An instant cooling device with two-way cooling function
By setting cooling disc holes and a two-way cooling structure on the water bladder, combined with an insulation box and thermal insulation covering, the problems of poor thermal insulation and unstable installation of the water bladder are solved, and an efficient and reliable two-way cooling effect is achieved, which improves the cooling efficiency and installation convenience.
Patent Information
- Application Number
- CN202111675357.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2021-09-14
- Filing Date
- 2021-12-31
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2041-12-31
AI Technical Summary
The existing water tank has a poor thermal insulation structure, which leads to frequent heat exchange and affects the cooling effect. In addition, the electronic cooling module is not installed stably, which affects the cooling reliability and efficiency.
The instant cooling device adopts a two-way cooling function. By setting cooling plate holes on the cooling water tank and using left and right electronic refrigeration plates and heat dissipation components, combined with insulation boxes and thermal insulation coverings, it achieves two-way cooling and insulation effects, ensures stable contact between the electronic refrigeration plate and the water tank, and improves installation reliability through screw and bolt fixing structure.
It achieves efficient and reliable two-way cooling, improves the cooling effect and installation convenience, increases the contact area between the electronic cooling plate and the water tank, ensures the stability and reliability of cooling, reduces heat exchange, and simplifies the manufacturing and maintenance process.
Smart Images

Figure CN114294904B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of refrigeration equipment, in particular to an instant cooling device with a two-way cooling function. Background Art
[0002] Currently, many water bladders use electronic refrigeration for cooling. The cooling surface of the electronic refrigeration module is placed against the water bladder. This allows the module to exchange heat with the water bladder during operation, cooling the bladder and thus cooling the water within. However, due to the poor insulation structure of existing water bladders, a large amount of heat is easily exchanged between the bladder and the outside world, which can lead to the bladder failing to achieve a satisfactory cooling effect. Furthermore, the reliability of the installation and positioning of existing electronic refrigeration modules is relatively poor, making it difficult for the module to be quickly and accurately installed and securely attached to the water bladder. This not only affects assembly efficiency but also refrigeration reliability. Summary of the Invention
[0003] The purpose of the present invention is to solve the above-mentioned problems and shortcomings, and to provide an instant cooling device with a two-way cooling function. The instant cooling device has a two-way cooling function, which can achieve a very good cooling effect. The reliability and applicability of the instant cooling device are very strong. The instant cooling device can not only play a dual role of heat preservation and protection for the cooling water tank, but also facilitate the installation and positioning of the left electronic refrigeration plate and the right electronic refrigeration plate, and can effectively ensure that the cooling surfaces of the left electronic refrigeration plate and the right electronic refrigeration plate can stably and reliably contact the cooling water tank, accelerate the transfer of cold energy, and improve its cooling efficiency. The instant cooling device has the advantages of easy assembly, good cooling effect, high reliability, and strong applicability.
[0004] The technical solution of the present invention is achieved as follows: an instant cooling device with a two-way cooling function, which is characterized in that it includes a cooling water bladder, a heat preservation box, a left heat dissipation component, and a right heat dissipation component, wherein the cooling water bladder is provided with a cooling disc hole, the input end of the cooling disc hole is connected to an input pipe joint, and the output end of the cooling disc hole is connected to an output pipe joint; the heat preservation box includes a box body, a box cover, and a heat insulation covering, the right surface of the box body is provided with a mounting groove, the left surface of the box body is provided with a left embedded hole that penetrates into the mounting groove, and the heat insulation The covering member covers the cooling water liner, and a left contact port penetrating to the inner wall of the thermal insulation covering member is opened on the left wall of the thermal insulation covering member, and a right contact port penetrating to the inner wall of the thermal insulation covering member is opened on the right wall of the thermal insulation covering member. The cooling water liner and the thermal insulation covering member are embedded in the installation groove together, and the input pipe joint and the output pipe joint are both placed outside the box body, and the box cover is installed on the notch of the installation groove. The box cover is provided with a right embedding hole penetrating into the installation groove, and at least one left electronic refrigeration board is embedded in the left embedding hole, and the left electronic refrigeration board is embedded in the left embedding hole. The board is embedded in the left contact port, and the cooling surface of the left electronic refrigeration board is attached to the left surface of the cooling water bladder, and the heating surface of the left electronic refrigeration board is directed to the outside of the box body. At least one right electronic refrigeration board is embedded in the right embedding hole, and the right electronic refrigeration board is embedded in the right contact port, and the cooling surface of the right electronic refrigeration board is attached to the right surface of the cooling water bladder, and the heating surface of the right electronic refrigeration board is directed to the outside of the box cover; the left heat dissipation assembly includes a left water cooling box, a left heat dissipation plate body, and a left heat dissipation fan. The left water cooling box is attached to the heating surface of the left electronic refrigeration board. One surface of the left heat dissipation plate body is attached to the left surface of the left water cooling box, and a plurality of left heat dissipation fins are provided on the other surface of the left heat dissipation plate body, and the air inlet end of the left heat dissipation fan is attached to each left heat dissipation fin strip; the right heat dissipation assembly includes a right water cooling box, a right heat dissipation plate body, and a right heat dissipation fan. The right water cooling box is attached to the heating surface of the right electronic refrigeration plate, and one surface of the right heat dissipation plate body is attached to the right surface of the right water cooling box, and a plurality of right heat dissipation fins are provided on the other surface of the right heat dissipation plate body, and the air inlet end of the right heat dissipation fan is attached to each right heat dissipation fin strip.
[0005] Preferably, a left ferrule groove is provided on the surface of the left heat sink body facing the left water cooling box, the left ferrule groove is clamped on the left water cooling box, the left heat sink body is detachably connected to the box body, and the left heat dissipation fan is detachably connected to the left heat sink strip; a right ferrule groove is provided on the surface of the right heat sink body facing the right water cooling box, the right ferrule groove is clamped on the right water cooling box, the right heat sink body is detachably connected to the box cover, and the right heat dissipation fan is detachably connected to the right heat sink strip.
[0006] Preferably, the instant cooling device with a two-way cooling function also includes a first screw and a first bolt. The threaded end of the first screw is passed through the left heat dissipation plate body, and the threaded end of the first screw is screwed onto the box body after passing through the left heat dissipation plate body. A first connecting strip is provided on the side wall of the left heat dissipation strip, and a first lug is provided on the side wall of the left heat dissipation fan. The first lug is fixed to the first connecting strip by a first bolt.
[0007] Preferably, the instant cooling device with a two-way cooling function also includes a second screw and a second bolt, the threaded end of the second screw is passed through the right heat dissipation plate body, and the threaded end of the second screw is screwed to the box cover after passing through the right heat dissipation plate body, a second connecting strip is provided on the side wall of the right heat dissipation strip, and a second lug is provided on the side wall of the right heat dissipation fan, and the second lug is fixed to the second connecting strip by a second bolt.
[0008] Preferably, the cooling water tank includes a longitudinal bottom plate and a cover plate, a disk groove is opened on the right surface of the longitudinal bottom plate, and a number of limiting fluids are respectively provided on the groove walls of the input end of the disk groove, and each limiting fluid is arranged side by side along the conveying direction of the disk groove; the limiting fluid includes a flow-limiting protrusion and a drainage groove, and the flow-limiting protrusion and the drainage groove are respectively provided on two opposite groove walls of the disk groove, and the flow-limiting protrusion and the drainage groove are arranged relative to each other; one end of the input pipe joint and the output pipe joint are both connected to the longitudinal bottom plate, and the input pipe joint and the output pipe joint are respectively connected to the input end and the output end of the disk groove, and the cover plate sealing cover is installed on the right surface of the longitudinal bottom plate, and the groove wall of the disk groove and the surface of the cover plate jointly enclose a cooling disk hole, and the cooling surface of the left electronic refrigeration plate is pressed tightly against the left surface of the longitudinal bottom plate, and the cooling surface of the right electronic refrigeration plate is pressed tightly against the right surface of the cover plate.
[0009] Preferably, the thermal insulation covering comprises a thermal insulation sleeve, a left thermal insulation cover plate, and a right thermal insulation cover plate. The thermal insulation sleeve is put on the cooling water bladder, and the inner wall of the thermal insulation sleeve is pressed on the upper and lower surfaces and the front and rear surfaces of the cooling water bladder. The left thermal insulation cover plate is placed on the left port of the thermal insulation sleeve, and the left thermal insulation cover plate is pressed on the left surface of the cooling water bladder. The right thermal insulation cover plate is placed on the right port of the thermal insulation sleeve, and the right thermal insulation cover plate is pressed on the right surface of the cooling water bladder. The left contact port is opened on the left thermal insulation cover plate, and the right contact port is opened on the right thermal insulation cover plate.
[0010] Preferably, a left reinforcing frame is embedded in the opening of the left embedding hole, and the left electronic refrigeration board is embedded in the left reinforcing frame; a right reinforcing frame is embedded in the opening of the right embedding hole, and the right electronic refrigeration board is embedded in the right reinforcing frame.
[0011] Preferably, the instant cooling device with a two-way cooling function also includes a cold water circulation component, which includes a cold water tank, a left water pump, a left output pipe, a left input pipe, a right water pump, a right output pipe, and a right input pipe. The height position of the cold water tank is higher than the height positions of the left water cooling box and the right water cooling box. The two ends of the left output pipe are respectively connected to the left water cooling box and the cold water tank, and the two ends of the left input pipe are respectively connected to the left water cooling box and the cold water tank. The left water pump is connected in series to the left input pipe, and the two ends of the right output pipe are respectively connected to the right water cooling box and the cold water tank. The two ends of the right input pipe are respectively connected to the right water cooling box and the cold water tank, and the right water pump is connected in series to the right input pipe.
[0012] Beneficial effects of the present invention: (1) In the present invention, since the cooling surfaces of the left electronic refrigeration plate and the right electronic refrigeration plate are respectively attached to the left and right surfaces of the cooling water tank, and the left and right electronic refrigeration plates are respectively attached with a left heat dissipation component and a right heat dissipation component. This can play a very good cooling role on the left and right ends of the cooling water tank, thereby achieving a two-way cooling effect, and this can accelerate the heat dissipation of the left and right electronic refrigeration plates to avoid heat accumulation on the instant cooling device, thereby preventing the heat on the left and right electronic refrigeration plates from affecting the cooling, which can greatly improve the efficiency and quality of cooling. The cooling effect of the instant cooling device is very good, and it can perform cooling treatment very reliably. The reliability and applicability of the instant cooling device are very strong. (2) By using cooling disc holes in the cooling water tank, the time for water to flow through the cooling water tank can be extended, thereby ensuring that the water can be fully cooled, which helps to further improve the cooling effect of the instant cooling device. By adopting input pipe joints and output pipe joints and placing them outside the insulation box, it is convenient to connect the pipes, which helps to improve the convenience of using and installing the instant cooling device. (3) By covering the cooling water bladder with a heat-insulating covering and then embedding it in the installation groove. This can play a dual role of shielding and protecting the cooling water bladder and keeping it warm, thereby greatly reducing the heat exchange between the cooling water bladder and the outside world, and thus ensuring that the instant cooling device has a very good cooling effect. (4) By opening the left embedding hole and the right embedding hole, the installation and positioning of the left electronic cooling plate and the right electronic cooling plate can be facilitated. By opening the left contact port and the right contact port, not only can the left electronic cooling plate and the right electronic cooling plate be well positioned, but also the left electronic cooling plate and the right electronic cooling plate can be easily contacted with the cooling water bladder. Thus, it is convenient to quickly and accurately install the left electronic refrigeration plate and the right electronic refrigeration plate in place, and the assembly is very convenient, which helps to improve the convenience, stability and reliability of the installation and positioning of the left electronic refrigeration plate and the right electronic refrigeration plate, and it is convenient to disassemble and maintain the left electronic refrigeration plate and the right electronic refrigeration plate. In addition, it can make the refrigeration surface of the left electronic refrigeration plate and the right electronic refrigeration plate stably and reliably attached to the cooling water tank, thereby ensuring that the heat exchange between the refrigeration surface of the left electronic refrigeration plate and the right electronic refrigeration plate and the cooling water tank can be carried out stably, which can greatly improve the refrigeration reliability of the instant cooling device. (5) By using the left electronic refrigeration plate and the right electronic refrigeration plate on both the left and right sides of the cooling water tank, not only can a good cooling effect be achieved, but the plate-like structure can also facilitate the increase of the contact area between the left electronic refrigeration plate and the right electronic refrigeration plate and the surface of the cooling water tank, and can increase the contact area between the left heat dissipation component and the left electronic refrigeration plate, and the contact area between the right heat dissipation component and the right electronic refrigeration plate, which can also play a role in improving the cooling effect and heat dissipation effect. (6) The structure of the heat preservation box is very simple and reliable, which not only can accurately and reliably position the cooling water tank, but also can facilitate manufacturing and assembly, thereby helping to improve the convenience of manufacturing the instant cooling device.(7) The left heat dissipation component and the right heat dissipation component can achieve dual heat dissipation effects of water cooling and air cooling. They can effectively take away the heat on the heating surfaces of the left electronic refrigeration plate and the right electronic refrigeration plate, thereby helping to improve the refrigeration reliability of the instant cooling device. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the three-dimensional structure of the instant cooling device in the present invention.
[0014] Figure 2 For the present invention Figure 1 Schematic diagram of the enlarged structure of part A.
[0015] Figure 3 It is a schematic diagram of the three-dimensional structure of the left heat dissipation component in the present invention.
[0016] Figure 4 This is a schematic diagram of the split structure of the left heat dissipation component in the present invention.
[0017] Figure 5 It is a schematic diagram of the three-dimensional structure of the right heat dissipation component in the present invention.
[0018] Figure 6 This is a schematic diagram of the disassembled structure of the right heat dissipation component in the present invention.
[0019] Figure 7 This is one of the schematic diagrams of the assembly structure of the cooling water bladder and the insulation box in the present invention.
[0020] Figure 8 This is the second schematic diagram of the assembly structure of the cooling water container and the insulation box in the present invention.
[0021] Figure 9 This is a structural diagram of the heat preservation box in the open state of the present invention.
[0022] Figure 10 This is a structural diagram of the left electronic refrigeration board detached from the box body in the present invention.
[0023] Figure 11 This is a structural diagram of the right electronic refrigeration panel in the present invention after the cover is removed.
[0024] Figure 12 This is a schematic diagram of the structure of the heat insulation cover removed from the cooling water bladder in the present invention.
[0025] Figure 13 It is a schematic diagram of the three-dimensional structure of the cooling water bladder in the present invention.
[0026] Figure 14 This is a schematic diagram of the disassembled structure of the cooling water bladder in the present invention.
[0027] Figure 15 For the present invention Figure 14Schematic diagram of the enlarged structure of part B. DETAILED DESCRIPTION
[0028] like Figure 1 As shown, the instant cooling device with a two-way cooling function of the present invention comprises a cooling water tank 1, an insulation box 2, a left heat dissipation component 3, and a right heat dissipation component 4, wherein:
[0029] like Figure 13 and Figure 14 As shown, a cooling disc hole 11 is opened on the cooling water tank 1, an input pipe joint 12 is connected to the input end of the cooling disc hole 11, and an output pipe joint 13 is connected to the output end of the cooling disc hole 11;
[0030] like Figures 7 to 12 As shown, the heat preservation box 2 includes a box body 21, a box cover 22, and a heat insulation covering 23. A mounting groove 211 is provided on the right surface of the box body 21, and a left embedding hole 212 is provided on the left surface of the box body 21 to penetrate into the mounting groove 211. The heat insulation covering 23 is covered on the cooling water liner 1. A left contact port 231 is provided on the left wall of the heat insulation covering 23 to penetrate into the inner wall of the heat insulation covering 23. A right contact port 232 is provided on the right wall of the heat insulation covering 23 to penetrate into the inner wall of the heat insulation covering 23. The cooling water liner 1 is embedded in the mounting groove 211 together with the heat insulation covering 23, and the input pipe joint 12 and the output pipe joint 13 are both placed outside the box body 21. The box cover 22 is mounted on the notch of the mounting groove 211. The box cover 22 is provided with a right embedding hole 221 that penetrates into the mounting groove 211. At least one left electronic refrigeration board 5 is embedded in the left embedding hole 212, and the left electronic refrigeration board 5 is embedded in the left contact port 231. The cooling surface of the left electronic refrigeration board 5 is attached to the left surface of the cooling water liner 1, and the heating surface of the left electronic refrigeration board 5 is facing the outside of the box body 21. At least one right electronic refrigeration board 6 is embedded in the right embedding hole 221, and the right electronic refrigeration board 6 is embedded in the right contact port 232. The cooling surface of the right electronic refrigeration board 6 is attached to the right surface of the cooling water liner 1, and the heating surface of the right electronic refrigeration board 6 is facing the outside of the box cover 22.
[0031] like Figure 1 、 Figure 3 and Figure 4 As shown, the left heat dissipation assembly 3 includes a left water cooling box 31, a left heat dissipation plate body 32, and a left heat dissipation fan 33. The left water cooling box 31 is attached to the heating surface of the left electronic refrigeration plate 5. One surface of the left heat dissipation plate body 32 is attached to the left surface of the left water cooling box 31. A plurality of left heat dissipation fin strips 321 are provided on the other surface of the left heat dissipation plate body 32. The air inlet end of the left heat dissipation fan 33 is attached to each left heat dissipation fin strip 321.
[0032] like Figure 1 、 Figure 5 and Figure 6 As shown, the right heat dissipation assembly 4 includes a right water cooling box 41, a right heat dissipation plate body 42, and a right heat dissipation fan 43. The right water cooling box 41 is attached to the heating surface of the right electronic refrigeration plate 6, and one surface of the right heat dissipation plate body 42 is attached to the right surface of the right water cooling box 41. A plurality of right heat dissipation fin strips 421 are provided on the other surface of the right heat dissipation plate body 42, and the air inlet end of the right heat dissipation fan 43 is attached to each right heat dissipation fin strip 421.
[0033] In the present invention, the cooling surfaces of the left and right electronic refrigeration plates 5 and 6 are respectively attached to the left and right surfaces of the cooling water bladder 1, and the left and right heat dissipation components 3 and 4 are respectively attached to the heating surfaces of the left and right electronic refrigeration plates 5 and 6. This provides a very good cooling effect on the left and right ends of the cooling water bladder 1, thereby achieving a two-way cooling effect. This can also accelerate the heat dissipation of the left and right electronic refrigeration plates 5 and 6, thereby preventing heat accumulation in the instant cooling device, thereby preventing the heat on the left and right electronic refrigeration plates 5 and 6 from affecting the cooling process. This can greatly improve the efficiency and quality of the cooling process. The instant cooling device has an excellent cooling effect and can perform cooling processing very reliably. The reliability and applicability of the instant cooling device are very strong.
[0034] By using the cooling disc hole 11 in the cooling water liner 1, the time for water to flow through the cooling water liner 1 can be extended, thereby ensuring that the water can be fully cooled, which helps to further improve the refrigeration effect of the instant cooling device. By using the input pipe joint 12 and the output pipe joint 13, and making them pass through the insulation box 2, it is convenient to connect the pipes, thereby helping to improve the convenience of use and installation of the instant cooling device.
[0035] By covering the cooling water container 1 with the heat-insulating cover 23 and then embedding it in the mounting groove 211, the cooling water container 1 can be shielded, protected and kept warm, thereby greatly reducing the heat exchange between the cooling water container 1 and the outside world, thereby ensuring that the instant cooling device has a very good cooling effect.
[0036] The left and right mounting holes 212 and 221 facilitate the installation and positioning of the left and right electronic cooling panels 5 and 6. The left and right contact openings 231 and 232 not only effectively position the left and right electronic cooling panels 5 and 6, but also facilitate contact between the left and right electronic cooling panels 5 and 6 and the cooling water bladder 1. This facilitates quick and accurate installation of the left and right electronic cooling panels 5 and 6, making assembly very convenient. This helps improve the convenience, stability, and reliability of the installation and positioning of the left and right electronic cooling panels 5 and 6, and also facilitates disassembly and maintenance of the left and right electronic cooling panels 5 and 6. Furthermore, this ensures that the cooling surfaces of the left and right electronic cooling panels 5 and 6 can be stably and reliably attached to the cooling water bladder 1, thereby ensuring stable heat exchange between the cooling surfaces of the left and right electronic cooling panels 5 and 6 and the cooling water bladder 1, greatly improving the reliability of the instant cooling device.
[0037] By using a left electronic refrigeration plate 5 and a right electronic refrigeration plate 6 on both the left and right sides of the cooling water tank 1, not only can a good cooling effect be achieved, but the plate-like structure can also facilitate increasing the contact area between the left electronic refrigeration plate 5, the right electronic refrigeration plate 6 and the surface of the cooling water tank 1, as well as increasing the contact area between the left heat dissipation component 3 and the left electronic refrigeration plate 5, and the contact area between the right heat dissipation component 4 and the right electronic refrigeration plate 6, which can also improve the cooling effect and the heat dissipation effect.
[0038] The structure of the heat preservation box 2 is very simple and reliable, which not only can accurately and reliably position the cooling water container 1, but also can facilitate manufacturing and assembly, thereby helping to improve the convenience of manufacturing the instant cooling device.
[0039] The left heat dissipation component 3 and the right heat dissipation component 4 can achieve dual heat dissipation effects of water cooling and air cooling. They can effectively take away the heat from the heating surfaces of the left electronic refrigeration plate 5 and the right electronic refrigeration plate 6, thereby helping to improve the refrigeration reliability of the instant cooling device.
[0040] The instant cooling device can be applied to an instant cooling water dispenser.
[0041] In order to improve the reliability of the assembly of the box body 21 and the box cover 22, the box cover 22 can be fixed to the box body 21 by glue or welding. In this way, a reliable heat-insulating box 2 can be obtained.
[0042] like Figures 1 to 6As shown, the left heat sink 32 has a left ferrule groove 322 on its surface facing the left water-cooling box 31. The left ferrule groove 322 is inserted into the left water-cooling box 31. The left heat sink 32 is detachably connected to the box body 21, and the left heat dissipation fan 33 is detachably connected to the left heat dissipation fin strip 321. The right heat sink 42 has a right ferrule groove 422 on its surface facing the right water-cooling box 41. The right ferrule groove 422 is inserted into the right water-cooling box 41. The right heat sink 42 is detachably connected to the box cover 22, and the right heat dissipation fan 43 is detachably connected to the right heat dissipation fin strip 421. The provision of the left and right ferrule grooves 322 and 422 not only effectively limits the position but also increases the contact area, thereby helping to increase the amount of heat exchange and, in turn, further improving the efficiency and quality of heat dissipation. The above structure eliminates the need for other components to define the positions of the left water cooling box 31, the left heat sink 32, the left heat dissipation fan 33, the right water cooling box 41, the right heat sink 42, and the right heat dissipation fan 43. This improves the convenience and reliability of the installation and positioning of the left water cooling box 31, the left heat sink 32, the left heat dissipation fan 33, the right water cooling box 41, the right heat sink 42, and the right heat dissipation fan 43, and ensures close contact between adjacent components, thereby ensuring stable heat transfer, which helps improve the reliability of the instant cooling device. Furthermore, the use of a detachable connection facilitates disassembly and maintenance, making the instant cooling device very convenient to maintain.
[0043] like Figures 1 to 4 As shown, the instant cooling device with a two-way cooling function further includes a first screw 34 and a first bolt 35. The threaded end of the first screw 34 is inserted into the left heat sink body 32 and then screwed onto the box body 21 after passing through the left heat sink body 32. A first connecting strip 323 is provided on the side wall of the left heat sink strip 321, and a first lug 331 is provided on the side wall of the left heat sink fan 33. The first lug 331 is fixed to the first connecting strip 323 by a first bolt 35. The use of the first screw 34 and the first bolt 35 for fixing not only achieves a stable connection but also satisfies the need for disassembly. When the first screw 34 is tightened, the left heat sink body 32 can be pressed tightly against the left water cooling box 31, thereby pressing the left water cooling box 31 tightly against the left electronic refrigeration plate 5, thereby further improving the reliability of the heat dissipation function.
[0044] like Figure 3 and Figure 4 As shown, in the actual manufacturing process, in order to enhance the stability and reliability of the connection, the number of the first screws 34 and the first bolts 35 can be increased, and the number of the first lugs 331 and the first connecting strips 323 can be increased accordingly. This can well meet the requirement of improving the connection strength.
[0045] like Figure 1 、 Figure 2 、 Figures 7 to 10 As shown, to enhance the structural strength of the connection point of the first screw 34, a first reinforcing stud 213 is formed on the outer wall of the box body 21. A first metal reinforcing block 214 can be pre-embedded in the first reinforcing stud 213, and the first screw 34 is screwed onto the first metal reinforcing block 214. This helps further enhance the reliability and stability of the installation and positioning of the left heat sink 32, ensuring that the left heat sink 32 can exert a very stable and reliable pressure on the left water cooling box 31, thereby further enhancing the reliability of the instant cooling device.
[0046] like Figure 7 、 Figure 9 and Figure 10 As shown, the first metal reinforcement block 214 is replaced with a nut, and a first countersunk hole 215 is defined at the bottom of the mounting slot 211, penetrating the first reinforcement boss 213. The first metal reinforcement block 214 is embedded in the first countersunk hole 215. This not only provides reinforcement but also facilitates manufacturing and assembly, and the reliability of the installation and positioning of the first metal reinforcement block 214 is very high.
[0047] like Figure 1 、 Figure 2 、 Figure 5 and Figure 6 As shown, the instant cooling device with a two-way cooling function further includes a second screw 44 and a second bolt 45. The threaded end of the second screw 44 is inserted into the right heat sink body 42 and then screwed onto the box cover 22 after passing through the right heat sink body 42. A second connecting strip 423 is provided on the side wall of the right heat sink strip 421, and a second lug 431 is provided on the side wall of the right heat dissipation fan 43. The second lug 431 is fixed to the second connecting strip 423 by a second bolt 45. The use of the second screw 44 and the second bolt 45 for fixing not only achieves a stable connection but also satisfies the need for disassembly. When the second screw 44 is tightened, the right heat sink body 42 can be pressed tightly against the right water cooling box 41, thereby pressing the right water cooling box 41 against the right electronic refrigeration plate 6, thereby further improving the reliability of the heat dissipation effect.
[0048] like Figure 5 and Figure 6 As shown, in the actual manufacturing process, in order to enhance the stability and reliability of the connection, the number of second screws 44 and second bolts 45 can be increased, and the number of second lugs 431 and second connecting strips 423 can be increased accordingly. This can well meet the requirement of improving the connection strength.
[0049] like Figure 1 、 Figure 2、 Figures 7 to 9 、 Figure 11 As shown, to enhance the structural strength of the connection point of the second screw 44, the outer wall of the box cover 22 is formed with a second reinforcing boss 222. A second metal reinforcing block 223 can be pre-embedded in the second reinforcing boss 222, and the second screw 44 is screwed onto the second metal reinforcing block 223. This helps further enhance the reliability and stability of the installation and positioning of the right heat sink 42, ensuring that the right heat sink 42 can exert a very stable and reliable pressure on the right water cooling box 41, thereby further enhancing the reliability of the instant cooling device.
[0050] like Figure 8 、 Figure 9 and Figure 11 As shown, the second metal reinforcement block 223 is replaced with a nut, and a second countersunk hole 224 is formed on the left wall of the box cover 22, penetrating the second reinforcement boss 222. The second metal reinforcement block 223 is embedded in the second countersunk hole 224. This not only provides reinforcement but also facilitates manufacturing and assembly, and the reliability of the installation and positioning of the second metal reinforcement block 223 is very high.
[0051] like Figures 7 to 9 、 Figures 13 to 15As shown, the cooling water tank 1 includes a longitudinal bottom plate 14 and a cover plate 15. A disc groove 141 is provided on the right surface of the longitudinal bottom plate 14. A plurality of flow-limiting fluids 142 are provided on the groove wall at the input end of the disc groove 141, and each flow-limiting fluid 142 is arranged side by side along the conveying direction of the disc groove 141; the flow-limiting fluid 142 includes a flow-limiting protrusion 143 and a drainage groove 144. The flow-limiting protrusion 143 and the drainage groove 144 are respectively provided on two opposite groove walls of the disc groove 141, and the flow-limiting protrusion 143 and the drainage groove 144 are arranged relative to each other. One end of the input pipe joint 12 and the output pipe joint 13 are both connected to the longitudinal base plate 14, and the input pipe joint 12 and the output pipe joint 13 are respectively connected and communicated with the input and output ends of the disk slot 141. The cover plate 15 is sealed and mounted on the right surface of the longitudinal base plate 14. The groove wall of the disk slot 141 and the surface of the cover plate 15 together enclose the cooling disk hole 11. The cooling surface of the left electronic refrigeration plate 5 is pressed tightly against the left surface of the longitudinal base plate 14, and the cooling surface of the right electronic refrigeration plate 6 is pressed tightly against the right surface of the cover plate 15. By having the cooling water liner 1 include the longitudinal base plate 14 and the cover plate 15, it is possible to facilitate the opening of the disk slot 141 and each limiting fluid 142, thereby helping to reduce the processing difficulty of the cooling water liner 1, and thus further helping to reduce the manufacturing difficulty of the instant cooling device. The provision of each flow-limiting element 142 effectively limits flow, significantly slowing the flow of water through the cooling water bladder 1 and further increasing heat exchange, which helps further enhance the cooling quality of the instant cooling device. By providing only a number of flow-limiting elements 142 at the input end of the tray slot 141, not only does it effectively limit flow, it also prevents turbulent flow at the output end of the tray slot 141, thereby ensuring stable cold water output and preventing splashing. This further helps enhance the reliability and applicability of the instant cooling device.
[0052] like Figure 9 and Figure 12 As shown, the thermal insulation covering 23 includes a thermal insulation sleeve 233, a left thermal insulation cover plate 234, and a right thermal insulation cover plate 235. The thermal insulation sleeve 233 is sleeved on the cooling water liner 1, and the inner wall of the thermal insulation sleeve 233 is pressed against the upper and lower surfaces and the front and rear surfaces of the cooling water liner 1. The left thermal insulation cover plate 234 is placed on the left port of the thermal insulation sleeve 233, and the left thermal insulation cover plate 234 is pressed against the left surface of the cooling water liner 1. The right thermal insulation cover plate 235 is placed on the right port of the thermal insulation sleeve 233, and the right thermal insulation cover plate 235 is pressed against the right surface of the cooling water liner 1. The left contact port 231 is opened on the left thermal insulation cover plate 234, and the right contact port 232 is opened on the right thermal insulation cover plate 235. The structure of the heat-insulating covering 23 is very simple and reliable, which not only provides a very good heat-insulating effect, but also facilitates the manufacture and assembly of the heat-insulating covering 23, thereby helping to further improve the convenience of manufacturing and assembling the instant cooling device.
[0053] like Figures 7 to 11 As shown, a left reinforcing frame 216 is embedded in the opening of the left embedding hole 212, and the left electronic refrigeration board 5 is embedded in the left reinforcing frame 216. A right reinforcing frame 225 is embedded in the opening of the right embedding hole 221, and the right electronic refrigeration board 6 is embedded in the right reinforcing frame 225. The provision of the left reinforcing frame 216 and the right reinforcing frame 225 can enhance the structural strength of the embedding point of the left and right electronic refrigeration boards 5 and 6, thereby improving the stability and reliability of the installation and positioning of the left and right electronic refrigeration boards 5 and 6.
[0054] like Figures 7 to 11 As shown, the thickness of the left reinforcing frame 216 is greater than the wall thickness of the box body 21, and the thickness of the right reinforcing frame 225 is greater than the thickness of the box cover 22. In this way, the left reinforcing frame 216 and the right reinforcing frame 225 can play a good reinforcing effect.
[0055] like Figures 7 to 11 As shown, when two or more left electronic refrigeration panels 5 are used for cooling, a number of left mounting openings 217 equal to the number of left electronic refrigeration panels 5 can be opened on the left reinforcement frame 216, and each left electronic refrigeration panel 5 can be mounted in each left mounting opening 217. Similarly, when two or more right electronic refrigeration panels 6 are used for cooling, a number of right mounting openings 226 equal to the number of right electronic refrigeration panels 6 can be opened on the right reinforcement frame 225, and each right electronic refrigeration panel 6 can be mounted in each right mounting opening 226. This facilitates the stable positioning of each left electronic refrigeration panel 5 and each right electronic refrigeration panel 6, thereby effectively meeting the installation requirements of multiple left electronic refrigeration panels 5 and multiple right electronic refrigeration panels 6.
[0056] When multiple left electronic refrigeration panels 5 are used, a large left contact opening 231 can be opened on the left heat insulation cover 234 to accommodate all left electronic refrigeration panels 5. Figure 12 As shown, the same number of left contact openings 231 as the number of left electronic refrigeration panels 5 can be opened to accommodate the installation of each left electronic refrigeration panel 5. Similarly, when multiple right electronic refrigeration panels 6 are used, a large right contact opening 232 can be opened on the right heat-insulating cover 235 to accommodate the installation of all right electronic refrigeration panels 6. Figure 9 and Figure 12 As shown, right contact openings 232 can be provided, equal in number to the number of right electronic refrigeration panels 6, to accommodate the installation of each right electronic refrigeration panel 6. Providing multiple left contact openings 231 and multiple right contact openings 232 prevents gaps in the left and right insulation cover plates 234, 235. This ensures that the insulation covering 23 has a very good insulation effect, thereby ensuring the high reliability of the instant cooling device.
[0057] like Figure 1 As shown, the instant cooling device with a two-way cooling function also includes a cold water circulation component 7, which includes a cold water tank 71, a left water pump 72, a left output pipe 73, a left input pipe 74, a right water pump 75, a right output pipe 76, and a right input pipe 77. The height position of the cold water tank 71 is higher than the height positions of the left water cooling box 31 and the right water cooling box 41. The two ends of the left output pipe 73 are respectively connected to the left water cooling box 31 and the cold water tank 71, and the two ends of the left input pipe 74 are respectively connected to the left water cooling box 31 and the cold water tank 71. The left water pump 72 is connected in series to the left input pipe 74, and the two ends of the right output pipe 76 are respectively connected to the right water cooling box 41 and the cold water tank 71. The two ends of the right input pipe 77 are respectively connected to the right water cooling box 41 and the cold water tank 71, and the right water pump 75 is connected in series to the right input pipe 77. This allows the left and right water cooling tanks 31 and 41 to share a single cold water tank 71, thereby reducing manufacturing complexity and costs. This also allows for a circulating supply of cold water, thereby avoiding water waste. This not only further improves the reliability and applicability of the instant cooling device but also helps reduce operating costs. By positioning the cold water tank 71 higher than both the left and right water cooling tanks 31 and 41, cold water can be delivered by gravity, which helps reduce manufacturing complexity.
Claims
1. An instant cooling device with a two-way cooling function, characterized in that: It comprises a cooling water tank (1), an insulation box (2), a left heat dissipation component (3), and a right heat dissipation component (4), wherein A cooling disc hole (11) is provided on the cooling water bladder (1), an input pipe joint (12) is connected to the input end of the cooling disc hole (11), and an output pipe joint (13) is connected to the output end of the cooling disc hole (11); The heat preservation box (2) comprises a box body (21), a box cover (22), and a heat-insulating covering (23). A mounting groove (211) is provided on the right surface of the box body (21), and a left embedding hole (212) penetrating into the mounting groove (211) is provided on the left surface of the box body (21). The heat-insulating covering (23) is wrapped around the cooling water liner (1). A left contact opening (231) penetrating into the inner wall of the heat-insulating covering (23) is provided on the left wall of the heat-insulating covering (23), and a right contact opening (232) penetrating into the inner wall of the heat-insulating covering (23) is provided on the right wall of the heat-insulating covering (23). The cooling water liner (1) and the heat-insulating covering (23) are embedded in the mounting groove (211) together with the heat-insulating covering (23), and the input pipe joint (12) and the output pipe joint (13) are both placed outside the box body (21). The box cover (22) is mounted on the notch of the mounting groove (211), and a right embedding hole (221) is provided on the box cover (22) and penetrates into the mounting groove (211). At least one left electronic refrigeration board (5) is embedded in the left embedding hole (212), and the left electronic refrigeration board (5) is embedded in the left contact opening (231), and the cooling surface of the left electronic refrigeration board (5) is attached to the left surface of the cooling water bladder (1), and the heating surface of the left electronic refrigeration board (5) is directed to the outside of the box body (21). At least one right electronic refrigeration board (6) is embedded in the right embedding hole (221), and the right electronic refrigeration board (6) is embedded in the right contact opening (232), and the cooling surface of the right electronic refrigeration board (6) is attached to the right surface of the cooling water bladder (1), and the heating surface of the right electronic refrigeration board (6) is directed to the outside of the box cover (22); The left heat dissipation component (3) includes a left water cooling box (31), a left heat dissipation plate body (32), and a left heat dissipation fan (33); the left water cooling box (31) is attached to the heating surface of the left electronic refrigeration plate (5); one surface of the left heat dissipation plate body (32) is attached to the left surface of the left water cooling box (31); a plurality of left heat dissipation fin strips (321) are provided on the other surface of the left heat dissipation plate body (32); and the air inlet end of the left heat dissipation fan (33) is attached to each left heat dissipation fin strip (321); The right heat dissipation component (4) includes a right water cooling box (41), a right heat dissipation plate body (42), and a right heat dissipation fan (43). The right water cooling box (41) is attached to the heating surface of the right electronic refrigeration plate (6). One surface of the right heat dissipation plate body (42) is attached to the right surface of the right water cooling box (41). A plurality of right heat dissipation fin strips (421) are provided on the other surface of the right heat dissipation plate body (42). The air inlet end of the right heat dissipation fan (43) is attached to each right heat dissipation fin strip (421).
2. The instant cooling device with a two-way cooling function according to claim 1, characterized in that: The left heat dissipation plate (32) is provided with a left sleeve groove (322) on the surface facing the left water cooling box (31), and the left sleeve groove (322) is sleeved on the left water cooling box (31). The left heat dissipation plate (32) is detachably connected to the box body (21), and the left heat dissipation fan (33) is detachably connected to the left heat dissipation fin strip (321); the right heat dissipation plate (42) is provided with a right sleeve groove (422) on the surface facing the right water cooling box (41), and the right sleeve groove (422) is sleeved on the right water cooling box (41). The right heat dissipation plate (42) is detachably connected to the box cover (22), and the right heat dissipation fan (43) is detachably connected to the right heat dissipation fin strip (421).
3. The instant cooling device with a two-way cooling function according to claim 2, characterized in that: The box body (21) further comprises a first screw (34) and a first bolt (35), wherein the threaded end of the first screw (34) is passed through the left heat dissipation plate (32) and is screwed onto the box body (21) after the threaded end of the first screw (34) passes through the left heat dissipation plate (32). A first connecting strip (323) is provided on the side wall of the left heat dissipation strip (321), and a first lug (331) is provided on the side wall of the left heat dissipation fan (33). The first lug (331) is fixed to the first connecting strip (323) by a first bolt (35).
4. The instant cooling device with a two-way cooling function according to claim 2, characterized in that: It also includes a second screw (44) and a second bolt (45), wherein the threaded end of the second screw (44) is passed through the right heat dissipation plate body (42), and the threaded end of the second screw (44) is screwed onto the box cover (22) after passing through the right heat dissipation plate body (42). A second connecting strip (423) is provided on the side wall of the right heat dissipation strip (421), and a second lug (431) is provided on the side wall of the right heat dissipation fan (43), and the second lug (431) is fixed to the second connecting strip (423) by a second bolt (45).
5. The instant cooling device with a two-way cooling function according to claim 1, characterized in that: The cooling water tank (1) comprises a longitudinal bottom plate (14) and a cover plate (15); a disc groove (141) is provided on the right surface of the longitudinal bottom plate (14); a plurality of flow-limiting fluids (142) are respectively provided on the groove wall of the input end of the disc groove (141), and the flow-limiting fluids (142) are arranged side by side along the conveying direction of the disc groove (141); the flow-limiting fluids (142) comprise a flow-limiting convex portion (143) and a drainage groove (144); the flow-limiting convex portion (143) and the drainage groove (144) are respectively provided on two opposite groove walls of the disc groove (141), and the flow-limiting convex portion (143) and the drainage groove (144) are arranged opposite to each other. One end of the input pipe joint (12) and the output pipe joint (13) are connected to the longitudinal bottom plate (14), and the input pipe joint (12) and the output pipe joint (13) are respectively connected to the input end and the output end of the disk groove (141) and communicated with each other; the cover plate (15) sealing cover is installed on the right surface of the longitudinal bottom plate (14); the groove wall of the disk groove (141) and the surface of the cover plate (15) are jointly enclosed to form the cooling disk hole (11); the cooling surface of the left electronic refrigeration plate (5) is pressed against the left surface of the longitudinal bottom plate (14); the cooling surface of the right electronic refrigeration plate (6) is pressed against the right surface of the cover plate (15).
6. The instant cooling device with a two-way cooling function according to claim 1, characterized in that: The thermal insulation covering member (23) comprises a thermal insulation sleeve (233), a left thermal insulation cover plate (234), and a right thermal insulation cover plate (235). The thermal insulation sleeve (233) is sleeved on the cooling water bladder (1), and the inner wall of the thermal insulation sleeve (233) is pressed against the upper and lower surfaces and the front and rear surfaces of the cooling water bladder (1). The left thermal insulation cover plate (234) is placed on the left port of the thermal insulation sleeve (233), and the left thermal insulation cover plate (234) is pressed against the left surface of the cooling water bladder (1). The right thermal insulation cover plate (235) is placed on the right port of the thermal insulation sleeve (233), and the right thermal insulation cover plate (235) is pressed against the right surface of the cooling water bladder (1). The left contact port (231) is opened on the left thermal insulation cover plate (234), and the right contact port (232) is opened on the right thermal insulation cover plate (235).
7. The instant cooling device with a two-way cooling function according to claim 1, characterized in that: A left reinforcing frame (216) is embedded in the opening of the left embedding hole (212), and the left electronic refrigeration plate (5) is embedded in the left reinforcing frame (216). A right reinforcing frame (225) is embedded in the opening of the right embedding hole (221), and the right electronic refrigeration plate (6) is embedded in the right reinforcing frame (225).
8. The instant cooling device with bidirectional cooling function according to claim 1, characterized in that: The cold water circulation assembly (7) further comprises a cold water tank (71), a left water pump (72), a left output pipe (73), a left input pipe (74), a right water pump (75), a right output pipe (76), and a right input pipe (77). The height of the cold water tank (71) is higher than that of the left water cooling tank (31) and the right water cooling tank (41). Both ends of the left output pipe (73) are respectively connected to the left water cooling tank (31) and the cold water tank (41). (71), the two ends of the left input pipe (74) are respectively connected to the left water cooling box (31) and the cold water tank (71), the left water pump (72) is connected in series to the left input pipe (74), the two ends of the right output pipe (76) are respectively connected to the right water cooling box (41) and the cold water tank (71), the two ends of the right input pipe (77) are respectively connected to the right water cooling box (41) and the cold water tank (71), and the right water pump (75) is connected in series to the right input pipe (77).
Citation Information
Patent Citations
Thermoelectric drinking device and thermoelectric heat pump
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Drink dispenser
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