Wine distributor

By designing a rotatable outer and inner bottle structure, combined with graduated parts and a rolling assembly, the problem of traditional dispensing devices being unable to display the liquid level has been solved, increasing fun and personalization, and meeting the needs of modern consumers.

CN224172447UActive Publication Date: 2026-04-28TIANJIN LINGJIAO CREATIVE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN LINGJIAO CREATIVE TECH CO LTD
Filing Date
2025-05-14
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Traditional wine dispensers are a single unit that cannot display the liquid level, lack innovation and interactivity, and fail to meet modern consumers' pursuit of personalization and fun.

Method used

A wine dispenser has been designed, comprising a rotatable outer bottle and an inner bottle. The outer bottle has an installation window and an observation piece, while the inner bottle has a scale on its side. By rotating the outer bottle, the liquid level can be viewed. The scale and patterns add to the fun. A rolling component is provided at the contact point between the outer bottle and the base to reduce friction.

Benefits of technology

It enables a visual display of the liquid level, increases the fun and personalization of the dispensing device, extends its service life, and meets the diverse needs of consumers.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224172447U_ABST
    Figure CN224172447U_ABST
Patent Text Reader

Abstract

The utility model provides a wine distributor which comprises an outer bottle body, an inner bottle body arranged in the outer bottle body and a base, the inner bottle body extends out of the outer bottle body and is fixedly connected with the base, the outer bottle body is rotatably connected with the base so that the outer bottle body can rotate relative to the inner bottle body, an installation window is arranged on the outer bottle body, and an observation piece is arranged at the installation window. And the liquid level position of wine in the inner bottle body can be checked through the observation piece. The wine dispenser has the advantages that the wine dispenser can display the liquid level position of wine in the inner bottle body, interestingness of the wine dispenser in the using process is improved, and the requirement of consumers for individuation of the wine dispenser is met.
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Description

Technical Field

[0001] This utility model belongs to the field of wine utensils technology, and in particular relates to a wine dispenser. Background Technology

[0002] Traditional wine dispensers are usually one-piece structures that can only hold wine and cannot display the liquid level inside the dispenser. At the same time, existing wine dispensers often lack innovation and interactivity, failing to meet modern consumers' pursuit of personalization and fun. Summary of the Invention

[0003] In view of the above problems, this utility model provides a wine dispenser to solve the above or other problems existing in the prior art.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a wine dispenser, including an outer bottle body, an inner bottle body disposed in the outer bottle body, and a base. The inner bottle body extends out of the outer bottle body and is fixedly connected to the base. The outer bottle body is rotatably connected to the base so that the outer bottle body can rotate relative to the inner bottle body. The outer bottle body is provided with an installation window, and an observation piece is provided at the installation window. The liquid level of the wine in the inner bottle body can be viewed through the observation piece.

[0005] Furthermore, the inner bottle body includes a bottle body and a connector fixedly connected to the bottle body. The connector is located at the bottom of the side of the bottle body facing the inner side of the outer bottle body, and the connector is coaxially arranged with the bottle body.

[0006] Furthermore, the base is provided with a plug-in hole, and the plug-in component is plugged into the plug-in hole for connection.

[0007] Furthermore, the bottom of the outer bottle is provided with a first through hole, which is coaxially arranged with the outer bottle so that the connector can pass through the first through hole and connect to the base.

[0008] Furthermore, the bottom of the outer side of the outer bottle is provided with a mounting groove, which is coaxially arranged with the first through hole and communicates with the first through hole so that the outer bottle can be inserted and connected to the base.

[0009] Furthermore, a rolling component is provided at the contact point between the base and the outer bottle to support the rotation of the outer bottle relative to the base.

[0010] Furthermore, the rolling assembly includes multiple rolling elements arranged sequentially along the circumferential direction of the outer bottle. Each of the outer bottle surfaces in contact with the base has a receiving groove, and the multiple rolling elements are located within the receiving grooves, allowing them to roll along the receiving grooves.

[0011] Furthermore, the outer surface of the inner bottle is provided with a scale component, which has multiple display areas arranged sequentially along the circumferential direction of the inner bottle. Each display area has at least one scale mark. The height of the scale marks in different display areas along the axial direction of the inner bottle is different, and the height of the scale marks in the same display area along the axial direction of the inner bottle is also different, so as to indicate different liquid level heights.

[0012] Furthermore, the shape of the display area is adapted to the projection shape of the mounting window on one side of the inner bottle facing the inner side of the outer bottle.

[0013] Furthermore, the observation piece is made of a transparent material.

[0014] By adopting the above technical solution, this dispensing device has an inner bottle and an outer bottle that can rotate relative to each other. The inner bottle is fixedly connected to the base, while the outer bottle is rotatably connected to the base. An installation window is provided on the outer bottle. A scale is provided on the inner side of the inner bottle facing the inner side of the outer bottle. The scale includes patterns and graduations, and multiple graduations are arranged along the circumference of the inner bottle. By rotating the outer bottle, different patterns and graduations can be displayed in the installation window. This allows the dispensing device to display the liquid level in the inner bottle, increasing the enjoyment of using the device and satisfying consumer needs. To meet the individual needs of users, a rolling component is installed at the contact point between the outer bottle and the base. This component supports the outer bottle while reducing friction between the two, extending their lifespan. An observation window is provided on the outer bottle, allowing users to view the markings and patterns on the inner bottle to monitor the liquid level. The patterns on the observation and marking components, combined with the rotation of the outer bottle, display different designs, increasing the fun and personalization of the dispenser. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural schematic diagram of a wine dispenser according to an embodiment of the present invention;

[0016] Figure 2 This is a schematic diagram of the main structure of a wine dispenser according to an embodiment of the present invention;

[0017] Figure 3 This is a cross-sectional view of a wine dispenser according to an embodiment of the present invention;

[0018] Figure 4 This is an exploded structural diagram of a wine dispenser according to an embodiment of this utility model;

[0019] Figure 5 This is a schematic diagram of the inner bottle of a wine dispenser according to an embodiment of the present invention;

[0020] Figure 6 This is a schematic diagram of the scale component according to an embodiment of the present invention;

[0021] Figure 7 This is a schematic diagram of the structure of the first display area of ​​the scale component according to an embodiment of the present invention;

[0022] Figure 8 This is a schematic diagram of the structure of the second display area of ​​the scale component according to an embodiment of the present invention;

[0023] Figure 9 This is a schematic diagram of the structure of the second display area of ​​the scale component according to an embodiment of the present invention;

[0024] Figure 10 This is a schematic diagram of the structure of the second display area of ​​the scale component according to an embodiment of the present invention.

[0025] In the picture:

[0026] 1. Inner bottle body 2. Outer bottle body 3. Base

[0027] 4. Scrolling assembly; 5. Observation piece; 6. Scale piece

[0028] 10. Bottle body; 11. Connector; 20. First through hole

[0029] 21. Mounting slot 40. Rolling element 22. Mounting window

[0030] 60. Scale markings; 61. Display area; 30. Socket. Detailed Implementation

[0031] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0032] Figure 1 The diagram shows a structural schematic of an embodiment of the present invention. This embodiment relates to a wine dispenser for holding wine. The dispenser has an outer bottle and an inner bottle that can rotate relative to each other. Different areas of the side of the inner bottle facing the outer bottle are provided with scale markings indicating different heights. The outer bottle is provided with an installation window. By rotating the outer bottle, the scale markings on different areas of the inner bottle can be displayed in the installation window, allowing the user to quickly check the height of the wine level in the inner bottle. The side of the inner bottle facing the outer bottle is provided with a pattern. An observation piece with a pattern is provided at the installation window of the outer bottle, increasing the fun and aesthetics of the dispenser and satisfying the user's pursuit of personalization and enjoyment.

[0033] A type of wine dispenser, such as Figure 1-4As shown, the device includes an outer bottle body 2, an inner bottle body 1 housed within the outer bottle body 2, and a base 3. The portion of the inner bottle body 1 extending beyond the outer bottle body 2 is fixedly connected to the base 3. The outer bottle body 2 is rotatably connected to the base 3, allowing the outer bottle body 2 to rotate relative to the inner bottle body 1. The outer bottle body 2 has an installation window 22 with an observation element 5. The liquid level of the beverage inside the inner bottle body 1 can be observed through the observation element 5. The base 3 serves as a supporting frame, facilitating the installation of the inner bottle body 1 and the outer bottle body 2. It also allows the dispenser to be placed stably on the table, increasing its stability. The inner bottle body 1 is used to hold the beverage, and the outer bottle body 2 protects it. The outer bottle body 2 also facilitates the installation of the observation element 5. By rotating the outer bottle body 2, the user can observe the liquid level of the beverage inside the inner bottle body 1 from different external angles, allowing the user to monitor the liquid level at any time and increasing the enjoyment of using the dispenser.

[0034] Specifically, when the inner bottle 1, outer bottle 2, and base 3 are installed, the inner bottle 1 and outer bottle 2 are coaxially arranged, and the inner bottle 1 and base 3 are coaxially arranged, so that the overall structure of the dispensing device is symmetrical, which makes it easy to realize the rotation of the outer bottle 2 relative to the inner bottle 1.

[0035] like Figure 3-5 As shown, the inner bottle 1 includes a bottle body 10 and a connector 11 fixedly connected to the bottle body 10. The connector 11 is located at the bottom of the bottle body 10 and is coaxially arranged with the bottle body 10. The bottle body 10 is a container with one open end and an internal cavity. The internal cavity communicates with the outside of the bottle body 10 through the open end, so that wine can be poured into the internal cavity of the bottle body 10 through the open end. The connector 11 is fixedly located at the bottom of the bottle body 10 and is located at the bottom of the outer side of the bottle body 10 (the side facing the outer bottle 2). The connector 11 is used to connect with the base 3, thereby realizing the connection between the inner bottle 1 and the base 3. The connector 11 is a cylindrical structure, protruding from the bottom of the outer side of the bottle body 10. The connector 11 is fixedly connected to the base 3. This fixed connection method can be adhesive, integral molding, or other fixed connection methods, which can be selected according to actual needs. No specific requirements are specified here. Preferably, in some feasible embodiments, the connector 11 is integrally formed with the base 3.

[0036] The aforementioned base 3 is provided with a insertion hole 30. The insertion member 11 is inserted into the insertion hole 30 and fixed, thereby achieving a fixed connection between the base 3 and the inner bottle 1. Specifically, the base 3 includes a base body, which is a cylindrical structure. The insertion hole 30 is located at one end of the base body and is formed by the inward indentation of the end face of the base body along the axial direction of the base body. The insertion hole 30 has a certain depth, and the depth of the insertion hole 30 is less than the axial length of the base body. The insertion hole 30 is coaxially arranged with the base body so that the inner bottle 1 and the base 3 are coaxially arranged after installation. The cross-sectional shape of the insertion hole 30 is adapted to the cross-sectional shape of the insertion member 11 so that the insertion member 11 can be inserted into the insertion hole 30.

[0037] To prevent the inner bottle 1 from rotating relative to the base 3, the connector 11 is interference-fitted with the connector hole 30, or the connector 11 is fixedly connected to the connector hole 30 by adhesive, so that the connector 11 is fixedly connected to the base 3.

[0038] The axial length of the connector 11 is greater than the depth of the connector hole 30, so that after the connector 11 is inserted into the connector hole 30, the connector 11 protrudes from the opening end of the connector hole 30. That is, part of the connector 11 is not set in the connector hole 30, so that the outer bottle 2 can be connected to the inner bottle 1. At the same time, it is convenient for the outer bottle 2 to be installed with the base 3. Part of the outer bottle 2 is restricted between the inner bottle 1 and the base 3. The outer bottle 2 rotates along the axis of the connector 11. The base 3 supports the outer bottle 2 to prevent the outer bottle 2 from falling off the base 3.

[0039] The outer bottle body 2 has a first through hole 20 at its bottom. The first through hole 20 is coaxially arranged with the outer bottle body 2 so that the connector 11 passes through the first through hole 20 and connects to the base 3. The outer bottle body 2 is a container with one open end and an internal cavity. The open end allows the inner bottle body 1 to enter the internal space of the outer bottle body 2 and be installed inside the outer bottle body 2. The first through hole 20 is provided at the bottom of the outer bottle body 2 (the end opposite to the open end), and the first through hole 20 penetrates the outer bottle body. The bottom of the outer bottle 2 allows the internal cavity of the outer bottle 2 to communicate with the outside through the first through hole 20, so that the connector 11 on the inner bottle 1 can extend through the first through hole 20 out of the internal space of the outer bottle 2 to the outside and connect with the base 3. The shape of the first through hole 20 is adapted to the cross-sectional shape of the connector 11, and the connector 11 and the first through hole 20 are fitted with a clearance, so that the outer bottle 2 can rotate around the axis of the connector 11, reducing the wear between the outer bottle 2 and the connector 11.

[0040] To facilitate the installation of the outer bottle 2 and the base 3, an installation groove 21 is provided on the bottom of the outer side of the outer bottle 2. The installation groove 21 is coaxially arranged with the first through hole 20 so that the outer bottle 2 and the inner bottle 1 can be inserted and connected to the base 3 respectively. The installation groove 21 is formed by the inward indentation of the bottom of the outer side of the outer bottle 2 along the axial direction of the outer bottle 2. The installation groove 21 is a groove structure with a certain depth, and the bottom of the installation groove 21 has a through hole, which is connected to the first through hole 20. That is, the first through hole 20 penetrates the bottom of the installation groove 21, so that the installation groove 21 is connected to the internal cavity of the outer bottle 2. Thus, the connector 11 on the inner bottle 1 passes through the first through hole 20 and enters the installation groove 21, and then connects with the base 3. The radial dimension of the mounting groove 21 is larger than the radial dimension of the first through hole 20 so that the mounting groove 21 can accommodate one end of the base 3. The depth dimension of the mounting groove 21 is selected according to the wall thickness of the outer bottle 2 and the size of the base 3, and no specific requirements are made here.

[0041] A rolling assembly 4 is provided at the contact point between the base 3 and the outer bottle 2. This assembly supports the rotation of the outer bottle 2 relative to the base 3, preventing direct contact between the base 3 and the mounting groove 21. This reduces friction between the outer bottle 2 and the base 3 during rotation, extending the service life of both the outer bottle 2 and the base 3. The rolling assembly 4 can be located between the bottom wall of the mounting groove 21 and the end face of the base 3 within the mounting groove 21. Alternatively, the rolling assembly 4 can be located between the peripheral wall of the mounting groove 21 and the peripheral side face of the base 3 at the end of the mounting groove 21. The location of the rolling assembly 4 is selected according to actual needs and is not specifically required here.

[0042] The aforementioned rolling assembly 4 includes multiple rolling elements 40, which are sequentially arranged along the circumferential direction of the outer bottle body 2. The rolling of the rolling elements 40 reduces friction between the contact surfaces of the mounting groove 21 and the base 3. Each rolling element 40 has a spherical structure. To facilitate installation and prevent the rolling elements 40 from slipping out of the contact surface between the mounting groove 21 and the base 3 during rolling, receiving grooves are provided on the contact surfaces of the outer bottle body 2 and the base 3. Multiple rolling elements 40 are housed within these receiving grooves and can roll along them. Specifically, a receiving groove is provided on the bottom wall of the mounting groove 21; this receiving groove is an annular structure and is coaxially arranged with the mounting groove 21. Simultaneously, a receiving groove, also annular, is provided on the end face of the base 3 located within the mounting groove 21. The shaped groove structure is coaxially arranged with the base 3, so that the accommodating groove on the base 3 and the accommodating groove on the mounting groove 21 are face to face, coaxially arranged, and corresponding in position. The depth of the accommodating groove is not greater than the radius of the rolling element 40, so that the rolling element 40 is located in the accommodating groove on the mounting groove 21 and the accommodating groove on the base 3 respectively during installation, so that the mounting groove 21 and the base 3 are fitted with a clearance. Each rolling element 40 supports the outer bottle 2, so that the outer bottle 2 can rotate relative to the base 3 and the inner bottle 1. The friction force experienced by the outer bottle 2 during rotation is small.

[0043] like Figure 5-10 As shown, to facilitate users' observation of the liquid level inside the inner bottle 1, a scale 6 is provided on the outer side of the inner bottle 1 (the inner side facing the outer bottle 2). The scale 6 is fixedly installed on the outer surface of the inner bottle 1. This fixing method can be adhesive, integral molding, or other fixing connection methods, depending on actual needs. No specific requirements are specified here. The scale 6 is set along the circumferential direction of the inner bottle 1, covering the outer side of the inner bottle 1, so that the scale 6 can be seen when the outer bottle 2 is rotated at different angles.

[0044] The scale component 6 is provided with multiple display areas 61, which are arranged sequentially along the circumferential direction of the inner bottle 1. Each display area 61 is provided with at least one scale mark 60. By rotating the outer bottle 2, display areas 61 at different positions can be displayed at the mounting window 22 of the outer bottle 2, thereby displaying the scale marks 60 on the display areas 61 at different positions. The height of the scale marks 60 in different display areas 61 along the axial direction of the inner bottle 1 is different, and the height of the scale marks 60 in the same display area 61 along the axial direction of the inner bottle 1 is also different, so as to indicate different liquid level heights.

[0045] The design is further optimized so that the shape of the display area 61 is adapted to the projection shape of the mounting window 22 on the outer side of the inner bottle 1, so that when the outer bottle 2 is rotated to any display area 61, the overall situation of the display area 61 can be fully displayed, increasing the overall appearance and interest of the dispensing device.

[0046] like Figure 4 As shown, the mounting window 22 on the outer bottle 2 is a through-hole structure, penetrating the side wall of the outer bottle 2, so that the internal cavity of the outer bottle 2 is connected to the outside. This allows the scale piece 6 on the outer side of the inner bottle 1 to be observed from the outside of the outer bottle 2. In order to ensure the overall integrity of the outer bottle 2 and to protect the inner bottle 1, an observation piece 5 is fixedly installed on the mounting window 22. The observation piece 5 is made of transparent material so that the scale piece 6 on the inner bottle 1 can be viewed through the observation piece 5. The shape and size of the observation piece 5 are consistent with the shape and size of the mounting window 22 so that the observation piece 5 can be fixedly installed on the mounting window 22. The outer side of the observation piece 5 is coplanar with the outer side of the outer bottle 2, and the inner side of the observation piece 5 is coplanar with the inner side of the outer bottle 2. This ensures that the observation piece 5 does not protrude from either the inner or outer side of the outer bottle 2, so as not to interfere with the installation of the inner bottle 1, and also makes the overall structure of the outer bottle 2 aesthetically pleasing. Understandably, in order to facilitate the fixed installation of the observation piece 5 at the installation window 22 and prevent it from falling off, a flange is provided on the edge of the outer side of the observation piece 5. The flange contacts the outer side of the outer bottle body 2. The size of the flange is larger than the size of the installation window 22, which limits the observation piece 5 when it is installed along the radial direction of the outer bottle body 2, so that the observation piece 5 can be installed quickly and accurately at the installation window 22.

[0047] To enhance the overall usability of the dispensing device, one or more patterns can be designed on the observation piece 5. These patterns can be two-dimensional or three-dimensional, depending on the specific needs. Additionally, patterns can be designed on the side of the scale piece 6 facing the outer bottle 2 on the outer side of the inner bottle 1. These patterns can be arranged along the circumferential and axial directions of the inner bottle 1, covering its entire outer surface. Alternatively, different patterns can be designed in different display areas 61. By rotating the outer bottle 2, different patterns can be seen at the mounting window 22, further personalizing the dispensing device and increasing its usability.

[0048] The inner bottle 1 is made of a transparent material so that the liquid level of the wine inside the inner bottle 1 can be displayed.

[0049] When using this wine dispenser, pour the wine into the inner bottle 1 and rotate the outer bottle 2. While rotating the outer bottle 2, observe the liquid level through the observation piece 5. After each portion of wine is poured out, you can also determine the remaining liquid level in the inner bottle 1 by rotating the outer bottle 2. At the same time, during use, by coordinating the pattern on the observation piece 5 with the pattern on the scale piece 6 on the inner bottle 1, rotating the outer bottle 2 will display different patterns on the observation piece 5, increasing the fun of using the wine dispenser.

[0050] By adopting the above technical solution, this dispensing device has an inner bottle and an outer bottle that can rotate relative to each other. The inner bottle is fixedly connected to the base, while the outer bottle is rotatably connected to the base. An installation window is provided on the outer bottle. A scale is provided on the inner side of the inner bottle facing the inner side of the outer bottle. The scale includes patterns and graduations, and multiple graduations are arranged along the circumference of the inner bottle. By rotating the outer bottle, different patterns and graduations can be displayed in the installation window. This allows the dispensing device to display the liquid level in the inner bottle, increasing the enjoyment of using the device and satisfying consumer needs. To meet the individual needs of users, a rolling component is installed at the contact point between the outer bottle and the base. This component supports the outer bottle while reducing friction between the two, extending their lifespan. An observation window is provided on the outer bottle, allowing users to view the markings and patterns on the inner bottle to monitor the liquid level. The patterns on the observation and marking components, combined with the rotation of the outer bottle, display different designs, increasing the fun and personalization of the dispenser.

[0051] The embodiments of this utility model have been described in detail above, but the content described is only a preferred embodiment of this utility model and should not be considered as limiting the scope of implementation of this utility model. All equivalent changes and improvements made in accordance with the claims of this utility model should still fall within the patent coverage of this utility model.

Claims

1. A wine dispenser, characterized in that: The device includes an outer bottle, an inner bottle disposed within the outer bottle, and a base. The inner bottle extends out of the outer bottle and is fixedly connected to the base. The outer bottle is rotatably connected to the base so that the outer bottle can rotate relative to the inner bottle. The outer bottle has an installation window with an observation piece at the installation window, through which the liquid level of the beverage in the inner bottle can be viewed.

2. The dispensing device according to claim 1, characterized in that: The inner bottle includes a bottle body and a connector fixedly connected to the bottle body. The connector is located at the bottom of the side of the bottle body facing the inner side of the outer bottle, and the connector is coaxially arranged with the bottle body.

3. The wine dispenser according to claim 2, characterized in that: The base is provided with a plug hole, and the plug is plugged into the plug hole for connection.

4. The dispensing device according to claim 2 or 3, characterized in that: The bottom of the outer bottle is provided with a first through hole, which is coaxially arranged with the outer bottle so that the connector passes through the first through hole and connects to the base.

5. The wine dispenser according to claim 4, characterized in that: The outer bottle body has a mounting groove at the bottom of its outer side surface. The mounting groove is coaxially arranged with the first through hole and communicates with the first through hole so that the outer bottle body can be inserted and connected to the base.

6. The dispensing device according to any one of claims 1-3 and 5, characterized in that: A rolling component is provided at the contact point between the base and the outer bottle to support the outer bottle to rotate relative to the base.

7. The wine dispenser according to claim 6, characterized in that: The rolling assembly includes multiple rolling elements, which are arranged sequentially along the circumferential direction of the outer bottle. Each of the outer bottle surfaces in contact with the base has a receiving groove, and the multiple rolling elements are disposed in the receiving grooves and can roll along the receiving grooves.

8. The dispensing device according to any one of claims 1-3, 5 and 7, characterized in that: The outer surface of the inner bottle is provided with a scale component, which has multiple display areas arranged sequentially along the circumferential direction of the inner bottle. Each display area has at least one scale mark. The height of the scale marks in different display areas along the axial direction of the inner bottle is different, and the height of the scale marks in the same display area along the axial direction of the inner bottle is also different, so as to indicate different liquid level heights.

9. The wine dispenser according to claim 8, characterized in that: The shape of the display area is adapted to the projection shape of the mounting window on one side of the inner bottle facing the inner side of the outer bottle.

10. The wine dispenser according to claim 1, characterized in that: The observation piece is made of a transparent material.