Refrigeration device
By designing the installation structure of slots and plug-in boards on the bottom wall of the compressor chamber, combined with reinforcement and fixing arms, the problem of difficult disassembly and replacement of the condensing fan is solved, and the fan is easily installed and efficiently maintained, reducing the difficulty of refrigerator maintenance.
Patent Information
- Application Number
- CN202422543529.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-21
AI Technical Summary
In the prior art, the installation structure of the condensing fan makes it difficult to disassemble and replace the fan in the compressor compartment, especially in the compressor compartment with a small space, repair and replacement are very time-consuming and labor-intensive.
The bottom wall of the compressor chamber is provided with relatively spaced first slots and second slots, and are connected to the first support plates and the second support plates on both sides of the support base. The bottom ends of the first support plates and the second support plates are bent and extended with plug-in plates. The plug-in plates are detachably inserted into the slots, and combined with the design of the reinforcement and the fixing arm, a stable mounting bracket structure is formed.
It simplifies the installation process of the fan, improves the efficiency of maintenance and replacement, reduces the installation difficulty, enhances the stability of the fan and the structural strength of the compressor chamber, and facilitates the installation and disassembly of the operator.
Smart Images

Figure CN223216542U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of household appliances, mainly to a refrigeration device. Background Art
[0002] A refrigerator is a device that stores items at a constant low temperature and is widely used in contemporary life or industrial production.
[0003] The bottom of the refrigerator is equipped with a compressor compartment for installing refrigeration components such as the compressor and condenser. Currently, in order to enhance heat exchange in the compressor compartment, a condensing fan needs to be added for forced air cooling.
[0004] Conventional condenser fan motors are highly standardized, primarily mounted on the bottom of the compressor compartment via brackets. However, when the motor or fan blades need to be replaced or repaired, tools are required to remove the screw connections at the bottom. This is difficult due to the small space and low height within the compressor compartment, making repairs and replacements very time-consuming and labor-intensive. Utility Model Content
[0005] Based on the problem in the prior art that the installation structure of the condensing fan makes it difficult to dismantle and replace the fan in the compressor compartment, a refrigeration device is provided.
[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0007] 18. The refrigeration device of claim 17, wherein the cooling fan is mounted on a chassis and the cooling fan is mounted on a chassis rim. The cooling fan is mounted on a chassis rim. The cooling fan is mounted on a chassis rim. The connecting plate is bent and extended from the bottom end of the first support plate toward the side away from the first support plate; wherein, the fan is fixed on the top of the supporting platform, and the bottom wall of the compressor chamber is provided with a first slot and a second slot arranged opposite to each other; the first slot is located on the side of the first support plate away from the second support plate, and the first slot is provided with a first entrance and exit on the side facing the first support plate; the first plug-in board is plugged into the first slot through the first entrance and exit, and the first plug-in board can be detachably plugged into the first slot; the second slot is located on the side of the second support plate away from the first support plate, and the second slot is provided with a second entrance and exit on the side facing the second support plate; the second plug-in board is plugged into the second slot through the second entrance and exit, and the second plug-in board can be detachably plugged into the second slot.
[0008] The present application discloses a refrigeration device, which comprises a first slot and a second slot spaced relatively apart on the bottom wall of the compressor chamber, and a first support plate and a second support plate connected to both sides of a support base, wherein the bottom end of the first support plate is bent and extended toward a side away from the second support plate and is provided with a first plug-in plate, and the bottom end of the second support plate is bent and extended toward a side away from the first support plate and is provided with a second plug-in plate, and the first plug-in plate and the second plug-in plate are respectively detachably plugged into the first slot and the second slot of the bottom wall of the compressor chamber, so that the mounting bracket can be installed on the bottom wall of the compressor chamber or removed from the bottom wall of the compressor chamber, making the process of installing the fan simpler and faster, not only saving installation time but also reducing installation difficulty. Especially in a small space in the compressor chamber, the efficiency and convenience of repairing and replacing the fan are effectively improved, and the maintenance difficulty of the refrigerator is reduced.
[0009] In some embodiments of the present application, a refrigeration device is provided, wherein the bottom wall of the compressor chamber is provided with a first reinforcement, the first reinforcement is provided on the side of the first support plate away from the second support plate, the first slot is formed between the first reinforcement and the bottom wall of the compressor chamber, the upper and lower sides of the first plug-in board are clamped between the first reinforcement and the bottom wall of the compressor chamber; at least one side of the first reinforcement is connected to the bottom wall of the compressor chamber, and the first entrance and exit is provided on the side of the first reinforcement facing the first support plate.
[0010] Another technical solution among the above technical solutions has the following advantages or beneficial effects: by providing a first reinforcement member on the bottom wall of the compressor chamber, a first slot is formed between the first reinforcement member and the bottom wall of the compressor chamber. When the first plug-in board is inserted into the first slot so that the first plug-in board is clamped to the bottom wall of the compressor chamber, the upper and lower sides of the first support plate can be firmly clamped between the first reinforcement member and the bottom wall of the compressor chamber. This not only provides additional support for the first support plate, but also helps maintain the stability and reliability of the fan after installation. On the other hand, the provision of the first reinforcement member enhances the overall structural strength of the bottom wall of the compressor chamber, providing a foundation for the stable installation of the fan.
[0011] In some embodiments of the present application, a refrigeration device is provided, wherein the mounting bracket further includes a first fixing plate, and the first fixing plate is provided on the side of the first support plate facing away from the second support plate; a first fixing arm is provided at the top of the first reinforcement member extending upward, and the first fixing plate is connected to the first fixing arm.
[0012] Another technical solution of the above technical solution has the following advantages or beneficial effects: by arranging the first fixing plate and the first fixing arm opposite each other and connecting them together, the second plug-in board can be prevented from being disengaged from the second slot, further improving the connection stability between the first plug-in board and the first slot. Furthermore, because the first fixing arm extends upward from the top of the first reinforcement member, the connection between the first fixing arm and the first fixing plate can be separated from the bottom of the compressor chamber by a certain distance, making installation and removal more convenient for operators.
[0013] In some embodiments of the present application, a refrigeration device is provided, wherein the first reinforcement member is provided with a third entrance and exit, the third entrance and exit are arranged adjacent to the first entrance and exit, and the first plug-in board can be detachably plugged into the first slot along the third entrance and exit.
[0014] Another technical solution among the above technical solutions has the following advantages or beneficial effects: by providing a third entrance and exit adjacent to the first entrance and exit on the first reinforcement, the first plug-in board can not only be inserted into the first slot along the side of the first entrance and exit, but the first support plate can also be inserted into the first slot along the front-to-back direction through the third entrance and exit, thereby increasing the path options for the first plug-in board to extend into the first slot, and also providing more flexibility for the installation and disassembly of the fan.
[0015] In some embodiments of the present application, a refrigeration device is provided, wherein the first fixing arm is located at the first reinforcement member near the third entrance and exit, and the bottom end of the first fixing plate extends downward and is connected to the first plug-in board; when the first plug-in board is inserted into the first slot along the third entrance and exit, the first fixing and the first fixing arm can offset each other, so that the first fixing plate and the first fixing arm can be relatively connected and fixed.
[0016] Another technical solution of the above technical solution has the following advantages or beneficial effects: during installation of the mounting bracket in the compressor compartment, as the first plug-in board is inserted into the first slot along the third access opening, the first fixing arm can be relatively connected and fixed to the first fixing plate at the third access opening. Furthermore, during insertion of the first plug-in board into the first slot, the first fixing arm and the first fixing arm abut against each other, thus securing the fan in place. This facilitates rapid positioning and secure fixation during installation. Furthermore, by extending the bottom end of the first fixing plate downward and connecting it to the first plug-in board, the connection strength between the first fixing plate and the first plug-in board is enhanced, providing an additional support point for secure installation of the fan.
[0017] In some embodiments of the present application, a refrigeration device is provided, wherein the bottom wall of the compressor chamber is provided with a first opening, and the bottom wall of the compressor chamber is provided with a first abutment protruding toward the first opening; the first reinforcement member is connected at the edge of the first opening, and the first reinforcement member is recessed to form a first air avoidance groove, and the first air avoidance groove and the first abutment portion are arranged opposite to each other up and down, and the upper and lower sides of the first plug board are clamped between the first reinforcement member and the first abutment portion.
[0018] Another technical solution among the above technical solutions has the following advantages or beneficial effects: by forming a first air avoidance groove by recessing at the upper and lower relative positions of the first reinforcement and the first abutting portion, the material usage of the first reinforcement can be saved, thereby reducing the production and manufacturing costs. At the same time, since the first plug-in board is clamped between the first reinforcement and the first abutting portion, the design of the first air avoidance groove will not affect the connection strength of the first plug-in board fixed to the bottom plate of the compressor chamber.
[0019] In some embodiments of the present application, a refrigeration device is provided, wherein the bottom wall of the compressor chamber is provided with a second reinforcement, the second reinforcement is provided on the side of the second support plate away from the first support plate, the second slot is formed between the second reinforcement and the bottom wall of the compressor chamber, the upper and lower sides of the second plug-in board are clamped between the second reinforcement and the bottom wall of the compressor chamber; at least one side of the second reinforcement is connected to the bottom wall of the compressor chamber, and the second entrance and exit is provided on the side of the second reinforcement facing the second support plate.
[0020] Another technical solution among the above technical solutions has the following advantages or beneficial effects: by providing a second reinforcement member on the bottom wall of the compressor chamber, a second slot is formed between the second reinforcement member and the bottom wall of the compressor chamber. When the second plug-in board is placed in the second slot so that the second plug-in board is connected to the bottom wall of the compressor chamber, the upper and lower sides of the second support plate can be firmly clamped between the second reinforcement member and the bottom wall of the compressor chamber. The provision of the second reinforcement member not only provides additional support for the second support plate, but also helps maintain the stability and reliability of the fan after installation. On the other hand, the provision of the second reinforcement member also enhances the overall structural strength of the bottom wall of the compressor chamber, providing a foundation for the stable installation of the fan.
[0021] In some embodiments of the present application, a refrigeration device is provided, wherein the mounting bracket also includes a second fixing plate, and the first fixing plate is provided on the side of the second support plate facing away from the first support plate; a second fixing arm is extended upward from the top of the second reinforcement, and the second fixing plate is connected to the second fixing arm.
[0022] Another technical solution among the above technical solutions has the following advantages or beneficial effects: by arranging the second fixing plate and the second fixing arm relative to each other and connecting them together, the connection stability between the second plug-in plate and the second slot can be further improved, thereby preventing the second plug-in plate from being detached from the second slot and causing the fan to fall. Moreover, the connection between the second fixing plate and the second fixing arm can further enhance the overall structural strength of the mounting bracket, thereby improving the installation stability of the fan. On the other hand, since the second fixing arm is extended upward from the top of the second reinforcement, the connection between the second fixing arm and the second fixing plate can have a certain spacing from the bottom of the compressor chamber, making it more convenient for operators to install and disassemble, and reducing the difficulty of the installation process or subsequent maintenance and replacement processes.
[0023] In some embodiments of the present application, a refrigeration device is provided, wherein the second reinforcement member is provided with a fourth entrance and exit, the second entrance and exit are arranged adjacent to the fourth entrance and exit, and the second plug-in board can be detachably plugged into the second slot along the fourth entrance and exit.
[0024] Another technical solution of the above technical solution has the following advantages or beneficial effects: by providing the second reinforcement member with a fourth access opening adjacent to the second access opening, the second plug-in board can be inserted into the second slot not only along the side of the second access opening but also in the front-to-back direction through the fourth access opening. The provision of the fourth access opening increases the number of paths for the second plug-in board to be inserted into the second slot and provides greater flexibility in installation and removal of the fan.
[0025] In some embodiments of the present application, a refrigeration device is provided, wherein the second fixing arm is located at the second reinforcement member near the fourth entrance and exit, and one end of the second fixing plate extends downward and is connected to the second plug-in board; when the second plug-in board is inserted into the second slot along the fourth entrance and exit, the second fixing and the second fixing arm can offset each other so that the second fixing plate and the second fixing arm can be relatively connected and fixed.
[0026] Another technical solution of the above technical solution has the following advantages or beneficial effects: during installation of the mounting bracket in the compressor compartment, as the second plug-in board is inserted into the second slot along the fourth access opening, the second fixing arm can be relatively connected and fixed to the second fixing board at the fourth access opening. Furthermore, during insertion of the second plug-in board into the second slot, the second fixing arm abuts against the second fixing arm, facilitating rapid positioning and secure fixation of the mounting bracket during installation.
[0027] In some embodiments of the present application, a refrigeration device is provided, wherein the bottom wall of the compressor chamber is provided with a second opening, and the bottom wall of the compressor chamber is provided with a second abutment protruding toward the second opening; the second reinforcement member is connected at the edge of the second opening, and the second reinforcement member is recessed to form a second air avoidance groove, and the second air avoidance groove and the second abutment portion are arranged opposite to each other up and down, and the upper and lower sides of the second plug-in board are clamped between the second reinforcement member and the second abutment portion.
[0028] Another technical solution among the above technical solutions has the following advantages or beneficial effects: a second abutment portion is provided through the bottom wall of the compressor chamber protruding toward the second opening, so that the part of the second plug-in board extending into the second slot can abut against the top surface of the second abutment portion, and the second abutment portion can support the second plug-in board, providing an additional support point for clamping the second plug-in board.
[0029] In some embodiments of the present application, a refrigeration device is provided, which also includes a condenser and a water collecting pan, wherein the condenser and the water collecting pan are spaced apart, and the fan is located between the condenser and the water collecting pan; a avoidance groove is recessed on the side of the water collecting pan facing the fan; the third entrance and exit is located on the side of the first plug-in slot facing the avoidance groove; the fourth entrance and exit is located on the side of the second plug-in slot facing the avoidance groove; when the first plug-in board is disengaged from the first slot along the third entrance and exit, and the second plug-in board is disengaged from the second slot along the fourth entrance and exit, the mounting bracket can be arranged in the avoidance groove and can be moved out from above the avoidance groove.
[0030] Another technical solution of the above technical solution has the following advantages or beneficial effects: a recessed clearance groove can be provided on the side of the water receiving pan facing the third and fourth inlets and outlets, providing the operator with sufficient operating space. During installation and removal, the mounting bracket and the fan will not interfere with other components within the compressor, making the fan installation and removal process simpler and faster, reducing the difficulty of installation and removal and improving installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0032] Figure 1 A schematic diagram of a refrigeration device according to an embodiment of the present application;
[0033] Figure 2 for Figure 1 Schematic diagram of the back;
[0034] Figure 3 for Figure 1 Schematic diagram of the compressor room;
[0035] Figure 4 for Figure 3 A partial schematic diagram of
[0036] Figure 5 for Figure 4 A local enlarged view of point A;
[0037] Figure 6 for Figure 1 Schematic diagram of the connection between the bottom wall of the compressor and the mounting bracket;
[0038] Figure 7 for Figure 6 A schematic diagram of an explosion;
[0039] Figure 8 for Figure 6Schematic diagram of the bottom wall of the compressor;
[0040] Figure 9 for Figure 8 A cross-sectional view of
[0041] Figure 10 for Figure 9 A partial enlarged schematic diagram;
[0042] Figure 11 for Figure 6 A partial enlarged view of point B;
[0043] Figure 12 for Figure 8 A partial enlarged view of point C;
[0044] Figure 13 for Figure 6 A front view of the mounting bracket;
[0045] Figure 14 for Figure 3 Schematic diagram of the back of the mounting bracket;
[0046] Figure 15 for Figure 6 A partial enlarged view of a cross section;
[0047] Figure 16 for Figure 7 A partial enlarged view of point D.
[0048] The corresponding relationship between the reference numerals and component names is as follows:
[0049] 1. Box; 100. Compressor compartment; 101. First slot; 102. Second slot; 103. First entrance / exit; 104. Second entrance / exit; 105. Third entrance / exit; 106. First opening; 107. Fourth entrance / exit; 108. Second opening; 109. Avoidance groove; 110. Mounting port;
[0050] 11. Door; 12. Compressor; 13. Condenser; 14. Bottom wall; 15. First abutment portion; 16. Second abutment portion; 17. Drain tray;
[0051] 2. Fan;
[0052] 3. Mounting bracket; 301. Through hole; 302. Second connecting hole; 303. Fourth connecting hole; 31. Support platform; 32. First supporting plate; 33. Second supporting plate; 34. First plug-in board; 35. Second plug-in board; 36. First fixing plate; 37. Second fixing plate;
[0053] 4. First reinforcement member; 401. First connection hole; 402. First air-avoiding groove; 41. First fixing arm;
[0054] 5. Second reinforcement member; 501. Third connecting hole; 502. Second air avoidance groove; 51. Second fixing arm. DETAILED DESCRIPTION
[0055] The present invention provides a refrigeration device. To make the purpose, technical solution, and effects of the present invention more clear and explicit, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific examples described herein are only intended to illustrate the present invention and are not intended to limit the scope of protection of the present invention.
[0056] In the description of the present invention, it should be understood that the terms "upper", "lower", "inside", "outside", etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0057] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections, or mutual communication; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0058] The refrigeration device in the embodiment of the present invention may be a refrigeration cabinet such as a freezer or a refrigerator. The following takes a refrigerator as an example to describe in detail the technical solution for improving the refrigeration device in the embodiment of the present invention.
[0059] Figure 1 FIG. 1 is a schematic diagram of a refrigeration device according to an embodiment of the present application.
[0060] See also Figure 1 As shown, the refrigerator provided in the embodiment of the present invention may include a housing. The housing 1 may be a hollow structure such as a rectangular parallelepiped. The housing 1 forms the outer shell of the refrigerator. It should be noted that the housing 1 may also be a hollow shell structure of other shapes.
[0061] In some embodiments, a refrigeration compartment (not shown) may be provided inside the box body 1. The refrigeration compartment may be provided as a plurality of refrigeration compartments.
[0062] In some embodiments, multiple refrigeration compartments can function as independent storage spaces, such as freezers, refrigerators, and temperature-controlled chambers. These compartments can meet varying cooling requirements, such as freezing, refrigeration, and temperature-controlled storage, depending on the type of food being consumed. These compartments can be arranged vertically or horizontally.
[0063] In some embodiments, the refrigerator may include a refrigerator casing, and a refrigeration compartment may be formed in the refrigerator casing.
[0064] In some embodiments, the refrigerator may include a door 11. The door 11 may be hinged to the front side of the cabinet 1 to open and close the refrigeration compartment.
[0065] It should be noted that multiple doors 11 can be provided. Doors 11 can be provided one-to-one with refrigeration compartments. Multiple doors 11 can simultaneously open and close one refrigeration compartment. One door 11 can also simultaneously open and close multiple refrigeration compartments.
[0066] In some embodiments, the refrigerator may include a refrigeration system. The refrigeration system may be arranged inside the box body 1. The refrigeration system may be used to provide cold air inside the refrigerator to maintain a low temperature environment in each refrigeration compartment.
[0067] Figure 2 for Figure 1 Schematic diagram of the back.
[0068] See also Figure 2 As shown, in some embodiments, the refrigeration system may include a compressor 12. Compressor 12 is the power source of the refrigeration cycle, sucking in low-temperature, low-pressure refrigerant gas and compressing it into high-temperature, high-pressure gas. Compressor 12 can deliver the high-temperature, high-pressure refrigerant to condenser 13.
[0069] Figure 3 for Figure 1 Schematic diagram of the compressor room; Figure 4 for Figure 3 A partial schematic diagram of .
[0070] See also Figure 3 and Figure 4 As shown, in some embodiments, the refrigeration system may include a condenser 13. The condenser 13 may be configured to receive the refrigerant flowing out of the compressor 12 and to cool the high-temperature, high-pressure refrigerant gas from the compressor 12 and convert it into a liquid state. The condenser 13 may transfer heat from the refrigerant to the surrounding air, thereby lowering the temperature of the refrigerant.
[0071] In some embodiments, the refrigeration system may include a throttling device (not shown). The condenser 13 may deliver the condensed refrigerant to the throttling device. The throttling device may be a capillary tube. The throttling device may be used to throttle and reduce the pressure of the refrigerant.
[0072] In some embodiments, the refrigeration system may include an evaporator (not shown). A throttling device may deliver the throttled and depressurized refrigerant to the evaporator. The evaporator may be used to evaporate and boil the refrigerant vapor to absorb heat from the surrounding medium.
[0073] In some embodiments, the compressor 12 , the condenser 13 , the throttling device, and the evaporator may be sequentially connected to form a refrigeration circuit, in which a refrigerant may circulate to cool the interior of the housing 11 .
[0074] like Figure 2 and Figure 3 As shown, in some embodiments, a compressor chamber 100 may be provided within the housing 11. The compressor 12 may be located within the compressor chamber 100. The compressor chamber 100 may be located in the bottom area of the housing 11. The compressor chamber 100 may be located at the rear lower side of the refrigeration compartment. The compressor 12, condenser 13, throttling device, etc. may be located within the refrigeration compartment.
[0075] like Figure 2 As shown, in some embodiments, the refrigerator may include a fan 2. The fan 2 may be provided in the compressor compartment 100. The fan 2 can dissipate heat from the compressor compartment 100.
[0076] In some embodiments, the air inlet end of the fan 2 may be directed toward the condenser 13. The fan 2 may perform forced heat exchange on the condenser 13, effectively reducing the surface temperature of the condenser 13 while maintaining ventilation performance in the compressor room 100.
[0077] like Figure 3 and Figure 4 As shown, in some embodiments, the refrigerator may include a mounting bracket 3. The mounting bracket 3 may be disposed within the compressor compartment 100. The mounting bracket 3 may be used to support the fan 2 within the compressor compartment 100. During installation, the fan 2 may be first mounted on the mounting bracket 3, and then the mounting bracket 3 may be connected to the compressor compartment 100.
[0078] Figure 5 for Figure 4 A local enlarged view of point A; Figure 6 for Figure 1 Schematic diagram of the connection between the bottom wall of the compressor and the mounting bracket; Figure 7 for Figure 6 A schematic diagram of an explosion; Figure 8 for Figure 6Schematic diagram of the bottom wall of the compressor.
[0079] like Figure 5 and Figure 6 As shown, in some embodiments, the mounting bracket 3 may include a support platform 31. The support platform 31 may be arranged horizontally in the compressor room 100. The fan 2 may be fixed on the top of the support platform 31.
[0080] like Figure 6 As shown, in some embodiments, the support platform 31 may be provided with a through hole 301 . A connecting member (not shown) on the fan 2 may be connected to the support platform 31 through the through hole 301 .
[0081] like Figure 5 and Figure 6 As shown, in some embodiments, the support platform 31 can be plate-shaped. The top surface of the support platform 31 can be used to support the wind turbine 2. The support platform 31 can be configured as a rectangular plate, a circular plate, or a plate structure of other shapes.
[0082] like Figure 5 and Figure 7 As shown, in some embodiments, the mounting bracket 3 may include a first support plate 32. The first support plate 32 may be disposed on one end of the support platform 31. The other end of the first support plate 32 may extend downward. The other end of the first support plate 32 may support the support platform 31 on the bottom wall 14 of the compressor chamber 100.
[0083] like Figure 7 As shown, in some embodiments, the first support plate 32 may be located near the side of the mounting bracket 3 , and the first support plate 32 may support the support platform 31 above the bottom wall 14 of the compressor chamber 100 at intervals.
[0084] In some other embodiments, the first support plate 32 may be disposed close to the bottom center of the mounting bracket 3 , thereby providing better support for the support platform 31 .
[0085] like Figure 5 and Figure 7 As shown, in some embodiments, the mounting bracket 3 may include a first plug-in board 34. The first plug-in board 34 may be provided on one side of the first support plate 32. The first plug-in board 34 may be bent and extended from the bottom end of the first support plate 32 toward a side away from the second support plate 33.
[0086] like Figure 5As shown, in some embodiments, one end of the first plug-in board 34 can be connected to the bottom end of the first support plate 32. The other end of the first plug-in board 34 is arranged parallel to the bottom wall 14 of the compressor chamber 100. When the mounting bracket 3 is installed in the compressor chamber 100, the first plug-in board 34 abuts against the bottom wall 14 of the compressor chamber 100.
[0087] In some embodiments, the first plug-in board 34 and the first support board 32 can be integrally formed. It should be noted that, in other embodiments, the first plug-in board 34 can also be welded to the bottom of the first support board 32.
[0088] Figure 9 for Figure 8 A cross-sectional view of Figure 10 for Figure 9 A partial enlarged schematic diagram.
[0089] like Figure 9 and Figure 10 As shown, in some embodiments, the bottom wall 14 of the compressor chamber 100 may be provided with a first slot 101. The first slot 101 may be located on a side of the first support plate 32 away from the second support plate 33. A first entrance 103 may be provided on a side of the first slot 101 facing the first support plate 32. The first plug-in board 34 may be plugged into the first slot 101 through the first entrance 103. The first plug-in board 34 may be removably plugged into the first slot 101.
[0090] like Figure 10 Specifically, a first access opening 103 is provided on the side of the first slot 101 facing the first support plate 32. The first access opening 103 serves as a passage for the first plug-in board 34 to enter the first slot 101, allowing the first plug-in board 34 to be conveniently inserted and removed through the first access opening 103. The first plug-in board 34 is inserted into the first slot 101 through the first access opening 103 and forms a detachable plug-in connection with the first slot 101. The mounting bracket 3 simplifies the installation process of the fan 2 through the plug-in connection and also allows the fan 2 to be easily disassembled when maintenance or replacement is required.
[0091] like Figure 6 As shown, in some embodiments, the mounting bracket 3 may include a second support plate 33. The second support plate 33 may be provided on the other end of the support platform 31, and the other end of the second support plate 33 may extend downward. The other end of the second support plate 33 may support the support platform 31 on the bottom wall 14 of the compressor chamber 100.
[0092] like Figure 6As shown, in some embodiments, the first support plate 32 and the second support plate 33 can be respectively arranged on the left and right sides of the support platform 31, thereby supporting the left and right sides of the support platform 31, so that the mounting bracket 3 has better supporting force on the fan 2, and the mounting bracket 3 can distribute stress more evenly when subjected to external force, and the fan 2 can also be more firmly installed in the compressor room 100.
[0093] like Figure 6 and Figure 7 As shown, in some embodiments, the mounting bracket 3 may include a second plug-in board 35. The second plug-in board 35 may be provided on one side of the second support plate 33. The second plug-in board 35 may be bent and extended from the bottom end of the first support plate 32 toward a side away from the first support plate 32.
[0094] like Figure 6 As shown, in some embodiments, one end of the second plug-in board 35 can be connected to the bottom end of the second support plate 33. The other end of the second plug-in board 35 is arranged parallel to the bottom wall 14 of the compressor chamber 100. When the mounting bracket 3 is installed in the compressor chamber 100, the second plug-in board 35 abuts against the bottom wall 14 of the compressor chamber 100.
[0095] In some embodiments, the second plug-in board 35 and the second support board 33 can be integrally formed. It should be noted that, in other embodiments, the second plug-in board 35 can be welded to the bottom of the second support board 33 .
[0096] like Figure 10 As shown, in some embodiments, the bottom wall 14 of the compressor chamber 100 may be provided with a second slot 102. The first slot 101 and the second slot 102 may be spaced apart and arranged opposite each other on the bottom wall 14 of the compressor chamber 100. The second slot 102 may be located on a side of the second support plate 33 away from the first support plate 32. A second entrance 104 may be provided on a side of the second slot 102 facing the second support plate 33. The second plug-in board 35 may be plugged into the second slot 102 through the second entrance 104. The second plug-in board 35 may be removably plugged into the second slot 102.
[0097] like Figure 9 and Figure 10 Specifically, a second entrance 104 is provided on the side of the second slot 102 facing the second support plate 33. The second entrance 104 serves as a passage for the second plug-in board 35 to enter the second slot 102, allowing the second plug-in board 35 to be conveniently inserted and removed through the second entrance 104. The second plug-in board 35 is inserted into the first slot 101 through the second entrance 104 and forms a detachable plug-in connection with the second slot 102. The mounting bracket 3 simplifies the installation process of the fan 2 through the plug-in connection and also allows the fan 2 to be easily disassembled when maintenance or replacement is required.
[0098] In the prior art, when fan 2 needs to be replaced or repaired, it is fixed to mounting bracket 3. The bottom of mounting bracket 3 is fixed to compressor chamber 100 by screws and is installed in a position far away from the operation port of compressor chamber 100. When fan 2 needs to be replaced or repaired, the operator needs to use tools to remove the screw connection at the bottom. However, the small space and low height of the compressor chamber, as well as the large number of surrounding parts, often make this operation difficult, making repair and replacement very time-consuming and labor-intensive.
[0099] In the refrigeration device disclosed in the present application, a first slot 101 and a second slot 102 are provided on the bottom wall 14 of the compressor chamber 100, and a first support plate 32 and a second support plate 33 are provided on both sides of the support base 31. A first plug-in plate 34 is arranged on the bottom end of the first support plate 32, which is bent and extended toward a side away from the second support plate 33. A second plug-in plate 35 is arranged on the bottom end of the second support plate 33, which is bent and extended toward a side away from the first support plate 32. The first plug-in plate 34 and the second plug-in plate 35 are respectively removably inserted into the first slot 101 and the second slot 102 of the bottom wall 14 of the compressor chamber 100. The mounting bracket 3 can be installed on or removed from the bottom wall 14 of the compressor chamber 100, making the installation process of the fan 2 simpler and faster, not only saving installation time but also reducing installation difficulty. Especially in the confined space of the compressor chamber 100, this effectively improves the efficiency and convenience of repairing and replacing the fan 2, and reduces the maintenance difficulty of the refrigerator.
[0100] Figure 11 for Figure 6 A partial enlarged view of point B.
[0101] like Figure 6 and Figure 11 As shown, in some embodiments, the bottom wall 14 of the compressor chamber 100 may be provided with a first reinforcement member 4. The first reinforcement member 4 may be provided on a side of the first support plate 32 away from the second support plate 33. A first slot 101 may be formed between the first reinforcement member 4 and the bottom wall 14 of the compressor chamber 100. The upper and lower sides of the first plug-in board 34 may be clamped between the first reinforcement member 4 and the bottom wall 14 of the compressor chamber 100.
[0102] One side of the first support plate 32 is disposed toward the second support plate 33, and the first reinforcement member 4 is disposed on the side of the first support plate 32 facing away from the second support plate 33. The first reinforcement member 4 and the first plug-in board 34 are located on the same side. By providing the first reinforcement member 4 on the bottom wall 14 of the compressor chamber 100, a first slot 101 is formed between the first reinforcement member 4 and the bottom wall 14 of the compressor chamber 100. When the first plug-in board 34 is inserted into the first slot 101 so that the first plug-in board 34 is engaged with the bottom wall 14 of the compressor chamber 100, the upper and lower sides of the first support plate 32 can be securely clamped between the first reinforcement member 4 and the bottom wall 14 of the compressor chamber 100. This not only provides additional support for the first support plate 32, but also helps maintain the stability and reliability of the fan 2 after installation. Furthermore, the provision of the first reinforcement member 4 enhances the overall structural strength of the bottom wall 14 of the compressor chamber 100, providing a foundation for the stable installation of the fan 2.
[0103] like Figure 9 and Figure 10 As shown, in some embodiments, the first reinforcement member 4 may be provided with a first access opening 103 on a side facing the first support plate 32. The opening of the first access opening 103 faces the connection between the bottom end of the first support plate 32 and the first plug-in board 34, so that the first plug-in board 34 can be plugged into the first slot 101 through the first access opening 103, thereby fixing the bottom end of the first support plate 32 to the bottom wall 14 of the compressor chamber 100.
[0104] like Figure 11 As shown, in some embodiments, at least one side of the first reinforcement member 4 can be connected to the bottom wall 14 of the compressor chamber 100. Specifically, the first reinforcement member 4 can be rectangular, with the first entrance 103 defined on one side of the rectangle, and the side of the rectangle adjacent to or opposite to the first entrance 103 being directly connected to the bottom wall 14 of the compressor chamber 100.
[0105] In some embodiments, the first reinforcement member 4 may be formed by stamping the bottom wall 14 of the compressor chamber 100. It should be noted that in other embodiments, the first reinforcement member 4 may be connected to the bottom wall 14 of the compressor chamber 100 by welding.
[0106] Figure 12 for Figure 8 A partial enlarged view of point C; Figure 13 for Figure 6 A front view of the mounting bracket; Figure 14 for Figure 3 Schematic diagram of the back of the mounting bracket;
[0107] like Figure 12 and Figure 13As shown, in some embodiments, the mounting bracket 3 may include a first fixing plate 36. The first fixing plate 36 may be provided on a side of the first support plate 32 facing away from the second support plate 33. A first fixing arm 41 may be provided on the top of the first reinforcement member 4 extending upward, and the first fixing plate 36 is connected to the first fixing arm 41.
[0108] Among them, Figure 13 As shown, the first fixing plate 36 and the first plug-in plate 34 can be located on the same side of the first support plate 32. The first fixing plate 36 protrudes from the side of the first support plate 32 away from the second support plate 33. The first fixing plate 36 can be positioned opposite and connected to the first fixing arm 41. This further improves the connection stability between the first plug-in plate 34 and the first slot 101, preventing the second plug-in plate 35 from being disengaged from the second slot 102 and causing the fan 2 to fall. Furthermore, the connection between the first fixing plate 36 and the first fixing arm 41 further enhances the structural strength of the mounting bracket 3, thereby improving the installation stability of the fan 2.
[0109] On the other hand, since the first fixing arm 41 extends upward from the top of the first reinforcement 4, the connection between the first fixing arm 41 and the first fixing plate 36 can have a certain spacing from the bottom of the compressor chamber 100, which makes it more convenient for operators to install and remove. Compared with the prior art that requires installation or removal between the bottom of the mounting bracket 3 and the bottom wall 14 of the compressor chamber 100, the present application provides a first fixing arm 41 extending upward along the top of the first reinforcement 4, and a first fixing plate 36 extending outward from the first support plate 32, and connects the first fixing arm 41 and the first fixing plate 36 by screws or other connecting methods. Compared with using tools to reach into the compressor chamber 100 to install and remove the bottom connection, this reduces the inconvenience of installation and removal caused by space limitations, effectively reducing the difficulty of the installation process or subsequent maintenance and replacement processes.
[0110] like Figure 13 and Figure 14 As shown, in some embodiments, the first fixing arm 41 may be provided with a first connection hole 401. The first fixing plate 36 may be provided with a second connection hole 302. The first connection hole 401 and the second connection hole 302 may be arranged in a front-to-back relationship and connected. In this way, an operator can use a connecting member such as a screw or bolt (not shown) that is inserted into the first connection hole 401 and the second connection hole 302 to connect the first fixing arm 41 and the first fixing plate 36 together.
[0111] like Figure 2 、 Figure 3 and Figure 5As shown, in some embodiments, a mounting opening 110 may be provided on the back of the housing 1, and the mounting opening 110 may be in communication with the compressor chamber 100. The first fixing plate 36 of the mounting bracket 3 and the first fixing arm 41 of the first reinforcement member 4 may be arranged front-to-back toward the mounting opening 110, so that an operator can directly insert a tool into the compressor chamber 100 through the mounting opening 110 and securely connect the first fixing plate 36 and the first fixing arm 41 together through front-to-back threaded connections.
[0112] like Figure 10 and Figure 12 As shown, in some embodiments, the first reinforcement member 4 may be provided with a third entrance 105. The third entrance 105 may be positioned adjacent to the first entrance 103. The first plug-in board 34 can be removably inserted into the first slot 101 along the third entrance 105. By providing the first reinforcement member 4 with the third entrance 105 adjacent to the first entrance 103, the first plug-in board 34 can not only be inserted into the first slot 101 along the side of the first entrance 103, but the first support plate 32 can also be inserted into the first slot 101 in the front-to-back direction through the third entrance 105.
[0113] Specifically, the first reinforcement member 4 is rectangular, with a first entrance 103 defined on one side of the rectangle, a third entrance 105 defined on the side of the rectangle adjacent to the first entrance 103, and the other side of the rectangle adjacent to the first entrance 103, i.e., the side opposite the first entrance 103, directly connected to the bottom wall 14 of the compressor chamber 100. When the first plug-in board 34 extends into the first slot 101 along the first entrance 103, the side of the first plug-in board 34 connected to the first support plate 32 can move into the first slot 101 via the third entrance 105. The provision of the third entrance 105 increases the number of paths for the first plug-in board 34 to extend into the first slot 101 and provides greater flexibility for installation and removal of the fan 2.
[0114] like Figure 7 、 Figure 10 and Figure 11 As shown, in some embodiments, the first fixing arm 41 can be located at the first reinforcement member 4 near the third entrance 105. The bottom end of the first fixing plate 36 can extend downward and connect to the first plug-in board 34.
[0115] When the first plug board 34 is plugged into the first slot 101 along the third entrance 105 , the first fixing plate and the first fixing arm 41 can abut against each other, so that the first fixing plate 36 and the first fixing arm 41 can be relatively connected and fixed.
[0116] Specifically, by positioning the first fixing arm 41 near the third entrance 105 on the first reinforcement member 4, during installation of the mounting bracket 3 in the compressor chamber 100, as the first plug-in board 34 is inserted into the first slot 101 along the third entrance 105, the first fixing arm 41 can be relatively connected and fixed to the first fixing plate 36 at the third entrance 105. Furthermore, when the first plug-in board 34 is inserted into the first slot 101, the first fixing arm 41 abuts against the first fixing arm 41, facilitating rapid positioning and secure fixation of the fan 2 during installation. Furthermore, by extending the bottom end of the first fixing plate 36 downward and connecting it to the first plug-in board 34, the connection strength between the first fixing plate 36 and the first plug-in board 34 is enhanced, providing an additional support point for secure installation of the fan 2.
[0117] like Figure 13 and Figure 14 As shown, in some embodiments, the first support plate 32 and the first plug-in plate 34 are perpendicular to each other, the first support plate 32 and the first fixing plate 36 are perpendicular to each other, and the first plug-in plate 34 and the first fixing plate 36 are perpendicular to each other.
[0118] like Figure 11 and Figure 12 As shown, in some embodiments, the bottom wall 14 of the compressor chamber 100 may be provided with a first opening 106. The bottom wall 14 of the compressor chamber 100 may be provided with a first abutment 15 protruding toward the first opening 106. The portion of the first plug-in board 34 inserted into the first slot 101 may abut against the top surface of the first abutment 15. The first abutment 15 protruding from the bottom wall 14 of the compressor chamber 100 toward the first opening 106 allows the portion of the first plug-in board 34 extending into the first slot 101 to abut against the top surface of the first abutment 15. The first abutment 15 can support the first plug-in board 34 and provide an additional support point for clamping the first plug-in board 34.
[0119] like Figure 11 and Figure 12 As shown, in some embodiments, the first reinforcement member 4 can be connected to the edge of the first opening 106. The first reinforcement member 4 can be recessed to form a first air avoidance groove 402. The first air avoidance groove 402 and the first abutting portion 15 can be arranged relative to each other up and down, and the upper and lower sides of the first plug-in board 34 can be clamped between the first reinforcement member 4 and the first abutting portion 15. By recessing the first air avoidance groove 402 at the relative positions of the first reinforcement member 4 and the first abutting portion 15 up and down, the material usage of the first reinforcement member 4 can be saved, thereby reducing the production and manufacturing costs. At the same time, since the first plug-in board 34 is clamped between the first reinforcement member 4 and the first abutting portion 15, the design of the first air avoidance groove 402 will not affect the connection strength of the first plug-in board 34 fixed to the bottom plate of the compressor chamber 100.
[0120] Specifically, the bottom wall 14 of the compressor chamber 100 may be formed into the first reinforcement member 4 by stamping, and after the stamping is completed, the bottom wall 14 of the compressor chamber 100 is formed with the first opening 106 .
[0121] Figure 15 for Figure 6 A partial enlarged view of a cross section; Figure 16 for Figure 7 A partial enlarged view of point D.
[0122] like Figure 7 、 Figure 15 and Figure 16 As shown, in some embodiments, the bottom wall 14 of the compressor chamber 100 may be provided with a second reinforcement member 5. The second reinforcement member 5 may be provided on a side of the second support plate 33 away from the first support plate 32. A second slot 102 may be formed between the second reinforcement member 5 and the bottom wall 14 of the compressor chamber 100. The upper and lower sides of the second plug-in board 35 may be clamped between the second reinforcement member 5 and the bottom wall 14 of the compressor chamber 100.
[0123] like Figure 7 As shown, since the first support plate 32 and the second support plate 33 are arranged on opposite sides of the support platform 31, by providing a second reinforcement 5 on the bottom wall 14 of the compressor chamber 100, the second reinforcement 5 can fix the second plug-in board 35 on the bottom wall 14 of the compressor chamber 100, so that the opposite sides of the mounting bracket 3 can be firmly connected to the bottom wall 14 of the compressor chamber 100, thereby improving the stability of the connection of the mounting bracket 3.
[0124] Specifically, one side of the second support plate 33 is disposed toward the first support plate 32, and the second reinforcement member 5 is disposed on a side of the second support plate 33 facing away from the first support plate 32, with the second reinforcement member 5 and the second plug-in board 35 being located on the same side. By providing the second reinforcement member 5 on the bottom wall 14 of the compressor chamber 100, a second slot 102 is formed between the second reinforcement member 5 and the bottom wall 14 of the compressor chamber 100. When the second plug-in board 35 is positioned in the second slot 102 and engaged with the bottom wall 14 of the compressor chamber 100, the upper and lower sides of the second support plate 33 are securely clamped between the second reinforcement member 5 and the bottom wall 14 of the compressor chamber 100. The provision of the second reinforcement member 5 not only provides additional support for the second support plate 33, but also helps maintain the stability and reliability of the fan 2 after installation. Furthermore, the provision of the second reinforcement member 5 also enhances the overall structural strength of the bottom wall 14 of the compressor chamber 100, providing a foundation for the secure installation of the fan 2.
[0125] like Figure 9As shown, in some embodiments, a second inlet 104 may be provided on the side of the second reinforcement member 5 facing the second support plate 33. The second inlet 104 is spaced apart from the first inlet 103. The second inlet 104 opens toward the junction between the bottom end of the second support plate 33 and the second plug-in board 35, allowing the second plug-in board 35 to be inserted into the second slot 102 through the second inlet 104, thereby securing the bottom end of the second support plate 33 to the bottom wall 14 of the compressor chamber 100. Thus, when the mounting bracket 3 needs to be secured to the bottom wall 14 of the compressor chamber 100, the first plug-in board 34 on one side of the first support plate 32 can be inserted into the first slot 101 through the first inlet 103, while the second plug-in board 35 on one side of the second support plate 33 can be inserted into the second slot 102 through the second inlet 104. This allows both opposing sides of the mounting bracket 3 to be securely secured within the compressor chamber 100.
[0126] like Figure 16 As shown, in some embodiments, at least one side of the second reinforcement member 5 can be connected to the bottom wall 14 of the compressor chamber 100. Specifically, the second reinforcement member 5 can be rectangular, with the second entrance 104 defined on one side of the rectangle, and the side of the rectangle adjacent to or opposite to the second entrance 104 being directly connected to the bottom wall 14 of the compressor chamber 100.
[0127] like Figure 7 and Figure 14 As shown, in some embodiments, the mounting bracket 3 further includes a second fixing plate 37. A first fixing plate 36 may be provided on a side of the second support plate 33 facing away from the first support plate 32. A second fixing arm 51 may be provided on the top of the second reinforcement member 5 extending upward. The second fixing plate 37 may be connected to the second fixing arm 51.
[0128] The second fixing plate 37 and the second plug-in plate 35 can be located on the same side of the second support plate 33. The second fixing plate 37 protrudes from a side surface of the second support plate 33 away from the second support plate 33. The second fixing plate 37 can be positioned opposite and connected to the second fixing arm 51. This further improves the connection stability between the second plug-in plate 35 and the second slot 102, preventing the second plug-in plate 35 from being disengaged from the second slot 102 and causing the fan 2 to fall. Furthermore, the connection between the second fixing plate 37 and the second fixing arm 51 further enhances the overall structural strength of the mounting bracket 3, thereby improving the installation stability of the fan 2. Furthermore, since the second fixing arm 51 extends upward from the top of the second reinforcement member 5, the connection between the second fixing arm 51 and the second fixing plate 37 can be spaced apart from the bottom of the compressor chamber 100, making installation and removal more convenient for operators. This reduces the inconvenience of installation and removal caused by space constraints, effectively reducing the difficulty of the installation process and subsequent maintenance and replacement.
[0129] like Figure 14 and Figure 15 As shown, in some embodiments, the second fixing arm 51 may be provided with a third connection hole 501. The second fixing plate 37 may be provided with a fourth connection hole 303. The third connection hole 501 and the fourth connection hole 303 may be arranged in a front-to-back relationship and connected. In this way, an operator can connect the second fixing arm 51 and the second fixing plate 37 using connecting members such as screws and bolts, which are inserted into the third connection hole 501 and the fourth connection hole 303.
[0130] Specifically, the second fixing plate 37 of the mounting bracket 3 and the second fixing arm 51 provided on the second reinforcement 5 can be arranged front to back toward the mounting opening 110, so that the operator can directly insert the tool into the compressor chamber 100 through the mounting opening 110, and fix the second fixing plate 37 and the second fixing arm 51 together by front and rear threaded connection.
[0131] like Figure 10 and Figure 16 As shown, in some embodiments, the second reinforcement member 5 may be provided with a fourth entrance 107. The second entrance 104 and the fourth entrance 107 may be disposed adjacent to each other. The second plug-in board 35 can be removably inserted into the second slot 102 along the fourth entrance 107. Providing the fourth entrance 107 adjacent to the second entrance 104 on the second reinforcement member 5 allows the second plug-in board 35 to be inserted into the second slot 102 not only along the side of the second entrance 104 but also in the front-to-back direction through the fourth entrance 107.
[0132] Specifically, the second reinforcement member 5 is rectangular, with a second entrance 104 defined on one side of the rectangle, a fourth entrance 107 defined on the side of the rectangle adjacent to the second entrance 104, and the other side of the rectangle adjacent to the second entrance 104, i.e., the side opposite the fourth entrance 107, directly connected to the bottom wall 14 of the compressor chamber 100. When the second plug-in board 35 extends into the second slot 102 along the fourth entrance 107, the side of the second plug-in board 35 connected to the second support plate 33 can move into the second slot 102 via the fourth entrance 107. The provision of the fourth entrance 107 increases the number of paths for the second plug-in board 35 to extend into the second slot 102 and provides greater flexibility in the installation and removal of the fan 2.
[0133] In some embodiments, the fourth inlet and outlet 107 of the second reinforcement member 5 and the third inlet and outlet 105 of the first reinforcement member 4 can both be arranged toward the mounting port 110 at the back of the housing 1, so that an operator can directly insert the entire mounting bracket 3 into the first slot 101 and the second slot 102 correspondingly along the front-to-back direction of the compressor chamber 100, thereby connecting the entire mounting bracket 3 to the bottom wall 14 of the compressor chamber 100. Similarly, the operator can disengage the first plug-in board 34 and the second plug-in board 35 from the first slot 101 and the second slot 102 correspondingly along the rear direction of the compressor chamber 100, thereby removing the mounting bracket 3 to repair or replace the fan 2.
[0134] like Figure 13 and Figure 15 As shown, in some embodiments, the second fixing arm 51 can be located on the second reinforcement member 5 near the fourth entrance 107. One end of the second fixing plate 37 can extend downward and connect to the second plug board 35. When the second plug board 35 is inserted into the second slot 102 along the fourth entrance 107, the second fixing arm 51 can abut against the second fixing arm 51, so that the second fixing plate 37 and the second fixing arm 51 can be relatively connected and fixed.
[0135] Specifically, by positioning the second fixing arm 51 near the fourth entrance 107 of the second reinforcement member 5, during installation of the mounting bracket 3 in the compressor chamber 100, as the second plug-in board 35 is inserted into the second slot 102 along the fourth entrance 107, the second fixing arm 51 can be relatively connected and fixed to the second fixing plate 37 at the fourth entrance 107. Furthermore, when the second plug-in board 35 is inserted into the second slot 102, the second fixing arm 51 abuts against the second fixing arm 51, securing the mounting bracket 3 in place. This facilitates quick positioning and secure fixation of the mounting bracket 3 during installation. Furthermore, by extending the bottom end of the second fixing plate 37 downward and connecting it to the second plug-in board 35, the connection strength between the second fixing plate 37 and the second plug-in board 35 is enhanced, providing an additional support point for secure installation of the fan 2.
[0136] like Figure 13 and Figure 14 As shown, in some embodiments, the second support plate 33 and the second plug-in plate 35 are perpendicular to each other, the second support plate 33 and the second fixing plate 37 are perpendicular to each other, and the second plug-in plate 35 and the second fixing plate 37 are perpendicular to each other.
[0137] In some embodiments, the bottom wall 14 of the compressor chamber 100 may be provided with a second opening 108 . The bottom wall 14 of the compressor chamber 100 may be provided with a second abutting portion 16 protruding toward the second opening 108 .
[0138] The portion of the second plug-in board 35 inserted into the second slot 102 can abut against the top surface of the second abutting portion 16. The second abutting portion 16 is provided through the bottom wall 14 of the compressor chamber 100 and protrudes toward the second opening 108, so that the portion of the second plug-in board 35 extending into the second slot 102 can abut against the top surface of the second abutting portion 16. The second abutting portion 16 can support the second plug-in board 35 and provide an additional support point for clamping the second plug-in board 35.
[0139] like Figure 15 As shown, in some embodiments, the second reinforcement member 5 can be connected to the edge of the second opening 108. The second reinforcement member 5 can be recessed to form a second air avoidance groove 502. The second air avoidance groove 502 and the second abutment portion 16 can be arranged opposite to each other up and down. The upper and lower sides of the second plug-in board 35 can be clamped between the second reinforcement member 5 and the second abutment portion 16. By recessing the second air avoidance groove 502 at the upper and lower relative positions of the second reinforcement member 5 and the second abutment portion 16, the material used for the second reinforcement member 5 can be saved, thereby reducing production and manufacturing costs. At the same time, since the second plug-in board 35 is clamped between the second reinforcement member 5 and the second abutment portion 16, the design of the second air avoidance groove 502 will not affect the connection strength of the second plug-in board 35 fixed to the bottom plate of the compressor chamber 100.
[0140] Specifically, the bottom wall 14 of the compressor chamber 100 may be formed into the second reinforcement member 5 by stamping, and after the stamping is completed, the bottom wall 14 of the compressor chamber 100 is formed with a second opening 108 .
[0141] like Figure 3 As shown, in some embodiments, the refrigerator may include a water receiving tray 17. The water receiving tray 17 may be provided in the compressor compartment 100. A water receiving tank may be formed inside the water receiving tray 17 to receive condensed water generated by the refrigeration system so that the condensed water can evaporate in the water receiving tank.
[0142] like Figure 3 As shown, in some embodiments, the water tray 17 can be spaced apart from the condenser 13. The fan 2 can be located between the condenser 13 and the water tray 17. The water tray 17 being spaced apart from the condenser 13 allows for installation of the fan 2, ensuring proper heat dissipation from the condenser 13. Furthermore, during operation, the fan 2 drives air flow within the compressor chamber 100, thereby removing heat from the surface of the condenser 13 and accelerating the evaporation of condensate in the water tray 17.
[0143] like Figure 3 As shown, in some embodiments, the condenser 13 can be located at the air inlet end of the fan 2. The water receiving tray 17 can be located at the air outlet end of the fan 2. During operation, the fan 2 can draw air from the compressor chamber 100, causing the air in the compressor chamber 100 to flow through the condenser 13 and then be blown directionally toward the water receiving tray 17, thereby improving the evaporation efficiency of the liquid in the water receiving tray 17.
[0144] like Figure 3 As shown, in some embodiments, a side of the water receiving tray 17 facing the fan 2 may be recessed with a relief groove 109. The third entrance 105 may be located on the side of the first plug-in slot facing the relief groove 109. The fourth entrance 107 may be located on the side of the second plug-in slot facing the relief groove 109. When the first plug-in board 34 is disengaged from the first slot 101 along the third entrance 105, and the second plug-in board 35 is disengaged from the second slot 102 along the fourth entrance 107, the mounting bracket 3 can be arranged in the relief groove 109 and can be moved out from above the relief groove 109.
[0145] A relief groove 109 may be provided on one side of the water receiving tray 17 facing the third inlet and outlet 105 and the fourth inlet and outlet 107 . The provision of the relief groove 109 may provide sufficient operating space for the operator.
[0146] Specifically, when it is necessary to connect the mounting bracket 3 to the bottom wall 14 of the compressor chamber 100, the operator can place the mounting bracket 3 on the avoidance groove 109 and push the mounting bracket 3 forward so that the first plug-in board 34 and the second plug-in board 35 can be respectively inserted into the first slot 101 and the second slot 102, so that the bottom of the mounting bracket 3 can be easily connected to the bottom wall 14 of the compressor chamber 100. When it is necessary to remove the mounting bracket 3 from the bottom wall 14 of the compressor chamber 100, the operator can first release the connection between the first fixing plate 36 and the first fixing arm 41, and release the connection between the second fixing plate 37 and the second fixing arm 51, and then move the entire mounting bracket 3 toward the side of the avoidance groove 109. The mounting bracket 3 can be arranged in the avoidance groove 109 and can be moved out of the compressor chamber 100 through the top of the avoidance groove 109. During the above-mentioned installation and disassembly process, the mounting bracket 3 and the fan 2 will not interfere with other components in the compressor 12, making the installation and disassembly process of the fan 2 simpler and faster, reducing the difficulty of installation and disassembly, and improving installation efficiency.
[0147] The above are merely specific embodiments of the present application, but the scope of protection of this application is not limited thereto. Any modifications or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application are intended to be covered by the scope of protection of this application. Therefore, the scope of this application is limited only by the appended claims.
Claims
1. A refrigeration device, characterized in that: include: A box body, which forms the outer shell of the refrigeration device; a compressor chamber is provided inside the box body; A fan is provided in the compressor chamber, and the fan is capable of dissipating heat from the compressor chamber; A mounting bracket is provided in the compressor chamber, and the mounting bracket comprises: A supporting platform, the supporting platform is arranged transversely in the compressor chamber; A first support plate is provided on one end of the support platform, and the other end of the first support plate is extended downward; A second support plate is provided on the other end of the support platform, and the other end of the second support plate is extended downward; A first plug-in board is provided on one side of the first support board, and the first plug-in board is bent and extended from the bottom end of the first support board toward a side away from the second support board; A second plug-in board is provided on one side of the second support board, and the second plug-in board is bent and extended from the bottom end of the first support board toward a side away from the first support board; The fan is fixed on the top of the supporting platform, and the bottom wall of the compressor chamber is provided with a first slot and a second slot arranged opposite to each other; The first slot is located on a side of the first support plate away from the second support plate, and a first entrance is provided on a side of the first slot facing the first support plate; the first plug-in board is plugged into the first slot through the first entrance, and the first plug-in board is detachably plugged into the first slot; The second slot is located on a side of the second support plate away from the first support plate, and a second entrance and exit is provided on a side of the second slot facing the second support plate; the second plug-in board is plugged into the second slot through the second entrance and exit, and the second plug-in board is detachably plugged into the second slot.
2. The refrigeration device according to claim 1, characterized in that The bottom wall of the compressor chamber is provided with a first reinforcement member, which is provided on a side of the first support plate away from the second support plate. The first slot is formed between the first reinforcement member and the bottom wall of the compressor chamber, and the upper and lower sides of the first plug-in board are clamped between the first reinforcement member and the bottom wall of the compressor chamber. At least one side of the first reinforcement is connected to the bottom wall of the compressor chamber, and the first inlet and outlet are provided on a side of the first reinforcement facing the first support plate.
3. The refrigeration device according to claim 2, characterized in that The mounting bracket further includes a first fixing plate, and the first fixing plate is provided on a side of the first support plate facing away from the second support plate; A first fixing arm is extended upward from the top of the first reinforcement, and the first fixing plate is connected to the first fixing arm.
4. The refrigeration device according to claim 3, characterized in that The first reinforcement member is provided with a third entrance and exit, and the third entrance and exit are arranged adjacent to the first entrance and exit. The first plug-in board can be detachably plugged into the first slot along the third entrance and exit.
5. The refrigeration device according to claim 4, characterized in that The first fixing arm is located at the first reinforcement member near the third entrance and exit, and the bottom end of the first fixing plate extends downward and is connected to the first plug-in board; When the first plug-in board is plugged into the first slot along the third entrance and exit, the first fixing plate and the first fixing arm can abut against each other, so that the first fixing board and the first fixing arm can be relatively connected and fixed.
6. The refrigeration device according to claim 2, characterized in that The bottom wall of the compressor chamber is provided with a first opening, and the bottom wall of the compressor chamber is provided with a first abutment portion protruding toward the first opening; The first reinforcement is connected to the edge of the first opening, and the first reinforcement is recessed to form a first air avoidance groove. The first air avoidance groove and the first abutment portion are arranged opposite to each other up and down, and the upper and lower sides of the first plug board are clamped between the first reinforcement and the first abutment portion.
7. The refrigeration device according to claim 4, characterized in that The bottom wall of the compressor chamber is provided with a second reinforcement member, which is provided on a side of the second support plate away from the first support plate. A second slot is formed between the second reinforcement member and the bottom wall of the compressor chamber, and upper and lower sides of the second plug-in board are clamped between the second reinforcement member and the bottom wall of the compressor chamber. At least one side of the second reinforcement is connected to the bottom wall of the compressor chamber, and the second inlet and outlet are provided on a side of the second reinforcement facing the second support plate.
8. The refrigeration device according to claim 7, characterized in that The mounting bracket further includes a second fixing plate, and the first fixing plate is provided on a side of the second supporting plate facing away from the first supporting plate; A second fixing arm is extended upward from the top of the second reinforcement, and the second fixing plate is connected to the second fixing arm.
9. The refrigeration device according to claim 8, characterized in that The second reinforcement member is provided with a fourth entrance and exit, the second entrance and exit are arranged adjacent to the fourth entrance and exit, and the second plug-in board can be detachably plugged into the second slot along the fourth entrance and exit.
10. The refrigeration device according to claim 9, characterized in that The second fixing arm is located at the second reinforcement member near the fourth entrance and exit, and one end of the second fixing plate extends downward and is connected to the second plug-in board; When the second plug-in board is plugged into the second slot along the fourth entrance, the second fixing arm and the second fixing arm can abut against each other, so that the second fixing board and the second fixing arm can be relatively connected and fixed.
11. The refrigeration device according to claim 7, characterized in that The bottom wall of the compressor chamber is provided with a second opening, and the bottom wall of the compressor chamber is provided with a second abutment portion protruding toward the second opening; The second reinforcement is connected to the edge of the second opening, and the second reinforcement is recessed to form a second air avoidance groove. The second air avoidance groove and the second abutment portion are arranged opposite to each other up and down, and the upper and lower sides of the second plug-in board are clamped between the second reinforcement and the second abutment portion.
12. The refrigeration device according to claim 9, characterized in that The device further comprises a condenser and a water receiving tray, wherein the condenser and the water receiving tray are spaced apart, and the fan is located between the condenser and the water receiving tray; A relief groove is provided on one side of the water receiving tray facing the fan; The third entrance and exit is located on a side of the first plug-in slot facing the avoidance slot; The fourth entrance and exit is located on a side of the second plug-in slot facing the avoidance slot; When the first plug board is detached from the first slot along the third entrance and the second plug board is detached from the second slot along the fourth entrance, the mounting bracket can be arranged in the avoidance groove and can be moved out from above the avoidance groove.