CN210270786U - Novel high-efficient radiator - Google Patents
Novel high-efficient radiator Download PDFInfo
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- CN210270786U CN210270786U CN201921434781.XU CN201921434781U CN210270786U CN 210270786 U CN210270786 U CN 210270786U CN 201921434781 U CN201921434781 U CN 201921434781U CN 210270786 U CN210270786 U CN 210270786U
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Abstract
The utility model discloses a novel high-efficient radiator, it includes radiator body and radiator fan, be equipped with buckle connection structure between radiator body and the radiator fan, buckle connection structure all overlaps and is equipped with and inhale the packing ring that shakes, buckle connection structure includes magnetism suction unit group, catching groove and knot piece, the radiator body includes first heat radiation fins and second heat radiation fins, first heat radiation fins is equipped with cavity and a plurality of through-hole, second heat radiation fins sets up in the cavity, the inside cooling tube group that is equipped with of radiator body. The utility model can be adjusted according to the length of the processor or the radiated element to form radiators with different length specifications, thereby satisfying the use of other elements such as processors with different specifications and improving the applicability; the vibration generated when the fan is driven is absorbed by the vibration absorption gasket, so that the influence of vibration on the performance of elements such as a processor is reduced, the condition that the radiating fan cannot be tightly attached to the radiator body is possibly caused by the reduction of vibration, and the radiating effect is ensured.
Description
Technical Field
The utility model relates to a technical field of computer equipment, concretely relates to novel high-efficient radiator.
Background
With the increasing application of computers, which have deeply influenced our life style, the computer is a modern electronic computing machine for high-speed computation, can perform numerical computation and logic computation, has a memory function, is a modern intelligent electronic device capable of automatically and high-speed processing mass data according to program operation, and needs a computer radiator to radiate heat to ensure the processing performance of the computer because the computer generates a large amount of heat during operation, wherein the radiating requirement of a processor is the highest. Present radiator is mostly the integral type structure of adoption, length is not adjustable, the treater to different specifications or by radiating element need make the radiator of different specifications and dispel the heat, the suitability is lower, increase cost, and when needs according to the treater or by radiating element carry out the change of radiator, the radiator need occupy great place the space, user's user demand has not been satisfied, and the radiator body and the radiator fan of current radiator pass through screw connection, when wasing the inside, it is troublesome to dismantle the step, it is very inconvenient to wash, still be unfavorable for the installation. The existing heat sink fan can generate vibration when being driven, the vibration can affect the performance of a processor or a heat-dissipated element, and the vibration can cause the heat sink fan not to be tightly attached to a heat-dissipating fin, thereby affecting the heat-dissipating effect.
SUMMERY OF THE UTILITY MODEL
The utility model provides a novel high-efficient radiator to present technical insufficiency.
The utility model discloses a realize that the technical scheme that above-mentioned purpose adopted is:
the utility model provides a novel high-efficient radiator, novel high-efficient radiator includes radiator body and radiator fan, the radiator body sets up the radiator fan below, the radiator body with be equipped with a plurality of buckle connection structure between the radiator fan, it is a plurality of buckle connection structure all overlaps and is equipped with and inhale the packing ring of shaking, radiator fan with the radiator body is connected through a plurality of buckle connection structure locks, buckle connection structure includes magnetism suction body group, catching groove and knot piece, the radiator body includes first heat radiation fins and second heat radiation fins, first heat radiation fins is equipped with cavity and a plurality of through-hole, second heat radiation fins is equipped with and inserts heat radiation fins, it is in to insert heat radiation fins sets up in the cavity, it is equipped with the kicking block to insert heat radiation fins, the inside cooling nest of tubes that is equipped with of radiator body.
The improved radiator fan comprises a telescopic frame and a fan, wherein the telescopic frame comprises two telescopic rod sets and two mounting blocks, the two telescopic rod sets are arranged between the two mounting blocks, and each telescopic rod set is composed of two telescopic rods.
The telescopic rod is further improved and comprises a first connecting rod, a second connecting rod and a third connecting rod, the second connecting rod is provided with a first cavity and an adjusting through hole, the first connecting rod and the third connecting rod are arranged in the first cavity, the first connecting rod and the third connecting rod are provided with a first ejection block, and the fan is arranged on the second connecting rod.
The first heat dissipation fins and the second heat dissipation fins are provided with thickening blocks, a plurality of placing grooves are formed in the first heat dissipation fins and the second heat dissipation fins, the cooling pipe group comprises a plurality of cooling pipes, and the plurality of cooling pipes are arranged on the plurality of placing grooves respectively.
The magnetic attraction body group comprises two magnetic attraction bodies, the two magnetic attraction bodies are respectively arranged at the bottom of the thickening block and above the mounting block, the buckling groove is arranged in the thickening block, and the buckling block is arranged at the bottom of the mounting block.
The improved structure is characterized in that the first radiating fins are further provided with a plurality of sliding grooves, the second radiating fins are further provided with a plurality of sliding strips, the through holes are longitudinally formed in the side face below the cavity, the top blocks are arranged on the two side faces below the second radiating fins, and springs are arranged in the top blocks.
The magnetic body is of a circular ring structure, and an inclined plane is arranged on the inner side of the magnetic body of the circular ring structure and faces the direction of the circle center.
The utility model has the advantages that: the utility model discloses a through will insert the heat radiation fin setting in first heat radiation fin to set up the telescopic frame, make novel high-efficient radiator can carry out the free quick adjustment according to treater or by the length of radiating element, constitute the novel high-efficient radiator of different length specifications, satisfy the use of other components such as the treater of different specifications, improve the suitability; the vibration absorption gasket is arranged to absorb vibration generated when the fan is driven, so that the influence of vibration on the performance of elements such as a processor is reduced, the situation that the radiating fan cannot be attached to the radiator body due to the fact that the vibration is reduced is possible, and the radiating effect is guaranteed. Through setting up the cooling tube nest and being used for letting in of carriers such as water-cooling liquid or air-cooled gas and flowing to transport and dispel the heat with the heat of novel high-efficient radiator, improve the radiating effect, connect through setting up buckle connection structure and can carry out radiator body and radiator fan's quick dismantlement and installation, save the time of installation dismantlement, convenient washing.
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
Drawings
Fig. 1 is a schematic view of the overall structure of the novel efficient heat sink in this embodiment;
fig. 2 is an exploded schematic view of the novel high-efficiency heat sink of the present embodiment;
fig. 3 is a cross-sectional structural diagram of the main body structure of the case of the present embodiment;
FIG. 4 is an enlarged view of A in the present embodiment;
fig. 5 is a schematic structural view of a first heat dissipation fin of the present embodiment;
fig. 6 is a schematic structural view of a second heat dissipation fin of the present embodiment;
FIG. 7 is a schematic view of the telescopic rod of the present embodiment;
fig. 8 is a schematic view of a second link structure according to the present embodiment.
In the figure: 1. the novel efficient radiator comprises a novel efficient radiator body, a radiator fan, a buckle connecting structure, a cooling pipe group, a thickening block, a magnet attraction body group, a buckle groove, a buckle block, a fan, a magnet attraction body group, a through hole, a sliding groove, a.
Detailed Description
The following description is only for the preferred embodiment of the present invention, and does not limit the scope of the present invention.
In the embodiment, referring to fig. 1 to 8, a novel high-efficiency heat sink 1 includes a heat sink body 2 and a heat dissipation fan 3, the heat sink body 2 is disposed below the heat dissipation fan 3, a plurality of fastening connection structures 4 are disposed between the heat sink body 2 and the heat dissipation fan 3, a plurality of fastening connection structures 4 are respectively sleeved with a vibration absorption gasket 43, a plurality of loose structures are disposed in the vibration absorption gasket 43, each loose structure is composed of a plurality of loose holes, the vibration absorption gasket 43 is used for absorbing vibration of the heat dissipation fan 3, reducing influence of the vibration on a processor or a heat dissipation element, ensuring that the heat dissipation fan 3 is tightly attached to the heat sink body 2, ensuring a heat dissipation effect, the heat dissipation fan 3 is fastened and connected to the heat sink body 2 through the plurality of fastening connection structures 4, the fastening connection structures 4 include a magnetic attraction body group 40, a fastening groove 41, and a fastening block 42, the buckle connection structure 4 is convenient for connecting and disassembling the radiator body 2 and the heat radiation fan 3, the radiator body 2 comprises a first heat radiation fin 20 and a second heat radiation fin 21, the first heat radiation fin 20 is provided with a cavity 200 and a plurality of through holes 201, the second heat radiation fin 21 is provided with an inserted heat radiation fin 8, the inserted heat radiation fin 8 is arranged in the cavity 200, the inserted heat radiation fin 8 is provided with a top block 210, the inside of the radiator body 2 is provided with a cooling pipe group 5, the first heat radiation fin 20 is also provided with a plurality of sliding grooves 202, the second heat radiation fin 21 is also provided with a plurality of sliding strips 211, the plurality of through holes 201 are longitudinally arranged on the side surface below the cavity 200, the top block 210 is arranged on the two side surfaces below the second heat radiation fin 21, a spring is arranged in the top block 210, the second heat radiation fin 21 can move left and right along the sliding grooves 202 and is contained in the cavity 200 of the first heat radiation fin 20 or pulled out of the, the radiator bodies 2 with different length specifications are formed, and the applicability of radiating processing elements with different specifications is met.
The heat radiation fan 3 comprises a telescopic frame 30 and a fan 31, the telescopic frame 30 comprises two telescopic rod sets 300 and two installation blocks 301, the two telescopic rod sets 300 are arranged between the two installation blocks 301, the two telescopic rod sets 300 are formed by two telescopic rods 302, the heat radiation fan 3 is used for rapidly transporting heat for heat radiation, and the telescopic rod sets 300 are used for forming frames with different lengths.
The telescopic rod 302 includes a first link 3020, a second link 3021 and a third link 3022, the second link 3022 has a first cavity 3023 and an adjusting through hole 3024, the first link 3020 and the third link 3022 are disposed in the first cavity 3023, the first link 3020 and the third link 3022 have a first top block 3025, the fan 31 is disposed on the second link 3021, and the first link 3020 and the third link 3022 move left and right along the first cavity 3023 of the second link 3021, thereby forming the telescopic frames 30 with different lengths and specifications.
The first heat radiating fins 20 and the second heat radiating fins 21 are provided with the thickening blocks 6, the first heat radiating fins 20 and the second heat radiating fins 21 are internally provided with a plurality of placing grooves 7, the cooling pipe group 5 comprises a plurality of cooling pipes which are respectively arranged on the plurality of placing grooves 7, and the cooling pipe group 5 is used for the flowing of carriers such as water-cooling liquid or air-cooling gas, so that the heat of the heat radiator body 2 is transported and radiated, and the heat radiating effect is improved.
The magnetic attraction body group 40 comprises two magnetic attraction bodies which are respectively arranged at the bottom of the thickening block 6 and above the mounting block 301, the catching groove 41 is arranged in the thickening block 6, and the catching block is arranged at the bottom of the mounting block 301.
The magnetic body is of a circular structure, an inclined plane 400 is arranged on the inner side of the magnetic body of the circular structure, the inclined plane 400 faces the direction of the circle center, and the inclined plane 400 is used for buckling the buckling block 42.
The utility model discloses a through will insert the heat radiation fin setting in first heat radiation fin to set up the telescopic frame, make novel high-efficient radiator can carry out the free quick adjustment according to treater or by the length of radiating element, constitute the novel high-efficient radiator of different length specifications, satisfy the use of other components such as the treater of different specifications, improve the suitability; the vibration absorption gasket is arranged to absorb vibration generated when the fan is driven, so that the influence of vibration on the performance of elements such as a processor is reduced, the situation that the radiating fan cannot be attached to the radiator body due to the fact that the vibration is reduced is possible, and the radiating effect is guaranteed. Through setting up the cooling tube nest and being used for letting in of carriers such as water-cooling liquid or air-cooled gas and flowing to transport and dispel the heat with the heat of novel high-efficient radiator, improve the radiating effect, connect through setting up buckle connection structure and can carry out radiator body and radiator fan's quick dismantlement and installation, save the time of installation dismantlement, convenient washing.
The utility model discloses be not limited to above-mentioned embodiment, adopt with the utility model discloses the same or approximate structure or device of above-mentioned embodiment, and the other that obtain is used for novel high-efficient radiator, all is within the utility model discloses a within the protection scope.
Claims (7)
1. A novel high-efficient radiator which characterized in that: the novel efficient radiator comprises a radiator body and a radiating fan, wherein the radiator body is arranged below the radiating fan, the radiator body is provided with a plurality of buckle connecting structures between the radiating fan, the buckle connecting structures are all sleeved with vibration absorbing gaskets, the radiating fan is connected with the radiator body through a plurality of buckle connecting structure locks, each buckle connecting structure comprises a magnetic suction body group, a fastening groove and a fastening block, the radiating body comprises a first radiating fin and a second radiating fin, the first radiating fin is provided with a cavity and a plurality of through holes, the second radiating fin is provided with an inserted radiating fin, the inserted radiating fin is arranged in the cavity, the inserted radiating fin is provided with a top block, and a cooling pipe group is arranged inside the radiating body.
2. The new high efficiency heat sink of claim 1, wherein: the cooling fan comprises a telescopic frame and a fan, wherein the telescopic frame comprises two telescopic rod sets and two mounting blocks, the two telescopic rod sets are arranged between the two mounting blocks, and each telescopic rod set consists of two telescopic rods.
3. The new high efficiency heat sink of claim 2, wherein: the telescopic link includes first connecting rod, second connecting rod and third connecting rod, the second connecting rod is equipped with cavity one and adjusting through hole, first connecting rod and third connecting rod set up in the cavity one, first connecting rod and third connecting rod are equipped with kicking block one, the fan sets up on the second connecting rod.
4. The new high efficiency heat sink of claim 3, wherein: the first radiating fins and the second radiating fins are provided with thickening blocks, a plurality of placing grooves are formed in the first radiating fins and the second radiating fins, the cooling pipe group comprises a plurality of cooling pipes, and the plurality of cooling pipes are arranged on the plurality of placing grooves respectively.
5. The new high efficiency heat sink of claim 4, wherein: the magnetic body group comprises two magnetic bodies which are respectively arranged at the bottom of the thickening block and above the mounting block, the fastening groove is arranged in the thickening block, and the fastening block is arranged at the bottom of the mounting block.
6. The new high efficiency heat sink of claim 5, wherein: the first radiating fins are further provided with a plurality of sliding grooves, the second radiating fins are further provided with a plurality of sliding strips, the through holes are longitudinally formed in the side face below the cavity, the top block is arranged on the two side faces below the second radiating fins, and springs are arranged in the top block.
7. The new high efficiency heat sink of claim 6, wherein: the magnetic body is of a circular ring-shaped structure, an inclined plane is arranged on the inner side of the magnetic body of the circular ring-shaped structure, and the inclined plane faces the direction of the circle center.
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CN201921434781.XU CN210270786U (en) | 2019-08-31 | 2019-08-31 | Novel high-efficient radiator |
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CN201921434781.XU CN210270786U (en) | 2019-08-31 | 2019-08-31 | Novel high-efficient radiator |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112732039A (en) * | 2021-01-21 | 2021-04-30 | 刘济玮 | Multifunctional computer for block chain and cloud computing and using method thereof |
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2019
- 2019-08-31 CN CN201921434781.XU patent/CN210270786U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112732039A (en) * | 2021-01-21 | 2021-04-30 | 刘济玮 | Multifunctional computer for block chain and cloud computing and using method thereof |
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