A split drive electronic device cooler

By designing a separate transmission cooler, and utilizing the transmission mechanism and the separate flow guiding mechanism, it is possible to easily clean scale and quickly replace the cooling structure, thus solving the problem of reduced water flow and decreased heat dissipation performance caused by scale in water-cooled radiators and improving cleaning efficiency.

CN116456700BActive Publication Date: 2026-07-21DONGTAI CITY HAIDING ELECTRIC EQUIP MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
DONGTAI CITY HAIDING ELECTRIC EQUIP MFG CO LTD
Filing Date
2023-05-29
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing water-cooled radiators tend to accumulate scale inside the cooling plate after a period of use, leading to reduced water flow and decreased heat dissipation performance. Cleaning is inconvenient and inefficient.

Method used

A separate transmission type electronic device cooler is designed, including a cooling box, a transmission mechanism, a water injection mechanism, a spray head, a separate guide pipe, and a separate flow guiding mechanism. Through the cooperation of the transmission mechanism and the separate flow guiding mechanism, the cooling water is separated and guided. Utilizing the combination structure of a floating ring and a positioning frame, when cleaning scale, the water is separated from the positioning pipe through the separate guide pipe. The transmission mechanism drives the water injection mechanism to scrape off the scale, and the water is then cleaned through the spray head.

Benefits of technology

It enables convenient scale removal and quick replacement of cooling structures, improving operational efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116456700B_ABST
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Abstract

The application discloses a kind of separated transmission electronic equipment coolers, including cooling box, transmission mechanism, water injection mechanism, shower head, separated conduction pipe, separated flow guide mechanism;The positioning frame cover and floating ring cover are surrounded between the inner wall of the inside of cooling box and the cooling cavity, cooling water is passed into each cooling cavity by separated conduction pipe, so that the heat dissipation assembly groove is heat-dissipated, when it is needed to clean scale, then drive multiple water injection mechanisms on the upside to downward transmission by transmission mechanism, simultaneously make multiple water injection mechanisms originally located on the downside of transmission mechanism drive to upside to form new cooling cavity to carry out cooling operation, and multiple positioning frame cover and floating ring cover rotated to the downside of transmission mechanism are sprayed and cleaned by multiple shower heads, so that the application can be conveniently cleaned, and cooling structure can be quickly replaced, to improve work efficiency.
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Description

Technical Field

[0001] This invention relates to a cooler for a split-drive electronic device. Background Technology

[0002] Electronic industrial equipment refers to the equipment used to manufacture electronic devices, electronic components, electronic devices, and their special raw materials. When electronic industrial equipment is in continuous production, it has high power and generates a lot of heat. Under the influence of high temperature, the equipment is easily damaged. In order to ensure the normal operation of the equipment, water-cooled heat sinks are usually used to absorb heat and cool down the equipment. Existing water-cooled heat sinks generally introduce cooling water into the cavity of the heat sink plate to conduct heat and dissipate heat from the electronic equipment mounted on the upper part of the heat sink plate. However, after a period of use, scale will form inside the cooling plate. The scale buildup will obstruct the flow of cooling water, reduce the flow rate, and decrease the heat dissipation performance. Cleaning is very inconvenient, tedious, and reduces work efficiency. Summary of the Invention

[0003] To address the shortcomings of the prior art, the present invention provides a separate transmission electronic device cooler that is easy to clean and highly efficient in operation.

[0004] To solve the above problems, the technical solution adopted by the present invention is as follows: A separate transmission type electronic device cooler includes a cooling box, a transmission mechanism, a water injection mechanism, a spray head, a separate guide pipe, and a separate flow guiding mechanism. Multiple heat dissipation assembly slots are evenly distributed on the upper surface of the cooling box. The transmission mechanism is installed inside the upper part of the cooling box. Multiple water injection mechanisms are evenly distributed on the upper and lower sides of the transmission mechanism. Each water injection mechanism includes a connecting plate, a connecting rod, a positioning frame, a floating ring, a plug-in post, a pressure-resistant elastic body, an outer flexible sealing ring, and an inner flexible sealing ring. Multiple connecting plates are evenly distributed on the upper and lower sides of the transmission mechanism. A connecting rod is installed on the outer side of each connecting plate. A positioning frame is installed at the outer end of the connecting rod. Plug-in slots are respectively opened on both sides of the outer end of the positioning frame. A pressure-resistant elastic body is installed in each plug-in slot. Plug-in posts are respectively installed at both ends of the inner side of the floating ring, and the plug-in posts are inserted into the plug-in slots and press against the outer ends of the pressure-resistant elastic bodies. An outer flexible sealing ring and an inner flexible sealing ring are respectively installed on the outer and inner sides of the moving ring sleeve and the positioning frame sleeve; positioning tubes are respectively fixed to the front and rear sides of the positioning frame sleeve; multiple separation guide tubes are respectively slidably connected to the front and rear sides of the cooling box; the separation guide mechanism is installed on the outside of the cooling box, and the separation guide mechanism drives multiple separation guide tubes to be inserted into or separated from the positioning tubes; a water storage tank is provided at the bottom of the cooling box, and multiple spray heads are evenly installed on the upper side of the water storage tank; the pressure elastic body presses against the floating ring sleeve located on the upper side of the transmission mechanism and presses it upward against the inner wall of the cooling box, and a floating ring sleeve is respectively connected to the lower side of each heat dissipation assembly slot, and the positioning frame sleeve, the floating ring sleeve and the inner wall of the cooling box form a cooling cavity; the multiple floating ring sleeves located on the lower side of the transmission mechanism correspond one-to-one with the spray heads.

[0005] Furthermore, the transmission mechanism includes a drive roller, a driven roller, a ring gear, a transmission motor, a transmission shaft, and a transmission chain; the drive roller and the driven roller are respectively installed at both ends of the interior of the cooling box; the transmission motor is installed on the exterior of the cooling box, and the transmission shaft is installed on the inside of the transmission motor, with the inner end of the transmission shaft extending into the interior of the cooling box and connected to one end of the drive roller; the two ends of the driven roller and the other end of the drive roller are respectively rotatably engaged with the inner sidewall of the cooling box; ring gears are respectively installed on the front and rear sides of the drive roller and the driven roller, and transmission chains are respectively sleeved between the ring gears on the drive roller and the driven roller, with multiple overlapping plates evenly installed on the upper and lower sides between the two transmission chains.

[0006] Furthermore, the driven roller has rotating locking rods at both ends and the driving roller has rotating locking grooves on its inner sidewall; the rotating locking rods are rotatably locked onto the rotating locking grooves.

[0007] Furthermore, the separation and guiding mechanism includes a linkage plate, a movable threaded column, and a drive cylinder; a linkage plate is installed on the front and rear sides of the exterior of the cooling box, and multiple separation and guiding pipes are fixed through the linkage plate; a drive cylinder is rotatably snapped onto one end of the exterior of the cooling box, and threaded channels are respectively opened inside both ends of the drive cylinder, and a movable threaded column is threaded onto each threaded channel, with the outer end of the movable threaded column connected to the end of the linkage plate; a positioning pin is provided on the inner side of the movable threaded column; positioning slots are respectively opened on both sides of one end of the exterior of the cooling box; the positioning pin is slidably snapped onto the positioning slot.

[0008] Furthermore, a fixed post is provided at one end of the outer side of the cooling box; an annular groove is provided around the middle of the drive cylinder; the drive cylinder is rotatably engaged with the outer end of the fixed post through the annular groove around the middle.

[0009] Furthermore, the positioning frame sleeve is provided with abutting ring posts on its outer perimeter; the abutting ring posts are provided with sealing rings around their ends; the sealing rings abut against the inner upper wall of the cooling box.

[0010] Furthermore, a water pipe is connected to the lower side of the plurality of spray heads; the lower side of the water pipe is fixed to the lower interior of the cooling box by a plurality of positioning posts; the outer end of the water pipe extends to the outside of the cooling box, and a power pump is provided on the outer end of the water pipe.

[0011] Furthermore, the upper two sides of the floating ring have a tapered structure that is smaller at the top and larger at the bottom.

[0012] Furthermore, the positioning tube is provided with an annular sealing ring; the separating guide tube is inserted into the positioning tube and sealed to the inner side of the annular sealing ring.

[0013] The beneficial effects of this invention are as follows: The present invention forms a cooling cavity between the positioning frame sleeve, the floating ring sleeve, and the inner wall of the cooling box. Cooling water is introduced into each cooling cavity through the separating guide pipe, so that the heat dissipation assembly slot can conduct heat and dissipate heat. When it is necessary to clean scale, the separating guide mechanism drives multiple separating guide pipes to separate from the positioning pipe. Then, the transmission mechanism drives multiple water injection mechanisms on the upper side to move downward. The floating ring sleeve presses against the inner wall of the cooling box at both ends to scrape off the scale. At the same time, the multiple water injection mechanisms originally located on the lower side of the transmission mechanism are moved to the upper side to form a new cooling cavity for cooling. The multiple positioning frames and floating ring sleeves that have rotated to the lower side of the transmission mechanism are sprayed and cleaned by multiple spray heads. Thus, the present invention can be cleaned conveniently and the cooling structure can be replaced quickly, improving work efficiency. Attached Figure Description

[0014] Figure 1This is a schematic diagram of the structure of the present invention.

[0015] Figure 2 For the present invention Figure 1 A partially enlarged structural diagram.

[0016] Figure 3 This is a schematic diagram of the water injection mechanism on the upper side of the transmission mechanism of the present invention.

[0017] Figure 4 This is a schematic diagram of the water injection mechanism on the lower side of the transmission mechanism of the present invention.

[0018] Figure 5 This is an enlarged structural schematic diagram of the water injection mechanism of the present invention.

[0019] Figure 6 This is a top view of the internal structure of the present invention.

[0020] Figure 7 For the present invention Figure 6 A structural diagram of one side.

[0021] Figure 8 For the present invention Figure 6 A schematic diagram of the structure on the other side.

[0022] Figure 9 For the present invention Figure 8 A schematic diagram of the structure of the separation guide tube and the positioning guide tube.

[0023] Figure 10 This is a schematic diagram of the structure of the present invention, showing the insertion of the separating conductive tube into the positioning conductive tube. Implementation

[0024] The invention will now be described in further detail with reference to the accompanying drawings.

[0025] like Figures 1 to 10As shown, a separate transmission type electronic device cooler includes a cooling box 1, a transmission mechanism 2, a water injection mechanism 3, a spray head 4, a separate guide pipe 5, and a separate flow guiding mechanism 6. Multiple heat dissipation assembly slots 11 are evenly distributed on the upper surface of the cooling box 1. The transmission mechanism 2 is installed inside the upper part of the cooling box 1. Multiple water injection mechanisms 3 are evenly distributed on the upper and lower sides of the transmission mechanism 2. Each water injection mechanism 3 includes a connecting plate 31, a connecting rod 32, a positioning frame sleeve 33, a floating ring sleeve 34, a plug-in post 36, and a pressure elastic body. 39. Outer flexible sealing ring 37, inner flexible sealing ring 38; Multiple overlapping plates 31 are evenly installed on the upper and lower sides of the transmission mechanism 3. A connecting rod 32 is installed on the outer side of the overlapping plate 31. A positioning frame sleeve 33 is installed on the outer end of the connecting rod 32. Insertion slots 331 are respectively opened on both sides of the outer end of the positioning frame sleeve 33. A pressure-resistant elastic body 39 is installed in each insertion slot 331. An insertion post 36 is installed on each of the inner ends of the floating ring sleeve 34. The insertion posts 36 are respectively inserted into the insertion slots 331 and press against the pressure-resistant elastic body 39. At the outer end of the elastic body 39, an outer flexible sealing ring 37 and an inner flexible sealing ring 38 are respectively installed on the outer and inner sides of the floating ring sleeve 34 and the positioning frame sleeve 33; positioning tubes 8 are respectively fixed to the front and rear sides of the positioning frame sleeve 33; multiple separation guide tubes 5 are respectively slidably connected to the front and rear sides of the cooling box 1; the separation guide mechanism 6 is installed on the outside of the cooling box 1, and the separation guide mechanism 6 drives the multiple separation guide tubes 5 to be inserted into or separated from the positioning tubes 8; the cooling box 1 is equipped with an outer flexible sealing ring 37 and an inner flexible sealing ring 38. A water storage tank 12 is provided at the bottom of the housing 1, and multiple spray heads 4 are evenly installed on the upper side of the water storage tank 12; the pressure elastic body 39 presses against the floating ring 34 located on the upper side of the transmission mechanism 2 and presses upward against the inner wall of the cooling housing 1; the lower side of each heat dissipation assembly slot 11 is respectively connected to a floating ring 34, and the positioning frame 33, the floating ring 34 and the inner wall of the cooling housing 1 form a cooling cavity 9; the multiple floating rings 34 located on the lower side of the transmission mechanism 2 correspond one-to-one with the spray heads 4.

[0026] like Figures 1 to 10As shown, to facilitate the transmission switching of multiple water injection mechanisms 3 between their upper and lower positions, the transmission mechanism 2 further includes a drive roller 21, a driven roller 22, a ring gear 26, a transmission motor 24, a transmission shaft 25, and a transmission chain 23. The drive roller 21 and the driven roller 22 are respectively installed at both ends inside the cooling box 1. The transmission motor 24 is installed on the outside of the cooling box 1, and the transmission shaft 25 is installed on the inside of the transmission motor 24. The inner end of the transmission shaft 25 extends into the cooling box 1 and is connected to one end of the drive roller 21. The two ends of the driven roller 22 and the other end of the drive roller 21 are respectively rotatably engaged with the inner side wall of the cooling box 1. The ring gears 26 are respectively installed on the front and rear sides of the drive roller 21 and the driven roller 22. The transmission chain 23 is respectively sleeved between the ring gears 26 on the drive roller 21 and the driven roller 22. Multiple overlapping plates 31 are evenly installed on the upper and lower sides between the two transmission chains 23. Furthermore, the driven roller 22 is provided with rotating locking rods 29 at both ends and the driving roller 21 at the other end; the cooling box 1 is provided with a rotating locking groove 19 on its inner side wall; the rotating locking rods 29 are rotatably locked onto the rotating locking groove 19.

[0027] like Figures 1 to 10 As shown, to facilitate the connection and separation of multiple separating guide tubes 5, the separation guide mechanism 6 further includes a linkage plate 61, a movable threaded column 62, and a drive cylinder 63. A linkage plate 61 is installed on the front and rear sides of the exterior of the cooling box 1, and multiple separating guide tubes 5 are fixedly connected to the linkage plate 61. A drive cylinder 63 is rotatably snapped onto one end of the exterior of the cooling box 1. Threaded channels 631 are respectively opened inside both ends of the drive cylinder 63, and a movable threaded column 62 is threaded onto each threaded channel 631. The outer ends of the movable threaded columns 62 are respectively connected to the ends of the linkage plate 61. A positioning pin 621 is provided on the inner side of the movable threaded column 62. Positioning slots 18 are respectively opened on both sides of one end of the exterior of the cooling box 1. The positioning pin 621 is slidably snapped onto the positioning slot 18. Furthermore, a fixing post 17 is provided at one end of the outer side of the cooling box 1; an annular groove 632 is provided around the middle of the drive cylinder 63; the drive cylinder 63 is rotatably engaged with the outer end of the fixing post 17 through the annular groove 632 around the middle.

[0028] like Figures 1 to 10As shown, to improve sealing, the positioning frame sleeve 33 is further provided with abutting ring posts 35 on its outer periphery; the ends of the abutting ring posts 35 are provided with sealing ring bodies 351; the sealing ring bodies 351 abut against the inner upper wall of the cooling box 1. Furthermore, a water pipe 41 is connected to the lower side of the plurality of spray heads 4; the lower side of the water pipe 41 is fixed to the lower interior of the cooling box 1 by a plurality of positioning posts 411; the outer end of the water pipe 41 extends to the outside of the cooling box 1, and a power pump is provided at the outer end of the water pipe 41. To facilitate the scraping of scale inside the cooling box 1, the upper ends of the floating ring sleeve 34 are tapered on both sides, wider at the bottom and narrower at the top. To facilitate water sealing, an annular sealing ring 81 is provided inside the positioning pipe 8; the separating guide pipe 5 is inserted into the positioning pipe 8 and sealed against the inner periphery of the annular sealing ring 81.

[0029] The present invention forms a cooling cavity 9 between the positioning frame sleeve 33, the floating ring sleeve 34, and the inner wall of the cooling box 1. Cooling water is introduced into each cooling cavity 9 through the separating guide pipe 5, so that the heat dissipation assembly groove 11 can conduct heat and dissipate heat. When it is necessary to clean scale, the separating guide mechanism 6 drives multiple separating guide pipes 5 to separate from the positioning guide pipe 8. Then, the transmission mechanism 2 drives multiple water injection mechanisms 3 on the upper side to move downward. The floating ring sleeve 34 presses against the inner wall of the cooling box 1 at both ends to scrape off the scale. At the same time, the multiple water injection mechanisms 3 originally located on the lower side of the transmission mechanism 2 are moved to the upper side to form a new cooling cavity 9 for cooling. The multiple positioning frame sleeves 33 and floating ring sleeves 34 rotated to the lower side of the transmission mechanism 2 will be sprayed and cleaned by multiple spray nozzles 4. Thus, the present invention can be cleaned conveniently and the cooling structure can be replaced quickly, improving the work efficiency.

[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A separate transmission type electronic device cooler, characterized in that, The system includes a cooling box, a transmission mechanism, a water injection mechanism, spray heads, a separation guide pipe, and a separation guide mechanism. Multiple heat dissipation assembly slots are evenly distributed on the upper surface of the cooling box. A transmission mechanism is installed inside the upper part of the cooling box. Multiple water injection mechanisms are evenly distributed on the upper and lower sides of the transmission mechanism. Each water injection mechanism includes a connecting plate, a connecting rod, a positioning frame, a floating ring, a plug-in post, a pressure-resistant elastic body, an outer flexible sealing ring, and an inner flexible sealing ring. Multiple connecting plates are evenly distributed on the upper and lower sides of the transmission mechanism. A connecting rod is installed on the outer side of each connecting plate, and a positioning frame is installed at the outer end of the connecting rod. Plug-in slots are respectively opened on both sides of the outer end of the positioning frame, and a pressure-resistant elastic body is installed in each plug-in slot. A plug-in post is installed at each end of the inner side of the floating ring, and the plug-in post is inserted into the plug-in slot and presses against the outer end of the pressure-resistant elastic body. The floating ring and positioning frame... An outer flexible sealing ring and an inner flexible sealing ring are respectively installed on the outer and inner sides of the sleeve. Positioning tubes are fixedly connected to the front and rear sides of the positioning frame sleeve. Multiple separation guide tubes are slidably connected to the front and rear sides of the cooling box. The separation guide mechanism is installed on the outside of the cooling box, and the separation guide mechanism drives multiple separation guide tubes to be inserted into or separated from the positioning tubes. A water storage tank is provided at the bottom of the cooling box, and multiple spray heads are evenly installed on the upper side of the water storage tank. The pressure elastic body presses against the floating ring sleeve located on the upper side of the transmission mechanism and presses it upward against the inner wall of the cooling box. Each heat dissipation assembly slot is respectively connected to a floating ring sleeve on its lower side. The positioning frame sleeve, the floating ring sleeve, and the inner wall of the cooling box form a cooling cavity. The multiple floating ring sleeves located on the lower side of the transmission mechanism correspond one-to-one with the spray heads.

2. The separate transmission type electronic device cooler according to claim 1, characterized in that, The transmission mechanism includes a drive roller, a driven roller, a ring gear, a transmission motor, a transmission shaft, and a transmission chain. The drive roller and the driven roller are respectively installed at both ends of the interior of the cooling box. The transmission motor is installed on the exterior of the cooling box, and the transmission shaft is installed on the inside of the transmission motor. The inner end of the transmission shaft extends into the interior of the cooling box and is connected to one end of the drive roller. The two ends of the driven roller and the other end of the drive roller are respectively rotatably engaged with the inner side wall of the cooling box. Ring gears are installed on the front and rear sides of the drive roller and the driven roller, and transmission chains are respectively sleeved between the ring gears on the drive roller and the driven roller. Multiple overlapping plates are evenly installed on the upper and lower sides between the two transmission chains.

3. The separate transmission type electronic device cooler according to claim 2, characterized in that, Rotary locking rods are provided at both ends of the driven roller and at the other end of the driving roller; a rotary locking groove is provided on the inner side wall of the cooling box; the rotary locking rod is rotatably locked onto the rotary locking groove.

4. The separate transmission type electronic device cooler according to claim 1, characterized in that, The separation and diversion mechanism includes a linkage plate, a movable threaded column, and a drive cylinder. A linkage plate is installed on the front and rear sides of the exterior of the cooling box, and multiple separation and diversion pipes are fixedly connected to the linkage plate. A drive cylinder is rotatably snapped onto one end of the exterior of the cooling box. Threaded channels are opened inside both ends of the drive cylinder, and a movable threaded column is threaded onto each threaded channel. The outer ends of the movable threaded columns are connected to the ends of the linkage plates. A positioning pin is provided on the inner side of the movable threaded column. Positioning slots are opened on both sides of one end of the exterior of the cooling box. The positioning pin is slidably snapped into the positioning slot.

5. The separate transmission type electronic device cooler according to claim 4, characterized in that, A fixed post is provided at one end of the outer side of the cooling box; an annular groove is provided around the middle of the drive cylinder; the drive cylinder is rotated and engaged with the outer end of the fixed post through the annular groove around the middle.

6. The separate transmission type electronic device cooler according to claim 1, characterized in that, The positioning frame is provided with abutting ring posts on its outer perimeter; a sealing ring is provided around the end of the abutting ring posts; the sealing ring abuts against the inner upper wall of the cooling box.

7. The separate transmission type electronic device cooler according to claim 1, characterized in that, A water pipe is connected to the lower side of the multiple spray heads; the lower side of the water pipe is fixed to the lower interior of the cooling box by multiple positioning posts; the outer end of the water pipe extends to the outside of the cooling box, and a power pump is provided on the outer end of the water pipe.

8. The separate transmission type electronic device cooler according to claim 1, characterized in that, The upper two sides of the floating ring have a tapered structure that is smaller at the top and larger at the bottom.

9. The separate transmission type electronic device cooler according to claim 1, characterized in that, The positioning tube is equipped with an annular sealing ring; the separation guide tube is inserted into the positioning tube and sealed to the inner side of the annular sealing ring.