Novel refrigeration wine decanter
By combining the cooling and shaking modules, the problems of traditional decanters being time-consuming and laborious, and ice diluting the flavor, are solved. This enables rapid and precise temperature adjustment and even contact of the wine, improving the convenience of the decanter and the wine tasting experience.
Patent Information
- Application Number
- CN202423215627.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Traditional decanters are time-consuming and laborious, making it difficult to precisely adjust the temperature of red wine. Using ice to cool the wine affects its flavor, and the long decanting time reduces the convenience and immediacy of red wine tasting.
A decanter comprising a cooling module, a shaking module, and a control module was designed. By precisely controlling the temperature and shaking frequency, it achieves rapid cooling and uniform contact, avoiding the dilution of red wine by ice and shortening the decanting time.
It enables rapid and precise wine temperature adjustment, shortens decanting time, preserves wine flavor, enhances convenience and immediacy, provides personalized temperature settings, reduces noise interference, and is environmentally friendly and healthy.
Smart Images

Figure CN223944289U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of wine utensils, especially relates to a novel refrigeration wine decanter. BACKGROUND
[0002] In the wine tasting culture, the wine decanter plays an important role, its main function is to promote red wine and air to fully contact, and then promote red wine to release more complex and fascinating aroma and flavor, so as to improve the taste experience. However, there are a series of problems that cannot be ignored in the wine decanter on the market at present.
[0003] The traditional wine decanting method usually needs the user to place the red wine in the refrigerator in advance for cold storage, and then take out for static fermentation after reaching a certain low temperature. This process not only consumes time and effort, but also is difficult to accurately adjust the red wine to the most suitable drinking temperature due to the relatively fixed refrigeration temperature of the refrigerator. In actual operation, the temperature is often too low or too high, which affects the best taste of red wine.
[0004] In addition, in order to quickly obtain the ice taste of red wine, some users will choose to directly add ice cubes in the wine decanting process. But this way will have a significant negative impact on the flavor and taste of red wine. The ice cubes will dilute the red wine in the melting process, change its original alcohol content and flavor balance, and greatly reduce the aroma and taste of red wine.
[0005] Furthermore, the ordinary wine decanter mainly relies on the natural contact of red wine and air, and this passive contact method leads to a relatively long wine decanting time. In the fast-paced modern life, consumers often cannot patiently wait for the long wine decanting process, which limits the convenience and instantaneity of red wine tasting to some extent. INVENTION CONTENTS
[0006] The utility model aims at providing a novel refrigeration wine decanter, which aims to solve the problems in the background technology. In order to achieve the purpose, the utility model adopts the technical scheme of:
[0007] The utility model provides a novel refrigeration wine decanter, including control module, shell assembly, glass wine decanter, refrigeration water tank, heat dissipation module, refrigeration module, shaking module and power module, control module, refrigeration water tank, heat dissipation module, refrigeration module, shaking module and power module are all installed on shell assembly, power module electric connection control module, heat dissipation module, refrigeration module and shaking module, control module electric connection heat dissipation module, refrigeration module and shaking module, control module is used to control heat dissipation module, refrigeration module and shaking module, and power module is used to power heat dissipation module, refrigeration module and shaking module, the central position of shell assembly is provided with refrigeration water tank, and glass wine decanter is installed at the top of refrigeration water tank, and glass wine decanter can be freely taken out from the equipment, power module is installed at the tail of shell assembly, the bottom of refrigeration water tank is connected with refrigeration module, and refrigeration module is used to refrigerate refrigeration water tank, and the both sides of refrigeration water tank are provided with heat dissipation module, and heat dissipation module is used to heat dissipation refrigeration water tank, and the below of refrigeration module is installed with shaking module, and shaking module is used to shake glass wine decanter to make the red wine in glass wine decanter contact with oxygen in air.
[0008] Preferably, the shell assembly comprises an upper shell and a lower shell, and the upper shell is installed on the top of the lower shell.
[0009] Preferably, the heat dissipation module comprises a fan, a water cooling row and a metal mesh, and the water cooling row is connected with the metal mesh through the fan.
[0010] Preferably, the refrigeration module comprises a cold guide block, a refrigeration sheet, a crankshaft and a motor, the crankshaft is installed on the top of the motor, the refrigeration sheet is arranged on the top of the crankshaft, and the cold guide block is arranged on the top of the refrigeration sheet.
[0011] Preferably, the shaking module comprises a sliding piece and a fixed piece, the motor is installed in the fixed piece, and a plurality of sliding pieces are installed on the bottom of the fixed piece.
[0012] The utility model discloses the beneficial effect:
[0013] Significantly shorten the wine time: the innovative design of shaking module can realize the even speed shaking of red wine. Through the accurate control of the frequency and amplitude of shaking, the contact of red wine and air is more sufficient and uniform, which greatly accelerates the process of red wine, compared with the traditional wine decanter, the wine time can be greatly shortened, and the user can enjoy the red wine with optimized taste more quickly.
[0014] Active and efficient refrigeration function: the wine decanter base is equipped with an advanced active refrigeration system. The system can operate independently, without relying on a refrigerator to pre-cool the red wine as in the traditional way. The user only needs to pour the red wine into the wine decanter, and then the built-in refrigeration module can quickly reduce the temperature of the red wine to achieve the ice-cold taste accurately, meeting the needs of consumers for instant ice-cold red wine and improving the convenience of use.
[0015] Perfectly preserve the flavor of red wine: The traditional method of using ice cubes to cool down is abandoned, effectively avoiding the damage caused by the melting of ice cubes to the flavor and taste of red wine. Ensure that the original complex aroma, rich taste and rich flavor of red wine are preserved while reducing the temperature of red wine, so that users can taste the purest red wine flavor;
[0016] Personalized temperature customization: Users can set the cooling temperature freely through the control module of the wine decanter according to their personal preferences for the temperature of red wine. Whether the user prefers a cool and refreshing taste or a slightly warmer temperature, they can easily obtain red wine that meets their taste needs, providing a highly personalized user experience;
[0017] Comfortable and quiet use experience: During operation, the components of the wine decanter are carefully designed and optimized to produce minimal noise. Users can hardly feel the noise interference caused by the operation of the device, creating a quiet and comfortable environment and making the red wine tasting process more enjoyable. At the same time, the entire cooling and decanting process does not produce any harmful substances, in line with the concept of environmental protection, contributing to the health and environmental protection of users. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The overall schematic diagram provided for the embodiments of the present application;
[0019] Figure 2 The overall schematic diagram provided for the embodiments of the present application;
[0020] Figure 3 The overall structure cross-sectional view provided for the embodiments of the present application;
[0021] Figure 4 The overall structure explosion schematic diagram of the embodiments of the present application.
[0022] In the drawings, various reference signs are used:
[0023] 1, control module; 2, shell assembly; 21, upper shell; 22, lower shell; 3, glass wine decanter; 4, refrigeration water tank; 5, heat dissipation module; 51, fan; 52, water cooling row; 53, metal mesh; 6, refrigeration module; 61, cold block; 62, refrigeration piece; 63, crankshaft; 64, motor; 7, shaking module; 71, sliding piece; 72, fixed piece; 8, power module. DETAILED DESCRIPTION
[0024] For the purpose of facilitating the understanding of the present application, the present application will be described more fully below with reference to the accompanying drawings. In the drawings, preferred embodiments of the present application are shown. However, the present application can be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and fully convey the scope of the present application to those skilled in the art.
[0025] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. In addition, when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can also be present. In contrast, when an element is referred to as being "directly on" another element, there are no intervening elements present. The terms "vertical", "horizontal", "left", "right", and the like as used herein are used for ease of description of the embodiments and are not intended to be limiting. The terms "upper", "lower", "left", "right", "front", "rear", and the like as used herein are used for ease of description of the embodiments and are not intended to be limiting.
[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used in this description, the terms "therefore" and "because" are used in their plain, ordinary sense and are not intended to be limiting.
[0027] The technical solutions of the patent will be further described in detail below in combination with the specific embodiments.
[0028] As Figures 1-4As shown, this utility model embodiment provides a novel refrigerated decanter, including a control module 1, a housing assembly 2, a glass decanter 3, a cooling water tank 4, a heat dissipation module 5, a cooling module 6, a shaking module 7, and a power module 8. The control module 1, cooling water tank 4, heat dissipation module 5, cooling module 6, shaking module 7, and power module 8 are all mounted on the housing assembly 2. The power module 8 is electrically connected to the control module 1, heat dissipation module 5, cooling module 6, and shaking module 7. The control module 1 is electrically connected to the heat dissipation module 5, cooling module 6, and shaking module 7. The control module 1 is used to control the heat dissipation module 5, cooling module 6, and shaking module 7. The power module is used for… The cooling module 5, cooling module 6, and shaking module 7 are powered by the cooling module 8. The cooling water tank 4 is located in the center of the outer casing 2. The glass decanter 3 is installed on top of the cooling water tank 4 and can be freely removed from the device. The power module 8 is installed at the rear of the outer casing 2. The cooling module 6 is connected to the bottom of the cooling water tank 4 and is used to cool the cooling water tank 4. The cooling modules 5 are located on both sides of the cooling water tank 4 and are used to dissipate heat from the cooling water tank 4. The shaking module 7 is installed below the cooling module 6 and is used to shake the glass decanter 3 to accelerate the contact between the red wine in the glass decanter 3 and the oxygen in the air.
[0029] In this embodiment, the housing assembly 2 includes an upper housing 21 and a lower housing 22, with the upper housing 21 mounted on the top of the lower housing 22.
[0030] In this embodiment, the heat dissipation module 5 includes a fan 51, a water-cooling radiator 52, and a metal mesh 53. The water-cooling radiator 52 is connected to the metal mesh 53 through the fan 51.
[0031] In this embodiment, the cooling module 6 includes a cooling block 61, a cooling plate 62, a crankshaft 63, and a motor 64. The crankshaft 63 is mounted on the top of the motor 64, the cooling plate 62 is disposed on the top of the crankshaft 63, and the cooling block 61 is disposed on the top of the cooling plate 62.
[0032] In this embodiment, the rocking module includes a slider 71 and a fixing member 72. The motor 64 is installed inside the fixing member 72, and multiple sliders 71 are installed at the bottom of the fixing member 72.
[0033] Workflow
[0034] Preparation
[0035] Before operation, users should carefully and slowly pour an appropriate amount of red wine that needs to be decanted into the glass decanter 3. It is important to control the amount of red wine, generally not exceeding the rated capacity marked on the glass decanter 3, to prevent the wine from overflowing during subsequent operations, which could affect the normal use of the decanter and the surrounding environment.
[0036] Chilled Red Wine Process
[0037] The hand-held glass decanter 3 containing red wine is slowly and steadily placed on the base of the decanter, ensuring that the bottom of the glass decanter 3 is tightly attached to the refrigerated water tank 4, and that the glass decanter 3 is well connected to other relevant functional components of the decanter, such as the heat dissipation module 5 and the shaking module 7, so that the entire decanting process can proceed smoothly.
[0038] After plugging in the power plug and turning on the power, the power module 8 begins to work, providing stable power supply for the entire decanter. The control module 1 is then started, running its built-in refrigeration control program. The motor 64 in the refrigeration module 6 starts quickly after receiving the instruction from the control module 1, driving the top crankshaft 63 to start operating. The rotation of the crankshaft 63 drives the refrigeration fin 62 to start working, which generates cold through physical effects. These colds are efficiently transferred to the liquid in the refrigerated water tank 4 through the closely connected cold guide block 61.
[0039] The cooled liquid in the refrigerated water tank 4, when in contact with the bottom of the glass decanter 3, quickly and uniformly transfers the cold to the red wine in the glass decanter 3 through the waterproof heat-conducting film between them. This efficient heat conduction method allows the temperature of the red wine to drop rapidly in a short time, gradually achieving the desired ice-cold effect of the user.
[0040] Almost at the same time as the refrigeration module 6 starts, the shaking module 7 also starts simultaneously. Its internal motor 64 starts working, driving the internal rotating disc connected to it to rotate. The control module 1 accurately adjusts the speed of the motor 64 according to the preset program or the user's personalized settings, precisely controlling the rotation frequency of the rotating disc. Under the action of the rotating disc, the red wine forms a regular dynamic flow in the glass decanter 3, constantly rolling and stirring, greatly increasing the contact area and opportunity of the red wine with oxygen in the air, accelerating the decanting process of the red wine.
[0041] During the entire refrigeration process, the heat dissipation module 5 plays a crucial role. The water pump in the heat dissipation module 5 first starts, providing the necessary power for the circulation of the water cooling liquid in the heat dissipation module 5. The water cooling liquid flows out of the heat dissipation water tank under the drive of the water pump, and enters the water cooling row 52 to start circulating. At the same time, the fan 51 starts, generating a strong air flow. The water cooling row 52 quickly dissipates the heat generated during the semiconductor refrigeration process to the surrounding environment under the action of the air flow generated by the fan 51. The metal mesh 53 plays a further role in uniform heat dissipation and protection of internal components, together maintaining a low-temperature environment for the refrigeration system, ensuring that the refrigeration process can continue and be efficient, achieving rapid cooling of the red wine.
[0042] When the temperature of the water in the refrigeration water tank 4 is monitored by the temperature sensor to have been cooled to the temperature set by the user in advance on the control module 1, the control module 1 will automatically stop the operation of the refrigeration module 6 according to the signal fed back by the temperature sensor, so that the red wine is kept at the set low temperature. If the user has the need for heat preservation, the corresponding heat preservation mode can also be set on the control module 1, and the wine decanter will keep the red wine at a suitable temperature through a certain temperature control mechanism, so that the user can enjoy it at any time.
[0043] Normal temperature red wine operation process
[0044] If the user wants to taste the normal temperature red wine, first operate the control module 1 of the wine decanter, close the refrigeration function, and stop the operation of the refrigeration module 6, so as to avoid unnecessary refrigeration operation on the red wine.
[0045] Then, a proper amount of red wine is carefully poured into the glass wine decanter 3, and then the glass wine decanter 3 is placed on the wine decanter base to ensure stable placement.
[0046] Finally, the shaking function is started on the control module 1, and at this time the shaking module 7 starts to work alone. The internal motor drives the internal rotating disc to rotate at a pre-set frequency, so as to make the red wine in the glass wine decanter 3 shake rhythmically. This shaking action accelerates the contact between the red wine and the air, improves the wine decanting speed, and effectively avoids the adverse effects on the taste of the red wine caused by the refrigeration process, so that the user can taste the best flavor of the red wine at normal temperature.
[0047] The above embodiments are only used to illustrate the present application, and are not intended to limit the present application. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present application, therefore all equivalent technical solutions also belong to the scope of the present application, and the patent protection scope of the present application should be defined by the claims.
Claims
1. A novel refrigerated decanter, characterized in that: The system includes a control module, a housing assembly, a glass decanter, a cooling water tank, a heat dissipation module, a cooling module, a shaking module, and a power module. All of these components are mounted on the housing assembly. The power module is electrically connected to the control module, heat dissipation module, cooling module, and shaking module. The control module controls the heat dissipation module, cooling module, and shaking module, and the power module supplies power to them. The cooling water tank is centrally located, and the glass decanter is mounted on top of the cooling water tank. The glass decanter can be freely removed from the device. The power module is mounted at the rear of the outer casing assembly. The cooling module is connected to the bottom of the cooling water tank and is used to cool the cooling water tank. The heat dissipation modules are located on both sides of the cooling water tank and are used to dissipate heat from the cooling water tank. The shaking module is installed below the cooling module and is used to shake the glass decanter to accelerate the contact between the red wine inside and oxygen in the air.
2. The novel refrigerated decanter according to claim 1, characterized in that: The housing assembly includes an upper housing and a lower housing, with the upper housing mounted on top of the lower housing.
3. A novel refrigerated decanter according to claim 2, characterized in that: The heat dissipation module includes a fan, a water cooling radiator, and a metal mesh, with the water cooling radiator connected to the metal mesh via the fan.
4. A novel refrigerated decanter according to claim 3, characterized in that: The refrigeration module includes a cooling block, a cooling plate, a crankshaft, and a motor. The crankshaft is mounted on the top of the motor, the cooling plate is disposed on the top of the crankshaft, and the cooling block is disposed on the top of the cooling plate.
5. A novel refrigerated decanter according to claim 4, characterized in that: The rocking module includes a sliding component and a fixing component. The motor is installed inside the fixing component, and multiple sliding components are installed at the bottom of the fixing component.