Anti-toppling conical barrel body

By adjusting the stability of the conical barrel with a detachable gravity component, the problem of the wine warming barrel being cumbersome to transport when empty or fully loaded is solved, thus improving stability and convenience.

CN224185851UActive Publication Date: 2026-05-01ZHAOQING JINYALE ELECTRICAL APPLIANCE DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHAOQING JINYALE ELECTRICAL APPLIANCE DEV CO LTD
Filing Date
2025-05-19
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing wine warming barrels cannot dynamically adjust the weight at the bottom when transported when empty or fully loaded, making them bulky and inconvenient to use.

Method used

An anti-tipping conical bucket body was designed. Through a detachable gravity component, including a conical extrusion head, a slide bar, a limit rod, a magnetic gravity ring, and a reset component, the stability of the conical bucket body can be adjusted and it can be easily picked up and put away.

Benefits of technology

This improves the stability and convenience of the wine warming barrel, reduces the difficulty of handling it, and lowers the risk of damage to the table surface due to friction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a wine warming barrel, in particular to an anti-toppling conical barrel body. The weight of an existing wine warming barrel cannot be dynamically adjusted according to the wine amount, and meanwhile the anti-skid and anti-scald effects are poor. An anti-toppling conical barrel comprises a conical barrel body and the like. The conical barrel body is of a stepped conical structure and is provided with an axial conical cavity, the cover body is located on the inner side of the top of the conical barrel body in a clamped mode, and the wine outlet valve is located on one side of the lower portion of the conical barrel body and is communicated with the conical cavity in the conical barrel body in a penetrating mode. And the magnetic gravity ring is controllably limited through the limiting rod, and the gravity can be adjusted according to the actual use condition of the conical barrel body, so that the conical barrel body can be conveniently taken and placed while the stability can be improved.
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Description

A type of anti-tipping conical barrel Technical Field

[0001] This utility model relates to a wine warming barrel, and more particularly to an anti-tipping conical barrel body. Background Technology

[0002] In commercial catering establishments, traditional wine warming barrels are mostly cylindrical or frustum-shaped, which have two major drawbacks: firstly, the high center of gravity and small supporting area make it easy to tip over after being filled with wine, resulting in wine spillage and safety hazards.

[0003] Existing wine warming barrels typically consist of a conical barrel, a lid, and a dispensing valve. The conical barrel increases the weight at the bottom and expands the support area to achieve stability by balancing the weight of the wine and the barrel itself. However, when the amount of wine in the warming barrel is low, the overall stability decreases due to insufficient weight. Adding a fixed weight to the bottom of the warming barrel can improve stability when the amount of wine is small. However, because large catering establishments often have special wine storage containers to reduce aroma loss and prevent oxidation, the warming barrels must be moved from the place of use to a special wine storage container for refilling after the wine is used up. After that, the full warming barrel is moved back to the table at the place of use. During the process of moving the warming barrel to the place of use while it is full of wine, there is both the weight of the wine and the weight added to improve stability. This makes it too cumbersome and makes it impossible to dynamically adjust the weight added at the bottom when the warming barrel needs to be moved, whether it is empty or full, for ease of use. Summary of the Invention

[0004] In order to overcome the shortcomings of existing wine warming barrels that cannot dynamically adjust the weight gain at the bottom when they are empty or full and need to be moved, this utility model provides a non-tipping conical barrel that can dynamically adjust the weight gain at the bottom of the wine warming barrel for easy use.

[0005] The technical solution is: an anti-tipping conical bucket, comprising a main body and a gravity component, characterized in that: the gravity component is detachably disposed at the bottom of the conical bucket of the main body, and the gravity component applies its own weight vertically to the bottom of the conical bucket, so that the conical bucket is vertically stable.

[0006] As a further preferred embodiment, the gravity component includes a limiting member and a magnetic gravity ring. The limiting member is connected to a groove in the conical barrel, and the magnetic gravity ring can be stacked and placed between the limiting member and the conical barrel.

[0007] As a further preferred embodiment, the limiting member includes a conical extrusion head and a limiting rod. The conical extrusion head is slidably connected to the conical barrel body, and the limiting rod is laterally disposed inside the conical barrel body. One end of the limiting rod is in contact with the inclined surface of the conical extrusion head, and the other end is located inside the conical barrel body. The limiting rod is translatably limited by the vertical upward extrusion of the limiting rod by the inclined surface of the conical extrusion head.

[0008] As a further preferred embodiment, the limiting component also includes a slide bar. The conical barrel has an annular vertical 7-shaped groove inside. One end of the slide bar is located at the upper part of the conical extrusion head, and the other end is inserted into the annular vertical 7-shaped groove of the conical barrel, so that the conical extrusion head is always located inside the conical barrel.

[0009] As a further preferred embodiment, the bottom of the conical extrusion head has a downward-protruding rotating part, which facilitates the rotation of the conical extrusion head.

[0010] As a further preferred embodiment, the magnetic gravity rings are arranged in a stacked configuration that can be increased or decreased.

[0011] As a further preferred embodiment, a gasket is also included, which is installed on the bottom edge of the conical barrel to increase the friction between the conical barrel and the tabletop.

[0012] As a further preferred embodiment, a reset assembly is also included, which is disposed between the bottom of the conical barrel and the conical extrusion head. The reset assembly includes a rotating disk and a reset spring. The rotating disk is fitted inside the conical barrel, and the reset spring is connected between the rotating disk and the conical extrusion head.

[0013] As a further preferred embodiment, the gravity component can also be an electromagnet built into the bottom of the conical barrel, and the electromagnet is electrically connected to the conical barrel.

[0014] The present invention has the following advantages: 1. The magnetic gravity ring can be controlled by the limiting rod, and the gravity can be adjusted according to the actual use of the conical barrel, so that the conical barrel can improve its stability and also be convenient to pick up and put down. Attached Figure Description

[0015] Figure 1 is a three-dimensional structural diagram of the conical barrel, lid, and wine dispensing valve of this utility model.

[0016] Figure 2 is a cross-sectional three-dimensional structural diagram of the conical barrel body of this utility model.

[0017] The components include: 1. Conical barrel body; 2. Cap body; 3. Dispensing valve; 5. Gasket; 6. Conical extrusion head; 61. Sliding strip; 7. Limiting rod; 8. Extrusion spring; 9. Magnetic gravity ring; 10. Rotating disk; 11. Return spring. Detailed Implementation

[0018] The present invention will be further described below with reference to specific embodiments. It should also be noted that, unless otherwise explicitly specified and limited, terms such as "setting," "installing," "connecting," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the present invention based on the specific circumstances.

[0019] The present invention will be further explained below with reference to Figures 1-2 and embodiments.

[0020] Example 1: This utility model embodiment provides an anti-tipping conical barrel 1 for use in restaurants, pubs, bars, and other multi-person venues. It is a wine warmer that can meet the needs of multiple users. Specifically, it consists of a main body and a gravity component. The main body is a conical barrel 1, a lid 2, and a wine dispensing valve 3. The conical barrel 1 is conical in shape, which increases the supporting surface and improves the anti-tipping ability. The lid 2 is engaged with the top of the conical barrel 1 to improve the sealing performance, reduce the heat loss inside the conical barrel 1, and achieve a heat preservation effect. The wine dispensing valve 3 is through and connected to the bottom of the conical barrel 1 for stable wine dispensing. The gravity component is detachably installed at the bottom of the conical barrel 1 to increase the bottom gravity of the conical barrel 1 and improve the stability of the conical barrel 1.

[0021] While the gravity component can increase the bottom weight of the conical barrel 1 to improve its stability, after the wine is used up, staff need to move the warming barrel from its place of use to a special wine storage container for refilling. Then, the full-loaded warming barrel is moved back to the table at the place of use. During this process, the weight of the wine and the added weight for stability are combined, making it too cumbersome. It's impossible to dynamically adjust the added weight at the bottom when moving the barrel, whether empty or full. The gravity component then becomes a burden, making it inconvenient to move the conical barrel 1. Therefore, to address these issues, this embodiment proposes a detachable gravity component, specifically... The structure includes a conical extrusion head 6, slide bars 61, limiting rods 7, extrusion springs 8, and a magnetic gravity ring 9. The bottom center of the conical barrel 1 has a receiving groove, an annular inner groove, and four transverse sliding grooves. The receiving groove has four annular vertical 7-shaped grooves inside, ensuring the conical extrusion head 6 remains within it. The conical extrusion head 6 is vertically slidably connected to the receiving groove of the conical barrel 1. The bottom of the conical extrusion head 6 has a downward-protruding rotating part for easy rotation. One end of each of the four slide bars 61 is fixedly connected to the upper part of the conical extrusion head 6 in an annular array, and the other end is slidably connected to one of the four annular vertical 7-shaped grooves. Limiting rods 7 are slidably connected within each of the four transverse sliding grooves, and the four limiting rods 7 are mutually abutting. The diameter of the pipe at one end is larger than that at the other end. Each limiting rod 7 has a compression spring 8 fitted on the smaller diameter end. The magnetic gravity rings 9 are stacked in the annular groove at the bottom of the conical barrel 1. The compression springs 8 are located in the transverse sliding groove. The disassembly and assembly process of the gravity components is as follows: The magnetic gravity rings 9 are fitted into the annular groove at the bottom of the conical barrel 1, pushing the conical extrusion head 6 and the slide bar 61 to move upward. The conical extrusion head 6 moves upward along the receiving groove, and the slide bar 61 moves upward along the annular vertical 7-shaped groove. The conical extrusion head 6 pushes the four limiting rods 7 from the inside to the outside through the inclined surface. The larger diameter end of each limiting rod 7 compresses the compression spring 8, causing the compression spring 8 to deform. Each limiting rod... The smaller diameter end of each of the seven tubes extends from the transverse groove of the conical barrel 1 to limit the magnetic gravity ring 9. The conical extrusion head 6 and the slide bar 61 are rotated counterclockwise. The conical extrusion head 6 rotates in the receiving groove, while the slide bar 61 rotates in the annular vertical 7-shaped groove. The annular vertical 7-shaped groove structure keeps the conical extrusion head 6 in the state of extruding the limiting rod 7. Conversely, the resetting operation is performed. The conical extrusion head 6 resets under the action of gravity, and the limiting rod 7 resets under the action of the extrusion spring 8, so that the magnetic gravity ring 9 can be taken out. By limiting the magnetic gravity ring 9 with the limiting rod 7, the gravity can be adjusted according to the actual use of the conical barrel 1, so that the conical barrel 1 can be improved in stability and can be easily put in and taken out.

[0022] While the above-mentioned technical solution can increase the gravity at the bottom of the conical barrel 1 and improve the overall stability by using the magnetic gravity ring 9, the weight of the barrel itself and the load of the wine have a superimposed effect, which leads to a significant increase in the contact pressure between the bottom of the barrel and the table. The bottom of the conical barrel 1 is prone to indentation damage to the table. Therefore, in this embodiment, a gasket 5 is added. An annular groove is opened on the bottom edge of the conical barrel 1. The gasket 5 is annularly coupled to the annular groove at the bottom of the conical barrel 1 by adhesive. The gasket 5 acts as a buffer layer to reduce the vertical contact area between the bottom of the conical barrel 1 and the table. At the same time, the friction between the gasket 5 and the table can further improve the translational stability of the conical barrel 1.

[0023] The conical squeeze head 6 is mentioned above as being able to reset by gravity. However, in actual use, there is a scenario where, when the liquid is empty and the magnetic gravity ring 9 needs to be removed from the conical barrel 1, the conical barrel 1 is usually tilted to facilitate turning the conical squeeze head 6. This tilting also causes the conical squeeze head 6 to tilt, meaning it won't immediately reset under gravity. Gravity will only reset the conical squeeze head 6 when the conical barrel 1 and the conical squeeze head 6 return to a perpendicular position, resulting in a lag. Whether it resets or not is imperceptible. Therefore, this... The embodiment proposes a reset component that can quickly reset the conical extrusion head 6, ensuring that the conical extrusion head 6 can be reset. The reset component specifically consists of a rotating disk 10 and a reset spring 11. The rotating disk 10 is rotatably connected to the groove of the conical barrel 1. The reset spring 11 is fixedly connected between the rotating disk 10 and the top of the conical extrusion head 6. When the conical extrusion head 6 rotates, it causes the reset spring 11 and the rotating disk 10 to rotate together. When the conical extrusion head 6 moves upward, it will squeeze the reset spring 11. When the reset spring 11 no longer applies upward force to the conical extrusion head 6, it will reset the conical extrusion head 6 downward.

[0024] Example 2: In this example, a better solution is proposed. First, an electromagnet is installed at the bottom of the conical barrel 1, and the electromagnet is connected to the circuit of the conical barrel 1. Second, there is a magnetic gravity ring 9 that matches the electromagnet. When the conical barrel 1 is filled with wine and returned to the table, the magnetic gravity ring 9 is stacked on the table, and the groove at the bottom of the conical barrel 1 is aligned with the magnetic gravity ring 9. The magnetic gravity ring 9 is embedded in the bottom of the conical barrel 1. When the staff plugs in the conical barrel 1 to keep it warm, the electromagnet is also energized. The magnetic poles of the magnetic gravity ring 9 are opposite to the magnetic poles of the electromagnet after it is energized. When the electromagnet inside the conical barrel 1 is energized, it attracts the magnetic gravity ring 9, thus attaching the weight of the magnetic gravity ring 9 to the entire conical barrel 1. When the conical barrel 1 needs to be taken away to add wine, the plug needs to be unplugged and the entire conical barrel 1 needs to be lifted. When the plug is de-energized, the electromagnet will no longer attract the magnetic gravity ring 9.

[0025] It should be understood that the above description is for illustrative purposes only and is not intended to limit the present invention. Those skilled in the art will understand that variations of the present invention will be included within the scope of the claims herein.

Claims

1. A tip resistant conical bucket comprising a main body and a gravity assembly, characterised in that, The gravity component is detachably installed at the bottom of the conical barrel (1) of the main body. The gravity component applies its own weight vertically to the bottom of the conical barrel (1), making the conical barrel (1) vertically stable.

2. A self-emptying conical bucket according to claim 1, wherein: The gravity component includes a limiting member and a magnetic gravity ring (9). The limiting member is connected to the conical barrel (1) via a groove. The magnetic gravity ring (9) can be stacked and placed between the limiting member and the conical barrel (1).

3. A self-emptying conical bucket according to claim 2, wherein, The limiting component includes a conical extrusion head (6) and a limiting rod (7). The conical extrusion head (6) is slidably connected to the conical barrel (1). The limiting rod (7) is horizontally disposed inside the conical barrel (1), with one end in contact with the inclined surface of the conical extrusion head (6) and the other end located inside the conical barrel (1). The limiting rod (7) is vertically extruded upward by the inclined surface of the conical extrusion head (6) to translate and limit the magnetic gravity ring (9).

4. A self-emptying conical bucket according to claim 3, wherein, The limiting component also includes a slide bar (61). The conical barrel (1) has an annular vertical 7-shaped groove inside. One end of the slide bar (61) is located on the upper part of the conical extrusion head (6), and the other end is inserted into the annular vertical 7-shaped groove of the conical barrel (1). Through the cooperation of the slide bar (61) and the annular vertical 7-shaped groove, the conical extrusion head (6) can always be located inside the conical barrel (1).

5. The anti-tip conical bucket of claim 3, wherein, The bottom of the conical extrusion head (6) has a downward protruding rotating part, which makes it easy to rotate the conical extrusion head (6).

6. The anti-tipping conical barrel body according to claim 2, characterized in that, The magnetic gravity rings (9) are stacked and placed in sets of 1 to 3 pieces.

7. The anti-tip conical bucket of claim 1, wherein, It also includes a gasket (5), which is installed on the bottom edge of the conical barrel (1) to increase the friction between the conical barrel (1) and the table.

8. The anti-tip conical bucket of claim 2, wherein, It also includes a reset assembly, which is located between the bottom of the conical barrel (1) and the conical extrusion head (6). The reset assembly includes a rotating disk (10) and a reset spring (11). The rotating disk (10) is fitted inside the conical barrel (1). A reset spring (11) is connected between the rotating disk (10) and the conical extrusion head (6) to allow the conical extrusion head (6) to tilt and reset.

9. The anti-tipping conical barrel body according to claim 1, characterized in that: The gravity component can also be an electromagnet built into the bottom of the conical barrel (1), and the electromagnet is electrically connected to the conical barrel (1).