Dust removal type electronic equipment radiator

By designing a filtering mechanism and cleaning mechanism in the radiator of electronic equipment, the problem of dust accumulation and cleaning is solved, and the efficient dust removal and self-cleaning function of the radiator is realized, extending the service life of the equipment.

CN120076265AInactive Publication Date: 2025-05-30宁波第二技师学院
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510239376.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing radiators are prone to accumulate dust during use, making it difficult to clean the fan and radiator fins, and the existing filtration and dust removal methods cannot effectively solve the problems of dust accumulation and cleaning.

Method used

A dust removal electronic equipment radiator is designed, adopting a filter mechanism and a cleaning mechanism. The filter mechanism includes a filter plate, a filter hole, a mounting plate and a mating plate. The cleaning mechanism includes a mounting roller, a synchronization belt, a mating roller and a cleaning roller. Through the combination and working together of these components, the filtering and self-cleaning of dust is achieved.

Benefits of technology

Effectively prevent dust from being accumulated on the fan and radiator side, ensure the normal operation of the radiator, realize centralized collection and convenient cleaning of dust, and extend the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120076265A_ABST
    Figure CN120076265A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of radiators, in particular to a dust removal type electronic equipment radiator which comprises a heat conducting plate, locking screws are symmetrically arranged on the side face of the heat conducting plate, cooling fins are fixedly installed on the side face of the heat conducting plate, fans are arranged on the two sides of the cooling fins, and a filtering mechanism is arranged on the side face of the fan in the air suction direction. A cleaning mechanism, cooling fins and a fan are arranged in the filtering mechanism, a mounting mechanism is arranged on the side face of the filtering mechanism, the filtering mechanism comprises a filtering plate, filtering holes are formed in the side face of the filtering plate, a mounting plate is arranged on the side face, away from the fan, of the filtering plate, and a matching plate is arranged on the side face, away from the fan, of the mounting plate. By arranging the filtering mechanism and the cleaning mechanism, airflow dust at the air suction position can be filtered during heat dissipation operation, it is guaranteed that dust cannot be accumulated on the side faces of the fan and the cooling fins, self-cleaning operation can be conducted when the airflow dust is filtered, the dust can be collected in a centralized mode, and follow-up cleaning treatment of the dust and other parts is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of radiators, and particularly to a dust-removing electronic device radiator. Background Art

[0002] With the development of technology, electronic devices, computers, etc. have become indispensable electronic devices in people's daily lives. When electronic devices are used for a long time, a large amount of heat will be generated, resulting in the lag of electronic devices.

[0003] As a radiator with better effect in electronic device radiators, a semiconductor radiator cools and dissipates heat from an electronic device by attaching a refrigerating heat sink to the back of the electronic device to ensure the stable control of the electronic device;

[0004] However, the existing radiators generally install a cooling fan on the side of the heat sink to perform centralized heat dissipation operation on the heat sink. However, such radiators still have the following problems when in use: 1. Heat dissipation by the fan will cause dust to accumulate on the side areas of the fan and the heat sink, making it difficult to clean these two components subsequently; 2. Currently, to avoid the influence of dust, a filter screen is generally provided at the housing for filtering, or the dust is removed by blowing the fan in the reverse direction, but such methods still cannot solve the problems of dust accumulation and difficult cleaning of dust later. Therefore, we propose a dust-removing electronic device radiator. Summary of the Invention

[0005] In order to overcome the technical problems existing in the above-mentioned prior art, the present invention provides a dust-removing electronic device radiator.

[0006] To solve the above technical problems, the present invention provides the following technical solutions: It includes a heat conducting plate, locking screws are symmetrically arranged on the side surface of the heat conducting plate, a heat sink is fixedly installed on the side surface of the heat conducting plate, cooling fans are arranged on both sides of the heat sink, a filtering mechanism is arranged on the side of the fan in the air suction direction, a cleaning mechanism is arranged inside the filtering mechanism, and a mounting mechanism is arranged on the side surfaces of the heat sink, the fan and the filtering mechanism;

[0007] The filtering mechanism includes a filter plate, filter holes are arranged on the side surface of the filter plate, a mounting plate is arranged on the side surface of the filter plate away from the fan, a matching plate is arranged on the side surface of the mounting plate away from the fan, a restraint block is fixedly installed inside the mounting plate, a first spring is fixedly connected between the restraint block and the side surface of the matching plate, a matching groove is opened on the side surface of the filter plate, and a matching block is arranged inside the matching groove;

[0008] The cleaning mechanism includes two groups of mounting rollers, two groups of synchronous belts are arranged on the side surfaces of the two groups of mounting rollers, a matching roller and a cleaning roller are arranged at equal intervals between the two groups of synchronous belts, and a collection box is arranged below the filter plate;

[0009] The installation mechanism includes a first installation groove, a second installation groove, and a third installation groove, with a plug block disposed inside, and elastic blocks provided on the side surface of the plug block.

[0010] Furthermore, the filter plate is arranged on the side of the fan away from the heat sink, and filter holes are equidistantly opened on the side of the filter plate close to the fan.

[0011] Furthermore, the mating block is movably installed inside the mating groove, a second spring is fixedly connected between the side surface of the mating block and the wall surface of the mating groove, and an electromagnetic group is arranged at the position of the mating groove corresponding to the mating block.

[0012] Furthermore, the mounting plate is fixed to the side position of the filter plate by screws, the mating plate is movably arranged inside the mounting plate, the constraint block extends through the mating plate, the first spring is movably sleeved on the side surface of the constraint block, the mating groove penetrates through the mounting plate to its inner position, the mating block is arranged between the mating plate and the mounting plate, the mating block is a trapezoidal block made of iron, and the electromagnetic group is fixedly arranged through the filter plate at its inner position.

[0013] Furthermore, the two mounting rollers are rotatably installed inside the filter plate, two synchronous belts are movably sleeved on the side surfaces of the two mounting rollers, a synchronous roller is meshed at the central position of the two synchronous belts, the mating roller is fixedly installed on the side surface close to the synchronous roller, and a connection groove is opened at the lower side of the filter plate corresponding to the position of the collection box.

[0014] Furthermore, the synchronous roller is rotatably installed inside the filter plate, the cleaning roller is rotatably installed on the side surface of the synchronous belt, the collection box is fixedly installed on the side surface of the filter plate by screws, and the collection box is a hollow rectangular box with holes equidistantly opened on its side surface.

[0015] Furthermore, the first installation groove is opened on the side surface of the heat sink, the second installation groove is opened on both sides of the fan, the third installation groove is opened on both sides of the filter plate, the plug block is movably clamped inside the first installation groove, the second installation groove, and the third installation groove, and the elastic blocks are fixedly installed on the side surface of the plug block at the corresponding positions between the first installation groove, the second installation groove, and the third installation groove.

[0016] Furthermore, a bracket is movably sleeved on the side of the fan close to the filter plate, a connection block is fixedly installed on the side surface of the bracket and the connection block fits on the side surface of the fan, and a slot is opened on the side surface of the connection block corresponding to the position of the second installation groove.

[0017] Compared with the prior art, the beneficial effects that the present invention can achieve are:

[0018] 1. By setting the filtering mechanism and the cleaning mechanism, the present invention can filter the airflow dust at the suction part during the heat dissipation operation, ensure that no dust accumulates on the sides of the fan and the heat sink, and during the filtering of the airflow dust, self-cleaning operation can be carried out, enabling the dust to be centrally collected, which is convenient for the subsequent cleaning of the dust and other components.

[0019] 2. By providing the mounting plate, the mating plate and their peripheral components, when the mounting plate and the mating plate are triggered to open, a grid-like shape can be formed, effectively isolating large particulate impurities from entering; and when the provided mounting plate and the mating plate are snap-connected, the inside of the filter plate will not have dusty airflow during non-heat dissipation operation, ensuring the cleanliness inside the filter plate; in addition, when the provided mating plate and the mounting plate are snap-connected, during self-cleaning by the cleaning mechanism, the cleaning operation can be received to ensure the effect of subsequent use.

[0020] 3. By providing the mating block and its peripheral components, when the electromagnetic group is not energized, the mating block can be inserted between the mounting plate and the mating plate to open them, and when the electromagnetic group is energized, it can attract the mating block to move, causing the mounting plate and the mating plate to be snap-connected together. In this way, the automatic operation of the mounting plate and the mating plate can be realized, which is convenient for use.

[0021] 4. By providing the collection box and its peripheral components, the collection box can generally collect dust, and there are holes on the side of the collection box. During heat dissipation and self-cleaning, part of the airflow can flow out from the holes on the side of the collection box, causing the airflow to guide the dust into the interior of the collection box; in addition, during non-heat dissipation and self-cleaning, the airflow can also flow out from the holes on the side of the collection box, causing the dust to flow into the interior of the collection box, and the airflow inside the filter plate can be ensured at this time.

[0022] 5. By providing the plug block and the elastic block and their peripheral components, by forming a "U"-shaped clamping block with the plug block and the elastic block, the fan, the filter plate, etc. can be clamped and fixedly installed, making the installation of components convenient and fast.

[0023] 6. By providing the bracket and the connecting block and their peripheral components, when the fan and the filter plate are assembled and installed, the bracket and the connecting block can play an auxiliary supporting role for the filter plate, and can also perform operations such as limiting the fan, ensuring the stability when the fan and the filter plate are assembled and installed.

[0024] 7. By snap-fitting or screwing and fixing the installation of each component of the present invention, the subsequent disassembly, cleaning and replacement of each component are facilitated. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is the overall structural schematic diagram of the present invention;

[0026] Figure 2 is the partial sectional structural schematic diagram of the filtering mechanism of the present invention;

[0027] Figure 3 is for the present invention Figure 2 the enlarged structural schematic diagram at A;

[0028] Figure 4 is the partial exploded structural schematic diagram of the filtering mechanism of the present invention;

[0029] Figure 5 Schematic diagram of the partial sectional structure of the cleaning mechanism of the present invention;

[0030] Figure 6 For the present invention Figure 5 Enlarged structure diagram at position B of the present invention;

[0031] Figure 7 Schematic diagram of the partial structure of the cleaning mechanism of the present invention;

[0032] Figure 8 Exploded schematic diagram of the partial peripheral structure of the heat sink of the present invention;

[0033] Figure 9 Exploded schematic diagram of the partial structure of the installation mechanism of the present invention;

[0034] Figure 10 Schematic diagram of another use state structure of the present invention.

[0035] Wherein: 1, heat conducting plate; 11, locking screw; 12, heat sink; 13, fan; 2, filtering mechanism; 21, filter plate; 22, filter hole; 23, mounting plate; 24, mating plate; 241, restraint block; 242, first spring; 25, mating groove; 251, mating block; 252, second spring; 253, electromagnetic group; 3, cleaning mechanism; 31, mounting roller; 32, synchronous belt; 33, synchronous roller; 34, mating roller; 35, cleaning roller; 36, collection box; 37, connecting groove; 4, installation mechanism; 41, first installation groove; 42, second installation groove; 43, plug block; 44, elastic block; 45, third installation groove; 46, bracket; 47, connecting block; 48, slotted opening. Detailed implementation manners

[0036] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments. However, the following embodiments are only the preferred embodiments of the present invention, not all of them. Based on the embodiments in the implementation manners, other embodiments obtained by those skilled in the art without creative efforts all fall within the protection scope of the present invention. The experimental methods in the following embodiments are all conventional methods unless otherwise specified, and the materials, reagents, etc. used in the following embodiments can all be obtained from commercial channels unless otherwise specified.

[0037] Embodiment: As Figure 1As shown in the figure, a dust-removing electronic device radiator includes a heat conduction plate 1. The heat conduction plate 1 is a rectangular plate. Locking screws 11 are symmetrically arranged on the side surface of the heat conduction plate 1. The locking screws 11 can install the heat conduction plate 1 on the side surface of the corresponding electronic device that needs to be cooled. Heat sinks 12 are fixedly installed at equal intervals on the side surface of the heat conduction plate 1. The heat sinks 12 are rectangular plates. Fans 13 are arranged on both sides of the heat sinks 12. The fans 13 are motor fan groups that can be driven to rotate forward and backward. The fans 13 perform efficient heat dissipation operations on the heat sinks 12. A filtering mechanism 2 that can filter dust is arranged on the side surface of the fans 13 in the air intake direction. A cleaning mechanism 3 that can self-clean and collect dust is arranged inside the filtering mechanism 2. An installation mechanism 4 that can fix the heat sinks 12, the fans 13 and the filtering mechanism 2 is arranged on their side surfaces;

[0038] The filtering mechanism 2 provided can perform the operation of sucking and filtering dust on the side surface of the fans 13, and the air intake connection and closing can be controlled;

[0039] Such as Figures 2 to 5As shown in the figure, the filtering mechanism 2 includes a filter plate 21 arranged on the side of the fan 13 away from the heat sink 12. The side of the filter plate 21 is a rectangular plate with a hollowed-out shape. Filter holes 22 penetrating through it are equidistantly arranged on the side of the filter plate 21 close to the fan 13. The filter holes 22 are round holes. An installation plate 23 is arranged on the side of the filter plate 21 away from the fan 13, and the installation plate 23 is fixed to the side position of the filter plate 21 by screws. The installation plate 23 is a grid plate in a convex shape. A matching plate 24 is arranged on the side of the installation plate 23 away from the fan 13, and the matching plate 24 is movably arranged inside the installation plate 23. The matching plate 24 is a grid plate with protrusions on the side. Constraint blocks 241 are fixedly installed equidistantly inside the installation plate 23, and the constraint blocks 241 penetrate through the matching plate 24 and extend out. The constraint blocks 241 are "T"-shaped rods. A first spring 242 is fixedly connected between the side of the constraint block 241 and the side of the matching plate 24, and the first spring 242 is movably sleeved on the side of the constraint block 241. A matching groove 25 is formed on the side of the filter plate 21, and the matching groove 25 penetrates through the installation plate 23 to its inner position. The matching groove 25 is a rectangular groove. A matching block 251 is movably installed inside the matching groove 25, and the matching block 251 is arranged between the matching plate 24 and the installation plate 23. The matching block 251 is a trapezoidal block made of iron. A second spring 252 is fixedly connected between the side of the matching block 251 and the wall surface of the matching groove 25. An electromagnetic group 253 is arranged at the position corresponding to the matching block 251 on the wall surface of the matching groove 25, and the electromagnetic group 253 is fixedly arranged through the filter plate 21. The electromagnetic group 253 is a combination of electromagnetic coils that can be magnetized when energized; specifically, by default, when the radiator is working, the electromagnetic group 253 is not energized, and the matching block 251 is pressed between the installation plate 23 and the matching plate 24 under the elastic support of the second spring 252, so that the installation plate 23 and the matching plate 24 are separated from each other. At this time, the air flow can enter the inside of the filter plate 21 through the space between the installation plate 23 and the matching plate 24, and then be filtered by the filter holes 22 to remove dust; when the radiator is not working, the electromagnetic group 253 can be energized to be magnetized to attract the matching block 251 to approach it. At this time, the matching block 251 slides into the inside of the matching groove 25, and the matching plate 24 is elastically supported by the first spring 242 to be clamped and closed with the installation plate 23, avoiding dust from entering the inside of the filter plate 21, and can cooperate with subsequent components to clean the inside of the installation plate 23 and the matching plate 24;

[0040] Through the set cleaning mechanism 3, self-cleaning operations can be carried out during heat dissipation, and during non-heat dissipation, it can cooperate with other components to continue the cleaning operation;

[0041] As Figures 5 to 7As shown in the figure, the cleaning mechanism 3 includes two sets of mounting rollers 31 symmetrically and rotatably mounted inside the filter plate 21. The mounting rollers 31 are cylindrical rollers with splines on the side. Two sets of synchronous belts 32 are symmetrically and movably sleeved on the sides of the two sets of mounting rollers 31. The synchronous belts 32 are rubber "O" - shaped belts with splines on the inside. A synchronous roller 33 is meshed and arranged at the central position of the two sets of synchronous belts 32, and the synchronous roller 33 is rotatably mounted inside the filter plate 21. The synchronous roller 33 is a convex - shaped round roller with splines on the side. A matching roller 34 is fixedly mounted on the side of the synchronous roller 33 close to each other. The matching roller 34 is a cylindrical roller with arc - shaped blocks fixedly mounted at equal intervals on the side, and its overall shape is like a fan blade. Cleaning rollers 35 are arranged at equal intervals between the two sets of synchronous belts 32, and the cleaning rollers 35 are rotatably mounted on the side of the synchronous belts 32. The cleaning rollers 35 are cylindrical rollers with brush bristles on the side. A collection box 36 is arranged below the filter plate 21, and the collection box 36 is fixedly mounted on the side of the filter plate 21 by screws. The collection box 36 is a hollow rectangular box with holes arranged at equal intervals on the side. A connection groove 37 penetrating the filter plate 21 to the inside is opened at the position corresponding to the collection box 36 below the filter plate 21. The connection groove 37 is a trapezoidal groove; specifically, when the fan 13 is working normally to dissipate heat from the heat sink 12, the above - mentioned mounting plate 23 and the matching plate 24 are in an open state, and the air flow will drive the matching roller 34 to rotate, so that it drives the synchronous roller 33 to mesh with the synchronous belt 32. Through the support of the mounting roller 31 for the synchronous belt 32, the synchronous belt 32 performs a rotational motion. When the synchronous belt 32 rotates, it can drive the cleaning roller 35 to roll and clean inside the filter plate 21. The scraped - off dust falls from the connection groove 37 into the collection box 36 for collection; when the fan 13 rotates in the reverse direction and does not dissipate heat from the heat sink 12, the above - mentioned mounting plate 23 and the matching plate 24 are in a closed state, and the fan 13 blows air into the filter plate 21 to blow off the dust at the filter holes 22. The synchronous matching roller 34 can still drive the cleaning roller 35 to perform a cyclic cleaning motion. At the same time, the cleaning roller 35 can also clean the sides of the matching plate 24 and the mounting plate 23. The fallen dust is collected by the collection box 36; among them, when the fan 13 is dissipating heat normally, the air flow can be slightly discharged through the holes on the side of the collection box 36, so that the dust can enter the collection box 36 better for collection. In addition, when the fan 13 is driven in the reverse direction, the air flow can also be discharged from the holes on the side of the collection box 36, so that the air flow can circulate normally to collect the dust;

[0042] The installation mechanism 4 provided can perform installation and composition operations on each component, and can improve the stability of the installation and composition of each component;

[0043] Such as Figure 8 and Figure 9As shown in the figure, the installation mechanism 4 includes first installation grooves 41 that are equidistantly and penetratingly formed on the side surface of the heat sink 12. Second installation grooves 42 are symmetrically and equidistantly formed on both sides of the fan 13. Third installation grooves 45 are symmetrically formed on both sides of the filter plate 21. The first installation grooves 41, the second installation grooves 42, and the third installation grooves 45 are circular grooves. Plug blocks 43 are movably clamped inside the first installation grooves 41, the second installation grooves 42, and the third installation grooves 45. The plug blocks 43 are cylindrical blocks made of elastic rubber. Elastic blocks 44 are fixedly installed on the side surfaces of the plug blocks 43 at corresponding positions among the first installation grooves 41, the second installation grooves 42, and the third installation grooves 45. The elastic blocks 44 are "C"-shaped blocks made of elastic materials. The plug blocks 43 and the elastic blocks 44 are combined into a group of "U"-shaped clamping blocks. A bracket 46 is movably sleeved on the side surface of the fan 13 close to the filter plate 21. Connecting blocks 47 are symmetrically and fixedly installed on the side surface of the bracket 46 and the connecting blocks 47 are attached to the side surface position of the fan 13. The connecting blocks 47 are rectangular blocks. A through groove 48 is formed in the connecting blocks 47 at positions corresponding to the second installation grooves 42. The through groove 48 is a circular groove; specifically, by clamping the plug blocks 43 inside the first installation grooves 41, the second installation grooves 42, and the third installation grooves 45, the fan 13 can be fixed on the side surface of the heat sink 12, and the filter plate 21 can be fixed at the side surface position of the fan 13, completing the quick installation, disassembly, and position replacement of the fan 13 and the filter plate 21. In addition, the provided bracket 46 and connecting blocks 47 are restricted by the insertion of the plug blocks 43, which plays an auxiliary supporting role for the filter plate 21, ensuring the stability when the fan 13 and the filter plate 21 are installed and preventing the fan 13 and the filter plate 21 from falling off due to excessive weight when combined.

[0044] Working principle:

[0045] Before heat dissipation is used: First step, according to the required heat dissipation method, the heat sink 12 is dissipated by using the double-group and single-group fans 13, and the corresponding filtering mechanism 2 is installed according to different heat dissipation methods;

[0046] Second step, when the double-group fans 13 dissipate heat, as Figure 1 shown in the figure, two groups of fans 13 are arranged on the side surface of the heat sink 12 with a unified air outlet. First, the fan 13 with the air inlet attached to the side surface of the heat sink 12 is fixed on the side surface of the heat sink 12 through the plug blocks 43 and the elastic blocks 44. Then, the bracket 46 and the connecting blocks 47 are sleeved on the side surface of the other group of fans 13. Subsequently, the filter plate 21 is attached to the side surface of this group of fans 13, and the fan 13 and the filter plate 21 are fixed through the plug blocks 43 and the elastic blocks 44, so that they are combined and supported and installed on the side surface of the heat sink 12;

[0047] When the single-group fan 13 dissipates heat, as Figure 10As shown in the figure, the single set of fans 13 is arranged on the side of the heat sink 12 far from the heat conduction plate 1. At this time, the air inlets of the fans 13 are attached to the heat sink 12 and fixed by the plug blocks 43 and the elastic blocks 44. Subsequently, the sides of the filter holes 22 of the two sets of filter plates 21 are attached to the side of the heat sink 12 and fixed by the plug blocks 43 and the elastic blocks 44. Different from this, at this time, the fans 13 only need to be fixed by diagonal installation of two sets of "U"-shaped clamping blocks, which is convenient for the subsequent installation of the plug blocks 43 in the first installation groove 41 corresponding to the third installation groove 45 to fix the filtering mechanism 2;

[0048] In the third step, attach the heat sink 12 to the side of the corresponding electronic device. After fixing the heat conduction plate 1 with the locking screws 11, the subsequent heat dissipation operation can be carried out

[0049] When in use for heat dissipation: In the first step, after installing all components according to the above, the corresponding work can be carried out to perform the heat dissipation operation on the heat sink 12;

[0050] In the second step, when dissipating heat, the fans 13 work to suck air. The inhaled air passes through the filtering mechanism 2 for filtering and dust removal. At this time, the electromagnetic group 253 is not powered on, and the mating block 251 is supported by the second spring 252 and inserted between the mounting plate 23 and the mating plate 24 to keep a distance. The air flow enters the interior of the filter plate 21 from its side, and then passes through the filter holes 22 and flows through the side of the heat sink 12 from the air outlets of the fans 13 for heat dissipation;

[0051] In the third step, when the air flow passes through the interior of the filter plate 21, the mating roller 34 is driven to rotate by the air, so that the synchronous roller 33 rotates synchronously to drive the synchronous belt 32 to rotate in a cycle, and the cleaning roller 35 circulates on its side accordingly. The cleaning roller 35 is attached to the inner side of the filter plate 21 and the side of the mating plate 24, and rotates by itself for cleaning operation. The fallen dust drops into the interior of the collection box 36 for collection;

[0052] After use for heat dissipation: In the first step, the fans 13 stop working first, and the electromagnetic group 253 is powered on to attract the mating block 251 to slide completely into the mating groove 25. At this time, under the elastic force of the first spring 242, the mating plate 24 is pushed by the restraint block 241 and is limited to be clamped and closed with the mounting plate 23, so as to prevent external dusty air from entering the interior of the filter plate 21 and ensure that dust will not enter when not dissipating heat;

[0053] In the second step, when there is a lot of dust inside the filter plate 21, at this time, the fans 13 are driven to rotate in the reverse direction to blow the air flow in the reverse direction to remove dust from the filter holes 22. The mating roller 34 is also blown by the air flow synchronously, so that the cleaning roller 35 can clean the inner sides of the filter plate 21, the mounting plate 23 and the mating plate 24. The removed dust drops into the interior of the collection box 36 for collection. After a certain period of time, the collection box 36 can be disassembled to pour the dust into the garbage collection place.

[0054] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto, and various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those skilled in the art to which the present invention pertains.

Claims

1. A dust removal type electronic equipment radiator, comprising a heat conducting plate (1), locking screws (11) are symmetrically arranged on the side of the heat conducting plate (1), a heat sink (12) is fixedly mounted on the side of the heat conducting plate (1), fans (13) are arranged on both sides of the heat sink (12), a filter mechanism (2) is arranged on the side of the fan (13) in the air suction direction, a cleaning mechanism (3) is arranged inside the filter mechanism (2), and a mounting mechanism (4) is arranged on the side of the heat sink (12), the fan (13) and the filter mechanism (2); Features: The filtering mechanism (2) comprises a filter plate (21), a filter hole (22) is arranged on a side of the filter plate (21), a mounting plate (23) is arranged on a side of the filter plate (21) away from the fan (13), a matching plate (24) is arranged on a side of the mounting plate (23) away from the fan (13), a restraining block (241) is fixedly mounted on the inner side of the mounting plate (23), a first spring (242) is fixedly connected between the restraining block (241) and the side of the matching plate (24), a matching groove (25) is opened on the side of the filter plate (21), and a matching block (251) is arranged inside the matching groove (25); The cleaning mechanism (3) comprises two groups of mounting rollers (31), two groups of synchronous belts (32) are arranged on the sides of the two groups of mounting rollers (31), matching rollers (34) and cleaning rollers (35) are arranged equidistantly between the two groups of synchronous belts (32), and a collecting box (36) is arranged on the lower side of the filter plate (21); The mounting mechanism (4) comprises a first mounting groove (41), a second mounting groove (42) and a third mounting groove (45), wherein a plug block (43) is arranged inside the first mounting groove, and an elastic block (44) is arranged on the side of the plug block (43).

2. The dust-removing electronic equipment radiator according to claim 1, characterized in that: The filter plate (21) is arranged on the side of the fan (13) away from the heat sink (12), and the filter holes (22) are arranged at equal intervals on the side of the filter plate (21) close to the fan (13).

3. The dust-removing electronic equipment radiator according to claim 2, characterized in that: The matching block (251) is movably installed inside the matching groove (25); a second spring (252) is fixedly connected between the side surface of the matching block (251) and the wall surface of the matching groove (25); and an electromagnetic group (253) is arranged on the wall surface of the matching groove (25) at a position corresponding to the matching block (251).

4. The dust removal type electronic equipment radiator according to claim 3, characterized in that: The mounting plate (23) is fixed to the side position of the filter plate (21) by screws, the matching plate (24) is movably arranged at the inner side position of the mounting plate (23), the restraining block (241) penetrates the matching plate (24) and extends out, the first spring (242) is movably sleeved at the side position of the restraining block (241), the matching groove (25) penetrates the mounting plate (23) and is arranged at the inner side position thereof, the matching block (251) is arranged between the matching plate (24) and the mounting plate (23), the matching block (251) is a trapezoidal block made of iron, and the electromagnetic group (253) penetrates and is fixedly arranged at the inner position of the filter plate (21).

5. The dust-removing electronic equipment radiator according to claim 4, characterized in that: The two groups of mounting rollers (31) are rotatably mounted on the inner side of the filter plate (21); the two groups of synchronous belts (32) are movably sleeved on the sides of the two groups of mounting rollers (31); a synchronous roller (33) is meshedly arranged at the center of the two groups of synchronous belts (32); a matching roller (34) is fixedly mounted on the side close to the synchronous roller (33); and a connecting groove (37) is provided on the lower side of the filter plate (21) corresponding to the position of the collecting box (36).

6. The dust-removing electronic equipment radiator according to claim 5, characterized in that: The synchronous roller (33) is rotatably mounted on the inner side of the filter plate (21), the cleaning roller (35) is rotatably mounted on the side of the synchronous belt (32), and the collecting box (36) is fixedly mounted on the side of the filter plate (21) by screws. The collecting box (36) is a hollow rectangular box with holes equidistantly opened on the side.

7. The dust-removing electronic equipment radiator according to claim 6, characterized in that: The first mounting groove (41) is provided on the side of the heat sink (12), the second mounting groove (42) is provided on both sides of the fan (13), and the third mounting groove (45) is provided on both sides of the filter plate (21). The plug (43) is movably connected to the inside of the first mounting groove (41), the second mounting groove (42) and the third mounting groove (45), and the elastic block (44) is fixedly installed on the side of the plug (43) at a corresponding position between the first mounting groove (41), the second mounting groove (42) and the third mounting groove (45).

8. The dust-removing electronic equipment radiator according to claim 7, characterized in that: The side of the fan (13) close to the filter plate (21) is movably sleeved with a bracket (46), the side of the bracket (46) is fixedly mounted with a connecting block (47) and the connecting block (47) is fitted to the side of the fan (13), and the side of the connecting block (47) is provided with a slot (48) corresponding to the position of the second mounting slot (42).