Suction nozzle pot capable of preventing mistaken pressing

By incorporating a spring pin and a limiting groove within the storage slot of the kettle lid, and utilizing a sliding component to lock and unlock the spout, the problem of accidental operation associated with traditional kettle spouts is solved, improving safety and ease of operation.

CN224179322UActive Publication Date: 2026-05-01ZHEJIANG QUANHU IND & TRADE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG QUANHU IND & TRADE CO LTD
Filing Date
2025-06-24
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Traditional kettle spouts are prone to accidental disassembly due to misoperation or collision, affecting hygiene and are complicated to use.

Method used

A spring pin and a limiting groove are set in the storage groove of the lid. The spout is locked and unlocked by a sliding component. The guide slope of the spring pin and the cooperation of the limiting groove ensure that the spout will not be accidentally opened in case of misoperation or collision. Simple operation is achieved by sliding the component.

Benefits of technology

It effectively prevents the nozzle from accidentally unfolding due to misoperation or collision, improving the reliability and safety of the product, ensuring the hygiene of drinking water, and making operation simple and labor-saving.

✦ Generated by Eureka AI based on patent content.

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Abstract

The suction nozzle kettle comprises a kettle body and a kettle cover, a concave containing groove is formed in the kettle cover, a water drinking assembly communicated with the interior of the kettle is arranged in the containing groove, the water drinking assembly comprises a suction nozzle, the side, away from a suction nozzle opening, of the suction nozzle is rotationally connected to the containing groove close to the edge of the kettle cover through a rotating shaft, a sliding piece is arranged on the suction nozzle, and the sliding piece is connected with the suction nozzle. The sliding piece can slide relative to the suction nozzle when being pushed and reset when losing pushing force, spring pins with the ends capable of extending into the containing groove are arranged on the two groove walls of the containing groove, the sliding piece is provided with limiting grooves corresponding to the two spring pins respectively, and the top faces of the ends of the spring pins are provided with guide inclined faces. The bottom of the sliding piece is provided with a guide face matched with the guide inclined face to guide the spring pin into the limiting groove. Compared with the prior art, the suction nozzle has the advantages that the suction nozzle is prevented from being accidentally unfolded due to misoperation or collision through the matching of the sliding piece and the spring pin, the suction nozzle is locked and unlocked through the sliding of the sliding piece, and the operation is simple.
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Description

Technical Field

[0001] This utility model relates to the field of kettle technology, and in particular to a kettle with a spout that prevents accidental pressure. Background Technology

[0002] Water bottles are common water containers in daily life. They are popular with consumers because of their large capacity and portability, especially for children. A water bottle with a suitable capacity, easy to carry, and safe and hygienic is an essential item for school. However, traditional water bottles have many inconveniences in use. For example, the lid usually needs to be completely unscrewed when drinking water. This design is not only cumbersome, but also makes it difficult to control the water flow when pouring, which can easily lead to overflow and even cause safety hazards such as scalding.

[0003] To address these issues, some water bottles that allow drinking without opening the lid have appeared on the market. For example, the Chinese utility model patent "Elephant-Shaped Water Bottle" (patent publication number CN204683191U) includes a bottle body and a lid. A base is connected to the bottom of the lid, and the base has a U-shaped channel. A corresponding through hole in the lid mates with the U-shaped channel. A spout rotating bracket is located within the U-shaped channel, rotatably connected to it via a first pin. Inside the bracket is a straw, one end of which inserts into the bottle body, and the other end connects to the spout. Furthermore, a pressure plate rotating bracket is located near the spout at one end of the U-shaped channel, connected to the U-shaped channel via a second pin. The pressure plate rotating bracket near the spout has a pressure plate for holding the spout in place.

[0004] However, the aforementioned existing technologies still have some shortcomings. First, the nozzle relies solely on a pressure plate to prevent it from popping out. This design makes it prone to accidental deployment due to misoperation or collisions during actual use, which not only affects hygiene but may also allow dust or impurities to enter the nozzle, posing a health hazard to the user. Second, deploying the nozzle requires rotating the nozzle support, making the operation relatively complex. Utility Model Content

[0005] This utility model addresses the problem that the spout of a kettle is easily accidentally deployed due to misoperation or collision during use, and that opening the spout is cumbersome. The technical problem to be solved by this utility model is to provide a kettle with a spout that prevents accidental pressure in order to solve the above problems.

[0006] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: It includes a kettle body and a lid located at the opening of the kettle body. The lid has a recessed storage groove, and a drinking component communicating with the inside of the kettle is provided in the storage groove. The drinking component includes a spout, and the side of the spout away from the spout opening is rotatably connected to the storage groove near the edge of the lid via a rotating shaft. The spout is characterized by having a sliding member, which slides relative to the spout when subjected to a pushing force and returns to its original position when the pushing force is lost. The storage groove has two groove walls with... The sliding member has a spring pin that can extend into the storage groove at its end. The sliding member has a limiting groove corresponding to the two spring pins respectively. The top surface of the end of the spring pin is provided with a guide slope. The bottom of the sliding member is provided with a guide surface that cooperates with the guide slope to guide the spring pin into the limiting groove. When a pushing force is applied to the sliding member, the ends of the two spring pins are respectively disengaged from the limiting groove, and the suction nozzle can rotate and unfold relative to the storage groove. When the suction nozzle rotates to the storage groove, the ends of the two spring pins extend into the limiting groove recess under the cooperation of the guide surface and the guide curved surface to lock the suction nozzle.

[0007] A further preferred embodiment of this utility model is as follows: the sliding member includes a sliding sleeve with openings at both ends, a return spring, and a toggle part provided on the top wall of the sliding sleeve. The outer shell of the suction nozzle is symmetrically provided with concave grooves on both sides. The sliding sleeve is fitted onto the suction nozzle through the two grooves. The two side walls at one end of the sliding sleeve have downwardly recessed portions. The concave portions and the adjacent groove walls together form the limiting groove. One end of the return spring abuts against the end of the sliding sleeve far from the concave portion, and the other end abuts against the groove wall far from the concave portion.

[0008] A further preferred embodiment of this utility model is: the width of the groove is greater than the sum of the diameter of the spring pin and the width of the sliding sleeve along the length of the suction nozzle. When the sliding sleeve is pushed to slide and squeeze the reset spring, the concave part separates from the groove wall adjacent to it, and a notch is formed between the concave part and the groove wall adjacent to it, allowing the spring pin to slide out.

[0009] A further preferred embodiment of this utility model is that the reset spring is located on the side closer to the rotatable connection, and the recessed portion is located on the side closer to the suction nozzle.

[0010] A further preferred embodiment of this utility model is that the actuating part is an arc-shaped groove with an opening facing the nozzle.

[0011] A further preferred embodiment of this utility model is: the top surface of the lid has an annular wall that surrounds the storage groove, the height of the annular wall gradually increases from the side of the spout to the rotating connection end of the spout, and the top surface of the annular wall gradually slopes downward from the side of the spout to the side of the rotating connection end of the spout.

[0012] A further preferred embodiment of this utility model is: the side of the storage groove away from the spout extends through the side wall of the lid, and the top surface of the spout near the rotating connection end has a pressing part extending outward.

[0013] A further preferred embodiment of this utility model is: the lid is provided with hinged ears located on both sides of the pressing part, and the lid has an arc-shaped platform on the outer periphery of the annular wall, with an arc-shaped handle at both ends hinged to the two hinged ears respectively on the arc-shaped platform.

[0014] A further preferred embodiment of this utility model is: the outer end face of the pressing part is arc-shaped, and the outer end faces of the two hinge ears, the outer end face of the pressing part, and the arc-shaped handle together form a complete arc surface.

[0015] A further preferred embodiment of this utility model is as follows: the bottom of the storage groove at the rotatable connection point with the nozzle is a first arc-shaped curved surface, and the rotatable connection end of the nozzle is a second arc-shaped curved surface that mates with the first arc-shaped curved surface. The axes of the first and second arc-shaped curved surfaces coincide with the axis of rotation. The drinking assembly also includes a straw. The first arc-shaped curved surface has a through hole communicating with the kettle body. The straw is located at the bottom of the kettle lid and communicates with the through hole. The nozzle has a water intake channel inside, and the inlet of the water intake channel is located on the second arc-shaped curved surface. When the nozzle is rotated to the unfolded state, the inlet communicates with the through hole.

[0016] Compared with the prior art, the present invention has the following advantages:

[0017] 1. By installing spring pins on the two walls of the storage slot and setting corresponding limiting grooves on the sliding component, the nozzle's locking and unlocking functions are achieved. When the sliding component slides, the end of the spring pin disengages from the limiting groove, allowing the nozzle to unfold; when the nozzle is retracted, the end of the spring pin re-enters the limiting groove, locking the nozzle. This design effectively prevents the nozzle from accidentally unfolding due to misoperation or collision, improving product reliability and safety, while also preventing dust or impurities from entering the nozzle, ensuring the hygiene of the drinking water.

[0018] 2. The nozzle is locked and unlocked by sliding the slider, making operation simpler and more intuitive. Users can unlock the nozzle simply by pushing the slider with their finger, making operation more effortless. Attached Figure Description

[0019] The present invention will be further described in detail below with reference to the accompanying drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are drawn only for the purpose of explaining the preferred embodiments and therefore should not be regarded as a limitation on the scope of the present invention. In addition, unless otherwise specified, the drawings are only schematic representations of the composition or structure of the described objects and may contain exaggerated displays, and the drawings are not necessarily drawn to scale.

[0020] Figure 1 This is a three-dimensional structural diagram of a preferred embodiment of the present invention;

[0021] Figure 2 This is a top view of a preferred embodiment of the present invention;

[0022] Figure 3 This is a cross-sectional view at point AA of the preferred embodiment of this utility model;

[0023] Figure 4 This is a preferred embodiment of the present utility model. Figure 3 A magnified view of a section at point B in the middle;

[0024] Figure 5 This is a preferred embodiment of the present utility model. Figure 2 Sectional view at CC;

[0025] Figure 6 This is a preferred embodiment of the present utility model. Figure 5 A magnified view of a section at point D;

[0026] Figure 7 This is a three-dimensional structural diagram of the preferred embodiment of the present invention, showing the sliding component assembled onto the nozzle;

[0027] Figure 8 This is an exploded view of a preferred embodiment of the present invention.

[0028] In the diagram: 1. Kettle body; 2. Kettle lid; 3. Storage slot; 31. First arc-shaped surface; 32. Through hole; 4. Suction nozzle; 41. Pressing part; 42. Slide groove; 43. Water suction channel; 431. Water inlet; 432. Suction nozzle opening; 44. Second arc-shaped surface; 5. Rotating shaft; 6. Sliding part; 61. Sliding sleeve; 611. Guide surface; 612. Recessed part; 62. Return spring; 63. Actuating part; 7. Spring pin; 71. Guide slope; 8. Limiting groove; 9. Annular wall; 10. Hinge ear; 11. Arc-shaped platform; 12. Arc-shaped handle. Detailed Implementation

[0029] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings. Those skilled in the art will appreciate that these descriptions are merely descriptive and exemplary and should not be construed as limiting the scope of protection of the present invention.

[0030] It should be noted that similar labels in the following figures indicate similar items; therefore, once an item is defined in one figure, it may not be further defined and explained in subsequent figures.

[0031] This embodiment mainly describes a spout bottle designed to prevent accidental pressure, as detailed below:

[0032] like Figures 1 to 8 As shown, a pressure-resistant spout kettle includes a kettle body 1 and a lid 2. The lid 2 is threaded onto the opening of the kettle body 1 to seal the spout. The lid 2 has a recessed storage groove 3, within which a drinking component communicating with the kettle's interior is located. The drinking component, including a spout 4, is used for drinking water from the kettle body 1. The side of the spout 4 furthest from the spout opening 432 is rotatably connected to the storage groove 3 near the edge of the lid 2 via a pivot 5. The spout 4 has a sliding member 6, which slides relative to the spout 4 when pushed and returns to its original position when the pushing force is removed. Spring pins 7, with ends extending into the storage groove 3, are located on the two walls of the storage groove 3. The sliding member 6 has limiting grooves 8 corresponding to the two spring pins 7. The top surface of the spring pin 7 has a guide slope 71, and the bottom of the sliding member 6 has a guide surface 611 that cooperates with the guide slope 71 to guide the spring pin 7 into the limiting grooves 8. When a pushing force is applied to the sliding member 6, the ends of the two spring pins 7 disengage from the limiting grooves 8, allowing the nozzle 4 to rotate and unfold relative to the storage groove 3. At this time, the nozzle 4 is in the drinking state and can be drunk directly through the nozzle opening 432. When the nozzle 4 rotates to be fully retracted into the storage groove 3, the ends of the two spring pins 7 extend into the limiting grooves 8 with the cooperation of the guide surface 611 and the guide inclined surface 71, locking the nozzle 4. By setting spring pins 7 on the two groove walls of the storage groove 3 and setting limiting grooves 8 corresponding to the spring pins 7 on the sliding member 6, the locking and unlocking functions of the nozzle 4 are realized. When the sliding member 6 slides, the ends of the spring pins 7 disengage from the limiting grooves 8, allowing the nozzle 4 to unfold; when the nozzle 4 is retracted, the ends of the spring pins 7 re-extend into the limiting grooves 8, locking the nozzle 4. This effectively prevents the nozzle 4 from accidentally unfolding due to misoperation or collision, improving the reliability and safety of the product, and also preventing dust or impurities from entering the nozzle 4, ensuring the hygiene of the drinking water. Secondly, this invention achieves locking and unlocking of the nozzle 4 by sliding the slider 6, making operation simpler and more intuitive. Users only need to push the slider 6 with their fingers to unlock the nozzle, making operation more effortless.

[0033] like Figure 7 and Figure 8As shown, the sliding member 6 includes a sliding sleeve 61 with openings at both ends, a return spring 62, and a toggle part 63 provided on the top wall of the sliding sleeve 61. The outer shell of the suction nozzle 4 has symmetrically provided recessed grooves 42 on both sides, and the sliding sleeve 61 is fitted onto the suction nozzle 4 through the two grooves 42. One end of the sliding sleeve 61 has two downwardly recessed portions 612 on its two side walls, which together with the adjacent groove walls form the limiting groove 8. There are two return springs 62, each located within one of the two grooves 42. One end of the return spring 62 abuts against the end of the sliding sleeve 61 away from the downwardly recessed portion 612, and the other end abuts against the groove wall away from the downwardly recessed portion 612. The sliding sleeve 61 is fitted onto the suction nozzle 4 through the grooves 42, allowing the sliding member 6 to slide along the suction nozzle 4. The return springs 62 ensure that the sliding member 6 can automatically reset after the loss of external force, thereby ensuring that the limiting groove 8 can accurately engage with the spring pin 7. The design of the toggle part 63 allows users to easily lock and unlock the nozzle 4 by toggling the slider 6 with their fingers, further optimizing the locking and unlocking operation of the nozzle 4, improving the ease of operation, and enhancing the stability and reliability of the product.

[0034] Specifically, the width of the groove 42 is greater than the sum of the diameter of the spring pin 7 and the width of the sliding sleeve 61 along the length of the nozzle 4. When the sliding sleeve 61 is pushed to slide and compress the return spring 62, the recess 612 disengages from its adjacent groove wall, forming a notch between the recess 612 and its adjacent groove wall that allows the spring pin 7 to slide out. This design provides sufficient space for the sliding sleeve 61 to slide. When the sliding sleeve 61 is pushed, the recess 612 disengages from its adjacent groove wall, forming a notch, allowing the spring pin 7 to slide smoothly out of the limiting groove 8, ensuring that the sliding member 6 can smoothly unlock the nozzle 4 during the pushing process.

[0035] Specifically, the return spring 62 is located near the rotating connection, and the recess 612 is located near the nozzle opening 432. The placement of the return spring 62 near the rotating connection allows the slider 6 to return to its initial position more stably during reset. The recess 612's location near the nozzle opening 432 ensures that the direction in which the slider 6 unlocks the nozzle 4 is the same as the direction in which the nozzle 4 unfolds, allowing the user to simultaneously push the slider 6 and unfold the nozzle 4, thus improving operational convenience.

[0036] Specifically, the actuating part 63 is an arc-shaped groove that opens towards the suction nozzle 432. The arc-shaped groove design allows the user's fingers to fit more naturally against the actuating part 63 during operation, making it easier to apply force and further improving the convenience of operation and user experience. At the same time, the shape of the arc-shaped groove also helps guide the sliding direction of the slider 6, ensuring the accuracy of operation.

[0037] Specifically, the top surface of the lid 2 has an annular wall 9 that surrounds the storage groove 3, such as... Figure 8 As shown, the annular wall 9 gradually increases in height from the spout 432 side towards the rotating connection end of the spout 4, and the top surface inside the annular wall 9 gradually slopes downward from the spout 432 side towards the rotating connection side of the spout 4. The side of the storage groove 3 away from the spout 432 penetrates the side wall of the lid 2, and the top surface of the spout 4 near the rotating connection end has an outwardly extending pressing part 41. The design of the storage groove 3 penetrating the side wall of the lid 2 facilitates the operation of the pressing part 41, avoiding interference between the pressing part 41 and the lid 2 during the opening of the spout 4, which would prevent the spout 4 from opening normally. At the same time, it also provides more space for the operation of the pressing part 41. Users can assist in opening the spout 4 by pressing down on the pressing part 41, making the operation easier. When the user pushes the lever part 63 with their fingers, they can press down on the pressing part 41 with the heel of their palm, thus opening the spout 4 more easily. This design is especially important for children or users with less hand strength.

[0038] The kettle lid 2 has hinged ears 10 located on both sides of the pressing part 41. The lid 2 also has an arc-shaped platform 11 on the outer periphery of the annular wall 9. An arc-shaped handle 12, hinged at both ends to the two hinged ears 10, is located on the arc-shaped platform 11. The design of the hinged ears 10 and the arc-shaped handle 12 provides users with a convenient way to carry the kettle. The shape of the arc-shaped handle 12 is ergonomic, making it easy for users to grip and making the kettle more comfortable and stable to carry. At the same time, the hinged design between the handle and the lid 2 ensures the flexibility and durability of the handle, preventing it from loosening or being damaged due to long-term use, further improving the practicality and reliability of the product.

[0039] Specifically, the outer end face of the pressing part 41 is arc-shaped, and the outer end faces of the two hinged ears 10, the outer end face of the pressing part 41, and the arc-shaped handle 12 together form a complete arc surface. This design makes the lid 2 more rounded and aesthetically pleasing, while also reducing potential safety hazards caused by sharp edges. The complete arc surface design not only enhances the overall texture of the product but also makes the lid 2 more comfortable to use, avoiding discomfort or injury to the user due to edge friction or collision, further optimizing the user experience.

[0040] Specifically, the bottom of the storage slot 3 at the rotatable connection point with the nozzle 4 is a first arc-shaped curved surface 31, and the rotatable connection end of the nozzle 4 is a second arc-shaped curved surface 44 that mates with the first arc-shaped curved surface 31. The axes of the first arc-shaped curved surface 31 and the second arc-shaped curved surface 44 coincide with the axis of the rotating shaft 5. The drinking assembly also includes a straw. The first arc-shaped curved surface 31 has a through hole 32 communicating with the kettle body 1. The straw is located at the bottom of the kettle lid 2 and communicates with the through hole 32. The nozzle 4 has a water intake channel 43 inside, and the water inlet 431 of the water intake channel 43 is located on the second arc-shaped curved surface 44. When the spout 4 is rotated to the unfolded state, the water inlet 431 is connected to the through hole 32. At this time, the straw is connected to the water suction channel 43, and the user can drink the water in the kettle body 1 through the spout 432. When the spout 4 is rotated to be completely stored in the storage slot 3, the through hole 32 is blocked by the side wall of the rotating connection end of the spout 4, and the straw is disconnected from the water suction channel 43.

[0041] In use, the user applies a pushing force to the slider 6 by flicking the actuating part 63 on the slider 6 with their finger. The slider 6 slides along the groove 42 on the nozzle 4. During the sliding process, the recessed part 612 disengages from the adjacent groove wall, and the gap between them widens. At this time, the end of the spring pin 7 disengages from the limiting groove 8 at the gap. As the end of the spring pin 7 disengages from the limiting groove 8, the nozzle 4 is unlocked, and the user can manually rotate the nozzle 4 to unfold it from the storage groove 3 around the pivot 5 to the drinking position. When the nozzle 4 is rotated to the unfolded position, the water inlet 431 inside the nozzle 4 connects with the through hole 32 at the bottom of the storage groove 3, and the straw connects with the water suction channel 43. The user can drink water from the kettle body 1 through the nozzle opening 432.

[0042] When the user needs to store the nozzle 4, the nozzle 4 is rotated into the storage groove 3. During rotation, the guide surface 611 on the slider 6 engages with the guide slope 71 at the end of the spring pin 7, guiding the end of the spring pin 7 back into the limiting groove 8. Once the end of the spring pin 7 is in the limiting groove 8, the nozzle 4 is locked in the storage groove 3, preventing it from being accidentally unfolded.

[0043] In the description of this utility model, it should be noted that the terms "upper", "lower", "front", "rear", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0044] The above provides a detailed description of the anti-accidental pressure spout bottle provided by this utility model. Specific examples have been used to illustrate the principle and implementation of this utility model. The description of the above embodiments is only for the purpose of helping to understand this utility model and its core ideas. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A pressure-resistant spout pitcher, comprising a pitcher body and a lid disposed at the opening of the pitcher body, wherein the lid has a recessed storage groove, and a drinking component communicating with the interior of the pitcher is disposed within the storage groove, the drinking component including a spout, the side of the spout furthest from the spout opening being rotatably connected to the storage groove near the edge of the lid via a pivot, characterized in that: The suction nozzle is equipped with a sliding member. When the sliding member is pushed, it can slide relative to the suction nozzle and return to its original position when the pushing force is removed. The two walls of the storage groove are equipped with spring pins whose ends can extend into the storage groove. The sliding member is equipped with limiting grooves corresponding to the two spring pins respectively. The top surface of the end of the spring pin is equipped with a guide slope. The bottom of the sliding member is equipped with a guide surface that cooperates with the guide slope to guide the spring pin into the limiting groove. When a pushing force is applied to the sliding member, the ends of the two spring pins disengage from the limiting grooves respectively, and the suction nozzle can rotate and unfold relative to the storage groove. When the suction nozzle rotates into the storage groove, the ends of the two spring pins extend into the limiting groove recesses under the cooperation of the guide surface and the guide curved surface to lock the suction nozzle.

2. The anti-accidental pressure spout bottle according to claim 1, characterized in that: The sliding component includes a sliding sleeve with openings at both ends, a return spring, and a toggle part on the top wall of the sliding sleeve. The outer shell of the suction nozzle has symmetrically recessed grooves on both sides. The sliding sleeve is fitted onto the suction nozzle through the two grooves. The two side walls at one end of the sliding sleeve have downward recessed portions. The recessed portions and the adjacent groove walls together form the limiting groove. One end of the return spring abuts against the end of the sliding sleeve far from the lower recessed portion, and the other end abuts against the groove wall far from the lower recessed portion.

3. The anti-accidental pressure spout bottle according to claim 2, characterized in that: The width of the groove is greater than the sum of the diameter of the spring pin and the width of the sliding sleeve along the length of the suction nozzle. When the sliding sleeve is pushed to slide and squeeze the reset spring, the concave part separates from the groove wall adjacent to it, and a notch is formed between the concave part and the groove wall adjacent to it, allowing the spring pin to slide out.

4. A spout-proof bottle according to claim 2, characterized in that: The return spring is located on the side closer to the rotatable connection, and the recess is located on the side closer to the nozzle opening.

5. The spill-resistant straw mug of claim 2, wherein: The actuating part is an arc-shaped groove that opens towards the nozzle opening.

6. A spout-proof bottle according to claim 2, characterized in that: The top surface of the lid has an annular wall that surrounds the storage groove. The height of the annular wall gradually increases from the spout side to the spout rotation connection end, and the top surface inside the annular wall gradually slopes downward from the spout side to the spout rotation connection side.

7. A spout-proof bottle according to claim 6, characterized in that: The storage slot extends through the side wall of the lid on the side away from the spout, and the spout has an outwardly extending pressing part on the top surface near the rotating connection end.

8. A spout-proof bottle according to claim 7, characterized in that: The lid is provided with hinged ears located on both sides of the pressing part. The lid has an arc-shaped platform on the outer periphery of the annular wall, and an arc-shaped handle is provided on the arc-shaped platform, with its two ends hinged to the two hinged ears respectively.

9. A spill-resistant spout pitcher in accordance with claim 8, wherein: The outer end face of the pressing part is arc-shaped, and the outer end faces of the two hinged ears, the outer end face of the pressing part, and the arc-shaped handle together form a complete arc surface.

10. A spout-proof bottle according to claim 1, characterized in that: The bottom of the storage slot at the rotatable connection point with the nozzle is a first arc-shaped curved surface, and the rotatable connection end of the nozzle is a second arc-shaped curved surface that mates with the first arc-shaped curved surface. The axes of the first and second arc-shaped curved surfaces coincide with the axis of rotation. The drinking assembly also includes a straw. The first arc-shaped curved surface has a through hole that communicates with the kettle body. The straw is located at the bottom of the kettle lid and communicates with the through hole. The nozzle has a water intake channel inside, and the water inlet of the water intake channel is located on the second arc-shaped curved surface. When the nozzle is rotated to the unfolded state, the water inlet communicates with the through hole.

Citation Information

Patent Citations

  • Baby elephant type kettle

    CN204683191U