Wine taking device
By designing a wine extractor with a sleeve and needle structure and utilizing a compressed nitrogen tank to extend the wine's preservation time, the problem of complexity and high cost of existing vacuum wine extractors is solved, achieving a low-cost and convenient wine preservation effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING DAHE QILIN TECHNOLOGY CO LTD
- Filing Date
- 2025-03-25
- Publication Date
- 2026-04-17
AI Technical Summary
Existing vacuum wine extractors are complex in structure, inconvenient to operate, and costly, making it difficult to effectively extend the shelf life of wine after opening.
A wine dispenser consisting of a sleeve, a gas needle, and a liquid needle has been designed. It uses a compressed nitrogen tank to supply gas, which enters the wine bottle through the gas needle, while the liquid needle discharges the wine, thus preventing oxidation. The design is simple, requires no batteries, and is low in cost.
It enables a convenient and low-cost way to extend the shelf life of wine, reduce oxidation, and maintain the flavor of the wine. It is easy to operate and has a wide range of applications.
Smart Images

Figure CN224132727U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchenware technology, and particularly to the field of wine utensils technology, specifically a wine dispenser. Background Technology
[0002] Once opened, wine will spoil due to oxidation if stored for an extended period, resulting in a deterioration in taste. Even re-corking will only preserve it for a few days. Therefore, it is generally recommended to drink it as soon as possible after opening. To address this issue, methods and devices specifically designed for sealing and preserving opened wine have been developed to extend its optimal drinking time.
[0003] Existing technology includes a vacuum wine extractor that extends the preservation time of wine by re-vacuuming an opened wine bottle. However, vacuum wine extractors have two problems: first, they are complex in structure and inconvenient to operate, and it is difficult to ensure a vacuum effect without long-term use; second, they are expensive and require batteries.
[0004] Therefore, how to provide a wine dispenser that is easy to use, requires no batteries, is low in cost, and helps to extend the shelf life of wine has become an urgent problem to be solved in this field. Utility Model Content
[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide a wine dispenser that is simple in structure, easy to use, requires no batteries, and has a low cost.
[0006] To achieve the above objectives, the wine dispenser of this utility model has the following structure:
[0007] The wine dispenser includes: a sleeve with a gas canister insertion hole at its top; a gas canister groove connected to the gas canister insertion hole inside the sleeve; a through hole on the bottom platform of the gas canister groove; an air inlet hole for a gas needle connected to the gas needle; the gas needle extending from the side of the sleeve to the outside of the sleeve; and an air outlet at the top of the gas needle outside the sleeve. The dispenser also includes a liquid needle, one end of which is a liquid outlet hole inside the sleeve, connected to a wine outlet at the tail end of the sleeve; and the other end of which extends to the outside of the sleeve on the same side as the gas needle; and an air inlet hole at the top of the liquid needle outside the sleeve.
[0008] The wine dispenser also includes: a bottle neck sleeve, one end of which is a sleeve interface. A sliding path hole is provided on the bottle neck sleeve along its length. The sleeve is located in the sliding path hole and can move between the two ends along the sliding path hole. When the sleeve is located at the end away from the sleeve interface, the gas needle and the liquid needle are located inside the bottle neck sleeve. When the sleeve is located at the end close to the sleeve interface, the gas outlet end of the gas needle and the liquid inlet end of the liquid needle both extend out of the bottle neck sleeve from the sleeve interface.
[0009] In this wine dispenser, the length direction of the sleeve is perpendicular to the length direction of the bottle neck sleeve.
[0010] In this wine dispenser, the gas needle and the liquid needle are parallel and parallel to the length direction of the bottle neck sleeve.
[0011] In this wine dispenser, the liquid inlet of the liquid needle is closer to the sleeve than the gas outlet of the gas needle.
[0012] In this wine dispenser, the liquid outlet is connected to the wine outlet via a check valve located inside the sleeve.
[0013] In this wine dispenser, a compressed gas tank is installed in the gas tank tank. The compressed gas tank is a press-to-discharge type compressed gas tank. The top outlet of the compressed gas tank abuts against and passes through the through hole of the bottom platform of the gas tank tank and is connected to the gas needle. When the tail of the compressed gas tank is pressed, the gas in the compressed gas tank is discharged from the gas outlet through the top outlet, through hole and gas needle.
[0014] In this wine dispenser, the compressed gas tank is a compressed nitrogen tank.
[0015] In this wine dispenser, when the tail of the compressed gas canister is not pressed, the tail of the compressed gas canister protrudes out of the gas canister insertion hole.
[0016] In this wine dispenser, the gas canister insertion hole has an oblique pressing notch.
[0017] This novel wine dispenser features a through-hole at the bottom platform of a gas canister compartment within a sleeve. This through-hole connects to a gas needle that extends from the side of the sleeve to the outside. It also includes a liquid needle connected to a wine outlet at the tail end of the sleeve, with its other end also extending from the side to the outside of the sleeve. In use, a compressed gas canister is placed in the gas canister compartment. Without opening the wine cork, both the gas needle and the end of the liquid needle extending outside the sleeve are simultaneously inserted into the bottle through the cork. Then, pressing the tail end of the compressed gas canister allows gas to enter the bottle through the gas needle, while the wine flows out through the liquid needle from the wine outlet at the tail end of the sleeve. This wine dispenser has a simple structure, is easy to use, requires no batteries, and is low in cost, effectively extending the shelf life of wine in the bottle. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the wine dispenser of this utility model, showing the sleeve in a position far from the sleeve interface;
[0019] Figure 2 This is a front view of the wine dispenser of this utility model;
[0020] Figure 3 For along Figure 2 Cross-sectional view of AA in the middle;
[0021] Figure 4 This is a schematic diagram of the structure of the wine dispenser of this utility model with the sleeve in a position close to the sleeve interface;
[0022] Figure 5 This is a schematic diagram of the wine dispenser of this utility model assembled with a wine bottle.
[0023] Figure label:
[0024] Sleeve 10, Gas cylinder insertion hole 11, Gas cylinder slot 12, Through hole 13, Check valve 14, Wine outlet 15, Gas needle 20, Air inlet 21, Air outlet 22, Liquid needle 30, Liquid inlet 31, Liquid outlet 32, Bottle neck sleeve 40, Sleeve joint 41, Sliding path hole 42, Compressed gas cylinder 50, Top outlet 51, Wine bottle 90 Detailed Implementation
[0025] In order to better understand the technical content of this utility model, the following embodiments are provided for detailed description.
[0026] Please see Figure 1 The diagram shown is a structural schematic of the wine dispenser of this utility model.
[0027] In one embodiment, the wine dispenser of this utility model includes a sleeve 10, the top of which is a gas canister insertion hole 11. The sleeve 10 includes a gas canister groove 12 communicating with the gas canister insertion hole 11. The bottom platform of the gas canister groove 12 is provided with a through hole 13, which communicates with the air inlet 21 of a gas needle 20. The gas needle 20 extends from the side of the sleeve 10 to the outside of the sleeve 10. The top of the gas needle 20 outside the sleeve 10 is an air outlet 22. The device also includes a liquid needle 30. One end of the liquid needle 30 is a liquid outlet 32 located inside the sleeve 10, which communicates with a wine outlet 15 located at the tail end of the sleeve 10. The other end of the liquid needle 30 extends to the outside of the sleeve 10 on the same side as the gas needle 20. The top of the liquid needle 30 outside the sleeve 10 is a liquid inlet 31.
[0028] like Figures 1 to 5 As shown, the wine dispenser also includes a bottle neck sleeve 40, one end of which is a sleeve interface 41. A sliding path hole 42 is formed along the length of the bottle neck sleeve 40. The sleeve 10 is located within the sliding path hole 42 and can move between its two ends along the sliding path hole 42. When the sleeve 10 is located at the end furthest from the sleeve interface 41, the gas needle 20 and the liquid needle 30 are located inside the bottle neck sleeve 40. When the sleeve 10 is located at the end closest to the sleeve interface 41, one end of the gas outlet 22 of the gas needle 20 and one end of the liquid inlet 31 of the liquid needle 30 both extend out of the bottle neck sleeve 40 from the sleeve interface 41.
[0029] In a preferred embodiment, the length direction of the sleeve 10 is perpendicular to the length direction of the bottle neck sleeve 40. The gas needle 20 and liquid needle 30 are parallel and parallel to the length direction of the bottle neck sleeve 40.
[0030] In a further preferred embodiment, such as Figure 3 and Figure 4 As shown, the liquid inlet 31 of the liquid needle 30 is closer to the sleeve 10 than the gas outlet 22 of the gas needle 20.
[0031] In a further preferred embodiment, such as Figure 3 As shown, the liquid outlet 32 is connected to the wine outlet 15 through the check valve 14 located inside the sleeve 10.
[0032] In a more preferred embodiment, such as Figures 1 to 5As shown, a compressed gas tank 50 is disposed within the gas tank trough 12. This compressed gas tank 50 is a press-to-discharge type. The top outlet 51 of the compressed gas tank 50 abuts against and passes through the through hole 13 of the bottom platform of the gas tank trough 12, and connects to the gas needle 20. When the tail of the compressed gas tank 50 is not pressed, the tail protrudes from the gas tank insertion hole 11. The gas tank insertion hole 11 may have an oblique pressing notch (not shown in the figure) to facilitate pressing. The compressed gas tank 50 is preferably a compressed nitrogen tank. Pressing the tail of the compressed gas tank 50 causes the entire compressed gas tank 50 to move into the gas tank trough 12, while the gas inside the compressed gas tank 50 is discharged from the outlet hole 22 through the top outlet 51, the through hole 13, and the gas needle 20.
[0033] In the application of this utility model, such as Figure 5 As shown, first, place the compressed gas canister 50 into the gas canister slot 12. Without opening the cork of the wine bottle 90, attach the dispenser to the cork through the connector 41 of the bottle neck sleeve 40. Then, push the sleeve 10 from the far end to the near end of the connector 41, so that the ends of the gas needle 20 and the liquid needle 30 outside the sleeve 10 are simultaneously inserted into the wine bottle 90 through the cork. Next, press the tail end of the compressed gas canister 50. Gas enters the wine bottle 90 through the gas needle 20, while the wine flows out through the liquid needle 30 from the outlet 15 at the tail end of the sleeve 10. After releasing the pressure, the compressed gas canister 50 springs back to the position protruding from the gas canister insertion hole 11. At this point, gas no longer flows out of the compressed gas canister 50, and no more gas enters the wine bottle 90 through the gas needle 20. With the check valve 14 connected to the liquid needle 30, neither wine nor gas will flow back into the wine bottle from the liquid needle 30. This significantly reduces the amount of gas entering the bottle while the wine is being extracted, ensuring that the remaining wine is not rapidly oxidized.
[0034] Furthermore, using nitrogen cylinders to inject nitrogen into the wine bottle further slows down the oxidation of the wine, allowing its flavor to be preserved for a longer period of time.
[0035] On the other hand, when using this wine dispenser, simply push the sleeve 10 into place along the sliding path hole 42 to fix the dispenser on the wine bottle. When dispensing wine, press the tail end of the compressed air canister 50 from top to bottom, and the wine will naturally flow out from the outlet 15 below. The operation is very simple.
[0036] This novel wine dispenser features a through-hole at the bottom platform of a gas canister compartment within a sleeve. This through-hole connects to a gas needle that extends from the side of the sleeve to the outside. It also includes a liquid needle connected to a wine outlet at the tail end of the sleeve, with its other end also extending from the side to the outside of the sleeve. In use, a compressed gas canister is placed in the gas canister compartment. Without opening the wine cork, both the gas needle and the end of the liquid needle extending outside the sleeve are simultaneously inserted into the bottle through the cork. Then, pressing the tail end of the compressed gas canister allows gas to enter the bottle through the gas needle, while the wine flows out through the liquid needle from the wine outlet at the tail end of the sleeve. This wine dispenser has a simple structure, is easy to use, requires no batteries, and is low in cost, effectively extending the shelf life of wine in the bottle.
[0037] In this specification, the present invention has been described with reference to specific embodiments thereof. However, it will be apparent that various modifications and variations can be made without departing from the spirit and scope of the present invention. Therefore, the specification and drawings should be considered illustrative rather than restrictive.
Claims
1. A wine taker, characterized in that, include: The sleeve and the bottle neck fitting are provided. The top of the sleeve is a gas cylinder insertion hole. The sleeve includes a gas cylinder groove that connects to the gas cylinder insertion hole. The bottom platform of the gas cylinder groove has a through hole that connects to the inlet hole of a gas needle. The gas needle extends from the side of the sleeve to the outside of the sleeve. The top of the gas needle outside the sleeve is a gas outlet hole. The sleeve also includes a liquid needle. One end of the liquid needle is a liquid outlet hole located inside the sleeve. The liquid outlet hole is connected to a wine outlet located at the tail end of the sleeve through a check valve located inside the sleeve. The other end of the liquid needle extends to the outside of the sleeve on the same side as the gas needle. The top of the liquid needle outside the sleeve is a liquid inlet hole. One end of the bottle neck sleeve is a sleeve interface. A sliding path hole is opened along the length direction of the bottle neck sleeve. The sleeve is located in the sliding path hole and can move between the two ends along the sliding path hole. When the sleeve is located at the end away from the sleeve interface, the gas needle and liquid needle are located inside the bottle neck sleeve. The sleeve interface is pressed against the cork at the mouth of the wine bottle. The sleeve is pushed from the far end away from the sleeve interface to the near end along the sliding path hole. At this time, the gas outlet end of the gas needle and the liquid inlet end of the liquid needle both extend out of the bottle neck sleeve from the sleeve interface and pass through the cork to insert into the wine bottle.
2. The wine taker according to claim 1, characterized in that The length direction of the sleeve is perpendicular to the length direction of the bottle neck sleeve.
3. The wine taker of claim 2, wherein, The gas needle and liquid needle are parallel to each other and parallel to the length direction of the bottle neck sleeve.
4. The wine taker of claim 3, wherein The liquid inlet of the liquid needle is closer to the sleeve than the gas outlet of the gas needle.
5. The wine taker according to any one of claims 1 to 4, characterized in that, The gas tank is equipped with a compressed gas tank, which is a press-to-discharge type compressed gas tank. The top outlet of the compressed gas tank abuts against and passes through the through hole of the bottom platform of the gas tank tank and is connected to the gas needle. When the tail of the compressed gas tank is pressed, the gas in the compressed gas tank is discharged from the outlet through the top outlet, the through hole and the gas needle.
6. The wine taker of claim 5, wherein, The compressed gas tank is a compressed nitrogen tank.
7. The wine taker of claim 5, wherein, When the tail of the compressed air canister is not pressed, the tail of the compressed air canister protrudes from the canister insertion hole.
8. The wine taker of claim 5, wherein, The gas canister insertion hole has an oblique pressing notch.