High-efficient radiating metal radiator
Technical Field
The utility model relates to a relevant technical field of radiator especially relates to a high-efficient radiating metal radiator.
Background
The computer components are largely provided with integrated circuits, the integrated circuits are most forbidden to high temperature, and the high temperature can not only cause unstable system operation and short service life, but also possibly cause some components to be burnt; the radiator is used for absorbing the heat and then radiating the heat into the case or out of the case to ensure normal temperature of computer components, however, most of the existing radiators adopt fans for radiating heat, the efficiency of adopting the fans for radiating heat is lower, and the effect is not ideal. In addition, the radiator is after using for a long time, can adsorb a large amount of dusts on the fan, so not only can reduce the radiating effect, but also can exert an influence to radiator itself, can cause its damage when serious, reduced the life of radiator, but because the fan is installed inside the casing, it is more troublesome when the user clears up the dust, need take apart the casing and just can clear up, need the user to possess stronger ability, such radiator is not too friendly to the user that the hands-on ability is not strong.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a radiating high-efficient radiating metal radiator of heat dissipation high efficiency and clearance maintenance convenience to overcome the not enough that exists among the prior art.
In order to achieve the above object, the present invention provides the following technical solutions: the utility model provides a high-efficient radiating metal radiator, its characterized in that places in including the casing the radiator unit of casing, the casing includes drain pan and apron, the side of drain pan is equipped with a plurality of louvres, the apron lid is established the drain pan, be equipped with a plurality of air vents on the apron, radiator unit includes heat-conducting plate, fin, support frame and heat dissipation fan, the heat-conducting plate sets up in the drain pan, the inside runner that supplies the cooling medium circulation that is equipped with of heat-conducting plate, the fin sets up the heat-conducting plate is close to one side of apron, the support frame sets up the fin with between the apron, the support frame slides and establishes the drain pan, the heat dissipation fan is installed on the support frame.
In one embodiment, the housing further comprises a plurality of supporting legs, and the supporting legs are arranged on the cover plate at intervals.
In one embodiment, the supporting leg includes a screw portion and a supporting portion, the supporting portion is connected to one end of the screw portion, the screw portion is used for connecting the bottom case and the cover plate, and the supporting portion is used for supporting the cover plate.
In one embodiment, the heat conducting plate is connected with the bottom shell through a fastening piece, a connecting lug is arranged on the side surface of the heat conducting plate, the fastening piece penetrates through the connecting lug, and the fastening piece is in threaded connection with the bottom shell.
In one embodiment, the heat dissipation assembly further includes two coolant connectors, and the two coolant connectors are respectively communicated with the input end and the output end of the flow channel.
In one embodiment, a handle groove supporting frame is arranged on one side of the supporting frame.
In one embodiment, one side of the support frame, which is provided with the handle slot, is connected with a USB connector, and the USB connector is electrically connected with the heat dissipation fan through a wire.
In one embodiment, the metal radiator with high-efficiency heat dissipation further comprises a sliding assembly, the sliding assembly comprises two sliding rails and a plurality of pulleys, the two sliding rails are respectively arranged on two opposite inner sides of the bottom shell, the pulleys are arranged on two opposite sides of the supporting frame at intervals, and the sliding rails are slidably arranged on the pulleys.
In one embodiment, the heat conducting plate and the heat sink are made of copper or aluminum.
Compared with the prior art, the beneficial effects of the utility model are as follows:
the high-efficiency heat-radiating metal radiator of the utility model is provided with the heat conducting plate, the radiating fins and the radiating fan, the heat conducting plate is internally provided with the flow channel for the circulation of the refrigerant, part of heat of the heat conducting plate is taken away by the refrigerant, and meanwhile, the rest of heat is taken away by the matching of the radiating fins and the radiating fan through the flowing air flow, so that the radiating effect is more efficient; in addition, through installing the heat dissipation fan on the support frame, and support frame and casing sliding connection, when the dust that is stained with on the heat dissipation fan of needs clearance is stained with, only need take the support frame out in the casing, outside the heat dissipation fan can expose the casing, it is more convenient to maintain the clearance.
Drawings
Fig. 1 is a schematic view of an overall structure of a metal heat sink with high heat dissipation efficiency according to a preferred embodiment of the present invention;
fig. 2 is a schematic structural view of the high-efficiency heat-dissipating metal heat sink shown in fig. 1 from another perspective;
FIG. 3 is an exploded view of the high efficiency heat dissipating metal heat sink shown in FIG. 2;
fig. 4 is a schematic structural view of a heat conducting plate, a heat dissipating fin, a connecting lug and a refrigerant joint in the high-efficiency heat dissipating metal heat sink shown in fig. 3;
FIG. 5 is a side cross-sectional view of the heat-conducting plate and coolant joint of the high-efficiency heat-dissipating metal heat sink shown in FIG. 4;
fig. 6 is a view showing the mounting plate of the high-efficiency heat-dissipating metal heat sink shown in fig. 2 slid out of the housing.
Reference is made to the accompanying drawings in which:
a metal heat sink 100 for efficient heat dissipation;
the structure comprises a shell 10, a bottom shell 11, a heat dissipation hole 110, a cover plate 12, a vent hole 120, a support leg 13, a screw part 131 and a support part 132;
the heat dissipation component 20, the heat conduction plate 21, the flow channel 210, the heat dissipation sheet 22, the support frame 23, the handle groove 230, the heat dissipation fan 24, the connection lug 25, the refrigerant connector 26, the wire 27 and the USB connector 28;
a sliding component 30, a sliding rail 31 and a pulley 32.
Detailed Description
In order to make the above objects, features and advantages of the present invention more comprehensible, embodiments of the present invention are described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. The present invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein, as those skilled in the art will be able to make similar modifications without departing from the spirit and scope of the present invention.
The present invention will be described in detail with reference to embodiments shown in the drawings:
referring to fig. 1 to 6, a metal heat sink 100 with high heat dissipation efficiency according to a preferred embodiment of the present invention includes a housing 10 and a heat dissipation assembly 20 disposed in the housing 10, the housing 10 includes a bottom shell 11 and a cover plate 12, the side of the bottom shell 11 is provided with a plurality of heat dissipation holes 110, the cover plate 12 covers the bottom shell 11, the cover plate 12 is provided with a plurality of air vents 120, the heat dissipation assembly 20 includes a heat conduction plate 21, a heat dissipation fin 22, a support frame 23 and a heat dissipation fan 24, the heat conduction plate 21 is disposed in the bottom shell 11, the heat conduction plate 21 is protruded from the bottom shell 11, a flow channel 210 for circulation of cooling medium is disposed in the heat conduction plate 21, the heat dissipation fin 22 is disposed on a side of the heat conduction plate 21 close to the cover plate 12, the support frame 23 is disposed between the heat dissipation fin 22 and the cover plate 12, the support frame 23 slidably mounts the bottom shell 11, and the heat dissipation fan 24 is mounted on the support frame 23; the utility model discloses a high-efficient radiating metal radiator 100 has the radiating efficiency height and maintains the simple and convenient advantage of maintenance.
As shown in fig. 1 and 2, the casing 10 includes a bottom shell 11 and a cover plate 12, the side of the bottom shell 11 is provided with a plurality of heat dissipation holes 110, the cover plate 12 covers the bottom shell 11, the cover plate 12 is provided with a plurality of vent holes 120, by providing the heat dissipation holes 110 and the vent holes 120, heat in the casing 10 can be discharged from the heat dissipation holes 110, meanwhile, fresh air flows into the casing 10 from the vent holes 120 to form convection, thereby accelerating dissipation of heat in the casing 10, and in addition, the vent holes 120 can prevent large-particle dust or impurities from entering the casing 10; optionally, the housing 10 further includes a plurality of supporting legs 13, and each supporting leg 13 is disposed on the cover plate 12 at intervals; further, the supporting legs 13 include a screw portion 131 and a supporting portion 132, the supporting portion 132 is connected to one end of the screw portion 131, the screw portion 131 is used to connect the bottom case 11 and the cover plate 12, and the supporting portion 132 is used to support the cover plate 12, so as to provide the advantages that the supporting legs 13 both function as a connecting member between the bottom case 11 and the cover plate 12 and also function as a supporting member for the housing 10, and support the cover plate 12, so that air enters the housing 10 from the vent hole 120, in this embodiment, the number of the supporting legs 13 is four, and the four supporting legs 13 are respectively disposed at four corners of the cover plate 12.
Referring to fig. 3 to 5, the heat dissipating assembly 20 includes a heat conducting plate 21, heat dissipating fins 22, a supporting frame 23 and a heat dissipating fan 24, the heat conducting plate 21 is disposed in the bottom case 11, and the bottom of the heat conducting plate 21 is flush with the bottom of the bottom case 11, a flow channel 210 for the circulation of cooling medium is disposed inside the heat conducting plate 21, the heat dissipating fins 22 are disposed on one side of the heat conducting plate 21 close to the cover plate 12, the number of the heat dissipating fins 22 is several, two adjacent heat dissipating fins 22 form a heat dissipating channel, the heat dissipating holes 110 on the bottom case 11 are communicated with the heat dissipating channel, the supporting frame 23 is disposed between the heat dissipating fins 22 and the cover plate 12, the supporting frame 23 is slidably disposed on the bottom case 11, the heat dissipating fan 24 is mounted on the supporting frame 23, one side of the supporting frame 23 is disposed with a handle slot 230, and the handle slot 230 is used for sliding the auxiliary supporting frame 23 out of the bottom case 11; further, the heat conducting plate 21 is connected with the bottom case 11 through a fastening member (not shown), a connecting lug 25 is disposed on a side surface of the heat conducting plate 21, and the fastening member is inserted into the connecting lug 25 and is in threaded connection with the bottom case 11, in this embodiment, the fastening member is a screw; further, the heat dissipation assembly 20 further includes two refrigerant connectors 26, the two refrigerant connectors 26 are respectively communicated with the input end and the output end of the flow channel 210, one end of each of the two refrigerant connectors 26 is communicated with the flow channel 210, and the other end of each of the two refrigerant connectors 26 is communicated with an external conduit penetrating through the bottom case 11, so that the refrigerant is introduced into the flow channel 210 to flow circularly, a part of heat of the heat conduction plate 21 is taken away by the refrigerant, and the rest of heat is taken away by the cooling fins 22 and the cooling fans 24 in cooperation through airflow, wherein the refrigerant in this embodiment is purified water; furthermore, a USB connector 28 is connected to one side of the supporting frame 23 having the handle slot 230 through a wire 27, and the USB connector 28 is electrically connected to the heat dissipation fan 24 through the wire 27. Preferably, the heat conducting plate 21 and the heat dissipating fins 22 are made of copper or aluminum, which has a good heat dissipating effect.
In a specific embodiment, the efficient heat dissipating metal heat sink 100 further includes a sliding assembly 30, the sliding assembly 30 includes two sliding rails 31 and a plurality of pulleys 32, the two sliding rails 31 are respectively disposed on two opposite inner sides of the bottom case 11, the pulleys 32 are disposed on two opposite sides of the supporting frame 23 at intervals, and the sliding rails 31 are slidably disposed on the pulleys 32. Through the arrangement of the sliding rail 31 and the pulley 32, when the supporting frame 23 is pulled out from the bottom case 11, the friction force is smaller, and the operation is smoother.
As shown in fig. 6, when needing to clear up the dust that is stained with on the heat dissipation fan 24, the hand groove 230 is being scratched to the finger, takes out the support frame 23 from the drain pan 11 toward outside until support frame 23 and drain pan 11 separate, can directly use air gun or other instruments to clear up the dust on the heat dissipation fan 24 like this, after the clearance is accomplished, push back the support frame 23 in the drain pan 11 again, convenient and fast more has reduced the requirement to the power of moving the hand.
The high-efficiency heat-dissipating metal radiator 100 of the utility model is provided with the heat conducting plate 21, the heat radiating fins 22 and the heat radiating fan 24, the heat conducting plate 21 is internally provided with the flow channel 210 for the circulation of the refrigerant, part of heat of the heat conducting plate 21 is taken away by the refrigerant, and meanwhile, the rest of heat is taken away by the cooperation of the heat radiating fins 22 and the heat radiating fan 24 through the flowing air flow, so that the heat radiating effect is more efficient; in addition, through installing heat dissipation fan 24 on support frame 23, and support frame 23 and casing 10 sliding connection, when the dust that is stained with on heat dissipation fan 24 needs to be cleared up, only need take support frame 23 out from casing 10 in, heat dissipation fan 24 can expose outside the casing, and it is more convenient to maintain the clearance.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.