CN217718576U - High-sealing vortex radiator - Google Patents

High-sealing vortex radiator Download PDF

Info

Publication number
CN217718576U
CN217718576U CN202221200947.3U CN202221200947U CN217718576U CN 217718576 U CN217718576 U CN 217718576U CN 202221200947 U CN202221200947 U CN 202221200947U CN 217718576 U CN217718576 U CN 217718576U
Authority
CN
China
Prior art keywords
heat
fan frame
radiator
filter screen
fan
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.)
Active
Application number
CN202221200947.3U
Other languages
Chinese (zh)
Inventor
钱岑
罗少林
阮洪伟
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.)
Suzhou Bliver Precision Machinery Co ltd
Original Assignee
Suzhou Bliver Precision Machinery 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 Suzhou Bliver Precision Machinery Co ltd filed Critical Suzhou Bliver Precision Machinery Co ltd
Priority to CN202221200947.3U priority Critical patent/CN217718576U/en
Application granted granted Critical
Publication of CN217718576U publication Critical patent/CN217718576U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model discloses a high sealed vortex formula radiator, including heat dissipation backplate and fan frame, the place ahead of heat dissipation backplate is provided with the fan frame, and the heat dissipation backplate passes through the connecting plate with the fan frame to be connected, the inboard of fan frame is provided with the flabellum, and the fan frame passes through the dead lever with the flabellum to be connected, the place ahead of fan frame is close to the intermediate position and is provided with heat transfer ring, heat transfer ring inboard is provided with the fin, and through the filter mantle that increases, during the radiator inhaled air, the filter mantle intercepts the dust, and the air filter screen that sets up in the filter mantle can carry out secondary filter to the air after the filter mantle filters, blocks a large amount of dusts and gets into in the radiator, prevents that the dust from blockking up the radiator, causes the radiator effect to reduce, and the filter screen base that sets up in the air filter screen bottom can hold air filter screen and filter mantle, prevents that the radiator from making its droing at the vibrations that the during operation sent, influences the filter effect of air.

Description

High-sealing vortex radiator
Technical Field
The utility model belongs to the technical field of the radiator is relevant, concretely relates to high sealed vortex formula radiator.
Background
The vortex type heat radiator is a device for solving the problem that heat is generated when equipment works, redundant heat cannot be quickly dissipated and accumulated to generate high temperature, the equipment which works is probably damaged, and the heat radiator is a layer of good heat conducting medium attached to the heat generating equipment.
The prior vortex type radiator technology has the following problems: 1. vortex formula radiator is at the during operation air intake mass suction air that dispels the heat, and the static that equipment produced adsorbs the dust easily, piles up too much and causes equipment to damage easily, and 2, when vortex formula radiator only set up independent fan, the radiating effect is relatively poor, can only use single fan to dispel the heat, can't discharge the a large amount of heats that equipment produced fast.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high sealed vortex formula radiator to the air intake that proposes inhales dust and the poor problem of radiating effect in solving above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a high sealed vortex formula radiator, includes radiating back plate and fan frame, radiating back plate's the place ahead is provided with the fan frame, and radiating back plate passes through the connecting plate with the fan frame and is connected, the inboard of fan frame is provided with the flabellum, and the fan frame passes through the dead lever with the flabellum and be connected, the place ahead of fan frame is close to the intermediate position and is provided with heat transfer ring, the heat transfer ring inboard is provided with the fin, heat transfer ring's top is provided with heat conduction piece, heat conduction piece's top is provided with the heat pipe, and the other end of heat pipe connects the heat-conducting plate, heat conduction piece's left side is provided with the bolt, the right side of connecting plate is provided with the filter mantle, the inboard of filter mantle is provided with air filter screen, air filter screen's top is provided with the button buckle, and the other end is provided with the filter screen base.
Preferably, the heat conductive pipes are provided in total of three, and each of the heat conductive pipes is a structure made of copper.
Preferably, the fan frame is a structure made of cast iron, and the fan frame and the heat transfer ring are connected through a snap structure.
Preferably, the bolts are provided in total with four, and each bolt is a structure made of cast iron.
Preferably, the connecting plate is a structure made of polyethylene plastics and is connected with the fan outer frame and the heat dissipation back plate through a clamping groove structure.
Preferably, the heat conduction block is a structure made of aluminum alloy, and a heat dissipation opening is arranged in front of the heat conduction block.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a set up the filter mantle at the fan air inlet position, when the fan carries out the work of dispelling the heat, the static that vortex equipment produced adsorbs the dust in with the air to the equipment internal system, can reduce the radiating effect of radiator after piling up in a large number, heat emission can not go out, cause the harm to working equipment, through the filter mantle that increases, when the radiator inhales the air, the filter mantle intercepts the dust, and the air filter screen that sets up in the filter mantle can carry out secondary filter to the air after the filter mantle filters, block in a large amount of dust gets into the radiator, prevent that the dust from blockking up the radiator, cause the radiator effect to reduce, and the filter screen base that sets up in the air filter screen bottom can hold in the air filter screen and the filter mantle, prevent that the radiator from making it drop at the vibrations that the during operation sent, influence the filter effect of air, and the filter mantle can be demolishd through the button buckle that sets up on air filter screen top, the filter mantle after demolishment can clear up, get rid of the dust attachment on the filter mantle of getting rid of, can also can install back through the button again through the button buckle again, make things convenient dismantlement and installation of filter mantle, make the filter mantle convenient clearance of filter mantle, make the filter mantle clear of filter screen convenient, when needs installation, the filter screen installation of the filter screen installation right side is installed on the filter screen, then most outside can be installed, the filter screen can be accomplished in the air filter screen, the filter screen installation.
2. The utility model adds the heat conducting plate and the heat conducting pipe above the heat radiating back plate, when the vortex type heat radiator is only provided with the independent fan, the heat radiating effect is poor, the heat can be conducted to the fan in front and discharged through the central position of the heat radiating back plate firstly, the heat radiation at the edge position is slow, the heat conducting plate is added above the heat radiating back plate, the edge heat can be conducted to the heat conducting plate from the heat radiating back plate, the heat conducting plate can transmit the transmitted heat to the heat conducting block connected with the other end through the heat conducting pipe, in the process of heat transmission, the heat conducting pipe and the heat conducting block which are externally arranged at the outer side of the heat radiator can already radiate a part of the heat, the opening at the front of the heat conducting block can also discharge a large amount of the transmitted heat, and the residual heat is dispersed and transmitted to the heat radiating fins which are positioned at the inner side of the heat conducting ring through the heat conducting ring, the fan arranged behind the radiating fins blows out heat transferred by the radiating back plate, and simultaneously blows out residual heat on the radiating fins after the heat is radiated by the heat conducting block, so that the radiator of a single radiating fan can radiate heat in double channels, the radiating effect is enhanced while the power consumption is unchanged, when the heat conducting pipe and the heat conducting block need to be installed, the heat conducting plate is firstly installed above the radiating back plate, then the heat conducting pipe is installed on the heat conducting plate, the other end of the heat conducting pipe is connected to the heat conducting block, then the heat conducting block is installed on the heat conducting ring, and the radiating fins are installed on the inner side of the heat conducting ring, so that the installation can be completed, after the installation is completed, the single fan can radiate heat in double channels, and the radiating effect of the vortex radiator is enhanced.
Drawings
Fig. 1 is a schematic structural view of a high-sealing vortex type heat sink of the present invention;
FIG. 2 is a schematic view of the position structure of the air filtering device of the present invention;
FIG. 3 is a schematic structural view of an air filtration device according to the present invention;
FIG. 4 is a schematic view of the dual-channel heat dissipation position structure of the present invention;
fig. 5 is a schematic view of the dual-channel heat dissipation structure of the present invention;
in the figure: 1. a heat conducting plate; 2. a connecting plate; 3. a fan housing; 4. a bolt; 5. a heat transfer ring; 6. a heat sink; 7. a fan blade; 8. a filter housing; 9. fixing the rod; 10. a heat conducting block; 11. a button is buckled; 12. a heat dissipation back plate; 13. a heat conduction pipe; 14. an air screen; 15. a filter screen base.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: the utility model provides a high sealed vortex formula radiator, including radiating back plate 12 and fan frame 3, the place ahead of radiating back plate 12 is provided with fan frame 3, and radiating back plate 12 is connected through connecting plate 2 with fan frame 3, the inboard of fan frame 3 is provided with flabellum 7, and fan frame 3 is connected through dead lever 9 with flabellum 7, the place ahead of fan frame 3 is close to the intermediate position and is provided with heat transfer ring 5, heat transfer ring 5 inboard is provided with fin 6, the top of heat transfer ring 5 is provided with heat conduction piece 10, the top of heat conduction piece 10 is provided with heat pipe 13, and heat pipe 13's other end connection heat-conducting plate 1, the left side of heat conduction piece 10 is provided with bolt 4, the right side of connecting plate 2 is provided with filter bowl 8, the inboard of filter bowl 8 is provided with air filter screen 14, the top of air filter screen 14 is provided with button buckle 11, and the other end is provided with filter screen base 15.
The heat conduction pipes 13 are three in number, each heat conduction pipe 13 is made of copper, the heat conduction pipes 13 are three in number, heat on the heat conduction plate 1 can be conducted and dissipated through three channels, a part of the heat can be dissipated in the conduction process, and each heat conduction pipe 13 is made of copper, so that the heat can be rapidly transferred due to the fact that the copper has excellent heat conductivity.
Fan frame 3 is the structure of being made by cast iron, and fan frame 3 passes through buckle structure with heat transfer ring 5 to be connected, and fan frame 3 is made by cast iron, makes radiator firmer when using, and life is longer, and fan frame 3 passes through the buckle with heat transfer ring 5 to be connected, lets fan frame 3 and heat transfer ring 5 dismantle the separation more easily, convenient the maintenance.
Bolt 4 is provided with four altogether, and each bolt 4 all is the structure of being made by cast iron, and bolt 4 sets up four altogether, makes radiator fix more firm on the radiating equipment of needs, prevents the problem that the during operation dropped, and each bolt 4 all is made by cast iron, makes the connection of radiator more stable, and bolt 4 is not fragile, and is sturdy and durable.
Connecting plate 2 is the structure of being made by polyethylene, and passes through draw-in groove structural connection with fan frame 3 and heat dissipation backplate 12, and connecting plate 2 is made by polyethylene, has that the structure is light, and the low price, and toughness is good moreover, can replace the metal, prevents that the long metal of radiator working shock time is tired, leads to the connection fracture, passes through the draw-in groove with fan frame 3 and heat dissipation backplate 12 and is connected, dismantles simply, makes things convenient for the clearance and the change of internals.
Heat conduction block 10 is the structure of being made by the aluminum alloy, and the place ahead position of heat conduction block 10 is provided with the heat dissipation opening, and heat conduction block 10 is made by the aluminum alloy, and the heat-conduction of aluminum alloy is effectual, makes things convenient for heat conduction block 10 to conduct the temperature to heat transfer ring 5 on, and heat conduction block 10 the place ahead sets up the heat dissipation opening, makes things convenient for the heat to come the time through heat pipe 13 to disperse partly through the heat dissipation opening.
The utility model discloses a theory of operation and use flow: after the utility model is installed, firstly, the equipment is installed at the designated position, and the radiator is fixed on the equipment needing heat radiation through the bolt 4, when the radiator works, the heat radiation backboard 12 can conduct the heat transferred by the equipment to the fan blade 7, and the fan blade 7 can operate to discharge the conducted heat, and the fixed rod 9 arranged at the rear of the fan blade 7 is connected with the fan blade 7 and the fan frame 3, so as to ensure that the fan blade 7 can not be separated during the work, the stability of the radiator is maintained, the heat radiation backboard 12 is connected with the fan frame 3 through the connecting plate 2, so that air inlets are left at the left and the right sides of the radiator, when the radiator works, the filter cover 8 arranged at the air inlets at the two sides can intercept the dust sucked in the air, the air filter screen 14 in the filter cover 8 can intercept the dust for the second time, the air entering the radiator can not carry a large amount of dust, when the dust is piled up on the filter cover 8, the filter cover 8 can be taken down and cleaned by shifting the button buckle 11, the filter cover 8 is put back after cleaning, the filter screen base 15 arranged at the bottom of the air filter screen 14 is used for preventing the filter cover 8 and the air filter screen 14 from falling off and influencing the use of the radiator, when the radiator works, heat can be only transmitted to the fan blades 7 in front through the central position of the radiating back plate 12 and is discharged, the radiating at the edge position is slow, the heat conducting plate 1 is additionally arranged above the radiating back plate 12, the edge heat can be transmitted to the heat conducting plate 1 from the radiating back plate 12, the heat conducting plate 1 can transmit the transmitted heat to the heat conducting block 10 connected with the other end through the heat conducting pipe 13, in the process of heat transmission, the heat conducting pipe 13 and the heat conducting block 10 which are externally arranged outside the radiator already radiate a part of heat, and the opening in front of the heat conducting block 10 can also discharge a large amount of the transmitted heat, the surplus heat is dispersed and transferred to the heat sink 6 located inside the heat transfer ring 5 by the heat transfer ring 5, and is blown out together when being dissipated by the fan blades 7.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a high sealed vortex formula radiator, includes radiating backplate (12) and fan frame (3), its characterized in that: the place ahead of backplate (12) is provided with fan frame (3), and backplate (12) is connected through connecting plate (2) with fan frame (3), the inboard of fan frame (3) is provided with flabellum (7), and fan frame (3) are connected through dead lever (9) with flabellum (7), the place ahead of fan frame (3) is close to intermediate position and is provided with heat transfer ring (5), heat transfer ring (5) inboard is provided with fin (6), the top of heat transfer ring (5) is provided with heat conduction piece (10), the top of heat conduction piece (10) is provided with heat pipe (13), and heat pipe (1) is connected to the other end of heat pipe (13), the left side of heat conduction piece (10) is provided with bolt (4), the right side of connecting plate (2) is provided with filter bowl (8), the inboard of filter bowl (8) is provided with air filter screen (14), the top of air filter screen (14) is provided with buckle (11), and the other end is provided with filter screen base (15).
2. The high seal scroll heat sink of claim 1, wherein: the heat conductive pipes (13) are provided in total three, and each heat conductive pipe (13) is of a structure made of copper.
3. The high seal scroll heat sink of claim 1, wherein: the fan outer frame (3) is of a structure made of cast iron, and the fan outer frame (3) is connected with the heat transfer ring (5) through a buckle structure.
4. The high seal scroll heat sink of claim 1, wherein: the number of the bolts (4) is four, and each bolt (4) is of a structure made of cast iron.
5. The high seal scroll heat sink of claim 1, wherein: the connecting plate (2) is of a structure made of polyethylene plastics and is connected with the fan outer frame (3) and the heat dissipation back plate (12) through a clamping groove structure.
6. The high seal scroll heat sink of claim 1, wherein: the heat conduction block (10) is of a structure made of aluminum alloy, and a heat dissipation opening is formed in the front of the heat conduction block (10).
CN202221200947.3U 2022-05-19 2022-05-19 High-sealing vortex radiator Active CN217718576U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221200947.3U CN217718576U (en) 2022-05-19 2022-05-19 High-sealing vortex radiator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221200947.3U CN217718576U (en) 2022-05-19 2022-05-19 High-sealing vortex radiator

Publications (1)

Publication Number Publication Date
CN217718576U true CN217718576U (en) 2022-11-01

Family

ID=83794310

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221200947.3U Active CN217718576U (en) 2022-05-19 2022-05-19 High-sealing vortex radiator

Country Status (1)

Country Link
CN (1) CN217718576U (en)

Similar Documents

Publication Publication Date Title
CN217718576U (en) High-sealing vortex radiator
CN209820217U (en) Air-cooled self-suction type efficient heat exchanger
CN215187981U (en) Server active heat dissipation cabinet
CN213764547U (en) Heat abstractor for laser beam machining
CN212749507U (en) Projector
CN209821750U (en) Server with heat radiation structure
CN209375843U (en) A kind of high power router heat-dissipating casing
CN216980049U (en) Multifunctional LED digital screen convenient for heat dissipation
CN215453702U (en) Novel condensation heat dissipation device
CN218992033U (en) Fine stone pump hydraulic oil tank with good heat dissipation effect
CN215683023U (en) Novel communication equipment with good heat dissipation performance
CN217876557U (en) Side air conditioner condenser with high heat dissipation capacity
CN217685496U (en) Novel heat dissipation for warm idle call device that leads to
CN210109695U (en) Lid behind heat dissipation type computer
CN210625437U (en) High-efficiency radiator
CN209803675U (en) Big data server with good heat dissipation performance
CN209818124U (en) Hydrophobic recovery unit of immersion steam turbine
CN110439663B (en) Engine cooling system of double-engine snow-sweeping vehicle
CN210199679U (en) Water-cooling radiator with aRGB light efficiency
CN212539199U (en) Sensor capable of dissipating heat
CN218125282U (en) High-power plasma water-cooling integrated structure
CN211876845U (en) Dust removal radiator convenient to dismantle installation
CN215898336U (en) Heat dissipation noise reduction shielding cover
CN214173049U (en) Fin radiator with cooling fan
CN219268286U (en) UPS power supply cabinet

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant