CN203136416U - Heat abstractor - Google Patents

Heat abstractor Download PDF

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Publication number
CN203136416U
CN203136416U CN 201320051013 CN201320051013U CN203136416U CN 203136416 U CN203136416 U CN 203136416U CN 201320051013 CN201320051013 CN 201320051013 CN 201320051013 U CN201320051013 U CN 201320051013U CN 203136416 U CN203136416 U CN 203136416U
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CN
China
Prior art keywords
heat abstractor
clamping part
supporting part
heat
base
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 201320051013
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Chinese (zh)
Inventor
谢宗宪
刘昱钦
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.)
Cooler Master International Co Ltd
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Cooler Master Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Cooler Master Co Ltd filed Critical Cooler Master Co Ltd
Priority to CN 201320051013 priority Critical patent/CN203136416U/en
Application granted granted Critical
Publication of CN203136416U publication Critical patent/CN203136416U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model provides a heat abstractor, including a pedestal and a heat pipe. The pedestal includes a clamping part, a supporting part and two lateral parts; an outer side of each lateral part forms a first recess structure inwards; the clamping part is opposite to the supporting part; the two lateral parts connect the clamping part and the supporting part; a containing space is formed between the clamping part, the supporting part and the two lateral parts. A first end of the heat pipe is arranged in the containing space and is supported by the supporting part. The clamping part and the supporting part cooperate in a close fit mode to clamp the first end of the heat pipe.

Description

Heat abstractor
Technical field
The utility model relates to a kind of heat abstractor, refers to that especially a kind of punching press processing procedure that relies on makes heat pipe be held on heat abstractor in the base in friction tight mode.
Background technology
The development of heat abstractor and electronic product is closely bound up.Because electronic product is when running, electric current in the circuit can produce unnecessary heat energy because of the influence of impedance, if these heat energy can not be got rid of effectively and be accumulated on the electronic component of electronic product inside, just electronic component might cause damaging because of the continuous temperature that raises.Therefore, it is very huge that the quality of heat abstractor influences the running of electronic product.
Generally speaking, all be provided with heat pipe in many heat abstractors, the thermal energy conduction that is used for electronic component is produced is discharged the electronic product outside by radiator with heat energy again to radiator.At present, the base that is used for carrying heat pipe in the existing heat abstractor all must pass through several roads fabrication process, can expend many times during the carrying base between the per pass processing procedure, makes production efficiency reduce and the production cost raising.
Summary of the invention
The utility model provides a kind of heat abstractor, and it relies on the punching press processing procedure that heat pipe is held in the base in friction tight mode, to solve the above problems.
For achieving the above object, the technical solution adopted in the utility model is:
A kind of heat abstractor is characterized in that, comprises:
One base, comprise a clamping part, a supporting part and two sidepieces, side direction forms one first sunk structure in the lateral of each this sidepiece, this clamping part is relative with this supporting part, these two sidepieces connect this clamping part and this supporting part, and an accommodation space is formed between this clamping part, this supporting part and this two sidepieces; And
One heat pipe, one first end of this heat pipe is arranged in this accommodation space and is carried on this supporting part, and this clamping part cooperates this first end that clamps this heat pipe in friction tight mode with this supporting part.
Wherein: the outside of each this sidepiece is S-shaped or Z-shaped.
Wherein: the inboard of each this sidepiece direction laterally forms one second sunk structure.
Wherein: be formed with an opening on this supporting part, make the bottom surface of this first end expose in this opening, the width of this opening is less than the Breadth Maximum of this first end.
Wherein: the bottom surface copline of the bottom surface of this first end and this base.
Wherein: also comprise a radiator, be arranged on one second end of this heat pipe.
Wherein: also comprise two fixtures, be arranged on this base, wherein this accommodation space is between these two fixtures.
Wherein: this heat pipe is a flat hot pipe.
In sum, the base of heat abstractor of the present utility model can the moulding of aluminium extruded shape processing procedure, and the utility model relies on punching press processing procedure punching press base clamping part, and heat pipe is held in the base in friction tight mode.Because side direction forms first sunk structure in the lateral of two sidepieces, therefore first sunk structure can provide the space of clamping part distortion in the process of punching press.Processing procedure of the present utility model is simple, can effectively enhance productivity and reduce production costs.
Description of drawings
Fig. 1 is the flow chart according to the manufacture method of the heat abstractor of the utility model one embodiment;
Fig. 2 is according to the stereogram before the heat abstractor assembling of the utility model one embodiment;
Fig. 3 is the stereogram after the heat abstractor among Fig. 1 is assembled;
Fig. 4 is the front view of the heat abstractor among Fig. 3;
Fig. 5 is the front view after the clamping part punching press of base of the heat abstractor among Fig. 4;
Fig. 6 is according to the stereogram before the heat abstractor assembling of another embodiment of the utility model;
Fig. 7 is after the heat abstractor among Fig. 6 is assembled and the front view after the clamping part punching press of base;
Fig. 8 is according to the stereogram before the heat abstractor assembling of another embodiment of the utility model;
Fig. 9 is the face upwarding stereogram after the heat abstractor among Fig. 8 is assembled;
Figure 10 is the front view of the heat abstractor among Fig. 9;
Figure 11 is the front view after the clamping part punching press of base of the heat abstractor among Figure 10;
Figure 12 is according to the stereogram before the heat abstractor assembling of another embodiment of the utility model;
Figure 13 is after the heat abstractor among Figure 12 is assembled and the front view after the clamping part punching press of base.
Description of reference numerals: 1,1', 3,3' heat abstractor; 10,10', 30,30' base; 12,32 heat pipes; 14,34 radiators; 16,36 fixtures; 100,300 clamping parts; 102,302 supporting parts; 104,304 sidepieces; 106,306 accommodation spaces; 108,308 caulking parts; 110,310,3200 bottom surfaces; 120,320 first ends; 122,322 second ends; 307 openings; 1040,3,040 first sunk structures; 1,042 second sunk structures; W1, W2 width; The A arrow; The S10-S16 step.
Embodiment
See also Fig. 1 to Fig. 5, Fig. 1 is the flow chart according to the manufacture method of the heat abstractor of the utility model one embodiment, Fig. 2 is according to the stereogram before heat abstractor 1 assembling of the utility model one embodiment, Fig. 3 is the stereogram after the heat abstractor 1 among Fig. 1 is assembled, Fig. 4 is the front view of the heat abstractor 1 among Fig. 3, and Fig. 5 is the front view after clamping part 100 punching presses of base 10 of the heat abstractor 1 among Fig. 4.
At first, execution in step S10, one base 10 is provided, wherein base 10 comprises a clamping part 100, one supporting part 102 and two sidepieces 104, clamping part 100 is arch, side direction forms first sunk structure 1040 in the lateral of each sidepiece 104, make that the outside of each sidepiece 104 is S-shaped or Z-shaped, the inboard of each sidepiece 104 direction laterally forms one second sunk structure 1042, clamping part 100 is relative with supporting part 102, two sidepieces 104 connect clamping part 100 and supporting part 102, and an accommodation space 106 is formed at clamping part 100, between supporting part 102 and two sidepieces 104.In this embodiment, can an aluminium extruded shape processing procedure shaping base 10, simplifying the processing procedure of base 10, and then effectively enhance productivity and reduce production costs.
Then, execution in step S12 is arranged at one first end 120 of a heat pipe 12 in the accommodation space 106 of base 10 and is carried on the supporting part 102, and a radiator 14 is arranged on one second end 122 of heat pipe 12.In this embodiment, heat pipe 12 is a flat hot pipe.Yet in another embodiment, heat pipe 12 also can be circular heat pipe or other form heat pipe, decides on practical application.In addition, radiator 14 can be combined by a plurality of radiating fins, but not as limit.
Then, execution in step S14, from the clamping part 100 of base 10 towards the direction punching press clamping part 100(of supporting part 102 such as the indicated direction of arrow A among Fig. 4), so that clamping part 100 produces distortion and then cooperates first end 120 that clamps heat pipe 12 in friction tight mode with supporting part 102, as shown in Figure 5.Because the outside and the inboard of two sidepieces 104 have first sunk structure 1040 and second sunk structure 1042 respectively, therefore first sunk structure 1040 and second sunk structure 1042 can provide the space of clamping part 100 distortion in the process of punching press.In other words, behind punching press clamping part 100, clamping part 100 can extend to two sidepieces 104, and then is close to first end 120 of heat pipe 12, makes clamping part 100 cooperate first end 120 that clamps heat pipe 12 in friction tight mode with supporting part 102.In this embodiment, the thickness of clamping part 100 can be between 0.6 millimeter to 1 millimeter (but not as limit), so that clamping part 100 has preferable ductility and the punching press of non-reason and ruptures when punching press.
At last, execution in step S16 is arranged at two fixtures 16 on the base 10, and wherein accommodation space 106 is between two fixtures 16.In practical application, fixture 16 can be metal clips, but not as limit.In this embodiment, fixture 16 can be riveted on the caulking part 108 of base 10.In addition, if do not form caulking part 108 at base 10, then can utilize screw locking, welding or other fixed form that fixture 16 is arranged on the base 10.
To step S16, can finish the manufacturing of heat abstractor 1 as shown in Figure 5 via above-mentioned step S10.In practical application, the bottom surface 110 of base 10 can be attached on the electronic component (not shown), again fixture 16 is locked on the circuit board (not shown) in the electronic product, so that electronic component is dispelled the heat.
Cooperate Fig. 2 to Fig. 5, see also Fig. 6 and Fig. 7, Fig. 6 is according to the stereogram before the heat abstractor 1' assembling of another embodiment of the utility model, and Fig. 7 is after the heat abstractor 1' among Fig. 6 assembles and the front view after clamping part 100 punching presses of base 10'.Heat abstractor 1 ' with the main difference of above-mentioned heat abstractor 1 be in, the base 10' of heat abstractor 1' comprises two clamping parts 100, two supporting parts 102 and four sidepieces 104 and forms two accommodation spaces 106, and heat abstractor 1' comprises two heat pipes 12, as Fig. 6 and shown in Figure 7.First end 120 of two heat pipes 12 can be arranged at respectively in the corresponding accommodation space 106 (above-mentioned step S12), two above-mentioned step S14 of clamping part 100(of punching press again), so that two clamping parts 100 cooperate first end 120 that clamps two heat pipes 12 in friction tight mode with two supporting parts 102, as shown in Figure 7.In other words, the utility model can be according to practical application request, go up a plurality of clamping parts 100 of formation, supporting part 102 and sidepiece 104 with aluminium extruded shape processing procedure in base 10', rely on the punching press processing procedure that a plurality of heat pipes 12 are held between the corresponding clamping part 100 and supporting part 102 in friction tight mode again.It should be noted that with the element of same numeral shown in Fig. 2 to Fig. 5, its action principle is roughly the same, does not repeat them here among Fig. 6 to Fig. 7.
See also Fig. 8 to Figure 11, Fig. 8 is according to the stereogram before heat abstractor 3 assemblings of another embodiment of the utility model, Fig. 9 is the face upwarding stereogram after the heat abstractor 3 among Fig. 8 is assembled, Figure 10 is the front view of the heat abstractor 3 among Fig. 9, and Figure 11 is the front view after clamping part 300 punching presses of base 30 of the heat abstractor 3 among Figure 10.Manufacture method among Fig. 1 also can be used to make heat abstractor 3.
At first, execution in step S10, one base 30 is provided, wherein base 30 comprises a clamping part 300, a supporting part 302 and two sidepieces 304, clamping part 300 is arch, side direction forms one first sunk structure 3040 in the lateral of each sidepiece 304, make that the outside of each sidepiece 304 is S-shaped or Z-shaped, clamping part 300 is relative with supporting part 302, two sidepieces 304 connect clamping part 300 and supporting part 302, one accommodation space 306 is formed between clamping part 300, supporting part 302 and two sidepieces 304, and an opening 307 is formed on the supporting part 302.In this embodiment, can an aluminium extruded shape processing procedure shaping base 30, simplifying the processing procedure of base 30, and then effectively enhance productivity and reduce production costs.
Then, execution in step S12 is arranged at one first end 320 of a heat pipe 32 in the accommodation space 306 of base 30 and is carried on the supporting part 302, and a radiator 34 is arranged on one second end 322 of heat pipe 32.At this moment, the bottom surface 3200 of first end 320 of heat pipe 32 can expose in the opening 307.In this embodiment, the width W 1 of opening 307 makes supporting part 302 first end 320 of heat pipe 32 can be supported in the accommodation space 306 less than the Breadth Maximum W2 of first end 320 of heat pipe 32, comes off from opening 307 with first end 320 that prevents heat pipe 32.In this embodiment, heat pipe 32 is a flat hot pipe.Yet in another embodiment, heat pipe 32 also can be circular heat pipe or other form heat pipe, decides on practical application.In addition, radiator 34 can be combined by a plurality of radiating fins, but not as limit.
Then, execution in step S14, from the clamping part 300 of base 30 towards the direction punching press clamping part 300(of supporting part 302 such as the indicated direction of arrow A among Figure 10), so that clamping part 300 produces distortion and then cooperates first end 320 that clamps heat pipe 32 in friction tight mode with supporting part 302, as shown in figure 11.Because the outside of two sidepieces 304 has first sunk structure 3040, therefore first sunk structure 3040 can provide the space of clamping part 300 distortion in the process of punching press.In other words, behind punching press clamping part 300, clamping part 300 can extend to two sidepieces 304, and then is close to first end 320 of heat pipe 32, makes clamping part 300 cooperate first end 320 that clamps heat pipe 32 in friction tight mode with supporting part 302.In this embodiment, the thickness of clamping part 300 can be between 0.6 millimeter to 1 millimeter (but not as limit), so that clamping part 300 has preferable ductility and the punching press of non-reason and ruptures when punching press.
At last, execution in step S16 is arranged at two fixtures 36 on the base 30, and wherein accommodation space 306 is between two fixtures 36.In practical application, fixture 36 can be metal clips, but not as limit.In this embodiment, fixture 36 can be riveted on the caulking part 308 of base 30.In addition, if do not form caulking part 308 at base 30, then can utilize screw locking, welding or other fixed form that fixture 36 is arranged on the base 30.
To step S16, can finish the manufacturing of heat abstractor 3 as shown in figure 11 via above-mentioned step S10.In practical application, the bottom surface 3200 of first end 320 of the heat pipe 32 that exposes can be attached on the electronic component (not shown), again fixture 36 is locked on the circuit board (not shown) in the electronic product, so that electronic component is dispelled the heat.As shown in figure 11, after heat abstractor 3 manufacturing is finished, the bottom surface 3200 of first end 320 of heat pipe 32 can with bottom surface 310 coplines of base 30, with the area of dissipation that increases heat pipe 32 and be attached at stability on the electronic component.
Cooperate Fig. 8 to Figure 11, see also Figure 12 and Figure 13, Figure 12 is according to the stereogram before the heat abstractor 3' assembling of another embodiment of the utility model, and Figure 13 is after the heat abstractor 3' among Figure 12 assembles and the front view after clamping part 300 punching presses of base 30'.Heat abstractor 3 ' with the main difference of above-mentioned heat abstractor 3 be in, the base 30' of heat abstractor 3' comprises two clamping parts 300, two supporting parts 302 and four sidepieces 304 and forms two accommodation spaces 306, and heat abstractor 3' comprises two heat pipes 32, as Figure 12 and shown in Figure 13.First end 320 of two heat pipes 32 can be arranged at respectively in the corresponding accommodation space 306 (above-mentioned step S12), two above-mentioned step S14 of clamping part 300(of punching press again), so that two clamping parts 300 cooperate first end 320 that clamps two heat pipes 32 in friction tight mode with two supporting parts 302, as shown in figure 13.In other words, the utility model can be according to practical application request, go up a plurality of clamping parts 300 of formation, supporting part 302 and sidepiece 304 with aluminium extruded shape processing procedure in base 30', rely on the punching press processing procedure that a plurality of heat pipes 32 are held between the corresponding clamping part 300 and supporting part 302 in friction tight mode again.It should be noted that with the element of same numeral shown in Fig. 8 to Figure 11, its action principle is roughly the same, does not repeat them here among the 12nd to 13 figure.
In sum, the base of heat abstractor of the present utility model can the moulding of aluminium extruded shape processing procedure, and the utility model relies on the punching press processing procedure that heat pipe is held in the base in friction tight mode.Because side direction forms first sunk structure in the lateral of two sidepieces, therefore first sunk structure can provide the space of clamping part distortion in the process of punching press.In addition, the utility model can be in the inboard of two sidepieces laterally direction form second sunk structure, in the process of punching press, to provide clamping part more deformation space.Processing procedure of the present utility model is simple, can effectively enhance productivity and reduce production costs.
More than explanation is just illustrative for the utility model; and nonrestrictive, those of ordinary skills understand, under the situation that does not break away from the spirit and scope that claim limits; can make many modifications, variation or equivalence, but all will fall within the protection range of the present utility model.

Claims (8)

1. a heat abstractor is characterized in that, comprises:
One base, comprise a clamping part, a supporting part and two sidepieces, side direction forms one first sunk structure in the lateral of each this sidepiece, this clamping part is relative with this supporting part, these two sidepieces connect this clamping part and this supporting part, and an accommodation space is formed between this clamping part, this supporting part and this two sidepieces; And
One heat pipe, one first end of this heat pipe is arranged in this accommodation space and is carried on this supporting part, and this clamping part cooperates this first end that clamps this heat pipe in friction tight mode with this supporting part.
2. heat abstractor as claimed in claim 1, it is characterized in that: the outside of each this sidepiece is S-shaped or Z-shaped.
3. heat abstractor as claimed in claim 1, it is characterized in that: the inboard of each this sidepiece direction laterally forms one second sunk structure.
4. heat abstractor as claimed in claim 1, it is characterized in that: be formed with an opening on this supporting part, make the bottom surface of this first end expose in this opening, the width of this opening is less than the Breadth Maximum of this first end.
5. heat abstractor as claimed in claim 4 is characterized in that: the bottom surface copline of the bottom surface of this first end and this base.
6. heat abstractor as claimed in claim 1 is characterized in that: also comprise a radiator, be arranged on one second end of this heat pipe.
7. heat abstractor as claimed in claim 1, it is characterized in that: also comprise two fixtures, be arranged on this base, wherein this accommodation space is between these two fixtures.
8. heat abstractor as claimed in claim 1, it is characterized in that: this heat pipe is a flat hot pipe.
CN 201320051013 2013-01-29 2013-01-29 Heat abstractor Expired - Fee Related CN203136416U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320051013 CN203136416U (en) 2013-01-29 2013-01-29 Heat abstractor

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Application Number Priority Date Filing Date Title
CN 201320051013 CN203136416U (en) 2013-01-29 2013-01-29 Heat abstractor

Publications (1)

Publication Number Publication Date
CN203136416U true CN203136416U (en) 2013-08-14

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CN 201320051013 Expired - Fee Related CN203136416U (en) 2013-01-29 2013-01-29 Heat abstractor

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103974596A (en) * 2013-01-29 2014-08-06 象水国际股份有限公司 Cooling device and manufacturing method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103974596A (en) * 2013-01-29 2014-08-06 象水国际股份有限公司 Cooling device and manufacturing method thereof

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: COOLER MASTER INTERNATIONAL CO., LTD.

Free format text: FORMER OWNER: XUNKAI INTERNATIONAL CO., LTD.

Effective date: 20131212

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20131212

Address after: Chinese Taiwan New Taipei City

Patentee after: Cooler Master International Co., Ltd.

Address before: Chinese Taiwan New Taipei City

Patentee before: Xunkai International Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130814

Termination date: 20160129

EXPY Termination of patent right or utility model