Device for opening wine bottle with one hand

By designing a one-hand bottle opening device including a fixed seat, a handle, a movable bullet and a pop-up power device, the problem of the existing bottle opening is solved, and the effect of easy bottle opening with one hand is achieved, which is suitable for all groups of people.

CN222974859UActive Publication Date: 2025-06-13GUANGXI YANNENG TECH CO LTD
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Patent Information

Application Number
CN202422037852.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-13
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing bottle opening is more laborious and inconvenient to use, especially when the bottle cap is tightly connected to the bottle mouth, it requires more effort, and children or girls with less strength may not be able to open it.

Method used

A one-handed wine bottle device is designed, including a fixed seat, a handle, a movable bullet and a pop-up power device. By tying the fixed sleeve to the bottleneck, the driving end of the power source drive ejected power device instantly bounces upward, driving the movable end of the movable bullet to swing upward, impacting the bottle cap and disengage it from the bottle mouth.

Benefits of technology

It realizes easy opening of the bottle with one hand without the need for users to exert greater force. It is suitable for all groups of people, especially for children or girls with less strength.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222974859U_ABST
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Abstract

According to the single-hand wine bottle opening device, a fixed sleeve seat, a movable starting head and a pop-up power device are arranged, when a bottle is opened, the fixed sleeve seat tightly sleeves the bottle neck position, and a power source applies power to the pop-up power device to enable the driving end of the pop-up power device to pop up instantly; according to the bottle opener, power is applied to the popping power device through the power source, so that the driving end of the popping power device generates elastic force to impact the bottle cap to open the bottle, the power source serves as power to open the bottle, and the bottle opener is simple in structure, convenient to use and high in practicability. A user does not need to apply large acting force to prize the bottle cap, more labor is saved in use, and the bottle opener is suitable for various people and can open the bottle with one hand.
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Description

Technical Field

[0001] The utility model belongs to the technical field of daily necessities manufacturing, and particularly relates to a device for opening a wine bottle with one hand. Background Art

[0002] In daily life, many wines or beverages are bottled. The bottle cap is connected to the bottle mouth of the bottle body through pressing teeth. When opening for drinking, a bottle opener is needed to bend the bottle cap to separate it from the bottle mouth. However, when opening the bottle with a bottle opener, one hand needs to hold the bottle body tightly, and the other hand needs to drive the bottle opener to pry upward. The operation is inconvenient. Moreover, when the bottle cap is tightly connected to the bottle mouth, a relatively large force is required to open the bottle cap. Children or girls with less strength may not be able to open it, and it is inconvenient to use. Content of the Utility Model

[0003] (1) Purpose of the Utility Model

[0004] In order to overcome the above deficiencies, the purpose of the utility model is to provide a device for opening a wine bottle with one hand to solve the technical problem that the existing method of opening a bottle with a bottle opener is relatively laborious and inconvenient to use.

[0005] (2) Technical Solution

[0006] To achieve the above purpose, the technical solution provided by this application is as follows:

[0007] A device for opening a wine bottle with one hand includes: a fixed socket sleeved on the bottleneck position, a handle connected to the fixed socket, a movable opener head with one end hinged to the handle and the other end being a movable end. After the fixed socket is sleeved on the bottleneck, the movable end of the movable opener head is located below the edge of the bottle cap. A pop-up power device is arranged below the movable end of the movable opener head and connected to the handle or the fixed socket. Its driving end has elasticity and can instantaneously bounce upward under the action of an external force, driving the movable end of the movable opener head to instantaneously swing upward, impacting the lower edge of the bottle cap to separate the bottle cap from the bottle mouth. A power source is arranged below the pop-up power device and linked to the driving end of the pop-up power device;

[0008] By setting the fixed socket, the movable opener head and the pop-up power device in this application, when opening the bottle, the fixed socket is tightened on the bottleneck position. The power source applies power to the pop-up power device, causing the driving end of the pop-up power device to instantaneously bounce upward, driving the movable end of the movable opener head to instantaneously swing upward and impact the bottle cap, causing the bottle cap to bend upward and deform to separate from the bottle mouth. This application relies on the power source to apply power to the pop-up power device, causing the driving end of the pop-up power device to generate elasticity to impact the bottle cap for opening the bottle. Relying on the power source as the power to open the bottle, there is no need for the user to apply a large force to pry the bottle cap, making it more labor-saving to use, suitable for various people, and can open the bottle with one hand.

[0009] In some embodiments, the ejection power device includes: a first sleeve, with a movable opening vertically formed on its side wall and the lower edge of the movable opening being inclined to form an inclined side; a power spring disposed within the first sleeve and connected to the first sleeve at one end; a hammer movably disposed within the first sleeve and connected to the other end of the power spring; a limiting post horizontally disposed on the hammer; a second sleeve with both ends open and sleeved outside the first sleeve, the second sleeve being horizontally provided with a limiting groove for the limiting post to be snapped into to compress the power spring and vertically provided with a guiding groove; a reset spring disposed within the second sleeve, with one end connected to the second sleeve and the other end connected to the hammer;

[0010] By providing the first and second sleeves, the power spring, and the limiting post, initially the limiting post is snapped into the limiting groove, and the hammer compresses the power spring. When the first sleeve is pressed to move upward, the inclined side of the first sleeve will squeeze the engaging post to disengage it from the limiting groove, and the hammer moves upward along the guiding groove of the second sleeve driven by the power spring and the end portion extends out of the second sleeve, driving the movable end of the movable bullet head to swing upward instantaneously to impact the lower edge of the bottle cap, causing the bottle cap to be separated from the bottle mouth. By skillfully utilizing the power instantaneously released by the power spring, the bottle opening effect is achieved.

[0011] In some embodiments, the power source is a push lever, hinged to the handle on both sides, including a resistance arm connected to the end of the first sleeve with the hinge point as the demarcation point and a power arm for pressing, which can drive the first sleeve to move relative to the second sleeve under an external force, wherein the length of the power arm is greater than that of the resistance arm;

[0012] By providing the push lever, the power is applied to the ejection power device using the lever principle, which is very labor-saving during use.

[0013] In some embodiments, the power source is a motor or a cylinder;

[0014] Using a motor or a cylinder eliminates the need to manually apply a force to the ejection power device, making it very convenient and labor-saving to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural view of the single-handed bottle opening device of the present utility model;

[0016] Figure 2 is a sectional view of the single-handed bottle opening device of the present utility model;

[0017] Figure 3 is a schematic structural view of the ejection power device in the single-handed bottle opening device of the present utility model;

[0018] Figure 4 is a sectional view of the ejection power device in the single-handed bottle opening device of the present utility model;

[0019] Figure 5 It is a schematic structural view of the first sleeve in the pop-up power device of the single-handed wine bottle opening device of the present utility model.

[0020] Reference numerals:

[0021] 1. Fixed sleeve seat; 2. Handle; 3. Movable starting head; 301. First sleeve; 302. Second sleeve; 3021. Guide groove; 3022. Limit groove; 303. Hammer; 3031. Movable opening; 30311. Hypotenuse; 304. Power spring; 305. Return spring; 306. Limit post; 4. Pop-up power device; 5. Upward push lever. Specific embodiments

[0022] To make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present utility model. In addition, in the following description, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present utility model.

[0023] A single-handed wine bottle opening device provided by the present utility model includes: a fixed sleeve seat 1 sleeved on the bottleneck position, a handle 2 connected to the fixed sleeve seat 1, a movable starting head 3 with one end hinged to the handle 2 and the other end being a movable end. After the fixed sleeve seat 1 is sleeved on the bottleneck, the movable end of the movable starting head 3 is located below the edge of the bottle cap. A pop-up power device 4 is arranged below the movable end of the movable starting head 3 and is connected to the handle 2 or the fixed sleeve seat 1. Its driving end has elasticity and can instantaneously bounce upward under the action of an external force, driving the movable end of the movable starting head 3 to instantaneously swing upward, impacting the lower edge of the bottle cap to separate the bottle cap from the bottle mouth. A power source is arranged below the pop-up power device 4 and is linked to the driving end of the pop-up power device 4.

[0024] Specifically, the specific structure of the pop-up power device 4 includes:

[0025] A first sleeve 301, with a movable opening 3031 vertically formed on its side wall and the lower edge of the movable opening 3031 being inclined to form a hypotenuse 30311. A power spring 304 is arranged in the first sleeve 301 and is connected to the first sleeve 301 at one end. A hammer 303 is movably arranged in the first sleeve 301 and is connected to the other end of the power spring 304. A limit post 306 is arranged on the hammer 303. A second sleeve 302 is sleeved outside the first sleeve 301. A limit groove 3022 for the limit post 306 to be inserted into to compress the power spring 304 is horizontally formed on the second sleeve 302, and a guide groove 3021 is vertically formed. A return spring 305 is arranged in the second sleeve 302, with one end connected to the second sleeve 302 and the other end connected to the hammer 303.

[0026] Specifically, one end of the power spring 304 can be fixedly connected to the first sleeve 301 by means of glue or a card slot, one end of the return spring 305 can be fixedly connected to the second sleeve 302 by means of glue or a card slot, the hammer 303 can be set in a convex structure, and the power spring 304 and the power spring 304 are respectively sleeved on both ends of the hammer 303.

[0027] Specifically, after the second sleeve 302 is connected to the fixed socket 1, the second sleeve 302 faces upward, the first sleeve 301 faces downward, the upper end of the second sleeve 302 is open and corresponds to the free end of the movable bullet head 3.

[0028] Specifically, the movable opening 3031 of the first sleeve 301 and the guide groove 3021 of the second sleeve 302 are arranged corresponding to each other, playing a role of clearance to prevent the limit post 306 from being blocked by the first sleeve 301 when moving in the guide groove 3021.

[0029] In the first embodiment, the push lever 5 is used as the power source. The two sides of the push lever 5 are respectively hinged to the handle 2. The push lever 5 includes a resistance arm connected to the end of the first sleeve 301 with the hinge as the demarcation point and a power arm for pressing. Among them, the length of the power arm is greater than that of the resistance arm. Under the action of an external force, the resistance arm abuts against the first sleeve 301 and pushes the first sleeve 301 to move in the second sleeve 302, squeezing the limit post 306 out of the limit groove 3022.

[0030] In the second embodiment, a small cylinder or a motor is used as the power source, and the driving end of the motor or the cylinder drives the first sleeve 301 to move in the second sleeve 302, squeezing the limit post 306 out of the limit groove 3022.

[0031] Specifically, the elastic coefficients of the power spring 304 and the return spring 305 are equal.

[0032] Specifically, the action relationship of each component during bottle opening is as follows:

[0033] Initially, the limit post 306 of the hammer 303 is engaged in the limit groove 3022. At this time, the power spring 304 is in a compressed state and stores elastic force, and the return spring 305 is in a stretched state and has no elastic force. Then, the power source pushes the first sleeve 301 upward. When the hypotenuse 30311 of the first sleeve 301 moves to the position where it contacts the limit post 306, the hypotenuse 30311 exerts a resultant force F on the limit post 306. The resultant force F includes a vertically upward component force (f1) and a lateral component force (f2). The vertically upward component force (f1) further compresses the power spring 304 to increase the elastic force of the power spring 304, and the lateral component force (f2) pushes the limit post 306 to move laterally in the limit groove 3022, driving the hammer 303 to rotate counterclockwise. Since the ends of both the power spring 304 and the return spring 305 are connected to the hammer 303, when the hammer 303 rotates counterclockwise, both the power spring 304 and the return spring 305 are driven to twist and generate a reverse acting force (f3). When the limit post 306 rotates out of the limit groove 3022 completely, the power spring 304 exerts an elastic force that drives the hammer 303 to move upward (the limit post 306 slides along the guide groove 3021), and finally the end of the hammer 303 extends out of the opening of the second sleeve 302 to exert an impact force on the movable starting bullet head 3, causing the free end of the movable starting bullet head 3 to swing upward instantaneously to impact the bottle cap, and the bottle cap bends and deforms to separate from the bottle mouth. Specifically, after the hammer 303 moves upward to impact the movable starting bullet head 3, it loses part of its power. During the upward movement of the hammer 303, the return spring 305 is gradually compressed. When the elastic force of the return spring 305 is equal to the remaining power of the hammer 303, the hammer 303 stops moving upward, and the power spring 304 is fully extended and has no elastic force. At this time, the return spring 305 drives the hammer 303 to move in the reverse direction. When the return spring 305 is fully extended, the limit post 306 just moves to the position corresponding to the limit groove 3022. Without the obstruction of the groove wall of the guide groove 3021, the reverse acting force (f3) of the power spring 304 and the return spring 305 drives the hammer 303 to rotate clockwise and finally snap back into the limit groove 3022. Specifically, during the entire bottle-opening process, the user only needs to apply a force less than the resultant force F to the lever 5 by pushing the lever 5 upward through the lever principle, or a small air cylinder or motor can be used as the power source, and the first sleeve 301 can complete the above actions without manually applying force to the first sleeve 301 at all. The entire bottle-opening process is more labor-saving.

[0034] It should be understood that the above specific embodiments of the present utility model are only for illustrative explanation or interpretation of the principle of the present utility model, and do not constitute a limitation to the present utility model. Therefore, any modifications, equivalent substitutions, improvements, etc. made without departing from the spirit and scope of the present utility model shall be included within the protection scope of the present utility model. In addition, the appended claims of the present utility model are intended to cover all variations and modifications that fall within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.

Claims

1. A one-handed wine bottle opening device, characterized in that: include: A fixed sleeve (1) is sleeved on the bottleneck position, a handle (2) connected to the fixed sleeve (1), a movable starting head (3) with one end hinged to the handle (2) and the other end being a movable end, the movable end of the movable starting head (3) being located below the edge of the bottle cap after the fixed sleeve (1) is sleeved on the bottleneck, an ejection power device (4) is arranged below the movable end of the movable starting head (3) and is connected to the handle (2) or the fixed sleeve (1), the driving end of which has elastic force capable of instantly ejecting upward under the action of an external force to drive the movable end of the movable starting head (3) to instantly swing upward, impact the lower edge of the bottle cap so that the bottle cap is separated from the bottle mouth, and a power source is arranged below the ejection power device (4) and is linked to the driving end of the ejection power device (4).

2. The one-handed wine bottle opening device according to claim 1, characterized in that: The ejection power device (4) comprises: a first sleeve (301), a side wall of which is provided with a movable opening (3031) in a vertical direction and the lower edge of the movable opening (3031) is inclined to form a bevel (30311), a power spring (304) arranged in the first sleeve (301) and connected to the first sleeve (301) at one end, a hammer (303) movably arranged in the first sleeve (301) and connected to the other end of the power spring (304), and a hammer (303) on the upper side of the hammer (303) A limiting column (306) is arranged in the direction, and a second sleeve (302) with openings at both ends and sleeved on the outside of the first sleeve (301); a limiting groove (3022) is horizontally opened on the second sleeve (302) for the limiting column (306) to be inserted to squeeze the power spring (304) and a guide groove (3021) is vertically opened; a return spring (305) is arranged in the second sleeve (302), one end of which is connected to the second sleeve (302), and the other end is connected to the hammer (303).

3. The one-handed wine bottle opening device according to claim 2, characterized in that: The power source is an upward push lever (5), both sides of which are hinged to the handle (2), respectively, and include a resistance arm connected to the end of the first sleeve (301) with the hinge as the dividing point, and a power arm for pressing, which can drive the first sleeve (301) to move relative to the second sleeve (302) under the action of external force, wherein the length of the power arm is greater than that of the resistance arm.

4. The one-handed wine bottle opening device according to claim 2, characterized in that: The power source is a motor or a cylinder.