CN103796482B - Radiating module - Google Patents

Radiating module Download PDF

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Publication number
CN103796482B
CN103796482B CN201210428232.8A CN201210428232A CN103796482B CN 103796482 B CN103796482 B CN 103796482B CN 201210428232 A CN201210428232 A CN 201210428232A CN 103796482 B CN103796482 B CN 103796482B
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CN
China
Prior art keywords
radiating
block piece
protuberance
radiating fin
air intake
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Application number
CN201210428232.8A
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Chinese (zh)
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CN103796482A (en
Inventor
陈博轩
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Rydberg Information Technology (Zhejiang) Co., Ltd.
Original Assignee
Inventec Pudong Technology Corp
Inventec Corp
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Publication date
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Priority to CN201210428232.8A priority Critical patent/CN103796482B/en
Publication of CN103796482A publication Critical patent/CN103796482A/en
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Abstract

A kind of radiating module, comprises a radiating fin group and a block piece. Radiating fin group has an air intake vent. Block piece is arranged at air intake vent and partial occlusion air intake vent removably. Block piece blows to the dust of radiating fin group under keeping off, and user can dismantle block piece to clean the dust on block piece.

Description

Radiating module
Technical field
The present invention is about a kind of radiating module, especially a kind of radiating module with the lower dust of block piece gear.
Background technology
In recent years, the technology of electronic installation is flourish. Requirement for the arithmetic speed of electronic installation is also constantly carriedRise. But the electronic component in electronic installation can produce heat in the time of computing, and the temperature of electronic component is raise. And, in fortuneIn the faster situation of calculation speed, also the more, the intensification situation of electronic component can be more serious for the heat producing. But, electronic componentIn the time of high temperature, can cause arithmetic speed to decline, even cause electronic component to damage. Therefore, the heat that runaway electron element produces,For important problem in electronic installation technology now.
In current heat dissipation technology, there is active heat dissipation technology and the passive heat radiation technology of being divided into. Active heat dissipation technologyIn conventionally there is a gas flow generator, to produce air-flow. Air-flow can brush radiating fin conventionally, to assist radiating fin heat radiation.But airborne dust often also can blow via air-flow toward radiating fin. Once radiating fin accumulation dust, except air-flowBeyond flow velocity and radiating efficiency can reduce, user is also difficult to clear up the dust in radiating fin.
Summary of the invention
Because the problems referred to above the invention provides a kind of radiating module, by the lower dust of dismountable block piece gear, and energyDismounting block piece is with dust out.
The invention provides a kind of radiating module, comprise a radiating fin group and a block piece. Radiating fin group has one and entersAir port. Block piece is arranged at air intake vent and partial occlusion air intake vent removably.
Above-mentioned radiating module, wherein this radiating fin group comprises multiple radiating fins.
Above-mentioned radiating module, wherein this block piece has a protuberance, and this protuberance is arranged at two-phase removablyBetween those adjacent radiating fins.
Above-mentioned radiating module, wherein the width of this protuberance is greater than the distance between two adjacent those radiating fins, shouldProtuberance is arranged between two adjacent those radiating fins in the mode of strain.
Above-mentioned radiating module, wherein this block piece also has a connection piece, and this connector is connected with this protuberance, and this connectsFitting is arranged at the edge of those radiating fins and not parallel with those radiating fins.
Above-mentioned radiating module, wherein this block piece also has a bars, and this bars is arranged at respectively this radiating finEdge and parallel with those radiating fins, this connector is connected with this protuberance via this bars.
Above-mentioned radiating module, wherein this bars has a central portion, and this connector is via this central portion and this protuberanceBe connected.
Above-mentioned radiating module, wherein this bars has an end, and this connector is connected with this protuberance via this endConnect.
Above-mentioned radiating module, wherein also comprises a heat pipe, runs through or attaches this radiating fin group.
Above-mentioned radiating module, wherein also comprises a gas flow generator, has an air outlet, and this gas flow generator goes out with thisAir port is arranged at this radiating fin group towards this air intake vent.
According to the disclosed radiating module of the invention described above, by being arranged at removably the block piece of air intake ventPartial occlusion air intake vent, gear blowing down enters the dust in air port. In dust accumulation, to a certain amount of when above, user also can be by screeningBlock piece disassembles from air intake vent. User, after clean block piece, also can put back to air intake vent by block piece. Therefore, be easy to clearlyClean block piece can avoid dust to enter in radiating fin group, safeguards radiating module and be convenient to user.
The explanation of the above explanation about content of the present invention and following embodiment is in order to demonstration and explanation the present inventionSpirit and principle, and provide patent claim of the present invention further to explain.
Brief description of the drawings
Fig. 1 illustrates the stereogram according to the radiating module of embodiments of the invention;
Fig. 2 illustrates the three-dimensional explosive view of the radiating module of Fig. 1;
Fig. 3 illustrates the top plan view of the radiating module of Fig. 1.
Wherein, Reference numeral:
10 radiating module 100 gas flow generators
100a air outlet 200 radiating fin modules
210 radiating fin group 210a air intake vents
211 radiating fin 220 block pieces
221 bars 222 connectors
223 protuberance 300 heat pipes
D is apart from F air-flow
Zone R territory W width
Detailed description of the invention
In embodiment, describe below detailed features of the present invention and advantage in detail, its content is enough to make any abilityField technique personnel understand technology contents of the present invention and according to this implement, and according to the disclosed content of this description, apply for a patentScope and accompanying drawing, any those skilled in the art can understand object and the advantage that the present invention is relevant easily. Following embodimentFurther describe viewpoint of the present invention, but non-to limit anyways category of the present invention.
Please refer to Fig. 1, illustrate the stereogram according to the radiating module 10 of embodiments of the invention. Radiating module 10 comprises oneGas flow generator 100 and a radiating fin modules 200. Gas flow generator 100 is for example tube-axial fan, centrifugal fan and sprayStream device (SynJet). In the present embodiment taking centrifugal fan as illustrative example. Radiating fin modules 200 comprises a radiating fin group210 and multiple block piece 220. In addition, radiating module 10 also comprises a heat pipe 300. Heat pipe 300 can run through radiating fin group 210,But be not limited to this. In other embodiment, heat pipe 300 also can be attached at radiating fin group 210.
Please refer to Fig. 2, illustrate the three-dimensional explosive view of the radiating module 10 of Fig. 1. Gas flow generator 100 has an air outlet100a. Radiating fin group 210 has an air intake vent 210a. Gas flow generator 100 with air outlet 100a towards air intake vent 210a'sMode is arranged at radiating fin group 210. Block piece 220 is arranged at air intake vent 210a and partial occlusion inlet air removablyMouth 210a.
In the present embodiment, radiating fin group 210 comprises multiple radiating fins 211. Each block piece 220 has multiple protrudingPortion 223. Each protuberance 223 is arranged between two adjacent radiating fins 211 in radiating fin 211 removably.Block piece 220 is made with elastomeric material, for example, make with the material such as rubber or silica gel. The protuberance 223 of block piece 220 wideDegree W is slightly larger than the distance B between above-mentioned adjacent radiating fin 211. Therefore, after protuberance 223 compresses in the mode of strain,Be arranged between above-mentioned adjacent radiating fin 211. For example user can fill in protuberance 223 above-mentioned adjacent radiating finBetween 211. Now protuberance 223 has an elastic restoring force pushing and pressing radiating fin 211, thereby increases protuberance 223 and radiating finPositive force between 211, and then increase the frictional force between the two, makes the protuberance 223 can be easily from de-between radiating fin 211From. Whereby, block piece 220 also can not drop from the air intake vent 210a of radiating fin group 210 easily. When will be from air intake vent 210aWhen dismounting block piece 220, user can directly strip down block piece 220 from air intake vent 210a.
In the present embodiment, each block piece 220 has multiple bars 221 and a connection piece 222. When block piece 220 is establishedWhile being placed in the air intake vent 210a of radiating fin group 210, bars 221 is arranged at edge and and the radiating fin of radiating fin 211211 is parallel. Connector 222 connects these bars 221, and 223 of protuberances are arranged at bars 221. Therefore, connector 222 warpsBe connected with protuberance 223 by bars 221. Now, connector 222 be arranged at the edge of radiating fin 211 and not with heat radiating finSheet 211 is parallel. Connector 222 can be connected in the central portion of bars 221 and be connected with protuberance 223 via central portion, andCan make connector 222 directly under gear, blow the dust toward radiating fin group 210 from gas flow generator 100, but be not limited to this. ConnectPart 222 also can be connected in the end of bars 221, and is connected with protuberance 223 via end.
In the present embodiment, block piece 220 can be H font. Wherein bars 221 is positioned at two vertical bar portions of H fontPoint, connector 222 is positioned at a horizontal stripe part of H font. In other embodiment, a connector 222 also can be connected inThe end of bars 221, and make block piece 220 can present the shape such as U font or N font in English alphabet. Moreover, Duo GelianFitting 222 also can connect multiple bars 221, and makes block piece 220 can present the shape such as Chinese square shape or day font.Connector 222 can connect the central portion more than the bars 221 of two, and makes block piece 220 present barrier shape. OnState present U font, N font, square shape or day font multiple block pieces 220 also can with share bars 221 mode thatThis is connected.
Please refer to Fig. 3, illustrate the top plan view of the radiating module 10 of Fig. 1. In the time using radiating module 10, air-flow producesDevice 100 can blow air-flow F toward radiating fin group 210. One end of heat pipe 300 is arranged at the hot element of generation and (does not illustrate, for example electricitySub-element), the other end is arranged at radiating fin group 210. Heat pipe 300 from approaching the one end that produces hot element, is guided heatTo the one end that approaches radiating fin group 210. Blown into the heat of the air-flow F dissipation of energy heat pipe 300 between radiating fin 211. But,In air-flow F, tend to carry secretly some dusts. Block piece 220 is arranged at radiating fin group 210 and accepts air-flow F and brush air intake vent210a, and can keep off the dust in downstream F. Use after a period of time in radiating module 10, dust can be deposited in block pieceIn the region R in 220 fronts, and be stuck on block piece 220, to avoid dust to enter between radiating fin 211. User canBlock piece 220 is peeled off in air intake vent 210a, related the dust being stuck on block piece 220 is moved apart to radiating fin group 210 in the lump.User is as long as remove the dust being stuck on block piece 220, and block piece 220 just can be arranged at air intake vent 210a again, and is able to heavilyMultiple use. A block piece 220 also can be applied in different radiating modules. When block piece 220 is because of the long-term elasticity that usesWhen tired, also can replace old block piece 220 with new block piece 220.
According to the radiating module of above-described embodiment, can be by being arranged at removably the block piece part of air intake ventBlock air intake vent, enter the dust in air port to keep off blowing down. In dust accumulation, to a certain amount of when above, user also can will be blockedPart disassembles from air intake vent. User, after clean block piece, also can put back to air intake vent by block piece. Therefore, easy to cleanBlock piece can avoid dust to enter in radiating fin group, safeguard radiating module and be convenient to user.

Claims (7)

1. a radiating module, is characterized in that, comprising:
One radiating fin group, has an air intake vent; And
One block piece, is arranged at this air intake vent of this air intake vent and partial occlusion removably,
Wherein, this radiating fin group comprises multiple radiating fins; This block piece has a protuberance, and this protuberance removablyBe arranged between two adjacent those radiating fins; And the width of this protuberance is greater than the distance between two adjacent those radiating finsBe arranged between two adjacent those radiating fins in the mode of strain from, this protuberance.
2. radiating module as claimed in claim 1, is characterized in that, this block piece also has a connection piece, this connector withThis protuberance is connected, and this connector is arranged at the edge of those radiating fins and not parallel with those radiating fins.
3. radiating module as claimed in claim 2, is characterized in that, this block piece also has a bars, and this bars is establishedBe placed in the edge of each this radiating fin and parallel with those radiating fins, this connector is connected with this protuberance via this barsConnect.
4. radiating module as claimed in claim 3, is characterized in that, this bars has a central portion, this connector viaThis central portion is connected with this protuberance.
5. radiating module as claimed in claim 3, is characterized in that, this bars has an end, and this connector is via thisEnd is connected with this protuberance.
6. radiating module as claimed in claim 1, is characterized in that, also comprises a heat pipe, runs through or attaches this radiating finGroup.
7. radiating module as claimed in claim 1, is characterized in that, also comprises a gas flow generator, has an air outlet, shouldGas flow generator is arranged at this radiating fin group with this air outlet towards this air intake vent.
CN201210428232.8A 2012-10-31 2012-10-31 Radiating module Active CN103796482B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201210428232.8A CN103796482B (en) 2012-10-31 2012-10-31 Radiating module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201210428232.8A CN103796482B (en) 2012-10-31 2012-10-31 Radiating module

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Publication Number Publication Date
CN103796482A CN103796482A (en) 2014-05-14
CN103796482B true CN103796482B (en) 2016-05-18

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112181109B (en) * 2020-09-10 2021-08-17 深圳市蓝晨科技股份有限公司 Novel heat radiation structure of notebook computer

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2741097Y (en) * 2004-09-30 2005-11-16 仁宝电脑工业股份有限公司 Radiator with dust-collecting mechanism
CN201733558U (en) * 2010-07-02 2011-02-02 北京Abb电气传动系统有限公司 Radiator

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100446648C (en) * 2004-06-15 2008-12-24 华硕电脑股份有限公司 Radiator with dust filtering funtion and electronic apparatus
TWM270405U (en) * 2004-08-19 2005-07-11 Compal Electronics Inc Heat sink device with dust-collection mechanism
JP4493611B2 (en) * 2005-12-13 2010-06-30 富士通株式会社 Electronics
JP5131116B2 (en) * 2008-09-22 2013-01-30 富士通株式会社 Cooling unit and electronic equipment
CN101685332B (en) * 2008-09-25 2013-04-24 索尼株式会社 Cooling apparatus, electronic apparatus, and blower apparatus
JP5236772B2 (en) * 2011-04-18 2013-07-17 株式会社ソニー・コンピュータエンタテインメント Heat sink and electronic device including heat sink

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2741097Y (en) * 2004-09-30 2005-11-16 仁宝电脑工业股份有限公司 Radiator with dust-collecting mechanism
CN201733558U (en) * 2010-07-02 2011-02-02 北京Abb电气传动系统有限公司 Radiator

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Effective date of registration: 20191023

Address after: Room 301, floor 3, building 1, No. 500, Ping'an Road, Wutong street, Tongxiang City, Jiaxing City, Zhejiang Province

Patentee after: Rydberg Information Technology (Zhejiang) Co., Ltd.

Address before: 201114 Shanghai City Caohejing Export Processing Zone Pu Xing Road No. 789

Co-patentee before: Yingda Co., Ltd.

Patentee before: Yingda Technology Co., Ltd.