Wine chiller cold storage bin with circulating air duct and wine chiller

By setting up a circulating air duct inside the refrigeration chamber of the wine icer, internal circulation refrigeration is achieved, which solves the problem of cold loss caused by external air ducts in the refrigeration chamber and improves the refrigeration effect and efficiency.

CN223678090UActive Publication Date: 2025-12-16GUANGDONG INVITOP TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423199208.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-16
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

The external air duct of the refrigeration chamber in existing wine icers causes cold air loss and results in poor cooling performance.

Method used

A circulating air duct is set up in the refrigeration chamber of the wine icer. An internal circulation is formed through the air intake component and the refrigeration component. The airflow circulates and cools in the refrigeration chamber before being guided back into the refrigeration chamber.

Benefits of technology

It improves the cooling effect and efficiency, reduces cold loss, and enhances the cooling performance of the refrigeration chamber.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223678090U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of electric appliances, and particularly relates to a wine chiller cold storage bin with a circulating air duct and a wine chiller, which comprise a cold storage cavity shell, a cold storage cavity and an opening communicated with the cold storage cavity are arranged on the cold storage cavity shell; a circulating air duct is further arranged in the refrigeration cavity, the circulating air duct is provided with an air inlet communicated with the refrigeration cavity and an air outlet communicated with the refrigeration cavity, and a refrigeration assembly and an air inlet assembly are further arranged in the circulating air duct. The built-in circulating air duct greatly improves the refrigeration effect.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of electric appliances, especially relates to the ice wine ware refrigeration storehouse and ice wine ware with circulating air duct. BACKGROUND

[0002] The ice wine ware is the electric appliance that the wine, beverage and so on drink are cooled in the inside refrigeration cavity, and compared with the refrigerator, generally only the single bottle drink is cooled, thereby reaching the effect of fast cooling.

[0003] In the existing ice wine ware structure, the refrigeration cavity is integrally formed, and the refrigeration assembly is arranged on the outside of the refrigeration cavity to cool the condensation cavity, or the air in the refrigeration cavity is guided to the outside, cooled by the refrigeration assembly, and then guided into the refrigeration cavity again, which has good sealing effect, but the condensing air duct of the refrigeration assembly is located on the outside of the refrigeration storehouse, so that the long air duct path and the external air duct easily cause the loss of cold energy, and the refrigeration effect is reduced. UTILITY MODEL CONTENTS

[0004] The utility model discloses a refrigeration storehouse of ice wine ware with circulating air duct, which greatly improves the refrigeration effect.

[0005] Based on this, the utility model provides refrigeration storehouse of ice wine ware with circulating air duct, including refrigeration cavity shell body, be equipped with refrigeration cavity and the opening that communicates with refrigeration cavity on refrigeration cavity shell body, be equipped with the pivot that sets along refrigeration cavity length direction in refrigeration cavity, the pivot is used for with bottle body periphery side resistance and supports bottle body in refrigeration cavity, and the pivot rotation can drive bottle body to rotate in refrigeration cavity;

[0006] Still be equipped with circulating air duct in refrigeration cavity, circulating air duct has the air inlet that communicates with refrigeration cavity, the air outlet that communicates with refrigeration cavity, and still be equipped with refrigeration assembly and air inlet component in circulating air duct.

[0007] Refrigeration storehouse of ice wine ware with circulating air duct as described above, circulating air duct sets along the inner wall of refrigeration cavity, the air inlet is located in the upper portion of refrigeration cavity and forms an air inlet channel with the upper inner wall of refrigeration cavity, the air outlet is located in the lower portion of refrigeration cavity and forms an air outlet channel with the lower inner wall of refrigeration cavity, and the air inlet channel and the air outlet channel have a condensation channel formed with the side inner wall of refrigeration cavity, and the refrigeration assembly is installed in the condensation channel.

[0008] Refrigeration storehouse of ice wine ware with circulating air duct as described above, the air inlet component is installed in the air inlet channel and opposite to the air inlet.

[0009] Refrigeration storehouse of ice wine ware with circulating air duct as described above, the lower inner wall of refrigeration cavity is located in the air outlet channel and is also provided with a water outlet.

[0010] The ice wine cooler storage bin with the circulating air duct as described above, characterized in that the mounting frame is arranged in the refrigeration cavity and separates the circulating air duct, the air inlet is arranged on the mounting frame, and the refrigeration assembly and the air inlet assembly are mounted on the mounting frame.

[0011] The mounting frame comprises a top frame, a side connecting frame and a bottom frame.

[0012] The top frame is arranged between the upper side of the side connecting frame and the inner wall of the refrigeration cavity, the bottom frame is arranged between the lower side of the side connecting frame and the lower inner wall of the refrigeration cavity, and the side connecting frame is arranged between one side wall of the refrigeration cavity.

[0013] The air inlet assembly is mounted on the top frame, and the refrigeration assembly is mounted on the side connecting frame.

[0014] The air inlet is arranged on the top frame and faces downward, and the air outlet formed by the bottom frame and the lower inner wall of the refrigeration cavity faces upward.

[0015] The refrigeration assembly comprises a plurality of vertically arranged condensing fins, a condensing pipe arranged across the plurality of condensing fins, and the plurality of condensing fins are arranged at intervals.

[0016] The condensing fin is in a wave shape.

[0017] The refrigeration cavity is further provided with a supporting part near the bottom, and the supporting part and the rotating shaft support the bottle in the refrigeration cavity.

[0018] The utility model further provides an ice wine cooler, including machine body, be equipped with above-mentioned ice wine cooler storage bin with circulating air duct on the machine body.

[0019] The embodiment of the utility model has the following beneficial effects:

[0020] 1. The ice wine cooler storage bin with the circulating air duct is provided, and the circulating air duct is arranged in the refrigeration cavity.

[0021] 2. The ice wine cooler is provided, and the ice wine cooler storage bin with the circulating air duct is used, so that the refrigeration efficiency can be improved. BRIEF DESCRIPTION OF DRAWINGS

[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0023] Figure 1 is a schematic view of the ice wine cooler refrigeration chamber with a circulating air duct of the present application.

[0024] Figure 2 is Figure 1 a sectional view of the internal structure.

[0025] Figure 3 is Figure 1 an exploded view. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0027] As Figures 1 to 3 shown, the present application provides an ice wine cooler refrigeration chamber with a circulating air duct, which comprises a refrigeration cavity shell 10, the refrigeration cavity shell 10 is provided with a refrigeration cavity 101 and an opening 102 communicating with the refrigeration cavity 101; in normal use, the beverage bottle is put into the refrigeration cavity 101 from the opening 102, and after the opening is covered, the beverage can be cooled in the refrigeration cavity.

[0028] In the use of the ice wine cooler refrigeration chamber, in order to make the beverage have higher cooling efficiency in the refrigeration cavity 101, the bottle body of the beverage is rotated in the refrigeration cavity 101 to make it be quickly refrigerated. In the present scheme, a rotating shaft 7 is arranged in the refrigeration cavity 101 along the length direction of the refrigeration cavity 101, the rotating shaft 7 is used to abut the outer peripheral side of the bottle body to support the bottle body in the refrigeration cavity 101, and the rotating shaft 7 can drive the bottle body to rotate in the refrigeration cavity 101.

[0029] In the scheme, the refrigeration cavity 101 is also provided with a circulating air duct 103, the circulating air duct 103 has an air inlet 1031 communicated with the refrigeration cavity 101, an air outlet 1032 communicated with the refrigeration cavity 101, and the circulating air duct 103 is also provided with a refrigeration assembly 4 and an air inlet assembly 5. The circulating air duct is arranged in the refrigeration cavity, the air inlet assembly and the refrigeration assembly in the circulating air duct make the air in the refrigeration cavity pass through the circulating air duct for refrigeration, and then is guided back to the refrigeration cavity, so that the refrigeration effect is better.

[0030] Specifically, in order to better drive the bottle body to rotate, the rotating shaft 7 is arranged close to the bottom of the refrigeration cavity 101, and the rotating shaft 7 supports the bottle body after the bottle body is placed in the refrigeration cavity 101, and in order to make the rotation more stable, the refrigeration cavity 101 is also provided with a supporting portion 81 close to the bottom, and the supporting portion 81 and the rotating shaft 7 jointly support the bottle body in the refrigeration cavity 101. In the embodiment, the supporting portion 81 and the rotating shaft 7 are located on both sides of the bottle body, that is, the bottle body is jointly supported from the surfaces on both sides of the lower part of the bottle body in the refrigeration cavity 101, so that the bottle body can be driven to rotate by rotating the rotating shaft 7, and the effect of rapid refrigeration is achieved.

[0031] Of course, in order to better rotate the bottle body, the contact surface of the supporting portion 81 abutting against the bottle body is also provided as an arc surface, which can reduce the contact range with the surface of the bottle body, and the supporting effect does not hinder the rotation of the bottle body.

[0032] In the embodiment, the space in the refrigeration cavity 101 is also fully utilized, the circulating air duct 103 is arranged along the inner wall of the refrigeration cavity 101, the air inlet 1031 is located at the upper part of the refrigeration cavity 101 and forms an air inlet channel 1033 with the upper inner wall of the refrigeration cavity 101, the air outlet 1032 is located at the lower part of the refrigeration cavity 101 and forms an air outlet channel 1035 with the lower inner wall of the refrigeration cavity 101, and the air inlet channel 1033 and the air outlet channel 1035 have a condensation channel 1034 formed with the side inner wall of the refrigeration cavity 101, and the refrigeration assembly 4 is installed in the condensation channel 1034. That is, the circulating air duct is designed as an upper-lateral-lower structure of the refrigeration cavity 101, so that the circulating air duct 103 is separated in the refrigeration cavity 101, and the space in the circulating air duct 103 is fully utilized, so that the air in the refrigeration cavity 101 is sucked into the circulating air duct 103 by the air inlet assembly 5, and is guided back to the refrigeration cavity 101 after being cooled by the refrigeration assembly 4.

[0033] In the scheme, the air inlet assembly 5 can adopt a fan or a blower, which can be arranged at the air inlet 1031 or the air outlet 1032. As a preferred, the air inlet assembly 5 is installed in the air inlet channel 1033 and opposite to the air inlet 1031.

[0034] In the embodiment of the utility model, the lower inner wall of the refrigeration cavity 101 is also provided with a water outlet in the air outlet channel 1035. Condensate water is inevitably generated during the operation of the refrigeration assembly 4. The present scheme discharges the generated condensate water through the water outlet in the air outlet channel 1035, thereby avoiding water accumulation inside the refrigeration cavity 101.

[0035] Specifically, the embodiment of the utility model further comprises a mounting frame, the mounting frame is arranged in the refrigeration cavity 101 and separates the circulating air duct 103, the air inlet 1031 is arranged on the mounting frame, and the refrigeration assembly 4 and the air inlet assembly 5 are mounted on the mounting frame. Specifically, the mounting frame comprises a top frame 51, a side connecting frame 52 and a bottom frame 53; the top frame 51 is arranged between the upper side of the side connecting frame 52 and the upper inner wall of the refrigeration cavity 101, the bottom frame 53 is arranged between the lower side of the side connecting frame 52 and the lower inner wall of the refrigeration cavity 101, and the side connecting frame 52 is arranged between one side wall of the refrigeration cavity 101; the air inlet assembly 5 is mounted on the top frame 51, and the refrigeration assembly 4 is mounted on the side connecting frame 52. The structure is simple, convenient to install, and the circulating air duct is separated in the refrigeration cavity 101 after assembly. Moreover, corresponding accessories such as the air inlet assembly 5 and the refrigeration assembly 4 can be first mounted on the corresponding frame body, and then assembled, which can greatly improve the assembly efficiency.

[0036] Of course, in order to facilitate assembly, the refrigeration cavity shell 10 is also provided in a split type, which adopts a first shell 1 and a second shell 2 that are connected and assembled in an up-down manner, so that the complete refrigeration cavity can be assembled after the mounting frame and the corresponding components are assembled.

[0037] In the embodiment of the utility model, the air inlet 1031 is arranged on the top frame 51 and is arranged downward, and the air outlet 1032 formed by the bottom frame 53 and the lower inner wall of the refrigeration cavity 101 is arranged upward. When in use, the beverage bottle is placed close to the bottom of the refrigeration cavity 101. The position of the air outlet 1032 can make the condensed airflow directly blow to the outer surface of the beverage bottle, thereby improving the refrigeration efficiency.

[0038] In the embodiment of the utility model, the specific structure of the refrigeration assembly is that the refrigeration assembly 4 comprises a plurality of vertically arranged condensing fins and a condensing pipeline arranged transversely through the plurality of condensing fins, and the plurality of condensing fins are arranged at intervals. The condensing pipeline generally adopts a copper pipe structure, the inside of the copper pipe is cooled by a refrigerant, and the copper pipe transmits the cooling to each fin, thereby realizing refrigeration. In the present scheme, the condensing fin is in a wave shape. The condensing fin can increase the contact area with the airflow and greatly improve the refrigeration effect.

[0039] The utility model also provides an ice wine device, including the organism, the ice wine device cold storage compartment with circulating air duct of organism above-mentioned. Since the ice wine device has the structure of the cold storage cavity, the ice wine device also has the same beneficial effect.

[0040] The utility model provides a kind of ice wine device cold storage compartment with circulating air duct, it is provided with circulating air duct in the inside of cold storage cavity, by the air inlet component and refrigeration component in circulating air duct, the airflow in the inside of cold storage cavity is guided back to cold storage cavity after being refrigerated by circulating air duct, to make the effect of refrigeration better.

[0041] It should be understood that the terms "first", "second" and the like are used in the utility model to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, "first" information can also be referred to as "second" information without departing from the scope of the utility model, and similarly, "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, so it cannot be understood as a limitation on the utility model.

[0042] The above is the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the art, without departing from the principles of the utility model, a number of improvements and modifications can be made, and these improvements and modifications are also considered within the protection scope of the utility model.

Claims

1. A wine chiller cabinet with a circulating air duct, characterized in that, The application relates to a refrigerator cavity shell (10) which is provided with a refrigerator cavity (101) and an opening (102) communicating with the refrigerator cavity (101); a rotating shaft (7) is arranged in the refrigerator cavity (101) along the length direction of the refrigerator cavity (101), the rotating shaft (7) is used for abutting against the outer circumferential side of a bottle body to support the bottle body in the refrigerator cavity (101), and the rotating shaft (7) can drive the bottle body to rotate in the refrigerator cavity (101). The refrigerator cavity (101) is further provided with a circulating air duct (103) which has an air inlet (1031) communicating with the refrigerator cavity (101) and an air outlet (1032) communicating with the refrigerator cavity (101), and the circulating air duct (103) is further provided with a refrigeration assembly (4) and an air inlet assembly (5).

2. The ice wine cooler cold storage bin with a circulating air duct according to claim 1, characterized in that, The circulating air duct (103) is arranged along the inner wall of the refrigerator cavity (101), the air inlet (1031) is located at the upper portion of the refrigerator cavity (101) and forms an air inlet channel (1033) with the upper inner wall of the refrigerator cavity (101), the air outlet (1032) is located at the lower portion of the refrigerator cavity (101) and forms an air outlet channel (1035) with the lower inner wall of the refrigerator cavity (101), the air inlet channel (1033) and the air outlet channel (1035) have a condensation channel (1034) formed with the side inner wall of the refrigerator cavity (101), and the refrigeration assembly (4) is installed in the condensation channel (1034).

3. The ice wine cooler cold storage bin with a circulating air duct according to claim 2, characterized in that, The air inlet assembly (5) is installed in the air inlet channel (1033) and opposite to the air inlet (1031).

4. The ice wine cooler cold storage bin with a circulating air duct according to claim 3, characterized in that, The lower inner wall of the refrigerator cavity (101) is further provided with a water outlet in the air outlet channel (1035).

5. The ice wine cooler cold storage bin with a circulating air duct according to any one of claims 2-4, characterized in that, The application further comprises a mounting frame which is arranged in the refrigerator cavity (101) and separates the circulating air duct (103), the air inlet (1031) is arranged on the mounting frame, and the refrigeration assembly (4) and the air inlet assembly (5) are installed on the mounting frame.

6. The ice wine cooler bin with a circulating air duct according to claim 5, wherein, The mounting frame comprises a top frame (51), a side connecting frame (52) and a bottom frame (53). The top frame (51) is connected to the upper side of the side connecting frame (52) and is arranged at intervals with the upper inner wall of the refrigerator cavity (101), the bottom frame (53) is connected to the lower side of the side connecting frame (52) and is arranged at intervals with the lower inner wall of the refrigerator cavity (101), and the side connecting frame (52) is arranged at intervals with one side wall of the refrigerator cavity (101). The air inlet assembly (5) is installed on the top frame (51), and the refrigeration assembly (4) is installed on the side connecting frame (52).

7. The ice wine cooler bin with a circulating air duct according to claim 6, wherein, The air inlet (1031) is arranged on the top frame (51) and is arranged downward, and the bottom frame (53) and the air outlet (1032) formed with the lower inner wall of the refrigerator cavity (101) are arranged upward.

8. The ice wine cooler cold storage bin with a circulating air duct according to claim 2, characterized in that, The refrigeration assembly (4) comprises a plurality of vertical condensation fins and a condensation pipeline which transversely passes through the condensation fins, and the condensation fins are arranged at intervals.

9. The ice wine cooler cold storage bin with a circulating air duct according to claim 1, wherein, The refrigeration cavity (101) is also provided with a supporting part (81) near the bottom, and the supporting part (81) and the rotating shaft (7) jointly support the bottle body in the refrigeration cavity (101).

10. An ice wine server characterized by, The wine cooler refrigeration chamber comprises a body, and the body is provided with the wine cooler refrigeration chamber with the circulating air duct as claimed in any one of claims 1-9.