Cooking container
By designing the connection between the detachable anti-spill and blowing device and the case cover assembly, the problem of inconvenience in the prior art is solved, and the effect of convenient cleaning and extended service life is achieved.
Patent Information
- Application Number
- CN202422351498.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The anti-spill and blowing device of existing cooking appliances is usually formed integrally with the cover, resulting in inconvenience in cleaning and may affect the service life of the electric module.
A removable anti-spill blowing device is designed, and the removable connection between the shell cover assembly and the container body is allowed to be individually cleaned, and the liquid level is suppressed by external air to reduce liquid overflow.
It realizes a convenient cleaning process, extends the service life of the cooking container, and effectively reduces the possibility of liquid overflow.
Smart Images

Figure CN223143261U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cooking containers, and particularly relates to a cooking container. Background Art
[0002] Cooking appliances, especially health care kettles used in household and commercial environments, are indispensable household appliances in modern life. They not only provide a convenient and fast cooking method, but also help to maintain the nutritional value and taste of food materials. During the cooking process, the boiling of liquid may cause overflow, which will not only damage the appliance, but also pose a safety hazard. Therefore, cooking appliances usually have an anti-overflow blowing device. And this anti-overflow blowing device is usually arranged on the lid body, which makes the structure of the lid body complex and inconvenient to clean. Content of the Utility Model
[0003] The main purpose of the utility model is to provide a cooking container, aiming to facilitate the cleaning of cooking appliances.
[0004] To achieve the above purpose, the cooking container provided by the utility model includes:
[0005] A container body having an accommodation cavity; and
[0006] A lid assembly including a shell lid assembly and an anti-overflow blowing device detachably installed on the shell lid assembly. The shell lid assembly covers the container body, and the anti-overflow blowing device can blow air into the accommodation cavity to introduce external air into the accommodation cavity.
[0007] In one embodiment, the shell lid assembly is provided with a communication hole, and the anti-overflow blowing device communicates with the accommodation cavity through the communication hole.
[0008] In one embodiment, an installation sink for installing the anti-overflow blowing device is provided on the shell lid assembly. The communication hole is arranged at the bottom of the installation sink, and a positioning structure and an installation structure are arranged between the anti-overflow blowing device and the installation sink.
[0009] In one embodiment, the installation structure includes a sliding convex that slides through one side of the anti-overflow blowing device, and a first card slot is arranged on the side wall corresponding to the installation sink;
[0010] The anti-overflow blowing device is installed in the installation sink, and the sliding convex is snapped into the first card slot.
[0011] In one embodiment, the installation structure further includes a pressing part arranged on the anti-overflow blowing device, and the pressing part controls the sliding of the sliding convex.
[0012] In one embodiment, the positioning structure includes a positioning convex lug provided on one side of the anti-overflow blowing device, and a second card slot is provided on the side wall corresponding to the mounting sink, and the positioning convex lug is inserted into the second card slot.
[0013] In one embodiment, the container body is provided with a water outlet communicating with the accommodating cavity, and the height of the water outlet is lower than the height of the lid assembly.
[0014] In one embodiment, the lid assembly is detachably mounted on the container body.
[0015] In one embodiment, the container body is provided with a control module, the container body is provided with a first connector, the anti-overflow blowing device is provided with a second connector, the lid assembly covers the accommodating cavity, and the first connector contacts the second connector so that the control module is electrically connected to the anti-overflow blowing device.
[0016] In one embodiment, the anti-overflow blowing device has a coupling portion protruding laterally from the lid assembly, the second connector is provided on the side of the coupling portion facing the container body, the first connector is correspondingly provided on the side of the container body facing the coupling portion, and when the lid assembly covers the accommodating cavity, the first connector contacts the second connector; and / or,
[0017] A first magnetic attraction member is provided on the side of the container body facing the lid assembly, a second magnetic attraction member is provided on the side of the anti-overflow blowing device facing the container body, the lid assembly covers the accommodating cavity, the first magnetic attraction member is magnetically connected to the second magnetic attraction member, and the first magnetic attraction member is arranged close to the first connector.
[0018] In one embodiment, the cooking container further includes a first detection member, the first detection member is electrically connected to the control module, and the first detection member is used to detect the magnitude of the current between the first connector and the second connector.
[0019] In one embodiment, a second detection member is provided on the side of the lid assembly facing the accommodating cavity, the second detection member is electrically connected to the control module of the container body, and the second detection member is used to detect the liquid state in the accommodating cavity.
[0020] In one embodiment, the anti-overflow blowing device includes a box body, the box body is provided with a blowing port communicating with the accommodating cavity, and a control valve for controlling the opening and closing of the blowing port and a blower structure for blowing air to the blowing port are provided in the box body.
[0021] The technical solution of the present utility model is to provide a receiving cavity in the container body, and the cover assembly can cover the receiving cavity. The cover assembly includes a shell cover assembly and an anti-overflow blowing device installed on the shell cover assembly. The anti-overflow blowing device can blow air into the receiving cavity to break the bubbles in the receiving cavity, thereby suppressing the rise of the liquid level in the receiving cavity and reducing the possibility of liquid overflow. In addition, the anti-overflow blowing device introduces external air into the receiving cavity, and the temperature of the external air is necessarily lower than the temperature in the receiving cavity, thereby further suppressing the rise of the liquid level in the receiving cavity and reducing the possibility of liquid overflow. The anti-overflow blowing device is detachably connected to the shell cover assembly. When cleaning is required, only the anti-overflow blowing device needs to be removed, and the shell cover assembly can be rinsed separately. Moreover, since they are integrally formed, it is also convenient to clean the impurities in the installation gap between them, thereby facilitating the cleaning of the cover assembly. If the anti-overflow blowing device needs to be cleaned, the anti-overflow blowing device 3 can be removed, and then the internal structure of the anti-overflow blowing device can be wiped separately, thereby reducing the possibility of electrical failure of the anti-overflow blowing device and ensuring the service life of the cooking container. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on the structures shown in these drawings.
[0023] Figure 1 Schematic structural diagram of an embodiment of a cooking container provided by the present utility model;
[0024] Figure 2 For Figure 1 exploded view of the cooking container in;
[0025] Figure 3 For Figure 1 schematic structural diagram of the cooking container in after the anti-overflow blowing device is removed;
[0026] Figure 4 For Figure 1 cross-sectional view of the cover assembly in when the air outlet is closed;
[0027] Figure 5 For Figure 1 cross-sectional view of the cover assembly in when the air outlet is open;
[0028] Figure 6 For Figure 1 schematic internal structure diagram of the anti-overflow blowing device in;
[0029] Figure 7 For Figure 1Exploded view of the shell cover assembly therein;
[0030] Figure 8 For Figure 1 Schematic structural diagram of the cover body assembly therein;
[0031] Figure 9 Exploded view of the cover body assembly in another embodiment of the cooking container provided by the present utility model.
[0032] Explanation of the reference numerals in the drawings:
[0033] 100, cooking container; 1, container body; 11, accommodation cavity; 12, first connector; 13, kettle body assembly; 14, control base; 15, first magnetic attraction member; 16, handle part; 17, water outlet; 2, cover body assembly; 21, shell cover assembly; 22, mounting sink; 221, communication hole; 222, first card slot; 223, second card slot; 23, first sealing member; 24, second detection member; 25, upper cover; 26, lower cover; 27, second sealing member; 3, anti-overflow blowing device; 31, box body; 311, air outlet; 32, driving structure; 321, output shaft; 322, elastic member; 33, blocking part; 34, fan structure; 35, sliding convex; 36, pressing part; 37, positioning convex; 38, second connector; 39, second magnetic attraction member; 40, coupling part.
[0034] The realization, functional features and advantages of the purpose of the present utility model will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0035] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.
[0036] It should be noted that if there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of the present utility model, the directional indications are only used to explain the relative positional relationship and movement conditions between components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0037] In addition, if the embodiments of the present utility model involve descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be construed as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, if "and / or" or "and / or" appears throughout the text, its meaning includes three parallel scenarios. Taking "A and / or B" as an example, it includes scenario A, scenario B, or the scenario where both A and B are satisfied simultaneously. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.
[0038] The present utility model provides a cooking container 100, which can be a health care kettle, an electric kettle, etc.
[0039] Please refer to Figures 1 to 3 , in an embodiment of the present utility model, the cooking container 100 includes:
[0040] A container body 1 having a receiving cavity 11; and
[0041] A lid assembly 2 including a shell lid assembly 21 and an anti-overflow blowing device 3 detachably installed on the shell lid assembly 21. The shell lid assembly 21 covers the container body 1, and the anti-overflow blowing device 3 can blow air into the receiving cavity 11 to introduce external air into the receiving cavity 11.
[0042] Specifically, a receiving cavity 11 is provided in the container body 1, and the lid assembly 2 can cover the receiving cavity 11. When the lid assembly 2 covers the receiving cavity 11, it can be sealingly connected to the container body 1 through a sealing structure such as a sealing ring; the lid assembly 2 covers the receiving cavity 11 and can also be opened relative to the receiving cavity 11, thus facilitating the user to add water and / or ingredients into the receiving cavity 11. When heated to a certain temperature, such as when the liquid in the receiving cavity 11 is about to boil, a lot of bubbles will be generated in the liquid in the receiving cavity 11, resulting in an increase in the liquid level in the receiving cavity 11 and possible overflow. Therefore, the anti-overflow blowing device 3 is provided, and the anti-overflow blowing device 3 can blow air into the receiving cavity 11 to blow the bubbles in the receiving cavity 11, so as to inhibit the increase in the liquid level in the receiving cavity 11 and reduce the possibility of liquid overflow. In addition, the anti-overflow blowing device 3 introduces external air into the receiving cavity 11, and the temperature of the external air must be lower than the temperature in the receiving cavity 11, thereby further inhibiting the increase in the liquid level in the receiving cavity 11 and reducing the possibility of liquid overflow.
[0043] However, since the structure of the anti-overflow blowing device 3 is often relatively complex, if it is directly installed in the cover assembly 2, that is, the anti-overflow blowing device 3 and the shell cover assembly 21 are integrally formed, it will undoubtedly increase the cleaning difficulty of the cover assembly 2. Moreover, some anti-overflow blowing devices 3 are electrically driven, that is, there is an electrical module in the cover assembly 2. If the cover assembly 2 is directly rinsed, it may cause electrical failure of the anti-overflow blowing device 3, affecting the service life of the cooking container 100. Therefore, the anti-overflow blowing device 3 is detachably connected to the shell cover assembly 21. When cleaning is required, only the anti-overflow blowing device 3 needs to be removed, and the shell cover assembly 21 can be rinsed separately. And since they are formed separately, it is also convenient to clean the impurities in the installation gap between them, thus facilitating the cleaning of the cover assembly 2. If the anti-overflow blowing device 3 needs to be cleaned, the anti-overflow blowing device 3 can be removed, so that the internal structure of the anti-overflow blowing device 3 can be scrubbed separately, thereby reducing the electrical failure of the anti-overflow blowing device 3 and ensuring the service life of the cooking container 100.
[0044] Herein, detachable means that when cleaning is required, without damaging the structure of the cover assembly 2 itself, it includes removal without the need to use any tools and installation without the need to use any tools, thus facilitating the user to disassemble and clean and maintaining the hygienic use of the cover assembly 2; it also includes disassembly and assembly that can be simply carried out using common and ordinary tools without the need for professional tools or professional personnel guidance. In some feasible solutions for the detachable connection between the anti-overflow blowing device 3 and the shell cover assembly 21, magnetic attraction members are installed on both the anti-overflow blowing device 3 and the shell cover assembly 21, and the two magnetic attraction members are magnetically attracted and connected. When cleaning and disassembly are required, as long as an external force acts on the anti-overflow blowing device 3, the anti-overflow blowing device 3 can be taken out. Among them, both of the two magnetic attraction members can be magnets, or one is a magnet and the other is a soft magnetic material, such as iron material.
[0045] Please refer to Figures 1 to 3 , in the embodiment of the present utility model, the shell cover assembly 21 is provided with a communication hole 221, and the anti-overflow blowing device 3 communicates with the accommodation cavity 11 through the communication hole 221. Specifically, the anti-overflow blowing device 3 blows air into the accommodation cavity 11 through the communication hole 221. And since the anti-overflow blowing device 3 is detachably installed on the shell cover assembly 21, when the anti-overflow blowing device 3 is removed, the communication hole 221 can directly communicate with the external space, so that the user can directly add water into the accommodation cavity 11 through the communication hole 221 without removing the entire shell cover assembly.
[0046] For the convenience of installing the anti-overflow blowing device 3, referring to Figure 3 , Figure 6 , Figure 7 and Figure 9, in an embodiment of the present utility model, an installation sink 22 for installing the anti-overflow blowing device 3 is provided on the shell cover assembly 21, a communication hole 221 is provided at the bottom of the installation sink 22, and both the positioning structure and the installation structure are provided between the anti-overflow blowing device 3 and the installation sink 22.
[0047] Specifically, the installation sink 22 is used for fixing the anti-overflow blowing device 3, thereby ensuring the stable installation of the anti-overflow blowing device 3 and reducing the possibility of accidental displacement of the anti-overflow blowing device 3. Correspondingly, both the positioning structure and the installation structure are provided between the anti-overflow blowing device 3 and the installation sink 22, which helps to improve the structural integrity of the cover assembly 2, and the contact area between the anti-overflow blowing device 3 and the installation sink 22 is large, which helps to arrange the positioning structure and the installation structure. And the positioning structure is used for initially positioning the anti-overflow blowing device 3, thereby reducing the possibility of accidental displacement of the anti-overflow blowing device 3 during subsequent installation and facilitating the installation of the subsequent installation structure. The installation structure is used for installing the anti-overflow blowing device 3 on the shell cover assembly 21, thereby improving the installation stability of the shell cover assembly 21.
[0048] Please refer to Figure 3 、 Figure 4 and Figure 7 , in an embodiment of the present utility model, the installation structure includes a sliding convex 35 slidably penetrating through one side of the anti-overflow blowing device 3, and a first card slot 222 is provided on the side wall corresponding to the installation sink 22; the anti-overflow blowing device 3 is installed in the installation sink 22, and the sliding convex 35 is snapped into the first card slot 222.
[0049] Specifically, the sliding convex 35 can slide relative to the box body 31, and a first card slot 222 is provided on the side wall corresponding to the installation sink 22. Before the anti-overflow blowing device 3 is installed in place, the side wall of the installation sink 22 at the edge of the first card slot 222 abuts against the sliding convex 35, thereby pressing the sliding convex 35 into the anti-overflow blowing device 3. After installation in place, the sliding convex 35 is aligned with the first card slot 222, so that the sliding convex 35 pops out of the anti-overflow blowing device 3 and is snapped into the first card slot 222, thereby facilitating the installation of the anti-overflow blowing device 3. Therefore, an elastic member 322 is provided between the sliding convex 35 and the box body 31, and the elastic member 322 makes the sliding convex 35 tend to protrude from the box body 31.
[0050] Furthermore, the installation structure further includes a pressing portion 36 provided on the anti-overflow blowing device 3, and the pressing portion 36 controls the sliding of the sliding convex 35. The pressing portion 36 is cooperatively installed with the sliding convex 35, so that the user can control the sliding of the sliding convex 35 relative to the box body 31 by pressing the pressing portion 36. When the anti-overflow blowing device 3 needs to be disassembled, the user can directly press the pressing portion 36, thereby pressing the sliding convex 35 into the anti-overflow blowing device 3, thereby releasing their installation relationship and facilitating the disassembly of the anti-overflow blowing device 3.
[0051] For the convenience of positioning and installing the anti-overflow blowing device 3, in the embodiment of the present utility model, the positioning structure includes a positioning convex 37 provided on one side of the anti-overflow blowing device 3, and a second card slot 223 is provided on the side wall of the corresponding installation sink 22. The positioning convex 37 is inserted into the second card slot 223. If the sliding convex 35 and the first card slot 222 are misaligned after the anti-overflow blowing device 3 is installed in place, it may cause the installation structure to fail, which is not conducive to the installation of the anti-overflow blowing device 3. Therefore, the positioning convex 37 is provided. When the user installs the anti-overflow blowing device 3, the positioning convex 37 is first snapped into the second card slot 223, so as to position the installation of the anti-overflow blowing device 3, and further ensure the installation stability of the installation structure. Therefore, in order to improve the positioning accuracy of the positioning structure, the positioning convex 37 and the sliding convex 35 are provided on different sides of the installation sink 22.
[0052] That is, in this embodiment, the installation stability of the anti-overflow blowing device 3 is ensured through the cooperation of the positioning convex 37 and the sliding convex 35. That is, the positioning structure is configured as a positioning and clamping structure, and the installation structure is configured as a clamping structure. In other embodiments, the positioning structure is configured as a positioning and clamping structure, and the installation structure is configured as a fastener for firmly connecting the anti-overflow blowing device 3 and the shell cover assembly 21; the positioning structure is configured as a positioning and clamping structure, and the installation structure is configured as a magnetic attraction structure.
[0053] Please refer to Figure 3 and Figure 7 , to ensure the seal between the anti-overflow blowing device 3 and the installation sink 22, in the embodiment of the present utility model, a first sealing member 23 is provided between the anti-overflow blowing device 3 and the wall of the installation sink 22. The first sealing member 23 is arranged around the periphery of the communication hole 221. Specifically, the first sealing member 23 is arranged around the periphery of the communication hole 221, and the first sealing member 23 is clamped between the anti-overflow blowing device 3 and the installation sink 22, so as to ensure both the fixation of the first sealing member 23 and the seal between the anti-overflow blowing device 3 and the installation sink 22. And in order to reduce the possibility of the first sealing member 23 shifting, an annular limiting step is provided at the bottom of the installation sink 22. The first sealing member 23 is arranged on the inner circumference of the annular limiting step, and a limiting convex portion protrudes from the outer edge of the first sealing member 23. A limiting groove is provided corresponding to the annular limiting step, and the limiting convex portion is inserted into the limiting groove.
[0054] In another embodiment of the present utility model, as Figure 9 shown, the first sealing member 23 is arranged around the periphery of the anti-overflow blowing device 3. For the convenience of cleaning, the first sealing member 23 should be arranged on the side of the first card slot 222 and the second card slot 223 facing the accommodating cavity 11, so as to reduce the possibility of liquid in the accommodating cavity 11 seeping into the first card slot 222 or the second card slot 223. At this time, the first sealing member 23 can be in interference fit with the installation sink 22, so as to facilitate the fixation of the first sealing member 23.
[0055] To facilitate pouring water out of the container body 1, in the embodiment of the present utility model, the container body 1 is provided with a water outlet 17 communicating with the accommodating cavity 11, and the height of the water outlet 17 is lower than the height of the lid assembly 2. Specifically, the water outlet 17 allows the water in the accommodating cavity 11 to flow out, so a spout structure is usually provided at the water outlet 17 to facilitate pouring water from the container body 1. And the height of the water outlet 17 is lower than the height of the lid assembly 2, so that when the lid assembly 2 covers the container body 1, it will not block the water outlet 17, that is, the lid assembly 2 does not affect the normal pouring and filling of water in the container body 1.
[0056] To further facilitate the cleaning of the cooking container 100, in the embodiment of the present utility model, the lid assembly 2 is detachably mounted on the container body 1. That is, the lid assembly 2 can be detached relative to the container body 1, thus facilitating the overall cleaning of the cooking container 100 and reducing the possibility of impurities accumulating at the connection structure between the lid assembly 2 and the container body 1.
[0057] Among them, the shell lid assembly 21 includes an upper lid 25 and a lower lid 26 that are spliced with each other, and a second seal 27 is clamped between the upper lid 25 and the lower lid 26; the shell lid assembly 21 covers the accommodating cavity 11, and the second seal 27 abuts against the opening peripheral edge of the accommodating cavity 11. Specifically, to ensure the installation stability of the second seal 27, the shell lid assembly 21 includes an upper lid 25 and a lower lid 26 that are spliced with each other, the second seal 27 is clamped between the upper lid 25 and the lower lid 26, and in order to ensure the clamping force of the upper lid 25 and the lower lid 26 on the second seal 27, the upper lid 25 and the lower lid 26 are connected and fixed by fasteners. And since the upper lid 25 and the lower lid 26 are spliced with each other, it is also convenient to clean the shell lid assembly 21.
[0058] And the inner side of the second seal 27 is fixed to the peripheral edge of the shell lid assembly 21, and the outer side abuts against the opening peripheral edge of the accommodating cavity 11, so as to ensure the sealing between the lid assembly 2 and the container body 1 and ensure the heating efficiency. And due to the function of the second seal 27, a connection structure may not be provided between the shell lid assembly 21 and the container body 1. It can also be fixed by a magnetic attraction structure, thus facilitating the cleaning of the cooking container 100.
[0059] Please refer to Figure 2 and Figure 3, in an embodiment of the present utility model, a first magnetic attraction member 15 is provided on one side of the container body 1 facing the cover assembly 2, and a second magnetic attraction member 39 is provided on one side of the anti-overflow blowing device 3 facing the container body 1. The cover assembly 2 covers the accommodating cavity 11, and the first magnetic attraction member 15 is magnetically connected to the second magnetic attraction member 39. That is, the cover assembly 2 and the container body 1 are detachably connected in the vertical direction. To facilitate the installation of the cover assembly 2 and the container body 1, the second magnetic attraction member 39 is provided on one side of the anti-overflow blowing device 3 facing the container body 1. For example, if there is a convex portion on one side of the anti-overflow blowing device 3 facing the container body 1 that laterally protrudes from the shell cover assembly 21, the second magnetic attraction member 39 is provided on the side of the convex portion facing the container body 1. The container body 1 has a handle portion 16, and a first magnetic attraction member 15 is provided on the side of the handle portion 16 facing the cover assembly 2. The first magnetic attraction member 15 is magnetically connected to the second magnetic attraction member 39, so that the cover assembly 2 is pressed against the container body 1 by the anti-overflow blowing device 3.
[0060] Of course, in other embodiments, the first magnetic attraction member 15 can also be provided on the shell cover assembly 21, and correspondingly, the second magnetic attraction member 39 is provided on one side of the container body 1 facing the cover assembly 2. Among them, both the first magnetic attraction member 15 and the second magnetic attraction member 39 can be magnets, or one is a magnet and the other is a soft magnetic material, such as iron material. In other embodiments, the cover assembly 2 and the container body 1 can also be fixed by snap connection.
[0061] To further ensure that the cover assembly 2 accurately covers the container body 1 (without the need to rotate and adjust the position of the cover assembly 2 for a second time), in one embodiment, one of the cover assembly 2 and the container body 1 is provided with a limiting clamping protrusion extending towards the other, and the other is provided with a limiting groove. The limiting block is inserted into the limiting groove, thereby realizing the installation of the cover assembly 2 and the container body 1.
[0062] When the cover assembly 2 and the container body 1 are installed through a magnetic attraction structure, in an embodiment of the present utility model, a control module is provided in the container body 1. The container body 1 is provided with a first connector 12, and the anti-overflow blowing device 3 is provided with a second connector 38. The cover assembly 2 covers the accommodating cavity 11, and the first connector 12 is in contact with the second connector 38, so that the control module is electrically connected to the anti-overflow blowing device 3. Specifically, the container body 1 is provided with a first connector 12, and the anti-overflow blowing device 3 is provided with a second connector 38. The first connector 12 is in contact with the second connector 38, thereby realizing the electrical connection between the control module and the anti-overflow blowing device 3, facilitating the control module to control the operation of the anti-overflow blowing device 3, and realizing the electrical connection between the control module and the anti-overflow blowing device 3 through the contact of the first connector 12 and the second connector 38. Compared with using wire connection, this solution can reduce the wire mess.
[0063] Further, the anti-overflow blowing device 3 has a coupling portion 40 that protrudes laterally from the cover assembly 2. The second connector 38 is disposed on one side of the coupling portion 40 facing the container body 1, and the first connector 12 is correspondingly disposed on one side of the container body 1 facing the coupling portion 40. When the cover assembly 2 covers the accommodation cavity 11, the first connector 12 contacts the second connector 38. That is, due to the presence of the coupling portion 40, when the cover assembly 2 covers the accommodation cavity 11, the coupling portion 40 abuts against the container body 1, so that the first connector 12 contacts the second connector 38.
[0064] At this time, in order to ensure the stable contact between the first connector 12 and the second connector 38, and further ensure the electrical connection stability between the control module and the anti-overflow blowing device 3, the first magnetic member 15 is disposed close to the first connector 12, and correspondingly, the second magnetic member 39 is disposed close to the second connector 38. That is, both the second connector 38 and the second magnetic member 39 are disposed close to the second connector 38, so as to reduce the possibility that the first connector 12 and the second connector 38 are accidentally displaced, resulting in the electrical connection failure between the control module and the anti-overflow blowing device 3.
[0065] In this embodiment, the first connector 12 is configured to be two, and correspondingly, the second connector 38 is also configured to be two. The first magnetic member 15 is configured to be two, and the two first magnetic members 15 are respectively disposed on opposite sides of the first connector 12. Correspondingly, the second magnetic member 39 is configured to be two, and the two second magnetic members 39 are respectively disposed on opposite sides of the second connector 38, so as to further ensure the electrical connection stability between the first connector 12 and the second connector 38.
[0066] Please refer to Figures 1 to 3 , in the embodiment of the present utility model, the container body 1 includes a kettle body assembly 13 and a control base 14. The accommodation cavity 11 is disposed in the kettle body assembly 13, the control module is disposed in the control base 14, the kettle body assembly 13 is mounted on the control base 14, and the first connector 12 is electrically connected to the control module. Specifically, the kettle body assembly 13 is used as the main body portion of the container body 1, the accommodation cavity 11 is disposed in the kettle body assembly 13, the control base 14 is disposed at the bottom of the kettle body assembly 13, and the control base 14 can supply power to the kettle body assembly 13 and the kettle lid assembly. The control module is disposed in the control base 14, and the control module can control the heating of the kettle body assembly 13 and can also control the operation of the anti-overflow blowing device 3. Correspondingly, the first connector 12 is disposed on one side of the kettle body assembly 13 facing the cover assembly 2.
[0067] Among them, the kettle body assembly 13 and the control base 14 can be integrally formed or separately formed. When the kettle body assembly 13 and the control base 14 are separately formed, the heating module in the container body 1 is arranged at the bottom of the kettle body assembly 13, and the kettle body assembly 13 is provided with a third connector, and the control base 14 is correspondingly provided with a fourth connector. The third connector and the fourth connector are in contact, so as to realize the electrical connection between the control module and the heating module.
[0068] The control module controls the heating module to heat the liquid in the accommodating cavity 11. Initially, the temperature of the liquid in the accommodating cavity 11 is relatively low. Therefore, the control module controls the heating module to heat at high power, so as to improve the heating efficiency. After being heated to a preset temperature or a preset state, the control module controls the anti-overflow blowing device 3 to start working. At the same time, the control module controls the heating module to switch to low-power heating, so as to jointly inhibit the liquid level in the accommodating cavity 11 from rising and reduce the possibility of liquid overflow.
[0069] In order to timely monitor the liquid state in the accommodating cavity 11, in the embodiment of the present invention, a second detection member 24 is provided on the side of the cover body assembly 2 facing the accommodating cavity 11. The second detection member 24 is electrically connected to the control module, and the second detection member 24 is used to detect the liquid state in the accommodating cavity 11. Specifically, when the cover body assembly 2 covers the accommodating cavity 11, the second detection member 24 can extend into the accommodating cavity 11. The second detection member 24 can detect the temperature of the liquid in the accommodating cavity 11, or detect whether bubbles are generated in the liquid, or detect the liquid level height in the accommodating cavity 11, so as to accurately monitor the liquid state in the accommodating cavity 11. And the second detection member 24 realizes electrical connection with the control module through the connection of the first connector 12 and the second connector 38.
[0070] When the second detection member 24 detects that the temperature of the liquid in the accommodating cavity 11 reaches the preset temperature, or detects that bubbles are generated in the liquid, or detects that the liquid level height in the accommodating cavity 11 reaches the preset state, a signal is transmitted to the control module. The control module controls the anti-overflow blowing device 3 to start working according to the feedback of the second detection member 24. At the same time, the control module controls the heating module to switch to low-power heating. Among them, when heating at low power, the power of the heating module is about 50%-70% of the power of the heating module in the initial state.
[0071] In this embodiment, the second detection member 24 is configured as an anti-overflow probe, and the anti-overflow probe can detect whether bubbles are generated in the detected liquid or detect the liquid level height in the accommodating cavity 11. In other embodiments, the second detection member 24 can also be configured as a temperature detector. At this time, to ensure the accuracy of the measurement, the end of the second detection member 24 away from the cover body assembly 2 is inserted into the liquid in the accommodating cavity 11.
[0072] In an embodiment of the present utility model, the cooking container 100 further includes a first detecting member, which is electrically connected to the control module. The first detecting member is used to detect the magnitude of the current between the first connector 12 and the second connector 38. Specifically, the first detecting member can detect the magnitude of the current between the first connector 12 and the second connector 38, and then determine whether the lid assembly 2 is properly installed or whether the anti-overflow blowing device 3 has a fault. The first detecting member is electrically connected to the control module.
[0073] When the lid assembly 2 is not properly installed or the anti-overflow blowing device 3 has a fault, the first detecting member transmits a signal to the control module, and the control module can issue a warning for the user to perform maintenance. Alternatively, another heating mode can be set to cope with the heating method of the heating module when the lid assembly 2 is not properly installed or the anti-overflow blowing device 3 has a fault. When the first detecting member detects that the lid assembly 2 is not properly installed or the anti-overflow blowing device 3 has a fault, the control module controls the heating module to heat according to this heating mode.
[0074] Wherein, the first detecting member can be configured as a voltmeter or an ammeter, and the first detecting member can be installed either in the anti-overflow blowing device 3 or in the container body 1.
[0075] Please refer to Figures 4 to 6 , in an embodiment of the present utility model, the anti-overflow blowing device 3 includes a box body 31. The box body 31 is provided with a blowing port 311 communicating with the accommodating cavity 11, and a control valve for controlling the opening and closing of the blowing port 311 and a blower structure 34 for blowing air to the blowing port 311 are arranged in the box body 31. Specifically, the anti-overflow blowing device 3 includes the box body 31, that is, the anti-overflow blowing device 3 has its own independent housing structure compared with the shell lid assembly 21, which facilitates the disassembly of the anti-overflow blowing device 3. And the box body 31 is provided with the blowing port 311 communicating with the accommodating cavity 11, and the blowing port 311 is generally arranged on one side of the box body 31 facing the accommodating cavity 11. The control valve controls the opening and closing of the blowing port 311. The control valve can be configured as a normally closed valve. When the cooking container 100 heats the liquid in the accommodating cavity 11, the blowing port 311 is closed, which helps to ensure the tightness in the accommodating cavity 11 and thus ensure the heating efficiency; when heated to a preset temperature or a preset state, the control valve opens, so that external air can enter the accommodating cavity 11 from the blowing port 311. And to further facilitate the entry of external air into the accommodating cavity 11 from the blowing port 311, a blower structure 34 is further arranged in the box body 31. The blower structure 34 can blow air to the blowing port 311, thereby accelerating the inflow of external air into the accommodating cavity 11.
[0076] Among them, the control valve can be manually driven, and the fan structure 34 can also be manually driven. For example, when the liquid in the accommodation chamber 11 reaches the preset temperature, the user opens the air outlet 311 and the fan structure 34 respectively. Therefore, for the convenience of the user's operation, the anti-overflow blowing device 3 is provided with control keys. A control module can also be set up to automatically control the opening of the air outlet 311 and the fan structure 34 when the liquid in the accommodation chamber 11 reaches the preset temperature.
[0077] Furthermore, the control valve includes a driving structure 32 and a blocking portion 33 installed on the output shaft 321 of the driving structure 32. The driving structure 32 drives the blocking portion 33 to move relative to the air outlet 311 to control the opening and closing of the air outlet 311. Specifically, the driving structure 32 can drive the blocking portion 33 to move relative to the air outlet 311, thereby controlling the opening and closing of the air outlet 311. When it is necessary to open the air outlet 311, the driving structure 32 drives the blocking portion 33 away from the air outlet 311, so that the blocking portion 33 is spaced apart from the air outlet 311 for external air to pass through (see Figure 5 ); when it is necessary to close the air outlet 311, the driving structure 32 drives the blocking portion 33 close to the air outlet 311, so that the blocking portion 33 abuts against the outer edge of the air outlet 311 (see Figure 4 ); or the blocking portion 33 is inserted into the air outlet 311 and abuts against the inner peripheral edge of the air outlet 311. Therefore, in order to reduce air leakage, the blocking portion 33 is usually configured as a flexible member, such as the blocking portion 33 is configured as a rubber member or a flexible plastic member.
[0078] Even further, the driving structure 32 is configured as an electromagnetic driving motor, and the blocking portion 33 is installed on the magnet shaft of the electromagnetic driving motor. Specifically, the driving structure 32 is configured as an electromagnetic driving motor, and an electromagnet or an energized coil is provided in the electromagnetic driving motor. Under normal circumstances, the blocking member blocks the air outlet 311. When it is necessary to open the air outlet 311, the electromagnet or the energized coil is energized, thereby generating a magnetic force to attract the magnet shaft to move in a direction away from the air outlet 311, and the magnet shaft then drives the blocking portion 33 to move, thereby opening the air outlet 311. Such an electromagnetic driving motor helps to simplify the structure of the anti-overflow blowing device 3 and helps to miniaturize the anti-overflow blowing device 3. In other embodiments, the driving structure 32 can also be configured as a driving cylinder or the like.
[0079] To ensure the blocking effect of the blocking part 33 on the air blowing port 311 under normal circumstances, in the embodiment of the present invention, an elastic member 322 is provided between the driving structure 32 and the blocking part 33. The elastic member 322 makes the blocking part 33 tend to press against the edge of the air blowing port 311 to block the air blowing port 311. Specifically, the elastic member 322 is sleeved on the magnet shaft, and one end of the elastic member 322 abuts against the blocking part 33, and the other end abuts against the driving structure 32, so that the blocking part 33 has a tendency to press against the edge of the air blowing port 311, thereby reducing air leakage and ensuring the blocking effect. Therefore, the elastic member 322 can be configured as a compression spring. Of course, in other embodiments, the elastic member 322 can also be configured as a rubber block, and the rubber block is provided with a through hole for the magnet shaft to pass through. The elastic member 322 can also be configured as a shrapnel structure.
[0080] Moreover, in this embodiment, the blocking part 33 is arranged inside the box body 31, which can not only ensure the structural integrity of the anti-overflow air blowing device 3, but also reduce the possibility that the liquid level in the accommodating cavity 11 rises and adheres to the blocking part 33, resulting in the soiling of the blocking part 33. In other embodiments, the blocking part 33 can also be arranged outside the box body 31. At this time, part of the magnet shaft penetrates out of the air blowing port 311, so that the blocking part 33 extends out from the air blowing port 311. At this time, if it is necessary to open the air blowing port 311, the electromagnet or the energized coil is energized to generate a magnetic force, which repels the magnet shaft to move away from the air blowing port 311, and the magnet shaft then drives the blocking part 33 to move, thereby opening the air blowing port 311. The elastic member 322 is arranged between the driving structure 32 and the air blowing port 311. The elastic member 322 is sleeved on the magnet shaft, and one end of the elastic member 322 abuts against the blocking part 33, and the other end abuts against the outer edge of the air outlet, so that the blocking part 33 has a tendency to press against the edge of the air blowing port 311 to block the air blowing port 311.
[0081] The above are only exemplary embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structural transformation made under the technical concept of the present invention by using the content of the specification and drawings of the present invention, or any direct / indirect application in other related technical fields is included in the patent protection scope of the present invention.
Claims
1. A cooking container, characterized in that, Comprising: A container body having a receiving cavity; And A lid assembly including a shell lid assembly and an anti-overflow blowing device detachably mounted on the shell lid assembly. The shell lid assembly covers the container body, and the anti-overflow blowing device can blow air into the receiving cavity to introduce external air into the receiving cavity.
2. The cooking container according to claim 1, characterized in that, The shell lid assembly is provided with a communication hole, and the anti-overflow blowing device communicates with the receiving cavity through the communication hole.
3. The cooking container according to claim 2, wherein, An installation sink for mounting the anti-overflow blowing device is provided on the shell lid assembly. The communication hole is provided at the bottom of the installation sink, and a positioning structure and an installation structure are provided between the anti-overflow blowing device and the installation sink.
4. The cooking container according to claim 3, characterized in that, The installation structure includes a sliding convex that slidably penetrates through one side of the anti-overflow blowing device, and a first card slot is provided on the side wall corresponding to the installation sink; The anti-overflow blowing device is mounted in the installation sink, and the sliding convex is snapped into the first card slot.
5. The cooking container according to claim 4, characterized in that, The installation structure further includes a pressing portion provided on the anti-overflow blowing device, and the pressing portion controls the sliding of the sliding convex.
6. The cooking container according to claim 3, wherein The positioning structure includes a positioning convex provided on one side of the anti-overflow blowing device, and a second card slot is provided on the side wall corresponding to the installation sink. The positioning convex is inserted into the second card slot.
7. The cooking container according to claim 1, wherein, The container body is provided with a water outlet communicating with the receiving cavity, and the height of the water outlet is lower than the height of the lid assembly.
8. The cooking container according to claim 1, characterized in that, The lid assembly is detachably mounted on the container body.
9. The cooking container according to claim 8, characterized in that, The container body is provided with a control module, the container body is provided with a first connector, the anti-overflow blowing device is provided with a second connector, the lid assembly covers the receiving cavity, and the first connector contacts the second connector to electrically connect the control module and the anti-overflow blowing device.
10. The cooking container according to claim 9, wherein The anti-overflow blowing device has a coupling portion protruding laterally from the lid assembly. The second connector is provided on one side of the coupling portion facing the container body, and the first connector is correspondingly provided on one side of the container body facing the coupling portion. When the lid assembly covers the receiving cavity, the first connector contacts the second connector; and / or, A first magnetic member is provided on one side of the container body facing the lid assembly, and a second magnetic member is provided on one side of the anti-overflow blowing device facing the container body. When the lid assembly covers the receiving cavity, the first magnetic member and the second magnetic member are magnetically connected, and the first magnetic member is disposed close to the first connector.
11. The cooking container according to claim 9, characterized in that, The cooking container further includes a first detection member electrically connected to the control module, and the first detection member is used to detect the magnitude of the current between the first connector and the second connector.
12. The cooking container according to any one of claims 1 to 11, characterized in that, A second detection member is provided on one side of the lid assembly facing the receiving cavity. The second detection member is electrically connected to the control module of the container body, and the second detection member is used to detect the liquid state in the receiving cavity.
13. The cooking container according to any one of claims 1 to 11, characterized in that, The anti-overflow blowing device includes a box body. The box body is provided with a blowing port communicating with the receiving cavity, and a control valve for controlling the opening and closing of the blowing port and a blower structure for blowing air to the blowing port are provided in the box body.