Lid assembly and food processor
By employing a combination of horizontal and vertical sealing elements in the lid assembly of the food processor, the problem of poor sealing effect is solved, resulting in better sealing performance and safety, while simplifying the processing and assembly process.
Patent Information
- Application Number
- CN202522040025.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2025-01-22
- Filing Date
- 2025-09-22
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-22
AI Technical Summary
The lid assembly of existing food processors has poor sealing performance, allowing liquid to easily enter the interior, posing a safety hazard.
A hood assembly is designed, including a hood body, a panel assembly, and a first sealing structure. It adopts a combination of transverse and longitudinal sealing parts. The lateral and longitudinal sealing parts clamp and press to achieve effective sealing of the hood assembly. The position of the sealing structure is restricted by the cooperation of the installed protrusions and grooves, thereby enhancing the sealing effect.
It effectively prevents liquid from entering the interior of the cover assembly, achieving water and electricity separation, improving safety, and simplifying the processing and assembly of the sealing structure.
Smart Images

Figure CN224671376U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of small household appliances, and more particularly to a lid assembly and a food processor. Background Technology
[0002] As people's living standards continue to improve, many different types of food processors have appeared on the market. The functions of food processors mainly include, but are not limited to, making soy milk, juicing, rice paste, mincing meat, shaved ice, making coffee, and / or preparing face masks. However, some food processors have poor sealing in their lid assembly, allowing liquids to easily enter the lid assembly, posing a safety hazard. Utility Model Content
[0003] This application provides a lid assembly and a food processor, wherein the lid assembly has a good sealing effect.
[0004] This application provides a hood assembly, including a hood body, a panel assembly, and a first sealing structure; the panel assembly is disposed above the hood body and connected to the hood body; the first sealing structure includes a main sealing portion surrounding the panel assembly below it, the main sealing portion including a transverse sealing portion and a longitudinal sealing portion, the transverse sealing portion extending laterally and sealingly clamped between the lower surface of the panel assembly and the upper surface of the hood body; the longitudinal sealing portion extending downward from the transverse sealing portion and sealingly pressing against the inner surface of the hood body.
[0005] In some embodiments of this application, the transverse sealing portion of the first sealing structure extends laterally and is sealed and clamped between the lower surface of the panel assembly and the upper surface of the cover body, while the longitudinal sealing portion extends downward from the transverse sealing portion and is sealed and pressed against the inner surface of the cover body. In this way, the sealing by the transverse sealing portion and the longitudinal sealing portion of the first sealing structure can effectively prevent liquid from entering the interior of the cover assembly. Thus, the cover assembly has a good sealing effect, can effectively separate water and electricity, and improve safety.
[0006] Furthermore, the lower surface of the panel assembly has a first mounting protrusion extending circumferentially along the panel assembly; the first sealing structure further includes a mounting portion connected to the side surface of the longitudinal sealing portion, a first mounting groove being formed between the side surface of the longitudinal sealing portion and the mounting portion, the first mounting protrusion being engaged in the first mounting groove, and the longitudinal sealing portion being sealed and clamped between the inner surface of the cover body and the first mounting protrusion. In some embodiments, the first mounting protrusion being engaged in the first mounting groove can prevent the first sealing structure from moving and limit the position of the first sealing structure. At the same time, the longitudinal sealing portion being sealed and clamped between the inner surface of the cover body and the first mounting protrusion can improve the sealing effect of the seal pressing against the inner surface of the cover body.
[0007] Furthermore, the thickness of the longitudinal sealing portion is greater than the distance between the first mounting protrusion and the inner surface of the cover body. In some embodiments, this results in a better sealing effect.
[0008] Furthermore, the lower surface of the panel assembly is recessed to form a second mounting groove; the first sealing structure also includes a mounting portion connected to the side surface of the longitudinal sealing portion, the upper surface of the mounting portion having a second mounting protrusion; the second mounting protrusion is engaged within the second mounting groove. In some embodiments, the second mounting protrusion being engaged within the second mounting groove can prevent the first sealing structure from moving, limit the position of the first sealing structure, and simplify the processing of the first sealing structure.
[0009] Furthermore, the main body of the cover includes an annular main body sidewall and a support protrusion disposed on the inner surface of the main body sidewall; the transverse sealing portion is sealed and clamped between the lower surface of the panel assembly and the upper surface of the support protrusion; the longitudinal sealing portion is sealed and pressed against the inner surface of the support protrusion. In some embodiments, such a support protrusion can effectively support the first sealing structure and can restrict the position of the first sealing structure.
[0010] Furthermore, the number of support protrusions is plurality, and the plurality of support protrusions are arranged at circumferential intervals along the sidewall of the main body. In some embodiments, this makes the hood assembly lighter; or
[0011] The support protrusion extends circumferentially along the sidewall of the main body. In some embodiments, the support protrusion provides better support.
[0012] Furthermore, the panel assembly includes a panel and a panel support, the panel support being located below the panel and connected to the hood body; an adhesive area is provided between the panel and the panel support. In some embodiments, the adhesive area between the panel and the panel support can effectively seal the panel and the panel support, thereby improving the sealing effect of the hood assembly. Simultaneously, since the first sealing structure can seal both the hood body and the panel support, the adhesive area does not need to be located at the intersection of the panel, the panel support, and the hood body; it can be located at any position to achieve a seal between the panel and the panel support, thus facilitating the assembly of the hood assembly.
[0013] Furthermore, the adhesive area includes a first adhesive area; the upper surface edge of the panel bracket is recessed to form a first glue injection groove extending circumferentially along the panel bracket; the first glue injection groove and the panel enclose the first adhesive area. In some embodiments, providing a first glue injection groove increases the contact area between the adhesive and the panel bracket, thereby improving the sealing effect between the panel and the panel bracket.
[0014] Furthermore, the lower surface edge of the panel protrudes to form a first adhesive-blocking step extending circumferentially along the panel, the first adhesive-blocking step pressing against the upper surface of the cover body. In some embodiments, providing the first adhesive-blocking step can effectively prevent adhesive overflow.
[0015] Furthermore, the panel support is located inside the hood body, and an adhesive-blocking space is formed between the first adhesive-blocking step, the panel support, and the hood body. A gap exists between the panel support and the first adhesive-blocking step, connecting the first adhesive area and the adhesive-blocking space. In some embodiments, adhesive in the first adhesive area can overflow into the adhesive-blocking space, sealing the panel, the panel support, and the hood body, thereby further improving the sealing effect.
[0016] Furthermore, the adhesive area includes a second adhesive area; the cover assembly has a vertically penetrating vent, and the cover body includes a surrounding wall forming the vent; the panel support has a through hole, and the upper surface of the panel support is recessed to form a second glue injection groove extending circumferentially along the through hole; the surrounding wall extends through the through hole and, together with the second glue injection groove and the panel, forms the second adhesive area. In some embodiments, providing a second glue injection groove increases the contact area between the adhesive and the panel support, thereby improving the sealing effect between the panel and the panel support.
[0017] Furthermore, the lower surface of the panel protrudes to form a second adhesive-blocking step extending circumferentially along the vent hole, the second adhesive-blocking step pressing against the upper surface of the enclosure. In some embodiments, providing the second adhesive-blocking step can effectively prevent adhesive overflow.
[0018] Furthermore, it also includes a second sealing structure that is sealed and clamped between the panel support and the enclosure. In some embodiments, this provides a better seal for the hood assembly.
[0019] Furthermore, it also includes a connector. The hood body includes an annular main body sidewall and a main body bottom wall connected to the bottom of the main body sidewall. A mounting seat is protruding from the upper surface of the main body bottom wall. The connector passes through the panel bracket and is fixedly connected to the mounting seat. In some embodiments, this provides a good fixing effect between the hood body and the panel bracket.
[0020] This application provides a food processor, which includes:
[0021] A base, including a base and a support extending upward from the base;
[0022] The cooking cup assembly is assembled onto the base;
[0023] The lid assembly as described in any of the above embodiments is assembled on the support base, and the lid assembly covers the top of the cooking cup assembly.
[0024] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit this application. Attached Figure Description
[0025] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0026] Figure 1 The image shown is a perspective cross-sectional view of a food processor according to an exemplary embodiment of this application;
[0027] Figure 2 As shown Figure 1 An exploded perspective view of the lid assembly of the food processor shown.
[0028] Figure 3 As shown Figure 1 A perspective sectional view of the lid assembly of the food processor shown;
[0029] Figure 4 As shown Figure 1 A longitudinal sectional view of the lid assembly of the food processor shown;
[0030] Figure 5 As shown Figure 3 A partial enlarged view of the hood assembly shown;
[0031] Figure 6 As shown Figure 3 Another enlarged view of a portion of the hood assembly shown;
[0032] Figure 7 As shown Figure 1 A three-dimensional schematic diagram of the panel of the lid assembly of the food processor shown;
[0033] Figure 8 As shown Figure 1 The diagram shows a three-dimensional representation of the panel support and the main body of the lid assembly of the food processor. Detailed Implementation
[0034] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0035] The terminology used in this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. Unless otherwise defined, the technical or scientific terms used in this application should be understood in their ordinary sense by one of ordinary skill in the art to which this application pertains. The use of words such as “a” or “one” in this specification and claims does not indicate a limitation of quantity, but rather indicates the presence of at least one. The use of words such as “comprising” or “including” means that the element or object preceding “comprising” or “including” encompasses the element or object listed following “comprising” or “including” and its equivalents, and does not exclude other elements or objects. The use of words such as “connected” or “linked” is not limited to physical or mechanical connections and can include electrical connections, whether direct or indirect. The singular forms “a,” “the,” and “the” used in this specification and appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used herein refers to and includes any or all possible combinations of one or more associated listed items.
[0036] To better understand the technical solution of this application, the lid assembly and food processor of this application will be described in detail below with reference to the accompanying drawings. Unless otherwise specified, the features in the following embodiments and implementations can be combined with each other.
[0037] Figure 1 The image shown is a perspective cross-sectional view of a food processor 100 according to an exemplary embodiment of this application. See also... Figure 1 As shown, this application provides a food processor 100, which can be a blender, kettle, coffee maker, or other similar device. In some embodiments, the blender may include a high-speed blender, soy milk maker, juicer, or baby food maker; this application does not impose any limitations. The food processor 100 includes a base 10, a blending cup assembly 11, and a lid assembly 12.
[0038] The base 10 includes a base 13 and a support 14 extending upward from the base 13. The support 14 and the base 13 can be integrally formed or separately formed and then assembled together.
[0039] The blending cup assembly 11 is assembled to the base 13. The blending cup assembly 11 can be detachably assembled to the base 13, allowing it to be removed for cleaning. The support base 14 can be located on one side of the base 13, and the blending cup assembly 11 can be located on the other side, resulting in a more compact and rational overall layout. In one embodiment, the blending cup assembly 11 includes a blending cup body 15, which can hold the ingredients to be blended. The cross-section of the blending cup body 15 can be square or circular.
[0040] The hood assembly 12 is assembled to the support base 14, and the hood assembly 12 covers the cooking cup assembly 11. In one embodiment, the hood assembly 12 is rotatably assembled to the support base 14. In another embodiment, the hood assembly 12 is detachably assembled to the support base 14, and the hood assembly 12 can be detached in the vertical direction. The machine base 10 and the hood assembly 12 can be in the shape of a "匚" character to wrap the cooking cup assembly 11.
[0041] Figure 2 As shown Figure 1 The perspective exploded view of the hood assembly 12 of the cooking machine 100 shown. Figure 3 As shown Figure 1 The perspective cross-sectional view of the hood assembly 12 of the cooking machine 100 shown. Figure 4 As shown Figure 1 The longitudinal cross-sectional view of the hood assembly 12 of the cooking machine 100 shown. Refer to Figures 2 to 4 As shown, the present application provides a hood assembly 12, and the hood assembly 12 includes a hood body 16, a panel assembly 17 and a first sealing structure 18.
[0042] The panel assembly 17 is disposed above the hood body 16 and connected to the hood body 16. Among them, the panel assembly 17 and the hood body 16 can enclose a receiving space 19. The receiving space 19 can be used to accommodate the control component 20. Among them, the control component 20 can be a control circuit board. The first sealing structure 18 includes a main body sealing portion 21 disposed around the lower part of the panel assembly 17. The main body sealing portion 21 includes a transverse sealing portion 22 and a longitudinal sealing portion 23. The transverse sealing portion 22 extends horizontally and is sealed and clamped between the lower surface of the panel assembly 17 and the upper surface of the hood body 16. The longitudinal sealing portion 23 extends downward from the transverse sealing portion 22 and is sealed and pressed against the inner surface of the hood body 16. In this way, through the transverse sealing portion 22 and the longitudinal sealing portion 23 of the first sealing structure 18 for sealing, it can effectively prevent liquid from entering the interior of the hood assembly 12. In this way, the sealing effect of the hood assembly 12 is good, the effective separation of water and electricity can be achieved, and the safety is improved.
[0043] Figure 5 As shown Figure 3 The enlarged view of the partial 12a of the hood assembly 12 shown. Refer to Figure 5As shown, in one embodiment, the lower surface of the panel assembly 17 has a first mounting protrusion 24 extending circumferentially along the panel assembly 17. The first sealing structure 18 also includes a mounting portion 25 connected to the side surface of the longitudinal sealing portion 23. A first mounting groove 26 is formed between the side surface of the longitudinal sealing portion 23 and the mounting portion 25. The first mounting protrusion 24 is engaged within the first mounting groove 26, thereby sealingly clamping the longitudinal sealing portion 23 between the inner surface of the cover body 16 and the first mounting protrusion 24. The first mounting protrusion 24 being engaged within the first mounting groove 26 prevents the first sealing structure 18 from moving and restricts its position. Simultaneously, the sealing effect of the longitudinal sealing portion 23 against the inner surface of the cover body 16 is improved. In one embodiment, the thickness of the longitudinal sealing portion 23 is greater than the distance between the first mounting protrusion 24 and the inner surface of the cover body 16. The longitudinal sealing part 23 can be interference-fitted with the first mounting protrusion 24 and the inner surface of the cover body 16, so that the longitudinal sealing part 23 can effectively seal against the inner surface of the cover body 16, thus achieving a better sealing effect.
[0044] In another embodiment, the lower surface of the panel assembly 17 is recessed to form a second mounting groove (not shown in the figure). The first sealing structure 18 also includes a mounting portion 25 connected to the side surface of the longitudinal sealing portion 23, and the upper surface of the mounting portion 25 is provided with a second mounting protrusion (not shown in the figure). The second mounting protrusion is engaged within the second mounting groove. This prevents the first sealing structure 18 from moving, restricts the position of the first sealing structure 18, and simplifies the processing of the first sealing structure 18.
[0045] See also Figure 2 and Figure 5As shown, in one embodiment, the hood body 16 includes an annular body sidewall 27 and a support protrusion 28 disposed on the inner surface of the body sidewall 27. In one embodiment, there are multiple support protrusions 28, which are arranged at intervals along the circumference of the body sidewall 27, thus making the hood assembly 12 lighter. In another embodiment, the support protrusions 28 extend circumferentially along the body sidewall 27, forming annular support protrusions 28, which provides better support. The upper surface of the support protrusion 28 may be lower than or flush with the upper surface of the body sidewall 27. A transverse sealing portion 22 is sealed and clamped between the lower surface of the panel assembly 17 and the upper surface of the support protrusion 28. A longitudinal sealing portion 23 is sealed and pressed against the inner surface of the support protrusion 28. The longitudinal sealing portion 23 may be sealed and clamped between the inner surface of the support protrusion 28 and the first mounting protrusion 24. The support protrusion 28 can effectively support the first sealing structure 18 and restrict its position. It can also cooperate with the first mounting protrusion 24 to further restrict the position of the first sealing structure 18.
[0046] Figure 6 As shown Figure 3 An enlarged view of another part 12b of the hood assembly 12 shown. Figure 7 As shown Figure 1 A perspective view of the panel 29 of the lid assembly 12 of the food processor 100 shown. Figure 8 As shown Figure 1 A perspective view of the panel support 30 and the lid body 16 of the food processor 100 lid assembly 12 shown. (See also...) Figures 4 to 8As shown, in one embodiment, the panel assembly 17 includes a panel 29 and a panel bracket 30, with the panel bracket 30 located below the panel 29 and connected to the hood body 16. The panel bracket 30 may be located inside the hood body 16. In one embodiment, the hood assembly 17 further includes a connector 43, which may be a screw. The hood body 16 includes an annular body sidewall 27 and a body bottom wall 44 connected to the bottom of the body sidewall 27. A mounting base 45 protrudes from the upper surface of the body bottom wall 44. The connector 43 passes through the panel bracket 30 and is fixedly connected to the mounting base 45. This provides a good fixing effect between the hood body 16 and the panel bracket 30. The panel bracket 30 can be fixedly positioned above the hood body 16. An adhesive area is provided between the panel 29 and the panel bracket 30. Adhesive can be applied to the adhesive area to seal and fix the panel 29 and the panel bracket 30 with adhesive. An adhesive area is provided between panel 29 and panel bracket 30, which can effectively seal panel 29 and panel bracket 30, thus improving the sealing effect of hood assembly 12. At the same time, since the first sealing structure 18 can seal hood body 16 and panel bracket 30, the adhesive area does not need to be located at the intersection of panel 29, panel bracket 30 and hood body 16, but can be located at any position to achieve sealing of panel 29 and panel bracket 30, thus facilitating the assembly of hood assembly 12.
[0047] In one embodiment, a buckle 31 is provided on the side of the panel 29 facing the panel support 30. The panel 29 can be snapped onto the panel support 30 by the buckle 31. In this way, the panel 29 can be set on the panel support 30 by adhesive and snapping, which is more stable.
[0048] In one embodiment, the adhesive area includes a first adhesive area 32. A first glue injection groove 33 extending circumferentially along the upper surface edge of the panel support 30 is recessed. The first glue injection groove 33 and the panel 29 enclose each other to form the first adhesive area 32. The first glue injection groove 33 increases the contact area between the adhesive and the panel support 30, thereby improving the sealing effect between the panel 29 and the panel support 30.
[0049] In one embodiment, the lower surface edge of the panel 29 protrudes to form a first adhesive-blocking step 34 extending circumferentially along the panel 29, and the first adhesive-blocking step 34 presses against the upper surface of the cover body 16. Providing the first adhesive-blocking step 34 can effectively prevent adhesive from overflowing.
[0050] In one embodiment, the panel support 30 is located inside the hood body 16. A sealing space 35 is formed between the first adhesive-blocking step 34, the panel support 30, and the hood body 16. A gap exists between the panel support 30 and the first adhesive-blocking step 34, connecting the first adhesive area 32 and the sealing space 35. This allows adhesive in the first adhesive area 32 to overflow into the sealing space 35, sealing the panel 29, the panel support 30, and the hood body 16, thereby further improving the sealing effect.
[0051] See Figure 6 , Figure 7 and Figure 8 As shown, in one embodiment, the adhesive area includes a second adhesive area 36. The lid assembly 12 has a vertically penetrating vent 37, through which steam from the cooking cup assembly 11 can be released, thus enabling venting. The lid body 16 includes a surrounding wall 38 that encloses the vent 37. The panel support 30 has a through hole 39 that is vertically penetrating. The upper surface of the panel support 30 is recessed to form a second glue injection groove 40 extending circumferentially along the through hole 39. The surrounding wall 38 extends through the through hole 39 and, together with the second glue injection groove 40 and the panel 29, encloses the second adhesive area 36. The second glue injection groove 40 increases the contact area between the adhesive and the panel support 30, thereby improving the sealing effect between the panel 29 and the panel support 30.
[0052] In one embodiment, the lower surface of the panel 29 protrudes to form a second adhesive-blocking step 41 extending circumferentially along the vent 37, and the second adhesive-blocking step 41 abuts against the upper surface of the enclosure 38. Providing the second adhesive-blocking step 41 effectively prevents adhesive overflow. The sidewall of the second adhesive injection groove 40 away from the enclosure 38 may be located inside the second adhesive-blocking step 41.
[0053] In one embodiment, the hood assembly 12 further includes a second sealing structure 42, which is sealed and clamped between the panel support 30 and the enclosure 38. Specifically, the second sealing structure 42 can be sealed and clamped between the inner surface of the through hole 39 and the side of the enclosure 38. Alternatively, the second sealing structure 42 can be sealed and clamped between the outer edge of the through hole 39 away from the second injection groove 40 and the upper surface of the enclosure 38. This provides a better sealing effect for the hood assembly 12.
[0054] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.
Claims
1. A hood assembly, characterized in that, The device includes a hood body (16), a panel assembly (17), and a first sealing structure (18). The panel assembly (17) is located above the hood body (16) and connected to it. The first sealing structure (18) includes a main sealing portion (21) surrounding the panel assembly (17) below it. The main sealing portion (21) includes a transverse sealing portion (22) and a longitudinal sealing portion (23). The transverse sealing portion (22) extends laterally and is sealed and clamped between the lower surface of the panel assembly (17) and the upper surface of the hood body (16). The longitudinal sealing portion (23) extends downward from the transverse sealing portion (22) and is sealed and pressed against the inner surface of the hood body (16).
2. The hood assembly according to claim 1, characterized in that, The lower surface of the panel assembly (17) has a first mounting protrusion (24) extending circumferentially along the panel assembly (17); the first sealing structure (18) further includes a mounting portion (25) connected to the side surface of the longitudinal sealing portion (23), a first mounting groove (26) is formed between the side surface of the longitudinal sealing portion (23) and the mounting portion (25), the first mounting protrusion (24) is held in the first mounting groove (26), and the longitudinal sealing portion (23) is sealed and clamped between the inner surface of the cover body (16) and the first mounting protrusion (24).
3. The hood assembly according to claim 2, characterized in that, The thickness of the longitudinal sealing portion (23) is greater than the distance between the first mounting protrusion (24) and the inner surface of the cover body (16).
4. The hood assembly according to claim 1, characterized in that, The lower surface of the panel assembly (17) is recessed to form a second mounting groove; the first sealing structure (18) further includes a mounting portion (25) connected to the side surface of the longitudinal sealing portion (23), and the upper surface of the mounting portion (25) is provided with a second mounting protrusion; the second mounting protrusion is held in the second mounting groove.
5. The hood assembly according to claim 1, characterized in that, The main body (16) of the cover includes an annular main body sidewall (27) and a support protrusion (28) provided on the inner surface of the main body sidewall (27); the transverse sealing part (22) is sealed and clamped between the lower surface of the panel assembly (17) and the upper surface of the support protrusion (28); the longitudinal sealing part (23) is sealed and pressed against the inner surface of the support protrusion (28).
6. The hood assembly according to claim 5, characterized in that, The number of the supporting protrusions (28) is multiple, and the multiple supporting protrusions (28) are arranged at intervals along the circumferential direction of the main body sidewall (27); or The support protrusion (28) extends circumferentially along the side wall (27) of the main body.
7. The hood assembly according to claim 1, characterized in that, The panel assembly (17) includes a panel (29) and a panel bracket (30), the panel bracket (30) being located below the panel (29) and connected to the cover body (16); an adhesive area is provided between the panel (29) and the panel bracket (30).
8. The hood assembly according to claim 7, characterized in that, The adhesive area includes a first adhesive area (32); the upper surface edge of the panel support (30) is recessed to form a first glue injection groove (33) extending circumferentially along the panel support (30); the first glue injection groove (33) and the panel (29) enclose the first adhesive area (32).
9. The hood assembly according to claim 8, characterized in that, The lower surface edge of the panel (29) protrudes to form a first adhesive-blocking step (34) extending circumferentially along the panel (29), and the first adhesive-blocking step (34) presses against the upper surface of the cover body (16).
10. The hood assembly according to claim 9, characterized in that, The panel support (30) is located inside the cover body (16). The first adhesive-blocking step (34), the panel support (30) and the cover body (16) enclose an adhesive-blocking space (35). There is a gap between the panel support (30) and the first adhesive-blocking step (34). The gap connects the first adhesive area (32) and the adhesive-blocking space (35).
11. The hood assembly according to claim 7, characterized in that, The adhesive area includes a second adhesive area (36); the cover assembly (12) is provided with an exhaust hole (37) that runs vertically through it; the cover body (16) includes a surrounding wall (38) that surrounds the exhaust hole (37); the panel support (30) is provided with a through hole (39); the upper surface of the panel support (30) is recessed to form a second glue injection groove (40) that extends circumferentially along the through hole (39); the surrounding wall (38) extends through the through hole (39) and surrounds the second glue injection groove (40) and the panel (29) to form the second adhesive area (36).
12. The hood assembly according to claim 11, characterized in that, The lower surface of the panel (29) protrudes to form a second adhesive-blocking step (41) extending circumferentially along the vent (37), and the second adhesive-blocking step (41) presses against the upper surface of the enclosure (38).
13. The hood assembly according to claim 11, characterized in that, It also includes a second sealing structure (42), which is sealed between the panel support (30) and the enclosure (38).
14. The hood assembly according to claim 7, characterized in that, It also includes a connector (43). The main body (16) of the cover includes an annular main body sidewall (27) and a main body bottom wall (44) connected to the bottom of the main body sidewall (27). The upper surface of the main body bottom wall (44) is provided with a mounting seat (45). The connector (43) passes through the panel bracket (30) and is fixedly connected to the mounting seat (45).
15. A food processor, characterized in that, include: The base (10) includes a base (13) and a support (14) extending upward from the base (13); The cooking cup assembly (11) is assembled on the base (13); The lid assembly (12) as described in any one of claims 1-14 is assembled to the support base (14), and the lid assembly (12) covers the top of the cooking cup assembly (11).