Heat dissipation type container
By designing a U-shaped structure of air-cooling chamber and storage chamber in the container, and using heat dissipation inlet and outlet fans to exchange cold air, the problem of heat accumulation inside the container is solved, ensuring the integrity of rubber products during transportation.
Patent Information
- Application Number
- CN202422967977.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-12-03
AI Technical Summary
During transportation, existing containers absorb external heat due to their metal material and have poor air flow, which causes internal heat accumulation and affects the integrity of rubber products.
A heat dissipation container is designed, which includes an air-cooling chamber and a storage chamber. A heat dissipation inlet fan, an outlet fan and an air-cooling component are used. Through the U-shaped structure of the air-cooling chamber and the storage chamber, the temperature is reduced by cold air exchange.
Effectively reduce the temperature of the storage chamber to prevent rubber items from softening and breaking due to high temperature during transportation, thus ensuring the integrity of the items.
Smart Images

Figure CN223385116U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of containers, in particular to a heat dissipation container. Background Art
[0002] A container is a group of tools that can be used to transport packaged or unpackaged goods and is easy to load, unload and transport using mechanical equipment.
[0003] However, the existing technology mostly adopts a container disclosed in the announcement number CN220621488U, which includes a lock assembly and a limit assembly. The lock assembly includes a handle, a long shaft and a hook lock component. The long shaft can be rotatably set on the container chassis, one end of the long shaft is connected to the handle, and the hook lock component is fixedly connected to the long shaft and abuts the container discharge door. The handle is provided with a baffle, and the baffle is provided with a lead seal hole. The limit assembly is located above the baffle, and includes a limit seat and a limit plate. The limit plate can be rotatably maintained in the limit seat, and the limit plate is provided with an operating hole. When the lock assembly of this technology is in a locked state, the limit plate and the outer side of the baffle are limited and abutted, and the lead seal hole is connected to the operating hole for the lead seal to penetrate. However, the above technology still has problems during use due to structural limitations:
[0004] When the container is placed in the external environment, since the above-mentioned technical container is made of metal, it is easy to absorb external heat. At the same time, the air flow of the above-mentioned technical container is poor when it is sealed, and there is a lack of active heat dissipation components, which causes the heat inside the above-mentioned technical container to continue to accumulate. If the container is used to transport rubber items, the rubber items are very likely to soften and break due to high temperature during transportation, and the integrity of the rubber items cannot be guaranteed. Utility Model Content
[0005] The utility model aims to solve the problems in the prior art of poor air flowability and lack of active heat dissipation components when the container is sealed, and proposes a heat dissipation container.
[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0007] A heat dissipation container includes a container body, wherein the container body is provided with:
[0008] An air-cooling chamber and a storage chamber, both of which are provided in the box body, the storage chamber being located at the middle end of the air-cooling chamber, and the cross-sections of the air-cooling chamber and the storage chamber forming a U-shaped structure;
[0009] A first partition frame, a heat dissipation inlet fan, a second partition frame and a heat dissipation outlet fan, wherein the first partition frame is fixedly connected to the lower end of the box body, and the upper end of the first partition frame is communicated with the storage chamber, and the lower end of the first partition frame is communicated with the outer wall of the box body, the heat dissipation inlet fan is rotatably provided at the first partition frame, the second partition frame is fixedly connected to the upper end of the box body, and the lower end of the second partition frame is communicated with the storage chamber, and the upper end of the second partition frame is communicated with the outer wall of the box body, and the heat dissipation outlet fan is rotatably provided at the second partition frame;
[0010] The air cooling component is arranged in the air cooling chamber, and the air cooling component is used to allow external cold air to flow in the air cooling chamber to reduce the temperature in the storage chamber.
[0011] Preferably, both left and right ends of the box body are rotatably mounted with opening and closing doors, the upper end of the first partition frame is integrally formed with a lower end mounting bracket, and the lower end of the lower end mounting bracket is rotatably mounted with a first rotating shaft.
[0012] Preferably, the first rotating shaft is fixedly connected to the heat dissipation inlet fan, and when the heat dissipation inlet fan rotates, the outside cold air is allowed to enter the storage chamber. The lower end of the second partition frame is integrally formed with an upper mounting bracket, and the upper end of the upper mounting bracket is rotatably mounted with a second rotating shaft, and the second rotating shaft is fixedly connected to the heat dissipation outlet fan. When the heat dissipation outlet fan rotates, the air in the storage chamber is discharged.
[0013] Preferably, the air cooling component includes:
[0014] An air inlet hole, a first rotating shaft, an air-cooling inlet fan and a middle-end mounting bracket, wherein the air inlet hole is opened at the lower end of the box body, and the air inlet hole is connected to the air-cooling chamber, the first rotating shaft is rotatably mounted on the lower inner wall of the air-cooling chamber, the air-cooling inlet fan is fixedly connected to the first rotating shaft, and the two middle-end mounting brackets are respectively fixedly mounted on the two side walls of the air-cooling chamber.
[0015] Preferably, the air cooling component further includes:
[0016] A second rotating shaft, a conveying fan, an air outlet, a third rotating shaft and an air-cooling outlet fan, the two second rotating shafts are rotatably mounted at the lower ends of the two middle-end mounting brackets, the two conveying fans are fixedly connected to the lower ends of the two second rotating shafts respectively, the air outlet is opened at the upper end of the box body, and the air outlet is connected to the air-cooling chamber, the third rotating shaft is rotatably mounted on the upper inner wall of the air-cooling chamber, and the air-cooling outlet fan is fixedly connected to the upper end of the third rotating shaft.
[0017] Preferably, when the air-cooling inlet fan rotates, the outside cold air is allowed to enter the air-cooling chamber, when the two delivery fans rotate, the air in the air-cooling chamber flows upward, and when the air-cooling outlet fan rotates, the air in the air-cooling chamber is discharged.
[0018] Compared with the prior art, the present invention has the following advantages:
[0019] The utility model first allows external cold air to enter the storage chamber to mix with the heat in the storage chamber, and then allows the air in the storage chamber to be discharged from the second partition frame to cool the storage chamber, and then allows the external cold air to enter the air-cooling chamber through the air-cooling inlet fan, and then allows the air in the air-cooling chamber to flow upward through the conveying fan and take away the heat on the inner wall of the storage chamber, and finally allows the air in the air-cooling chamber to be discharged from the air outlet through the air-cooling outlet fan to discharge the heat in the air-cooling chamber and further cool the storage chamber, so as to prevent rubber items from softening and breaking due to high temperature during transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a structural schematic diagram of a heat dissipation container proposed by the present invention;
[0021] Figure 2 This is a left-side cross-sectional schematic diagram of a heat dissipation container proposed in the present invention;
[0022] Figure 3 This is a front cross-sectional schematic diagram of a heat dissipation container proposed by the present invention.
[0023] In the figure: 1. Box body; 2. Air-cooling chamber; 3. Storage chamber; 4. First partition frame; 5. Heat dissipation inlet fan; 6. Second partition frame; 7. Heat dissipation outlet fan; 8. Opening and closing door; 9. Lower end mounting bracket; 10. First rotating shaft; 11. Upper end mounting bracket; 12. Second rotating shaft; 13. Air inlet; 14. First rotating shaft; 15. Air-cooling inlet fan; 16. Middle end mounting bracket; 17. Second rotating shaft; 18. Conveying fan; 19. Air outlet; 20. Third rotating shaft; 21. Air-cooling outlet fan. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0025] Reference Figure 1-Figure 3 A heat dissipation container includes a box body 1, in which an air cooling chamber 2 and a storage chamber 3 are provided. Figure 2As shown, the air-cooling chamber 2 and the storage chamber 3 are both opened in the box body 1, and the storage chamber 3 is located at the middle end of the air-cooling chamber 2. The cross-section of the air-cooling chamber 2 and the cross-section of the storage chamber 3 form a U-shaped structure, so that the storage chamber 3 is wrapped in the air-cooling chamber 2, so that the external heat is first transferred to the air-cooling chamber 2 and then to the storage chamber 3, so as to reduce the external heat in the storage chamber 3;
[0026] The box body 1 is also provided with a first partition frame 4, a heat dissipation inlet fan 5, a second partition frame 6 and a heat dissipation outlet fan 7. The first partition frame 4 is fixedly connected to the lower end of the box body 1, and the upper end of the first partition frame 4 is communicated with the storage chamber 3, and the lower end of the first partition frame 4 is communicated with the outer wall of the box body 1. The heat dissipation inlet fan 5 is rotatably arranged at the first partition frame 4, and the external cold air is allowed to enter the storage chamber 3 through the rotating heat dissipation inlet fan 5 and mixed with the heat in the storage chamber 3, while the second partition frame 6 is fixedly connected to the upper end of the box body 1, and the lower end of the second partition frame 6 is communicated with the storage chamber 3, and the upper end of the second partition frame 6 is communicated with the outer wall of the box body 1, and the heat dissipation outlet fan 7 is rotatably arranged at the second partition frame 6, and the heat in the storage chamber 3 is directly discharged through the rotating heat dissipation outlet fan 7 to cool the storage chamber 3;
[0027] Preferably, an air cooling component is also provided in the box body 1, and the air cooling component is arranged in the air cooling chamber 2. The air cooling component is used to allow external cold air to flow in the air cooling chamber 2 to further reduce the temperature in the storage chamber 3. At the same time, the air in the air cooling chamber 2 flows to prevent external heat from being transferred to the storage chamber 3.
[0028] Preferably, both left and right ends of the box body 1 are rotatably installed with opening and closing doors 8, and rubber items can be placed in the storage chamber 3 through the opening and closing doors 8, and the upper end of the first partition frame 4 is integrally formed with a lower end mounting bracket 9, and a built-in motor can be installed in the lower end mounting bracket 9, so that the built-in motor is fixedly connected to the first rotating shaft 10 and drives the first rotating shaft 10 to rotate.
[0029] Preferably, the first rotating shaft 10 is fixedly connected to the heat dissipation inlet fan 5. When the heat dissipation inlet fan 5 rotates, cold air from the outside is allowed to enter the storage chamber 3. The lower end of the second partition frame 6 is integrally formed with an upper mounting bracket 11. A motor can be built into the upper mounting bracket 11, and the built-in motor is fixedly connected to the second rotating shaft 12 to drive the second rotating shaft 12 to rotate. The second rotating shaft 12 is fixedly connected to the heat dissipation outlet fan 7. When the heat dissipation outlet fan 7 rotates, the air in the storage chamber 3 is discharged, and the heat in the storage chamber 3 is discharged at the same time.
[0030] Preferably, the air cooling assembly includes an air inlet hole 13, a first rotating shaft 14, an air cooling inlet fan 15 and a middle-end mounting bracket 16. The air inlet hole 13 is opened at the lower end of the box body 1, and the air inlet hole 13 is connected to the air cooling chamber 2. The first rotating shaft 14 is rotatably installed on the lower inner wall of the air cooling chamber 2. A motor can be built-in on the lower inner wall of the air cooling chamber 2, so that the built-in motor is fixedly connected to the first rotating shaft 14 and drives the first rotating shaft 14 to rotate. The air cooling inlet fan 15 is fixedly connected to the first rotating shaft 14, and the two middle-end mounting brackets 16 are respectively fixedly installed on the two side walls of the air cooling chamber 2.
[0031] The air cooling assembly also includes a second rotating shaft 17, a conveying fan 18, an air outlet 19, a third rotating shaft 20 and an air cooling outlet fan 21. The two second rotating shafts 17 are rotatably mounted at the lower ends of the two middle-end mounting brackets 16. A built-in motor can be built into the middle-end mounting bracket 16. The built-in motor is fixedly connected to the second rotating shaft 17 and drives the second rotating shaft 17 to rotate. The two conveying fans 18 are respectively fixedly connected to the lower ends of the two second rotating shafts 17. The air outlet 19 is opened at the upper end of the box body 1, and the air outlet 19 is connected to the air cooling chamber 2. The third rotating shaft 20 is rotatably mounted on the upper inner wall of the air cooling chamber 2. A built-in motor can be built into the upper inner wall of the air cooling chamber 2. The built-in motor is fixedly connected to the third rotating shaft 20 and drives the third rotating shaft 20 to rotate. The air cooling outlet fan 21 is fixedly connected to the upper end of the third rotating shaft 20.
[0032] Preferably, when the air-cooling inlet fan 15 rotates, the outside cold air is allowed to enter the air-cooling chamber 2, when the two delivery fans 18 rotate, the air in the air-cooling chamber 2 is allowed to flow upward, and when the air-cooling outlet fan 21 rotates, the air in the air-cooling chamber 2 is discharged to form an air duct in the air-cooling chamber 2, thereby preventing the outside heat from being transferred to the storage chamber 3 and cooling the inner wall of the storage chamber 3.
[0033] The functional principle of this utility model can be explained through the following operation modes:
[0034] When the storage chamber 3 is to be cooled, the first rotating shaft 10 is first driven to rotate, so that the first rotating shaft 10 drives the cooling inlet fan 5 to rotate. The rotating cooling inlet fan 5 allows the external cold air to pass through the first partition frame 4 into the storage chamber 3 to be mixed with the heat in the storage chamber 3. Then, the second rotating shaft 12 is driven to rotate, and the second rotating shaft 12 drives the cooling outlet fan 7 to rotate, so that the air in the storage chamber 3 is discharged from the second partition frame 6 to discharge the heat in the storage chamber 3.
[0035] Then, the first rotating shaft 14 is driven to rotate, and the first rotating shaft 14 drives the air-cooling inlet fan 15 to rotate, allowing the outside cold air to enter the air-cooling chamber 2 from the air inlet hole 13, and then the second rotating shaft 17 is driven to rotate, and the second rotating shaft 17 drives the conveying fan 18 to rotate, so that the air in the air-cooling chamber 2 flows upward and takes away the heat from the inner wall of the storage chamber 3, and finally, the third rotating shaft 20 is driven to rotate, and the third rotating shaft 20 drives the air-cooling outlet fan 21 to rotate, so that the air in the air-cooling chamber 2 is discharged from the air outlet hole 19, so as to discharge the heat in the air-cooling chamber 2 and further cool the storage chamber 3.
[0036] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A heat dissipation container, comprising a container body (1), characterized in that: The box body (1) is provided with: An air-cooling chamber (2) and a storage chamber (3), wherein the air-cooling chamber (2) and the storage chamber (3) are both provided in the box body (1), the storage chamber (3) is located at the middle end of the air-cooling chamber (2), and the cross-section of the air-cooling chamber (2) and the cross-section of the storage chamber (3) form a U-shaped structure; A first partition frame (4), a heat dissipation inlet fan (5), a second partition frame (6) and a heat dissipation outlet fan (7), wherein the first partition frame (4) is fixedly connected to the lower end of the box body (1), and the upper end of the first partition frame (4) is communicated with the storage chamber (3), and the lower end of the first partition frame (4) is communicated with the outer wall of the box body (1), the heat dissipation inlet fan (5) is rotatably arranged at the first partition frame (4), the second partition frame (6) is fixedly connected to the upper end of the box body (1), and the lower end of the second partition frame (6) is communicated with the storage chamber (3), and the upper end of the second partition frame (6) is communicated with the outer wall of the box body (1), and the heat dissipation outlet fan (7) is rotatably arranged at the second partition frame (6); An air cooling component is provided in the air cooling chamber (2), and is used to allow external cold air to flow in the air cooling chamber (2) to reduce the temperature in the storage chamber (3).
2. A heat dissipation container according to claim 1, characterized in that: The box body (1) is rotatably mounted with an opening and closing door (8) at both left and right ends. The upper end of the first partition frame (4) is integrally formed with a lower end mounting bracket (9), and the lower end of the lower end mounting bracket (9) is rotatably mounted with a first rotating shaft (10).
3. A heat dissipation container according to claim 2, characterized in that: The first rotating shaft (10) is fixedly connected to the heat dissipation inlet fan (5). When the heat dissipation inlet fan (5) rotates, the outside cold air is allowed to enter the storage chamber (3). The lower end of the second partition frame (6) is integrally formed with an upper end mounting bracket (11). The upper end of the upper end mounting bracket (11) is rotatably mounted with a second rotating shaft (12). The second rotating shaft (12) is fixedly connected to the heat dissipation outlet fan (7). When the heat dissipation outlet fan (7) rotates, the air in the storage chamber (3) is discharged.
4. A heat dissipation container according to claim 3, characterized in that: The air cooling component includes: An air inlet hole (13), a first rotating shaft (14), an air-cooling air inlet fan (15) and a middle-end mounting bracket (16), wherein the air inlet hole (13) is opened at the lower end of the box body (1), and the air inlet hole (13) is connected to the air-cooling chamber (2), the first rotating shaft (14) is rotatably mounted on the lower inner wall of the air-cooling chamber (2), the air-cooling air inlet fan (15) is fixedly connected to the first rotating shaft (14), and the two middle-end mounting brackets (16) are respectively fixedly mounted on the two side walls of the air-cooling chamber (2).
5. The heat dissipation container according to claim 4, characterized in that: The air cooling assembly further comprises: A second rotating shaft (17), a conveying fan (18), an air outlet (19), a third rotating shaft (20) and an air-cooling outlet fan (21), wherein the two second rotating shafts (17) are rotatably mounted at the lower ends of the two middle-end mounting brackets (16), the two conveying fans (18) are fixedly connected to the lower ends of the two second rotating shafts (17), the air outlet (19) is opened at the upper end of the box body (1), and the air outlet (19) is connected to the air-cooling chamber (2), the third rotating shaft (20) is rotatably mounted at the upper inner wall of the air-cooling chamber (2), and the air-cooling outlet fan (21) is fixedly connected to the upper end of the third rotating shaft (20).
6. The heat dissipation container according to claim 5, characterized in that: When the air-cooling inlet fan (15) rotates, the outside cold air is allowed to enter the air-cooling chamber (2); when the two conveying fans (18) rotate, the air in the air-cooling chamber (2) is allowed to flow upward; when the air-cooling outlet fan (21) rotates, the air in the air-cooling chamber (2) is allowed to be discharged.