CN208617370U - A kind of heat conductive graphite film coiled material smelting tool and carbide furnace - Google Patents
A kind of heat conductive graphite film coiled material smelting tool and carbide furnace Download PDFInfo
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- CN208617370U CN208617370U CN201821351368.2U CN201821351368U CN208617370U CN 208617370 U CN208617370 U CN 208617370U CN 201821351368 U CN201821351368 U CN 201821351368U CN 208617370 U CN208617370 U CN 208617370U
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Abstract
The utility model discloses a kind of heat conductive graphite film coiled material smelting tool and carbide furnaces, comprising: can circumferentially wrap up the graphite shells of heat conductive graphite film coiled material, have the cavity for holding heat conductive graphite film coiled material inside graphite shells;First row stomata on graphite shells is set, and first row stomata is connected to cavity;And the second row stomata positioned at graphite shells both ends, second row stomata are connected to cavity.Had using the heat conductive graphite film coiled material smelting in the utility model and heat conductive graphite film coiled material is placed in cavity, then entire smelting is had horizontal on the bottom plate of the heating room of carbide furnace, carbonization treatment, in carbonisation, exhaust gas inside smelting tool is discharged from first row stomata and second row stomata respectively, it is limited to reduce film layer contraction, to improve graphite guide hotting mask product quality.In addition, due to can effectively be scavenged using the heat conductive graphite film coiled material smelting tool in the utility model, can widen heat conductive graphite film coiled material applies width.
Description
Technical field
The utility model relates to graphite guide hotting mask processing technique fields, more specifically to a kind of heat conductive graphite film roll
Material smelting tool and carbide furnace.
Background technique
Graphite guide hotting mask is a kind of novel heat-conducting heat sink material, by PI film by chemical method through high temperature cabonization, graphitization
It is made after processing and calendering.
Currently, the production method of conduction graphite film mainly produces as coils, heat conductive graphite film coiled material is mounted on smelting tool
In, smelting tool is placed in carbide furnace and carries out carbonization treatment, since the exhaust gas in carbonisation in smelting tool cannot effectively be discharged, film layer
Limited eventually lead to is shunk to be broken or even scrap.
Therefore, graphite guide hotting mask product quality how is improved, those skilled in the art's technical problem urgently to be resolved is become.
Utility model content
In view of this, technical problem to be solved in the utility model is how to improve graphite guide hotting mask product quality, it is
This, the utility model provides a kind of heat conductive graphite film coiled material smelting tool and carbide furnace.
To achieve the above object, the utility model provides the following technical solutions:
A kind of heat conductive graphite film coiled material smelting tool, comprising:
The graphite shells of heat conductive graphite film coiled material can be circumferentially wrapped up, has inside the graphite shells and holds described lead
The cavity of hot graphite film coiled material;
First row stomata on the graphite shells is set, and the first row stomata is connected to the cavity;And
Second row stomata positioned at the graphite shells both ends, the second row stomata are connected to the cavity.
Preferably, in above-mentioned heat conductive graphite film coiled material smelting tool, the graphite shells are circumferential closure structure, the second row
The aperture of stomata is equal with the aperture of the cavity.
Preferably, in above-mentioned heat conductive graphite film coiled material smelting tool, the graphite shells include outside upper graphite shells and lower graphite
Shell, the upper graphite shells and the lower graphite shells dock to form the graphite shells, the upper graphite shells and it is described under
Graphite shells are fixedly connected by anchor ear.
Preferably, in above-mentioned heat conductive graphite film coiled material smelting tool, the graphite shells are provided with multiple rows of first row stomata.
Preferably, in above-mentioned heat conductive graphite film coiled material smelting tool, the cavity can accommodate width in the thermally conductive of 0-1000mm
Graphite film coiled material.
Preferably, in above-mentioned heat conductive graphite film coiled material smelting tool, the cavity can accommodate length in the thermally conductive stone of 0-100m
Ink film coiled material.
The invention also discloses a kind of carbide furnaces, including heating room, further include thermally conductive stone described in any of the above embodiments
Ink film coiled material smelting tool, the heat conductive graphite film coiled material smelting have horizontal on the bottom plate of the heating room.
It can be seen from the above technical scheme that being had using the heat conductive graphite film coiled material smelting in the utility model by thermally conductive stone
Ink film coiled material is placed in cavity, then by entire smelting have it is horizontal carbide furnace heating room bottom plate on, carbonization treatment is being carbonized
In the process, the exhaust gas inside smelting tool is discharged from first row stomata and second row stomata respectively, reduces film layer contraction and is limited, thus
Improve graphite guide hotting mask product quality.In addition, due to that can be had using the heat conductive graphite film coiled material smelting tool in the utility model
Effect scavenges, and therefore, can widen heat conductive graphite film coiled material applies width.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment
Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only
It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor
Under, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is a kind of structural schematic diagram of heat conductive graphite film coiled material smelting tool provided by the utility model embodiment;
Fig. 2 is after the tool of heat conductive graphite film coiled material smelting provided by the utility model embodiment installs heat conductive graphite film coiled material
Structural schematic diagram;
Wherein, 100 it is heat conductive graphite film coiled material, 200 be graphite shells, 300 be first row stomata, 400 is second exhaust
Hole.
Specific embodiment
For this purpose, the core of the utility model is to provide a kind of heat conductive graphite film coiled material smelting tool and carbide furnace, to improve stone
Black heat conducting film product quality.
In addition, embodiments illustrated below does not play any restriction effect to utility model content documented by claim.
In addition, the full content of composition represented by following example is not limited to the solution as utility model documented by claim
Necessary to scheme.
Fig. 1 and Fig. 2 are please referred to, the tool of heat conductive graphite film coiled material smelting disclosed in the utility model embodiment, comprising:
The graphite shells 200 of heat conductive graphite film coiled material 100 can be circumferentially wrapped up, has inside graphite shells 200 and holds
The cavity of heat conductive graphite film coiled material 100;
First row stomata 300 on graphite shells 200 is set, and first row stomata 300 is connected to cavity;And
Second row stomata 400 positioned at 200 both ends of graphite shells, second row stomata 400 are connected to cavity.
Had using 100 smelting of heat conductive graphite film coiled material in the utility model and heat conductive graphite film coiled material 100 be placed in cavity,
Then entire smelting is had to horizontal on the bottom plate of the heating room of carbide furnace, carbonization treatment, in carbonisation, giving up inside smelting tool
Gas is discharged from first row stomata 300 and second row stomata 400 respectively, reduces film layer contraction and is limited, to improve graphite guide
Hotting mask product quality.In addition, due to can effectively exclude to give up using 100 smelting of the heat conductive graphite film coiled material tool in the utility model
Gas, therefore, can widen heat conductive graphite film coiled material 100 applies width.
In the utility model one embodiment, graphite shells 200 are circumferential closure structure, the aperture of second row stomata and chamber
The aperture of body is equal.Heat conductive graphite film coiled material 100 is fitted into cavity by second row stomata 400.
In another embodiment of the utility model, graphite shells 200 include upper graphite shells and lower graphite shells, upper graphite
Shell and lower graphite shells dock to form graphite shells 200, and company is fixed by anchor ear in upper graphite shells and lower graphite shells
It connects.In this scenario, after upper graphite shells and lower graphite shells are dismantled, by heat conductive graphite film coiled material 100 as in cavity, so
Upper graphite shells and the docking of lower graphite shells are fixedly connected by anchor ear afterwards.The second exhaust in the utility model embodiment
400 diameter of hole is equal to the diameter of cavity less than the diameter or 400 diameter of second row stomata of cavity.When second row stomata 400 is straight
When diameter is equal to the diameter of cavity, heat conductive graphite film coiled material 100 can be directly fitted into cavity by second row stomata 400.
On the various embodiments described above basis, in order to further increase exhaust effect, graphite shells 200 are provided with multiple rows of the
One gas vent 300.
Due to that can significantly improve exhaust effect in the utility model, cavity can accommodate width leading in 0-1000mm
Hot graphite film coiled material 100, that has expanded heat conductive graphite film coiled material 100 applies width.
Further, to guarantee to have enough foaming spaces, cavity can accommodate length in the heat conductive graphite of 0-100m
Film coiled material 100.
The invention also discloses a kind of carbide furnaces, including heating room, further include the conduction graphite film of any of the above-described
100 smelting of coiled material tool, 100 smelting of heat conductive graphite film coiled material have horizontal on the bottom plate of heating room.
Since above-mentioned smelting tool has the above beneficial effect, the carbide furnace including above-mentioned smelting tool has corresponding effect, herein
It repeats no more.
The foregoing description of the disclosed embodiments can be realized professional and technical personnel in the field or using originally practical new
Type.Various modifications to these embodiments will be readily apparent to those skilled in the art, and determine herein
The General Principle of justice can be realized in other embodiments without departing from the spirit or scope of the present utility model.Cause
This, the present invention will not be limited to the embodiments shown herein, and is to fit to and principles disclosed herein
The widest scope consistent with features of novelty.
Claims (7)
1. a kind of heat conductive graphite film coiled material smelting tool characterized by comprising
The graphite shells of heat conductive graphite film coiled material can be circumferentially wrapped up, has inside the graphite shells and holds the thermally conductive stone
The cavity of ink film coiled material;
First row stomata on the graphite shells is set, and the first row stomata is connected to the cavity;And
Second row stomata positioned at the graphite shells both ends, the second row stomata are connected to the cavity.
2. heat conductive graphite film coiled material smelting tool as described in claim 1, which is characterized in that the graphite shells are circumferential closure knot
The aperture of structure, the second row stomata is equal with the aperture of the cavity.
3. heat conductive graphite film coiled material smelting tool as described in claim 1, which is characterized in that the graphite shells include outside upper graphite
Shell and lower graphite shells, the upper graphite shells and the lower graphite shells dock to form the graphite shells, the upper graphite
Shell and the lower graphite shells are fixedly connected by anchor ear.
4. heat conductive graphite film coiled material smelting tool as described in claim 1, which is characterized in that the graphite shells are provided with multiple rows of institute
State first row stomata.
5. heat conductive graphite film coiled material smelting tool as described in claim 1, which is characterized in that the cavity can accommodate width in 0-
The heat conductive graphite film coiled material of 1000mm.
6. heat conductive graphite film coiled material smelting tool as described in claim 1, which is characterized in that the cavity can accommodate length in 0-
The heat conductive graphite film coiled material of 100m.
7. a kind of carbide furnace, including heating room, which is characterized in that further include as described in any one of claims 1 to 6 thermally conductive
Graphite film coiled material smelting tool, the heat conductive graphite film coiled material smelting have horizontal on the bottom plate of the heating room.
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CN201821351368.2U CN208617370U (en) | 2018-08-21 | 2018-08-21 | A kind of heat conductive graphite film coiled material smelting tool and carbide furnace |
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CN201821351368.2U CN208617370U (en) | 2018-08-21 | 2018-08-21 | A kind of heat conductive graphite film coiled material smelting tool and carbide furnace |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110451965A (en) * | 2019-09-10 | 2019-11-15 | 北京中石伟业科技无锡有限公司 | The production technology of the artificial synthesized graphite film of super thick |
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2018
- 2018-08-21 CN CN201821351368.2U patent/CN208617370U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110451965A (en) * | 2019-09-10 | 2019-11-15 | 北京中石伟业科技无锡有限公司 | The production technology of the artificial synthesized graphite film of super thick |
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