Refrigeration equipment

By installing an air duct assembly inside the freezer compartment and connecting it to a partition, the problem of excessive depth dimension of the freezer compartment in refrigeration equipment was solved, achieving a smaller size and more efficient freezing effect.

CN223678053UActive Publication Date: 2025-12-16HEFEI HUALING CO LTD +2
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Patent Information

Application Number
CN202422901036.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-12-16
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In existing refrigeration equipment, the air duct of the freezer compartment is usually located at the back, which results in a large dimension of the refrigeration equipment in the depth direction of the freezer compartment, making it difficult to meet the user's needs.

Method used

The air duct assembly is installed on the partition inside the freezer compartment, utilizing the space of the freezer compartment for installation, thus not occupying the space behind the freezer compartment. The partition divides the freezer compartment into multiple chambers, and multiple air outlets are set to enhance the air supply effect.

Benefits of technology

The dimensions of the refrigeration equipment in the depth direction of the freezer compartment have been reduced, improving the freezing effect and enhancing the uniformity of airflow and the utilization efficiency of the freezer compartment.

✦ Generated by Eureka AI based on patent content.

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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 freezing chamber to divide the freezing chamber into a first chamber and a second chamber; the air duct assembly is connected with 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, and the second air duct communicates between the air outlet of the fan and the second cavity; first air outlets communicating with the first air duct are formed in the joint of the first partition plate and the freezing chamber and the side, facing the first cavity, of the first partition plate correspondingly, and second air outlets communicating with the second air duct are formed in the joint of the first partition plate and the freezing chamber and the side, facing the second cavity, of the first partition plate correspondingly.
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Description

TECHNICAL FIELD

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

[0002] In the related art, the refrigeration device has a freezing chamber, a refrigeration assembly is used to refrigerate the freezing chamber, and an air duct is used to guide cold air to the freezing chamber. However, the air duct is usually arranged at the back of the freezing chamber, which causes the refrigeration device to have a large size in the depth direction of the freezing chamber, and it is difficult to meet the use requirements of users. CONTENT OF THE UTILITY MODEL

[0003] The present application aims to at least solve one of the technical problems in the prior art. To this end, the present application provides a refrigeration device, an air duct assembly of which can be installed by using the space in the freezing chamber, so as not to occupy the space behind the freezing chamber, thereby reducing the size of the refrigeration device in the depth direction of the freezing chamber, and thus facilitating the meeting of the use requirements of users.

[0004] According to the refrigeration device provided in the embodiments of the present application, the first partition plate is located in the freezing chamber and divides the freezing chamber into a first chamber and a second chamber, the air duct assembly is connected with the first partition plate, so that the air duct assembly can be installed by using the space in the freezing chamber, thereby not occupying the space behind the freezing chamber, so as to reduce the size of the refrigeration device in the depth direction of the freezing chamber, and thus facilitating the meeting of the use requirements of users, and the connection part of the first partition plate and the freezing chamber and the side of the first partition plate facing the first chamber are both provided with a first air outlet communicated with the first air duct, and the connection part of the first partition plate and the freezing chamber and the side of the first partition plate facing the second chamber are both provided with a second air outlet communicated with the second air duct, so as to increase the arrangement positions and the number of the first air outlet and the second air outlet, thereby enhancing the air supply effect on the first chamber and the second chamber, and thus improving the freezing effect of the freezing chamber.

[0005] According to the refrigeration device provided in the embodiments of the present application, the first partition plate is located in the freezing chamber and divides the freezing chamber into a first chamber and a second chamber, the air duct assembly is connected with the first partition plate, so that the air duct assembly can be installed by using the space in the freezing chamber, thereby not occupying the space behind the freezing chamber, so as to reduce the size of the refrigeration device in the depth direction of the freezing chamber, and thus facilitating the meeting of the use requirements of users, and the connection part of the first partition plate and the freezing chamber and the side of the first partition plate facing the first chamber are both provided with a first air outlet communicated with the first air duct, and the connection part of the first partition plate and the freezing chamber and the side of the first partition plate facing the second chamber are both provided with a second air outlet communicated with the second air duct, so as to increase the arrangement positions and the number of the first air outlet and the second air outlet, thereby enhancing the air supply effect on the first chamber and the second chamber, and thus improving the freezing effect of the freezing chamber.

[0006] According to some embodiments of the present application, the second air duct is provided with a first air door, the first air door is rotatably installed between the second air duct and the air outlet of the air fan, and the first air door is used for adjusting the air volume of the second air duct.

[0007] According to some embodiments of the present application, the refrigeration equipment further comprises a driving member, the driving member is located in the first partition plate, and the first air door is in power connection with the output end of the driving member.

[0008] According to some embodiments of the present application, the first air outlet and the second air outlet are symmetrically arranged on two sides of the first partition plate.

[0009] According to some embodiments of the present application, the refrigeration equipment further comprises a second partition plate, the second partition plate is located in the refrigeration chamber to divide the refrigeration chamber into a third cavity and a fourth cavity, and the second partition plate is provided with a first sub-air duct and a second sub-air duct, the first sub-air duct is in communication with the third cavity, and the second sub-air duct is in communication with the fourth cavity.

[0010] According to some embodiments of the present application, the first sub-air duct and / or the second sub-air duct is provided with an air volume adjusting member.

[0011] According to some embodiments of the present application, the air volume adjusting member comprises a second air door and a third air door, the second air door is rotatably installed between the first sub-air duct and the air outlet of the air fan, and the third air door is rotatably installed between the second sub-air duct and the air outlet of the air fan.

[0012] According to some embodiments of the present application, one side of the second partition plate towards the third cavity is provided with a third air outlet, the third air outlet is in communication with the first sub-air duct and the third cavity; and / or one side of the second partition plate towards the fourth cavity is provided with a fourth air outlet, the fourth air outlet is in communication with the second sub-air duct and the fourth cavity.

[0013] According to some embodiments of the present application, the air fan is located in the first partition plate and has a first air fan outlet and a second air fan outlet, the first air duct is in communication with the first air fan outlet, and the second air duct, the first sub-air duct and the second sub-air duct are all in communication with the second air fan outlet.

[0014] According to some embodiments of the present application, the first air fan outlet is located at one side of the air fan towards the bottom wall of the freezing chamber, and the second air fan outlet is located at one side of the air fan towards the refrigeration chamber.

[0015] According to some embodiments of the present application, the refrigeration equipment further comprises a door body rotatably mounted on the cabinet to open or close the cabinet, wherein the thickness of the door body ranges from 25mm to 40mm, and / or the total thickness of the cabinet and the door body ranges from 450mm to 600mm when the door closes the cabinet.

[0016] Additional aspects and advantages of the present application will be made apparent by the following description and the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows. 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 any creative effort based on these drawings.

[0018] Figure 1 A schematic diagram of the refrigeration equipment according to some embodiments of the present application is shown;

[0019] Figure 2 A schematic diagram of the inner container of the refrigeration equipment according to some embodiments of the present application is shown;

[0020] Figure 3 A sectional view of the inner container of the refrigeration equipment according to some embodiments of the present application is shown; Figure 1

[0021] Figure 4 A sectional view of the inner container of the refrigeration equipment according to some embodiments of the present application is shown; Figure 2

[0022] Reference Signs:

[0023] The refrigeration equipment 10,

[0024] The cabinet 1, the outer shell 11, the inner container 12, the refrigeration chamber 13, the third chamber 131, the fourth chamber 132, the fourth air outlet 1321, the freezing chamber 14, the first chamber 141, the first air outlet 1411, the second chamber 142, the second air outlet 1421, the crossbeam 15, the door body 16, the refrigeration assembly 2, the fan 21, the volute 211, the worm wheel 212, the first fan outlet 213, the second fan outlet 214, the evaporator 22, the first partition plate 3, the air duct assembly 4, the first air duct 41, the second air duct 42, the first air door 421, the second partition plate 5, the first sub-air duct 51, the second air door 511, the second sub-air duct 52, the third air door 521. DETAILED DESCRIPTION

[0025] ​​With reference to the accompanying drawings, the technical solutions in the embodiments of the present application will be clearly and completely described below. 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 of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope 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 posture, and if the certain 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 directly connected, or indirectly connected through an intermediate medium; can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning 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 of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the fact that those skilled in the art can realize it, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the scope of protection required by the present application.

[0029] The refrigeration equipment 10 is a professional storage tool for storing various frozen goods, which can keep food or 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, the cabinet 1 is formed with a refrigeration compartment 13 and a freezing compartment 14 arranged at intervals, wherein, for example, Figure 1As shown, the cabinet 1 includes an outer shell 11 and an inner liner 12, the inner liner 12 is installed in the outer shell 11, a refrigeration chamber 13 and a freezing chamber 14 are formed in the inner liner 12 and are spaced apart in the up-down direction by a cross beam 15, and two door bodies 16 are rotatably installed on the cabinet 1 to open or close the refrigeration chamber 13 and the freezing chamber 14. The first partition plate 3 is installed in the freezing chamber 14 to divide the freezing chamber 14 into a first cavity 141 and a second cavity 142, and food can be stored in the first cavity 141 and / or the second cavity 142.

[0030] The refrigeration assembly 2 is installed in the inner liner 12 and is used to supply cold air to the refrigeration chamber 13 and the freezing chamber 14, and the air duct assembly 4 is installed in the inner liner 12 and is used to guide the cold air of the refrigeration assembly 2 to the freezing chamber 14. However, in the related art, the refrigeration assembly 2 and / or the air duct assembly 4 are arranged on the back of the inner liner 12, and in the use scenario of placing the refrigeration device 10 in a side cabinet, due to the arrangement of the refrigeration assembly 2 and / or the air duct assembly 4 on the back of the inner liner 12, the size of the refrigeration device 10 in the depth direction of the freezing chamber 14 is large, which cannot meet the use demand of the user. In view of this, the refrigeration device 10 provided by the embodiments of the present application can improve the above-mentioned problems, and the refrigeration device 10 provided by the embodiments of the present application can install the air duct assembly 4 in the space in the freezing chamber 14, so as not to occupy the space behind the freezing chamber 14, so as to reduce the size of the refrigeration device 10 in the depth direction of the freezing chamber 14, and then to facilitate meeting the use demand of the user.

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

[0032] The embodiments of the present application provide a refrigeration device 10, which comprises a cabinet 1, a refrigeration assembly 2, a first partition plate 3 and an air duct assembly 4.

[0033] The cabinet 1 is provided with a refrigeration chamber 13 and a freezing chamber 14 which are spaced apart. For example Figure 2 As shown, the refrigeration chamber 13 and the freezing chamber 14 are spaced apart in the up-down direction by the cross beam 15, and the temperatures of the refrigeration chamber 13 and the freezing chamber 14 can be different to meet the storage demand of different temperatures. The refrigeration assembly 2 is located in the freezing chamber 14 and comprises a fan 21, and the fan 21 is used to supply 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 comprise an evaporator 22 and the fan 21, and the fan 21 can comprise a worm wheel 212 and a worm shell 211, and the worm wheel 212 rotates in the worm shell 211 to blow the cold air of the evaporator 22 to the refrigeration chamber 13 and the freezing chamber 14, thereby achieving the refrigeration of the refrigeration chamber 13 and the freezing chamber 14.

[0034] As Figure 2As shown, the first partition plate 3 is installed in the freezing chamber 14 to divide the freezing chamber 14 into a first cavity 141 and a second cavity 142, so that the user can store different flavors of food in the first cavity 141 and the second cavity 142 to avoid the problem of flavor mixing. The air duct assembly 4 is connected with 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 freezing chamber 14, so that the air duct assembly 4 does not occupy the space in the depth direction of the freezing chamber 14, thereby facilitating the reduction of the size of the refrigeration equipment 10 in the depth direction of the freezing chamber 14, and further facilitating the meeting of the user's use requirements.

[0035] As shown, Figure 3 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 cavity 141, and the second air duct 42 is communicated between the air outlet of the fan 21 and the second cavity 142. In this way, part of the air outlet of the fan 21 can enter the first cavity 141 through the first air duct 41, and another part of the air outlet can enter the second cavity 142 through the second air duct 42, that is, the first cavity 141 and the second cavity 142 of the freezing chamber 14 can be separately air-in through double air ducts, so as to facilitate the separate design of the corresponding air duct according to the use requirements of the first cavity 141 or the second cavity 142, and to reduce the mutual influence of the first air duct 41 and the second air duct 42.

[0036] The first partition plate 3 is provided with a first air outlet 1411 communicated with the first air duct 41 at the connection between the first partition plate 3 and the freezing chamber 14 and on the side of the first partition plate 3 facing the first cavity 141. In this way, the air outlet of the fan 21 can flow to the first air outlet 1411 through the first air duct 41, and blow into the first cavity 141 from the first air outlet 1411, for example, the first air outlet 1411 can be arranged at the connection between the first partition plate 3 and the bottom wall of the first cavity 141, so as to realize air-in at the rear end of the first cavity 141, and the first air outlet 1411 can also be arranged on the side of the first partition plate 3 facing the first cavity 141, so as to realize air-in at the side of the first cavity 141, thereby increasing the arrangement position and the number of the first air outlet 1411, so that the first cavity 141 can be evenly air-in, and the air supply effect of the first cavity 141 is enhanced, thereby improving the freezing effect of the first cavity 141.

[0037] The first partition plate 3 is provided with a second air outlet 1421 communicated with the second air duct 42 at the connection between the first partition plate 3 and the freezing chamber 14 and on the side of the first partition plate 3 facing the second cavity 142. In this way, the air outlet of the fan 21 can flow to the second air outlet 1421 through the second air duct 42, and blow into the second cavity 142 from the second air outlet 1421, for example, Figure 2As shown, the second air outlet 1421 can be arranged at the connection between the second partition plate 5 and the bottom wall of the second chamber 142, so that air can be introduced at the rear end of the second chamber 142, and the second air outlet 1421 can also be arranged on the side of the second partition plate 5 facing the second chamber 142, so that air can be introduced at the side of the second chamber 142, thereby increasing the arrangement positions and quantity of the second air outlet 1421, so that the second chamber 142 can uniformly introduce air, and the air supply effect of the second chamber 142 is enhanced, thereby improving the freezing effect of the second chamber 142.

[0038] According to the refrigeration equipment 10 provided by the embodiment of the present application, the first partition plate 3 is located in the freezing chamber 14 and divides the freezing chamber 14 into the first chamber 141 and the second chamber 142, and the air duct assembly 4 is connected with the first partition plate 3, so that the air duct assembly 4 can be installed by using the space in the freezing chamber 14, thereby not occupying the space behind the freezing chamber 14, so as to reduce the size of the refrigeration equipment 10 in the depth direction of the freezing chamber 14, thereby facilitating the satisfaction of the use requirements of the user, and the connection between the first partition plate 3 and the freezing chamber 14 and the side of the first partition plate 3 facing the first chamber 141 are both provided with the first air outlet 1411 in communication with the first air duct 41, and the connection between the first partition plate 3 and the freezing chamber 14 and the side of the first partition plate 3 facing the second chamber 142 are both provided with the second air outlet 1421 in communication with the second air duct 42, so as to increase the arrangement positions and quantity of the first air outlet 1411 and the second air outlet 1421, thereby enhancing the air supply effect of the first chamber 141 and the second chamber 142, and improving the freezing effect of the freezing chamber 14.

[0039] In some embodiments, as shown in Figure 3 As shown, the first air door 421 is arranged in the second air duct 42 and is rotatably installed between the second air duct 42 and the air outlet of the fan 21, and the first air door 421 is used for adjusting the air volume of the second air duct 42.

[0040] Therefore, by arranging the first air door 421, the inlet of the second air duct 42 can be opened or closed by rotating the first air door 421, and the air volume of the second air duct 42 can be adjusted by adjusting the rotation angle of the first air door 421, so that the temperature of the second chamber 142 can be adjusted by adjusting the air volume of the second air duct 42, thereby realizing the temperature change of the second chamber 142 and satisfying the use requirements of the user. Meanwhile, the first air door 421 is rotatably installed between the second air duct 42 and the air outlet of the fan 21, so that the installation mode of the second air door 511 is relatively simple, thereby facilitating the reduction of the difficulty of arranging the second air door 511.

[0041] In some embodiments, the refrigeration device 10 further comprises a driving member located in the first partition 3, and the first air door 421 is in power connection with an output end of the driving member. For example, the driving member can be a driving motor, and the first air door 421 is connected with an output shaft of the driving motor, so that the rotation of the first air door 421 can be controlled by the driving member to realize the control of the first air door 421.

[0042] In some embodiments, the first air outlet 1411 and the second air outlet 1421 are symmetrically arranged on both sides of the first partition 3. In this way, the arrangement of the first air outlet 1411 and the second air outlet 1421 is more processed.

[0043] In some embodiments, as shown in Figure 2 The refrigeration device 10 further comprises a second partition 5 located in the refrigeration chamber 13 to divide the refrigeration chamber 13 into a third chamber 131 and a fourth chamber 132, and as shown in Figure 4 The second partition 5 is provided with a first sub-air duct 51 and a second sub-air duct 52, the first sub-air duct 51 is in communication with the third chamber 131, and the second sub-air duct 52 is in communication with the fourth chamber 132.

[0044] In this way, the user can store food with different flavors in the third chamber 131 and the fourth chamber 132 to avoid the problem of flavor mixing. The first sub-air duct 51 and the second sub-air duct 52 are arranged in the second partition 5, so that the first sub-air duct 51 and the second sub-air duct 52 are located in the refrigeration chamber 13. In this way, the first sub-air duct 51 and the second sub-air duct 52 do not occupy the space in the depth direction of the refrigeration chamber 13, thereby facilitating the reduction of the size of the refrigeration device 10 in the depth direction of the refrigeration chamber 13, and further facilitating the meeting of the user's use requirements.

[0045] At the same time, part of the air outlet of the fan 21 can enter the third chamber 131 through the first sub-air duct 51, and another part of the air outlet can enter the fourth chamber 132 through the second sub-air duct 52, that is, the third chamber 131 and the fourth chamber 132 of the refrigeration chamber 13 can independently air through double air ducts. In this way, it is convenient to design the corresponding air duct according to the use requirement of the third chamber 131 or the fourth chamber 132, and the mutual influence of the first sub-air duct 51 and the second sub-air duct 52 can be reduced.

[0046] In some embodiments, the first sub-air duct 51 and / or the second sub-air duct 52 is provided with an air volume adjusting member.

[0047] For example, the first sub-air duct 51 is provided with an air volume adjusting member, which can be an air door or an electromagnetic valve, etc. It can be understood that the air volume adjusting member is used to adjust the air volume, so as to adjust the air volume of the first sub-air duct 51, and further control the temperature of the third chamber 131.

[0048] Or the second sub-air duct 52 is provided with an air volume adjusting piece, which can be a damper or an electromagnetic valve, etc. It can be understood that the air volume adjusting piece is used to adjust the air volume, so as to adjust the air volume of the second sub-air duct 52, and then control the temperature of the fourth chamber 132.

[0049] Or as Figure 4 shown, the first sub-air duct 51 and the second sub-air duct 52 are provided with air volume adjusting pieces, which can be dampers or electromagnetic valves, etc. It can be understood that the air volume adjusting piece is used to adjust the air volume, so as to adjust the air volume of the first sub-air duct 51 and the second sub-air duct 52, and then control the temperature of the third chamber 131 and the fourth chamber 132 respectively.

[0050] In some embodiments, the air volume adjusting piece includes a second damper 511 and a third damper 521, as Figure 4 shown, the second damper 511 is rotatably installed between the first sub-air duct 51 and the air outlet of the fan 21, and the third damper 521 is rotatably installed between the second sub-air duct 52 and the air outlet of the fan 21.

[0051] Therefore, the second damper 511 is rotatably installed between the first sub-air duct 51 and the air outlet of the fan 21, and the third damper 521 is rotatably installed between the second sub-air duct 52 and the air outlet of the fan 21. The air volume of the first sub-air duct 51 and the second sub-air duct 52 can be adjusted respectively by the second damper 511 and the third damper 521, and then the temperature of the third chamber 131 and the fourth chamber 132 can be controlled.

[0052] In some embodiments, the second damper 511 and the third damper 521 are independently rotated, so as to facilitate the independent control of the temperature of the third chamber 131 and the fourth chamber 132.

[0053] In some embodiments, the second partition plate 5 is provided with a third air outlet on the side facing the third chamber 131, and the third air outlet communicates the first sub-air duct 51 and the third chamber 131.

[0054] Therefore, by arranging the third air outlet on the second partition plate 5, the difficulty of arranging the third air outlet is reduced, and since the first sub-air duct 51 is arranged in the second partition plate 5, the distance from the first sub-air duct 51 to the third air outlet is shortened, and the air supply efficiency of the first sub-air duct 51 is improved, and the air supply loss is reduced.

[0055] And / or as Figure 2As shown, the second partition 5 is provided with a fourth air outlet 1321 on a side thereof facing the fourth chamber 132, and the fourth air outlet 1321 is in communication with the second sub-air duct 52 and the fourth chamber 132. In this way, by arranging the fourth air outlet 1321 on the second partition 5, the difficulty of arranging the fourth air outlet 1321 is reduced, and since the second sub-air duct 52 is arranged in the second partition 5, the distance from the second sub-air duct 52 to the fourth air outlet 1321 is shortened, thereby improving the air supply efficiency of the second sub-air duct 52 and reducing the air supply loss.

[0056] In some embodiments, as shown, Figure 4 As shown, the fan 21 is arranged in the second partition 5 and has a first fan outlet 213 and a second fan outlet 214, the first air duct 41 is in communication with the first fan outlet 213, and the second air duct 42, the first sub-air duct 51 and the second sub-air duct 52 are all in communication with the second fan outlet 214. In this way, the second air duct 42, the first sub-air duct 51 and the second sub-air duct 52 share the second fan outlet 214.

[0057] In some embodiments, the first fan outlet 213 is located on a side of the fan 21 facing the bottom wall of the freezing chamber 14, and the second fan outlet 214 is located on a side of the fan 21 facing the refrigerating chamber 13.

[0058] In this way, the distance from the first fan outlet 213 to the first air outlet 1411 is shortened, the extension length of the first air duct 41 is shortened, and the distance from the second fan outlet 214 to the first sub-air duct 51 and the second sub-air duct 52 is shortened, thereby shortening the extension lengths of the first sub-air duct 51 and the second sub-air duct 52.

[0059] In some embodiments, the refrigeration device 10 further comprises a door body 16 rotatably mounted on the cabinet 1 to open or close the cabinet 1, wherein the thickness of the door body 16 is in a 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, thereby achieving the lightness and thinness of the door body 16.

[0060] When the door body 16 is closed to the box body 1, the total thickness of the box body 1 and the door body 16 is in the range of 450mm-600mm, for example, the total thickness of the box body 1 and the door body 16 is 450mm, or the total thickness of the box body 1 and the door body 16 is 455mm, or the total thickness of the box body 1 and the door body 16 is 460mm, or the total thickness of the box body 1 and the door body 16 is 500mm, etc. When the total thickness of the box body 1 and the door body 16 is in the above range, the total thickness of the box body 1 and the door body 16 can be reduced, i.e. the thickness of the refrigeration equipment 10 can be reduced, so that the refrigeration equipment 10 can be placed in the side cabinet, thereby meeting the use requirements of the user.

[0061] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like 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 present 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 one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and integrate different embodiments or examples described in the present specification.

[0062] In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the fact that a person skilled in the art can realize it, 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, nor is it within the protection scope required by the present application.

[0063] 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 these embodiments without departing from the principles and purposes of the present application, 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 refrigerating chamber (13) and a freezing chamber (14) are arranged in parallel; a refrigerating assembly (2) located in the freezing chamber (14) and comprising a fan (21) for supplying air to the refrigerating chamber (13) and the freezing chamber (14); a first partition plate (3) installed in the freezing chamber (14) to divide the freezing chamber (14) into a first cavity (141) and a second cavity (142); an air duct assembly (4) connected with the first partition plate (3) and comprising a first air duct (41) and a second air duct (42), the first air duct (41) being in communication between the air outlet of the fan (21) and the first cavity (141), and the second air duct (42) being in communication between the air outlet of the fan (21) and the second cavity (142); wherein the first partition plate (3) is provided with a first air outlet (1411) in communication with the first air duct (41) at the connection between the first partition plate (3) and the freezing chamber (14) and on the side of the first partition plate (3) facing the first cavity (141), and the first partition plate (3) is provided with a second air outlet (1421) in communication with the second air duct (42) at the connection between the first partition plate (3) and the freezing chamber (14) and on the side of the first partition plate (3) facing the second cavity (142).

2. The refrigeration appliance (10) of claim 1, characterized in that The second air duct (42) is provided with a first air door (421) rotatably installed between the second air duct (42) and the air outlet of the fan (21), and the first air door (421) is used for adjusting the air volume of the second air duct (42).

3. The refrigeration appliance (10) of claim 2, characterized in that Further comprising a driving member located in the first partition plate (3), and the first air door (421) is in power connection with the output end of the driving member.

4. The refrigeration appliance (10) according to any one of claims 1-3, characterized in that, Further comprising a second partition plate (5) located in the refrigerating chamber (13) to divide the refrigerating chamber (13) into a third cavity (131) and a fourth cavity (132), and the second partition plate (5) is provided with a first sub-air duct (51) and a second sub-air duct (52), the first sub-air duct (51) being in communication with the third cavity (131), and the second sub-air duct (52) being in communication with the fourth cavity (132).

5. The refrigeration appliance (10) of claim 4, characterized in that The first sub-air duct (51) and / or the second sub-air duct (52) are provided with an air volume adjusting member.

6. The refrigeration appliance (10) of claim 5, characterized in that The air volume adjusting member comprises a second air door (511) and a third air door (521), the second air door (511) being rotatably installed between the first sub-air duct (51) and the air outlet of the fan (21), and the third air door (521) being rotatably installed between the second sub-air duct (52) and the air outlet of the fan (21).

7. The refrigeration appliance (10) of claim 6, characterized in that The side of the second partition plate (5) facing the third cavity (131) is provided with a third air outlet in communication between the first sub-air duct (51) and the third cavity (131). And / or one side of the second partition plate (5) is provided with a fourth air outlet (1321) facing the fourth chamber (132), and the fourth air outlet (1321) communicates the second sub-air duct (52) and the fourth chamber (132).

8. The refrigeration appliance (10) of claim 4, characterized in that The fan (21) is located in the first partition plate (3) and has a first fan outlet (213) and a second fan outlet (214), the first air duct (41) communicates with the first fan outlet (213), and the second air duct (42), the first sub-air duct (51) and the second sub-air duct (52) all communicate with the second fan outlet (214).

9. The refrigeration appliance (10) of claim 8, characterized in that The first fan outlet (213) is located on one side of the fan (21) facing the bottom wall of the freezing chamber (14), and the second fan outlet (214) is located on one side of the fan (21) facing the refrigerating chamber (13).

10. The refrigeration appliance (10) of claim 1, characterized in that Also comprising: A door body (16) is 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).