CN221043594U - Heat abstractor for electronic equipment - Google Patents
Heat abstractor for electronic equipment Download PDFInfo
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- CN221043594U CN221043594U CN202322293323.1U CN202322293323U CN221043594U CN 221043594 U CN221043594 U CN 221043594U CN 202322293323 U CN202322293323 U CN 202322293323U CN 221043594 U CN221043594 U CN 221043594U
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Abstract
The utility model relates to the technical field of electronic equipment, and discloses a heat dissipating device for electronic equipment, which comprises a shell and an equipment body, wherein a door is hinged to the front side of the shell, a vent is formed in the left side of the shell, a heat dissipating mechanism is fixedly connected to the bottom of the inner wall of the shell, a frame is fixedly connected to the left side of the shell, and ventilation mechanisms are arranged on the left side and the right side of the shell. The heat generated by the operation of the equipment body can be absorbed through the contact of the radiating fin to the equipment body, and the radiating fin is dispersed into the air, and the bottom of the radiating fin is contacted with the equipment body through the elastic force of the first spring instead of the traditional bolt for fixing the radiating fin on the surface of the equipment body, so that the radiating fin is not required to be disassembled when the equipment body is taken and put, the time is saved, the air in the shell is circulated through the operation of the fan, and the radiating fin absorbs the dispersed heat and is discharged out of the shell.
Description
Technical Field
The utility model relates to the technical field of electronic equipment, in particular to a heat radiating device for electronic equipment.
Background
The electronic device is composed of electronic components such as an integrated circuit, a transistor, an electronic tube and the like, and applies electronic technology, including devices with functions of software.
According to CN 215500270U a high-efficiency heat-dissipating device for electronic equipment, comprising a base plate, a frame, a cover plate, a side plate, a limiting plate, bolts, a coaming, a filter screen, a motor, a fan blade, a fan cover, a through hole, a heat sink, a heat-dissipating hole, a fixing plate, a buffer pad, electronic equipment, a buffer bar, a support bar, a cooling pipe and a water pump.
According to the application method of the cooling fin, the cooling fin is attached to the electronic equipment to enable the using effect of the cooling fin to be the highest, but the cooling fin in the patent is attached to the shell, so that the cooling effect of the cooling fin is low, the filter screen in the patent is not replaced, and the dustproof effect is reduced after the service life.
Disclosure of utility model
The present utility model is directed to a heat sink for electronic devices, which solves the above-mentioned problems.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the heat dissipation device for the electronic equipment comprises a shell and an equipment body, wherein the front side of the shell is hinged with a door, the left side of the shell is provided with an air vent, the bottom of the inner wall of the shell is fixedly connected with a heat dissipation mechanism, the left side of the shell is fixedly connected with a frame, and the left side and the right side of the shell are provided with air vent mechanisms;
The ventilation mechanism comprises a blowing component and a dustproof component, wherein the blowing component is arranged on the right side of the shell, and the dustproof component is arranged in the frame.
Preferably, the radiating mechanism comprises a connecting rod and a connecting block, wherein the connecting rod is symmetrically and fixedly connected to the bottom of the inner wall of the shell, a first limiting block is fixedly connected to the middle of the surface of the connecting rod, a second limiting block is fixedly connected to the top of the connecting rod, a sliding hole is formed in the top of the connecting block, a radiating fin is fixedly connected to the left side of the connecting block, and a first spring is sleeved on the surface of the connecting rod.
Preferably, the connecting block is connected to the surface of the guide rod through the sliding hole in a sliding manner, and is located between the first limiting block and the second limiting block, the bottom end of the first spring is fixedly connected with the top of the connecting block, the top end of the first spring is fixedly connected with the bottom of the second limiting block, the equipment body is placed in the shell, a layer of heat conduction silicone grease is coated on the bottom of the radiating fin, the radiating fin is attached to the equipment body by utilizing the elastic force of the first spring, and the bottom of the radiating fin is contacted with the bottom of the shell due to the elastic force of the first spring when the equipment body is taken out by the second limiting block.
Preferably, the blowing assembly comprises a connecting port, the connecting port is arranged on the right side of the shell, a limiting ring is fixedly connected in the connecting port, a fan is connected in the connecting port in a sliding mode, a first sliding groove is symmetrically arranged on the left side, the right side, the front side and the rear side in the connecting port, a second spring is fixedly connected in the first sliding groove, an arc-shaped block is fixedly connected with the other end of the second spring, and an arc-shaped groove is formed in the front side and the rear side of the fan, corresponding to the arc-shaped block.
Preferably, the arc-shaped block is slidably connected in the first chute, and the fan can contact the limiting ring when placed in the connecting port, and the limiting ring can prevent the fan from being placed in the shell.
Preferably, the dustproof assembly comprises a second chute, the second chute is arranged at the top of the frame, a dustproof filter screen is connected in the second chute in a sliding manner, a first connecting hole is arranged at the bottom end of the front face of the frame, a second connecting hole is arranged at the bottom end of the front face of the dustproof filter screen, a guide rod is connected in the first connecting hole in a sliding manner, a pull block is fixedly connected at the front end of the guide rod, an annular block is fixedly connected at the bottom end of the front face of the frame, and a third spring is sleeved between the pull block and the annular block.
Preferably, the guide rod rear end is inserted in the second connecting hole, the guide rod surface is slidably connected in the annular block, the third spring front end is fixedly connected with the back of the pull block, the third spring rear end is fixedly connected with the front of the annular block, and when air is in the shell, air in the air can be filtered through the dustproof filter screen, so that dust cannot enter the shell.
Compared with the prior art, the utility model provides the heat radiating device for the electronic equipment, which has the following beneficial effects:
1. This heat abstractor for electronic equipment can absorb the heat that the equipment body during operation produced through the contact of fin to the equipment body, gives off in the air, because the fin makes its bottom contact the equipment body through the elasticity of first spring, and not fix it at the surface of equipment body with traditional bolt, so need not dismantle the fin when getting to put the equipment body, practiced thrift the time.
2. According to the heat dissipation device for the electronic equipment, air in the shell is circulated through the operation of the fan, so that heat emitted by the heat dissipation fins is absorbed and discharged out of the shell, dust in the air is blocked by the air entering from the air vent through the dustproof filter screen, and the dust in the air cannot be in the shell.
Drawings
For a clearer description of the technical solutions of the embodiments of the present utility model, the drawings that are needed in the description of the embodiments will be briefly described below, it will be apparent that the drawings in the description below are only some embodiments of the present utility model, and that other drawings can be obtained according to these drawings without inventive effort for a person skilled in the art:
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of the internal structure of the housing of the present utility model;
FIG. 3 is a schematic diagram of a heat dissipation mechanism according to the present utility model;
FIG. 4 is a schematic diagram of a blowing assembly according to the present utility model;
FIG. 5 is a schematic view of a dustproof filter screen according to the present utility model;
Fig. 6 is a schematic view of a dustproof assembly structure according to the present utility model.
In the figure: 1. a housing; 2. a door; 3. an equipment body; 4. a vent; 5. a heat dissipation mechanism; 51. a connecting rod; 52. a first limiting block; 53. a connecting block; 54. a sliding hole; 55. a heat sink; 56. a second limiting block; 57. a first spring; 6. a ventilation mechanism; 61. an air blowing assembly; 611. a connection port; 612. a limiting ring; 613. a blower; 614. a first chute; 615. a second spring; 616. an arc-shaped block; 617. an arc-shaped groove; 62. a dust-proof assembly; 621. a second chute; 622. a dust-proof filter screen; 623. a first connection hole; 624. a second connection hole; 625. a guide rod; 626. pulling blocks; 627. an annular block; 628. a third spring; 7. and a frame.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. 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 present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communicated with the inside of two elements or the interaction relationship of the two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
The utility model provides the following technical scheme:
Example 1
Referring to fig. 1-3, a heat dissipating device for an electronic device includes a housing 1 and a device body 3, wherein a door 2 is hinged to the front surface of the housing 1, a vent 4 is provided on the left side of the housing 1, a heat dissipating mechanism 5 is fixedly connected to the bottom of the inner wall of the housing 1, a frame 7 is fixedly connected to the left side of the housing 1, and ventilation mechanisms 6 are provided on the left and right sides of the housing 1.
The heat dissipation mechanism 5 comprises a connecting rod 51 and a connecting block 53, wherein the connecting rod 51 is symmetrically and fixedly connected to the bottom of the inner wall of the shell 1, a first limiting block 52 is fixedly connected to the middle of the surface of the connecting rod 51, a second limiting block 56 is fixedly connected to the top end of the connecting rod 51, a sliding hole 54 is formed in the top of the connecting block 53, a heat dissipation fin 55 is fixedly connected to the left side of the connecting block 53, and a first spring 57 is sleeved on the surface of the connecting rod 51.
The connecting block 53 is slidably connected to the surface of the guide rod 625 through the sliding hole 54 and is located between the first limiting block 52 and the second limiting block 56, the bottom end of the first spring 57 is fixedly connected with the top of the connecting block 53, the top end of the first spring 57 is fixedly connected with the bottom of the second limiting block 56, the equipment body 3 is placed in the shell 1, a layer of heat conducting silicone grease is coated on the bottom of the heat radiating fin 55, the heat radiating fin 55 is attached to the equipment body 3 by utilizing the elasticity of the first spring 57, and the bottom of the heat radiating fin 55 is prevented from being contacted with the bottom of the shell 1 due to the elasticity of the first spring 57 when the equipment body 3 is taken out by the second limiting block 56.
Example two
Referring to fig. 4-6, and based on the first embodiment, the ventilation mechanism 6 further includes a blowing component 61 and a dust-proof component 62, the blowing component 61 is disposed on the right side of the housing 1, and the dust-proof component 62 is disposed in the frame 7.
The air blowing assembly 61 comprises a connecting port 611, the connecting port 611 is arranged on the right side of the shell 1, a limiting ring 612 is fixedly connected in the connecting port 611, a fan 613 is slidably connected in the connecting port 611, first sliding grooves 614 are symmetrically arranged on the left side, the right side, the front side and the rear side in the connecting port 611, second springs 615 are fixedly connected in the first sliding grooves 614, arc-shaped blocks 616 are fixedly connected with the other ends of the second springs 615, and arc-shaped grooves 617 are formed in the front side and the rear side of the fan 613 corresponding to the arc-shaped blocks 616.
The arc-shaped block 616 is slidably connected to the first chute 614, and the fan 613 contacts the stop collar 612 when placed in the connection port 611, and the stop collar 612 can prevent the fan 613 from being placed in the housing 1.
The dustproof assembly 62 comprises a second chute 621, the second chute 621 is arranged at the top of the frame 7, a dustproof filter screen 622 is slidably connected in the second chute 621, a first connecting hole 623 is formed in the front bottom end of the frame 7, a second connecting hole 624 is formed in the front bottom end of the dustproof filter screen 622 corresponding to the first connecting hole 623, a guide rod 625 is slidably connected in the first connecting hole 623, a pull block 626 is fixedly connected to the front end of the guide rod 625, an annular block 627 is fixedly connected to the front bottom end of the frame 7 corresponding to the first connecting hole 623, and a third spring 628 is sleeved on the surface of the guide rod 625 between the pull block 626 and the annular block 627.
The rear end of the guide rod 625 is inserted into the second connecting hole 624, the surface of the guide rod 625 is slidably connected in the annular block 627, the front end of the third spring 628 is fixedly connected with the back surface of the pull block 626, the rear end of the third spring 628 is fixedly connected with the front surface of the annular block 627, and when air is in the shell 1, the air in the air is filtered through the dustproof filter screen 622, so that dust cannot enter the shell 1.
In the actual operation process, when the device is used, the door 2 is opened, the bottom of the radiating fin 55 is coated with a layer of heat conduction silicone grease, then the radiating fin 55 is moved on the net, then the inside of the shell 1 of the equipment body 3 is positioned below the radiating fin 55, after the device is placed, the radiating fin 55 is slowly loosened, the bottom of the radiating fin 55 is attached to the top of the equipment body 3, the radiating fin 55 can be subjected to downward elasticity of the first spring 57, the radiating fin 55 is tightly attached to the equipment body 3, the radiating effect is optimal, and the radiating fin 55 can absorb heat generated by the equipment body 3 during operation and radiate the heat into the air when contacting the equipment body 3;
Then, the blower 613 is started again, the blower 613 works to suck the geothermal air emitted by the heat radiating fins 55 in the housing 1 out of the housing 1, so that the air in the housing 1 circulates, and as the blower 613 is elastically clamped in the connection port 611 through the second spring 615, the blower 613 can be easily disassembled, the air sucked from the outside of the housing 1 can be filtered through the dustproof filter screen 622, dust in the air is blocked, the pull block 626 is pulled, the rear end of the guide rod 625 is driven away from the second connecting hole 624, the dustproof filter screen 622 is pulled out from the second chute 621, and the use effect of the dustproof filter screen 622 is prevented from being influenced due to excessive dust on the surface of the dustproof filter screen 622.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises an element.
Claims (7)
1. The utility model provides a heat abstractor for electronic equipment, includes casing (1) and equipment body (3), its characterized in that: the front of the shell (1) is hinged with a door (2), the left side of the shell (1) is provided with a vent (4), the bottom of the inner wall of the shell (1) is fixedly connected with a heat dissipation mechanism (5), the left side of the shell (1) is fixedly connected with a frame (7), and the left side and the right side of the shell (1) are provided with ventilation mechanisms (6);
The ventilation mechanism (6) comprises a blowing component (61) and a dustproof component (62), the blowing component (61) is arranged on the right side of the shell (1), and the dustproof component (62) is arranged in the frame (7).
2. A heat sink for an electronic device according to claim 1, wherein: the heat dissipation mechanism (5) comprises a connecting rod (51) and a connecting block (53), wherein the connecting rod (51) is symmetrically and fixedly connected to the bottom of the inner wall of the shell (1), a first limiting block (52) is fixedly connected to the middle of the surface of the connecting rod (51), a second limiting block (56) is fixedly connected to the top end of the connecting rod (51), a sliding hole (54) is formed in the top of the connecting block (53), a heat dissipation fin (55) is fixedly connected to the left side of the connecting block (53), and a first spring (57) is sleeved on the surface of the connecting rod (51).
3. A heat sink for an electronic device according to claim 2, wherein: the connecting block (53) is connected to the surface of the guide rod (625) in a sliding mode through the sliding hole (54) and is located between the first limiting block (52) and the second limiting block (56), the bottom end of the first spring (57) is fixedly connected with the top of the connecting block (53), and the top end of the first spring (57) is fixedly connected with the bottom of the second limiting block (56).
4. A heat sink for an electronic device according to claim 1, wherein: the air blowing assembly (61) comprises a connecting port (611), the right side of the shell (1) is arranged on the connecting port (611), a limiting ring (612) is fixedly connected in the connecting port (611), a fan (613) is connected in a sliding manner in the connecting port (611), a first sliding groove (614) is symmetrically arranged on the left side, the right side and the front side of the connecting port (611), a second spring (615) is fixedly connected in the first sliding groove (614), an arc-shaped block (616) is fixedly connected to the other end of the second spring (615), and arc-shaped grooves (617) are formed in the front side and the rear side of the fan (613) corresponding to the arc-shaped block (616).
5. The heat sink for an electronic device according to claim 4, wherein: the arc-shaped block (616) is slidably connected in the first chute (614).
6. A heat sink for an electronic device according to claim 1, wherein: the dustproof assembly (62) comprises a second chute (621), the second chute (621) is formed in the top of the frame (7), a dustproof filter screen (622) is connected in the second chute (621) in a sliding mode, a first connecting hole (623) is formed in the front bottom end of the frame (7), a second connecting hole (624) is formed in the front bottom end of the dustproof filter screen (622) corresponding to the first connecting hole (623), a guide rod (625) is connected in the first connecting hole (623) in a sliding mode, a pulling block (626) is fixedly connected to the front end of the guide rod (625), an annular block (627) is fixedly connected to the front bottom end of the frame (7) corresponding to the first connecting hole (623), and a third spring (628) is sleeved on the surface of the guide rod (625) between the pulling block (626) and the annular block (627).
7. The heat sink for an electronic device according to claim 6, wherein: the rear end of the guide rod (625) is inserted into the second connecting hole (624), the surface of the guide rod (625) is slidably connected into the annular block (627), the front end of the third spring (628) is fixedly connected with the back of the pull block (626), and the rear end of the third spring (628) is fixedly connected with the front face of the annular block (627).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322293323.1U CN221043594U (en) | 2023-08-25 | 2023-08-25 | Heat abstractor for electronic equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322293323.1U CN221043594U (en) | 2023-08-25 | 2023-08-25 | Heat abstractor for electronic equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221043594U true CN221043594U (en) | 2024-05-28 |
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ID=91176964
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202322293323.1U Active CN221043594U (en) | 2023-08-25 | 2023-08-25 | Heat abstractor for electronic equipment |
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| Country | Link |
|---|---|
| CN (1) | CN221043594U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN120222765A (en) * | 2025-03-14 | 2025-06-27 | 阳新新联安装工程有限公司 | A silicon carbide rectifier capable of avoiding breakdown short circuit phenomenon |
-
2023
- 2023-08-25 CN CN202322293323.1U patent/CN221043594U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN120222765A (en) * | 2025-03-14 | 2025-06-27 | 阳新新联安装工程有限公司 | A silicon carbide rectifier capable of avoiding breakdown short circuit phenomenon |
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