Computer radiator capable of preventing computer from deviating

By designing anti-offset devices and cleaning mechanisms in the computer radiator, the problems of offset and dust accumulation on the computer radiator are solved, and the stability and cleaning are improved.

CN120368167AInactive Publication Date: 2025-07-25SHENZHEN BAODIKAI TECH CO LTD
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Patent Information

Application Number
CN202510467337.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When using existing computer radiators, the computer is easily deviated by external forces, which lacks stability and affects its use.

Method used

An anti-offset device is designed, including an elliptical frame plate and a driving mechanism. It is fixed by pressing anti-offset correction, combined with adjustment and cleaning mechanism to ensure the stability of the computer, and prevent offsets through multiple stops and baffles, and a cleaning mechanism is set to prevent dust from affecting use.

Benefits of technology

Effectively prevent the computer from shifting on the radiator, maintaining stability, cleaning mechanism prevents dust from affecting use, and improving the heat dissipation and fixing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of computer radiators, and particularly discloses a computer radiator capable of preventing a computer from shifting. Comprising an elliptical frame plate, and an adjusting mechanism is arranged on one side of the elliptical frame plate; and one side of the oval frame plate is fixedly connected with one side of the adjusting mechanism, one side of the oval frame plate is fixedly connected with a cleaning mechanism, and the side, close to the cleaning mechanism, of the oval frame plate is fixedly connected with a side check block. The two oval frame plates are driven by the driving mechanism to move towards the inner side to conduct push-press type anti-deviation correction and fixation on the two sides of a computer, and the situation that when the computer radiator is used, due to the fact that the computer lacks stability, the computer placed on the computer radiator is easily influenced by external force and deviates, and use is affected is prevented. The plurality of circular stop blocks are arranged on the inner side of the elliptical frame plate to assist in pushing, pressing and fixing the two sides of the computer, so that the problem that the elliptical frame plate is difficult to correct and fix when moving towards the inner side due to the fact that the thickness of a part of types of computers is relatively thin is prevented.
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Description

Technical Field

[0001] The present invention relates to the technical field of computer radiators, and particularly to a computer radiator for preventing a computer from shifting. Background Art

[0002] With the increasing development of technology, computers have changed from huge in size to the size of a television, and later laptops came out, becoming a milestone in the development of the electronics industry. Laptops have the advantages of being easy to carry and having complete functions. However, the only drawback is that due to their strong functionality and small size, laptops are prone to generate very high temperatures, which can cause significant damage to various computer hardware. Thus, laptop radiators came into being. When a computer is running, core hardware such as the CPU and GPU generates a large amount of heat. The radiator conducts and dissipates this heat quickly to keep the hardware within an appropriate temperature range, avoiding performance degradation or damage caused by high temperatures to extend the service life of the hardware; Existing computer radiators are usually of the bracket plate type to place the computer on it for heat dissipation from the bottom of the computer. However, when the computer radiator is in use, the computer lacks stability, resulting in the computer placed on the computer radiator being easily affected by external forces and shifting easily, which affects the use. Therefore, we propose a computer radiator for preventing a computer from shifting. Summary of the Invention

[0003] To solve the above technical problems, the present invention provides a computer radiator for preventing a computer from shifting, including: A heat dissipation frame, on the outer surface of which heat dissipation holes are provided; A cross fixing frame, inside which an electric fan is provided; An anti-shift device, which is used to perform a push-type anti-shift correction on both sides of the computer on the heat dissipation frame; A plurality of the heat dissipation holes are provided, and the plurality of heat dissipation holes are distributed on the heat dissipation frame. One side of the heat dissipation frame is fixedly connected to one side of the cross fixing frame. The inside of the cross fixing frame and one side of the electric fan are rotationally connected through a rotating bolt. One side of the heat dissipation frame far from the cross fixing frame is fixedly connected to one side of the anti-shift device; Wherein, the anti-shift device includes: An elliptical frame plate, which is driven by a driving mechanism to move two elliptical frame plates inward to perform a push-type anti-shift correction and fixation on both sides of the computer, preventing the computer from lacking stability when the computer radiator is in use, resulting in the computer placed on the computer radiator being easily affected by external forces and shifting easily, which affects the use. One side of the elliptical frame plate is provided with an adjusting mechanism; One side of the elliptical frame plate is fixedly connected to one side of the adjusting mechanism; One side of the adjusting mechanism is fixedly connected to one side of the heat dissipation frame; One side of the heat dissipation rack is rotatably connected to the inner side of the concave-shaped rotating rod through a rotating bolt. One side of the heat dissipation rack is rotatably connected to one side of the side connection support plate through a rotating bolt. A concave-shaped card slot is formed at the top of the side connection support plate; A cleaning mechanism is fixedly connected to one side of the elliptical frame plate. A side stop block is fixedly connected to the side of the elliptical frame plate close to the cleaning mechanism. By setting the side stop block at a position on one side of the elliptical frame plate away from the cleaning mechanism, the computer is protected by resistance to prevent the computer from easily falling off the heat dissipation rack to the outside when the heat dissipation rack is lifted with a certain inclination angle. Square sliding holes are formed on both sides of the elliptical frame plate. The inner wall of the square sliding hole is slidably connected with an internal slider. Through the sliding cooperation of the square sliding hole and the internal slider, the circular stop block can be adjusted arbitrarily inside the elliptical frame plate to prevent the circular stop block from blocking the wiring holes on both sides of different types of computers and affecting the normal use of the computer. A circular stop block is fixedly connected to one side of the internal slider. By arranging a plurality of circular stop blocks inside the elliptical frame plate, the two sides of the computer are assisted to be pushed and fixed to prevent the elliptical frame plate from passing through the elliptical frame plate and being difficult to be corrected and fixed when the thickness of some types of computers is relatively thin and the elliptical frame plate moves inward; A plurality of the side stop blocks are provided, and the plurality of side stop blocks are distributed at a position on one side of the elliptical frame plate away from the cleaning mechanism. A plurality of the circular stop blocks are provided, and the plurality of circular stop blocks are distributed inside the elliptical frame plate.

[0004] Furthermore, the adjusting mechanism includes a square support plate. A square long hole is formed at the top of the square support plate. When a small amount of dust attached to the surface of the threaded long rod is blown up, it will pass through the square long hole and be discharged outward, preventing most areas around the threaded long rod from being surrounded and covered by the folded baffle, which may cause the blown dust to be difficult to effectively discharge outward. At both sides near the top of the square support plate, first fixing blocks are fixedly connected. One side of the first fixing block penetrates and is connected to a threaded long rod through a rotating bolt. A second fixing block is sleeved and threadedly connected to the outer side of the threaded long rod. A first retaining strip is fixedly connected to the side of the second fixing block away from the first fixing block. One side of the second fixing block penetrates and is slidably connected to a folded baffle. By arranging the folded baffle between the two first fixing blocks to penetrate the second fixing block and perform sliding limit on it, it is prevented that the second fixing block is prone to shaking during sliding in threaded cooperation with the threaded long rod, which may affect the fixing effect on the computer. By arranging the folded baffle on one side of the heat dissipation rack to cover and dust-proof the threaded long rod, it is prevented that dust particles and impurities scraped off during the movement of the cleaning mechanism fall and accumulate on the thread surface of the threaded long rod, affecting the threaded cooperation with the second fixing block. A second retaining strip is fixedly connected to the top of the folded baffle. By arranging the second retaining strip near the middle of the top of the folded baffle to support the bottom of the computer, it is prevented that the computer inclines and slides when contacting the folded baffle with an inclined surface, affecting the correction and fixing effect. One side of the square support plate is fixedly connected to one side of the heat dissipation rack. The top of the second fixing block is fixedly connected to the outer side of the elliptical frame plate. There are two second fixing blocks, and the two second fixing blocks are distributed on the threaded long rod. One side of the folded baffle is fixedly connected to one side of the second retaining strip.

[0005] Furthermore, the cleaning mechanism includes a square connecting rod, one side of the square connecting rod is fixedly connected to an arc-shaped brush, and when the square connecting rod moves, the arc-shaped brush rubs and cleans the positions on the surface of the heat sink and the folding baffle that the trapezoidal scraper cannot clean, so as to prevent excessive dust from accumulating on the surface of the heat sink and the folding baffle that the special-shaped scraper cannot clean, and one end of the square connecting rod is fixedly connected to a trapezoidal scraper, and when the trapezoidal scraper moves, it scrapes and cleans the dust on the surface of the heat sink, so as to prevent the dust gradually accumulated on the surface of the heat sink from being affected by the electric fan and adhering to the bottom of the computer or even entering the inside of the computer and affecting its use, and one side of the trapezoidal scraper is fixedly connected to an elliptical anti-skid pad, and the bottom of the computer can be supported by arranging the elliptical anti-skid pad on the trapezoidal scraper The support prevents the computer placed on the heat sink from being easily affected by external forces and causing a large deviation when it is not completely corrected and fixed. Pre-adjustment is performed many times. By arranging a trapezoidal scraper and an elliptical anti-skid pad on one side of the heat sink, the bottom of the computer is separated from the heat sink by one end to facilitate gas flow, and prevent the heat dissipation holes from being covered and blocked when the computer is directly placed on the heat sink, which makes it difficult for the gas to fully contact with all parts of the bottom of the computer and affect the heat dissipation effect. The end of the square connecting rod away from the trapezoidal scraper is fixedly connected to one side of the elliptical frame plate, and one side of the trapezoidal scraper is slidably connected to one side of the heat sink. A plurality of square connecting rods are provided, and the plurality of square connecting rods are respectively distributed on both sides of the trapezoidal scraper. A plurality of arc-shaped brushes are provided, and the plurality of arc-shaped brushes are distributed on one side of the square connecting rod.

[0006] The present invention provides a computer radiator for preventing computer deviation, which has the following beneficial effects: 1. The computer radiator for preventing computer deviation drives two elliptical frame plates to move inwards through a driving mechanism to perform push-type anti-deviation correction and fixation on both sides of the computer, thereby preventing the computer from losing stability when the computer radiator is in use, causing the computer placed on the computer radiator to be easily affected by external forces and easily deviate and affect use. A folding baffle is provided between the two first fixing blocks to penetrate the second fixing block and limit the sliding of the second fixing block, thereby preventing the second fixing block from losing the limit when sliding in cooperation with the thread of the threaded long rod and easily shaking and affecting the fixing effect of the computer. When the trapezoidal scraper moves, it scrapes and cleans the dust on the surface of the heat sink, thereby preventing the dust gradually accumulated on the surface of the heat sink from being affected by the electric fan and adhering to the bottom of the computer or even entering the inside of the computer and affecting use.

[0007] 2. The computer radiator for preventing computer offset is provided with an anti-offset device. The driving mechanism drives two elliptical frame plates to move inward to perform push-type anti-offset correction and fixation on both sides of the computer, preventing the computer radiator from lacking stability during use, which may cause the computer placed on the computer radiator to be easily affected by external forces and easily offset, affecting the use. By arranging a plurality of circular stoppers inside the elliptical frame plates to assist in pushing and fixing both sides of the computer, it is prevented that for some types of computers with a relatively thin thickness, when the elliptical frame plates move inward, they will pass through the elliptical frame plates and are difficult to be corrected and fixed. Through the sliding cooperation between the square sliding holes and the built-in sliders, the circular stoppers can be adjusted freely inside the elliptical frame plates, preventing the circular stoppers from blocking the wiring holes on both sides of different types of computers and affecting the normal use of the computer. By arranging side stoppers at a position on one side of the elliptical frame plate away from the cleaning mechanism to provide a blocking protection for the computer, it is prevented that when the heat dissipation rack has a certain inclination angle and the heat dissipation rack is lifted, the computer is easily separated from the heat dissipation rack and drops to the outside.

[0008] 3. The computer radiator for preventing computer offset is provided with an adjustment mechanism. By arranging a folded baffle between two first fixing blocks to penetrate through the second fixing block and perform sliding limit on it, it is prevented that the second fixing block lacks limit and is prone to shaking during sliding in threaded cooperation with the threaded long rod, affecting the fixing effect on the computer. By arranging a folded baffle on one side of the heat dissipation rack to provide a covering dust protection for the threaded long rod, it is prevented that the dust particles and impurities scraped off when the cleaning mechanism moves drop and accumulate on the thread surface of the threaded long rod, affecting the threaded cooperation with the second fixing block. By arranging a second retaining strip at a position near the middle of the top of the folded baffle to provide a bottom support for the computer, it is prevented that when the bottom of the computer contacts the folded baffle with a sloping surface, it will tilt and slide, affecting the correction and fixation effect. When a small amount of dust attached to the surface of the threaded long rod is blown up, it will pass through the square long holes and be discharged outward, preventing most of the area around the threaded long rod from being surrounded and covered by the folded baffle, making it difficult for the blown dust to be effectively discharged outward.

[0009] 4. The computer radiator for preventing computer offset is provided with a cleaning mechanism. When the trapezoidal scraper moves, it scrapes and cleans the dust on the surface of the heat dissipation rack, preventing the dust gradually accumulating on the surface of the heat dissipation rack from being affected by the electric fan and adhering to the bottom of the computer or even entering the computer interior, which may affect the use. When the arc-shaped brush moves along with the square connecting rod, it frictionally sweeps the positions on the surface of the heat dissipation rack and the surface of the folded baffle that the trapezoidal scraper fails to clean, preventing excessive dust from accumulating in the positions that the special-shaped scraper on the surface of the heat dissipation rack and the folded baffle fails to clean and is difficult to handle. An oval anti-slip pad is set on the trapezoidal scraper to support the bottom of the computer, preventing the computer placed on the heat dissipation rack from being easily affected by external forces and undergoing large offsets many times when it is not completely corrected and fixed. By setting a trapezoidal scraper and an oval anti-slip pad on one side of the heat dissipation rack, a distance is separated between the bottom of the computer and the heat dissipation rack to facilitate gas flow, preventing the heat dissipation holes from being covered and blocked when the computer is directly placed on the heat dissipation rack, which may cause the gas to be difficult to fully contact with all parts of the computer bottom and affect the heat dissipation effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 Schematic diagram of the structure of the computer radiator of the present invention; Figure 2 Schematic diagram of the bottom structure of the computer radiator of the present invention; Figure 3 Schematic diagram of the structure of the anti-offset device of the present invention; Figure 4 Schematic diagram of the partial structure of the anti-offset device of the present invention; Figure 5 Schematic diagram of the structure of the adjustment mechanism of the present invention; Figure 6 Schematic diagram of the side structure of the adjustment mechanism of the present invention; Figure 7 Schematic diagram of the structure of the cleaning mechanism I of the present invention; Figure 8 Schematic diagram of the structure of the cleaning mechanism II of the present invention.

[0011] In the figure: 1, heat dissipation rack; 2, heat dissipation holes; 3, cross fixing frame; 4, electric fan; 5, anti-offset device; 6, concave rotating rod; 7, side connection support plate; 8, concave card slot; 501, oval frame plate; 502, adjustment mechanism; 503, cleaning mechanism; 504, side stop block; 505, square sliding hole; 506, built-in slider; 507, circular stop block; 5021, square support plate; 5022, square long hole; 5023, first fixing block; 5024, threaded long rod; 5025, second fixing block; 5026, first stop bar; 5027, folded baffle; 5028, second stop bar; 5031, square connecting rod; 5032, arc-shaped brush; 5033, trapezoidal scraper; 5034, oval anti-slip pad. DETAILED DESCRIPTION OF THE INVENTION

[0012] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0013] Please refer to Figures 1 - 4 , the present invention provides a computer radiator for preventing computer deviation, including: A heat dissipation frame 1, and heat dissipation holes 2 are arranged on the outer surface of the heat dissipation frame 1; A cross-shaped fixing frame 3, and an electric fan 4 is arranged inside the cross-shaped fixing frame 3; An anti-deviation device 5, which is used for pushing and pressing anti-deviation correction on both sides of the computer on the heat dissipation frame 1; There are multiple heat dissipation holes 2, and the multiple heat dissipation holes 2 are distributed on the heat dissipation frame 1. One side of the heat dissipation frame 1 is fixedly connected to one side of the cross-shaped fixing frame 3. The inner side of the cross-shaped fixing frame 3 and one side of the electric fan 4 are rotationally connected through a rotating bolt. One side of the heat dissipation frame 1 far from the cross-shaped fixing frame 3 is fixedly connected to one side of the anti-deviation device 5; Among them, the anti-deviation device 5 includes: An elliptical frame plate 501, and an adjusting mechanism 502 is arranged on one side of the elliptical frame plate 501; One side of the elliptical frame plate 501 is fixedly connected to one side of the adjusting mechanism 502; One side of the adjusting mechanism 502 is fixedly connected to one side of the heat dissipation frame 1; One side of the heat dissipation frame 1 is rotationally connected to the inner side of a concave-shaped rotating rod 6 through a rotating bolt. One side of the heat dissipation frame 1 is rotationally connected to one side of a side connection support plate 7 through a rotating bolt. A concave-shaped card slot 8 is opened at the top of the side connection support plate 7; One side of the elliptical frame plate 501 is fixedly connected to a cleaning mechanism 503. One side of the elliptical frame plate 501 close to the cleaning mechanism 503 is fixedly connected to a side stop block 504. Square sliding holes 505 are opened on both sides of the elliptical frame plate 501. An internal sliding block 506 is slidably connected to the inner wall of the square sliding hole 505. One side of the internal sliding block 506 is fixedly connected to a circular stop block 507; A plurality of side stoppers 504 are provided, and the plurality of side stoppers 504 are distributed at a position on one side of the elliptical frame plate 501 away from the cleaning mechanism 503. A plurality of circular stoppers 507 are provided, and the plurality of circular stoppers 507 are distributed inside the elliptical frame plate 501. During use, first, the heat dissipation rack 1 is lifted to a certain angle and the concave rotating rod 6 is rotated to engage with the concave card slot 8 formed on the side connection support plate 7 to fix the heat dissipation rack 1 adjusted to a certain inclination angle. Then, the computer is placed between the anti-offset devices 5 on the heat dissipation rack 1, and the anti-offset devices 5 are used to perform a push-type anti-offset correction on both sides of the computer. After the computer is corrected and fixed, the electric fan 4 can be started to dissipate heat from the bottom of the computer through the heat dissipation holes 2. The computer is placed on the cleaning mechanism 503 on the heat dissipation rack 1, and the driving mechanism is used to drive the two elliptical frame plates 501 to move inward to perform a push-type anti-offset correction and fixation on both sides of the computer. When the elliptical frame plate 501 does not completely fix the computer, the circular stoppers 507 inside the elliptical frame plate 501 can be adjusted to drive the built-in slider 506 to move in the square sliding hole 505. By providing a plurality of circular stoppers 507 inside the elliptical frame plate 501, auxiliary push-type fixation is performed on both sides of the computer. The sliding fit between the square sliding hole 505 and the built-in slider 506 enables the circular stoppers 507 to be adjusted freely inside the elliptical frame plate 501. By providing side stoppers 504 at a position on one side of the elliptical frame plate 501 away from the cleaning mechanism 503, a blocking-type protection is provided for the computer. When the adjusting mechanism 502 drives the elliptical frame plate 501 to move, the cleaning mechanism 503 on one side is driven to move together and scrape and clean the surface of the heat dissipation rack 1.

[0014] Please refer to Figures 1 - 8 As shown in, the present invention provides a computer radiator for preventing computer offset: The adjusting mechanism 502 includes a square support plate 5021. A square long hole 5022 is formed at the top of the square support plate 5021. First fixing blocks 5023 are fixedly connected to both parts of the top of the square support plate 5021 near the two sides. One side of the first fixing block 5023 penetrates and is connected to a threaded long rod 5024 through a rotating bolt. A second fixing block 5025 is sleeved and threadedly connected to the outer side of the threaded long rod 5024. A first stop bar 5026 is fixedly connected to the side of the second fixing block 5025 away from the first fixing block 5023. A folded baffle 5027 penetrates and is slidably connected to one side of the second fixing block 5025. A second stop bar 5028 is fixedly connected to the top of the folded baffle 5027. One side of the square support plate 5021 is fixedly connected to one side of the heat dissipation rack 1. The top of the second fixing block 5025 is fixedly connected to the outer side of the elliptical frame plate 501. There are two second fixing blocks 5025, and the two second fixing blocks 5025 are distributed on the threaded long rod 5024. One side of the folded baffle 5027 is fixedly connected to one side of the second stop bar 5028; The cleaning mechanism 503 includes a square connecting rod 5031. An arc-shaped brush 5032 is fixedly connected to one side of the square connecting rod 5031. A trapezoidal scraper 5033 is fixedly connected to one end of the square connecting rod 5031. An elliptical anti-slip pad 5034 is fixedly connected to one side of the trapezoidal scraper 5033. One end of the square connecting rod 5031 away from the trapezoidal scraper 5033 is fixedly connected to one side of the elliptical frame plate 501. One side of the trapezoidal scraper 5033 is slidably connected to one side of the heat dissipation rack 1. There are multiple square connecting rods 5031, and the multiple square connecting rods 5031 are respectively distributed on both sides of the trapezoidal scraper 5033. There are multiple arc-shaped brushes 5032, and the multiple arc-shaped brushes 5032 are distributed on one side of the square connecting rod 5031. When in use, after placing the computer on the cleaning mechanism 503 on the heat dissipation rack 1, twist the threaded long rod 5024 to rotate, driving the second fixing block 5025 that is threadedly engaged with it to move inwards. When the second fixing block 5025 moves, it drives the elliptical frame plate 501 and the first stop bar 5026 to move. By arranging a folded baffle 5027 between the two first fixing blocks 5023 to penetrate the second fixing block 5025 and perform sliding limit on it. At the same time, the dust scraped off when the cleaning mechanism 503 moves will fall down onto the folded baffle 5027 and fall down and be discharged from the folded baffle 5027. By arranging a folded baffle 5027 on one side of the heat dissipation rack 1 to perform covering dust protection on the threaded long rod 5024. The bottom of the computer placed on the cleaning mechanism 503 sits on the second stop bar 5028 on the folded baffle 5027. By arranging a second stop bar 5028 at a position near the middle of the top of the folded baffle 5027 to support the bottom of the computer. At the same time, when the electric fan 4 dissipates heat from the computer through the heat dissipation holes 2, the gas near the bottom of the heat dissipation rack 1 passes through the heat dissipation holes 2 to perform dust blowing treatment on the threaded long rod 5024. When a small amount of dust attached to the surface of the threaded long rod 5024 is blown up, it will pass through the square long hole 5022 and be discharged outwards. When no computer is placed on the heat dissipation rack 1, drive the elliptical frame plate 501 to move through the driving mechanism, driving the square connecting rod 5031 on one side to move. When the square connecting rod 5031 moves, it drives the arc-shaped brush 5032, the trapezoidal scraper 5033 and the elliptical anti-slip pad 5034 on one side to move together. When the trapezoidal scraper 5033 moves, it performs scraping and cleaning on the dust on the surface of the heat dissipation rack 1. When the arc-shaped brush 5032 moves along with the square connecting rod 5031, it performs friction cleaning on the positions on the surface of the heat dissipation rack 1 and the surface of the folded baffle 5027 that the trapezoidal scraper 5033 fails to clean. When using the radiator, the computer needs to be placed on the elliptical anti-slip pad 5034 between the two elliptical frame plates 501. By arranging an elliptical anti-slip pad 5034 on the trapezoidal scraper 5033 to support the bottom of the computer. By arranging a trapezoidal scraper 5033 and an elliptical anti-slip pad 5034 on one side of the heat dissipation rack 1, the bottom of the computer is separated from the heat dissipation rack 1 by a certain distance to facilitate gas flow.

[0015] When the present invention is in operation, first, the heat dissipation rack 1 is lifted to a certain angle and the concave rotating rod 6 is rotated to engage with the concave card slot 8 opened on the side connection support plate 7 to fix the heat dissipation rack 1 adjusted to a certain inclination angle. Then, the computer is placed between the anti-offset devices 5 on the heat dissipation rack 1, and the anti-offset devices 5 are used to perform push-type anti-offset correction on both sides of the computer. After the computer is corrected and fixed, the electric fan 4 can be started to dissipate heat from the bottom of the computer through the heat dissipation holes 2. The computer is placed on the cleaning mechanism 503 on the heat dissipation rack 1, and the driving mechanism is used to drive the two elliptical frame plates 501 to move inward to perform push-type anti-offset correction and fixation on both sides of the computer. When the elliptical frame plates 501 do not completely fix the computer, the circular stoppers 507 inside the elliptical frame plates 501 can be adjusted to drive the built-in sliders 506 to move in the square sliding holes 505. By arranging a plurality of circular stoppers 507 inside the elliptical frame plates 501, auxiliary push-type fixation is performed on both sides of the computer. The sliding cooperation between the square sliding holes 505 and the built-in sliders 506 enables the circular stoppers 507 to be adjusted arbitrarily inside the elliptical frame plates 501. A side stopper 504 is arranged at a position on one side of the elliptical frame plate 501 away from the cleaning mechanism 503 to provide a blocking type of protection for the computer. When the adjusting mechanism 502 drives the elliptical frame plate 501 to move, it drives the cleaning mechanism 503 on one side to move together and perform scraping-type cleaning on the surface of the heat dissipation rack 1. After the computer is placed on the cleaning mechanism 503 on the heat dissipation rack 1, the threaded long rod 5024 is twisted to rotate, driving the second fixing block 5025 in threaded cooperation with it to move inward. When the second fixing block 5025 moves, it drives the elliptical frame plate 501 and the first retaining strip 5026 to move. A folding baffle 5027 is arranged between the two first fixing blocks 5023 to penetrate through the second fixing block 5025 and perform sliding limit on it. At the same time, the dust scraped off when the cleaning mechanism 503 moves will fall downward onto the folding baffle 5027 and fall downward from the folding baffle 5027 and be discharged. A folding baffle 5027 is arranged on one side of the heat dissipation rack 1 to provide a covering type of dust protection for the threaded long rod 5024. The bottom of the computer placed on the cleaning mechanism 503 sits on the second retaining strip 5028 on the folding baffle 5027. A second retaining strip 5028 is arranged at a position near the middle of the top of the folding baffle 5027 to provide bottom support for the computer. At the same time, when the electric fan 4 dissipates heat from the computer through the heat dissipation holes 2, the gas near the bottom of the heat dissipation rack 1 passes through the heat dissipation holes 2 to perform dust blowing treatment on the threaded long rod 5024. When a small amount of dust attached to the surface of the threaded long rod 5024 is blown up, it will pass through the square long holes 5022 and be discharged outward. When no computer is placed on the heat dissipation rack 1, the driving mechanism is used to drive the elliptical frame plate 501 to move, driving the square connecting rod 5031 on one side to move. When the square connecting rod 5031 moves, it drives the arc-shaped brush 5032, the trapezoidal scraper 5033, and the elliptical anti-slip pad 5034 on one side to move together. When the trapezoidal scraper 5033 moves, it performs scraping-type cleaning on the dust on the surface of the heat dissipation rack 1.When the arc-shaped brush 5032 moves along with the square connecting rod 5031, it frictionally sweeps the positions on the surface of the heat dissipation rack 1 and the surface of the folded baffle 5027 that cannot be cleaned by the trapezoidal scraper 5033. When using the radiator, the computer needs to be placed on the elliptical anti-slip pad 5034 between the two elliptical frame plates 501. The bottom of the computer is supported by setting the elliptical anti-slip pad 5034 on the trapezoidal scraper 5033. By setting the trapezoidal scraper 5033 and the elliptical anti-slip pad 5034 on one side of the heat dissipation rack 1, a certain distance is left between the bottom of the computer and the heat dissipation rack 1 to facilitate gas flow.

[0016] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art and related fields based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented according to the conventional means in the art unless otherwise specified and limited.

Claims

1. A computer radiator for preventing computer deviation, characterized in that, Including: A heat dissipation rack (1), on the outer surface of which there are heat dissipation holes (2); A cross-shaped fixing frame (3), inside which there is an electric fan (4); An anti-offset device (5), which is used to perform a push-type anti-offset correction on both sides of the computer on the heat dissipation rack (1); There are multiple heat dissipation holes (2), and the multiple heat dissipation holes (2) are distributed on the heat dissipation rack (1). One side of the heat dissipation rack (1) is fixedly connected to one side of the cross-shaped fixing frame (3). The inside of the cross-shaped fixing frame (3) is rotatably connected to one side of the electric fan (4) through a rotating bolt. One side of the heat dissipation rack (1) away from the cross-shaped fixing frame (3) is fixedly connected to one side of the anti-offset device (5); Among them, the anti-offset device (5) includes: An elliptical frame plate (501), on one side of which there is an adjusting mechanism (502); One side of the elliptical frame plate (501) is fixedly connected to one side of the adjusting mechanism (502); One side of the adjusting mechanism (502) is fixedly connected to one side of the heat dissipation rack (1).

2. The computer radiator for preventing computer deviation according to claim 1, wherein: One side of the heat dissipation rack (1) is rotatably connected to the inside of a concave-shaped rotating rod (6) through a rotating bolt. One side of the heat dissipation rack (1) is rotatably connected to one side of a side connection support plate (7) through a rotating bolt. A concave-shaped card slot (8) is opened at the top of the side connection support plate (7).

3. A computer radiator for preventing a computer from shifting, characterized in that: One side of the elliptical frame plate (501) is fixedly connected to a cleaning mechanism (503). One side of the elliptical frame plate (501) close to the cleaning mechanism (503) is fixedly connected to a side stop block (504). Square sliding holes (505) are opened on both sides of the elliptical frame plate (501). The inner wall of the square sliding hole (505) is slidably connected to an internal sliding block (506). One side of the internal sliding block (506) is fixedly connected to a circular stop block (507).

4. The computer radiator for preventing computer offset according to claim 3, characterized in that: There are multiple side stop blocks (504), and the multiple side stop blocks (504) are distributed at a position on one side of the elliptical frame plate (501) away from the cleaning mechanism (503). There are multiple circular stop blocks (507), and the multiple circular stop blocks (507) are distributed inside the elliptical frame plate (501).

5. The computer radiator for preventing computer deviation according to claim 1, characterized in that: The adjusting mechanism (502) includes a square support plate (5021), on the top of which there is a square long hole (5022). At positions near both sides of the top of the square support plate (5021), there are fixedly connected first fixing blocks (5023). One side of the first fixing block (5023) penetrates and is connected to a threaded long rod (5024) through a rotating bolt. The outer side of the threaded long rod (5024) is sleeved and threadedly connected to a second fixing block (5025). One side of the second fixing block (5025) away from the first fixing block (5023) is fixedly connected to a first stop bar (5026). One side of the second fixing block (5025) penetrates and is slidably connected to a folded baffle (5027). The top of the folded baffle (5027) is fixedly connected to a second stop bar (5028).

6. The computer radiator for preventing computer deviation according to claim 5, wherein: One side of the square support plate (5021) is fixedly connected to one side of the heat dissipation rack (1), and the top of the second fixing block (5025) is fixedly connected to the outer side of the elliptical frame plate (501).

7. A computer radiator for preventing computer offset according to claim 5, characterized in that: There are two second fixing blocks (5025), and the two second fixing blocks (5025) are distributed on the threaded long rod (5024). One side of the folded baffle (5027) is fixedly connected to one side of the second stop bar (5028).

8. The computer radiator for preventing computer deviation according to claim 3, characterized in that: The cleaning mechanism (503) includes a square connecting rod (5031). One side of the square connecting rod (5031) is fixedly connected with an arc-shaped brush (5032). One end of the square connecting rod (5031) is fixedly connected with a trapezoidal scraper (5033). One side of the trapezoidal scraper (5033) is fixedly connected with an elliptical anti-slip pad (5034).

9. The computer radiator for preventing computer deviation according to claim 8, wherein: One end of the square connecting rod (5031) far from the trapezoidal scraper (5033) is fixedly connected to one side of the elliptical frame plate (501), and one side of the trapezoidal scraper (5033) is slidably connected to one side of the heat dissipation rack (1).

10. A computer radiator for preventing computer offset according to claim 8, characterized in that: There are multiple square connecting rods (5031), and the multiple square connecting rods (5031) are respectively distributed on both sides of the trapezoidal scraper (5033). There are multiple arc-shaped brushes (5032), and the multiple arc-shaped brushes (5032) are distributed on one side of the square connecting rod (5031).

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