Cup cover assembly and food processor
By designing a sealing assembly of a spiral exhaust passage in the cup lid assembly of the food processor, the problems of low heating efficiency and complex and difficult to clean the parts in the prior art are solved, and efficient heating and low-cost production are achieved.
Patent Information
- Application Number
- CN202421368808.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-06-14
AI Technical Summary
The heating efficiency of existing soy milk machines or wall breakers is low, steam takes away heat, and the parts are complex and difficult to clean, making the production cost high.
A cup lid assembly is designed, including a cover body and a sealing assembly, with a spiral or S-shaped exhaust passage in the sealing assembly to slow down the steam discharge speed, form a micro-pressure state, and improve heating efficiency.
It improves the heating efficiency and food taste of the food processor, reduces production costs, and simplifies the installation and cleaning process.
Smart Images

Figure CN223041403U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food cooking equipment, in particular to a cup cover assembly and a food cooking machine. Background Art
[0002] Currently, most of the soymilk machines or wall-breaking machines on the market have open exhaust ports. The steam generated during the heating process is discharged directly from the exhaust port. In this way, the steam will take away some heat, and the most suitable pressure cannot be maintained in the cavity, affecting the heating efficiency and the taste of the food.
[0003] The existing micro-pressure wall breaking machine has parts such as ball columns, silicone parts, limit parts, springs, etc., and uses the pressure applied by the spring to drive the pressure relief hole to open and close. This structure is complicated and difficult to clean, and the parts are easy to lose. The production process is complicated and the production cost is high. Utility Model Content
[0004] Based on this, it is necessary to provide a cup cover assembly and a food processor with high heating efficiency, convenient installation and cleaning, and relatively low production cost to address the above problems.
[0005] A cup cover assembly comprises: a cover body, the cover body is provided with a first opening; a sealing assembly, the sealing assembly is arranged on the cover body and is located in the first opening; an exhaust channel is provided in the sealing assembly, the openings at both ends of the exhaust channel communicating with the outside are respectively located on both sides of the cover body, and the exhaust channel is a spiral path.
[0006] The present application discloses a cup lid assembly, wherein a first opening of the lid body is used to discharge steam generated when a container is heated to avoid explosion due to excessive pressure in the container, and a sealing assembly is arranged at the first opening to slow down the speed at which steam is discharged from the container, and an inner cavity of the sealing assembly is an exhaust channel with a spiral or S-shaped path, and the steam in the container needs to undergo multiple changes of direction and a longer path before entering the exhaust channel to be discharged to the outside, thereby slowing down the speed at which steam is discharged and forming a micro-pressure state in the container, which neither delays the discharge of steam nor prevents the steam from taking away the heat in the container too quickly and appropriately increases the pressure in the container, thereby effectively improving the heating efficiency of the food processor and the taste of food, and optionally, the sealing assembly is made of silicone material and can undergo elastic deformation, thereby dynamically balancing the pressure in the container.
[0007] In some of these embodiments, the sealing assembly is provided with an air inlet, a first channel, a first vertical groove, a side groove, a second vertical groove, a second channel, and an exhaust port. The first vertical groove and the second vertical groove are respectively located on both sides inside the sealing assembly. One end of the first channel communicates with the air inlet, one side of the first channel communicates with the first vertical groove, the first vertical groove communicates with the side groove through a first notch, the side groove communicates with the second vertical groove through a second notch, one side of the second channel communicates with the side groove, one end of the second channel communicates with the air inlet, and the exhaust channel is sequentially communicated by the air inlet, the first channel, the first vertical groove, the first notch, the side groove, the second notch, the second vertical groove, the second channel, and the exhaust port.
[0008] In this embodiment, the air inlet is located on one side of the sealing assembly close to the inner cavity of the container. The length directions of the first channel and the second channel are parallel to the central axis of the sealing assembly. The first vertical groove and the second vertical groove are respectively located on opposite sides of the first channel and the second channel. That is to say, the path for the steam to enter the first vertical groove from the first channel is in the horizontal direction, and the path for the steam to enter the second channel from the second vertical groove is also in the horizontal direction. The upper half of one side around the first vertical groove and the second vertical groove are respectively provided with a first notch and a second notch, so as to communicate with the side groove respectively. In this way, the steam in the first vertical groove can first move upward for a certain distance and then horizontally enter the side groove. Similarly, the steam entering the side groove first moves horizontally through the second notch and enters the second vertical groove, and then moves upward to the exhaust port. The steam moves in the vertical and horizontal directions multiple times through the above path, extending the distance of steam discharge, thereby realizing a micro-pressure state in the inner cavity of the container.
[0009] In some of these embodiments, the sealing assembly includes a first sealing member and a second sealing member. The first sealing member is fixedly connected to the second sealing member. The internal spaces of the first sealing member and the second sealing member enclose to form the exhaust channel. The first sealing member is provided with an air inlet, and the second sealing member is provided with an exhaust port. The air inlet and the exhaust port are respectively located on both sides of the lid body, and the air inlet and the exhaust port are respectively communicated with the exhaust channel.
[0010] The above-mentioned cup lid assembly is further defined as follows: The sealing assembly is composed of a first sealing member and a second sealing member that are snap-fitted together. The exhaust channel is formed by respectively providing an air inlet and an exhaust port in the first sealing member and the second sealing member and arranging a plurality of baffles to enclose. And the shapes and structures of the first sealing member and the second sealing member are the same. In this way, the difficulty of the production process can be reduced, the cost can be greatly reduced, and the market competitiveness can be effectively enhanced.
[0011] In some of these embodiments, the first seal includes a first engaging portion and a first seal body. A first inner groove is formed in the first seal body. The first engaging portion is provided on the first seal body, and the engaging portion is located within the first inner groove.
[0012] The second seal includes a second engaging portion and a second seal body. A second inner groove is formed in the second seal body. The second engaging portion is provided on the second seal body, and the second engaging portion is located within the second inner groove.
[0013] The first engaging portion and the second engaging portion are adapted to each other and are disposed opposite to each other. The first inner groove and the second inner groove are adapted to each other and are disposed opposite to each other.
[0014] In this embodiment, the first engaging portion and the second engaging portion are used to engage and position the first seal and the second seal, so that the first inner groove and the second inner groove can be aligned to form an airtight exhaust passage.
[0015] In some of these embodiments, the first seal is provided with a plurality of first baffles. The plurality of first baffles are circumferentially arranged along the first engaging portion. The plurality of first baffles and the first engaging portion divide the inner cavity of the first seal into a first groove and a second groove. The first engaging portion is provided with a first passage. One side of the first passage communicates with the first groove, and one end of the first passage communicates with the air inlet.
[0016] In this embodiment, by circumferentially arranging three first baffles on the first engaging portion, the inner cavity of the first seal is divided into a first groove and a second groove. Both the first groove and the second groove are arc-shaped grooves, and the arc length of the second groove is greater than that of the first groove. The second groove has a longer arc length, which can extend the path of steam flow.
[0017] In some of these embodiments, the second seal is provided with a plurality of second baffles. The plurality of second baffles are circumferentially arranged along the second engaging portion. The plurality of second baffles and the second engaging portion divide the inner cavity of the second seal into a third groove and a fourth groove. The second engaging portion is provided with a second passage. One side of the second passage communicates with the third groove, and one end of the second passage communicates with the exhaust port.
[0018] In this embodiment, by circumferentially arranging three second baffles on the second engaging portion, the inner cavity of the second seal is divided into a third groove and a fourth groove. Both the third groove and the fourth groove are arc-shaped grooves, and the arc length of the third groove is greater than that of the fourth groove. The fourth groove has a longer arc length, which can extend the path of steam flow.
[0019] In some of these embodiments, the first groove and the fourth groove enclose to form a first vertical groove, the second groove and the fourth groove enclose to form a side groove, and the second groove and the third groove enclose to form the second vertical groove.
[0020] In this embodiment, after the first seal and the second seal are snapped together, one end portion of the first groove and the fourth groove away from the third groove encloses to form a first vertical groove, the second groove and the fourth groove enclose to form a side groove, and one end of the second groove away from the first groove and the third groove enclose to form a second vertical groove. The side groove is located between the first vertical groove and the second vertical groove. The spatial dimensions of the first vertical groove and the second vertical groove are the same, and the length of the side groove is greater than that of the first vertical groove and the second vertical groove.
[0021] In some of these embodiments, the first engaging portion is provided with a first limiting rib and a first limiting groove, the second engaging portion is provided with a second limiting rib and a second limiting groove, the first limiting rib and the second limiting groove can be adaptively engaged, and the second limiting rib and the first limiting groove can be adaptively engaged.
[0022] The above-mentioned cup cover assembly is further defined as follows: the first engaging portion and the second engaging portion are respectively located at the central axis positions of the first seal and the second seal. The settings of the first limiting rib, the first limiting groove, the second limiting rib and the second limiting groove can align and engage the first seal and the second seal at the central axis position.
[0023] Optionally, third limiting ribs and third limiting grooves are respectively provided on the circumferences of the first seal and the second seal, so that the first seal and the second seal can be engaged at the central position and the outer peripheral position, thereby making the connection between the first seal and the second seal more stable and being beneficial to the internal airtightness of the seal assembly.
[0024] A food processor includes: a cup body main body, the cup body main body is provided with a cup mouth and a cavity, the cup mouth is communicated with the cavity; a stirring knife mechanism, the stirring knife mechanism is arranged on the cup body main body, and the stirring knife mechanism is located in the cavity; the cup cover assembly as described in the foregoing claims, the cup cover assembly is detachably arranged on the cup body main body, and the cup cover assembly is located at the cup mouth. The cavity is communicated with the exhaust passage.
[0025] The present application also discloses a food processor. The stirring knife mechanism is arranged at the bottom of the cup body and located in the cavity, mainly used for crushing the ingredients in the cavity to make the ingredients finer and easier to cook. When the food processor heats and cooks the ingredients in the cavity, a large amount of water vapor will be generated in the cavity. The water vapor rises towards the cup mouth and enters the exhaust passage of the cup cover assembly through the air inlet. After changing directions multiple times and passing through a relatively long path, it is finally discharged outside the food processor through the exhaust port. Through this process, it is beneficial to improve the heating efficiency of the food processor and the taste of the cooked food, and enhance the user experience. Description of the Drawings
[0026] Figure 1 It is a cross-sectional view of the cup cover assembly of the present utility model;
[0027] Figure 2 It is one of the side cross-sectional views of the sealing assembly of the present utility model;
[0028] Figure 3 It is the second of the side cross-sectional views of the sealing assembly of the present utility model;
[0029] Figure 4 It is a top cross-sectional view of the sealing assembly of the present utility model;
[0030] Figure 5 It is one of the exploded views of the sealing assembly of the present utility model;
[0031] Figure 6 It is the second of the exploded views of the sealing assembly of the present utility model;
[0032] Figure 7 It is a cross-sectional view of the food processor of the present utility model.
[0033] Among them, the corresponding relationship between the reference numerals and the component names is as follows:
[0034] 1 cover body, 101 first opening;
[0035] 2 sealing assembly, 210 exhaust passage, 201 air inlet, 202 first passage, 203 first vertical groove, 204 side groove, 205 second vertical groove, 206 second passage, 207 exhaust port, 208 first notch, 209 second notch, 21 first seal, 22 second seal, 211 first engaging portion, 212 first seal body, 221 second engaging portion, 222 second seal body, 213 first baffle, 2101 first groove, 2102 second groove, 223 second baffle, 2201 third groove, 2202 fourth groove, 2111 first limiting rib, 2112 first limiting groove, 2211 second limiting rib, 2212 second limiting groove;
[0036] 100 Cup body main body, 1001 cup body, 1002 cavity;
[0037] 200 Stirring knife;
[0038] 300 Cup cover assembly. Detailed implementation mode
[0039] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific implementation modes. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0040] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited by the specific embodiments disclosed below.
[0041] The following describes some embodiments of the cup cover assembly and the food processor of the present invention with reference to the accompanying drawings.
[0042] As Figure 1 shown, a cup cover assembly includes: a cover body 1, and the cover body 1 is provided with a first opening 101; a sealing assembly 2, the sealing assembly 2 is arranged on the cover body 1, and the sealing assembly 2 is located in the first opening 101; an exhaust passage 210 is opened in the sealing assembly 2, and the two openings of the exhaust passage 210 communicating with the outside are respectively located on both sides of the cover body 1, and the exhaust passage 210 is in a spiral path.
[0043] The present application discloses a cup cover assembly. The first opening 101 of the cover body 1 is used to discharge the steam generated when the container is heated, so as to avoid explosion due to excessive pressure in the container. By arranging the sealing assembly 2 at the first opening 101, the speed of steam discharging from the container can be slowed down. The inner cavity of the sealing assembly 2 is an exhaust passage 210 with a spiral or S-shaped path. The steam in the container needs to change directions multiple times and pass through a longer path before it can be discharged to the outside when entering the exhaust passage 210. In this way, the speed of steam discharging can be slowed down, so as to form a micro-pressure state in the container, which not only does not delay the discharge of steam, but also can avoid the steam taking away the heat in the container too quickly and moderately increase the pressure in the container, thereby effectively improving the heating efficiency and food taste of the food processor. Optionally, the sealing assembly 2 is made of silica gel material and can undergo elastic deformation, so as to dynamically balance the pressure in the container.
[0044] As Figures 1 to 4As shown, in this embodiment, the sealing assembly 2 is provided with an air inlet 201, a first channel 202, a first vertical groove 203, a side groove 204, a second vertical groove 205, a second channel 206, and an exhaust port 207. The first vertical groove 203 and the second vertical groove 204 are respectively located on both sides inside the sealing assembly 2. One end of the first channel 202 communicates with the air inlet 201, one side of the first channel 202 communicates with the first vertical groove 203, the first vertical groove 203 communicates with the side groove 204 through a first notch 208, the side groove 204 communicates with the second vertical groove 205 through a second notch 209, one side of the second channel 206 communicates with the side groove 204, one end of the second channel 206 communicates with the air inlet 201, and the exhaust channel 210 is sequentially communicated by the air inlet 201, the first channel 202, the first vertical groove 203, the first notch 208, the side groove 204, the second notch 209, the second vertical groove 205, the second channel 206, and the exhaust port 207.
[0045] In this embodiment, the air inlet 201 is located on one side of the sealing assembly 2 close to the inner cavity of the container. The length directions of the first channel 202 and the second channel 206 are parallel to the central axis of the sealing assembly 2. The first vertical groove 203 and the second vertical groove 205 are respectively located on opposite sides of the first channel 202 and the second channel 206. That is to say, the path for steam to enter the first vertical groove 203 from the first channel 202 is in the horizontal direction, and the path for steam to enter the second channel 206 from the second vertical groove 204 is also in the horizontal direction. The upper half of one side around the first vertical groove 203 and the second vertical groove 205 are respectively provided with a first notch 208 and a second notch 209, so as to communicate with the side groove 204 respectively. In this way, the steam in the first vertical groove 203 can first move upward for a certain distance and then horizontally enter the side groove 204. Similarly, the steam entering the side groove 204 first moves horizontally through the second notch 209 and enters the second vertical groove 205, and then moves upward to the exhaust port 207. The steam moves in the vertical and horizontal directions multiple times through the above paths, extending the distance of steam discharge, thereby realizing a micro-pressure state in the inner cavity of the container.
[0046] As Figure 1 、 Figure 5 and Figure 6As shown, in this embodiment, the sealing assembly 2 includes a first seal 21 and a second seal 22. The first seal 21 is fixedly connected to the second seal 22. The internal spaces of the first seal 21 and the second seal 22 enclose to form the exhaust passage 210. An air inlet 201 is formed in the first seal 21, and an air outlet 207 is formed in the second seal 22. The air inlet 201 and the air outlet 207 are respectively located on both sides of the cover body 1, and the air inlet 201 and the air outlet 207 are respectively communicated with the exhaust passage 210.
[0047] The above-mentioned cup cover assembly is further defined as follows: The sealing assembly 2 is composed of a first seal 21 and a second seal 22 that are snap-fitted together. The exhaust passage 210 is formed by respectively providing an air inlet 201 and an air outlet 207 in the first seal 21 and the second seal 22 and arranging a plurality of baffles to enclose. Moreover, the shapes and structures of the first seal 21 and the second seal 22 are the same, which can reduce the difficulty of the production process, greatly reduce the cost, and effectively enhance the market competitiveness.
[0048] As Figure 5 and Figure 6 As shown, in this embodiment, the first seal 21 includes a first engaging portion 211 and a first seal body 212. A first inner groove is formed in the first seal body 212. The first engaging portion 211 is provided on the first seal body 212, and the engaging portion 211 is located in the first inner groove. The second seal 22 includes a second engaging portion 221 and a second seal body 222. A second inner groove is formed in the second seal body 222. The second engaging portion 221 is provided on the second seal body 222, and the second engaging portion 221 is located in the second inner groove. The first engaging portion 211 and the second engaging portion 221 are adapted and disposed opposite to each other, and the first inner groove and the second inner groove are adapted and disposed opposite to each other.
[0049] In this embodiment, the first engaging portion 211 and the second engaging portion 221 are used to snap-fit and position the first seal 21 and the second seal 22, so that the first inner groove and the second inner groove can be aligned to form an airtight exhaust passage 210.
[0050] As Figure 5As shown, in this embodiment, the first seal 21 is provided with a plurality of first baffles 213. The plurality of first baffles 213 are circumferentially arranged along the first engaging portion 211. The plurality of first baffles 213 and the first engaging portion 211 divide the inner cavity of the first seal 21 into a first groove 2101 and a second groove 2102. The first engaging portion 211 is provided with a first channel 202. One side of the first channel 202 communicates with the first groove 2101, and one end of the first channel 202 communicates with the air inlet 201.
[0051] In this embodiment, by arranging three first baffles 213 circumferentially on the first engaging portion 211, the inner cavity of the first seal 21 is divided into a first groove 2101 and a second groove 2102. Both the first groove 2101 and the second groove 2102 are arc-shaped grooves, and the arc length of the second groove 2102 is greater than that of the first groove 2101. The second groove 2102 has a longer arc length, which can extend the flow path of the steam.
[0052] As Figure 6 shown, in this embodiment, the second seal 22 is provided with a plurality of second baffles 223. The plurality of second baffles 223 are circumferentially arranged along the second engaging portion 221. The plurality of second baffles 223 and the second engaging portion 221 divide the inner cavity of the second seal 22 into a third groove 2201 and a fourth groove 2202. The second engaging portion 221 is provided with a second channel 206. One side of the second channel 206 communicates with the third groove 2201, and one end of the second channel 206 communicates with the exhaust port 207.
[0053] In this embodiment, by arranging three second baffles 223 circumferentially on the second engaging portion 221, the inner cavity of the second seal 22 is divided into a third groove 2301 and a fourth groove 2302. Both the third groove 2201 and the fourth groove 2202 are arc-shaped grooves, and the arc length of the third groove 2202 is greater than that of the fourth groove 2201. The fourth groove 2202 has a longer arc length, which can extend the flow path of the steam.
[0054] As Figures 2 to 6 shown, in this embodiment, the first groove 2101 and the fourth groove 2202 enclose a first vertical groove 203. The second groove 2102 and the fourth groove 2202 enclose a side groove 204. The second groove 2102 and the third groove 2201 enclose the second vertical groove 205.
[0055] In this embodiment, after the first seal 21 and the second seal 22 are engaged with each other, one end portion of the first groove 2101 and the fourth groove 2202 away from the third groove 2201 partially encloses to form a first vertical groove 203, the second groove 2102 and the fourth groove 2202 enclose to form a side groove 204, and one end of the second groove 2102 away from the first groove 2101 and the third groove 2201 enclose to form a second vertical groove 205. The side groove 204 is located between the first vertical groove 203 and the second vertical groove 205. The spatial dimensions of the first vertical groove 203 and the second vertical groove 205 are the same, and the length of the side groove 204 is greater than that of the first vertical groove 203 and the second vertical groove 205.
[0056] As Figure 5 and Figure 6 shown, in this embodiment, the first engaging portion 211 is provided with a first limiting rib 2111 and a first limiting groove 2112, the second engaging portion 221 is provided with a second limiting rib 2211 and a second limiting groove 2212, the first limiting rib 2111 can be engaged with the second limiting groove 2212 in a matching manner, and the second limiting rib 2211 can be engaged with the first limiting groove 2112 in a matching manner.
[0057] The above cup lid assembly is further defined as follows: the first engaging portion 211 and the second engaging portion 221 are respectively located at the central axis positions of the first seal 21 and the second seal 22. The settings of the first limiting rib 2111, the first limiting groove 2112, the second limiting rib 2211, and the second limiting groove 2212 can enable the first seal 21 and the second seal 22 to be aligned and engaged at the central axis position.
[0058] Optionally, third limiting ribs and third limiting grooves are respectively provided on the circumferences of the first seal 21 and the second seal 22, so that the first seal 21 and the second seal 22 can be engaged at the central position and the outer circumferential position, thereby making the connection between the first seal 21 and the second seal 22 more stable and being beneficial to the internal airtightness of the sealing assembly 2.
[0059] As Figure 7 shown, a food processor includes: a cup body main body 100, the cup body main body 100 is provided with a cup mouth 1001 and a cavity 1002, and the cup mouth 1001 is communicated with the cavity 1002; a stirring knife mechanism 200, the stirring knife mechanism 200 is arranged on the cup body main body 100, and the stirring knife mechanism 200 is located in the cavity 1002; the cup lid assembly 300 as described in the foregoing claims, the cup lid assembly 300 is detachably arranged on the cup body main body 100, and the cup lid assembly 300 is located at the cup mouth 1001. The cavity 1002 is communicated with the exhaust passage 210.
[0060] The present application also discloses a food processor. The stirring knife mechanism 200 is disposed at the bottom of the cup body 100 and is located within the cavity 1002, mainly used for crushing the ingredients within the cavity 1002 to make the ingredients finer and easier to cook. When the food processor heats and cooks the ingredients within the cavity 1002, a large amount of water vapor is generated within the cavity 1002. The water vapor rises towards the cup mouth 1001 and enters the exhaust passage 210 of the cup cover assembly 300 through the air inlet 201. After multiple changes in direction and a relatively long path, it is finally discharged outside the food processor through the exhaust port 207. Through this process, it is beneficial to improve the heating efficiency of the food processor and the taste of the cooked food, enhancing the user experience.
[0061] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as falling within the scope described in this specification.
[0062] The above-described embodiments merely represent several implementation manners of the present utility model. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.
Claims
1. A cup cover assembly, characterized in that: include: A cover body (1), wherein the cover body (1) is provided with a first opening (101); A sealing component (2), the sealing component (2) being arranged on the cover body (1), and the sealing component (2) being located in the first opening (101); An exhaust channel (210) is provided in the sealing component (2), and openings at both ends of the exhaust channel (210) communicating with the outside are respectively located on two sides of the cover body (1), and the exhaust channel (210) is in a spiral path.
2. The cup cover assembly according to claim 1, characterized in that: The sealing component (2) is provided with an air inlet (201), a first channel (202), a first vertical groove (203), a side groove (204), a second vertical groove (205), a second channel (206) and an exhaust port (207); the first vertical groove (203) and the second vertical groove (205) are respectively located on two sides of the interior of the sealing component (2); one end of the first channel (202) is connected to the air inlet (201); one side of the first channel (202) is connected to the first vertical groove (203); the first vertical groove (203) is connected to the side groove (204) through a first notch (208). The side groove (204) is connected to the second vertical groove (205) through the second notch (209); one side of the second channel (206) is connected to the side groove (204); one end of the second channel (206) is connected to the air inlet (201); and the exhaust channel (210) is connected in sequence by the air inlet (201), the first channel (202), the first vertical groove (203), the first notch (208), the side groove (204), the second notch (209), the second vertical groove (205), the second channel (206) and the exhaust port (207).
3. The cup cover assembly according to claim 2, characterized in that: The sealing assembly (2) comprises a first sealing member (21) and a second sealing member (22); the first sealing member (21) is fixedly connected to the second sealing member (22); the internal spaces of the first sealing member (21) and the second sealing member (22) enclose the exhaust channel (210); an air inlet (201) is provided on the first sealing member (21); an exhaust port (207) is provided on the second sealing member (22); the air inlet (201) and the exhaust port (207) are respectively located on two sides of the cover body (1); and the air inlet (201) and the exhaust port (207) are respectively connected to the exhaust channel (210).
4. The cup cover assembly according to claim 3, characterized in that: The first sealing member (21) comprises a first engaging portion (211) and a first sealing member body (212); a first inner groove is provided in the first sealing member body (212); the first engaging portion (211) is arranged in the first sealing member body (212); and the engaging portion (211) is located in the first inner groove; The second sealing member (22) comprises a second engaging portion (221) and a second sealing member body (222); a second inner groove is provided in the second sealing member body (222); the second engaging portion (221) is arranged in the second sealing member body (222); the second engaging portion (221) is located in the second inner groove; The first clamping portion (211) and the second clamping portion (221) are matched and arranged opposite to each other, and the first inner groove and the second inner groove are matched and arranged opposite to each other.
5. The cup cover assembly according to claim 4, characterized in that: The first sealing member (21) is provided with a plurality of first baffles (213), and the plurality of first baffles (213) are arranged along the circumference of the first clamping portion (211). The plurality of first baffles (213) and the first clamping portion (211) divide the inner cavity of the first sealing member (21) into a first groove (2101) and a second groove (2102). The first clamping portion (211) is provided with a first channel (202), one side of the first channel (202) is communicated with the first groove (2101), and one end of the first channel (202) is communicated with the air inlet (201).
6. The cup cover assembly according to claim 5, characterized in that: The second sealing member (22) is provided with a plurality of second baffles (223), and the plurality of second baffles (223) are arranged along the circumference of the second clamping portion (221). The plurality of second baffles (223) and the second clamping portion (221) divide the inner cavity of the second sealing member (22) into a third groove (2201) and a fourth groove (2202). The second clamping portion (221) is provided with a second channel (206), one side of the second channel (206) is communicated with the third groove (2201), and one end of the second channel (206) is communicated with the exhaust port (207).
7. The cup cover assembly according to claim 6, characterized in that: The first groove (2101) and the fourth groove (2202) are combined to form a first vertical groove (203), the second groove (2102) and the fourth groove (2202) are combined to form a side groove (204), and the second groove (2102) and the third groove (2201) are combined to form the second vertical groove (205).
8. The cup cover assembly according to any one of claims 4 to 7, characterized in that: The first engaging portion (211) is provided with a first limiting rib (2111) and a first limiting groove (2112), the second engaging portion (221) is provided with a second limiting rib (2211) and a second limiting groove (2212), the first limiting rib (2111) and the second limiting groove (2212) can be adapted to be engaged, and the second limiting rib (2211) and the first limiting groove (2112) can be adapted to be engaged.
9. A food processor, characterized in that: include: A cup body (100), wherein the cup body (100) is provided with a cup mouth (1001) and a receiving cavity (1002), and the cup mouth (1001) is communicated with the receiving cavity (1002); a stirring blade mechanism (200), wherein the stirring blade mechanism (200) is arranged on the cup body (100), and the stirring blade mechanism (200) is located in the containing cavity (1002); The cup cover assembly (300) according to any one of claims 1 to 8, wherein the cup cover assembly (300) is detachably arranged on the cup body (100), and the cup cover assembly (300) is located at the cup mouth (1001).
10. The food processor according to claim 9, characterized in that The housing cavity (1002) is in communication with the exhaust passage (210).