Direct drinking cover and suction nozzle matched with same

By designing a direct drinking cover on the water cup and adopting a combined structure of large through holes and flow guide holes, the existing water cup has difficulty in operating one-handedly when collecting water, and the fast and convenient one-handed water collection function is achieved, improving the user experience.

CN222968287UActive Publication Date: 2025-06-13HANGZHOU YAOBAO BABY PRODUCTS CO LTD
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Patent Information

Application Number
CN202421851744.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-06-13
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing double-covered water cup needs to be twisted open when receiving water, and cannot operate with one hand when going out or when hand is inconvenient, resulting in difficulty in receiving water and poor experience.

Method used

A direct drinking cover is designed, assembled on the water cup, with large through holes and flow guide holes, which are non-conductive between the flow guide holes and large through holes, and cooperate with the design of the suction nozzle to realize the function of one-handed water connection.

Benefits of technology

Through the design of the direct drinking cover, users can quickly add water without deliberately aiming at the pouring port. It is convenient to operate with one hand, suitable for going out or hand inconvenience, improving the user experience.

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Abstract

The utility model relates to the technical field of daily utensils, in particular to a direct drinking cover and a suction nozzle matched with the direct drinking cover. A direct drinking cover is assembled on a cup body of a water cup, the direct drinking cover is provided with a large through hole and a flow guide hole which both penetrate through the upper surface and the lower surface of the direct drinking cover, the large through hole forms a direct drinking opening, the flow guide hole is formed in the side edge of the large through hole, and the flow guide hole and the large through hole are not communicated with each other. The suction nozzle is assembled on the direct drinking cover, a hollow sucking pipe is arranged on the side portion of the suction nozzle, and when the suction nozzle is assembled on the direct drinking cover, the bottom of the suction nozzle blocks the large through hole, and the sucking pipe is communicated with the flow guide hole. The large through hole, namely the notch, is formed in the center of the direct drinking cover, so that water can be quickly added into a water dispenser or a kettle, a thermos bottle and other water pouring containers without specially aligning to a water pouring opening, and when the direct drinking cover is used by a single hand, the direct drinking cover can be directly placed into the water dispenser or a horizontal table top, a water outlet key of the water dispenser is pressed or water is poured, and operation by two hands is not needed.
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Description

Technical Field

[0001] The utility model relates to the technical field of daily utensils, in particular to a direct drinking lid and a nozzle adapted thereto. Background Art

[0002] For traditional double-lid water cups with a relatively large capacity, such as water cups / thermos cups with a capacity of about 450 - 650 ml, the first lid is mostly designed with a structure for the function of a nozzle, and the second lid is mostly designed with a structure for the function of a drinking spout.

[0003] For example, the technical solution disclosed in Chinese Patent CN118058607A: A three-way drinking cup includes a cup body and a cup lid. The cup lid includes an upper lid, a middle lid, and a lower lid arranged in sequence from top to bottom. A nozzle is provided on the middle lid, and the upper lid is movably connected to the middle lid for blocking or opening the nozzle; a direct drinking port is opened at the top of the lower lid, and the middle lid is movably connected to the lower lid for blocking or opening the direct drinking port. A holding device and a straw are provided in the cup body. The straw is held in a state where it can be docked with the nozzle through the holding device. When the lower lid is closed on the cup mouth of the cup body and the middle lid is closed on the lower lid, the nozzle is docked and communicated with the straw. When the lower lid is separated from the cup body, the straw is separated from the nozzle and the straw can be held in the cup body; the bottom of the cup lid has a receiving cavity. When the upper lid is closed on the middle lid and the middle lid is closed on the lower lid, and the cup lid is placed upside down, the receiving cavity can be used as a water-containing cavity.

[0004] Although the above-mentioned prior art can realize three drinking methods of the drinking cup, there is a scenario where it is more troublesome to receive water, and it is necessary to unscrew the thread to receive water. Especially when going out, when the hands are inconvenient, it is impossible to operate with one hand and receive water, resulting in an imperfect experience in actual life applications. Summary of the Utility Model

[0005] In order to overcome the deficiencies of the prior art, the utility model provides a direct drinking lid with a simple structure that can be used to perform operations such as receiving water with one hand when assembled on a water cup, and a nozzle adapted thereto. To solve the above technical problems, the utility model provides the following technical solutions:

[0006] A direct drinking lid is assembled on the cup body of a water cup. The direct drinking lid is provided with a large through hole and a diversion hole that both penetrate the upper and lower surfaces of the direct drinking lid. The large through hole forms a direct drinking port, and the diversion hole is arranged at the side edge of the large through hole, and the diversion hole is not in mutual communication with the large through hole.

[0007] Among them, the shape of the large through hole can be circular, elliptical, square, quasi-circular, special-shaped, etc., as long as it is a through hole design with a relatively large size. The eccentric design of the diversion hole, that is, arranged at a non-central position, affects the opening size of the large through hole as little as possible.

[0008] On the basis of adopting the above technical solution, the present utility model can also adopt the following further technical solutions:

[0009] The diversion hole is arranged at the side edge of the large through hole through a diversion platform. The bottom surface of the diversion platform is provided with a downwardly protruding straw column. The straw column is hollow and is connected with the diversion hole to form a diversion channel.

[0010] The upper peripheral edge of the large through hole is provided with a water-sealing arc surface.

[0011] The diameter of the large through hole is 10 - 35 mm.

[0012] On the other hand, the present utility model also provides the following technical solutions:

[0013] A nozzle, the nozzle is assembled on the direct drinking cover as described above. The side of the nozzle is provided with a hollow sucking straw. When the nozzle is assembled on the direct drinking cover, the bottom of the nozzle blocks the large through hole and the sucking straw is in communication with the diversion hole.

[0014] The bottom of the nozzle is provided with a first convex ring and a second convex ring. The first convex ring is arranged around the outer peripheral edge of the bottom surface of the nozzle. The second convex ring is arranged around the outer peripheral edge of the bottom of the sucking straw. When the nozzle is assembled on the direct drinking cover, the first convex ring is pressed against and sealed with the upper surface of the water-sealing arc surface, and the second convex ring is pressed against and sealed with the upper surface of the diversion platform.

[0015] The upper surface of the diversion platform is provided with an upwardly protruding third convex ring. When the nozzle is assembled on the direct drinking cover, the third convex ring is pressed against and sealed with the bottom opening of the sucking straw.

[0016] The nozzle is also provided with a gas return valve, and the gas return valve is arranged on the side away from the sucking straw.

[0017] Compared with the prior art, the beneficial effects that the present utility model can achieve are:

[0018] By providing a relatively large large through hole (i.e., a notch) in the center of the direct drinking cover, this notch can allow a water pouring container such as a water dispenser, a kettle, or a thermos to quickly add water without specifically aligning with the water pouring port. And when used with one hand, just press to open the cover, directly place it on the water dispenser or a horizontal table, and press the water outlet key of the water dispenser or pour water, without the need to operate with both hands. At the same time, with the design of the eccentric straw, it can be assembled on a water cup to realize the dual drinking modes of straw drinking and direct drinking. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic structural diagram of a water cup of Embodiment 1 of a direct drinking cover and a nozzle adapted thereto of the present utility model.

[0020] Figure 2Schematic diagram of the structure of a direct drinking lid, which is an embodiment of the present utility model and a suction nozzle adapted thereto.

[0021] Figure 3 Schematic diagram of the structure of a suction nozzle, which is an embodiment of the present utility model and a suction nozzle adapted to a direct drinking lid.

[0022] Figure 4 Cross-sectional view of the assembled state of a suction nozzle and a direct drinking lid, which is an embodiment of the present utility model and a suction nozzle adapted to a direct drinking lid.

[0023] Figure 5 Schematic diagram of the structure of a direct drinking lid, which is an embodiment two of the present utility model and a suction nozzle adapted thereto.

[0024] Figure 6 Schematic diagram of the structure of a suction nozzle, which is an embodiment two of the present utility model and a suction nozzle adapted to a direct drinking lid.

[0025] Figure 7 Schematic diagram of the assembled state structure of a suction nozzle and a direct drinking lid, which is an embodiment two of the present utility model and a suction nozzle adapted to a direct drinking lid.

[0026] Wherein, the direct drinking lid 1, the large through hole 11, the diversion hole 12, the diversion platform 13, the straw column 14, the water sealing arc surface 15, the third convex ring 16, the suction nozzle 2, the sucking straw 21, the first convex ring 22, the second convex ring 23, the air return valve 24, and the cup body 3. Detailed implementation mode

[0027] In combination with the attached drawings, a direct drinking lid provided by the present utility model and a suction nozzle adapted thereto are further described.

[0028] In Embodiment 1, as Figure 1 shown, a direct drinking lid 1 and a suction nozzle 2 adapted thereto are assembled on the cup body 3 of a water cup.

[0029] As Figure 2 shown, the direct drinking lid 1 is provided with a large through hole 11 and a diversion hole 12 that both penetrate the upper and lower surfaces of the direct drinking lid 1. Among them, the large through hole 11 is a relatively large circle to form a direct drinking port, and the diversion hole 12 is a relatively small circle and is arranged at the side edge of the large through hole 11. The diversion hole 12 and the large through hole 11 are not in mutual communication, forming two water flow channels.

[0030] Furthermore, the diversion hole 12 is arranged at the side edge of the large through hole 11 through a diversion platform 13. The bottom surface of the diversion platform 13 is provided with a downwardly protruding straw column 14. The straw column 14 is hollow and is connected to the diversion hole 12 to form a diversion channel. The straw column 14 is used to connect the long straw in the water cup. In this embodiment, the diversion platform 13 is arranged inside the opening of the large through hole 11.

[0031] Furthermore, a water sealing arc surface 15 is provided on the upper peripheral edge of the large through hole 11.

[0032] Further, the diameter of the large through-hole 11 is 10 to 35 mm.

[0033] As Figure 3 shown, the nozzle 2 is assembled on the above-mentioned direct drinking cap 1. A hollow sucking tube 21 is provided on the side of the nozzle 2. When the nozzle 2 is assembled on the direct drinking cap 1, the bottom of the nozzle 2 blocks the large through-hole 11 and the sucking tube 21 communicates with the diversion hole 12 to form a straw drinking mode.

[0034] Further, a first convex ring 22 and a second convex ring 23 are provided at the bottom of the nozzle 2. The first convex ring 22 is arranged around the outer periphery of the bottom surface of the nozzle 2, and the second convex ring 23 is arranged around the outer periphery of the bottom of the sucking tube 21.

[0035] Further, a back air valve 24 is also provided on the nozzle 2. The back air valve 24 is arranged on the side away from the sucking tube 21 and is used for back air during straw drinking.

[0036] As Figure 1-4 shown, when the nozzle 2 is assembled on the direct drinking cap 1, the first convex ring 22 is pressed and sealed against the upper surface of the water sealing arc surface 15. At the same time, the second convex ring 23 is pressed and sealed against the upper surface of the diversion platform 13.

[0037] Embodiment 2, as Figure 5-7 shown, different from Embodiment 1, in this embodiment, the nozzle 2 does not have the features of the first convex ring 22 and the second convex ring 23, that is, only a third convex ring 16 protruding upward is provided on the upper surface of the diversion platform 13. When the nozzle 2 is assembled on the direct drinking cap 1, the third convex ring 16 is pressed and sealed against the bottom opening of the sucking tube 21, that is, the third convex ring 16 can be clamped in the bottom opening of the sucking tube 21 to form a seal. Others are the same as Embodiment 1.

[0038] Embodiment 3, different from Embodiment 1 or Embodiment 2, in this embodiment, the diversion hole 12 is opened on the side of the large through-hole 11, that is, the diversion hole 12 is not within the opening range of the large through-hole 11, but is opened outside the edge of the large through-hole 11. At this time, the design of the diversion platform 13 may not be provided in the embodiment, and the sealing structure may be the same as that in Embodiment 1 or Embodiment 2. Others are the same as Embodiment 1.

[0039] The present utility model has been illustrated and described by referring to the preferred embodiments. However, those of ordinary skill in the art should understand that various changes in form and details can be made within the scope of the claims.

Claims

1. A direct drinking lid, mounted on the cup body of a water cup, characterized in that The direct drinking cover is provided with a large through hole and a guide hole which both penetrate the upper and lower surfaces of the direct drinking cover. The large through hole forms a direct drinking port. The guide hole is arranged at the side edge of the large through hole. The guide hole and the large through hole are not mutually conductive. The guide hole is arranged at the side edge of the large through hole through a guide platform.

2. A direct drinking lid according to claim 1, characterized in that The bottom surface of the guide platform is provided with a downwardly protruding straw column, and the straw column is hollow and connected with the guide hole to form a guide channel.

3. A direct drinking lid according to claim 1, characterized in that The upper peripheral edge of the large through hole is provided with a water sealing arc surface.

4. A direct drinking lid according to claim 1, characterized in that The diameter of the large through hole is 10-35 mm.

5. A nozzle, characterized in that The suction nozzle is assembled on the direct drinking cover as described in any one of claims 1-4, and a hollow sucking tube is provided on the side of the suction nozzle. When the suction nozzle is assembled on the direct drinking cover, the bottom of the suction nozzle blocks the large through hole and the sucking tube and the guide hole are connected to each other.

6. A nozzle according to claim 5, characterized in that The bottom of the suction nozzle is provided with a first convex ring and a second convex ring, the first convex ring is arranged in a surrounding manner on the outer peripheral edge of the bottom surface of the suction nozzle, and the second convex ring is arranged in a surrounding manner on the outer peripheral edge of the bottom of the suction tube. When the suction nozzle is assembled on the direct drinking cover, the first convex ring and the upper surface of the water sealing arc surface are pressed and sealed, and the second convex ring and the upper surface of the guide platform are pressed and sealed against each other.

7. A nozzle according to claim 5, characterized in that The upper surface of the guide platform is provided with a third convex ring protruding upwards. When the suction nozzle is assembled on the direct drinking cover, the third convex ring and the bottom opening of the suction tube are pressed and sealed against each other.

8. A nozzle according to claim 6 or 7, characterized in that The suction nozzle is also provided with an air return valve, and the air return valve is arranged on a side away from the sucking tube.

Citation Information

Patent Citations

  • Three-drinking-water cup

    CN118058607A