CN220267109U - Horizontal insulating plate structure for connecting style plate with concrete terrace - Google Patents

Horizontal insulating plate structure for connecting style plate with concrete terrace Download PDF

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Publication number
CN220267109U
CN220267109U CN202321729021.8U CN202321729021U CN220267109U CN 220267109 U CN220267109 U CN 220267109U CN 202321729021 U CN202321729021 U CN 202321729021U CN 220267109 U CN220267109 U CN 220267109U
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China
Prior art keywords
plate
draw
groove
style
insulation board
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CN202321729021.8U
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Chinese (zh)
Inventor
陶铧
陈红英
谢禄
安结兴
刘玉樑
牛永红
程安军
聂春林
郑多
韩顺忠
陈强正
万玛仁青
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Qinghai Baihe Aluminium Industry Co ltd
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Qinghai Baihe Aluminium Industry Co ltd
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Abstract

The utility model relates to the technical field of aluminum electrolysis series insulation, and discloses a horizontal insulating plate structure for connecting a style plate and a concrete terrace, which solves the problem that potential safety hazards are caused to personnel and vehicles in and out by gaps between the style plate and the concrete terrace at present.

Description

Horizontal insulating plate structure for connecting style plate with concrete terrace
Technical Field
The utility model belongs to the technical field of aluminum electrolysis series insulation, and particularly relates to a horizontal insulation board structure for connecting a style board and a concrete terrace.
Background
Because the current electrolytic aluminum production is serial production, each production series has hundreds of large-scale prebaked aluminum cells, because a certain interval is arranged between two adjacent aluminum cells, the intervals are connected by a steel structure with a certain bearing capacity, and because the temperature in the aluminum cell production process is higher, ventilation and heat dissipation are needed around the aluminum cells. For this reason, the adjacent intervals are all selected from the air grid plates with good ventilation, heat dissipation and bearing capacity; because each electrolysis series is electrified with hundreds of kiloamperes of strong current, in order to prevent safety events such as grounding, short circuit and the like, each electrolysis cell is required to independently operate, and good insulating measures are provided around the electrolysis cells, so that certain insulating measures are adopted on the supporting structure and the periphery of the style plate.
Some aluminium electrolysis series that construction time is earlier, because factors such as design or electrolysis trough and scene terrace overhaul many times cause to exist or have great gap between style board and the adjacent terrace, have caused serious obstacle or potential safety hazard to personnel's the business turn over and instrument vehicle, still current insulation board all adopts right angle "L" type, installs unstably, drops easily, in order to solve this problem, designs a style board and is connected with horizontal insulation board structure with concrete terrace.
Disclosure of Invention
Aiming at the situation, in order to overcome the defects of the prior art, the utility model provides the horizontal insulating plate structure for connecting the style plate and the concrete terrace, and effectively solves the problem that potential safety hazards are caused to personnel and vehicles in and out due to gaps between the style plate and the concrete terrace at present.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a style board is connected with concrete terrace with horizontal form insulation board structure, includes with concrete terrace horizontally style board, the clearance between style board and the concrete terrace is equipped with insulation board subassembly, and insulation board subassembly includes L template, and L template upper end one side joint has first splice plate, and L template upper end is kept away from first splice plate one side joint and is had the second splice plate, and L template is close to concrete terrace one side joint and has the stack board.
Preferably, the first draw-in groove has all been seted up to L template upper end both sides, and the second draw-in groove has all been seted up to two first draw-in grooves below, all forms the joint arch between the first draw-in groove and the second draw-in groove of both sides.
Preferably, one end of the first splice plate and one end of the second splice plate are connected with a first positioning protrusion, a second positioning protrusion is connected below the first positioning protrusion, a positioning clamping groove is formed between the first positioning protrusion and the second positioning protrusion, and the first positioning protrusion and the second positioning protrusion are respectively matched with the first clamping groove and the second clamping groove in phase, and the positioning clamping groove and the clamping protrusion in phase are matched with each other.
Preferably, a first inserting groove is formed in one side of the L-shaped plate, two first inserting grooves are formed, and the two first inserting grooves are distributed up and down.
Preferably, one side of the stacking plate is connected with two inserting claws, the two inserting claws are inserted with the two first inserting grooves, and two second inserting grooves are formed in one side of the stacking plate, which is far away from the two inserting claws.
Preferably, the insulating plate assembly is made of epoxy resin material.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, through the arrangement of the insulating plate assembly, the edge of the wind grating plate can be embedded in the insulating plate assembly material, and meanwhile, the thickness can be increased through the clamping and overlapping of the overlapping plate and the L-shaped plate, so that the wind grating plate is suitable for different gaps between the wind grating plate and the concrete terrace, the stability of the insulating material in the use process is ensured, and the safety of personnel and vehicles in and out is ensured.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model.
In the drawings:
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of an insulating panel assembly according to the present utility model;
FIG. 3 is an exploded view of the insulation plate assembly of the present utility model;
in the figure: 1. a concrete terrace; 2. a grid plate; 3. an insulating plate assembly; 31. an L-shaped plate; 311. a first clamping groove; 312. a second clamping groove; 313. the clamping bulge; 314. a first socket groove; 32. a first splice plate; 321. a first positioning protrusion; 322. a second positioning protrusion; 323. positioning clamping grooves; 33. a second splice plate; 34. a superimposed sheet; 341. a plug claw; 342. and a second inserting groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model; all other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In the first embodiment, as shown in fig. 1-3, the utility model comprises a style board 2 which is horizontal to a concrete terrace 1, an insulating board component 3 is arranged in a gap between the style board 2 and the concrete terrace 1, the insulating board component 3 is made of epoxy resin material, the insulating board component 3 comprises an L-shaped board 31, a first splice plate 32 is clamped at one side of the upper end of the L-shaped board 31, a second splice plate 33 is clamped at one side of the upper end of the L-shaped board 31, which is far away from the first splice plate 32, and a superposition board 34 is clamped at one side of the L-shaped board 31, which is close to the concrete terrace 1.
In the second embodiment, on the basis of the first embodiment, two sides of the upper end of the L-shaped plate 31 are provided with first clamping grooves 311, two lower sides of the two first clamping grooves 311 are provided with second clamping grooves 312, and clamping protrusions 313 are formed between the first clamping grooves 311 and the second clamping grooves 312 on the two sides;
one end of each of the first splice plate 32 and the second splice plate 33 is connected with a first positioning protrusion 321, a second positioning protrusion 322 is connected below the first positioning protrusion 321, a positioning clamping groove 323 is formed between the first positioning protrusion 321 and the second positioning protrusion 322, and the first positioning protrusion 321 and the second positioning protrusion 322 are respectively matched with the first clamping groove 311 and the second clamping groove 312, and the positioning clamping groove 323 is matched with the clamping protrusion 313;
when the first splice plate 32 and the second splice plate 33 are assembled and connected with the L-shaped plate 31, the first positioning protrusion 321 and the second positioning protrusion 322 at the side ends of the first splice plate 32 and the second splice plate 33 are respectively clamped with the first clamping groove 311 and the second clamping groove 312 at the two sides of the L-shaped plate 31 in an adaptive manner, so that the first splice plate 32, the second splice plate 33 and the L-shaped plate 31 are connected.
In the fourth embodiment, on the basis of the first embodiment, one side of the L-shaped plate 31 is provided with two first inserting grooves 314, and the two first inserting grooves 314 are vertically distributed;
one side of the stacking plate 34 is connected with two plugging claws 341, the two plugging claws 341 are plugged with the two first plugging grooves 314, and two second plugging grooves 342 are formed in one side of the stacking plate 34 away from the two plugging claws 341;
according to the gap width between the air grid plate 2 and the concrete terrace 1, the overlapping plate 34 is clamped with the L-shaped plate 31 so as to increase the thickness of the L-shaped plate 31, thereby being suitable for assembly with different gap sizes and ensuring the stability in the use process.
Working principle: when the air grid plate is used, the style plate 2 and the concrete terrace 1 are positioned on the same horizontal plane, and the edges of the air grid plate 2 can be embedded in the material of the insulating plate assembly 3 so as to ensure that the insulating material does not move up and down and left and right in the use process; when the insulating plate assembly 3 is installed, firstly, one end of the air grid plate 2, which is close to the concrete terrace 1, is lifted, the L-shaped plate 31 is attached to the edge of the air grid plate 2, then, the first splice plate 32 is installed, the edge of the air grid plate 2 is wrapped and embedded by the first splice plate 32 and the L-shaped plate 31, then, the stacking plate 34 is clamped on one side of the L-shaped plate 31 according to the gap width between the air grid plate 2 and the concrete terrace 1, the stacking thickness formed between the L-shaped plate 31 and the stacking plate 34 is matched with the gap, then, the air grid plate 2 is put down, and finally, the second splice plate 33 is installed, so that the assembly of the insulating plate assembly 3 is completed.

Claims (6)

1. The utility model provides a style board is connected with concrete terrace with horizontal form insulation board structure, includes with concrete terrace (1) horizontally style board (2), its characterized in that: the gap between style board (2) and concrete terrace (1) is equipped with insulation board subassembly (3), and insulation board subassembly (3) are including L template (31), and L template (31) upper end one side joint has first splice plate (32), and L template (31) upper end is kept away from first splice plate (32) one side joint and is had second splice plate (33), and L template (31) are close to concrete terrace (1) one side joint and have stack board (34).
2. The horizontal insulation board structure for connecting style boards and concrete floors according to claim 1, wherein: first draw-in grooves (311) have all been seted up to L template (31) upper end both sides, and second draw-in groove (312) have all been seted up to two first draw-in grooves (311) below, all form joint protruding (313) between first draw-in groove (311) and the second draw-in groove (312) of both sides.
3. The horizontal insulation board structure for connecting style boards and concrete floors according to claim 1, wherein: first splice plate (32) and second splice plate (33) one end all are connected with first location arch (321), and first location arch (321) below is connected with second location arch (322), forms location draw-in groove (323) between first location arch (321) and the second location arch (322), and first location arch (321) and second location arch (322) respectively with first draw-in groove (311) and second draw-in groove (312) looks adaptation, location draw-in groove (323) and joint protruding (313) looks adaptation.
4. The horizontal insulation board structure for connecting style boards and concrete floors according to claim 1, wherein: a first inserting groove (314) is formed in one side of the L-shaped plate (31), two first inserting grooves (314) are formed, and the two first inserting grooves (314) are distributed up and down.
5. The horizontal insulation board structure for connecting style boards and concrete floors according to claim 1, wherein: and one side of the stacking plate (34) is connected with two plugging claws (341), the two plugging claws (341) are plugged with the two first plugging grooves (314), and two second plugging grooves (342) are formed in one side, away from the two plugging claws (341), of the stacking plate (34).
6. The horizontal insulation board structure for connecting style boards and concrete floors according to claim 1, wherein: the insulating board component (3) is made of epoxy resin materials.
CN202321729021.8U 2023-07-04 2023-07-04 Horizontal insulating plate structure for connecting style plate with concrete terrace Active CN220267109U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321729021.8U CN220267109U (en) 2023-07-04 2023-07-04 Horizontal insulating plate structure for connecting style plate with concrete terrace

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321729021.8U CN220267109U (en) 2023-07-04 2023-07-04 Horizontal insulating plate structure for connecting style plate with concrete terrace

Publications (1)

Publication Number Publication Date
CN220267109U true CN220267109U (en) 2023-12-29

Family

ID=89306463

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321729021.8U Active CN220267109U (en) 2023-07-04 2023-07-04 Horizontal insulating plate structure for connecting style plate with concrete terrace

Country Status (1)

Country Link
CN (1) CN220267109U (en)

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