CN202254984U - Adhesive-type heat pipe radiator with bottom radiating fins - Google Patents

Adhesive-type heat pipe radiator with bottom radiating fins Download PDF

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Publication number
CN202254984U
CN202254984U CN2011202228584U CN201120222858U CN202254984U CN 202254984 U CN202254984 U CN 202254984U CN 2011202228584 U CN2011202228584 U CN 2011202228584U CN 201120222858 U CN201120222858 U CN 201120222858U CN 202254984 U CN202254984 U CN 202254984U
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CN
China
Prior art keywords
heat pipe
radiating fin
pastes
tool
modules
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Expired - Lifetime
Application number
CN2011202228584U
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Chinese (zh)
Inventor
黄崇贤
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Dongguan Hanxu Hardware Plastic Technology Co Ltd
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Dongguan Hanxu Hardware Plastic Technology Co Ltd
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Priority to CN2011202228584U priority Critical patent/CN202254984U/en
Application granted granted Critical
Publication of CN202254984U publication Critical patent/CN202254984U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model relates to an adhesive-type heat pipe radiator with bottom radiating fins, which at least comprises a radiating fin module, more than one heat pipe and an adhesive, wherein the radiating fin module is composed of a plurality of adjacent radiating fins; each radiating fin is provided with a high lug; and the top of the high lug is in a vertical extension shape, a sealed bottom surface which can be continuously adjacent is formed on one side or respectively formed on both sides, and a sealed centralized containing tank which can be continuously adjacent is formed at the center. Thus, the adhesive can be coated or injected in the centralized containing tank, and the heat pipes are flatly arranged in the centralized containing tank, so that the heat pipes are stably attached to the centralized containing tank, and the sealed bottom surface and the heat pipes can be flatly arranged on one plane; and the lateral side of the bottom surface can be combined with a bumping post in a butt mode, so that the bumping post, the bottom surface and the heat pipes are flatly arranged on one plane, thereby enhancing the overall structural strength of the radiator.

Description

Bonding type tool pastes the attached heat pipe radiator of end radiating fin
Technical field
The utility model system provides a kind of attached heat pipe fansink designs that the type tool pastes end radiating fin of binding, refer to especially a kind of can be through binder combination and have the attached heat pipe heat radiator improvement that pastes end heat radiation fin structure characteristic.
Background technology
The radiator of convention attached heat pipe; Roughly be to comprise a radiating fin modules, more than one heat pipe and a metab to form; Normally utilize base to paste and touch thermal source, through heat pipe hot temperature is passed to radiating fin modules, reach the heat radiation purpose with the warm mode of indirect transfer heat via base; In addition known attached heat pipe radiator is also arranged, maybe can omit substructure member, and the direct close-fitting of the heat absorbing end of heat pipe is embedded radiating fin; It is smooth arranged side by side through extruding leveling back plural heat pipe to be formed again; Thermal source can directly be pasted touch heat pipe, reach the quick heat radiating effect, but this kind fansink designs; Radiating fin still can't directly touch thermal source, therefore can't just reach the heat radiation purpose simultaneously in the very first time.
The utility model content
The main purpose of the utility model; Be to be to provide a kind of attached heat pipe fansink designs that the type tool pastes end radiating fin of binding; It is to reach combining of radiating fin modules and heat pipe through binder, by utilize radiating fin modules the formation adjacent closed that links up paste bottom surface and and concentrate storage tank, coating or inject binder in concentrating storage tank; Insert heat pipe is smooth again; Can accomplish the firm bonding of heat pipe and concentrated storage tank fast, and make subsides bottom surface and the heat pipe of sealing can constitute conplane smooth side by side, so can be simultaneously all directly subsides touch thermal source; Make the subsides bottom surface and the heat pipe of this radiating fin modules all can just reach the heat radiation purpose simultaneously, by this to promote radiating effect in the very first time.
The secondary objective of the utility model is to be to provide a kind of attached heat pipe fansink designs that the type tool pastes end radiating fin of binding, and described binder is the adhesion material that can use tin cream or have high thermal conductivity coefficient, in order to reach firm bonding effect.
The another purpose of the utility model; Be to be to provide a kind of attached heat pipe fansink designs that the type tool pastes end radiating fin of binding; The closed of said radiating fin modules pastes the bottom surface; System can in order to strengthen whole support fixation effect, promote the structural strength of radiator at a side that pastes the bottom surface or dual-side again against combining a bumping post.
A purpose again of the utility model; Be to be to provide a kind of attached heat pipe fansink designs that the type tool pastes end radiating fin of binding; Said against being incorporated into the bumping post that pastes the bottom surface side; System can be conplane smooth arranged side by side with the heat absorption end face of subsides bottom surface, heat pipe, but by this to enlarge the area of supplying heat source contact.
For realizing above purpose, the utility model adopts following technical scheme:
A kind of attached heat pipe radiator that binds type tool subsides end radiating fin; Its composition comprises a radiating fin modules, more than one heat pipe and binder at least, and radiating fin modules is to constitute by a plurality of radiating fins are adjacent; Each radiating fin cording has a high lug; The top of this high lug system is vertical extension shape, and forms the closed that can link up adjacent in one or both sides and paste the bottom surface, and is central then form the concentrated storage tank of adjacent closed that can link up;
More than one heat pipe is the concentrated storage tank that radiating fin modules is inserted in confession, and the closed of the heat absorption end face of heat pipe and radiating fin modules subsides bottom surface is conplane smooth arranged side by side;
Binder is to be located to concentrate storage tank to bind with heating tube;
According to above-mentioned formation, it lies in concentrates in the storage tank coating or injects binder, inserts heat pipe is smooth again, accomplishing the firm bonding of heat pipe and concentrated storage tank, and makes and pastes bottom surface and the heat pipe end face that absorbs heat and form conplane smooth arranged side by side.
Preferably, be to be no seam state between the said plural heat pipe.
Preferably, this binder is the adhesion material that uses tin cream material or have high thermal conductivity coefficient.
Preferably, the closed of this radiating fin modules pastes the bottom surface, ties up to side again against combining a bumping post.
Preferably, the bottom surface of this bumping post is tied to form type plural number slot and clamping ribs.
Preferably, the end face of this bumping post is conplane smooth arranged side by side with the heat absorption end face that pastes bottom surface, heat pipe.
Preferably, the concentrated storage tank of this radiating fin modules is to offer one to inject groove.
Preferably, the radiating end of said heat pipe system extend bending and transplanting in heat sink modules.
Preferably, transplanting is extended in another heat sink modules by the radiating end of said heat pipe system.
Preferably, the radiating end of said heat pipe system adopts interlace mode and extends the bending transplanting in same heat sink modules.
The beneficial effect of the utility model is following:
One, reaches combining of radiating fin modules and heat pipe through binder; By utilize radiating fin modules the formation adjacent closed that links up paste bottom surface and and concentrate storage tank; Coating or inject binder in concentrating storage tank is inserted heat pipe is smooth again, can accomplish the firm bonding of heat pipe and concentrated storage tank fast; And make the subsides bottom surface of sealing and heat pipe can constitute conplane smooth arranged side by side; So can all directly paste simultaneously and touch thermal source, make the subsides bottom surface of this radiating fin modules and heat pipe all can just reach the heat radiation purpose simultaneously, by this to promote radiating effect in the very first time.
Two,Described binder is the adhesion material that can use tin cream or have high thermal conductivity coefficient, in order to reach firm bonding effect.
Three,The closed of said radiating fin modules pastes the bottom surface, is in order to strengthen whole support fixation effect, to promote the structural strength of radiator at a side that pastes the bottom surface or dual-side again against combining a bumping post.
Four, said against being incorporated into the bumping post that pastes the bottom surface side, be can with the heat absorption end face that pastes bottom surface, heat pipe be conplane smooth side by side, but by this to enlarge the area of supplying heat source contact.
Description of drawings
Fig. 1 is the combination sketch map of the utility model first embodiment.
Fig. 2 is the combination top view of the utility model first embodiment.
Fig. 3 is the A-A profile of Fig. 2.
Fig. 4 is the B-B profile of Fig. 2.
Fig. 5 is the sketch map of decomposing state for the utility model member.
Another enforcement illustration that Fig. 6 adopts square storage tank for the utility model changes.
Fig. 7 is the combination sketch map of Fig. 6.
Another enforcement illustration that Fig. 8 injects groove for the utility model omits.
Fig. 9 injects an enforcement illustration again of groove for the utility model omits.
Figure 10 is applicable to the combination stereogram of different shape heat pipe for the utility model.
Figure 11 is the top view of Figure 10 embodiment.
Figure 12 is applicable to the embodiment combination stereogram of two heat sink modules for the utility model.
Figure 13 is the top view of Figure 12 embodiment.
Figure 14 extends the radiator combination top view of forming different examples for the utility model with plural heat pipe interleaved.
The drawing reference numeral explanation:
Radiating fin modules 10
Heat pipe 20
Binder 30
Radiating fin 1
High lug 11
Paste bottom surface 12
Concentrate storage tank 13
Heat absorption end face 201
Bumping post 4
Slot 41
Clamping ribs 42
End face 43
Inject groove 131
Heat pipe 20a
Radiating end 202
Heat sink modules 10a
Heat pipe 20b
Heat sink modules 10b
Heat pipe 20c
Heat sink modules 10c
The specific embodiment
Below in conjunction with the accompanying drawing and the specific embodiment the utility model is further described.
To shown in Figure 5, is first embodiment of the utility model " bonding type tool pastes the attached heat pipe radiator of end radiating fin " like Fig. 1, and it is formed and comprises a radiating fin modules 10, more than one heat pipe 20 and binder 30 at least, wherein:
Radiating fin modules 10; System constitutes by a plurality of radiating fin 1 is adjacent; Each radiating fin 1 cording has a high lug 11 (like Fig. 4); The top of this high lug 11 system is vertical extension shape, and forms the closed that can link up adjacent in one or both sides and paste bottom surface 12, and is central then form the concentrated storage tank 13 of adjacent closed that can link up;
More than one heat pipe 20; The concentrated storage tank 13 that radiating fin modules 10 is inserted in system's confession; And be to be no seam state between the plural heat pipe 20, it is conplane smooth arranged side by side that the heat absorption end face 201 of this heat pipe 20 pastes 12 of bottom surfaces with the closed of radiating fin modules 10;
Binder 30 is to be located to concentrate storage tank 13 to bind the adhesion material that it can use the tin cream material or have high thermal conductivity coefficient with heating tube 20;
According to above-mentioned formation; It lies in concentrates coating in the storage tank 13 (or injection) binder 30; With heat pipe 20 smooth inserting, can accomplish the firm bonding of heat pipe 20 and concentrated storage tank 13 fast again, and make subsides bottom surface 12 and heat pipe 20 heat absorption end faces 201 form conplane smooth arranged side by side; So can all directly paste simultaneously and touch thermal source, to promote radiating effect.
Such as above-mentioned embodiment announcement, its be can be further paste bottom surface 12 at said closed side again against combining a bumping post 4, in order to strengthen whole support fixation effect, promote the structural strength of radiator; As shown in Figure 3, the bottom surface system plural number slot 41 of moulding in advance and the clamping ribs 42 of this bumping post 4 in order to urgent and clamping radiating fin 1, form firmly combination, but this enforcement structure is wherein a kind of feasible combination of this case, in fact not as limit.
As shown in Figure 5; Above-mentioned bumping post 4 main systems supply against the side that is incorporated into subsides bottom surface 12; Its end face 43 that further also can make bumping post 4 and the heat absorption end face 201 that pastes bottom surface 12, heat pipe 20 be conplane smooth side by side, but by this to enlarge the area of supplying heat source contact; But in case of necessity, the end face of said bumping post 4 43 height, it also can be lower than the height that pastes bottom surface 12, be not limited to and paste bottom surface 12, heat pipe 20 is maintained same plane.
Above-mentioned concentrated storage tank 13; Main system forms the compatible shape of coupling according to the quantity difference of heat pipe 20; So that can be the smooth arranged side by side of no seam state between the plural heat pipe 20, and concentrate the bottom land shape of storage tank 13 also to be regardless of, for example can be adjacent concave arc shape (like Fig. 4); Or it further also can offer one again at this concentrated storage tank 13 and inject groove 131, injects groove 131 and can make things convenient for binder 30 to carry out quick filling to inject to utilize.Like Fig. 6, shown in Figure 7; Then be to disclose the another kind of bottom land shape of concentrating storage tank 13; Mainly be that the heat pipe 20 that is suitable for the square form coupling of doing changes; All heat pipe configuration combinations to difformity or varying number make square heat pipe 20 can smoothly insert relative square concentrated storage tank 13, so all can change size or the form of concentrating storage tank arbitrarily.
Above-mentioned injection groove 131; Be also can omit in case of necessity; Like Fig. 8, shown in Figure 9,, promptly needn't extraly offer the injection groove if said binder 30 is the modes that adopt coating; Concentrate storage tank 13 inwalls and can directly the binder 30 of tin cream material be coated, just can accomplish the firm bonding of heat pipe 20 and concentrated storage tank 13 fast; As for the application of relevant injection groove 131, be the adhesion material (binder 30) that is fit to have high thermal conductivity coefficient, adopt injection mode and accomplish the firm bonding of heat pipe 20 and concentrated storage tank 13 fast.
Like Figure 10, shown in Figure 11, it is the configuration variation that the heat pipe 20a to different shape does, for the radiating end 202 that makes plural heat pipe 20a can further extend the bending transplanting in heat sink modules 10a, to form the radiator of another kind of form.
Like Figure 12, another embodiment shown in Figure 13, it is that radiating end 202 with plural heat pipe 20b extends transplantings in another heat sink modules 10b, in order to form one have two heat sink modules configuration make up.
In like manner, an embodiment more shown in figure 14 then be can the radiating end 202 of plural heat pipe 20c be adopted interlace mode, and the transplanting that is the extension bending is formed the radiator of another kind of different shape in same heat sink modules 10c.
The above; It only is the preferred embodiment of the utility model structure; Be not that the technical scope of the utility model is done any restriction; So every technical spirit according to the utility model all still belongs in the scope of the utility model technical scheme any trickle modification, equivalent variations and modification that above embodiment did.

Claims (10)

1. one kind is binded the attached heat pipe radiator that the type tool pastes end radiating fin, and its composition comprises a radiating fin modules, more than one heat pipe and binder at least, it is characterized in that:
Radiating fin modules; System constitutes by a plurality of radiating fins are adjacent; Each radiating fin cording has a high lug; The top of this high lug system is vertical extension shape, and forms the closed that can link up adjacent in one or both sides and paste the bottom surface, and is central then form the concentrated storage tank of adjacent closed that can link up;
More than one heat pipe is the concentrated storage tank that radiating fin modules is inserted in confession, and the closed of the heat absorption end face of heat pipe and radiating fin modules subsides bottom surface is conplane smooth arranged side by side;
Binder is to be located to concentrate storage tank to bind with heating tube;
According to above-mentioned formation, it lies in concentrates in the storage tank coating or injects binder, inserts heat pipe is smooth again, accomplishing the firm bonding of heat pipe and concentrated storage tank, and makes and pastes bottom surface and the heat pipe end face that absorbs heat and form conplane smooth arranged side by side.
2. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: be to be no seam state between the said plural heat pipe.
3. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: the adhesion material that this binder system uses the tin cream material or has high thermal conductivity coefficient.
4. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: the closed of this radiating fin modules pastes the bottom surface, ties up to side again against combining a bumping post.
5. paste the attached heat pipe radiator of end radiating fin like the said bonding type of claim 4 tool, it is characterized in that: the bottom surface of this bumping post is tied to form type plural number slot and clamping ribs.
6. paste the attached heat pipe radiator of end radiating fin like the said bonding type of claim 4 tool, it is characterized in that: the end face of this bumping post is conplane smooth arranged side by side with the heat absorption end face that pastes bottom surface, heat pipe.
7. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: the concentrated storage tank of this radiating fin modules is to offer one to inject groove.
8. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: the radiating end system of said heat pipe extend bending and transplanting in heat sink modules.
9. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: transplanting is extended in another heat sink modules by the radiating end system of said heat pipe.
10. the tool of bonding type according to claim 1 pastes the attached heat pipe radiator of end radiating fin, it is characterized in that: the radiating end system of said heat pipe adopts interlace mode and extends the bending transplanting in same heat sink modules.
CN2011202228584U 2011-06-29 2011-06-29 Adhesive-type heat pipe radiator with bottom radiating fins Expired - Lifetime CN202254984U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011202228584U CN202254984U (en) 2011-06-29 2011-06-29 Adhesive-type heat pipe radiator with bottom radiating fins

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011202228584U CN202254984U (en) 2011-06-29 2011-06-29 Adhesive-type heat pipe radiator with bottom radiating fins

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Publication Number Publication Date
CN202254984U true CN202254984U (en) 2012-05-30

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102393156A (en) * 2011-06-29 2012-03-28 东莞汉旭五金塑胶科技有限公司 Adhesive-type heat-pipe attached radiator with bottom-attached heat-radiating fins
CN103717031A (en) * 2012-09-29 2014-04-09 技嘉科技股份有限公司 Heat radiating device and manufacturing method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102393156A (en) * 2011-06-29 2012-03-28 东莞汉旭五金塑胶科技有限公司 Adhesive-type heat-pipe attached radiator with bottom-attached heat-radiating fins
CN103717031A (en) * 2012-09-29 2014-04-09 技嘉科技股份有限公司 Heat radiating device and manufacturing method thereof
CN103717031B (en) * 2012-09-29 2017-09-12 技嘉科技股份有限公司 Heat abstractor and its manufacture method

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20120530

Effective date of abandoning: 20150923

RGAV Abandon patent right to avoid regrant