Movable refrigerating device
By installing an air outlet and air guide plate assembly on the top of the portable air conditioner, cold air is blown upwards and falls to the ground, solving the problem of the limited range of cold air utilization in existing portable air conditioners and improving the cooling range and efficiency.
Patent Information
- Application Number
- CN202423153886.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Most existing portable air conditioners blow air horizontally, which is not high enough. The range of air that can be used to cool the air is less than half the height of a person, resulting in poor cooling efficiency.
A mobile refrigeration device is designed. By setting an air outlet on the top of the refrigeration housing and using an air guide plate assembly and an air duct assembly, the cold air is blown upward and falls to the ground due to gravity, thereby achieving effective circulation and refrigeration of indoor air.
It improves the cooling range and efficiency, allowing for a wider range of cold air utilization and superior cooling efficiency.
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Figure CN223740911U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the air conditioning technical field, more particularly, to a mobile refrigeration device. BACKGROUND
[0002] Currently, the mobile air conditioners in the industry are mostly of the front air outlet form, and the blowing mode of the mobile air conditioner of the front air outlet form is mostly flat blowing, but the height of the flat blowing is generally about 0.6 m, so that the air supply height is not high enough, and the cold air blown out from the mobile air conditioner has a larger density than the original air in the room, and the cold air is basically concentrated in the space range from the ground to the height of the air outlet due to the action of gravity, so that the cold air range in the room is less than half of the height of a person, and the cold air utilization effect is poor.
[0003] Therefore, the prior art still needs to be improved. CONTENT OF THE UTILITY MODEL
[0004] The present application aims to provide a mobile refrigeration device to solve the problem that the blowing mode of the existing mobile air conditioner is mostly flat blowing, the height of the flat blowing is not high enough, the cold air range in the room is less than half of the height of a person, and the cold air utilization effect is poor.
[0005] To achieve the above-mentioned purpose, the technical solution adopted by the embodiments of the present application is:
[0006] A mobile refrigeration device, comprising:
[0007] A refrigeration shell, a top of which is provided with an air outlet;
[0008] An air deflector assembly, which is rotatably arranged on the refrigeration shell and located at the air outlet, and the air deflector assembly can open or cover the air outlet by rotation;
[0009] An air duct assembly, which is arranged in the refrigeration shell and used to generate cold air to blow out of the refrigeration shell through the air outlet.
[0010] The mobile refrigeration device as described above, the air deflector assembly comprises:
[0011] A first air deflector, one end of which is rotatably arranged on one side of the refrigeration shell and the other end of which is rotatably arranged on the other side of the refrigeration shell;
[0012] A second air deflector, which is arranged on one side of the first air deflector, one end of the second air deflector being rotatably arranged on one side of the refrigeration shell and the other end of the second air deflector being rotatably arranged on the other side of the refrigeration shell.
[0013] The mobile refrigeration device as described above, further comprising:
[0014] The driving assembly is fixed on the refrigeration shell, and the driving end of the driving assembly is connected with the first and second air deflectors respectively.
[0015] The second air deflector rotates relative to the refrigeration shell through the driving of the driving assembly to open or cover the air outlet.
[0016] The mobile refrigeration device as described above, the driving assembly comprises:
[0017] The driving member is fixed on the refrigeration shell;
[0018] The first rotating shaft linkage member is connected with the driving end of the driving member at one end and connected with the first air deflector passing through the refrigeration shell at the other end;
[0019] The second rotating shaft linkage member is connected with the second air deflector passing through the refrigeration shell;
[0020] The connecting member is connected with the first rotating shaft linkage member at one end and connected with the second rotating shaft linkage member at the other end.
[0021] The mobile refrigeration device as described above, one end of the first air deflector is provided with a first rotating rod, and the other end is provided with a first connecting column, the first rotating rod and the first connecting column are respectively rotatably arranged on the two ends of the refrigeration shell, a first connecting groove is formed in one end of the refrigeration shell through which the first connecting column passes, and the first rotating shaft linkage member is embedded in the first connecting groove.
[0022] The mobile refrigeration device as described above, one end of the second air deflector is provided with a second rotating rod, and the other end is provided with a second connecting column, the second rotating rod and the second connecting column are respectively rotatably arranged on the two ends of the refrigeration shell, a second connecting groove is formed in one end of the refrigeration shell through which the second connecting column passes, and the second rotating shaft linkage member is embedded in the second connecting groove.
[0023] The mobile refrigeration device as described above, the refrigeration shell comprises:
[0024] The top cover, the air outlet is formed in the top cover, and the air deflector assembly is rotatably arranged on the top cover;
[0025] The front shell is arranged below the top cover and connected with the top cover;
[0026] The rear shell is arranged below the top cover and connected with the top cover.
[0027] The mobile refrigeration device as described above, the top cover is provided with a mounting seat at the circumference of the air outlet, and the air deflector assembly is rotatably arranged on the mounting seat.
[0028] The mobile refrigeration device as described above, the air duct assembly comprises a fan, and the fan is used to blow cold air out of the refrigeration shell through the air outlet.
[0029] The mobile refrigeration device as described above, the first air deflector and the second air deflector are both provided with a plurality of.
[0030] The mobile refrigeration device provided by the application has at least the following beneficial effects:
[0031] When the mobile refrigeration device works, the air deflector assembly is rotated to open the air outlet, the air duct assembly blows cold air upward, the cold air is blown out of the top of the mobile refrigeration device through the air outlet, and the cold air blown out of the top of the mobile refrigeration device falls to the ground due to the gravity of the cold air being heavier than the original hot air in the room, thereby realizing effective circulation refrigeration of indoor air. Compared with the flat blowing mode of cold air in the traditional mobile air conditioner, the air outlet of the application is arranged at the top of the mobile refrigeration device, so that the refrigeration range is larger and the refrigeration efficiency is better. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.
[0033] Figure 1 A structural schematic diagram of a mobile refrigeration device provided by the application.
[0034] Figure 2 An exploded view of a mobile refrigeration device provided by the application.
[0035] Figure 3 A structural schematic diagram of an air duct assembly in a mobile refrigeration device provided by the application.
[0036] Figure 4 A sectional view of Figure 1
[0037] Figure 5 An enlarged view of A of Figure 4
[0038] Figure 6 An enlarged view of B of Figure 4
[0039] Figure 7 A structural schematic diagram of a mobile refrigeration device provided by the application, in which the front shell, the rear cover and the air duct assembly are removed from one angle.
[0040] Figure 8 A structural schematic diagram of Figure 7 after removing the driving member.
[0041] Figure 9 Another angle structural schematic view of the mobile refrigeration device without the front shell, the rear cover and the air duct assembly is provided for the embodiments of the present application.
[0042] Figure 10 An exploded view of the driving assembly in the mobile refrigeration device is provided for the embodiments of the present application.
[0043] Figure 11 A structural schematic view of the first air deflector in the mobile refrigeration device is provided for the embodiments of the present application.
[0044] Figure 12 A structural schematic view of the second air deflector in the mobile refrigeration device is provided for the embodiments of the present application.
[0045] In the drawings, various reference numbers refer to the following:
[0046] 1, refrigeration shell; 11, top cover; 111, air outlet; 12, front shell; 13, rear shell; 14, mounting seat; 2, air deflector assembly; 21, first air deflector; 211, first rotating rod; 212, first connecting column; 213, first connecting groove; 22, second air deflector; 221, second rotating rod; 222, second connecting column; 223, second connecting groove; 3, air duct assembly; 4, driving assembly; 41, driving piece; 42, first rotating shaft linkage; 43, second rotating shaft linkage; 44, connecting piece. DETAILED DESCRIPTION
[0047] In order to make the technical problems, technical solutions and beneficial effects of the present application clearer, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.
[0048] It should be noted that when a component is referred to as being "fixed to" or "disposed on" another component, it can be directly or indirectly on the other component. When a component is referred to as being "connected to" another component, it can be directly or indirectly connected to the other component. The terms "upper", "lower", "left", "right", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or position shown in the drawings, and are only for the convenience of description, and cannot be understood as a limitation on the technical solutions. The terms "first", "second" are only for the convenience of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features. The meaning of "a plurality of" is two or more, unless otherwise specifically limited.
[0049] Currently, the mobile air conditioners in the industry are mostly of the front air outlet type, and the blowing mode of the mobile air conditioner of the front air outlet type is mostly flat blowing. However, the height of the flat blowing is generally about 0.6 m. Since the height of the air supply is not high enough, and the density of the cold air blown out from the mobile air conditioner is greater than that of the original air in the room, the cold air is basically concentrated in the space range from the ground to the height of the air outlet due to the action of gravity. The cold air range in the room is less than half of the height of a person, and the cold air utilization effect is poor.
[0050] To this end, with reference to Figure 1 、 Figure 2 and Figure 3 , the embodiment of the present application provides a mobile refrigeration device, which comprises a refrigeration shell 1, an air deflector assembly 2 and an air duct assembly 3. The top of the refrigeration shell 1 is provided with an air outlet 111. The air deflector assembly 2 is rotationally arranged on the refrigeration shell 1 and located at the air outlet 111. The air deflector assembly 2 can open or cover the air outlet 111 by rotation. The air duct assembly 3 is arranged in the refrigeration shell 1 and used for blowing cold air out of the refrigeration shell 1 through the air outlet 111. When the mobile refrigeration device works, the air deflector assembly 2 is rotated to open the air outlet 111. The air duct assembly 3 blows cold air upward. The cold air is blown out of the top of the mobile refrigeration device through the air outlet 111. The cold air blown out of the top of the mobile refrigeration device falls to the ground due to the action of gravity because the cold air is heavier than the original hot air in the room. Thus, the effective circulation refrigeration of the air in the room is realized. Compared with the flat blowing mode of the cold air in the conventional mobile air conditioner, the air outlet 111 of the embodiment is arranged at the top of the mobile refrigeration device. The refrigeration range is larger, and the refrigeration efficiency is better.
[0051] Optionally, with reference to Figure 2 and Figure 7 , in an embodiment, the refrigeration shell 1 comprises a top cover 11, a front shell 12 and a rear shell 13. The air outlet 111 is arranged on the top cover 11. The top cover 11 is provided with a mounting seat 14 at the periphery of the air outlet 111. The air deflector assembly 2 is rotationally arranged on the mounting seat 14. The front shell 12 is arranged below the top cover 11 and connected with the top cover 11. The rear shell 13 is arranged below the top cover 11 and connected with the top cover 11. The top cover 11, the front shell 12 and the rear shell 13 are enclosed to form the refrigeration shell 1.
[0052] Optionally, with reference to Figure 7 、 Figure 8 and Figure 9 , in an embodiment, the air deflector assembly 2 comprises a first air deflector 21 and a second air deflector 22. One end of the first air deflector 21 is rotationally arranged on one side of the mounting seat 14, and the other end is rotationally arranged on the other side of the mounting seat 14. The second air deflector 22 is arranged on one side of the first air deflector 21.
[0053] The second air deflector 22 can be connected with the first air deflector 21 through the connecting piece 44 and be arranged to rotate relative to the refrigeration housing 1 through the rotation of the first air deflector 21. Alternatively, one end of the second air deflector 22 is arranged to rotate on one side of the mounting seat 14, and the other end is arranged to rotate on the other side of the mounting seat 14.
[0054] Optionally, referring to Figure 7 and Figure 8 , in an embodiment, one end of the second air deflector 22 is arranged to rotate on one side of the mounting seat 14, and the other end is arranged to rotate on the other side of the mounting seat 14.
[0055] Optionally, referring to Figure 7 , Figure 8 and Figure 9 , in an embodiment, the mobile refrigeration device further comprises a driving assembly 4, a fixed end of the driving assembly 4 is arranged on the mounting seat 14, and a driving end of the driving assembly 4 is connected with the first air deflector 21 and the second air deflector 22 respectively. The second air deflector 22 is arranged to rotate relative to the mounting seat 14 through the driving of the driving assembly 4, so as to open or cover the air outlet 111.
[0056] Optionally, in an embodiment, the driving assembly 4 can be arranged as follows: the driving assembly 4 comprises two driving pieces 41, one of which is used to drive the first air deflector 21, and the other of which is used to drive the second air deflector 22.
[0057] Optionally, referring to Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 10 , in an embodiment, in order to make the first air deflector 21 and the second air deflector 22 open or cover the air outlet 111 synchronously, the driving assembly 4 can be arranged as follows: the driving assembly 4 comprises a driving piece 41, a first rotation shaft linkage 42, a second rotation shaft linkage 43 and a connecting piece 44. A fixed end of the driving piece 41 is arranged on the mounting seat 14. One end of the first rotation shaft linkage 42 is connected with a driving end of the driving piece 41, and the other end is connected with the first air deflector 21 which penetrates through the mounting seat 14. The second rotation shaft linkage 43 is connected with the second air deflector 22 which penetrates through the mounting seat 14. One end of the connecting piece 44 is connected with the first rotation shaft linkage 42, and the other end is connected with the second rotation shaft linkage 43.
[0058] Optionally, referring to Figure 11In an embodiment, the left end of the first air deflector 21 is provided with a first rotating rod 211, the right end of the first air deflector 21 is provided with a first connecting column 212, the first rotating rod 211 and the first connecting column 212 are respectively rotationally arranged on the two ends of the mounting seat 14, the first connecting column 212 passes through the first connecting groove 213 opened in one end of the mounting seat 14, and the first rotating shaft linkage 42 is embedded in the first connecting groove 213 close to one end of the mounting seat 14. Through the arrangement of the first rotating rod 211 and the first connecting column 212, the first air deflector 21 can be rotationally arranged on the mounting seat 14. Through the arrangement of the first connecting groove 213, the first rotating shaft linkage 42 can be stably connected with the first air deflector 21.
[0059] Optionally, referring to Figure 12 In an embodiment, the left end of the second air deflector 22 is provided with a second rotating rod 221, the right end of the second air deflector 22 is provided with a second connecting column 222, the second rotating rod 221 and the second connecting column 222 are respectively rotationally arranged on the two ends of the mounting seat 14, the second connecting column 222 passes through the second connecting groove 223 opened in one end of the mounting seat 14, and the second rotating shaft linkage 43 is embedded in the second connecting groove 223 close to one end of the mounting seat 14. Through the arrangement of the second rotating rod 221 and the second connecting column 222, the second air deflector 22 can be rotationally arranged on the mounting seat 14. Through the arrangement of the second connecting groove 223, the second rotating shaft linkage 43 can be stably connected with the second air deflector 22.
[0060] Optionally, in an embodiment, the first air deflector 21 and the second air deflector 22 can also be provided with a plurality of, through the arrangement of a plurality of first air deflectors 21 and second air deflectors 22, the area of the air outlet 111 can be correspondingly enlarged, so that the refrigeration range of the mobile refrigeration device is larger, and the refrigeration efficiency is better.
[0061] Optionally, in an embodiment, the height of the air outlet 111 relative to the ground is not less than 1.5 m.
[0062] Optionally, in an embodiment, the driving member 41 can be provided as a motor.
[0063] To sum up, the mobile refrigeration device provided by the application comprises a refrigeration shell 1, a deflector assembly 2 and an air duct assembly 3, the top of the refrigeration shell 1 is provided with an air outlet 111, the deflector assembly 2 is rotationally arranged on the refrigeration shell 1 and located at the air outlet 111, the deflector assembly 2 can open or cover the air outlet 111 by rotation, and the air duct assembly 3 is arranged in the refrigeration shell 1 and used for blowing cold air out of the refrigeration shell 1 through the air outlet 111. When the mobile refrigeration device works, the deflector assembly 2 is rotated to open the air outlet 111, and the air duct assembly 3 blows cold air upward, which is blown out of the top of the mobile refrigeration device through the air outlet 111, and the cold air blown out of the top of the mobile refrigeration device is heavier than the original hot air in the room and falls to the ground due to the action of gravity, thereby realizing effective circulation refrigeration of indoor air. Compared with the flat blowing mode of cold air in the traditional mobile air conditioner, the air outlet 111 is arranged at the top of the mobile refrigeration device in the embodiment, so that the refrigeration range is larger and the refrigeration efficiency is better.
[0064] The above only describes the preferred embodiments of the application and is not used to limit the application, and any modification, equivalent replacement and improvement made within the spirit and principle of the application should be included in the protection scope of the application.
Claims
1. A mobile refrigeration apparatus, characterized by, The application relates to a mobile refrigeration device. The refrigeration device comprises a refrigeration shell, an air outlet is formed on the top of the refrigeration shell, a guide vane assembly is rotatably arranged on the refrigeration shell and located at the air outlet, the guide vane assembly can open or cover the air outlet by rotation, and an air duct assembly is arranged in the refrigeration shell and used for generating cold air to be blown out of the refrigeration shell through the air outlet. The guide vane assembly comprises a first guide vane, one end of which is rotatably arranged on one side of the refrigeration shell and the other end is rotatably arranged on the other side of the refrigeration shell, and a second guide vane is arranged on one side of the first guide vane, one end of the second guide vane is rotatably arranged on one side of the refrigeration shell and the other end is rotatably arranged on the other side of the refrigeration shell. The mobile refrigeration device further comprises a driving assembly, the fixed end of the driving assembly is arranged on the refrigeration shell, the driving end of the driving assembly is connected with the first guide vane and the second guide vane respectively, and the second guide vane is rotatable relative to the refrigeration shell through the driving of the driving assembly to open or cover the air outlet.
2. The mobile refrigeration apparatus of claim 1, wherein, The driving assembly comprises a driving member, the fixed end of the driving member is arranged on the refrigeration shell, a first rotating shaft linkage member, one end of which is connected with the driving end of the driving member and the other end is connected with the first guide vane penetrating through the refrigeration shell, a second rotating shaft linkage member connected with the second guide vane penetrating through the refrigeration shell, and a connecting member, one end of which is connected with the first rotating shaft linkage member and the other end is connected with the second rotating shaft linkage member. One end of the first guide vane is provided with a first rotating rod and the other end is provided with a first connecting column, the first rotating rod and the first connecting column are rotatably arranged on the two ends of the refrigeration shell respectively, a first connecting groove is formed in one end of the first connecting column penetrating through the refrigeration shell, and the first rotating shaft linkage member is embedded in the first connecting groove. One end of the second guide vane is provided with a second rotating rod and the other end is provided with a second connecting column, the second rotating rod and the second connecting column are rotatably arranged on the two ends of the refrigeration shell respectively, a second connecting groove is formed in one end of the second connecting column penetrating through the refrigeration shell, and the second rotating shaft linkage member is embedded in the second connecting groove.
3. The mobile refrigeration apparatus of claim 2, wherein, The refrigeration shell comprises a top cover, the air outlet is formed on the top cover, the guide vane assembly is rotatably arranged on the top cover, a front shell arranged below the top cover and connected with the top cover, and a rear shell arranged below the top cover and connected with the top cover. The top cover is provided with a mounting seat at the circumference of the air outlet, and the guide vane assembly is rotatably arranged on the mounting seat. The air duct assembly comprises a fan used for blowing cold air out of the refrigeration shell through the air outlet.
4. The mobile refrigeration apparatus of claim 3, wherein, The first guide vane and the second guide vane are both provided with a plurality of. 5. The mobile refrigeration apparatus of claim 4, wherein, 6. The mobile refrigeration apparatus of claim 4, wherein, 7. The mobile refrigeration apparatus of claim 1, wherein, 8. The mobile refrigeration apparatus of claim 7, wherein, 9. The mobile refrigeration apparatus of claim 1, wherein, 10. The mobile refrigeration apparatus of claim 2, wherein,