventilation hole is in large quantity, can adapt to like the high -power place that ventilates of needs such as computer lab.

Description

A kind of antistatic aluminium alloys raised floor
Technical field
The utility model relates to field, floor, particularly a kind of raised floor.
Background technology
Antistatic aluminium alloy floor is generally applied at finishing building materials field, but existing aluminium alloy floor mostly is and pastes ground formula, wire casing is located at the gap place of two aluminium alloy floors, although such structure design can be saved material thus be reduced costs, but metal pastes ground exists electric leakage potential safety hazard, electric wire and floor even also increase the probability that leaks electricity higher than floor (during higher than floor, multiplex external corner lid covers, and external corner lid is domes) with height simultaneously.Aluminium alloy floor pastes ground design mainly because it is firm not, is erected on floor and easily occurs subsiding.In addition in some particular surroundings, also require the good heat dissipation effect on floor, and existing aluminium alloy floor is closed structure, cannot dispels the heat.
Summary of the invention
The purpose of this utility model is to solve the problem, and devise a kind of antistatic aluminium alloys raised floor, specific design scheme is:
A kind of antistatic aluminium alloys raised floor, comprise substrate, described substrate is square structure, the surrounding of described substrate is enclosed with liner plate, and described substrate is provided with multiple ventilation group, and described ventilation group is provided with at least one unit ventilators composition, described unit ventilators is provided with multiple gravity vent, described gravity vent runs through described substrate, and the corner of described substrate square structure is provided with reinforcement block, fixing hole, is provided with buffering ring between described ventilation group.
The degree of depth of described gravity vent equals the thickness of described substrate, the length of described buffering ring equals the width of described liner plate, described fixed hole position is in the middle part of described reinforcement block, and the degree of depth of described fixing hole equals the height of described reinforcement block, and the degree of depth of described fixing hole is greater than the length of described buffering ring.
Described ventilation group comprises block in single lattice, and in described single lattice, block is positioned at the center of described substrate square structure, and in described single lattice, block comprises a unit ventilators, and in described single lattice, the gravity vent surrounding of block is provided with reinforcing ring.
Described ventilation group comprises single lattice limit block, described single lattice limit block is positioned at four limit mid points of described substrate square structure, described single lattice limit block comprises two unit ventilators, and the side of described single lattice limit block is provided with and is connected by ribs between liner plate, and the quantity of described ribs is two.
Described ventilation group comprises single lattice hornblock, and described single lattice hornblock comprises a unit ventilators, and described single lattice hornblock is positioned at the corner of the square structure of described substrate, and described single lattice hornblock is square structure, and a pin of described single lattice hornblock is connected with described reinforcement block.
Block in two lattice is provided with between block in described single lattice limit block and single lattice, two lattice limits block is provided with between described single lattice limit block and single lattice hornblock, in the described pair of lattice limit block, two lattice, block includes two unit ventilators, is connected between two unit ventilators of described pair of lattice limit block by ribs with described liner plate.
Coffin is formed between block in the described pair of lattice limit block, two lattice, block in multiple four lattice is provided with in described coffin, the rectangular array distribution of block in described multiple four lattice, in described four lattice, block comprises four unit ventilators, four rectangular array distribution of unit ventilators in described four lattice in block.
The antistatic aluminium alloys raised floor obtained by technique scheme of the present utility model, its beneficial effect is:
Rugged strong, weight capacity is strong; Wire casing is embedded in below substrate, prevents trampling electric wire and causes danger; Floor is erected, prevents bottom surface from soaking and cause danger; Realize air circulation by gravity vent, improve heat-sinking capability, gravity vent quantity is many, can adapt to the place of ventilation as high-power in needs such as machine rooms.
Accompanying drawing explanation
Fig. 1 is the structural representation of antistatic aluminium alloys raised floor described in the utility model;
Fig. 2 is the backsight structural representation of antistatic aluminium alloys raised floor described in the utility model;
Fig. 3 is the side-looking structural representation of antistatic aluminium alloys raised floor described in the utility model;
Fig. 4 is the side-looking perspective ray mount structure schematic diagram of antistatic aluminium alloys raised floor described in the utility model;
Fig. 5 is the structural representation of block in single lattice described in the utility model;
In figure, 1, substrate; 2, liner plate; 3, unit ventilators; 4, gravity vent; 5, reinforcement block; 6, fixing hole; 7, buffering ring; 8, block in single lattice; 9, reinforcing ring; 10, single lattice limit block; 11, ribs; 12, single lattice hornblock; 13, block in two lattice; 14, two lattice limits block; 15, block in four lattice.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is specifically described.
As Figure 1-5, a kind of antistatic aluminium alloys raised floor, comprise substrate 1, described substrate 1 is square structure, and the surrounding of described substrate 1 is enclosed with liner plate 2, described substrate 1 is provided with multiple ventilation group, described ventilation group is provided with at least one unit ventilators 3 and forms, and described unit ventilators 3 is provided with multiple gravity vent 4, and described gravity vent 4 runs through described substrate 1, the corner of described substrate 1 square structure is provided with reinforcement block 5, fixing hole 6, is provided with buffering ring 7 between described ventilation group.
The degree of depth of described gravity vent 4 equals the thickness of described substrate 1, the length of described buffering ring 7 equals the width of described liner plate 2, described fixing hole 6 is positioned at the middle part of described reinforcement block 5, the degree of depth of described fixing hole 6 equals the height of described reinforcement block 5, and the degree of depth of described fixing hole 6 is greater than the length of described buffering ring 7.
Described ventilation group comprises block 8 in single lattice, and in described single lattice, block 8 is positioned at the center of described substrate 1 square structure, and in described single lattice, block 8 comprises a unit ventilators 3, and in described single lattice, gravity vent 4 surrounding of block 8 is provided with reinforcing ring 9.
Described ventilation group comprises single lattice limit block 10, described single lattice limit block 10 is positioned at four limit mid points of described substrate 1 square structure, described single lattice limit block 10 comprises two unit ventilators 3, the side of described single lattice limit block 10 is provided with and is connected by ribs 11 between liner plate 2, and the quantity of described ribs 11 is two.
Described ventilation group comprises single lattice hornblock 12, described single lattice hornblock 12 comprises a unit ventilators 3, described single lattice hornblock 12 is positioned at the corner of the square structure of described substrate 1, and described single lattice hornblock 12 is square structure, and a pin of described single lattice hornblock 12 is connected with described reinforcement block 5.
Block 13 in two lattice is provided with between block 8 in described single lattice limit block 10 and single lattice, two lattice limits block 14 is provided with between described single lattice limit block 10 and single lattice hornblock 12, in the described pair of lattice limit block 14, two lattice, block 13 includes two unit ventilators 3, is connected between two unit ventilators 3 of described pair of lattice limit block 14 by ribs 11 with described liner plate 2.
Coffin is formed between block 13 in the described pair of lattice limit block 14, two lattice, block 15 in multiple four lattice is provided with in described coffin, the rectangular array distribution of block 15 in described multiple four lattice, in described four lattice, block 15 comprises four unit ventilators 3, four rectangular array distribution of unit ventilators 3 in described four lattice in block 15.
Do not stay gap between every block substrate 1 during installation, increase the seal on floor, prevent electric wire from being trampled simultaneously and cause danger.
Substrate 1 is erected by described liner plate 2, when there is the situations such as immersion, reserving one deck water space, prevent monolith substrate 1 from being steeped in below, and electric wire is also erected together with substrate 1 simultaneously, avoids electric wire to soak and causes danger.
Described reinforcement block 5, reinforcing ring 9, ribs 11 increase substrate 1 intensity, improve described substrate 1 lifting capacity and impact resistant capability, and described buffering ring 7 provides certain buffer capacity by for substrate 1 simultaneously, increase its durability further.
Described unit ventilators 3 can make the air circulation of described substrate about 1 both sides, when the electric wire under described substrate 1 is due to the adstante febre that works long hours, can be dispelled the heat by unit ventilators 3, prevents that electric wire is overheated causes danger.
Technique scheme only embodies the optimal technical scheme of technical solutions of the utility model; those skilled in the art all embody principle of the present utility model to some variations that wherein some part may be made, and belong within protection domain of the present utility model.

Claims (7)

1. an antistatic aluminium alloys raised floor, comprise substrate (1), described substrate (1) is square structure, the surrounding of described substrate (1) is enclosed with liner plate (2), it is characterized in that, described substrate (1) is provided with multiple ventilation group, described ventilation group is provided with at least one unit ventilators (3) composition, described unit ventilators (3) is provided with multiple gravity vent (4), described gravity vent (4) runs through described substrate (1), the corner of described substrate (1) square structure is provided with reinforcement block (5), fixing hole (6), buffering ring (7) is provided with between described ventilation group.
2. according to the antistatic aluminium alloys raised floor described in claim 1, it is characterized in that, the degree of depth of described gravity vent (4) equals the thickness of described substrate (1), the length of described buffering ring (7) equals the width of described liner plate (2), described fixing hole (6) is positioned at the middle part of described reinforcement block (5), the degree of depth of described fixing hole (6) equals the height of described reinforcement block (5), and the degree of depth of described fixing hole (6) is greater than the length of described buffering ring (7).
3. according to the antistatic aluminium alloys raised floor described in claim 1, it is characterized in that, described ventilation group comprises block (8) in single lattice, in described single lattice, block (8) is positioned at the center of described substrate (1) square structure, in described single lattice, block (8) comprises a unit ventilators (3), and in described single lattice, gravity vent (4) surrounding of block (8) is provided with reinforcing ring (9).
4. according to the antistatic aluminium alloys raised floor described in claim 3, it is characterized in that, described ventilation group comprises single lattice limit block (10), described single lattice limit block (10) is positioned at four limit mid points of described substrate (1) square structure, described single lattice limit block (10) comprises two unit ventilators (3), the side of described single lattice limit block (10) is provided with and is connected by ribs (11) between liner plate (2), and the quantity of described ribs (11) is two.
5. according to the antistatic aluminium alloys raised floor described in claim 4, it is characterized in that, described ventilation group comprises single lattice hornblock (12), described single lattice hornblock (12) comprises a unit ventilators (3), described single lattice hornblock (12) is positioned at the corner of the square structure of described substrate (1), described single lattice hornblock (12) is square structure, and a pin of described single lattice hornblock (12) is connected with described reinforcement block (5).
6. according to the antistatic aluminium alloys raised floor described in claim 5, it is characterized in that, block (13) in two lattice is provided with between block (8) in described single lattice limit block (10) and single lattice, two lattice limit block (14) is provided with between described single lattice limit block (10) and single lattice hornblock (12), in described pair of lattice limit block (14), two lattice, block (13) includes two unit ventilators (3), is connected between two unit ventilators (3) of described pair of lattice limit block (14) by ribs (11) with described liner plate (2).
7. according to the antistatic aluminium alloys raised floor described in claim 6, it is characterized in that, coffin is formed between block (13) in described pair of lattice limit block (14), two lattice, block (15) in multiple four lattice is provided with in described coffin, block (15) rectangular array distribution in described multiple four lattice, in described four lattice, block (15) comprises four unit ventilators (3), four rectangular array distribution of unit ventilators (3) in described four lattice in block (15).
CN201520555815.6U 2015-07-28 2015-07-28 Prevent static aluminum alloy raised floor Active CN204983539U (en)

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CN201520555815.6U CN204983539U (en) 2015-07-28 2015-07-28 Prevent static aluminum alloy raised floor

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Application Number Priority Date Filing Date Title
CN201520555815.6U CN204983539U (en) 2015-07-28 2015-07-28 Prevent static aluminum alloy raised floor

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105863213A (en) * 2016-06-12 2016-08-17 湖北永益金属地板有限公司 Stainless steel metal floor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105863213A (en) * 2016-06-12 2016-08-17 湖北永益金属地板有限公司 Stainless steel metal floor
CN105863213B (en) * 2016-06-12 2018-09-21 湖北永益金属地板有限公司 A kind of stainless steel metal floor

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