Refrigeration equipment

By setting up independent air ducts and damper systems in the refrigerator compartment, the problem of difficulty in independently controlling the temperature of the refrigerator and freezer compartments is solved, achieving efficient temperature regulation and space optimization of the refrigeration equipment.

CN223596285UActive Publication Date: 2025-11-25HEFEI HUALING CO LTD +2
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422901004.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-11-25
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In existing refrigeration equipment, the temperatures of the refrigerator compartment and the freezer compartment are difficult to control independently, causing inconvenience to users.

Method used

By installing a first partition in the refrigerator compartment, it is divided into two independent chambers. A first air duct and a second air duct are installed in the partition, and a first air damper and a second air damper are provided respectively. The air intake of each chamber can be controlled independently, thereby achieving independent temperature regulation.

Benefits of technology

It enables independent temperature control for the refrigerator and freezer compartments, meeting different user needs, reducing space occupation, and improving air supply efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223596285U_ABST
    Figure CN223596285U_ABST
Patent Text Reader

Abstract

The utility model discloses refrigeration equipment which comprises a box body, a refrigerating chamber and a freezing chamber, and the box body is internally provided with the refrigerating chamber and the freezing chamber which are arranged in a spaced mode. The refrigerating assembly is located in the freezing chamber and comprises a fan, and the fan is used for supplying air to the refrigerating chamber and the freezing chamber; the first partition plate is mounted in the refrigerating chamber to divide the refrigerating chamber into a first chamber and a second chamber; the air duct assembly is located in the first partition plate and comprises a first air duct and a second air duct, the first air duct communicates between the air outlet of the fan and the first cavity, the second air duct communicates between the air outlet of the fan and the second cavity, and a first air outlet is formed in the side, facing the first cavity, of the first partition plate; the first air outlet communicates with the first air duct and the first cavity, and / or a second air outlet is formed in the side, facing the second cavity, of the first partition plate, and the second air outlet communicates with the second air duct and the second cavity; wherein a first air door is arranged in the first air duct, and a second air door is arranged in the second air duct.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of refrigeration devices, and particularly relates to a refrigeration device. BACKGROUND

[0002] In the related art, a refrigeration device has a refrigeration chamber and an air duct. The refrigeration chamber is divided into a first chamber and a second chamber by a partition. The air duct is installed at the back of the refrigeration chamber. The first chamber and the second chamber are supplied with air by the same air duct, so that the air volume entering the first chamber and the second chamber is almost the same, that is, the temperature of the first chamber and the second chamber is almost the same, which is difficult to meet the use demand of a user. CONTENT OF THE UTILITY MODEL

[0003] The application aims to at least solve one of the technical problems in the prior art. To this end, the application provides a refrigeration device. The refrigeration device can control the air inlet volume of the first air duct through the first air door and control the air inlet volume of the second air duct through the second air door, so that the air inlet volume of the first chamber and the second chamber can be adjusted individually, thereby realizing independent temperature control of the first chamber and the second chamber, and thereby facilitating meeting the use demand of a user.

[0004] The refrigeration device according to the embodiments of the application comprises: a cabinet, wherein a refrigeration chamber and a freezing chamber are arranged in the cabinet; a refrigeration assembly, wherein the refrigeration assembly is located in the freezing chamber and comprises a fan, and the fan is used for supplying air to the refrigeration chamber and the freezing chamber; a first partition, wherein the first partition is installed in the refrigeration chamber to divide the refrigeration chamber into a first chamber and a second chamber; and an air duct assembly, wherein the air duct assembly is located in the first partition and comprises a first air duct and a second air duct, the first air duct is connected between an air outlet of the fan and the first chamber, the second air duct is connected between the air outlet of the fan and the second chamber, one side of the first partition facing the first chamber is provided with a first air outlet, the first air outlet connects the first air duct and the first chamber, and / or one side of the first partition facing the second chamber is provided with a second air outlet, the second air outlet connects the second air duct and the second chamber; wherein the first air duct is provided with a first air door, and the second air duct is provided with a second air door.

[0005] According to the refrigeration equipment provided by the embodiments of the present application, the air duct assembly is located in the first partition plate, so that the space in the first partition plate is utilized to install the air duct assembly, thereby not occupying the space at the back of the refrigeration chamber, so as to reduce the size of the refrigeration equipment in the depth direction of the refrigeration chamber, and the first chamber and the second chamber are supplied with air through the first air duct and the second air duct respectively, and the first air door is arranged in the first air duct and the second air door is arranged in the second air duct, so as to control the air inlet volume of the first air duct through the first air door and control the air inlet volume of the second air duct through the second air door, thereby adjusting the air inlet volume of the first chamber and the second chamber individually, and realizing the independent temperature control of the first chamber and the second chamber, thereby facilitating the use requirements of the user.

[0006] According to the refrigeration equipment provided by some embodiments of the present application, the first air door and the second air door rotate independently.

[0007] According to the refrigeration equipment provided by some embodiments of the present application, the first driving member and the second driving member are both mounted on the first partition plate and arranged at intervals, the output end of the first driving member is power-connected with the first air door, and the output end of the second driving member is power-connected with the second air door.

[0008] According to the refrigeration equipment provided by some embodiments of the present application, the first air door is arranged between the first air duct and the air outlet of the fan, and the second air door is arranged between the second air duct and the air outlet of the fan.

[0009] According to the refrigeration equipment provided by some embodiments of the present application, the side of the first partition plate facing the second chamber is provided with a mounting structure for mounting a baffle, and the second air outlet is arranged in a staggered manner with the mounting structure.

[0010] According to the refrigeration equipment provided by some embodiments of the present application, the fan has a first fan outlet and a second fan outlet, the first fan outlet is used to supply air to the refrigeration chamber, and the second fan outlet is used to supply air to the freezing chamber.

[0011] According to the refrigeration equipment provided by some embodiments of the present application, the second partition plate is located in the freezing chamber, the refrigeration assembly is located in the second partition plate, and the second partition plate is provided with a third air duct, which is communicated between the freezing chamber and the second fan outlet.

[0012] According to the refrigeration equipment provided by some embodiments of the present application, the second partition plate divides the freezing chamber into a third chamber and a fourth chamber, and the third chamber and the fourth chamber are both communicated with the third air duct.

[0013] According to the refrigeration equipment of some embodiments of the present application, the third air duct comprises a first sub-air duct and a second sub-air duct, the first sub-air duct is communicated between the second fan outlet and the third chamber, and the second sub-air duct is communicated between the second fan outlet and the fourth chamber.

[0014] According to the refrigeration equipment of some embodiments of the present application, the third chamber is provided with a third air outlet, the third air outlet is located at the connection between the second partition plate and the inner wall of the third chamber and is used for communication between the first sub-air duct and the third chamber; and / or the fourth chamber is provided with a fourth air outlet, the fourth air outlet is located at the connection between the second partition plate and the inner wall of the fourth chamber and is used for communication between the second sub-air duct and the fourth chamber.

[0015] According to the refrigeration equipment of some embodiments of the present application, the air duct assembly further comprises a deodorizing air duct, and a deodorizing air inlet and a deodorizing air outlet which are both communicated with the deodorizing air duct, and a deodorizing module is arranged in the deodorizing air duct.

[0016] According to the refrigeration equipment of some embodiments of the present application, further comprising: a door body rotatably mounted on the cabinet to open or close the cabinet, wherein the thickness of the door body is in the range of 25mm to 40mm, and / or the total thickness of the cabinet and the door body is in the range of 450mm to 600mm when the door closes the cabinet.

[0017] Additional aspects and advantages of the present application will be made apparent by the following description and the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the following embodiment description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0019] Figure 1 A schematic diagram of the refrigeration equipment of some embodiments of the present application is shown;

[0020] Figure 2 A schematic diagram of the inner container of the refrigeration equipment of some embodiments of the present application is shown;

[0021] Figure 3 A sectional view of the inner container of the refrigeration equipment of some embodiments of the present application is shown Figure 1 ;

[0022] Figure 4A cross-sectional view of a liner of a refrigeration device is shown Figure 2 .

[0023] Reference signs:

[0024] Refrigeration device 10, cabinet 1, shell 11, liner 12, refrigeration chamber 13, first chamber 131, second chamber 132, second air outlet 1321, freezing chamber 14, third chamber 141, third air outlet 1411, fourth chamber 142, fourth air outlet 1421, cross beam 15, door body 16, refrigeration assembly 2, fan 21, volute 211, worm wheel 212, first fan outlet 213, second fan outlet 214, evaporator 22, first partition 3, mounting structure 31, air duct assembly 4, first air duct 41, first air door 411, second air duct 42, second air door 421, second partition 5, third air duct 50, first sub-air duct 51, second sub-air duct 52. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] It should be noted that all directional indications in the embodiments of the present application are only used to explain the relative positional relationship, movement condition and the like between components in a certain specific posture, and if the specific posture changes, the directional indications also change accordingly.

[0027] In the present application, unless otherwise explicitly specified and limited, the terms "connection", "fixation" and the like should be understood in a broad sense, for example, "fixation" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through an intermediate medium; can be internal communication of two elements or interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0028] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can be explicitly or implicitly included at least one of the features. In addition, the technical solutions of various embodiments can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor in the protection scope required by the present application.

[0029] The refrigeration equipment 10 is a professional storage tool for storing various frozen goods, which can keep food and other goods in a frozen state, and is divided into household and commercial. For example, the refrigeration equipment 10 can be a refrigerator and generally includes a cabinet 1, a refrigeration assembly 2 and a first partition 3. As shown in Figure 1 The cabinet 1 includes an outer shell 11 and an inner shell 12, the inner shell 12 is installed in the outer shell 11, the refrigeration assembly 2 is installed in the inner shell 12 and spaced apart in the up-down direction by a cross beam 15, and two door bodies 16 are rotatably installed on the cabinet to open or close the refrigeration chamber 13 and the freezing chamber 14. The first partition 3 is installed in the refrigeration chamber 13 to divide the refrigeration chamber 13 into a first cavity 131 and a second cavity 132, and food can be stored in the first cavity 131 and / or the second cavity 132.

[0030] The refrigeration assembly 2 is installed in the inner shell 12 and used to supply cold air to the refrigeration chamber 13 and the freezing chamber 14. The air duct is installed on the back of the refrigeration chamber 13, and the first cavity 131 and the second cavity 132 are supplied with air by the same air duct, so that the air volume entering the first cavity 131 and the second cavity 132 is almost the same, that is, the temperature of the first cavity 131 and the second cavity 132 is almost the same, which is difficult to meet the user's use demand. To this end, the refrigeration equipment 10 provided by the embodiment of the present application can improve the above-mentioned problem, and the refrigeration equipment 10 provided by the embodiment of the present application can control the air inlet volume of the first air duct 41 through the first air door 411 and control the air inlet volume of the second air duct 42 through the second air door 421, so that the air inlet volume of the first cavity 131 and the second cavity 132 can be adjusted independently, and then the independent temperature control of the first cavity 131 and the second cavity 132 is realized, and then the use demand of the user is facilitated.

[0031] The present application will be described below in conjunction with the drawings and specific embodiments:

[0032] The present application provides a refrigeration equipment 10, which comprises a cabinet 1, a refrigeration assembly 2, a first partition 3 and an air duct assembly 4.

[0033] The box 1 is provided with a refrigeration chamber 13 and a freezing chamber 14 which are spaced apart; for example Figure 2 As shown in the drawings, the refrigeration chamber 13 and the freezing chamber 14 are spaced apart in the up-down direction by a cross beam 15, and the temperatures of the refrigeration chamber 13 and the freezing chamber 14 can be different to meet different temperature storage requirements. The refrigeration assembly 2 is located in the freezing chamber 14 and includes a fan 21 for supplying air to the refrigeration chamber 13 and the freezing chamber 14. In this way, the refrigeration chamber 13 and the freezing chamber 14 can share a set of refrigeration assembly 2 to achieve refrigeration. For example, the refrigeration assembly 2 can include an evaporator 22 and a fan 21, and the fan 21 can include a worm wheel 212 and a worm housing 211, and the worm wheel 212 rotates in the worm housing 211 to blow the cold air of the evaporator 22 to the refrigeration chamber 13 and the freezing chamber 14, thereby achieving refrigeration of the refrigeration chamber 13 and the freezing chamber 14.

[0034] As shown in the drawings, Figure 2 The first partition plate 3 is installed in the refrigeration chamber 13 to divide the refrigeration chamber 13 into a first chamber 131 and a second chamber 132, so that users can store food of different flavors in the first chamber 131 and the second chamber 132 to avoid the problem of flavor mixing. The air duct assembly 4 is located in the first partition plate 3, so that the air duct assembly 4 can be integrated on the first partition plate 3, and the air duct assembly 4 is also located in the refrigeration chamber 13, so that the air duct assembly 4 does not occupy the space in the depth direction of the refrigeration chamber 13, thereby facilitating the reduction of the size of the refrigeration equipment 10 in the depth direction of the refrigeration chamber 13, and further facilitating the meeting of the user's use requirements.

[0035] As shown in the drawings, Figure 2 The air duct assembly 4 includes a first air duct 41 and a second air duct 42, the first air duct 41 is communicated between the air outlet of the fan 21 and the first chamber 131, and the second air duct 42 is communicated between the air outlet of the fan 21 and the second chamber 132. In this way, part of the air outlet of the fan 21 can enter the first chamber 131 through the first air duct 41, and another part of the air outlet can enter the second chamber 132 through the second air duct 42, that is, the first chamber 131 and the second chamber 132 of the refrigeration chamber 13 can be independently air-in through double air ducts, so as to facilitate the independent design of the corresponding air duct according to the use requirements of the first chamber 131 or the second chamber 132, and to reduce the mutual influence of the first air duct 41 and the second air duct 42.

[0036] The side of the first partition plate 3 facing the first chamber 131 is provided with a first air outlet, and the first air outlet is communicated between the first air duct 41 and the first chamber 131.

[0037] Therefore, by arranging the first air outlet on the first partition plate 3, the difficulty of arranging the first air outlet is reduced, and since the first air duct 41 is arranged in the first partition plate 3, the distance from the first air duct 41 to the first air outlet is shortened, thereby improving the air supply efficiency of the first air duct 41 and reducing the air supply loss.

[0038] and / or as Figure 3 As shown, a second air outlet 1321 is provided on the side of the first partition 3 facing the second chamber 132. The second air outlet 1321 connects the second air duct 42 and the second chamber 132. Thus, by setting the second air outlet 1321 on the first partition 3, the difficulty of setting the second air outlet 1321 is reduced. And since the second air duct 42 is set inside the first partition 3, the distance from the second air duct 42 to the second air outlet 1321 is shortened, thereby improving the air supply efficiency of the second air duct 42 and reducing air supply loss.

[0039] Among them, such as Figure 3 As shown, a first damper 411 is provided in the first air duct 41, which is used to regulate the airflow passing through the first air duct 41. A second damper 421 is provided in the second air duct 42, which is used to regulate the airflow passing through the second air duct 42. It can be understood that the airflow entering the first air duct 41 can be regulated by adjusting the rotation angle of the first damper 411, and the airflow entering the second air duct 42 can be regulated by adjusting the rotation angle of the second damper 421.

[0040] Therefore, it is convenient to control the air intake volume of the first air duct 41 through the first air damper 411 and the air intake volume of the second air duct 42 through the second air damper 421, so that the air intake volume of the first chamber 131 and the second chamber 132 can be adjusted independently, thereby realizing independent temperature control of the first chamber 131 and the second chamber 132, which facilitates meeting the user's usage needs.

[0041] In some implementations, the first damper 411 may be disposed within the first air duct 41 to integrate the first damper 411 with the first air duct 41, and the second damper 421 may be disposed within the second air duct 42 to integrate the second damper 421 with the second air duct 42.

[0042] In other implementations, the first damper 411 can be located at the outlet of the first air duct 41, so that the first damper 411 can adjust the air volume of the first air duct 41 at the outlet of the first air duct 41, and reduce the maintenance difficulty of the first damper 411. At the same time, the second damper 421 can also be located at the outlet of the second air duct 42, so that the second damper 421 can adjust the air volume of the second air duct 42 at the outlet of the second air duct 42, and reduce the maintenance difficulty of the second damper 421.

[0043] According to the refrigeration equipment 10 provided by the embodiment of the present application, the air duct assembly 4 is located in the first partition 3, so that the installation of the air duct assembly 4 can be realized by using the space in the first partition 3, thereby not occupying the space at the back of the refrigeration chamber 13, so as to reduce the size of the refrigeration equipment 10 in the depth direction of the refrigeration chamber 13, and meanwhile, the first chamber 131 and the second chamber 132 are respectively supplied with air through the first air duct 41 and the second air duct 42, and the first air duct 41 is provided with the first air door 411 and the second air duct 42 is provided with the second air door 421, so as to control the air inlet volume of the first air duct 41 through the first air door 411 and control the air inlet volume of the second air duct 42 through the second air door 421, thereby enabling the air inlet volumes of the first chamber 131 and the second chamber 132 to be adjusted individually, and further realizing the independent temperature control of the first chamber 131 and the second chamber 132, thereby facilitating the use requirements of the user.

[0044] In some embodiments, the first air door 411 and the second air door 421 are independently rotated. It can be understood that the first air door 411 is rotatably installed in the first air duct 41, the second air door 421 is rotatably installed in the second air duct 42, and the rotation of the first air door 411 is asynchronous with the rotation of the second air door 421, so that the rotation angle of the first air door 411 can be adjusted to realize the adjustment of the air inlet volume of the first air duct 41, and the rotation angle of the second air door 421 can be adjusted to realize the adjustment of the air inlet volume of the second air duct 42.

[0045] In some embodiments, the first air door 411 and the second air door 421 are independently rotated. It can be understood that the first air door 411 is rotatably installed in the first air duct 41, the second air door 421 is rotatably installed in the second air duct 42, and the rotation of the first air door 411 is asynchronous with the rotation of the second air door 421, so that the rotation angle of the first air door 411 can be adjusted to realize the adjustment of the air inlet volume of the first air duct 41, and the rotation angle of the second air door 421 can be adjusted to realize the adjustment of the air inlet volume of the second air duct 42.

[0046] In some embodiments, the refrigeration equipment 10 further comprises a first driving member and a second driving member, the first driving member and the second driving member are both installed on the first partition 3 and are arranged at intervals, the first air door 411 and the output end of the first driving member are in power connection, and the second air door 421 and the output end of the second driving member are in power connection. Thus, the first driving member and the second driving member can be used to control the first air door 411 and the second air door 421, respectively.

[0047] In some embodiments, as shown in FIG. 1, Figure 2 the first air door 411 is arranged between the first air duct 41 and the air outlet of the fan 21, and the second air door 421 is arranged between the second air duct 42 and the air outlet of the fan 21.

[0048] Thus, the first air door 411 is rotatably mounted between the first air duct 41 and the air outlet of the fan 21, and the second air door 421 is rotatably mounted between the second air duct 42 and the air outlet of the fan 21, so that the air volume of the first air duct 41 and the second air duct 42 can be adjusted through the first air door 411 and the second air door 421, and the temperature of the first chamber 131 and the second chamber 132 can be controlled.

[0049] In some embodiments, as shown in Figure 3 The first partition 3 is provided with a mounting structure 31 for mounting the baffle on the side facing the second chamber 132, and the second air outlet 1321 is arranged in a staggered manner with the mounting structure 31.

[0050] It can be understood that the baffle is slidably mounted on the first partition 3, so as to divide the first chamber 131 into multiple layers of space, each layer of space can place articles, and the baffle can support the articles, and the mounting structure 31 can be a sliding rail or a mounting groove for mounting the baffle, which is not limited here.

[0051] In this application, the first air outlet is arranged in a staggered manner with the mounting structure 31 to avoid the installation of the baffle from blocking the first air outlet, thereby ensuring the air outlet effect of the first air outlet.

[0052] In some embodiments, as shown in Figure 2 The fan 21 has a first fan outlet 213 and a second fan outlet 214, the first fan outlet 213 is used to supply air to the refrigeration chamber 13, and the second fan outlet 214 is used to supply air to the freezer chamber 14.

[0053] Thus, the fan 21 can supply air to the refrigeration chamber 13 and the freezer chamber 14 through the first fan outlet 213 and the second fan outlet 214 respectively, so as to supply air to the refrigeration chamber 13 and the freezer chamber 14 separately, and the air inlet of the refrigeration chamber 13 and the air inlet of the freezer chamber 14 interfere with each other.

[0054] In some embodiments, as shown in Figure 2 The refrigeration device 10 further comprises a second partition 5, the second partition 5 is located in the freezer chamber 14, the refrigeration assembly 2 is located in the second partition 5, and the second partition 5 is provided with a third air duct 50, the third air duct 50 is communicated between the freezer chamber 14 and the second fan outlet 214.

[0055] In this way, the refrigeration assembly 2 can be integrated in the second partition 5, so that the refrigeration assembly 2 does not occupy the space at the back of the refrigeration chamber 13, thereby reducing the size of the refrigeration device 10 in the depth direction of the refrigeration chamber 13. Meanwhile, the third air duct 50 is located in the second partition 5, and the third air duct 50 is communicated between the freezing chamber 14 and the second fan outlet 214, so that the air passing through the second fan outlet 214 can enter the freezing chamber 14 through the third air duct 50, and the third air duct 50 does not need to occupy the space at the back of the freezing chamber 14, thereby reducing the size of the refrigeration device 10 in the depth direction of the freezing chamber 14.

[0056] In some embodiments, as shown in Figure 4 The second partition 5 divides the freezing chamber 14 into a third cavity 141 and a fourth cavity 142, and the third cavity 141 and the fourth cavity 142 are both communicated with the third air duct 50. In this way, the third cavity 141 and the fourth cavity 142 can share the third air duct 50, so as to simplify the arrangement of the air duct, and the third cavity 141 and the fourth cavity 142 can simultaneously intake air through the third air duct 50.

[0057] In some embodiments, as shown in Figure 4 The third air duct 50 includes a first sub-air duct 51 and a second sub-air duct 52, the first sub-air duct 51 is communicated between the second fan outlet 214 and the third cavity 141, and the second sub-air duct 52 is communicated between the second fan outlet 214 and the fourth cavity 142.

[0058] In this way, a part of the cold air from the second fan outlet 214 can enter the third cavity 141 through the first sub-air duct 51, and another part of the air can enter the fourth cavity 142 through the second sub-air duct 52, that is, the third cavity 141 and the fourth cavity 142 of the freezing chamber 14 can independently intake air through double air ducts, so as to facilitate the independent design of the corresponding air duct according to the use requirement of the third cavity 141 or the fourth cavity 142, and to reduce the mutual influence of the first sub-air duct 51 and the second sub-air duct 52.

[0059] In some embodiments, as shown in Figure 4 The third cavity 141 is provided with a third air outlet 1411, and the third air outlet 1411 is located at the connection between the second partition 5 and the inner wall of the third cavity 141 and is communicated between the first sub-air duct 51 and the third cavity 141.

[0060] For example, the third air outlet 1411 can be set at the connection between the second partition 5 and the bottom wall of the third chamber 141. In this way, air can be introduced at the rear end of the third chamber 141. Multiple third air outlets 1411 can be provided, and the multiple third air outlets 1411 are spaced apart along the extension direction of the second partition 5. In this way, multiple third air outlets 1411 can be used to make the third chamber 141 receive air evenly, and it is beneficial to enhance the air supply effect of the third chamber 141, thereby improving the freezing effect of the third chamber 141.

[0061] and / or as ​ As shown, the fourth chamber 142 is provided with a fourth air outlet 1421. The fourth air outlet 1421 is located at the connection between the second partition 5 and the inner wall of the fourth chamber 142 and is used to connect the second sub-air duct 52 and the fourth chamber 142.

[0062] For example, the fourth air outlet 1421 can be located at the connection between the second partition 5 and the bottom wall of the fourth chamber 142. This allows air to enter from the rear end of the fourth chamber 142. Multiple fourth air outlets 1421 can be provided, and these multiple fourth air outlets 1421 are spaced apart along the extension direction of the second partition 5. This allows the fourth chamber 142 to receive air evenly using multiple fourth air outlets 1421, which helps to enhance the air supply effect to the fourth chamber 142 and thus improve the freezing effect of the fourth chamber 142.

[0063] In some embodiments, the air duct assembly 4 further includes: an odor-removing air duct and an odor-removing air inlet and an odor-removing air outlet that are connected to both the odor-removing air duct and the refrigerator compartment 13, and an odor-removing module is provided inside the odor-removing air duct.

[0064] It can be understood that if heavy-smelling food such as dried pickles, hot pot condiments and the like is stored in the refrigeration compartment 13, the smell of the food will be transferred to other items, which will bring a poor user experience. Therefore, the deodorizing air duct is arranged in the air duct assembly 4, so that the air entering from the deodorizing air inlet is transmitted through the deodorizing air duct, and then discharged from the deodorizing air outlet. The deodorizing air inlet and the deodorizing air outlet are both in communication with the refrigeration compartment 13, and the deodorizing module is arranged in the deodorizing air duct. The deodorizing module sucks the air in the refrigeration compartment 13 from the deodorizing air inlet, and then the air is deodorized by the deodorizing assembly in the deodorizing module, and then the deodorized air is discharged into the refrigeration compartment 13 through the deodorizing air outlet. The deodorizing module can deodorize the air in the refrigeration compartment 13, reduce the probability of food odor transfer, and make the air in the refrigeration compartment 13 relatively fresh, bringing a better user experience. The refrigeration equipment 10 opens the deodorizing air duct in the air duct assembly 4, and arranges the deodorizing module in the deodorizing air duct, that is, integrates the deodorizing module in the air duct assembly 4. The space inside the air duct assembly 4 is utilized, and the occupation of the deodorizing module and the deodorizing air duct to the rest of the space of the refrigeration equipment 10 is reduced, which will help to reduce the size of the refrigeration equipment 10, and make the refrigeration equipment 10 develop towards small size and ultra-thin direction.

[0065] The structure and principle of the deodorizing module are various and known to those skilled in the art, and will not be described here.

[0066] In some embodiments, the refrigeration equipment 10 further comprises a door body 16 rotatably mounted to the cabinet 1 to open or close the cabinet 1. The thickness of the door body 16 is in the range of 25mm to 40mm, for example, the thickness of the door body 16 is 25mm, or the thickness of the door body 16 is 28mm, or the thickness of the door body 16 is 31mm, or the thickness of the door body 16 is 35mm, etc. When the thickness of the door body 16 is in the above range, the door body 16 has sufficient structural strength while reducing the thickness of the door body 16, achieving the lightness and thinness of the door body 16.

[0067] When the door body 16 closes the cabinet 1, the total thickness of the cabinet 1 and the door body 16 is in the range of 450mm to 600mm, for example, the total thickness of the cabinet 1 and the door body 16 is 450mm, or the total thickness of the cabinet 1 and the door body 16 is 455mm, or the total thickness of the cabinet 1 and the door body 16 is 460mm, or the total thickness of the cabinet 1 and the door body 16 is 500mm, etc. When the total thickness of the cabinet 1 and the door body 16 is in the above range, the total thickness of the cabinet 1 and the door body 16 is reduced, that is, the thickness of the refrigeration equipment 10 is reduced, so that the refrigeration equipment 10 can be placed in a side cabinet, thereby meeting the user's use demand.

[0068] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in one or more embodiments or examples. In addition, those skilled in the art can combine and integrate different embodiments or examples described in the specification.

[0069] In addition, the technical solutions among various embodiments can be combined with each other, but it must be based on the fact that a person skilled in the art can realize it, and when the combination of technical solutions appears contradictory or cannot be realized, it should be considered that the combination of technical solutions does not exist and is not within the protection scope required by the present application.

[0070] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A refrigeration appliance (10) characterized by, The utility model relates to a refrigerator, comprising: a cabinet (1) in which a refrigeration chamber (13) and a freezing chamber (14) are arranged in parallel; a refrigeration assembly (2) located in the freezing chamber (14) and comprising a fan (21) for supplying air to the refrigeration chamber (13) and the freezing chamber (14); a first partition plate (3) installed in the refrigeration chamber (13) to divide the refrigeration chamber (13) into a first cavity (131) and a second cavity (132); an air duct assembly (4) located in the first partition plate (3) and comprising a first air duct (41) and a second air duct (42), the first air duct (41) being connected between the air outlet of the fan (21) and the first cavity (131), the second air duct (42) being connected between the air outlet of the fan (21) and the second cavity (132), one side of the first partition plate (3) facing the first cavity (131) being provided with a first air outlet, the first air outlet being connected to the first air duct (41) and the first cavity (131), and / or one side of the first partition plate (3) facing the second cavity (132) being provided with a second air outlet (1321), the second air outlet (1321) being connected to the second air duct (42) and the second cavity (132); wherein the first air duct (41) is provided with a first air door (411), and the second air duct (42) is provided with a second air door (421).

2. The refrigeration appliance (10) of claim 1, characterized in that The first air door (411) and the second air door (421) are independently rotatable.

3. The refrigeration appliance (10) of claim 2, characterized in that Further comprising: a first driving member and a second driving member, both of which are installed on the first partition plate (3) and arranged in parallel, the output end of the first driving member being connected to the first air door (411), and the output end of the second driving member being connected to the second air door (421).

4. The refrigeration appliance (10) according to any one of claims 1-3, characterized in that, The fan (21) has a first fan outlet (213) for supplying air to the refrigeration chamber (13) and a second fan outlet (214) for supplying air to the freezing chamber (14).

5. The refrigeration appliance (10) of claim 4, characterized in that Further comprising a second partition plate (5) located in the freezing chamber (14), the refrigeration assembly (2) being located in the second partition plate (5), and the second partition plate (5) being provided with a third air duct (50) connected between the freezing chamber (14) and the second fan outlet (214).

6. The refrigeration appliance (10) of claim 5, characterized in that The second partition plate (5) divides the freezing chamber (14) into a third cavity (141) and a fourth cavity (142), both of which are connected to the third air duct (50).

7. The refrigeration appliance (10) of claim 6, characterized in that The third air duct (50) comprises a first sub-air duct (51) and a second sub-air duct (52), the first sub-air duct (51) being communicated between the second fan outlet (214) and the third chamber (141), and the second sub-air duct (52) being communicated between the second fan outlet (214) and the fourth chamber (142).

8. The refrigeration appliance (10) of claim 7, characterized in that The third chamber (141) is provided with a third air outlet (1411) located at the connection between the second partition plate (5) and the inner wall of the third chamber (141) and used for being communicated between the first sub-air duct (51) and the third chamber (141); And / or the fourth chamber (142) is provided with a fourth air outlet (1421) located at the connection between the second partition plate (5) and the inner wall of the fourth chamber (142) and used for being communicated between the second sub-air duct (52) and the fourth chamber (142).

9. The refrigeration appliance (10) of claim 1, characterized in that, The air duct assembly (4) further comprises a deodorizing air duct, a deodorizing air inlet and a deodorizing air outlet both communicated with the deodorizing air duct and the refrigeration chamber (13), and a deodorizing module arranged in the deodorizing air duct.

10. The refrigeration appliance (10) of claim 1, characterized in that Further comprising: A door body (16) rotatably installed on the cabinet (1) to open or close the cabinet (1), wherein the thickness of the door body (16) ranges from 25mm to 40mm, and / or the total thickness of the cabinet (1) and the door body (16) ranges from 450mm to 600mm when the door body (16) closes the cabinet (1).