A pedestal for attaching each functional member of a cooking pot device and a cooking pot device including the same
The pedestal integrates key components of the cooking pot device, improving assembly accuracy and space efficiency by simplifying the internal structure.
Patent Information
- Application Number
- JP2024114219
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-08-16
- Filing Date
- 2024-07-17
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2044-07-17
AI Technical Summary
Conventional cooking pot devices have complex internal connection structures, low assembly accuracy, and poor space utilization.
A pedestal with a disk-column shape integrating a connection cylinder, mounting holes, fastening holes, gear plate holes, and a positioning structure for the stirring shaft, along with a recessed mounting position for a temperature sensor bracket, simplifies assembly and improves accuracy while optimizing space usage.
The integrated pedestal enhances assembly accuracy, simplifies the internal structure, and maximizes space utilization in the cooking pot device.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cooking appliances, and particularly to a pedestal for mounting each functional member of a cooking pot device of a smart cooking appliance.
Background Art
[0002] As an important functional member of a cooking appliance, the performance of the cooking pot device will affect the quality of the entire smart cooking appliance. Conventional cooking pot devices usually include a furnace core case, a heating coil, a cooking pot, a drive motor for driving the cooking pot to rotate, stirring blades, and a stirring blade motor. When connecting these members, it is necessary to provide a plurality of auxiliary connecting members. This type of cooking pot device has the following drawbacks.
[0003] 1. The internal connection structure is complex and the assembly accuracy is not high.
[0004] 2. The space utilization rate is not high.
Summary of the Invention
[0005] The technical problem to be solved by the present invention is to provide an integrated pedestal with high assembly accuracy for mounting each functional member of the cooking pot device.
[0006] In order to solve the above technical problems, according to the present invention, there is provided a pedestal for attaching each functional member of a cooking pot device. The main body of the pedestal has a disk-column shape. In the central part of the top surface of the main body, a connection cylinder extending upward is provided for attaching a stirring blade for stirring the food in the cooking pot. On the top surface located around the connection cylinder, a mounting hole for fixing the cooking pot to the pedestal and a fastening hole for fixing the pedestal to the inner ring of the rotational bearing are formed at intervals. The fastening hole is a through hole penetrating the pedestal from top to bottom. In a region close to the outer periphery of the bottom surface of the pedestal, tooth disk holes for fixing a driven tooth disk meshing with a driving gear to the pedestal are formed at intervals. The lower end surface of the fastening hole is lower than the lower end surface of the tooth disk hole. The outer ring of the rotational bearing is fixed to the bottom of the case of the cooking pot device, and a pedestal for attaching each functional member of the cooking pot device is provided.
[0007] Preferably, at a position around the top surface of the pedestal, a mounting position for attaching a temperature measurement sensor bracket is provided.
[0008] Preferably, the mounting position is a recessed position opening at the outer side.
[0009] A sealed cylinder seat having an axial passage is connected to the connection cylinder. A central passage is formed in the main body. The upper end of a stirring shaft that drives the stirring blade to rotate passes sequentially through the central passage and the axial passage from bottom to top and is connected to a connection seat of the stirring blade. The connection seat is provided on the sealed cylinder seat so as to be relatively rotatable. Preferably, the lower end of the stirring shaft is connected to the output end of a stirring motor provided below the pedestal.
[0010] The pedestal for attaching each functional member of the cooking pot device according to the present invention integrates and assembles a connecting cylinder, a mounting hole, a fastening hole, a gear plate hole, a positioning structure for fixing a bearing that plays a role in positioning with respect to a stirring shaft, a mounting position for attaching a temperature measuring sensor bracket, a wiring hole, and a cylindrical accommodating cavity thereon. With this single member, the attachment of each functional member of the cooking pot device can be realized, the degree of integration is high, the internal assembly structure of the cooking pot device is simplified, the assembly accuracy is improved, and at the same time, the internal space of the cooking pot device is saved.
[0011] According to the present invention, there is further provided a cooking pot device including the pedestal for attaching each functional member of the cooking pot device as described in any one of the above.
[0012] Below the pedestal, a support seat fixed to the bottom of the case of the cooking pot device is provided. In the central portion of the support seat, a support base extending downward is provided. On the inner wall of the support base, a notch is preferably provided for meshing a driven gear plate that drives the pedestal to rotate and a driving gear provided outside the support base.
[0013] The inner wall of the support base has two upper and lower stepped shapes. The pedestal is fixedly connected to the inner ring of the rotary bearing. The outer ring of the rotary bearing is attached to the lower step. The driven gear plate is preferably located on the upper step and is fixedly connected to the pedestal.
[0014] At least two support columns extending downward are provided at the bottom of the support seat. On the lower end surface of the support columns, a support plate for attaching a stirring motor that drives the stirring blades to rotate and a driving motor that drives the driving gear to rotate in the cooking pot device is preferably fixedly connected.
[0015] A relay plate fixed and connected to the bottom of the inner ring is fixed and connected to the stirring shaft of the stirring blade. A conductive slip ring is fixed and connected to the bottom of the relay plate. The electric wire of the temperature measuring sensor sequentially passes through the pedestal, the inner ring and the relay plate and is connected to the outer slip ring of the conductive slip ring. Preferably, the conducting wire of the inner slip ring of the conductive slip ring is connected to the main control circuit of the cooking pot device.
[0016] Preferably, a gasket is provided between the cooking pot and the pedestal of the cooking pot device to prevent water flowing into the cooking pot device from penetrating from the pedestal to the conductive slip ring.
[0017] The cooking pot device according to the present invention can integrate and install all internal members with two members, namely a pedestal and a support seat, which simplifies the assembly, improves the production efficiency, and at the same time improves the assembly accuracy.
Brief Description of the Drawings
[0018]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Embodiments for Carrying Out the Invention
[0019] The pedestal for mounting each functional member of the cooking pot device according to the present invention integrates and assembles thereon a connecting cylinder 11, a mounting hole 12, a fastening hole 13, a toothed disk hole 14, a positioning structure for fixing a bearing that plays a role in positioning with respect to the stirring shaft 31, a mounting position for mounting the temperature measuring sensor bracket 7, a wiring hole 17, and a cylindrical accommodating cavity 18. With this single member, the mounting of each functional member of the cooking pot device 100 can be realized, the integration degree is high, the internal assembly structure of the cooking pot device 100 is simplified, the assembly accuracy is improved, and at the same time, the internal space of the cooking pot device 100 is saved.
[0020] I. Pedestal 1
[0021] As shown in FIGS. 1 to 4, the main body portion of the pedestal 1 has a disk-column shape, and the disk-column shape is a disk shape with a certain thickness.
[0022] 1. Connecting cylinder 11
[0023] At the central portion of the top surface of the main body portion (with the paper surface where FIG. 3 is located as the reference direction, up and down are the top (upper) and bottom (lower) of each member of the cooking pot device 100 respectively), a connecting cylinder 11 extending upward is provided. The inner wall of the connecting cylinder 11 has a female thread structure for mounting the stirring blade 3 for stirring the food in the cooking pot 30.
[0024] 2. Mounting hole 12
[0025] The mounting hole 12 is used to fix the cooking pot 30 to the pedestal 1. The number of mounting holes 12 is at least two, and they are formed at intervals on the top surface around the connecting cylinder 11. The mounting hole 12 is a blind hole, and preferably the number is four.
[0026] 3. Fastening hole 13
[0027] The fastening holes 13 are used to fix the inner ring 51 of the rotary bearing 5 to the pedestal 1. In the present invention, the number of the fastening holes 13 is four, and preferably all the fastening holes 13 are circumferentially distributed on the top surface around the connecting cylinder 11 with the central axis of the pedestal 1 as the axis. The fastening holes 13 are through holes penetrating the pedestal 1 from top to bottom. The inner wall of the fastening hole 13 forms two cylindrical shapes with different diameters up and down. The diameter of the upper hole wall is adapted to the size of the head of the screw to be installed therein, and the diameter of the lower hole wall is adapted to the diameter of the screw. This design can hide the head of the screw on the pedestal 1 and avoid the head of the screw being arranged on the top surface of the pedestal 1 from affecting the installation of the cooking pot 30.
[0028] 4. The gear plate hole 14
[0029] The gear plate hole 14 is used to fix the driven gear plate 4 meshing with the driving gear 601 to the pedestal 1. There are at least two of the gear plate holes 14, which are formed at intervals in a region close to the outer periphery of the bottom surface of the pedestal 1. As shown in FIG. 2, the bottom surface of the pedestal 1 is stepped, and consists of a first stepped surface 21 and a second stepped surface 22 located at the center of the first stepped surface 21 and protruding downward along the first stepped surface 21. The gear plate hole 14 is a blind hole recessed upward by the first stepped surface 21. The fastening hole 13 penetrates downward from the top surface of the pedestal 1 to the second stepped surface 22, that is, the lower end surface of the fastening hole 13 is lower than the lower end surface of the gear plate hole 14.
[0030] The driven gear plate 4 is in the shape of an annular sheet, and its thickness is smaller than the height from the first stepped surface 21 to the second stepped surface 22.
[0031] By making the bottom surface of the pedestal 1 stepped, after fixing the inner ring 51 of the rotary bearing 5 to the second stepped surface 22 by the fastening hole 13, a space for installing the driven gear plate 4 can be left on the bottom surface of the pedestal 1, so that the structure becomes compact and the occupied space becomes small.
[0032] 5. The positioning structure
[0033] As shown in FIGS. 2 to 4, a central passage 19 through which a stirring shaft 31 for driving the stirring blades 3 to rotate passes is formed in the main body portion. The central passage 19 communicates with the connecting cylinder 11 and is formed coaxially with the connecting cylinder 11.
[0034] As shown in FIG. 4, a positioning structure for supporting the stirring shaft 31 and attaching a bearing capable of rotating the stirring shaft 31 in the central passage 19 is provided on the inner wall of the central passage 19. The positioning structure is provided on the inner wall and includes a boss 151 for abutting against the upper surface of the outer ring of the bearing, and a support sleeve 152 provided on the stirring shaft 31, the upper end of which is disposed in the central passage 19 to support the bearing. The lower end of the support sleeve 152 is connected to and supported by the lower surface of the inner ring 51 of the rotary bearing 5 by a relay plate 53. The outer ring of the bearing is fixed and engaged with the central passage 19 by the boss 151 and the support sleeve 152. The outer ring of the bearing, the support sleeve 152, the inner ring 51 of the rotary bearing 5, and the pedestal 1 all rotate synchronously.
[0035] The upper end of the stirring shaft 31 passes through the support sleeve, the inner ring of the bearing, and the central passage 19 in sequence from bottom to top and is connected to a connection seat of the stirring blades 3 provided above the connecting cylinder 11. The stirring shaft 31 is fixedly connected to the inner ring of the bearing so as to rotate synchronously. The lower end of the stirring shaft 31 is connected to the output end of a stirring motor 32 provided below the pedestal 1. The stirring motor 32 drives the stirring shaft 31 to rotate, thereby driving the stirring blades 3 to cook the food in the cooking pot 30.
[0036] 6. Mounting position and wiring hole 17
[0037] The mounting position is provided at a peripheral position on the top surface of the pedestal 1 and is used for mounting the temperature measuring sensor bracket 7. As shown in FIG. 1, the mounting position is preferably a recessed position 16 that opens at the outer side. The shape of the recessed position 16 conforms to the shape of the connecting portion of the temperature measuring sensor bracket 7.
[0038] The temperature measuring sensor bracket 7 has a strip-shaped structure extending from bottom to top, and its longitudinal cross-sectional shape is arc-shaped. The connecting portion is provided at the lower end of the temperature measuring sensor bracket 7, and the temperature measuring sensor is provided at the upper end of the temperature measuring sensor bracket 7.
[0039] At the bottom of the recessed position 16, a connection hole 161 for fixing the connecting portion and a wiring hole 17 for passing the electric wire of the temperature measuring sensor to below the pedestal 1 are formed.
[0040] By providing a recessed structure in the pedestal 1 to attach the temperature measuring sensor bracket 7, space can be saved. At the same time, by providing the connecting portion at the recessed position 16, it is advantageous for the close connection between the top surface of the pedestal 1 and the bottom surface of the cooking pot 30.
[0041] 7. Cylindrical accommodating cavity 18
[0042] As shown in FIGS. 2 to 4, in order to facilitate the wiring of the electric wire of the temperature measuring sensor, a cylindrical accommodating cavity is provided above in the region located within the circumference where the fastening holes 13 of the second stepped surface 22 are distributed. The diameter of the cylindrical accommodating cavity is larger than the diameter of the central passage 19 and is in communication with the central passage 19. On the inner wall of the wiring hole 17 facing the central axis direction of the pedestal 1, a guiding port 171 for communicating the wiring hole 17 and the cylindrical accommodating cavity is formed.
[0043] The cylindrical accommodating cavity faces the space surrounded by the inner ring 51 of the rotary bearing 5 and forms a closed space with the relay plate 53.
[0044] By providing the cylindrical accommodating cavity 18 in the pedestal 1, the internal space of the pedestal 1 can be fully utilized. At the same time, the wiring path of the wiring hole 17 can be shortened, the difficulty of passing the wire can be reduced, and the mounting space after the electric wire passes through can be increased.
[0045] It is preferable that any part where the mounting structure of the pedestal 1 is not provided is provided with a hollow structure, and the weight of the pedestal 1 can be reduced.
[0046] Assembly relationship between the pedestal 1 and each member
[0047] 1) Fix and attach the temperature measurement sensor bracket 7 to the recessed position 16.
[0048] 2) First, arrange the driven gear disk 4 parallel to the first stepped surface 21. Next, fix the driven gear disk 4 to the pedestal 1 by passing a screw through the driven gear disk 4 from bottom to top and fixing it to the gear disk hole 14. Then, connect the rotary bearing 5 to the pedestal 1 so that its inner ring 51 is fixed to the second stepped surface 22 by the fastening hole 13. A gap is left between the lower surface of the driven gear disk 4 and the top surface of the outer ring 52 of the rotary bearing 5 so that the driven gear disk 4 can rotate freely. The ring gear of the driven gear disk 4 extends horizontally to the outside of the outer peripheral wall of the pedestal 1.
[0049] 3) Next, press the outer bottom surface of the cooking pot 30 against the top surface of the pedestal 1. At the same time, pass the connection cylinder 11 through the central hole at the bottom of the cooking pot 30 and arrange it inside the cooking pot 30. Fix the cooking pot 30 to the pedestal 1 by locking a screw or bolt into the mounting hole 12 downward from the cooking pot 30.
[0050] 4) First, attach the bearing of the stirring shaft 31 to the positioning structure, and then attach the stirring shaft 31. Since the attachment mode has been described above, it will not be repeated here.
[0051] 5) Fix the outer ring 52 of the rotary bearing 5 to the bottom of the case 20 of the cooking pot device 100.
[0052] The pedestal 1 supports the cooking pot 30 upward and connects the rotary bearing 5 downward, so as to transmit the gravity of the cooking pot 30 to the housing of the cooking pot device 100 and at the same time fix the driven gear disk 4 that drives the cooking pot 30 to rotate to the pedestal 1. Therefore, the entire connection structure is stable and the force reception is uniform.
[0053] 8. Sealing cylinder base 6
[0054] Furthermore, as shown in FIG. 4, a sealing cylinder base 6 having an axial passage is connected to the connection cylinder 11. The sealing cylinder base 6 is composed of a cylindrical portion 61 and an umbrella-shaped cover body portion 62 connected to the middle and lower position of the outer peripheral wall of the cylindrical portion 61 coaxially with the cylindrical portion 61. The axial passage is provided in the cylindrical portion 61. Correspondingly, the outer wall of the cylindrical portion 61 located below the cover body portion 62 has a male thread structure. By screwing the cylindrical portion 61 onto the connection cylinder 11, the sealing cylinder base 6 is connected to the connection cylinder 11. At this time, the outer end surface of the cover body portion 62 is in close contact with the bottom surface of the cooking pot 30, and a sealing ring is provided therebetween. At the same time, a screw for locking the cooking pot 30 and the pedestal 1 is arranged below the cover body portion 62.
[0055] The cover body portion 62 can prevent hygienic problems caused by the outflow of food ingredients and vegetable juice from the hole position of the cooking pot 30.
[0056] An attachment structure for fixing the bearing of the stirring shaft 31 is further provided in the axial passage. The upper end of the stirring shaft 31 passes through the cylindrical portion 61 and is connected to a connection seat. The drive motor 60 drives the stirring shaft 31 to rotate, thereby driving the connection seat to rotate together with the stirring blades 3 with respect to the sealing cylinder base 6.
[0057] The upper part of the stirring shaft 31 may be an axis integrated with the stirring shaft 31 or a split extension shaft. By adopting the split extension shaft, the torque of the stirring shaft 31 can be increased.
[0058] II. Cooking pot device 100
[0059] As shown in FIG. 3, the cooking pot device 100 includes an inner case 10, a case 20, a support seat 40, the above-mentioned pedestal 1, and a cooking pot 30.
[0060] 1. Inner case 10 and case 20
[0061] The vertical cross-sectional shape of the inner case 10 is arc-shaped. The arc shape is the same as the arc shape of the vertical cross-section of the lower half of the cooking pot 30, and openings are formed at both the top and bottom. The cooking pot 30 is arranged downward from the top opening of the inner case 10 and is coaxially provided in the cavity body surrounded by the inner case 10. The pedestal 1 is arranged in the area surrounded by the opening at the bottom of the inner case 10. A gap is left between the outer peripheral wall of the pedestal 1 and the opening so that the pedestal 1 can rotate freely, and a sealing structure is provided in the gap to prevent water from flowing from the gap to the electrical components below the pedestal 1.
[0062] The case 20 is covered outside the inner case 10 and serves to prevent waterproofing and oil contamination of the electromagnetic heating coil provided on the outer peripheral wall of the inner case 10. The case 20 preferably includes a cylindrical side wall and an annular convex edge 201 extending inward along the side wall.
[0063] 2. Support base 40
[0064] As shown in FIGS. 3 to 6, the support base 40 is used to support the outer ring 52 of the rotary bearing 5 and support members such as the drive motor 60 arranged below the pedestal 1.
[0065] The top plate 401 of the support base 40 is wrapped around the annular convex edge 201 and fixedly connected to the annular convex edge 201. A cylindrical support base extending downward is provided at the central portion of the top plate 401. A notch 404 is provided on the inner wall of the support base for meshing the driven gear disk 4 that drives the pedestal 1 to rotate and the drive gear 601 provided outside the support base.
[0066] As shown in FIG. 5, the inner wall of the support base preferably forms two stepped shapes, upper and lower. The outer ring 52 of the rotary bearing 5 is supported and fixedly connected to the lower step 403. At this time, the ring gear of the driven gear disk 4 is located at the upper step 402. The notch portion 404 is located at a position corresponding to the ring gear near the step surface of the upper step 402.
[0067] Furthermore, at least two support columns 405 extending downward are provided along the step surface of the lower step 403. A support plate 50 is fixedly connected to the lower end surface of the support column 405.
[0068]
[0067] As shown in FIG. 3, a stirring motor 32 for driving the stirring blade 3 to rotate is fixedly connected to the support plate 50 such that its output shaft faces downward and passes through the support plate 50. Similarly, the lower end of the stirring shaft 31 extends downward, passes through the support plate 50, and is disposed below the support plate 50. The stirring shaft 31 and the support plate 50 are rotatably connected via a bearing. A gear 33 is provided on both the output shaft of the stirring motor 32 and the lower end of the stirring shaft 31, and the two gears 33 mesh with each other and transmit power.
[0069] A drive motor 60 for driving the drive gear 601 to rotate is horizontally mounted on the support plate 50, and its output shaft extends upward from the outside of the support base and is rotatably fixed to the top plate 401. The drive gear 601 is connected to the output shaft, and its ring gear is disposed in the notch 404 and meshes with the driven gear disk to transmit power.
[0070] Furthermore, a conductive slip ring 70 is fixedly connected to the bottom of the relay plate 53. The outer slip ring of the conductive slip ring 70 is fixed to the relay plate 53 and is rotatable together with the relay plate 53 and the pedestal 1. The inner slip ring of the conductive slip ring 70 is fixed to the support plate 50 by a support frame 80. The electric wire of the temperature measuring sensor sequentially passes through the wiring hole 17, the cylindrical accommodation cavity 18, the inner ring 51, and the relay plate 53 and is connected to the outer slip ring of the conductive slip ring 70. The conducting wire of the inner slip ring of the conductive slip ring 70 is connected to the main control circuit of the cooking pot device 100.
[0071] The support base 40 supports the weights of all members except the case 20 and the inner case 10 of the cooking pot device 100, transmits gravity to the case 20, and supports members such as the rotary bearing 5 and the pedestal 1 by means of a recessed support base, thereby connecting the members compactly and increasing the space utilization rate. At the same time, by providing the support column 405, a support point is provided for members such as the drive motor 60. Due to the integrated structure of the support base 40, the connection and mounting structures of each member are simplified, the production efficiency is improved, and at the same time, the overall stability is further enhanced.
[0072] Furthermore, in order to prevent the water flowing into the cooking pot device 100 from entering the conductive slip ring 70 from the connection position between the pedestal 1 and the cooking pot 30, a gasket is provided between the top surface of the pedestal 1 and the bottom surface of the cooking pot 30.
[0073] The cooking pot device 100 according to the present invention can integrate and mount all internal members by means of two members, namely the pedestal 1 and the support base 40, which simplifies the assembly, improves the production efficiency, and at the same time improves the assembly accuracy.
Explanation of Reference Numerals
[0074] 1. Pedestal 11. Connection cylinder 12. Mounting hole 13. Fastening hole 14. Gear plate hole 151. Boss 152. Support sleeve 16. Concave position 161. Connection hole 17. Wiring hole 171. Guide port 18. Cylindrical receiving cavity 19. Central passage 21. First stepped surface 22. Second stepped surface 3. Stirring blade 31. Stirring shaft 32. Stirring motor 33. Gear 4. Driven gear plate 5. Rotary bearing 51. Inner ring 52. Outer ring 53. Relay board 6. Sealing cylinder base 61. Cylindrical part 62. Cover body part 7. Temperature measurement sensor bracket 100. Cooking pot device 10. Inner case 20. Case 20. Annular convex edge 30. Cooking pot 40. Support seat 401. Top plate 402. Upper step 403. Lower step 404. Notch 405. Support pillar 50. Support plate 60. Driving motor 601. Driving gear 70. Conductive slip ring 80. Support frame
Claims
1. A pedestal for attaching each functional member of a cooking pot device, wherein the main body of the pedestal (1) has a disk-column shape, a connecting cylinder (11) extending upward is provided at the center of the top surface of the main body for attaching a stirring blade (3) for stirring food in the cooking pot (30), mounting holes (12) for fixing the cooking pot (30) to the pedestal (1) and fastening holes (13) for fixing the pedestal (1) to the inner ring (51) of the rotary bearing (5) are formed at intervals on the top surface located around the connecting cylinder (11), the fastening hole (13) is a through hole penetrating the pedestal (1) from top to bottom, tooth disk holes (14) for fixing a driven tooth disk (4) meshing with a drive gear (601) to the pedestal (1) are formed at intervals in a region close to the outer peripheral edge of the bottom surface of the pedestal (1), the lower end surface of the fastening hole (13) is lower than the lower end surface of the tooth disk hole (14), the outer ring (52) of the rotary bearing (5) is fixed to the bottom of the case (20) of the cooking pot device (100), A pedestal for attaching each functional member of a cooking pot device, characterized in that.
2. At a position around the top surface of the pedestal (1), a mounting position for attaching a temperature measuring sensor bracket (7) is provided. A pedestal for attaching each functional member of a cooking pot device according to claim 1, characterized in that.
3. The mounting position is a recessed position (16) opening on the outer side. A pedestal for attaching each functional member of a cooking pot device according to claim 2, characterized in that.
4. A sealing cylinder seat (6) having an axial passage is connected to the connecting cylinder (11), a central passage (19) is formed in the main body, the upper end of a stirring shaft (31) for driving the stirring blade (3) to rotate passes through the central passage (19) and the axial passage in sequence from bottom to top and is connected to the connecting seat of the stirring blade (3), the connecting seat is provided on the sealing cylinder seat (6) so as to be relatively rotatable, the lower end of the stirring shaft (31) is connected to the output end of a stirring motor (32) provided below the pedestal (1). A pedestal for attaching each functional member of a cooking pot device according to claim 3, characterized in that.
5. Including a pedestal (1) for attaching each functional member of a cooking pot device (100) according to claim 2. A cooking pot device, characterized in that.
6. Below the pedestal (1), a support seat (40) fixed to the bottom of the case (20) of the cooking pot device (100) is provided, a support platform extending downward is provided at the center of the support seat (40). On the inner wall of the support base, there is a notch (404) that meshes with a driven gear disk (4) for driving the pedestal (1) to rotate and a driving gear (601) provided outside the support base. The cooking pot device according to claim 5, characterized in that.
7. The inner wall of the support base has two stepped shapes, upper and lower. The pedestal (1) is fixedly connected to the inner ring (51) of the rotary bearing (5). The outer ring (52) of the rotary bearing (5) is attached to the lower step (403). The driven gear disk (4) is located on the upper step (402) and is fixedly connected to the pedestal (1). The cooking pot device according to claim 6, characterized in that.
8. At the bottom of the support base (40), at least two support columns (405) extending downward are provided. On the lower end surface of the support column (405), in the cooking pot device (100), a support plate (50) for mounting a stirring motor (32) for driving the stirring blades (3) to rotate and a driving motor (60) for driving the driving gear (601) to rotate is fixedly connected. The cooking pot device according to claim 7, characterized in that.
9. A temperature measuring sensor is provided on the temperature measuring sensor bracket (7). On the stirring shaft (31) of the stirring blades (3), a relay plate (53) fixedly connected to the bottom of the inner ring (51) is fixedly connected. A conductive slip ring (70) is fixedly connected to the bottom of the relay plate (53). The electric wire of the temperature measuring sensor passes through the pedestal (1), the inner ring (51), and the relay plate (53) in sequence and is connected to the outer slip ring of the conductive slip ring (70). The conducting wire of the inner slip ring of the conductive slip ring (70) is connected to the main control circuit of the cooking pot device (100). The cooking pot device according to claim 8, characterized in that.
10. Between the cooking pot (30) and the pedestal (1) of the cooking pot device (100), a gasket is provided to prevent water flowing into the cooking pot device (100) from penetrating from the pedestal (1) to the conductive slip ring (70). The cooking pot device according to claim 9, characterized in that.
Citation Information
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