Novel suction nozzle cup cover
By designing a detachable spout lid, the spout can be sealed, solving the problem of liquid leakage caused by fixing the straw and improving safety and ease of cleaning.
Patent Information
- Application Number
- CN202520640415.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-04-07
AI Technical Summary
The straw of existing sippy cups is fixed to the lid, which makes the lid difficult to clean and the straw always open, which can easily cause liquid to leak out and affect the safety of use.
A novel spout cup lid has been designed, with the spout detachably mounted on the top cover. The top cover can be rotated to switch between closed and open states. The combination of protrusions, grooves, and sealing gaskets ensures the alignment and sealing of the inlet and outlet water channels.
It improves safety and convenience, facilitates cleaning, prevents liquid leakage, and enhances the user experience.
Smart Images

Figure CN223886628U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of cup cover especially relates to a novel suction nozzle cup cover. BACKGROUND
[0002] The suction nozzle cup is a water cup with a suction pipe, and the user can drink water through the suction nozzle. In the prior art, the suction pipe is usually directly arranged on the cup cover and is always in an open state. When the water cup is accidentally touched and falls down, the water in the water cup is likely to flow out of the suction pipe, which may wet the clothes or table top of the user. When the water cup contains hot water, the user may be scalded, which affects the safety during use. In some suction nozzle cups, the suction pipe is directly fixed on the cup cover, and the user cannot clean the cup cover, which needs to be improved. SUMMARY
[0003] The utility model discloses a novel suction nozzle cup cover to solve the problems of the prior art, i.e., the suction pipe is fixed on the cup cover, the cup cover is not easy to clean, the suction pipe is always in an open state, and the liquid in the water cup is likely to flow out after the water cup is accidentally touched, which affects the safety during use.
[0004] To solve the above technical problems, the utility model discloses the following technical scheme:
[0005] A novel suction nozzle cup cover comprises a suction nozzle, an upper cover and a main cover. The suction nozzle is arranged on the upper cover, and the upper cover is detachably arranged on the main cover. The main cover is provided with a water inlet channel that communicates with the suction pipe. The suction nozzle has a closed state and a use state. In the closed state, the water outlet channel and the water inlet channel are misaligned, and the suction nozzle blocks the water inlet channel. In the use state, the water outlet channel and the water inlet channel are opposite and communicate with each other.
[0006] The upper cover can be rotated to switch the suction nozzle between the use state and the closed state, which realizes the sealable function of the suction nozzle, facilitates the user to carry the water cup outside, and improves the safety during use. The upper cover is detachably arranged on the main cover, which facilitates the cleaning of the upper cover, the main cover and the suction nozzle, and improves the user experience.
[0007] As a preferred embodiment, the main cover is provided with an installation groove on the upper surface, which is located outside the water inlet channel and communicates with the water inlet channel. An annular groove is formed on the inner side wall of the installation groove. The upper cover is provided with a protrusion. The lower end of the upper cover is inserted into the installation groove and blocks the installation groove. The protrusion is inserted into the annular groove and is connected to the annular groove. The upper cover rotates along the annular groove through the protrusion. The suction nozzle is switched between the use state and the closed state through the rotation of the upper cover.
[0008] The upper cover is detachably arranged on the main cover through the cooperation of the protrusion and the annular groove, which ensures the rotation of the upper cover on the main cover along a certain track, improves the accuracy of the alignment of the water inlet channel and the water outlet channel, and improves the convenience of disassembling the upper cover and the main cover, thereby further facilitating the use.
[0009] As preferred, the novel cup lid with a suction nozzle has a sealing gasket in the main cover, the water inlet channel is located on the sealing gasket and extends in the height direction, the upper end of the sealing gasket penetrates into the mounting groove, and the outer wall of the upper end of the sealing gasket is provided with a first recessed rib and a second recessed rib. The upper cover is provided with a protruding rib. In the use state, the protruding rib is inserted into the first recessed rib and is connected by clamping. In the closed state, the protruding rib is inserted into the second recessed rib and is connected by clamping.
[0010] Through the cooperation of the protruding rib and the first recessed rib and the second recessed rib, the suction nozzle can be locked in the use state or the closed state, thereby improving the stability of the suction nozzle in the use state or the closed state. The sealing gasket improves the sealing performance of the connection between the upper cover and the main cover, thereby preventing water leakage.
[0011] As preferred, the novel cup lid with a suction nozzle has a sealing gasket in the main cover, the water inlet channel is located on the sealing gasket and extends in the height direction, the upper end of the sealing gasket penetrates into the mounting groove, and the outer wall of the upper end of the sealing gasket is provided with a first recessed rib and a second recessed rib. The upper cover is provided with a protruding rib. In the use state, the protruding rib is inserted into the first recessed rib and is connected by clamping. In the closed state, the protruding rib is inserted into the second recessed rib and is connected by clamping.
[0012] The layout of the upper groove, the water inlet hole and the connecting hole enables the liquid to flow smoothly. At the same time, the support of the upper cover is realized by the rotating part and the upper groove, thereby improving the stability of the upper cover during rotation and ensuring that the water inlet hole can be accurately connected with the water outlet hole.
[0013] As preferred, the novel cup lid with a suction nozzle has a sealing gasket in the main cover, the water inlet channel is located on the sealing gasket and extends in the height direction, the upper end of the sealing gasket penetrates into the mounting groove, and the outer wall of the upper end of the sealing gasket is provided with a first recessed rib and a second recessed rib. The upper cover is provided with a protruding rib. In the use state, the protruding rib is inserted into the first recessed rib and is connected by clamping. In the closed state, the protruding rib is inserted into the second recessed rib and is connected by clamping.
[0014] The upper groove is semispherical, and the lower end of the rotating part is spherical, which improves the fit and smoothness of the rotating part during rotation in the upper groove, enables the water inlet hole to be more tightly blocked when the suction nozzle is closed, and facilitates the cleaning of the upper groove and the rotating part due to the smooth and gentle outer surface of the rotating part and the inner wall of the upper groove. The water outlet hole is semicircular, which reduces the resistance of the liquid at the water outlet hole and enables the liquid to flow out more smoothly.
[0015] Preferably, in the above-described novel spout cup lid, the sealing gasket has a vent hole extending along the height direction, the vent hole is connected to the mounting groove and the lower side of the main cover, and the lower surface of the upper cover has a sealing flap. In the closed state, the sealing flap is pressed onto the vent hole and blocks the vent hole. In the use state, the sealing flap separates from the vent hole, and the vent hole is opened.
[0016] The sealing flap opens or closes the vent hole as the top cover rotates, improving the smoothness of water intake when the spout is in use. When the spout is closed, it prevents liquid from flowing out of the vent hole and accumulating inside the spout cup lid.
[0017] Preferably, in the above-described novel spout cup lid, the upper surface of the main lid is provided with a first mark and a second mark, and the upper lid has an arrow mark. When in use, the arrow mark is directly opposite the first mark, and when in the closed state, the arrow mark is directly opposite the second mark.
[0018] The first icon, the second icon, and the arrow icon indicate the current status of the nozzle, allowing users to smoothly switch the nozzle to the active or off state, thus improving the user experience.
[0019] Preferably, in the above-described novel spout cup lid, the upper surface of the main lid is further provided with a third mark, and the main lid has a notch communicating with the annular groove. The notch is opposite to the third mark and is used to allow the protrusion to be inserted into or withdrawn from the annular groove.
[0020] The third mark facilitates the alignment of the protrusion with the notch. The notch serves to avoid and facilitate docking when the protrusion is inserted into the annular groove, improving the ease of disassembly and assembly between the top cover and the main cover. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of this utility model;
[0022] Figure 2 This is a schematic diagram of the exploded structure of this utility model;
[0023] Figure 3 This is a schematic diagram of the exploded structure from another perspective of the present invention;
[0024] Figure 4 This is a cross-sectional view of the suction nozzle of this utility model in use.
[0025] Figure 5 This is a cross-sectional view of the nozzle of this utility model in the closed state.
[0026] Explanation of reference numerals in the attached drawings: 1. Suction nozzle; 10. Water outlet channel; 2. Top cover; 21. Protrusion; 22. Rib; 23. Rotating part; 231. Water outlet hole; 24. Sealing flap; 3. Main cover; 31. Water inlet channel; 311. Upper groove; 312. Water inlet hole; 313. Connecting hole; 32. Sealing gasket; 321. First concave rib; 322. Second concave rib; 323. Vent hole; 33. Notch; 4. Mounting groove; 41. Annular groove; 5. First mark; 6. Second mark; 7. Arrow mark; 8. Third mark. Detailed Implementation
[0027] The following is in conjunction with the appendix Figures 1-5 The present invention will be further described in detail with reference to specific embodiments, but these are not intended to limit the present invention:
[0028] Example 1
[0029] like Figures 1-5 As shown, a novel sippy cup lid includes a sippy nozzle 1 with a water outlet channel 10, an upper cover 2, and a main cover 3. The sippy nozzle 1 is mounted on the upper cover 2, and the upper cover 2 is detachably mounted on the main cover 3. The main cover 3 has a water inlet channel 31 that communicates with a straw. The sippy nozzle 1 has a closed state and a used state. In the closed state, the water outlet channel 10 and the water inlet channel 31 are misaligned and the sippy nozzle 1 blocks the water inlet channel 31. In the used state, the water outlet channel 10 and the water inlet channel 31 are directly opposite and connected.
[0030] Preferably, the upper surface of the main cover 3 has an installation groove 4 located outside the water inlet channel 31 and communicating with the water inlet channel 31. The inner side wall of the installation groove 4 has an annular groove 41. The upper cover 2 has a protrusion 21. The lower end of the upper cover 2 is inserted into the installation groove 4 and seals the installation groove 4. The protrusion 21 is inserted into the annular groove 41 and is engaged. The upper cover 2 rotates along the annular groove 41 through the protrusion 21. The suction nozzle 1 switches between the use state and the closed state as the upper cover 2 rotates.
[0031] Preferably, the main cover 3 has a sealing gasket 32 inside, the water inlet channel 31 is located on the sealing gasket 32 and extends along the height direction, the upper end of the sealing gasket 32 is inserted into the mounting groove 4, the upper outer wall of the sealing gasket 32 has a first concave rib 321 and a second concave rib 322, the upper cover 2 has a convex rib 22, in the use state, the convex rib 22 is inserted into the first concave rib 321 and engaged, in the closed state, the convex rib 22 is inserted into the second concave rib 322 and engaged.
[0032] Preferably, the water inlet channel 31 includes an upper groove 311 distributed from top to bottom, a water inlet hole 312, and a connecting hole 313 for connecting with a straw. The upper cover 2 has a rotating part 23 rotatably disposed in the upper groove 311. The outer surface of the rotating part 23 has a water outlet hole 231 that communicates with the water outlet channel 10. In the use state, the water outlet hole 231 is directly opposite to the water inlet hole 312 and the water outlet channel 10 is connected to the water inlet channel 31. In the closed state, the water outlet hole 231 and the water inlet hole 312 are offset from each other, and the outer surface of the rotating part 23 is pressed against the water inlet hole 312 and blocks the water inlet hole 312.
[0033] Preferably, the upper groove 311 is hemispherical and the opening of the upper groove 311 faces upward, the water inlet 312 is located at the bottom of the upper groove 311 near the outer side, the lower end of the rotating part 23 is spherical, and the water outlet 231 is located at the bottom of the rotating part 23 near the outer side and the water outlet 231 is semi-circular.
[0034] Preferably, the sealing gasket 32 has a vent 323 extending along the height direction, the vent 323 is connected to the mounting groove 4 and the lower side of the main cover 3, and the lower surface of the upper cover 2 has a sealing flap 24. In the closed state, the sealing flap 24 is pressed onto the vent 323 and blocks the vent 323. In the use state, the sealing flap 24 is separated from the vent 323 and the vent 323 is opened.
[0035] Preferably, the upper surface of the main cover 3 is provided with a first mark 5 and a second mark 6, and the upper cover 2 is provided with an arrow mark 7. When in use, the arrow mark 7 is directly opposite the first mark 5, and when in the closed state, the arrow mark 7 is directly opposite the second mark 6.
[0036] Preferably, the upper surface of the main cover 3 is also provided with a third mark 8, and the main cover 3 is provided with a notch 33 that communicates with the annular groove 41. The notch 33 is opposite to the third mark 8 and is used to allow the protrusion 21 to be inserted into or withdrawn from the annular groove 41.
[0037] Specifically, such as Figures 1-5 As shown, the upper cover 2 includes a cover body and an inner plug fixed to the lower end of the cover body. The outer diameter of the cover body is larger than the inner diameter of the mounting groove 4, and the outer diameter of the inner plug is adapted to the inner diameter of the mounting groove 4. The upper sidewall of the cover body is integrally formed with two triangular protrusions, which are symmetrically arranged. Arrow mark 7 is located on the upper surface of one of the triangular protrusions.
[0038] The bottom of the inner plug has an inwardly protruding circular groove. The rotating part 23 passes through the bottom of the groove. The upper half of the rotating part 23 is cylindrical. The lower end of the suction nozzle 1 is fixed to the cover. The lower part of the suction nozzle 1 covers the outside of the upper end of the rotating part 23 and is in contact with the inner surface of the inner plug. The suction nozzle 1, the inner plug, and the rotating part 23 are welded and fixed by ultrasonic welding technology. The lower half of the rotating part 23 is spherical. The water outlet 231 is located at the bottom of the rotating part 23 near the outer side and is semi-circular.
[0039] The sealing flap 24 is located at the bottom of the inner plug and outside the circular groove. There are two protrusions 21, which are symmetrically distributed on the outer side wall of the inner plug. The rib 22 is located on the inner side wall of the circular groove. The rib 22 extends vertically and protrudes towards the rotating part 23.
[0040] like Figures 2-4 As shown, the sealing gasket 32 is embedded in the main cover 3. The upper end of the sealing gasket 32 extends into the mounting groove 4, and the lower end of the sealing gasket 32 is cylindrical and extends out from the lower surface of the main cover 3. The upper end of the sealing gasket 32 is integrally formed with a limiting wall surrounding the upper groove 311. The limiting wall is arc-shaped, and the first concave rib 321 and the second concave rib 322 are symmetrically distributed on the outer side wall of the limiting wall, extending along the height direction.
[0041] The number of notches 33 corresponds one-to-one with the number of protrusions 21. The notches 33 are symmetrically distributed on the inner wall of the mounting groove 4. The notches 33 are connected to the annular groove 41. The bottom of the notches 33 and the bottom of the annular groove 41 are on the same plane.
[0042] When it is necessary to assemble the upper cover 2 onto the main cover 3, first rotate the upper cover 2 until the arrow mark 7 and the third mark 8 are aligned. At this time, the protrusion 21 is aligned with the corresponding notch 33. Move the upper cover 2 downward so that the inner plug can be inserted into the mounting groove 4 for insertion and engagement. The protrusion 21 is inserted into the notch 33 and is directly opposite the annular groove 41. The cover is pressed against the upper surface of the main cover 3. Then rotate the upper cover 2 to drive the protrusion 21 into the annular groove 41. At this time, the assembly between the upper cover 2 and the main cover 3 is completed.
[0043] When the upper cover 2 is assembled on the main cover 3, the limiting wall is inserted between the rotating part 23 and the inner wall of the circular groove, thereby improving the stability of the upper cover 2 rotating on the main cover 3, and also enabling the limiting wall to contain and store the liquid overflowing from the water inlet 312 and the water outlet 231.
[0044] The upper cover 2 is detachably mounted on the main cover 3 through the cooperation of the convex ring 21 and the annular groove 41. On the one hand, this ensures that the upper cover 2 rotates along a certain trajectory on the main cover 3, which improves the accuracy of the alignment between the water inlet channel 31 and the water outlet channel 10. On the other hand, it improves the convenience of assembling and disassembling the upper cover 2 and the main cover 3, making it easier to clean the upper cover 2, the main cover 3 and the nozzle 1, and making it more convenient to use.
[0045] More specifically, such as Figures 1-5 As shown, when it is necessary to open the nozzle 1, simply rotate the upper cover 2 towards the direction of the first mark 5 until the arrow mark 7 is directly opposite the first mark 5. At this time, the upper cover 2 will drive the rib 22 to be inserted into the first concave rib 321, the water inlet 312 and the water outlet 231 will be directly opposite each other, the water inlet channel 31 and the water outlet channel 10 will be connected, the sealing flap 24 will be separated from the vent 323, and the vent 323 will be exposed. The user can drink water through the nozzle 1. When it is necessary to close the nozzle 1, simply rotate the upper cover 2 in the opposite direction until the direction of the second mark 6 is directly opposite the arrow mark 7.
[0046] The above structure allows the nozzle 1 to be switched between the in use state and the closed state by rotating the top cover 2, realizing the sealing function of the nozzle 1, which makes it convenient for users to carry water cups when they go out, and also improves the safety during use.
[0047] In summary, the above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall be covered by the present utility model.
Claims
1. A novel spout cup lid, comprising a spout (1) having a water outlet channel (10), characterized in that: It also includes an upper cover (2) and a main cover (3). The suction nozzle (1) is disposed on the upper cover (2). The upper cover (2) is detachably disposed on the main cover (3). The main cover (3) has a water inlet channel (31) that communicates with the suction tube. The suction nozzle (1) has a closed state and a working state. When it is in the closed state, the water outlet channel (10) and the water inlet channel (31) are misaligned and the suction nozzle (1) blocks the water inlet channel (31). When it is in the working state, the water outlet channel (10) and the water inlet channel (31) are directly opposite and connected.
2. The novel spout cup lid according to claim 1, characterized in that: The main cover (3) has an installation groove (4) on its upper surface that is located outside the water inlet channel (31) and communicates with the water inlet channel (31). The inner side wall of the installation groove (4) has an annular groove (41). The upper cover (2) has a protrusion (21). The lower end of the upper cover (2) is inserted into the installation groove (4) and the installation groove (4) is sealed. The protrusion (21) is inserted into the annular groove (41) and they are engaged. The upper cover (2) rotates along the annular groove (41) via the protrusion (21). The suction nozzle (1) switches between the use state and the closed state as the upper cover (2) rotates.
3. The novel spout cup lid according to claim 2, characterized in that: The main cover (3) has a sealing gasket (32) inside. The water inlet channel (31) is located on the sealing gasket (32) and extends along the height direction. The upper end of the sealing gasket (32) is inserted into the mounting groove (4). The upper outer wall of the sealing gasket (32) has a first concave rib (321) and a second concave rib (322). The upper cover (2) has a convex rib (22). In the use state, the convex rib (22) is inserted into the first concave rib (321) and engaged. In the closed state, the convex rib (22) is inserted into the second concave rib (322) and engaged.
4. The novel sippy cup lid according to claim 1, characterized in that: The water inlet channel (31) includes an upper groove (311) distributed from top to bottom, a water inlet hole (312), and a connecting hole (313) for connecting with a straw. The upper cover (2) has a rotating part (23) rotatably disposed in the upper groove (311). The outer surface of the rotating part (23) has a water outlet hole (231) that communicates with the water outlet channel (10). In the use state, the water outlet hole (231) is directly opposite the water inlet hole (312) and the water outlet channel (10) is connected to the water inlet channel (31). In the closed state, the water outlet hole (231) and the water inlet hole (312) are offset from each other. The outer surface of the rotating part (23) is pressed against the water inlet hole (312) and blocks the water inlet hole (312).
5. A novel sippy cup lid according to claim 4, characterized in that: The upper groove (311) is hemispherical and the opening of the upper groove (311) faces upward. The water inlet (312) is located at the bottom of the upper groove (311) near the outside. The lower end of the rotating part (23) is spherical. The water outlet (231) is located at the bottom of the rotating part (23) near the outside and is semi-circular.
6. A novel sippy cup lid according to claim 3, characterized in that: The sealing gasket (32) has a vent hole (323) extending along the height direction. The vent hole (323) is connected to the mounting groove (4) and the lower side of the main cover (3). The lower surface of the upper cover (2) has a sealing flap (24). When in the closed state, the sealing flap (24) presses against the vent hole (323) and blocks the vent hole (323). When in the use state, the sealing flap (24) separates from the vent hole (323) and the vent hole (323) is opened.
7. The novel sippy cup lid according to claim 1, characterized in that: The upper surface of the main cover (3) is provided with a first mark (5) and a second mark (6). The upper cover (2) is provided with an arrow mark (7). When in use, the arrow mark (7) is opposite to the first mark (5). When in the closed state, the arrow mark (7) is opposite to the second mark (6).
8. A novel sippy cup lid according to claim 2, characterized in that: The upper surface of the main cover (3) is also provided with a third mark (8). The main cover (3) has a notch (33) that communicates with the annular groove (41). The notch (33) is opposite to the third mark (8) and is used to allow the protrusion (21) to be inserted into or withdrawn from the annular groove (41).