Lifting type kettle cover and kettle
By incorporating a movable spout and straw structure within the pull-out water bottle cap, multiple drinking methods are achieved, solving the problem of complex drinking operations during cycling and reducing the risk of accidents caused by shifting focus.
Patent Information
- Application Number
- CN202520068534.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-01-13
AI Technical Summary
The existing pull-top water bottle caps make drinking while cycling complicated and can easily cause cyclists to tilt the bottle and look up to drink, causing a shift in their gaze and potentially leading to accidents.
Design a pull-up kettle lid, including a spout, a valve, and a straw. The spout can move up and down. The valve switches to the open state when it is impacted. The straw extends into the lower part of the kettle body, providing three drinking methods: tilting or inverting to spray water, upright spraying water, and upright sucking water.
It offers a variety of drinking methods, reducing the risk of accidents caused by riders shifting their gaze when tilting the bottle to drink, making it especially suitable for novice cyclists.
Smart Images

Figure CN223614356U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of container technology, and in particular to a pull-out kettle lid and a kettle. Background Technology
[0002] Existing pull-top water bottle caps, used with flexible bottle bodies, work by pulling the spout to open the water channel, then squeezing the bottle body. The resulting airflow forces open a valve inside the cap, causing water to spray out. Pull-top water bottle caps are widely used by cyclists due to their spray mechanism. However, they present the following drawbacks: because the inlet is located at the top of the bottle, cyclists need to tilt the bottle and their head to drink easily. This complex drinking procedure can easily lead to accidents and injuries while cycling. Utility Model Content
[0003] One of the purposes of this utility model is to provide a pull-out water bottle lid that can provide users with multiple ways to drink water.
[0004] The second objective of this utility model is to provide a water bottle that offers users multiple ways to drink water.
[0005] To achieve one of the above objectives, the technical solution of this utility model is: a pull-up kettle lid, comprising: a lid body for mating with a kettle body, wherein a water inlet is provided in the lid body and the water inlet is located at the upper part of the kettle body; a spout, wherein the spout is embedded in the lid body and can move up and down relative to the lid body to open or close the water inlet; a valve, wherein the valve is disposed in the spout and is configured to switch from a closed state to an open state when subjected to impact; and a straw, wherein the straw is disposed below the spout and communicates with the spout, and the straw extends into the lower part of the kettle body.
[0006] Furthermore, the cover is provided with a receiving seat, which includes a receiving portion and an inner plug seat. The water inlet is disposed on the peripheral wall of the receiving portion and extends axially from the bottom of the peripheral wall of the receiving portion. The inner plug seat is provided with a protrusion. The water nozzle is embedded in the receiving portion, and the bottom of the water nozzle abuts against the bottom of the inner plug seat. The outer wall of the water nozzle abuts against the inner wall of the receiving portion, and the inner wall of the water nozzle abuts against the outer wall of the protrusion.
[0007] Furthermore, the outer wall of the water nozzle is provided with a snap-fit block, the thickness of which gradually increases in the circumferential direction of the water nozzle; when the water nozzle moves upward relative to the cover to open the water inlet, the snap-fit block engages with the top of the water inlet.
[0008] Furthermore, the valve includes a valve seat, a valve body, and a valve cover, the valve seat being mated with the valve cover, and the valve body being pressed between the valve cover and the valve seat; the valve body is provided with a slit, the slit being configured to switch from a closed state to an open state when the valve body is subjected to an impact.
[0009] Furthermore, the valve cover includes an outer ring portion, an inner ring portion, and a connecting portion connecting the outer ring portion and the inner ring portion; the valve body includes a body and a retaining edge disposed on the top of the body, the retaining edge being inclined downward from the outside to the inside; the inner ring portion is pressed against the inner side of the retaining edge, and the height of the outer side of the retaining edge exceeds the bottom of the inner ring portion.
[0010] Furthermore, a buffer portion is provided on the inner side of the retaining edge, the buffer portion is connected to the main body, and the buffer portion is suspended.
[0011] Furthermore, a hook is provided circumferentially along the inner wall of the outer ring portion, and a mating portion is provided circumferentially along the top of the valve seat, wherein the hook is engaged with the mating portion; the outer wall of the mating portion abuts against the inner wall of the outer ring portion.
[0012] Furthermore, a snap-fit ring is provided on the upper part of the valve seat, and the outer wall of the snap-fit ring abuts against the inner wall of the water nozzle; the inside of the water nozzle is provided with an annular step portion and an annular limiting portion, the top of the valve cover abuts against the annular step portion, and the bottom of the snap-fit ring abuts against the annular limiting portion.
[0013] Furthermore, the straw includes a connector and a tube body; the tube body is inserted into the connector, and the outer wall of the tube body abuts against the inner wall of the connector; the connector is inserted into the inner plug seat and communicates with the water nozzle, and the outer wall of the connector abuts against the inner wall of the inner plug seat.
[0014] To achieve the second objective mentioned above, the technical solution of this utility model is: a kettle, comprising: a kettle body, and a pull-out kettle lid as described in any of the above claims, wherein the mouth of the kettle body is provided with an inclined annular mating portion, and the inside of the lid body is provided with an inclined annular protrusion portion, wherein when the kettle body is connected to the lid body, the annular mating portion abuts against the annular protrusion portion.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: By setting a straw below the spout, which can extend into the kettle body, three drinking methods can be provided to the user: The first method is the water spraying method with the kettle body tilted or inverted; first, pull the spout upward to open the inlet, then tilt or invert the kettle body and squeeze the kettle body at the same time to cause the valve to open; water enters the lower end of the spout through the inlet and then sprays out from the upper end of the spout through the valve; The second method is the water spraying method with the kettle body upright; directly squeeze the kettle body to cause the valve to open, water enters the lower end of the spout along the straw and then sprays out from the upper end of the spout through the valve; The third method is the water suction method with the kettle body upright; the user sucks on the upper end of the spout to cause the valve to open, water enters the lower end of the spout along the straw, then flows to the upper end of the spout through the valve, and finally enters the user's mouth. This variety of drinking methods provides users with many options; during cycling, it reduces the risk of accidents caused by the rider tilting the bottle and looking up to drink, making it especially suitable for novice cyclists. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0017] Figure 1 This is a structural schematic diagram of the pull-out kettle lid of this utility model.
[0018] Figure 2 This is an exploded view of the pull-out kettle lid of this utility model.
[0019] Figure 3 This is a schematic diagram of the pull-up water bottle lid of this utility model in the tilted water spray state.
[0020] Figure 4 This is a schematic diagram of the structure of the pull-up kettle lid with the water inlet closed.
[0021] Figure 5 yes Figure 2 A magnified view of part a in the diagram.
[0022] Figure 6 This is a schematic diagram of the structure of the cover of this utility model.
[0023] Figure 7 This is a schematic diagram of the valve structure of this utility model.
[0024] Figure 8 This is a schematic diagram of the water tap of this utility model.
[0025] Figure 9 This is a schematic diagram of the internal structure of the faucet of this utility model.
[0026] Figure 10 This is a schematic diagram of the valve cover of this utility model.
[0027] Figure 11 This is a schematic diagram of the valve body of this utility model.
[0028] Figure 12 This is a schematic diagram of the valve seat structure of this utility model.
[0029] Figure label:
[0030] 10. Cover; 11. Receiving seat; 111. Receiving part; 112. Inner plug seat; 1121. Protrusion; 113. Water inlet; 12. Annular protrusion; 20. Water nozzle; 21. Sealing ring; 22. Annular step part; 23. Annular limiting part; 24. Snap-fit block; 30. Valve; 31. Valve cover; 311. Outer ring part; 312. Inner ring part; 313. Connecting part; 314. Hook part; 32. Valve body; 321. Body; 3211. Cutout; 322. Edge retainer; 323. Buffer part; 33. Valve seat; 331. Fitting part; 332. Snap-fit ring; 40. Suction tube; 41. Connector; 42. Tube body. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0032] like Figures 1 to 12 As shown in the illustration, this application provides a kettle, including a kettle body and a pull-out kettle lid. The kettle lid is used to cover the kettle body for convenient drinking while preventing water from spilling out of the kettle. The kettle body has an inclined annular mating part at its opening, and the kettle lid has an inclined annular protrusion 12 inside. When the kettle body and the kettle lid are threaded together, the annular mating part and the annular protrusion abut against each other to form a seal, preventing water from spilling out of the kettle.
[0033] The pull-out kettle lid includes a lid body 10, a spout 20, a valve 30, and a straw 40. The lid body 10 is threaded to the kettle body. The spout 20 is embedded in the lid body 10, and a water inlet 113 is provided inside the lid body 10. The water inlet 113 is located at the upper part of the kettle body. The spout 20 can move up and down relative to the lid body 10 to open or close the water inlet 113. The valve 30 is located inside the spout 20, and a notch 3211 is provided on the valve body 32 of the valve 30. The notch 3211 is in the normal state. The lower part of the kettle is in a closed state to prevent water from spilling out. When you need to drink, you can lift the spout 20, causing it to move upward relative to the lid 10. Then, tilt the kettle, allowing water to enter the spout 20 through the inlet 113. Squeezing the kettle opens the slit 3211, allowing water to spray out and enter the mouth through the suction end of the spout 20. A straw 40 is located below the spout 20, connected to it and extending into the lower part of the kettle. When the kettle is upright, squeezing the kettle or sucking on the spout opens the slit 3211, allowing water to enter the lower part of the spout 20 through the straw 40, then through the valve body 32, and finally out through the upper part of the spout 20.
[0034] By installing a straw 40 below the spout 20 and connecting the straw 40 to the spout 20, the straw 40 can extend into the lower part of the kettle body, providing users with three drinking methods: The first method is a water spraying method by tilting or inverting the kettle body; first, pull the spout 20 upward to open the inlet 113, then tilt or invert the kettle body while squeezing the kettle body to open the valve 30, water enters the lower end of the spout 20 through the inlet 113, and then flows out from the upper end of the spout 20 through the valve 30. There are three main drinking methods: First, water is sprayed out. Second, water is sprayed from the upright kettle body by squeezing the kettle, causing valve 30 to open. Water flows through straw 40 to the lower end of spout 20, then through valve 30 and sprays out from the upper end of spout 20. Third, water is sucked from the upright kettle body by sucking on the upper end of spout 20, causing valve 30 to open. Water flows through straw 40 to the lower end of spout 20, then through valve 20 to the upper end of spout, and finally into the user's mouth. These diverse drinking methods provide users with numerous options. During cycling, they reduce the risk of accidents caused by tilting the kettle and looking up to drink, making them particularly suitable for novice cyclists.
[0035] It should be understood that, in order to facilitate the quick switching of the cut 3211 from a closed state to an open state when subjected to impact, the cut 3211 adopts a cross-shaped cut 3211. At the same time, when the cut 3211 is not subjected to impact, it can switch from an open state to a closed state under the action of its own elastic force.
[0036] To ensure the airtightness between the spout 20 and the lid 10 and prevent water from spilling from between them, a sealing ring 21 is fitted on the outer wall of the spout 20. The outer peripheral wall of the spout 20 and the inner peripheral wall of the lid 10 are sealed by the sealing ring 21. That is, the spout 20 and the lid 10 can be sealed indirectly by the sealing ring 21, or they can be sealed by direct contact.
[0037] Furthermore, the cover 10 is provided with a receiving seat 11, which includes a receiving portion 111 and an inner plug seat 112; a water inlet 113 is provided on the peripheral wall of the receiving portion 111, and the water inlet 113 extends axially from the bottom of the peripheral wall of the receiving portion 111; a protrusion 1121 is provided on the inner plug seat 112; a water nozzle 20 is embedded in the receiving portion 111, and the bottom of the water nozzle 20 abuts against the bottom of the inner plug seat 112; the outer wall of the water nozzle 20 abuts against the inner wall of the receiving portion 111, and the inner wall of the water nozzle 20 abuts against the outer wall of the protrusion 1121. The abutment between the water nozzle 20 and the receiving portion 111 and between the water nozzle 20 and the protrusion 1121 can be a direct abutment to form a seal, or an indirect abutment through a sealing ring to form a seal. Thus, when the spout 20 is lifted upwards, a gap is created between the bottom of the spout 20 and the bottom of the inner stopper seat 112, and the seal between the spout 20 and the protrusion 1121 on the bottom of the inner stopper seat 112 is released. When the kettle is tilted or inverted, squeezing the kettle causes the cross-cut 3211 of the valve body 32 to open, and at the same time, the water in the kettle will be sprayed out through the inlet 113, the gap between the spout 20 and the inner stopper seat 112, and the cross-cut 3211 of the valve body 32.
[0038] Furthermore, the straw 40 includes a connector 41 and a tube 42. The tube 42 extends into the lower part of the kettle body, with a portion of the tube 42 inserted into the connector 41. The outer wall of the tube 42 abuts against the inner wall of the connector 41. The connector 41 is inserted into the inner stopper 11 and communicates with the spout 20. The outer wall of the connector 41 abuts against the inner wall of the inner stopper 112. The tube 42 and the connector 41, as well as the connector 41 and the inner stopper 112, can form a seal through direct contact or through indirect contact via a sealing ring. Thus, when the kettle body is squeezed or when sucking at the spout 20, the cut 3211 is opened, allowing water inside the kettle to flow through the tube 42 into the connector 41, then into the spout 20, and finally be discharged through the cut 3211.
[0039] Furthermore, the valve 30 includes a valve seat 33, a valve body 32, and a valve cover 31. The valve seat 33 is mated with the valve cover 31, and the valve body 32 is pressed between the valve cover 31 and the valve seat 33. The valve body 32 is provided with a notch 3211, which is configured to switch from a closed state to an open state when the valve body 32 is impacted.
[0040] Furthermore, the valve cover 31 includes an outer ring portion 311, an inner ring portion 312, and a connecting portion 313 connecting the outer ring portion 311 and the inner ring portion 312; the valve body 32 includes a body 321 and a retaining edge 322 disposed on the outer periphery of the top of the body 321, the retaining edge 322 sloping downward from the outside to the inside; the inner ring portion 312 is pressed against the inner side of the retaining edge 322, and the height of the outer side of the retaining edge 322 exceeds the bottom of the inner ring portion 312. By providing the retaining edge 322, the outer side of the retaining edge 322 is high and the inner side is abutting, the inner ring portion 312 is pressed against the inner side of the retaining edge 322, and the height of the outer side of the retaining edge 322 exceeds the bottom of the inner ring portion 312, so that when the valve body 32 is subjected to gas impact, the outer side of the retaining edge 322 is blocked by the outer wall of the inner ring portion 312, thereby preventing the valve body 32 from falling off.
[0041] Furthermore, a buffer portion 323 is provided on the inner side of the retaining edge 322. The buffer portion 323 is connected to the body 321 and is suspended. The buffer portion 323 can be arc-shaped, triangular, wavy, etc. By providing the buffer portion 323, the force on the retaining edge 322 when the valve body 32 is impacted by gas can be relieved, further preventing the valve body 32 from accidentally falling off.
[0042] Furthermore, a hook portion 314 is provided circumferentially along the inner wall of the outer ring portion 311, and a mating portion 331 is provided circumferentially along the top of the valve seat 33. The hook portion 314 and the mating portion 331 can be engaged, and the outer wall of the mating portion 331 abuts against the inner wall of the outer ring portion 311. Of course, in other embodiments, the positions of the hook portion 314 and the mating portion 331 can be interchanged. The abutment between the mating portion 331 and the outer ring portion 311 can be a direct abutment to form a seal, or it can be an indirect abutment through a sealing ring to form a seal, thereby ensuring a seal between the valve seat 33 and the valve cover 31.
[0043] Furthermore, in order to ensure the sealing between valve 30 and water nozzle 20, a snap ring 332 is provided on the upper part of valve seat 33, and the outer wall of snap ring 332 abuts against the inner wall of water nozzle 20; the abutment here can be a direct abutment to form a seal, or it can be an indirect abutment through a sealing ring to form a seal.
[0044] Furthermore, the faucet 20 is internally provided with an annular stepped portion 22 and an annular limiting portion 23. When the valve 30 is installed into the inner cavity of the faucet 20, the top of the valve cover 31 abuts against the annular stepped portion 22 of the faucet 20, and the bottom of the locking ring 332 of the valve seat 33 abuts against the annular limiting portion 23 of the faucet 20. By providing the annular stepped portion 22 and the annular limiting portion 23, the valve 30 is locked between the two, preventing the valve 30 from moving within the faucet 20.
[0045] Furthermore, it also includes a dust cover, which is connected to the water nozzle 20.
[0046] Furthermore, the dust cover includes a sleeve ring, a cover portion, and a connecting strip connecting the sleeve ring and the cover portion; the sleeve ring is sleeved with the water nozzle 20, and the cover portion is covered by the water nozzle 20. By providing the dust cover, dust can be prevented from entering the water nozzle.
[0047] This application also improves the structure of the water nozzle 20 to make it easier to remove and clean: the outer wall of the water nozzle 20 is provided with a locking block 24. When the water nozzle 20 is pulled upward, the locking block 24 abuts against the top of the water inlet 113 of the receiving seat 11 of the cover 10, thereby preventing the water nozzle 20 from being pulled out and detached from the cover 10; the thickness of the locking block 24 in the circumferential direction of the outer wall of the water nozzle 20 gradually increases (i.e., one end is thick and the other end is thin). When it is necessary to remove the water nozzle 20 for cleaning, the water nozzle 20 can be rotated so that the thin end of the locking block 24 can easily enter the inner peripheral wall of the receiving seat 11 of the cover 10 and be squeezed, so that the locking block 24 can be completely screwed into the inner peripheral wall of the receiving seat 11. At this time, the water nozzle 20 can be removed from the cover 10 simply by pulling the water nozzle upward.
[0048] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A pull-out kettle lid, characterized in that, include: A lid (10) is provided inside the lid (10) for fitting with the pot body. The lid (10) is provided with a water inlet (113) located at the upper part of the pot body. A water tap (20) is embedded in the cover (10) and can move up and down relative to the cover (10) to open or close the water inlet (113); Valve (30), the valve (30) is disposed inside the water nozzle (20), the valve (30) is configured to switch from closed state to open state when subjected to impact; A straw (40) is provided below and communicates with the spout (20), and the straw (40) extends into the lower part of the kettle body.
2. The pull-out kettle lid according to claim 1, characterized in that: The cover (10) is provided with a receiving seat (11), which includes a receiving part (111) and an inner plug seat (112); the water inlet (113) is provided on the peripheral wall of the receiving part (111), and the water inlet (113) extends axially from the bottom of the peripheral wall of the receiving part (111); the inner plug seat (112) is provided with a protrusion (1121). The water nozzle (20) is embedded in the receiving part (111), and the bottom of the water nozzle (20) abuts against the bottom of the inner plug seat (112); the outer wall of the water nozzle (20) abuts against the inner wall of the receiving part (111), and the inner wall of the water nozzle (20) abuts against the outer wall of the protrusion (1121).
3. The pull-out kettle lid according to claim 2, characterized in that: The outer wall of the water nozzle (20) is provided with a snap-fit block (24), and the thickness of the snap-fit block (24) gradually increases in the circumferential direction of the water nozzle (20); When the water nozzle (20) moves upward relative to the cover (10) to open the water inlet (113), the snap-fit block (24) engages with the top of the water inlet (113).
4. The pull-out kettle lid according to any one of claims 1 to 3, characterized in that: The valve (30) includes a valve seat (33), a valve body (32) and a valve cover (31), wherein the valve seat (33) is mated with the valve cover (31) and the valve body (32) is pressed between the valve cover (31) and the valve seat (33); The valve body (32) is provided with a notch (3211), which is configured to switch from a closed state to an open state when the valve body (32) is subjected to impact.
5. The pull-out kettle lid according to claim 4, characterized in that: The valve cover (31) includes an outer ring portion (311), an inner ring portion (312), and a connecting portion (313) connecting the outer ring portion (311) and the inner ring portion (312); The valve body (32) includes a body (321) and a retaining edge (322) disposed on the outer periphery of the top of the body (321), the retaining edge (322) being inclined downward from the outside to the inside; The inner ring (312) is pressed against the inner side of the stop (322), and the height of the outer side of the stop (322) exceeds the bottom of the inner ring (312).
6. The pull-out kettle lid according to claim 5, characterized in that: The inner side of the retaining edge (322) is provided with a buffer part (323), which is connected to the body (321) and is suspended.
7. The pull-out kettle lid according to claim 6, characterized in that: A hook (314) is provided circumferentially along the inner wall of the outer ring portion (311), and a mating portion (331) is provided circumferentially along the top of the valve seat (33). The hook (314) engages with the mating portion (331); the outer wall of the mating portion (331) abuts against the inner wall of the outer ring portion (311).
8. The pull-out kettle lid according to claim 7, characterized in that: The upper part of the valve seat (33) is provided with a snap ring (332), and the outer wall of the snap ring (332) abuts against the inner wall of the water nozzle (20); The water nozzle (20) has an annular step portion (22) and an annular limiting portion (23) inside. The top of the valve cover (31) abuts against the annular step portion (22), and the bottom of the snap ring (332) abuts against the annular limiting portion (23).
9. The pull-out kettle lid according to claim 2, characterized in that: The straw (40) includes a connector (41) and a tube body (42); The tube (42) is inserted into the connector (41), and the outer wall of the tube (42) abuts against the inner wall of the connector (41); The connector (41) is inserted into the inner plug seat (112) and communicates with the water nozzle (20). The outer wall of the connector (41) abuts against the inner wall of the inner plug seat (112).
10. A kettle, characterized in that, include: The body of the pot, and; Pull-up kettle lid as described in any one of claims 1 to 9; The mouth of the pot body is provided with an inclined annular fitting part, and the inside of the lid (10) is provided with an inclined annular protrusion (12). When the pot body is connected to the lid (10), the annular fitting part abuts against the annular protrusion (12).