Wine bottle heating device

By designing a wine bottle heating device, the problems of unstable installation, complicated use, lack of temperature change indication, and easy burns in existing wine bottle heating methods have been solved, achieving stable installation, uniform heating, and protection against burns and high-temperature damage.

CN224125746UActive Publication Date: 2026-04-17HUNAN XINMOSHI BRAND MANAGEMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN XINMOSHI BRAND MANAGEMENT CO LTD
Filing Date
2025-04-07
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing methods for heating wine bottles suffer from problems such as unstable installation, complicated use, lack of temperature change indicators, easy burns, and damage to tabletops due to high temperatures.

Method used

A wine bottle heating device was designed, including a bottle body and a base. The bottom of the bottle body has a heat-conducting recessed structure and a raised structure. The base has a base cavity and an anti-scalding recessed structure. Combined with a high-temperature color-changing indicator and a steam vent, it achieves stable installation, uniform heating, and protection against scalding and high-temperature damage.

Benefits of technology

It improves the ease and stability of bottle and base installation, enhances heat conduction, provides temperature change indicators, prevents burns and high-temperature damage, and reduces heating time.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224125746U_ABST
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Abstract

The utility model discloses a wine bottle heating device, which relates to the technical field of heating containers and comprises a bottle body and a base. Wherein a bottle body cavity used for containing an object to be heated is formed in the bottle body, a bottle opening is formed in the bottle body, the bottle opening is communicated with the bottle body cavity, and a bottle cap is arranged at the bottle opening; a heat-conducting concave structure is arranged at the bottom of the bottle body, and the top end of the heat-conducting concave structure extends upwards to the cavity area of the bottle body; a bottle body protruding structure is arranged on the outer side of the bottle body and located between the bottle opening and the heat conduction concave structure. A base cavity used for containing a variable-temperature object is formed in the base, and a base opening is formed in the upper end of the base and communicates with the base cavity. After the bottle body and the base are connected, the bottom of the bottle body is located in the base cavity, the bottle body protruding structure is located outside the base cavity, and the lower side of the bottle body protruding structure makes contact with the upper side of the base opening. The installation convenience and stability between the bottle body and the base are improved, the heating area of the bottle body is increased, and the heat conduction effect is improved.
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Description

Technical Field

[0001] This application relates to the field of heating container technology, and more particularly to a device for heating wine bottles. Background Technology

[0002] Currently, most alcoholic beverages on the market are packaged in ordinary glass bottles. If a hot serving is desired, the beverage must be poured into a container for heating, or the entire bottle must be placed in a separate, dedicated heating container. However, this heating method has the following drawbacks:

[0003] (1) The beverage is poured out and placed in a container for heating. The area where it is used (e.g., hotel, home) needs to have a suitable container and heating conditions. The utensils used in this method are more complicated and will increase the workload when making hot drinks.

[0004] (2) When the entire wine bottle is placed directly in a separate dedicated heating container for heating, there is no connection between the existing wine bottle and the dedicated heating container, which leads to unstable installation.

[0005] (3) When heating, the existing wine bottles cannot provide users with temperature change prompts based on temperature changes.

[0006] (4) Existing wine bottles and special heating containers do not have anti-scalding parts, which can easily cause burns to users after heating.

[0007] (5) The bottom of existing dedicated heating containers is usually in direct contact with the placement area (e.g., table), which can easily cause the placement area to be damaged by high temperature.

[0008] Therefore, there is an urgent need to develop a brand-new wine bottle heating device to solve the above problems. Utility Model Content

[0009] The purpose of this application is to provide a wine bottle heating device that improves the ease and stability of installation between the bottle and the base, increases the heated area of ​​the bottle, and improves the heat conduction effect.

[0010] To achieve the above objectives, this application provides a device for heating a wine bottle, comprising: a bottle body and a base; wherein, the bottle body has a bottle cavity for accommodating an object to be heated, and a bottle mouth is provided on the bottle body, communicating with the bottle cavity, and a bottle cap is provided at the bottle mouth; a heat-conducting recessed structure is provided at the bottom of the bottle body, the top of the heat-conducting recessed structure extending upward to the bottle cavity area; a bottle body protrusion is provided on the outer side of the bottle body, and the bottle body protrusion is located between the bottle mouth and the heat-conducting recessed structure; the base has a base cavity for accommodating a variable-temperature object, and a base opening is provided at the upper end of the base, communicating with the base cavity; wherein, the diameter of the base opening is smaller than the diameter of the bottle body protrusion, and the diameter of the base opening is larger than the diameter of the bottom of the bottle body; after the bottle body and the base are connected, the bottom of the bottle body is located inside the base cavity, the bottle body protrusion is located outside the base cavity, and the lower side of the bottle body protrusion contacts the upper side of the base opening.

[0011] As shown above, the bottle body protrusion structure is provided with at least one venting groove; when the bottom of the bottle body is located inside the base cavity, the bottle body protrusion structure is located outside the base cavity, and the lower side of the bottle body protrusion structure contacts the upper side of the base opening, the venting groove is connected to the base cavity.

[0012] As shown above, the raised structure on the bottle body is a ring-shaped boss structure.

[0013] As shown above, there are two exhaust channels, which are symmetrically distributed at both ends of the diameter of the annular boss structure.

[0014] As shown above, the thermally conductive recess structure is a hemisphere.

[0015] As shown above, the outer side of the bottle body is provided with a bottle body relief pattern layer, which is located between the bottle mouth and the raised structure of the bottle body.

[0016] As shown above, the outer side of the bottle is equipped with a high-temperature color-changing indicator to provide users with temperature-related information.

[0017] As shown above, the bottom of the base is provided with an anti-scalding recessed structure, and the top of the anti-scalding recessed structure extends upwards to the cavity area of ​​the base.

[0018] As shown above, the outer side of the base has a base relief pattern layer.

[0019] As mentioned above, the temperature-changing material is a self-heating pack.

[0020] The beneficial effects achieved by this application are as follows:

[0021] (1) The bottle heating device of this application improves the ease of installation and stability between the bottle and the base.

[0022] (2) The bottle heating device of this application can increase the heating area of ​​the bottle by setting a heat-conducting recessed structure at the bottom of the bottle, so that the heating is uniform, the heat conduction effect is improved, and the heating time is reduced.

[0023] (3) The bottle heating device of this application is equipped with a high temperature color-changing indicator. When the bottle is heated to above 40 degrees, the high temperature color-changing indicator can provide the user with a temperature change prompt through color change.

[0024] (4) The bottle body of the heating bottle device of this application has the function of preventing scalding and improving aesthetics through the bottle body relief pattern layer, and the base has the function of preventing scalding and improving aesthetics through the base relief pattern layer.

[0025] (5) The bottom of the base of the heating bottle device of this application is provided with an anti-scalding recessed structure, which can prevent the placement area from being damaged by high temperature.

[0026] (6) The bottle body of the heating bottle device of this application is provided with a steam venting groove. When heating, the steam generated in the base cavity can be discharged through the steam venting groove, thereby avoiding the risk of excessive gas pressure caused by steam. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this application. For those skilled in the art, other drawings can be obtained based on these drawings.

[0028] Figure 1 A schematic diagram of one embodiment of a wine bottle heating device;

[0029] Figure 2 This is a schematic diagram of another embodiment of the wine bottle heating device. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0031] like Figure 1-2As shown, this application provides a device for heating a wine bottle, including: a bottle body 1 and a base 2. The bottle body 1 has a bottle cavity 11 for accommodating the object to be heated, and a bottle opening 12 is provided on the bottle body 1, communicating with the bottle cavity 11. A bottle cap 13 is provided at the bottle opening 12. A heat-conducting recessed structure 14 is provided at the bottom of the bottle body 1, with its top extending upwards into the area of ​​the bottle cavity 11. A bottle protrusion structure 15 is provided on the outer side of the bottle body 1, and the protrusion structure 15 is located between the bottle opening 12 and the heat-conducting recessed structure 14. The base 2 has a base cavity 21 for accommodating the temperature-changing material 3. The upper end of the base 2 has a base opening that communicates with the base cavity 21. The diameter of the base opening is smaller than the diameter of the bottle body protrusion 15, and the diameter of the base opening is larger than the diameter of the bottom of the bottle body 1. After the bottle body 1 and the base 2 are connected, the bottom of the bottle body 1 is located inside the base cavity 21, the bottle body protrusion 15 is located outside the base cavity 21, and the lower side of the bottle body protrusion 15 contacts the upper side of the base opening.

[0032] Specifically, the object to be heated is alcoholic beverages, but it is not limited to alcoholic beverages; it can also be other objects that need to be heated.

[0033] Furthermore, the specific dimensions of the base opening and the base cavity 21 are set according to the actual situation. In this application, it is preferred that the diameter of the base opening is equal to the diameter of the base cavity 21, which improves the heat transfer efficiency.

[0034] Furthermore, at least one venting groove 151 is provided on the bottle body protrusion structure 15; when the bottom of the bottle body 1 is located inside the base cavity 21, the bottle body protrusion structure 15 is located outside the base cavity 21, and the lower side of the bottle body protrusion structure 15 contacts the upper side of the base opening, the venting groove 151 communicates with the base cavity 21.

[0035] Specifically, during the heating process of the variable temperature material 3, the steam vent 151 can facilitate the discharge of steam generated in the base cavity 21, thereby avoiding the risk of excessive gas pressure caused by steam.

[0036] Furthermore, the specific shape of the exhaust trough 151 is set according to the actual situation, and in this application, it is preferably an arc-shaped trough.

[0037] Furthermore, the specific shape of the bottle body protrusion structure 15 is set according to the actual situation. In this application, it is preferred that the bottle body protrusion structure 15 is an annular boss structure, which makes it easy for the bottle body 1 to be firmly placed on the base 2.

[0038] Furthermore, the specific number of exhaust troughs 151 is set according to the actual situation. In this application, two exhaust troughs 151 are preferred, and the two exhaust troughs 151 are symmetrically distributed at both ends of the diameter of the annular boss structure.

[0039] Furthermore, the specific shape of the heat-conducting recessed structure 14 is set according to the actual situation. In this application, it is preferably a hemisphere, which can increase the heat-receiving area of ​​the bottle body 1, thereby improving the heat conduction effect.

[0040] Furthermore, an embossed pattern layer 16 is provided on the outer side of the bottle body 1, which is located between the bottle mouth 12 and the raised structure 15 of the bottle body.

[0041] Specifically, setting a bottle body embossed pattern layer 16 on the outside of the bottle body 1 can improve the aesthetics of the bottle body 1, and also increase the thickness of the bottle body 1 in the area where the bottle body embossed pattern layer 16 is set. When the bottle body 1 is heated, the bottle body embossed pattern layer 16 can play a role in preventing scalding.

[0042] Furthermore, a high-temperature color-changing label 17 is provided on the outside of the bottle body 1 to provide users with temperature change indication.

[0043] Specifically, when the bottle body 1 is heated to above 40 degrees Celsius, the color of the high-temperature color-changing indicator 17 changes, which can provide users with temperature change indication through the color change.

[0044] Furthermore, the high-temperature color-changing label 17 is made of existing temperature-sensitive color-changing paint materials or existing temperature-sensitive color-changing printed sticker materials, but is not limited to existing temperature-sensitive color-changing paint materials and temperature-sensitive color-changing printed sticker materials.

[0045] Furthermore, the bottom of the base 2 is provided with an anti-scalding recessed structure 22, the top of which extends upwards to the area of ​​the base cavity 21.

[0046] Furthermore, the specific shape of the anti-scalding recessed structure 22 is set according to the actual situation. In this application, it is preferably a curved body with an arc-shaped cross section.

[0047] Specifically, the anti-scalding recessed structure 22 can keep the base cavity 21 of the base 2 away from the placement area (e.g., the desktop), and can prevent the placement area from being damaged by high temperature when heated.

[0048] Furthermore, the outer side of the base 2 is provided with a base relief pattern layer.

[0049] Specifically, the exact size and shape of the relief pattern layer on the base will be determined based on the actual situation.

[0050] Furthermore, the embossed pattern layer on the base is located between the base opening and the anti-scalding recessed structure 22.

[0051] Specifically, setting a base relief pattern layer on the outer side of the base 2 can improve the aesthetics of the base 2, and also increase the thickness of the base 2 in the area where the base relief pattern layer is set. When the base 2 is heated, the base relief pattern layer can play a role in preventing scalding.

[0052] Furthermore, the temperature-changing material 3 is a self-heating pack, but not limited to a self-heating pack; in this application, a self-heating pack is preferred.

[0053] Specifically, during use, the self-heating pack is placed inside the base cavity 21. After adding water, the bottle 1 is placed on the base 2 via the bottle protrusion structure 15 and the base opening. The heat generated by the temperature-changing material 3 is transferred to the material to be heated (e.g., wine) inside the bottle cavity 11 through the bottom of the bottle 1 and the heat-conducting recess structure 14, thus completing the heating process. At the same time, the steam generated inside the base cavity 21 is discharged through the steam vent 151, which avoids the risk of excessive pressure caused by steam.

[0054] Furthermore, the bottle cap 13 is a cork, but not limited to cork; in this application, a cork is preferred for its good sealing performance.

[0055] Furthermore, the bottle body 1 is made of glass, ceramic, or metal, but is not limited to glass, ceramic, or metal.

[0056] Furthermore, the base 2 may be made of glass, ceramic, metal or paper, but is not limited to glass, ceramic, metal or paper.

[0057] The beneficial effects achieved by this application are as follows:

[0058] (1) The bottle heating device of this application improves the ease of installation and stability between the bottle and the base.

[0059] (2) The bottle heating device of this application can increase the heating area of ​​the bottle by setting a heat-conducting recessed structure at the bottom of the bottle, so that the heating is uniform, the heat conduction effect is improved, and the heating time is reduced.

[0060] (3) The bottle heating device of this application is equipped with a high temperature color-changing indicator. When the bottle is heated to above 40 degrees, the high temperature color-changing indicator can provide the user with a temperature change prompt through color change.

[0061] (4) The bottle body of the heating bottle device of this application has the function of preventing scalding and improving aesthetics through the bottle body relief pattern layer, and the base has the function of preventing scalding and improving aesthetics through the base relief pattern layer.

[0062] (5) The bottom of the base of the heating bottle device of this application is provided with an anti-scalding recessed structure, which can prevent the placement area from being damaged by high temperature.

[0063] (6) The bottle body of the heating bottle device of this application is provided with a steam venting groove. When heating, the steam generated in the base cavity can be discharged through the steam venting groove, thereby avoiding the risk of excessive gas pressure caused by steam.

[0064] Although preferred embodiments of this application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the scope of protection of this application is intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of this application. Obviously, those skilled in the art can make various alterations and variations to this application without departing from the spirit and scope of this application. Thus, if these modifications and variations of this application fall within the scope of protection of this application and its equivalents, this application also intends to include these modifications and variations.

Claims

1. A heating wine bottle apparatus, characterized by, include: Bottle body and base; The bottle body has a cavity for containing the object to be heated, and a bottle opening is provided on the bottle body, which is connected to the bottle cavity. A bottle cap is provided at the bottle opening. A heat-conducting recessed structure is provided at the bottom of the bottle body, and the top of the heat-conducting recessed structure extends upward to the bottle cavity area. A bottle body protrusion structure is provided on the outside of the bottle body, and the bottle body protrusion structure is located between the bottle opening and the heat-conducting recessed structure. The base has a base cavity for accommodating temperature-sensitive materials, and a base opening is provided at the upper end of the base, which is connected to the base cavity; wherein, the diameter of the base opening is smaller than the diameter of the protruding structure on the bottle body, and the diameter of the base opening is larger than the diameter of the bottom of the bottle body. After the bottle body and the base are connected, the bottom of the bottle body is located inside the base cavity, the protruding structure of the bottle body is located outside the base cavity, and the lower side of the protruding structure of the bottle body contacts the upper side of the base opening.

2. The heating flask apparatus of claim 1, wherein, At least one venting groove is provided on the protruding structure of the bottle body; When the bottom of the bottle is inside the base cavity, the protruding structure of the bottle is outside the base cavity, and the lower side of the protruding structure of the bottle contacts the upper side of the base opening, the venting groove is connected to the base cavity.

3. The heating flask apparatus of claim 2, wherein, The raised structure on the bottle body is a ring-shaped boss structure.

4. The heating flask apparatus of claim 3, wherein, There are two exhaust channels, which are symmetrically distributed at both ends of the diameter of the annular boss structure.

5. The heating flask apparatus of claim 1, wherein, The thermally conductive recess structure is hemispherical.

6. The heating flask apparatus of claim 1, wherein, The outer side of the bottle is decorated with an embossed pattern layer, which is located between the bottle mouth and the raised structure on the bottle body.

7. The heating flask apparatus of claim 1, wherein, The outer side of the bottle is equipped with a high-temperature color-changing indicator to provide users with temperature-related information.

8. The heating flask apparatus of claim 1, wherein, The bottom of the base is provided with an anti-scalding recessed structure, and the top of the anti-scalding recessed structure extends upwards into the cavity area of ​​the base.

9. The heating flask apparatus of claim 1, wherein, The outer side of the base has a base relief pattern layer.

10. The heating flask apparatus of claim 1, wherein, The temperature-changing material is a self-heating pack.