Pot body assembly and cooking utensil

The design of the guide arm and guide sleeve simplifies the number of parts in the pot assembly, solves the assembly error problem, improves the interlocking accuracy and stability, and reduces the risk of jamming.

CN223529292UActive Publication Date: 2025-11-11ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202422661297.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-11-11
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The existing pot body assembly uses a lot of parts during the assembly process, which can easily lead to assembly errors. This can cause jamming when the drive structure and the stirring component are disconnected and plugged in.

Method used

The design employs a guide arm and guide sleeve. The drive component is mounted on the guide arm, and the propulsion component is guided and engaged with the guide arm through the guide sleeve. This simplifies the number of parts and improves the guiding accuracy through the structural strength of the guide arm, ensuring accurate mating.

Benefits of technology

This reduces assembly errors, lowers the risk of jamming due to misalignment between the drive structure and the stirring assembly, and improves assembly efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a pot body assembly and a cooking utensil, and the pot body assembly comprises a pot body which is provided with a guide arm; the inner container is arranged on the pot body in a removable manner; the stirring assembly comprises a stirring structure rotationally arranged on the inner container and a first plug-in piece for driving the stirring structure to rotate; the driving structure comprises a driving piece arranged on the guide arm, a second plug-in piece movably arranged on the driving piece and a pushing piece arranged on the second plug-in piece, the driving piece can drive the second plug-in piece to rotate, the pushing piece can drive the second plug-in piece to move, and the second plug-in piece can be matched with the first plug-in piece in a plug-in mode or separated from the first plug-in piece in a plug-in mode; wherein a guide sleeve is arranged on the propelling piece, and the guide sleeve is arranged outside the guide arm in a sleeving mode so as to be in guide fit with the guide arm. According to the technical scheme, the problems that in the prior art, the number of parts used in the assembling process of a pot body assembly is large, and assembling errors are likely to be generated are effectively solved.
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Description

Technical Field

[0001] This utility model relates to the field of small household appliance technology, and more specifically, to a pot body assembly and a cooking utensil. Background Technology

[0002] With the improvement of living standards, automated cooking appliances have gradually entered the public eye and are loved by many users due to their ease of operation. Among them, the stir-fry machine is one such appliance. The stir-fry machine uses a drive structure to rotate the stirring component, thereby realizing the stir-frying function of ingredients.

[0003] To facilitate user operation, the inner pot of cooking utensils is generally vertically detachable and can be placed on the outer pot. The direction in which the user places or removes the pot is perpendicular to the direction of the rotation axis of the stirring component. Therefore, when the user removes or removes the inner pot, the stirring component needs to be disconnected from the drive structure first.

[0004] Currently, in cooking appliances, the drive mechanism of the pot body assembly and the stirring mechanism of the stirring assembly are connected by a first pair of plugs and a second pair of plugs. When the first and second pairs of plugs are engaged, the drive mechanism and the stirring assembly are connected; when the first and second pairs of plugs are disengaged, the drive mechanism and the stirring assembly are disengaged. This disengagement of the drive mechanism from the stirring assembly can be achieved using a button structure, a magnetic component, or a lid-driven drive mechanism. However, since the drive mechanism in the pot body assembly is mounted on a drive mechanism mounting bracket, which is then mounted on the outer pot shell, and the propulsion component of the drive mechanism is mounted on a guide frame, which is then mounted on the shell, the propulsion component facilitates the movement of the second pair of plugs on the drive mechanism.

[0005] The assembly of the above-mentioned pot body components involves a large number of parts, which can easily lead to assembly errors. The second pair of plugs and the first pair of inserts are prone to misalignment, which can cause the drive structure and the stirring component to become disengaged and jammed, or even fail to be inserted smoothly. Utility Model Content

[0006] The main purpose of this utility model is to provide a pot body assembly and cooking appliance to solve the problem that the pot body assembly process in related technologies uses a lot of parts and is prone to assembly errors.

[0007] To achieve the above objectives, according to one aspect of the present invention, a pot assembly is provided, comprising: a pot body with a guide arm disposed thereon; an inner liner detachably disposed on the pot body; a stirring assembly including a stirring structure rotatably disposed on the inner liner and a first pair of inserts for driving the stirring structure to rotate; and a driving structure including a driving member disposed on the guide arm, a second pair of inserts movably disposed on the driving member, and a pushing member disposed on the second pair of inserts, wherein the driving member can drive the second pair of inserts to rotate, the pushing member can drive the second pair of inserts to move, and the second pair of inserts can engage or disengage with the first pair of inserts; wherein the pushing member is provided with a guide sleeve, which is sleeved outside the guide arm for guiding engagement with the guide arm.

[0008] By applying the technical solution of this utility model, when the second pair of plugs is engaged with the first pair of plugs, the driving component drives the first pair of plugs to rotate via the second pair of plugs, thereby driving the stirring structure to rotate so that the stirring structure can stir the food inside the inner pot; when the second pair of plugs is disengaged from the first pair of plugs, the driving structure no longer engages with the stirring component, and the inner pot can be removed from the heat preservation cover. A guide sleeve is provided on the propulsion component, which is fitted over the guide arm for guiding engagement with the guide arm. Since the driving component is mounted on the guide arm, and the propulsion component is guided and engaged with the guide arm via the guide sleeve, it is convenient for the propulsion component to also be mounted on the guide arm. This reduces the number of parts used in the drive structure on the guide arm, simplifying the assembly process of the pot body assembly and reducing assembly errors. Furthermore, it facilitates the smooth disengagement of the second pair of plugs from the first pair of plugs, reducing the possibility of jamming when the drive structure and stirring component are disengaged. Therefore, the technical solution of this application effectively solves the problem in related technologies where the pot body assembly process involves many parts, easily leading to assembly errors.

[0009] Furthermore, the guide arm includes an arm body connected to the pot body and a guide post disposed on the arm body. A drive component is disposed at the end of the guide post, and a guide sleeve is fitted over the guide post for guiding engagement. The guide post disposed on the arm body improves the structural strength of the guide post, increases its ability to support the propulsion component, and prevents potential wobbling of the guide post during the guiding engagement between the guide sleeve and the guide post. Moreover, the guiding engagement between the guide sleeve and the guide post effectively restricts the movement direction of the guide sleeve, preventing wobbling during movement and improving the accuracy of the mating fit between the drive structure and the stirring assembly.

[0010] Furthermore, the cross-sectional area of ​​the arm gradually decreases from the inside to the outside of the pot body. This design helps to improve the structural strength of the guide arm, reduce the deformation of the guide post under external forces, thereby ensuring the straightness of the guide post and further improving the guiding fit accuracy between the guide sleeve and the guide post.

[0011] Furthermore, the drive component is snapped or screwed onto the end of the guide arm. This fixing method ensures accurate installation of the drive component on the guide post, reduces the inconsistency in stirring operation caused by drive component misalignment, and also facilitates the disassembly and maintenance of the drive component.

[0012] Furthermore, the rotation axis of the stirring structure extends laterally, the axial direction of the drive shaft of the drive component is parallel to or coincides with the lateral direction, and the guiding engagement direction of the guide sleeve and the guide arm is parallel to the lateral direction. This structure ensures accurate alignment between the drive component and the stirring structure, facilitating the smooth insertion or disengagement of the second pair of inserts with the first pair.

[0013] Furthermore, there are two guide arms and two guide sleeves, with each guide sleeve corresponding to one of the two guide arms. The two guide arms are spaced apart on both sides of the second pair of inserts. This design enhances the stability of the guide sleeves and guide posts, ensures the alignment accuracy of the second pair of inserts with the first pair of inserts in multiple directions, and reduces the risk of jamming and insertion failure during operation.

[0014] Furthermore, the propulsion component includes a propulsion body and two connecting plates connected to both sides of the propulsion body. The propulsion body is snapped onto the second pair of inserts, and the two connecting plates are respectively connected to two guide sleeves, which are located on both sides of the propulsion body. This design makes the movement of the propulsion component on the guide arm smoother. The two guide sleeves guide both sides of the propulsion body, improving the stability of the movement of the second pair of inserts and reducing misalignment during insertion.

[0015] Furthermore, the pot body includes a shell and a heat insulation cover disposed within the shell. The inner liner is removably mounted on the heat insulation cover, and the guide arm is mounted on the heat insulation cover. This layered structure design formed by the shell and the heat insulation cover not only facilitates the removal and placement of the inner liner but also makes the drive structure and the stirring assembly fit together more closely.

[0016] Furthermore, the guide arm and the insulation cover are integrally molded structures; and / or, the guide sleeve and the propulsion component are integrally molded structures. The aforementioned integrally molded structure design reduces the number of parts, simplifies the assembly process of the pot body components, improves the overall structural strength and stability, and reduces the problems of misalignment or jamming caused by assembly errors between parts due to the large number of parts.

[0017] According to another aspect of the present invention, a cooking utensil is provided, including a pot body assembly and a lid disposed on the pot body assembly, wherein the pot body assembly is the pot body assembly described above. Attached Figure Description

[0018] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:

[0019] Figure 1 An exploded structural diagram of an embodiment of the pot body assembly according to the present invention is shown, wherein the shell is not shown;

[0020] Figure 2 It shows Figure 1 A partial structural diagram of the pot body assembly;

[0021] Figure 3 A perspective structural schematic diagram of an embodiment of the pot body assembly according to the present invention is shown, wherein the shell is not shown;

[0022] Figure 4 It shows Figure 3 An enlarged schematic diagram of point A of the pot body assembly;

[0023] Figure 5 It shows Figure 3 A cross-sectional schematic diagram of the pot body components;

[0024] Figure 6 It shows Figure 5 An enlarged schematic diagram of point B of the pot body assembly.

[0025] The above figures include the following reference numerals:

[0026] 10. Pot body; 11. Guide arm; 111. Arm body; 112. Guide column; 12. Insulation cover;

[0027] 20. Inner liner;

[0028] 30. Stirring assembly; 31. Stirring structure; 32. First pair of inserts; 33. Fixing pin; 34. Stirring shaft;

[0029] 40. Drive structure; 41. Drive component; 411. Drive body; 412. Connecting ear; 42. Second pair of plugs; 421. Snap ring; 43. Push component; 431. Push body; 432. Connecting plate; 433. Slot; 44. Reset component; 45. Guide sleeve;

[0030] L, the axis of rotation of the stirring structure;

[0031] 52. Magnet; 53. Sealing plug; 54. Support. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the present utility model or its application or use. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0033] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0034] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps described in these embodiments do not limit the scope of this invention. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0035] like Figures 1 to 6As shown, according to one aspect of this utility model, a pot assembly is provided, comprising: a pot body 10, an inner liner 20, a stirring assembly 30, a driving structure 40, and a propulsion member 43. A guide arm 11 is provided on the pot body 10. The inner liner 20 is detachably mounted on the pot body 10. The stirring assembly 30 includes a stirring structure 31 rotatably mounted on the inner liner 20 and a first pair of inserts 32 that drive the stirring structure 31 to rotate. The driving structure 40 includes a driving member 41 mounted on the guide arm 11, a second pair of inserts 42 movably mounted on the driving member 41, and a propulsion member 43 mounted on the second pair of inserts 42. The driving member 41 can drive the second pair of inserts 42 to rotate, and the propulsion member 43 can drive the second pair of inserts 42 to move. The second pair of inserts 42 can engage or disengage with the first pair of inserts 32. A guide sleeve 45 is provided on the propulsion member 43, which is fitted over the guide arm 11 for guiding engagement with the guide arm 11.

[0036] Applying the technical solution of this embodiment, when the second pair of plug-in 42 is engaged with the first pair of plug-in 32, the driving component 41 drives the first pair of plug-in 32 to rotate via the second pair of plug-in 42, thereby driving the stirring structure 31 to rotate, so that the stirring structure 31 can stir the food in the inner pot 20; when the second pair of plug-in 42 is disengaged from the first pair of plug-in 32, the driving structure 40 no longer engages with the stirring component 30, and the inner pot 20 can be removed from the heat preservation cover 12. A guide sleeve 45 is provided on the propulsion component 43, which is fitted over the guide arm 11 for guiding engagement with the guide arm 11. Since the driving component 41 is mounted on the guide arm 11, and the propulsion component 43 is guided and engaged with the guide arm 11 via the guide sleeve 45, it is convenient for the propulsion component 43 to also be mounted on the guide arm 11. This reduces the number of parts used on the guide arm 11 by the driving structure 40, simplifying the assembly process of the pot body assembly and reducing assembly errors. This facilitates the smooth disconnection of the second pair of plug-in 42 from the first pair of plug-in 32, reducing the possibility of jamming when the drive structure 40 and the stirring assembly 30 are disconnected. Therefore, the technical solution of this embodiment effectively solves the problem in related technologies where the assembly of the pot body assembly involves a large number of parts, which can easily lead to assembly errors.

[0037] In this embodiment, the second pair of plug-in 42 has multiple mating teeth on its outer surface, and the first pair of plug-in 32 has multiple slots that mate with the multiple mating teeth. When the multiple mating teeth mate with the multiple slots, the second pair of plug-in 42 and the first pair of plug-in 32 mate with each other. When the multiple mating teeth disengage from the multiple slots, the second pair of plug-in 42 and the first pair of plug-in 32 disengage.

[0038] like Figures 1 to 4As shown, the guide arm 11 includes an arm body 111 connected to the pot body 10 and a guide post 112 disposed on the arm body 111. A drive component 41 is disposed at the end of the guide post 112. This direct placement of the drive component 41 at the end of the guide post 112 reduces the need for a separate installation structure for the drive component 41, simplifies the assembly process, and reduces production costs. A guide sleeve 45 is fitted over the guide post 112 for guiding engagement. The guide post 112 disposed on the arm body 111 improves the structural strength of the guide post 112, increases its ability to support the propulsion component 43, and prevents potential wobbling of the guide post 112 during the guiding engagement of the guide sleeve 45 and the guide post 112. Furthermore, the guiding engagement of the guide sleeve 45 and the guide post 112 effectively restricts the movement direction of the guide sleeve 45, preventing wobbling during movement and improving the accuracy of the mating between the drive structure and the stirring assembly.

[0039] In this embodiment, the guide post 112 is connected to the end face of the arm 111 facing away from the interior of the pot body 10, and the drive member 41 is connected to the end face of the guide post 112 facing away from the arm 111. In the direction in which the guide sleeve 45 guides and engages with the guide arm 11, the guide sleeve 45 is located between the arm 111 and the drive member 41. This structural design ensures that the guide sleeve 45 moves along a predetermined path. At the same time, the position of the guide sleeve 45 is restricted between the drive member 41 and the stirring assembly, thereby improving the guiding accuracy of the guide sleeve 45 and preventing interference between the position of the drive member 41 and the guiding of the guide sleeve 45 and the guide post 112.

[0040] like Figures 1 to 4 As shown, the cross-sectional area of ​​the arm 111 gradually decreases from the inside of the pot body 10 to the outside of the pot body 10. This design helps to improve the structural strength of the guide arm 111, reduce the deformation of the guide post 112 under external force, thereby ensuring the straightness of the guide post 112 and further improving the guiding fit accuracy between the guide sleeve 45 and the guide post 112.

[0041] like Figures 1 to 4 As shown, the drive component 41 is screwed to the end of the guide arm 11. This fixing method ensures that the drive component 41 is accurately installed on the guide post 112, reduces the inconsistency in stirring operation caused by the misalignment of the drive component 41, and also facilitates the disassembly, assembly, and maintenance of the drive component 41.

[0042] In this embodiment, the drive component 41 includes a drive body 411 and a connecting ear 412 connected to the drive body 411. The connecting ear 412 is fixed to the end of the guide arm 11 by screws. The drive component 41 is preferably a motor.

[0043] In other embodiments, the drive element 41 is snapped onto the end of the guide arm 11.

[0044] like Figures 1 to 5 As shown, the rotation axis L of the stirring structure extends in the transverse direction, the axial direction of the drive shaft of the drive member 41 coincides with the transverse direction, and the guiding engagement direction of the guide sleeve 45 and the guide arm 11 is parallel to the transverse direction. This ensures accurate alignment between the drive member 41 and the stirring structure 31, facilitating the smooth insertion or disengagement of the second pair of inserts 42 with the first pair of inserts 32. When the second pair of inserts 42 is inserted and engaged with the first pair of inserts 32, it reduces the mechanical noise and energy loss during stirring by the stirring structure 31, thereby improving cooking efficiency.

[0045] In other embodiments, the axial direction of the drive shaft of the drive member 41 is parallel to the lateral direction.

[0046] like Figures 1 to 4 As shown, there are two guide arms 11 and two guide sleeves 45, with each guide sleeve 45 corresponding to one guide arm 11. The two guide arms 11 are spaced apart on both sides of the second pair of inserts 42. This design enhances the stability of the guide sleeves 45 and guide posts 112, ensuring the alignment accuracy of the second pair of inserts 42 with the first pair of inserts 32 in multiple directions, and reducing the risk of jamming and insertion failure during operation.

[0047] like Figures 1 to 4 As shown, the propulsion component 43 includes a propulsion body 431 and two connecting plates 432 connected to both sides of the propulsion body 431. The propulsion body 431 is snapped onto the second pair of inserts 42, and the two connecting plates 432 are respectively connected to two guide sleeves 45, which are located on both sides of the propulsion body 431. This design makes the movement of the propulsion component 43 on the guide arm 11 smoother. The two guide sleeves 45 guide both sides of the propulsion body 431, improving the stability of the movement of the second pair of inserts 42 and reducing offset during insertion. The propulsion component 43 is preferably a fork.

[0048] The propulsion body 431 is provided with a slot 433, and the second pair of plug-ins 42 is provided with a retaining ring 421, which engages with the slot 433. The engagement of the retaining ring 421 with the slot 433 ensures good synchronization between the propulsion body 431 and the second pair of plug-ins 42 during movement, preventing jamming or obstructed movement, and thus ensuring smooth insertion or disengagement of the second pair of plug-ins 42 with the first pair of plug-ins 32.

[0049] like Figures 1 to 4 As shown, the pot body 10 includes a shell and a heat insulation cover 12 disposed inside the shell. The inner liner 20 is detachably disposed on the heat insulation cover 12, and the guide arm 11 is disposed on the heat insulation cover 12. This layered structure design formed by the shell and the heat insulation cover 12 not only facilitates the removal and placement of the inner liner 20, but also makes the fit between the drive structure 40 and the stirring assembly 30 more tight.

[0050] like Figures 1 to 4 As shown, the guide arm 11 and the insulation cover 12 are integrally formed structures. The guide sleeve 45 and the pusher 43 are also integrally formed structures. The above-mentioned integrally formed structure design reduces the number of parts, simplifies the assembly process of the pot body components, improves the strength and stability of the overall structure, and reduces the problems of misalignment or jamming caused by assembly errors between parts due to the large number of parts.

[0051] like Figures 1 to 6 As shown, the drive structure 40 also includes a reset member 44 disposed between the propeller 43 and the outer side of the insulation cover 12. The reset member 44 applies a reset force to the propeller 43. The presence of the reset member 44 allows the propeller 43 to automatically reset after completing the task of driving the second pair of plugs 42 to move, reducing the number of manual steps required by the user and improving ease of use. The reset member 44 is preferably a spring.

[0052] In this embodiment, the fixing pin 33 passes through the first side of the inner liner 20 and is positioned in the first positioning groove of the heat insulation cover 12. The driving structure 40 also includes a stirring shaft 34 disposed at the first end of the stirring structure 31. The stirring shaft 34 is sleeved on the fixing pin 33. The second end of the stirring structure 31 passes through the second side of the inner liner 20 and is positioned in the second positioning groove of the heat insulation cover 12 by a support 54. The sealing plug 53 is disposed at the second end of the stirring structure 31 where it passes through the inner liner 20. A magnet 52 is fixed inside the pushing member 43. Thus, the pot assembly also includes an electromagnet that magnetically engages with the magnet 52. When the electromagnet is energized, a repulsive force is generated between the electromagnet and the magnet 52, which can push the pushing member 43 to move, so that the pushing member 43 drives the second pair of plug-in 42 to move toward the first pair of plug-in 32, so that the second pair of plug-in 42 can be inserted and engaged with the first pair of plug-in 32. When the magnet is de-energized, the second pair of plugs 42 is pushed away from the first pair of plugs 32 by the reset force of the reset member 44, so that the second pair of plugs 42 disengages from the first pair of plugs 32.

[0053] This application also provides a cooking appliance, an embodiment of which includes a pot body assembly and a lid disposed on the pot body assembly, wherein the pot body assembly is the aforementioned pot body assembly. Because the aforementioned pot body assembly can solve the problem in related technologies where the assembly process of a pot body assembly involves many parts, easily leading to assembly errors, the cooking appliance including this pot body assembly can solve the same technical problem.

[0054] In one embodiment, the cooking appliance is a stir-fry machine; in other embodiments, the cooking appliance is a dough mixer, a whipping machine, a soy milk maker, a blender, or a multi-functional pot.

[0055] In the description of this utility model, it should be understood that the directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this utility model. The directional terms "inner" and "outer" refer to the inner and outer contours of each component itself.

[0056] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.

[0057] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this utility model.

[0058] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A pot body assembly, characterized in that, include: A pot body (10) is provided with a guide arm (11); The inner liner (20) is removably mounted on the pot body (10); The stirring assembly (30) includes a stirring structure (31) rotatably disposed on the inner liner (20) and a first pair of inserts (32) that drive the stirring structure (31) to rotate; The drive structure (40) includes a drive member (41) disposed on the guide arm (11), a second pair of plugs (42) movably disposed on the drive member (41), and a pusher (43) disposed on the second pair of plugs (42). The drive member (41) can drive the second pair of plugs (42) to rotate, and the pusher (43) can drive the second pair of plugs (42) to move. The second pair of plugs (42) can be engaged or disengaged from the first pair of plugs (32). The propulsion component (43) is provided with a guide sleeve (45), which is sleeved on the outside of the guide arm (11) to guide and cooperate with the guide arm (11).

2. The pot body assembly according to claim 1, characterized in that, The guide arm (11) includes an arm body (111) connected to the pot body (10) and a guide post (112) disposed on the arm body (111). The drive member (41) is disposed at the end of the guide post (112), and the guide sleeve (45) is sleeved on the guide post (112) to guide and cooperate with the guide post (112).

3. The pot body assembly according to claim 2, characterized in that, The cross-sectional area of ​​the arm (111) gradually decreases from the inside of the pot body (10) to the outside of the pot body (10).

4. The pot body assembly according to any one of claims 1 to 3, characterized in that, The drive element (41) is snapped or screwed onto the end of the guide arm (11).

5. The pot body assembly according to any one of claims 1 to 3, characterized in that, The rotation axis (L) of the stirring structure extends in the transverse direction, the axial direction of the drive shaft of the drive member (41) is parallel to or coincides with the transverse direction, and the guiding engagement direction of the guide sleeve (45) and the guide arm (11) is parallel to the transverse direction.

6. The pot body assembly according to any one of claims 1 to 3, characterized in that, There are two guide arms (11) and two guide sleeves (45). The two guide sleeves (45) correspond one-to-one with the two guide arms (11). The two guide arms (11) are spaced apart on both sides of the second pair of plugs (42).

7. The pot body assembly according to claim 6, characterized in that, The propulsion component (43) includes a propulsion body (431) and two connecting plates (432) connected to both sides of the propulsion body (431). The propulsion body (431) is snapped onto the second pair of plugs (42). The two connecting plates (432) are respectively connected to the two guide sleeves (45), and the two guide sleeves (45) are respectively located on both sides of the propulsion body (431).

8. The pot body assembly according to any one of claims 1 to 3, characterized in that, The pot body (10) includes a shell and a heat insulation cover (12) disposed inside the shell. The inner liner (20) is detachably disposed on the heat insulation cover (12), and the guide arm (11) is disposed on the heat insulation cover (12).

9. The pot body assembly according to claim 8, characterized in that, The guide arm (11) and the heat insulation cover (12) are integrally formed; and / or, the guide sleeve (45) and the propulsion member (43) are integrally formed.

10. A cooking appliance, comprising a pot body assembly and a lid disposed on the pot body assembly, characterized in that, The pot body assembly is the pot body assembly according to any one of claims 1 to 9.