Embedded wine cabinet
By using a layered, built-in wine cabinet with a combination of evaporators and fans, the different storage temperature requirements of various red wines are addressed, enabling differentiated temperature storage, simplifying the wine cabinet structure, and improving cooling efficiency and ease of use.
Patent Information
- Application Number
- CN202520236582.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing wine cabinets cannot effectively differentiate the storage temperature requirements of different types and vintages of red wine, and the complex design of multiple cabinet compartments makes them inconvenient to use.
The built-in wine cabinet features a layered design, with the inner frame divided into an upper chamber, a lower chamber, and a rear chamber by partitions. The evaporator is installed in the rear chamber, and combined with a fan and ventilation structure, it achieves differentiated temperature control in different chambers to meet the storage needs of different types of wine.
It enables temperature-differentiated storage for different types of wine, simplifies the manufacturing process of wine cabinets, and improves refrigeration efficiency and ease of use.
Smart Images

Figure CN223726730U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wine cabinet technical field more specifically relates to a kind of embedded wine cabinet. BACKGROUND
[0002] With the sustained development of social economy, people's cognition on beverage on catering is higher and higher, so they habitually choose expensive wine as beverage on dining table, and therefore people's quality requirement for wine is gradually improved. Therefore, wine cabinet applied to wine preservation emerges as the times require, such as Chinese patent number CN202222571432.0 discloses a new wine cabinet, the wine cabinet has cabinet body and cabinet door, the cabinet body is provided with cabinet cavity, the cabinet cavity is single-layer structure, red wine is put into the cabinet cavity for refrigeration (low-temperature storage) ; however, according to different types and different years of red wine, the storage temperature is slightly different, and in addition to storing red wine, other wine that needs to be refrigerated and stored can also be put into the wine cabinet for storage, but different types of wine require different storage temperatures, because multiple cabinet cavities are required.
[0003] Therefore, the utility model provides a red wine cabinet which is provided with multiple layers and has simple manufacturing process. UTILITY MODEL CONTENT
[0004] Therefore, the utility model provides an embedded wine cabinet.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: an embedded wine cabinet, comprising: a cabinet body, a door body and a refrigeration assembly assembled on the cabinet body, the cabinet body comprises: an outer shell and an inner frame, a receiving cavity is formed in the inner frame, a partition is arranged in the inner frame, and an upper cavity, a lower cavity and a rear cavity are formed by the partition, wherein the rear cavity is located behind the upper cavity; the depth of the lower cavity is less than the depth of the upper cavity; an evaporator in the refrigeration assembly is installed in the rear cavity; in the present technology, the inner frame is integrally formed by a metal plate or composed of multiple metal plates connected together, and the manufacturing process is simple; the partition is installed in the inner frame to form the upper cavity and the lower cavity, and the evaporator is arranged in the rear cavity, which can quickly reduce the temperature of the upper cavity, so that the temperatures of the upper cavity and the lower cavity are different, different types of wine or different specifications of red wine can be put into different cavities for storage, and the use requirement is met.
[0006] As a preferred scheme of the utility model, a partition is arranged between the outer shell and the inner frame, an installation cavity for assembling a compressor and a condenser of the refrigeration assembly is surrounded by the partition and the outer shell, the installation cavity is located behind the lower cavity, and the rear cavity is located above the installation cavity, a gap is arranged between the partition and the inner frame in the present technology, which reduces the heat transfer of the compressor and the condenser to the receiving cavity, and the refrigeration effect is better.
[0007] As a preferred scheme of the utility model, the rear chamber is sunken relative to the upper chamber, the bottom of the upper chamber is provided with a backflow hole, the backflow hole is provided with a pipeline, and the pipeline extends into the mounting cavity.
[0008] As a preferred scheme of the utility model, the partition comprises: an upper partition plate and a lower partition plate, the upper partition plate is provided with an upper ventilation opening, the lower partition plate is provided with a ventilation net, the upper ventilation opening corresponds to the ventilation net in an up-down direction, and the cold air in the upper chamber can flow into the lower chamber through the upper ventilation opening and the ventilation net.
[0009] As a preferred scheme of the utility model, a fan is arranged between the upper partition plate and the lower partition plate, the fan is arranged corresponding to the ventilation net, and the fan can accelerate the airflow in the upper chamber to flow into the lower chamber.
[0010] As a preferred scheme of the utility model, a water receiving box is arranged in the mounting cavity; and the condensed water of the pipeline drops into the water receiving box.
[0011] As a preferred scheme of the utility model, the shell is provided with a heat dissipation hole corresponding to the mounting cavity, and heat dissipation is realized.
[0012] As a preferred scheme of the utility model, the cabinet body is provided with a control panel, and the operating parameters of the wine cabinet can be adjusted through the control panel.
[0013] The remaining beneficial technical effects of the utility model are embodied in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only embodiments of the utility model, and other drawings can be obtained by the provided drawings without creative labor for the ordinary skilled in the art.
[0015] Figure 1 It is a structural schematic view of the utility model;
[0016] Figure 2 It is a split view of the cabinet body and the cabinet door in the utility model;
[0017] Figure 3 It is a top view angle schematic view of the utility model;
[0018] Figure 4 It is Figure 3 It is a sectional view schematic view along the line A-A';
[0019] Figure 5 It is Figure 3A cross-sectional view along line B-B'.
[0020] Legend of reference signs
[0021] Cabinet 100; receiving cavity 101; upper cavity 102; backflow hole 1021; pipe 1022; lower cavity 103; rear cavity 104; mounting cavity 105; shell 110; inner frame 120; partition 130; upper partition plate 131; upper vent 1311; lower partition plate 132; ventilation net 1321; partition plate 140; water collecting box 150; control panel 160; door body 200; refrigeration assembly 300; evaporator 310. DETAILED DESCRIPTION
[0022] The application will be further described in detail with reference to the drawings. These drawings are simplified schematic views and only show the basic structure of the application in a schematic manner, and thus only show the components related to the application.
[0023] An embedded wine cabinet, please refer to Figures 1-5 As shown, it comprises a cabinet 100, a door body 200 and a refrigeration assembly 300 assembled on the cabinet 100. The cabinet 100 comprises a shell 110 and an inner frame 120. The inner frame 120 forms a receiving cavity 101. A partition 130 is arranged in the inner frame 120, which divides the inner frame 120 into an upper cavity 102, a lower cavity 103 and a rear cavity 104. The rear cavity 104 is located behind the upper cavity 102. The depth of the lower cavity 103 is less than that of the upper cavity 102. An evaporator 310 in the refrigeration assembly 300 is installed in the rear cavity 104.
[0024] The inner frame 120 is integrally bent and formed by a metal plate or is made by connecting multiple metal plates, so the manufacturing process is simple. After the inner frame 120 is made, the partition 130 is installed in the receiving cavity 101 formed by the inner cavity 120, which can be divided into the upper cavity 102, the lower cavity 103 and the rear cavity 104. The positions of the rear cavity 104 and the lower cavity 103 are staggered.
[0025] As Figure 2 shown, shelves can be arranged in the upper cavity 102 and the lower cavity 103 respectively, and the red wine can be placed in the shelves. Figure 2 As
[0026] The evaporator 310 is installed in the rear cavity 104. When the evaporator 310 operates, it absorbs heat, which can rapidly cool the upper cavity 102 and make the temperature of the upper cavity 102 lower than that of the lower cavity 103, thus meeting the user's demand.
[0027] In one embodiment, a partition 140 is arranged between the outer shell 110 and the inner frame 120, and an installation cavity 105 for assembling the compressor and the condenser of the refrigeration assembly 300 is arranged between the partition 140 and the outer shell 110, the installation cavity 105 is located at the rear of the lower cavity 103, and the rear cavity 104 is located above the installation cavity 105.
[0028] Specifically, the partition 140 can also be a metal plate, and a gap is left between the partition 140 and the inner frame 120, the compressor and the condenser (not shown in the figure) of the refrigeration assembly 300 can be installed in the installation cavity 105, and the heat generated by the operation of the compressor and the condenser is blocked, effectively reducing the heat transfer to the lower cavity 103, and ensuring the refrigeration effect of the lower cavity 103.
[0029] The outer shell 110 is provided with a heat dissipation hole corresponding to the installation cavity 105, and the heat generated by the operation of the compressor and the condenser can be discharged from the heat dissipation hole.
[0030] It is worth noting that the refrigeration assembly 300 in the utility model includes an evaporator 310, a compressor and a condenser, the condenser is not drawn in the accompanying drawings, but it is a common technical means to apply the refrigeration assembly 300 in a refrigerator or a wine cabinet, the arrangement position is different, but the specific refrigeration principle is the same, here, the refrigeration principle of the refrigeration assembly 300 is not described in detail, and the specific structure of the condenser is not specifically limited.
[0031] In one embodiment, the rear cavity 104 is sunken relative to the upper cavity 102, and the bottom of the upper cavity 102 is provided with a backflow hole 1021, the backflow hole 1021 is provided with a pipeline 1022, and the pipeline 1022 extends into the installation cavity 105.
[0032] The backflow hole 1021 is arranged in the middle of the rear cavity 104, and the bottom surface of the rear cavity 104 can be inclined to the backflow hole 1021, so that the condensed water is collected at the backflow hole 1021 and flows into a designated place through the pipeline 1022.
[0033] Further, the installation cavity 105 is provided with a water collecting box 150, and the condensed water of the pipeline 1022 drops into the water collecting box 150.
[0034] In one embodiment, the partition 130 includes an upper partition plate 131 and a lower partition plate 132, the upper partition plate 131 is provided with an upper ventilation opening 1311, the lower partition plate 132 is provided with a ventilation net 1321, and the upper ventilation opening 1311 corresponds to the ventilation net 1321 in an up-down manner.
[0035] Specifically, the upper partition plate 131 can be in an L shape to divide the receiving cavity 101 into the upper cavity 102 and the rear cavity 104; the lower partition plate 132 corresponds to the upper partition plate 131 in an up-down manner;
[0036] The upper partition plate 131 and the lower partition plate 132 can be metal plate structures, and a filling material such as thermal insulation cotton can be filled between the upper and lower partition plates.
[0037] Further, a fan is arranged between the upper partition plate 131 and the lower partition plate 132, and the fan is arranged corresponding to the ventilation net 1321. The fan can accelerate the airflow in the upper cavity 102 to flow into the lower cavity 103.
[0038] As shown in FIG. 3, when the refrigeration assembly 300 is running, the refrigerant flows through the pipeline of the evaporator 310, absorbs the heat in the rear cavity 104 through the heat dissipation fins, and at the same time absorbs the heat in the upper cavity 102 to reduce the temperature of the upper cavity 102. Figures 4-5
[0039] Since the rear cavity 104 is arranged corresponding to the upper cavity 102, and the rear cavity 104 is staggered with the lower cavity 103 in an up-down manner, when the evaporator 310 is running, the upper cavity 102 can be cooled more, and the cooling effect of the lower cavity 103 is worse than that of the upper cavity 102, resulting in a temperature difference between the upper cavity 102 and the lower cavity 103.
[0040] The evaporator 310 has a low cooling effect on the lower cavity 103, and when the fan is running, the cold air in the upper cavity 102 is blown into the lower cavity 103 to cool the lower cavity 103.
[0041] As shown in FIG. 3, the front end of the partition 130 is not attached to the cabinet door 200. Since the airflow in the lower cavity 103 can flow back into the upper cavity 102, the airflow circulation is achieved, but the temperature of the upper cavity 102 is ensured to be lower than that of the lower cavity 103. Figure 4 In an embodiment, the cabinet 100 is provided with a control panel 160. Through the control panel 160, the operating parameters of the wine cabinet, such as temperature, operating time, etc., can be set.
[0042] Optionally, the control panel 160 can be a touch panel, a key panel, a rotary knob panel, etc.
[0043] Optionally, the control panel 160 can also be arranged at the door body 200.
[0044]
[0045] The above description of disclosed embodiments enables one of ordinary skill in the art to make or use the application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. An embedded bar, comprising: The cabinet (100), the door body (200) and the refrigeration assembly (300) assembled to the cabinet (100), the cabinet (100) comprises: a shell (110) and an inner frame (120), the inner frame (120) is formed with a receiving cavity (101), characterized in that: a partition (130) is arranged in the inner frame (120), and an upper cavity (102), a lower cavity (103) and a rear cavity (104) are formed by the partition (130), wherein the rear cavity (104) is located at the rear of the upper cavity (102); the depth of the lower cavity (103) is less than the depth of the upper cavity (102). The evaporator (310) in the refrigeration assembly (300) is installed in the rear cavity (104).
2. The built-in wine cellar of claim 1, wherein: A partition plate (140) is arranged between the shell (110) and the inner frame (120), and a mounting cavity (105) for assembling the compressor and the condenser of the refrigeration assembly (300) is surrounded between the partition plate (140) and the shell (110), the mounting cavity (105) is located at the rear of the lower cavity (103), and the rear cavity (104) is located above the mounting cavity (105).
3. The built-in wine cellar of claim 2, wherein: The rear cavity (104) is sunken relative to the upper cavity (102), and the bottom of the upper cavity (102) is provided with a backflow hole (1021), the backflow hole (1021) is provided with a pipeline (1022), and the pipeline (1022) extends into the mounting cavity (105).
4. The built-in wine cellar of claim 1, wherein: The partition (130) comprises: an upper partition plate (131) and a lower partition plate (132), the upper partition plate (131) is provided with an upper ventilation opening (1311), and the lower partition plate (132) is provided with a ventilation net (1321), the upper ventilation opening (1311) corresponds to the ventilation net (1321) in an up-down direction.
5. The built-in wine cooler of claim 4, wherein: A fan is arranged between the upper partition plate (131) and the lower partition plate (132), and the fan corresponds to the ventilation net (1321).
6. The built-in wine cellar of claim 3, wherein: A water receiving box (150) is arranged in the mounting cavity (105), and the condensate water of the pipeline (1022) drops into the water receiving box (150).
7. The built-in wine cellar of claim 2, wherein: The shell (110) is provided with a heat dissipation hole corresponding to the mounting cavity (105).
8. The built-in wine cellar of claim 1, wherein: The cabinet (100) is provided with a control panel (160).
Citation Information
Patent Citations
A new type of wine cabinet
CN218791243U