Refrigeration equipment

By forming a foaming cavity between the partition component and the inner wall of the storage cavity and filling it with a foaming layer, the problems of complex connection and poor sealing of the partition component of the refrigeration equipment are solved, and the effect of simplifying the connection and improving the sealing is achieved.

CN223448726UActive Publication Date: 2025-10-17HEFEI HUALING CO LTD +2
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Patent Information

Application Number
CN202422647175.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-17
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The connection between the partition assembly and the box body of existing refrigeration equipment is complex and the connection sealing is poor, which leads to odor and cold cross-talk between chambers.

Method used

The foaming layer is used to fill the foaming cavity formed by the partition component and the inner wall of the storage cavity, which simplifies the connection method and enhances the connection reliability and sealing.

Benefits of technology

The difficulty of connecting the partition assembly and the storage cavity is reduced, the connection reliability and sealing are improved, and the risk of odor and cold cross-contamination between chambers is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The refrigeration equipment comprises a box body, a middle partition assembly and a foaming layer, a storage cavity is formed in the box body, the middle partition assembly is arranged in the storage cavity to divide the storage cavity into a first cavity and a second cavity, a foaming cavity is formed by the middle partition assembly and the inner wall of the storage cavity, and the foaming layer is arranged in the foaming cavity. The foaming cavity is filled with the foaming layer.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to refrigeration device technical field, especially related to a refrigeration equipment. BACKGROUND

[0002] At present, the box body of the refrigeration equipment is usually provided with a partition assembly, which is used for separating the box body into two separate chambers to meet the use requirements of users. However, the connection mode of the existing partition assembly and the box body is relatively complex, it is difficult to ensure the connection sealing property between the partition assembly and the box body, and the two separate chambers are prone to taste and cold cross. SUMMARY

[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application provides a refrigeration equipment, which can simplify the connection mode of the partition assembly and the inner wall of the storage cavity, reduce the connection difficulty, and enhance the connection reliability and sealing property of the partition assembly and the inner wall of the storage cavity, thereby reducing the risk of taste and cold cross in the first chamber and the second chamber.

[0004] According to the refrigeration equipment provided by the embodiment of the present application, the partition assembly and the inner wall of the storage cavity form a foaming cavity, and the foaming layer is filled in the foaming cavity, so that the partition assembly and the inner wall of the storage cavity are connected through foaming. In this way, the connection mode of the partition assembly and the inner wall of the storage cavity can be simplified, the connection difficulty can be reduced, and the connection reliability and sealing property of the partition assembly and the inner wall of the storage cavity can be enhanced, thereby reducing the risk of taste and cold cross in the first chamber and the second chamber.

[0005] According to the refrigeration equipment provided by the embodiment of the present application, the partition assembly and the inner wall of the storage cavity form a foaming cavity, and the foaming layer is filled in the foaming cavity, so that the partition assembly and the inner wall of the storage cavity are connected through foaming. In this way, the connection mode of the partition assembly and the inner wall of the storage cavity can be simplified, the connection difficulty can be reduced, and the connection reliability and sealing property of the partition assembly and the inner wall of the storage cavity can be enhanced, thereby reducing the risk of taste and cold cross in the first chamber and the second chamber.

[0006] In the optional embodiment of the present application, the foaming cavity is arranged around at least part of the outer periphery of the partition assembly.

[0007] In the optional embodiment of the present application, the foaming cavity includes a first sub-cavity and a second sub-cavity, the first sub-cavity is located on one side of the partition assembly in a first direction, and the second sub-cavity is located on one side of the partition assembly in a second direction, the second direction intersects the first direction.

[0008] In the optional embodiment of the present application, two first sub-cavities are arranged, and the second sub-cavity is communicated between the two first sub-cavities.

[0009] In an alternative embodiment of the present application, the box comprises an inner container and an outer shell, a foaming space is formed between the inner container and the outer shell, the inner container forms the storage cavity, and the inner container is provided with an opening which is communicated between the foaming space and the foaming cavity.

[0010] In an alternative embodiment of the present application, the opening is provided with a plurality of openings which are arranged at intervals along the extension direction of the foaming cavity.

[0011] In an alternative embodiment of the present application, the inner wall of the storage cavity is provided with a first groove, the partition assembly covers the open end of the first groove to define the foaming cavity; and / or, the partition assembly is provided with a second groove which is open towards the inner wall of the storage cavity, and the inner wall of the storage cavity covers the open end of the second groove to define the foaming cavity.

[0012] In an alternative embodiment of the present application, the inner wall of the storage cavity is provided with a first groove, and the partition assembly is provided with a flange which is in sliding fit with the first groove.

[0013] In an alternative embodiment of the present application, the partition assembly comprises an air duct assembly which is used to supply air to the first cavity and / or the second cavity.

[0014] In an alternative embodiment of the present application, the air duct assembly comprises two housings which are spliced to define a mounting space, the mounting space comprises a mounting cavity and a heat preservation cavity which are arranged at intervals, the mounting cavity is used to mount an evaporator, and the heat preservation cavity is located at one end of the mounting cavity which is open towards the storage cavity and is adapted to be filled with heat preservation material.

[0015] In an alternative embodiment of the present application, the air duct assembly further comprises a decorative plate which is mounted at one end of the housing which is open towards the storage cavity, and the decorative plate is used to shield the splicing part of the two housings.

[0016] In an alternative embodiment of the present application, one of the partition assembly and the inner wall of the storage cavity is provided with a clamping protrusion and the other is provided with a clamping groove, and the clamping protrusion is in clamping fit with the clamping groove.

[0017] Additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. 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 on the premise of not paying creative effort.

[0019] Figure 1 A schematic view of the refrigeration equipment of the embodiment of the present application is shown;

[0020] Figure 2 A schematic view of the inner container and the partition assembly of the embodiment of the present application is shown Figure 1 ;

[0021] Figure 3 A schematic view of the inner container and the partition assembly of the embodiment of the present application is shown Figure 2 ;

[0022] Figure 4 A sectional view of A-A in Figure 3 is shown;

[0023] Figure 5 An enlarged view of B in Figure 4 is shown;

[0024] Figure 6 A schematic view of the inner container and the partition assembly of the embodiment of the present application is shown Figure 3 ;

[0025] Figure 7 A sectional view of C-C in Figure 6 is shown;

[0026] Figure 8 A schematic view of the inner container of the embodiment of the present application is shown;

[0027] Figure 9 A schematic view of the partition assembly of the embodiment of the present application is shown Figure 1 ;

[0028] Figure 10 An enlarged view of D in Figure 7 is shown;

[0029] Figure 11 A schematic view of the partition assembly of the embodiment of the present application is shown Figure 2 ;

[0030] Figure 12 A sectional view of E-E in Figure 6 is shown.

[0031] Reference signs: 10 - refrigeration equipment,

[0032] 1-box, 11-outer shell, 12-inner container, 121-storage cavity, 1211-first cavity, 1212-second cavity; 122-opening, 123-first groove; 124-connection groove,

[0033] 2-middle partition assembly, 21-connection protrusion, 22-second groove, 23-flange, 24-decorative plate, 25-housing, 251-mounting space, 26-mounting cavity, 27-heat preservation cavity, 28-evaporator, 3-foaming cavity, 31-first sub-cavity, 32-second sub-cavity, 4-foaming layer, 5-door body, X-first direction, Y-second direction. DETAILED DESCRIPTION

[0034] 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. 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.

[0035] 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.

[0036] 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 meaning of the above terms in the present application can be understood according to the specific circumstances.

[0037] 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.

[0038] The refrigeration equipment 10 is a professional storage tool for storing various frozen food, and can keep food or other objects in a frozen state, which is divided into household and commercial. The refrigeration equipment 10 generally comprises a cabinet 1, a door body 5 and a partition assembly 2, the cabinet 1 is formed with a storage cavity 121, the door body 5 is installed on the cabinet 1 to open or close the storage cavity 121, wherein, as shown in Figure 1 The cabinet 1 comprises an outer shell 11 and an inner container 12, the inner container 12 is installed in the outer shell 11, the storage cavity 121 is formed in the inner container 12, and the partition assembly 2 is installed in the storage cavity 121 to divide the storage cavity 121 into a first chamber 1211 and a second chamber 1212, and food can be stored in the first chamber 1211 and / or the second chamber 1212.

[0039] In order to reduce the connection complexity of the inner wall of the storage cavity 121 and the partition assembly 2, the inner wall of the storage cavity 121 and the partition assembly 2 can be connected by screw connection. However, in the related art, the connection sealing performance of the screw connection is poor, which can easily cause the problem of taste and cold leakage between the first chamber 1211 and the second chamber 1212. The refrigeration equipment 10 provided by the embodiment of the application can improve the above problem, the refrigeration equipment 10 provided by the embodiment of the application can simplify the connection mode of the partition assembly 2 and the inner wall of the storage cavity 121, reduce the connection difficulty, and enhance the connection reliability and connection sealing performance of the partition assembly 2 and the inner wall of the storage cavity 121, thereby reducing the risk of taste and cold leakage of the first chamber 1211 and the second chamber 1212.

[0040] The utility model will be described below in combination with the drawings and with reference to specific embodiments:

[0041] Please refer to Figure 2 The cabinet 1 is formed with a storage cavity 121, the partition assembly 2 is arranged in the storage cavity 121 to divide the storage cavity 121 into a first chamber 1211 and a second chamber 1212, and as shown in Figure 4 And Figure 5 The partition assembly 2 and the inner wall of the storage cavity 121 form a foaming cavity 3, and a foaming layer 4 is filled in the foaming cavity 3.

[0042] Therefore, the user's demand for storing different food in the first chamber 1211 and the second chamber 1212 can be met, and the use demand of different refrigerating capacity of the first chamber 1211 and the second chamber 1212 can also be met, and at the same time, the partition assembly 2 and the inner wall of the storage cavity 121 are connected by foaming, which can simplify the connection mode of the partition assembly 2 and the inner wall of the storage cavity 121, reduce the connection difficulty, and enhance the connection reliability and connection sealing performance of the partition assembly 2 and the inner wall of the storage cavity 121, thereby reducing the risk of taste and cold leakage of the first chamber 1211 and the second chamber 1212.

[0043] For example, the refrigeration device 10 is a refrigerator, and the refrigerator includes a cabinet 1, as shown in Figure 1 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 storage cavity 121 is formed in the inner liner 12 (as shown in Figure 2 and Figure 3 The inner liner 12), and a partition assembly 2 is arranged in the storage cavity 121 to divide the storage cavity 121 into a first chamber 1211 and a second chamber 1212, as shown in Figure 2 and Figure 6

[0044] For example, the partition assembly 2 can be a partition plate, and the partition assembly 2 can be arranged horizontally in the storage cavity 121 to divide the storage cavity 121 into the first chamber 1211 and the second chamber 1212 in the up-down direction, or the partition assembly 2 can be arranged vertically in the storage cavity 121 to divide the storage cavity 121 into the first chamber 1211 and the second chamber 1212 in the left-right direction, or the partition assembly 2 can be arranged obliquely in the storage cavity 121 to divide the storage cavity 121 into the first chamber 1211 and the second chamber 1212, wherein the capacity of the first chamber 1211 and the capacity of the second chamber 1212 can be the same or different, which is not limited herein.

[0045] Or the partition assembly can be an air duct assembly, which is used to send air to the first chamber 1211 and / or the second chamber 1212. In this way, the air duct assembly can be used to achieve the effect of dividing the storage cavity 121 into the first chamber 1211 and the second chamber 1212, and the air duct assembly can be used to send air to the first chamber 1211 and / or the second chamber 1212 to achieve refrigeration of the first chamber 1211 and / or the second chamber 1212.

[0046] In this way, the user can store different flavors of food in the first chamber 1211 and the second chamber 1212 to reduce the problem of flavor transfer between foods.

[0047] In some implementations, the refrigeration capacity of the first chamber 1211 and the second chamber 1212 can be different, for example, when the storage cavity 121 is used to store food for fresh-keeping or freezing, the refrigeration capacity of the first chamber 1211 can be less than that of the second chamber 1212, due to the arrangement of the partition assembly 2, the cold transfer between the first chamber 1211 and the second chamber 1212 can be reduced, thereby meeting the use requirement that the first chamber 1211 is used for fresh-keeping of food and the second chamber 1212 is used for freezing of food. Of course, the size relationship between the refrigeration capacity of the first chamber 1211 and the refrigeration capacity of the second chamber 1212 can be set according to actual use requirements, which is not limited herein.

[0048] As shown in Figure 4 and Figure 5 ​As shown, the partition assembly 2 and the inner wall of the storage cavity 121 are formed with a foaming cavity 3, and the foaming layer 4 is filled in the foaming cavity 3. For example, in actual installation, foaming liquid can be injected into the foaming cavity 3, and the foaming liquid is foamed to form the foaming layer 4, so that the partition assembly 2 and the inner wall of the storage cavity 121 are connected by foaming. In this way, the connection mode of the partition assembly 2 and the inner wall of the storage cavity 121 can be simplified, the connection difficulty can be reduced, the connection reliability and the connection sealing performance of the partition assembly 2 and the inner wall of the storage cavity 121 can be enhanced, and the risk of taste and cold leakage of the first cavity 1211 and the second cavity 1212 can be reduced.

[0049] According to the refrigeration equipment 10 provided in the embodiment of the present application, the storage cavity 121 is formed in the box body 1, the partition assembly 2 is arranged in the storage cavity 121 to divide the storage cavity 121 into the first cavity 1211 and the second cavity 1212, the partition assembly 2 and the inner wall of the storage cavity 121 are formed with the foaming cavity 3, and the foaming layer 4 is filled in the foaming cavity 3, so that the partition assembly 2 and the inner wall of the storage cavity 121 are connected by foaming. In this way, the connection mode of the partition assembly 2 and the inner wall of the storage cavity 121 can be simplified, the connection difficulty can be reduced, the connection reliability and the connection sealing performance of the partition assembly 2 and the inner wall of the storage cavity 121 can be enhanced, and the risk of taste and cold leakage of the first cavity 1211 and the second cavity 1212 can be reduced.

[0050] In some embodiments, as shown in Figure 7 As shown, the foaming cavity 3 is arranged around at least part of the outer peripheral edge of the partition assembly 2. In this way, the foaming layer 4 can be arranged around at least part of the outer peripheral edge of the partition assembly 2, so as to increase the area of the foaming connection between the partition assembly 2 and the inner wall of the storage cavity 121, thereby increasing the connection reliability and the connection sealing performance of the partition assembly 2 and the inner wall of the storage cavity 121, and reducing the risk of taste and cold leakage of the first cavity 1211 and the second cavity 1212.

[0051] In some embodiments, as shown in Figure 7 As shown, the foaming cavity 3 includes a first sub-cavity 31 and a second sub-cavity 32, the first sub-cavity 31 is located on one side of the first direction X of the partition assembly 2, and the second sub-cavity 32 is located on one side of the second direction Y of the partition assembly 2, and the second direction Y intersects the first direction X.

[0052] For example Figure 7As shown, the first direction X can be the depth direction of the storage cavity 121, and the second direction Y can be the height direction of the storage cavity 121. As a result, the partition assembly 2 is foamed and connected to the inner wall of the storage cavity 121 in both the first direction X and the second direction Y. This increases the area of ​​the foamed connection between the partition assembly 2 and the inner wall of the storage cavity 121, thereby increasing the reliability and sealing of the connection between the partition assembly 2 and the inner wall of the storage cavity 121, thereby reducing the risk of odor and cold crosstalk between the first cavity 1211 and the second cavity 1212. Of course, the first direction X and the second direction Y can also be other directions, which are not limited here.

[0053] In some embodiments, as Figure 7 As shown, two first sub-cavities 31 are provided, and the second sub-cavity 32 is connected between the two first sub-cavities 31. Thus, by injecting foaming liquid into one first sub-cavity 31, the foaming liquid can flow through the second sub-cavity 32 to the other first sub-cavity 31, thereby reducing the difficulty of foaming liquid injection and facilitating a larger area of ​​the foaming connection between the partition assembly 2 and the inner wall of the storage cavity 121. This further increases the reliability and sealing of the connection between the partition assembly 2 and the inner wall of the storage cavity 121, thereby reducing the risk of odor and cold cross-talk between the first cavity 1211 and the second cavity 1212.

[0054] In some embodiments, as Figure 1 As shown, the box body 1 includes: an inner liner 12 and an outer shell 11, a foaming space (not shown in the figure) is formed between the inner liner 12 and the outer shell 11, and the inner liner 12 forms a storage cavity 121, and as shown in FIG. Figure 3 As shown, the inner container 12 is provided with an opening 122 , and the opening 122 is connected between the foaming space and the foaming cavity 3 .

[0055] Therefore, when the foaming liquid is injected into the foaming space, the foaming liquid can enter the foaming space first, and the foaming liquid in the foaming space can enter the foaming cavity 3 through the opening 122 to form the foaming layer 4. In this way, there is no need to inject the foaming liquid into the foaming cavity 3 separately, so as to reduce the difficulty of injecting liquid into the foaming cavity 3.

[0056] In some embodiments, as Figure 8 As shown, a plurality of openings 122 are provided, and the plurality of openings 122 are spaced apart along the extension direction of the foaming cavity 3 .

[0057] Therefore, by providing a plurality of openings 122 spaced apart along the extension direction of the foaming cavity 3 , the speed of the foaming liquid entering the foaming cavity 3 from the foaming space is increased, thereby increasing the forming speed of the foaming layer 4 .

[0058] In some embodiments, as Figure 8 As shown, the inner wall of the storage cavity 121 is provided with a first groove 123 , and the partition assembly 2 covers the open opening of the first groove 123 to define the foaming cavity 3 .

[0059] Therefore, by setting the first groove 123, the middle partition component 2 can cover the open mouth of the first groove 123 after cooperating with the inner wall of the storage cavity 121 to define a relatively closed foaming cavity 3. In this way, it is convenient to reduce the difficulty of setting the foaming cavity 3. After the foaming layer 4 is filled in the foaming cavity 3, it can better realize the connection and cooperation between the middle partition component 2 and the inner wall of the storage cavity 121, so as to enhance the cooperation strength and sealing effect between the middle partition component 2 and the inner wall of the storage cavity 121.

[0060] Or as Figure 9 As shown, the partition assembly 2 is provided with a second groove 22 , which is open toward the inner wall of the storage cavity 121 . The inner wall of the storage cavity 121 covers the open opening of the second groove 22 to define the foaming cavity 3 .

[0061] Therefore, by setting the second groove 22, the inner wall of the storage cavity 121 can cover the open mouth of the second groove 22 after cooperating with the middle partition component 2 to define a relatively closed foaming cavity 3. In this way, it is convenient to reduce the difficulty of setting the foaming cavity 3. After the foaming layer 4 is filled in the foaming cavity 3, it can better realize the connection and cooperation between the middle partition component 2 and the inner wall of the storage cavity 121, so as to enhance the cooperation strength and sealing effect between the middle partition component 2 and the inner wall of the storage cavity 121.

[0062] Alternatively, the inner wall of the storage cavity 121 is provided with a first groove 123 , and the partition assembly 2 is provided with a second groove 22 . The first groove 123 and the second groove 22 are open toward each other to define the foaming cavity 3 .

[0063] Therefore, by setting the first groove 123 and the second groove 22, after the inner wall of the storage cavity 121 is matched with the middle partition component 2, the first groove 123 and the second groove 22 are open toward each other to define a relatively closed foaming cavity 3. In this way, it is convenient to reduce the difficulty of setting the foaming cavity 3. After the foaming layer 4 is filled in the foaming cavity 3, it can better realize the connection and matching between the middle partition component 2 and the inner wall of the storage cavity 121, so as to enhance the matching strength and sealing effect between the middle partition component 2 and the inner wall of the storage cavity 121.

[0064] In some embodiments, as Figure 5 As shown, the inner wall of the storage cavity 121 is provided with a first groove 123 , and the partition assembly 2 is provided with a flange 23 , which is slidably fitted with the first groove 123 .

[0065] Therefore, through the sliding fit between the flange 23 and the first groove 123, the partition assembly 2 can be installed to the inner liner 12 in a sliding manner to reduce the difficulty of assembling the partition assembly 2 and the inner liner 12, wherein the flange 23 can be slidably fitted with the bottom wall of the first groove 123 and / or the side wall of the first groove 123 to increase the sliding stability of the partition assembly 2.

[0066] In some embodiments, as shown in Figure 5 The flange 23 is in sliding fit with the side wall of the first groove 123, and the flange 23 is spaced apart from the bottom wall of the first groove 123 to define the foaming cavity 3.

[0067] Thus, by setting the flange 23 in sliding fit with the side wall of the first groove 123, the sliding stability of the partition assembly 2 can be increased, so as to reduce the assembly difficulty of the partition assembly 2 and the inner container 12. Meanwhile, when the flange 23 is spaced apart from the bottom wall of the first groove 123 to define the foaming cavity 3, the flange 23 abutting against the side wall of the first groove 123 can play a certain sealing role on the foaming cavity 3.

[0068] In some embodiments, the partition assembly 2 comprises an air duct assembly for air supply to the first chamber 1211 and / or the second chamber 1212. Thus, the air duct assembly can be used to realize the role of separating the storage cavity 121 into the first chamber 1211 and the second chamber 1212, and the air duct assembly can be used for air supply to the first chamber 1211 and / or the second chamber 1212 to realize refrigeration of the first chamber 1211 and / or the second chamber 1212.

[0069] In some embodiments, as shown in Figure 12 The air duct assembly comprises two housings 25 which are spliced to define a mounting space 251. In this way, the setting difficulty of the mounting space can be reduced, and the mounting space 251 comprises a mounting cavity 26 and a heat preservation cavity 27 which are spaced apart, the mounting cavity 26 is used for mounting an evaporator 28, and the heat preservation cavity 27 is located at one end of the mounting cavity 26 which is open to the storage cavity 121 and is adapted to be filled with heat preservation material.

[0070] In this way, the evaporator 28 can be used to realize refrigeration of the storage cavity 121 to realize freezing of food. Meanwhile, the heat preservation material filled in the heat preservation cavity 27 can realize heat preservation of the evaporator 28 to reduce leakage of cold energy of the evaporator 28, thereby facilitating realization of heat preservation of the storage cavity 121. The heat preservation material can include foam or foaming, which is not limited herein.

[0071] In some embodiments, as shown in Figure 12 The air duct assembly further comprises a decorative plate 24 which is mounted at one end of the housing 25 which is open to the storage cavity 121, and the decorative plate 24 is used to shield the splicing part of the two housings 25.

[0072] Thus, the decorative plate 24 can be directly mounted on the housing 25, which facilitates simplification of the installation difficulty of the decorative plate 24. The decorative plate 24 can shield the splicing part of the two housings 25, so that the air duct assembly is more beautiful, and the decorative plate 24 can also play a certain protection role on the outside of the splicing part of the two housings 25.

[0073] In some embodiments, as shown in Figure 8 and Figure 9 one of the partition assembly 2 and the inner wall of the storage cavity 121 is provided with the clamping protrusion 21 and the other is provided with the clamping groove 124, and the clamping protrusion 21 and the clamping groove 124 are clamped and matched.

[0074] For example, as shown in Figure 8 the inner wall of the storage cavity 121 is provided with the clamping groove 124, and as shown in Figure 9 the partition assembly 2 is provided with the clamping protrusion 21, and as shown in Figure 10 the clamping protrusion 21 and the clamping groove 124 are clamped and matched. In this way, the partition assembly 2 and the inner wall of the storage cavity 121 are clamped and matched to enhance the connection stability of the partition assembly 2 and the inner wall of the storage cavity 121.

[0075] Alternatively, the inner wall of the storage cavity 121 is provided with the clamping protrusion 21, the partition assembly 2 is provided with the clamping groove 124, and the clamping protrusion 21 and the clamping groove 124 are clamped and matched. In this way, the partition assembly 2 and the inner wall of the storage cavity 121 are clamped and matched to enhance the connection stability of the partition assembly 2 and the inner wall of the storage cavity 121.

[0076] In some other embodiments, the partition assembly 2 and the inner wall of the storage cavity 121 can be inserted and matched, or magnetically attracted and matched, etc., which are not limited herein.

[0077] In some embodiments, as shown in Figure 10 the clamping protrusion 21 is located in the foaming cavity 3, and the clamping groove 124 is open toward the foaming cavity 3. In this way, the clamping protrusion 21 only occupies the space in the foaming cavity 3 without occupying other installation space, so that the structure of the refrigeration equipment 10 is more compact, and the clamping groove 124 is open toward the foaming cavity 3 to facilitate the clamping and matching with the clamping protrusion 21, while the leakage of the foaming cavity 3 can be avoided.

[0078] Especially, after the clamping protrusion 21 is inserted into the clamping groove 124 and the foaming is injected into the foaming cavity 3, part of the foaming can be filled at the connection between the clamping protrusion 21 and the clamping groove 124 to enhance the clamping stability of the clamping protrusion 21 and the clamping groove 124.

[0079] In some embodiments, as shown in Figure 11 two clamping protrusions 21 are provided, and the two clamping protrusions 21 are respectively arranged at both ends of the extension direction of the foaming cavity 3.

[0080] In this way, the connection between the partition assembly 2 and the inner wall of the storage cavity 121 can be realized by the two clamping protrusions 21 at both ends of the extension direction of the foaming cavity 3 to enhance the matching strength of the partition assembly 2 and the inner wall of the storage cavity 121.

[0081] In the description of the present specification, the description referring to 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.

[0082] 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.

[0083] 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 spirits of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A refrigeration device, characterized in that: include: A box body (1), wherein a storage cavity (121) is formed in the box body (1); a partition component (2), the partition component (2) being arranged in the storage cavity (121) to separate the storage cavity (121) into a first chamber (1211) and a second chamber (1212), the partition component (2) and the inner wall of the storage cavity (121) forming a foaming cavity (3); A foaming layer (4), wherein the foaming layer (4) fills the foaming cavity (3).

2. The refrigeration equipment according to claim 1, characterized in that The foaming cavity (3) is arranged around at least a portion of the outer peripheral edge of the partition component (2).

3. The refrigeration equipment according to claim 1, characterized in that The foaming cavity (3) comprises a first sub-cavity (31) and a second sub-cavity (32), wherein the first sub-cavity (31) is located on one side of the middle partition component (2) in a first direction, and the second sub-cavity (32) is located on one side of the middle partition component (2) in a second direction, wherein the second direction intersects with the first direction.

4. The refrigeration equipment according to claim 3, characterized in that There are two first sub-cavities (31), and the second sub-cavity (32) is connected between the two first sub-cavities (31).

5. The refrigeration equipment according to claim 1, characterized in that The box body (1) comprises an inner liner (12) and an outer shell (11), a foaming space is formed between the inner liner (12) and the outer shell (11), the inner liner (12) forms the storage cavity (121), and the inner liner (12) is provided with an opening (122), and the opening (122) is connected between the foaming space and the foaming cavity (3).

6. The refrigeration equipment according to claim 5, characterized in that A plurality of the openings (122) are provided, and the plurality of openings (122) are spaced apart along the extension direction of the foaming cavity (3).

7. The refrigeration equipment according to claim 1, characterized in that The inner wall of the storage cavity (121) is provided with a first groove (123), and the partition component (2) covers the open mouth of the first groove (123) to define the foaming cavity (3); And / or, the partition assembly (2) is provided with a second groove (22), the second groove (22) is open toward the inner wall of the storage cavity (121), and the inner wall of the storage cavity (121) covers the open mouth of the second groove (22) to define the foaming cavity (3).

8. The refrigeration equipment according to claim 1, characterized in that The inner wall of the storage cavity (121) is provided with a first groove (123), and the partition assembly (2) is provided with a flange (23), and the flange (23) is slidably engaged with the first groove (123).

9. The refrigeration equipment according to claim 1, characterized in that The partition assembly (2) comprises an air duct assembly, and the air duct assembly is used to supply air to the first chamber (1211) and / or the second chamber (1212).

10. The refrigeration equipment according to claim 9, characterized in that: The air duct assembly comprises two shells (25), the two shells (25) are spliced ​​to define an installation space (251), the installation space (251) comprises an installation cavity (26) and a heat preservation cavity (27) which are spaced apart from each other, the installation cavity (26) being used to install an evaporator (28), the heat preservation cavity (27) being located at one end of the installation cavity (26) facing the open opening of the storage cavity (121) and being suitable for being filled with heat preservation material.

11. The refrigeration equipment according to claim 10, characterized in that: The air duct assembly further comprises a decorative plate (24), which is mounted on one end of the shell (25) facing the open end of the storage cavity (121), and is used to cover the joint of the two shells (25).

12. The refrigeration equipment according to any one of claims 1 to 11, characterized in that: One of the partition assembly (2) and the inner wall of the storage cavity (121) is provided with a snap-fit ​​protrusion (21) and the other is provided with a snap-fit ​​groove (124), and the snap-fit ​​protrusion (21) is snap-fitted with the snap-fit ​​groove (124).