Anti-toppling water leakage kettle cover structure of electric kettle
By designing the cover lock assembly and steam control assembly on the electric kettle, the locking of the lid and the body of the pot and the automatic closure of the exhaust passage is achieved, which solves the problems of dropping the lid and complex exhaust holes of the pot, and improves the safety and convenience of the electric kettle.
Patent Information
- Application Number
- CN202422481815.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-14
AI Technical Summary
The existing electric kettle cover is prone to falling when pouring water, causing water to rush out of the mouth of the pot to burn the user. The exhaust hole structure of the pot lid is complex, which poses safety hazards.
An anti-tilt leakage kettle lid structure is designed, using a cover lock assembly and a steam control assembly. The lid is locked or unlocked from the pot body. The steam control block closes the exhaust passage when tilted to prevent steam and water from flowing out of the pot mouth.
It improves the safety of the use of electric kettle, prevents steam and hot water from rushing out of the mouth of the kettle when pouring water, simplifies the internal structure of the kettle lid, and enhances safety and convenience.
Smart Images

Figure CN223232528U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electric kettles, and more particularly to a kettle cover structure for preventing tipping and water leakage of electric kettles. Background Art
[0002] The electric kettles currently available on the market have a kettle body and a kettle lid, and there is no locking structure between the kettle body and the kettle lid. When pouring water, the kettle lid is easy to fall or open, causing the kettle to tilt and the water to rush out of the kettle mouth when it is tipped over, scalding the user, posing a great safety hazard; and, the kettle lid is generally provided with an exhaust hole, through which steam is discharged when the electric kettle boils water. In order to prevent the liquid in the kettle body from overflowing and scalding the user after the electric kettle is tipped over, the kettle lid is provided with a tipping anti-overflow structure that can seal the exhaust hole on the kettle lid to prevent the water in the kettle body from overflowing and leaking through the exhaust hole. For example, the electric kettle disclosed in publication number CN210989699U has at least two exhaust pipes provided in the kettle lid, and the kettle lid of the electric kettle is provided with two air inlet pipes, two connecting pipes, two sealing pipes, two exhaust pipes, and two tipping seals. Not only are there many exhaust pipes inside the kettle lid, but the installation structure is also relatively complicated.
[0003] Therefore, the applicant has improved the existing technology and proposed the following technical solutions. Utility Model Content
[0004] In view of this, the utility model provides an anti-dumping and water-leaking kettle cover structure for an electric kettle.
[0005] To achieve the above-mentioned object, the utility model adopts the following technical scheme: an anti-dumping and anti-leakage kettle lid structure for an electric kettle comprises a kettle lid body, the kettle lid body being mounted on the mouth of the kettle body, the kettle lid body being provided with an exhaust passage communicating with the kettle cavity of the kettle body, the kettle lid body being further provided with a lid lock assembly and a steam control assembly; the lid lock assembly controlling the locking or unlocking between the kettle lid body and the kettle body; the steam control assembly being vertically mounted in the exhaust passage, the steam control assembly comprising: a steam control block and a steam control block spring mounted at the bottom of the steam control block, wherein: when the kettle body is in a vertical position, the steam control block moves downward to open the exhaust passage, and the steam control block spring is compressed;
[0006] When the kettle body is in a tilted pouring state, the elastic force of the steam control block spring pushes the steam control block upward to close the exhaust channel.
[0007] In this technology, the lid body and the kettle body cooperate with each other through a lid lock assembly, so that the lid body can be locked on the kettle body, preventing the lid body from falling when pouring water or in a tilted state, and hot water rushing out of the kettle mouth to scald the user, thereby improving product safety; the lid body is provided with a steam control assembly. When boiling water, the exhaust channel is opened and steam can be discharged normally. When pouring water, the steam control block tilts with the tilt of the kettle body, reducing the force acting on the steam control block spring. The steam control block spring pushes the steam control block to move and block the exhaust channel, preventing high-temperature steam or hot water from rushing out of the exhaust channel when pouring water and scalding the user, thereby further improving product safety.
[0008] As a preferred solution of the present invention, when the kettle body is placed in a vertical position, the gravity direction of the steam control block and the elastic force direction of the steam control block spring are on the same axis;
[0009] When the kettle body is in a tilted pouring state, the gravity direction of the steam control block and the elastic force direction of the steam control block spring form an angle;
[0010] In this technology, when the kettle body is placed vertically, such as on a heating base or a table, the gravity of the steam control block can act entirely on the steam control block spring, causing the steam control block spring to be compressed, thereby opening the exhaust channel; when the kettle body is tilted, the steam control block follows the tilt, and the gravity of the steam control block is decomposed, with only a part of it acting on the steam control block spring. The elastic force of the steam control block spring pushes the steam control block to move, closing the exhaust channel and preventing high-temperature steam or hot water from rushing out of the exhaust channel when pouring water.
[0011] As a preferred solution of the present invention, the exhaust channel is formed with an air inlet and an air outlet; the top of the steam control block corresponds to the air outlet, the steam control block spring is installed at the bottom of the steam control block, and the steam control block spring provides elastic force for the steam control block toward the air outlet.
[0012] As a preferred solution of the present invention, an exhaust gap is left between the steam control block and the inner wall of the exhaust channel, so that the fluid enters the exhaust channel from the air inlet and flows to the air outlet through the exhaust gap.
[0013] As a preferred solution of the present invention, the pot cover body comprises: an upper cover, a lower cover and a sealing ring which are combined together; the sealing ring is arranged between the upper cover and the lower cover to seal between the upper cover and the lower cover;
[0014] The lower cover forms an installation cavity for assembling the steam control component, and the upper cover and the lower cover are combined to form the exhaust channel; the specific structure of the kettle lid body is specifically defined here, and the split structure of the kettle lid body facilitates the installation of the lid lock assembly and the steam control assembly. The sealing ring can achieve sealing between the upper cover and the lower cover to prevent water from entering the kettle lid body.
[0015] As a preferred solution of the present invention, the lid lock assembly includes: a lid lock and a lid lock spring; the lid lock has a trigger portion protruding from the lid body and a lock tongue interfering with the pot mouth; the lid lock spring provides elastic force for the lock tongue to move radially outward; in this technology, when there is no external force pressing the lid lock, the lid lock spring provides elastic force for the lock tongue to move radially outward, so that the lid body and the pot body are maintained in a locked state; when force is applied to press the trigger portion of the lid lock, the lid lock is pushed to move and the lock tongue moves radially inward, so that the lid body and the pot body are unlocked, and the lid body can be taken out of the pot body.
[0016] As a preferred solution of the present invention, the lower cover is provided with a limiting groove for assembling the cover lock, and a first through hole connected to the limiting groove is provided with a lock tongue extending therefrom; the upper cover is provided with a second through hole from which a trigger part extends therefrom, and pressing the trigger part controls the cover lock to move in the limiting groove.
[0017] As a preferred solution of the present invention, the lock tongue is provided with a lock tongue sealing ring; when the lock tongue is limited by the pot mouth, the lock tongue sealing ring closes the first through hole to prevent water from entering the pot lid body.
[0018] As a preferred solution of the present invention, the cover locks are symmetrically arranged, and the cover lock spring is limited between the two cover locks.
[0019] As a preferred solution of the present invention, the pot lid body is provided with a truncated cone-shaped handle portion, and the trigger portion protrudes from the peripheral side of the handle portion. The user can press the lid lock while pinching the handle portion to unlock the pot lid body and the pot body, and can lift the pot lid body from the pot body.
[0020] The remaining beneficial technical effects of the present invention are embodied in the specific implementation manner. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.
[0022] Figure 1 is a schematic diagram of an electric kettle;
[0023] Figure 2 This is an exploded view of the anti-dumping and water leakage kettle cover structure of the utility model;
[0024] Figure 3 This is a cross-sectional diagram of the anti-dumping and water leakage lid structure of the electric kettle installed on the kettle body;
[0025] Figure 4 for Figure 3 Enlarged view of point A in the middle;
[0026] Figure 5 It is a partial cross-sectional diagram of the kettle lid body and the kettle body in a locked state;
[0027] Figure 6 It is a partial cross-sectional diagram of the kettle lid and kettle body in the unlocked state;
[0028] Figure 7 It is a partial cross-sectional schematic diagram of an electric kettle;
[0029] Figure 8 for Figure 7 Enlarged view of point B in the middle;
[0030] Figure 9 Schematic diagram of an electric kettle from a top view;
[0031] Figure 10 This is a cross-sectional diagram of an electric kettle when it is tilted to pour water;
[0032] Figure 11 for Figure 10 Schematic diagram at point C in the middle.
[0033] Description of reference numerals:
[0034] Pot body 00; pot mouth 01; bent edge 011; pot cavity 02; pot lid body 100; exhaust channel 101; air inlet 1011; air outlet 1012; upper cover 110; second through hole 111; lower cover 120; installation cavity 121; limiting groove 122; first through hole 123; sealing ring 130; handle part 140; locking tongue sealing ring 150; lid lock assembly 200; lid lock 210; trigger part 211; locking tongue 212; lid lock spring 220; steam control assembly 300; steam control block 310; steam control block spring 320. DETAILED DESCRIPTION
[0035] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.
[0036] For the anti-dumping and leaking lid structure of the electric kettle, please refer to Figure 1-11 As shown, there is a pot cover body 100, which is installed at the pot mouth 01 of the pot body 00. The pot cover body 100 is provided with an exhaust channel 101 connected to the pot cavity 02 of the pot body 00.
[0037] like Figure 3As shown, the kettle body 00 is an integrated structure, that is, the heating element is arranged at the outer bottom of the kettle cavity 02, and the heating element heats the water in the kettle cavity 02 when it is running;
[0038] Optionally, the kettle body 00 can also be a split structure, that is, it is also equipped with a base, and the kettle body 00 and the base are connected by a coupler to achieve electrical heating.
[0039] The lid body 100 is installed at the pot mouth 01 on the top of the pot body 00. The lid body 100 and the pot body 00 can be a completely split structure, that is, the lid body 100 can be completely removed from the pot body 00.
[0040] The kettle body 00 is provided with a gooseneck-shaped water spout, and a handle is provided corresponding to the water spout; the outer bottom wall of the kettle cavity 02 is provided with a heating element.
[0041] In order to enhance the safety of the electric kettle, the kettle cover body 100 is further provided with a cover lock assembly 200 and a steam control assembly 300;
[0042] The lid lock assembly 200 controls the locking or unlocking between the lid body 100 and the kettle body 00. After the lid body 100 is installed on the pot mouth 01 of the kettle body 00, the lid lock assembly 200 locks the lid body 100 and the kettle body 00. When boiling water or pouring water, the lid body 100 cannot leave the pot mouth 01, preventing hot water from rushing out of the pot mouth 01 and accidentally injuring the user;
[0043] When the pot mouth 01 needs to be opened, force is applied to trigger the lid lock assembly 200 to unlock the pot lid body 100 and the pot body 00. In this embodiment, the pot lid body 100 and the pot body 00 are set to a split structure, and the pot lid body 100 can be completely separated from the pot body 00. After the pot lid body 100 and the pot body 00 are unlocked, the pot lid body 100 can be taken out upwards.
[0044] The steam control assembly 300 is vertically mounted in the exhaust passage 101. The steam control assembly 300 includes a steam control block 310 and a steam control block spring 320 mounted at the bottom of the steam control block 310.
[0045] When the kettle body 00 is placed in a vertical position, the steam control block 310 moves downward to open the exhaust channel 101, and the steam control block spring 320 is compressed; when the water boils, high-temperature steam can be discharged from the exhaust channel 101;
[0046] When the kettle body 00 is in a tilted pouring state, the elastic force of the steam control block spring 320 pushes the steam control block 310 upward to close the exhaust channel 101, preventing steam or hot water from rushing out of the drainage channel 101 to avoid hurting the user.
[0047] Specifically, if Figure 7 and Figure 8 As shown, when the kettle body 00 is in a vertical position, that is, when the electric kettle is stably placed on a horizontal surface, the angle is as follows: Figure 7 As shown, Figure 7 In terms of orientation, the exhaust channel 101 is arranged vertically. At this angle, the gravity direction of the steam control block 310 and the elastic force direction of the steam control block spring 320 are on the same axis; it can be considered that the gravity of the steam control block 310 acts entirely or almost entirely on the steam control block spring 320, and the elastic force of the steam control block spring 320 is less than the force acting on it by the steam control block 310, so that the steam control block spring 320 is compressed, the steam control block 310 moves downward, and the exhaust channel 101 is opened. When boiling water, the steam generated in the kettle cavity 02 can be discharged from the exhaust channel 101.
[0048] like Figure 10 and Figure 11 As shown, when the kettle body 00 is in a tilted pouring state, the gravity direction of the steam control block 310 and the elastic direction of the steam control block spring 320 form an angle, the center of gravity of the steam control block 310 is offset, and the gravity direction of the steam control block 310 and the elastic direction of the steam control block spring 320 are not on the same axis. The gravity of the steam control block 310 is decomposed, and the force acting on the steam control block spring 320 is reduced, which is less than the elastic force of the steam control block spring 320. The steam control block spring 320 pushes the steam control block 310 to move toward the air outlet 1012 of the exhaust channel 101, closing the exhaust channel 101, and steam and water cannot flow out of the exhaust channel 101, thereby enhancing the safety of use.
[0049] Furthermore, further, Figure 10 and Figure 11 As shown, Figure 10 The middle pot body 00 is roughly tilted at 90 degrees. When pouring water, the pot body 00 may not be tilted at 90 degrees, but may be at other angles. Here, the pot body 00 tilted at 90 degrees is used as an example for detailed description: Figure 11 As shown, after the kettle body 00 is tilted 90°, the gravity of the steam control block 310 is vertically downward, and the steam control block spring 320 provides elastic force to the left for the steam control block 310, pushing the steam control block 310 to move to the left, blocking the air outlet 1012 of the exhaust channel 101, so that steam and water cannot flow out of the exhaust channel 101, thereby enhancing the safety of use.
[0050] In one embodiment, the exhaust channel 101 is formed with an air inlet 1011 and an air outlet 1012; the top of the steam control block 310 corresponds to the air outlet 1012, and the steam control block spring 320 is installed at the bottom of the steam control block 310, and the steam control block spring 320 provides elastic force for the steam control block 310 toward the air outlet 1012;
[0051] like Figure 8 As shown, the air inlet 1011 can be in a normally open state. Even when the electric kettle is placed vertically, the steam control block 310 presses down the steam control block spring 320, and the steam control block 310 will not block the air inlet 1011. At the same time, an exhaust gap is left between the steam control block 310 and the inner wall of the exhaust channel 101. The steam can smoothly enter the air inlet 1011 from the kettle cavity 02, flow to the air outlet 1012 through the exhaust gap, and finally be discharged from the air outlet 1012.
[0052] Continue as Figure 8 As shown, one end of the steam control block spring 320 is supported on the inner bottom wall of the exhaust channel 101, and a slot is provided at the bottom of the steam control block 310, and the other end of the steam control block spring 320 is confined in the slot.
[0053] It is worth noting that the relationship between the gravity of the steam control block 310 and the elastic coefficient of the steam control block spring 320 is obtained through testing experiments, which can ensure that when the electric kettle is placed vertically, the gravity of the steam control block 310 can compress the steam control block spring 320.
[0054] In one embodiment, Figure 2 As shown, the pot cover body 100 includes: an upper cover 110, a lower cover 120 and a sealing ring 130; the sealing ring 130 is disposed between the upper cover 110 and the lower cover 120 to seal the upper cover 110 and the lower cover 120; the lower cover 120 forms a mounting cavity 121 for assembling the steam control assembly 300, and the upper cover 110 and the lower cover 120 form the exhaust channel 101 when combined;
[0055] Specifically, continue as Figure 2 As shown, the upper cover 110 and the lower cover 120 are combined and then fastened by screws; the lower cover 120 is provided with a cylindrical convex sleeve, and a mounting cavity 121 is formed inside the convex sleeve. The lower cover 120 is provided with an air inlet 1011 within the enclosed range of the convex sleeve, and the upper cover 110 is provided with an air outlet 1012. After the upper cover 110 and the lower cover 120 are assembled, the top of the convex sleeve is pressed against the lower surface of the upper cover 110, and the air outlet 1012 is within the enclosed range of the convex sleeve.
[0056] Furthermore, if Figure 9 As shown, from a top view, the air outlet 1012 is located at the top of the pot lid body 100.
[0057] Optionally, the upper cover 110 and the lower cover 120 can be assembled by snapping, gluing, etc.
[0058] In one embodiment, Figure 2 and Figure 4As shown, the lid lock assembly 200 includes: a lid lock 210 and a lid lock spring 220; the lid lock 210 has a trigger portion 211 protruding from the pot lid body 100 and a lock tongue 212 interfering with the pot mouth 01; the lid lock spring 220 provides elastic force for the lock tongue 212 to move radially outward.
[0059] like Figure 4-5 As shown, a bent edge 011 is provided at the pot mouth 01. When the pot lid body 100 is installed on the pot mouth 01, the pot lid body 100 partially extends into the pot mouth 01. The lid lock 210 moves outward under the elastic force of the lid lock spring 220, that is, the lock tongue 212 moves radially outward. The lock tongue 212 and the bent edge 011 interfere with or conflict with each other in the vertical direction, thereby preventing the pot lid body 100 from being taken out upward.
[0060] like Figure 6 As shown, the user applies force to press the trigger portion 211 of the lid lock 210 to push the entire lid lock 210 to move, the lock tongue 212 moves radially inward, the lock tongue 212 and the bent edge 011 no longer interfere or conflict in the vertical direction, and the user can take out the pot lid body 100 upward.
[0061] Furthermore, in order to better define the movement trajectory of the cover lock 210, as shown in FIG. Figure 2 As shown, the lower cover 120 is provided with a limiting groove 122 for assembling the cover lock 210, and a first through hole 123 is provided connected to the limiting groove 122, from which the lock tongue 212 extends; the upper cover 110 is provided with a second through hole 111 from which the trigger part 211 extends, and pressing the trigger part 211 controls the cover lock 210 to move in the limiting groove 122.
[0062] Further, continue as Figure 2 As described above, the locking tongue 212 is provided with a locking tongue sealing ring 150 . When the locking tongue 212 is positioned relative to the pot mouth 01 , the locking tongue sealing ring 150 closes the first through hole 123 .
[0063] like Figure 4 As shown, the lock tongue sealing ring 150 is sleeved on the lock tongue 212. When the lock tongue 212 extends outward, the lock tongue sealing ring 150 contacts the inner wall of the lower cover 120 and covers the outer edge of the first through hole 123, thereby preventing steam or water from entering the interior of the pot lid body 100 through the first through hole 123.
[0064] Further, if Figure 2 and Figure 6 As shown, the pot lid body 100 is provided with a truncated cone-shaped handle portion 140 , the trigger portion 211 protrudes from the circumference of the handle portion 140 , the lid locks 210 are symmetrically arranged, and the lid lock spring 220 is limited between the two lid locks 210 .
[0065] Continue as Figure 6As shown, when taking the pot lid body 100 out of the pot body 00, the user applies force with his hand to pinch the handle 140 while pressing the trigger part 211 of the lid lock 210, pushing the lock tongue 212 radially inward. The lock tongue 212 and the bent edge 011 no longer interfere or conflict with each other in the vertical direction, and the user can take out the pot lid body 100 upwards. The pot lid body 100 is very convenient to remove.
[0066] In addition, the surface of the front end of the lock tongue 212 is an arc-shaped surface or an inclined surface. When installing the pot lid body 100, the user applies force to pinch the handle part 140 and presses the trigger part of the lid lock 210, pushing the lock tongue 212 radially inward, and the lid lock spring 220 is compressed; after the pot lid body 100 is installed on the pot body 00, the user releases his hand, and the lid lock 210 moves radially outward under the elastic force of the lid lock spring 220, that is, the lock tongue 212 moves radially outward and is vertically aligned with the bent edge 011. When the lid body 100 is installed, the lid body 100 is directly pressed up and down on the pot mouth 01, and the reaction force between the curved surface or inclined surface at the front end of the lock tongue 212 and the edge of the pot mouth 01 is used to push the lock tongue 212 inward. After the installation of the lid body 100 is completed, the lock tongue 212 is radially ejected under the elastic force of the lid lock spring 220, so that the lid body 100 and the pot body 00 are locked.
[0067] The above description of the disclosed embodiments will enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. The anti-dumping and water-leaking kettle cover structure of an electric kettle comprises a kettle cover body (100), wherein the kettle cover body (100) is installed at the kettle mouth (01) of the kettle body (00), and the kettle cover body (100) is provided with an exhaust passage (101) which is communicated with the kettle cavity (02) of the kettle body (00), and is characterized in that: The pot lid body (100) is further provided with a lid lock assembly (200) and a steam control assembly (300); The lid lock assembly (200) controls the locking or unlocking between the pot lid body (100) and the pot body (00); The steam control assembly (300) is vertically mounted in the exhaust passage (101). The steam control assembly (300) comprises: a steam control block (310) and a steam control block spring (320) mounted on the bottom of the steam control block (310), wherein: When the kettle body (00) is in a vertical placement state, the steam control block (310) moves downward to open the exhaust channel (101), and the steam control block spring (320) is compressed; When the kettle body (00) is in a tilted pouring state, the elastic force of the steam control block spring (320) pushes the steam control block (310) upward to close the exhaust channel (101).
2. The anti-dumping and water leakage kettle cover structure of claim 1, wherein: When the kettle body (00) is in a vertical placement state, the gravity direction of the steam control block (310) and the elastic force direction of the steam control block spring (320) are on the same axis; When the kettle body (00) is in a tilted pouring state, the gravity direction of the steam control block (310) and the elastic force direction of the steam control block spring (320) form an angle.
3. The anti-dumping and water leakage kettle cover structure of claim 1, wherein: The exhaust channel (101) is formed with an air inlet (1011) and an air outlet (1012); the top of the steam control block (310) corresponds to the air outlet (1012), and the steam control block spring (320) is installed on the bottom of the steam control block (310), and the steam control block spring (320) provides elastic force for the steam control block (310) to move toward the air outlet (1012).
4. The anti-dumping and anti-leakage kettle cover structure of claim 3, wherein: An exhaust gap is left between the steam control block (310) and the inner wall of the exhaust channel (101).
5. The anti-dumping and anti-leakage kettle cover structure of any one of claims 1 to 4, characterized in that: The pot cover body (100) comprises: an upper cover (110), a lower cover (120) and a sealing ring (130) which are combined together; the sealing ring (130) is arranged between the upper cover (110) and the lower cover (120) to seal the upper cover (110) and the lower cover (120); The lower cover (120) forms a mounting cavity (121) for assembling the steam control assembly (300), and the upper cover (110) and the lower cover (120) are combined to form the exhaust passage (101).
6. The anti-dumping and anti-leakage kettle cover structure of claim 5, characterized in that: The cover lock assembly (200) comprises: a cover lock (210) and a cover lock spring (220); The lid lock (210) comprises a trigger portion (211) protruding from the pot lid body (100) and a lock tongue (212) interfering with the pot mouth (01); the lid lock spring (220) provides elastic force for the lock tongue (212) to move radially outward.
7. The anti-dumping and anti-leakage kettle cover structure of claim 6, characterized in that: The lower cover (120) is provided with a limiting groove (122) for assembling the cover lock (210), and a first through hole (123) is provided connected to the limiting groove (122) and through which the lock tongue (212) extends; the upper cover (110) is provided with a second through hole (111) through which a trigger portion (211) extends, and the cover lock (210) is controlled to move in the limiting groove (122) by pressing the trigger portion (211).
8. The anti-dumping and water leakage kettle cover structure of claim 7, wherein: The locking tongue (212) is provided with a locking tongue sealing ring (150); when the locking tongue (212) is in a position-limiting relationship with the pot mouth (01), the locking tongue sealing ring (150) closes the first through hole (123).
9. The anti-dumping and anti-leakage kettle cover structure of claim 7, characterized in that: The cover locks (210) are symmetrically arranged, and the cover lock spring (220) is limited between the two cover locks (210).
10. The anti-dumping and anti-leakage kettle cover structure of claim 9, characterized in that: The pot lid body (100) is provided with a truncated cone-shaped handle portion (140), and the trigger portion (211) protrudes from the circumference of the handle portion (140).
Citation Information
Patent Citations
Electric kettle
CN210989699U