Lifting type heating assembly and complementary food machine
By designing a lifting heating assembly in the supplementary food machine and using the linkage mechanism to achieve the lifting action of the heating plate, the problems of excessive temperature caused by the heating structure in the prior art and inconvenient pick-up and placement of the mixing cup are solved, and a safer and more convenient supplementary food processing process is achieved.
Patent Information
- Application Number
- CN202421529191.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-28
AI Technical Summary
In existing food supplementary machines, the heating structure is fixed to the bottom of the machine body, resulting in too high temperature, and it is inconvenient to pick up and place the mixing cup, so the driving shaft of the driving structure is easily disturbed.
A lifting heating assembly is designed, through the linkage mechanism, the heating plate moves along the height direction of the installation base, realize the lifting and lowering of the heating plate, reduce the temperature of the installation base during the heating process, and facilitate the pick-up and placement of the mixing cup and the connection between the mixing shaft.
It effectively reduces the temperature of the installation base during heating, avoids the risk of excessive body temperature, and improves the convenience of picking and putting the mixing cup and the convenience of disassembling and assembly of the mixing shaft.
Smart Images

Figure CN222898956U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food supplement machines, in particular to a lifting heating component and a food supplement machine. Background Art
[0002] At present, in stirring devices such as food supplement machines, the stirring cup is mainly placed into the machine body, and then the driving structure on the machine body is connected to the stirring shaft of the stirring cup, so that the driving structure drives the stirring knife shaft to rotate, realizing cutting and stirring of the food materials in the stirring cup to achieve food supplement processing.
[0003] In existing food supplement machines, the heating structure for heating the stirring cup is generally fixed at the bottom of the machine body or fixedly arranged at the bottom of the stirring cup. During heating, the temperature of the bottom of the machine body shell will be too high.
[0004] In addition, after the stirring cup is placed into the food supplement machine body, it is also necessary to connect the stirring shaft on the stirring cup to the driving structure on the machine body. If the driving shaft of the driving structure is prone to interference when taking out or putting into the food supplement machine, the taking and placing are not convenient enough. Summary of the Utility Model
[0005] In order to overcome at least one of the above-mentioned defects of the prior art, the utility model provides a lifting heating component and a food supplement machine, which heat after lifting the heating plate, reducing the temperature of the installation base during the heating process; at the same time, the stirring cup can be lifted to stably connect the stirring cup with the driving structure on the machine body.
[0006] The technical solution adopted by the utility model to solve its problems is:
[0007] A lifting heating component, comprising:
[0008] An installation base;
[0009] A heating mechanism, including a heating plate and a heating element. The heating plate is installed on the installation base and can move along the height direction of the installation base; the heating element is installed on the heating plate;
[0010] A linkage mechanism, including a linkage seat and a linkage member. The linkage seat is rotatably installed on the installation base. A first guiding portion is provided on the linkage seat. The linkage member is connected to the heating plate. A second guiding portion is provided on the linkage member. The first guiding portion is used for sliding cooperation with the second guiding portion when the linkage seat rotates to guide the linkage member to move along the height direction of the installation base.
[0011] Furthermore, the linkage member includes a linkage sleeve and a linkage rod, the linkage rod is arranged outside the linkage sleeve, and the linkage sleeve is inserted into the linkage seat so that the linkage rod and the first guide part are slidably matched; the linkage rod forms the second guide part.
[0012] Furthermore, a guide track is provided on the linkage seat, and the guide track gradually extends obliquely in the rotation direction of the linkage seat; the linkage rod is located above the guide track and slidably cooperates with the guide track.
[0013] Furthermore, the guide rails are provided at both ends of the linkage seat, the linkage rods are provided on both sides of the linkage sleeve, and each of the linkage rods is correspondingly arranged above each of the guide rails and slidably cooperates with the guide rails.
[0014] Furthermore, a positioning sleeve is provided on the mounting base, and the linkage seat can be rotatably mounted outside the positioning sleeve; the positioning sleeve is provided with a guide opening extending along the height direction of the mounting base; the linkage sleeve is inserted into the positioning sleeve so that the linkage rod can extend through the guide opening and slide with the guide rail.
[0015] Furthermore, the mounting base includes a bottom plate and a mounting shell, a mounting cavity is provided in the mounting shell, and the bottom plate covers the bottom end of the mounting cavity; the linkage seat is rotatably installed in the mounting cavity; the heating plate is arranged at the top end of the mounting shell; the linkage member is connected to the bottom end of the heating plate and extends into the mounting cavity.
[0016] Furthermore, a rotation opening is provided on the outer peripheral wall of the installation shell; a toggle plate is provided in the installation cavity, and the toggle plate is connected to the linkage seat and extends out from the rotation opening to drive the linkage seat to rotate.
[0017] A baby food machine comprises a machine body, a driving assembly, a stirring cup and the heating assembly, wherein the machine body is provided with a processing cavity, the driving assembly is mounted on the top of the machine body, and the driving shaft of the driving assembly is used to extend into the processing cavity through the top of the processing cavity; the mounting base of the heating assembly is arranged at the bottom of the processing cavity and connected to the machine body; the stirring cup is used to be mounted in the processing cavity.
[0018] In summary, the utility model has the following technical effects:
[0019] In the present application, when the stirring cup is taken in and out, the lifting heating assembly can slide and cooperate with the first guide part on the linkage seat and the second guide part on the linkage part, so that the linkage part can be guided to move up and down, and the lifting action of the heating plate can be realized, which can facilitate the stirring cup to be put into or taken out of the body from the side of the body, and the operation is convenient. In addition, after the stirring cup is put in, the heating plate can lift the stirring cup upward after moving upward, so that the stirring shaft of the stirring cup can be connected with the driving shaft of the driving structure, which is convenient for the disassembly and assembly of the stirring shaft of the stirring cup and the driving shaft of the driving structure.
[0020] In addition, the heating plate is guided to rise upward so that a certain distance can be formed between the heating plate and the mounting base. During the heating process of the heating element of the heating plate, the mounting base will not be too hot due to the distance from the mounting base, so the body of the device will not be affected by excessive temperature, which complies with safety regulations. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a structural schematic diagram of the heating component of the utility model;
[0022] Figure 2 It is a cross-sectional view of the heating component of the utility model;
[0023] Figure 3 It is a schematic diagram of the exploded structure of the heating component of the utility model;
[0024] Figure 4 It is a schematic diagram of the assembly structure of the linkage seat and the mounting base of the utility model;
[0025] Figure 5 It is a structural schematic diagram of the supplementary food machine of the utility model;
[0026] Figure 6 This is a schematic diagram of the body structure of the supplementary food machine of the present utility model;
[0027] Figure 7 The utility model is a schematic diagram of the structure of the mixing cup of the supplementary food machine.
[0028] Among them, the meanings of the accompanying drawings are as follows: 10, mounting base; 11, toggle plate; 12, rotating opening; 13, mounting shell; 14, bottom plate; 15, positioning sleeve; 151, guide opening; 20, heating plate; 21, heating element; 30, linkage seat; 31, guide rail; 41, linkage sleeve; 42, linkage rod; 50, machine body; 51, processing chamber; 60, stirring cup; 61, stirring shaft; 71, driving shaft of driving structure. DETAILED DESCRIPTION
[0029] For better understanding and implementation, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present utility model.
[0030] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model.
[0032] Referring to Figures 1-4 , the present utility model discloses a lifting heating assembly, which includes a mounting base 10, a heating mechanism, and a linkage mechanism. The heating mechanism includes a heating plate 20 and a heating element 21. The heating plate 20 is installed on the mounting base 10, and the heating plate 20 can move along the height direction of the mounting base 10. The heating element 21 is installed on the heating plate 20. Specifically, the heating element 21 can be a heating resistor, a heating wire, etc. installed at the bottom end of the heating plate 20. Of course, the heating element 21 can also be embedded in the heating plate 20, and its installation position is not limited.
[0033] The above-mentioned linkage mechanism includes a linkage seat 30 and a linkage member. The linkage seat 30 is rotatably installed on the mounting base 10. A first guiding portion is provided on the linkage seat 30. The linkage member is connected to the heating plate 20. A second guiding portion is correspondingly provided on the linkage member. When the linkage seat 30 rotates, the first guiding portion can be slidably engaged with the second guiding portion. When the first guiding portion is slidably engaged with the second guiding portion, it can guide the linkage member to move along the height direction of the mounting base 10, thereby driving the heating plate 20 connected to the linkage member to move up and down.
[0034] Based on the above structure, when using the lifting heating assembly of the present utility model, the lifting heating assembly can be used in a food processor, a juicer, a cooking machine, etc. having a stirring cup 60 structure. By putting the food materials into the stirring cup 60 and then putting the stirring cup 60 into the body, the stirring shaft 61 in the stirring cup can be connected to the driving shaft 71 of the driving structure on the body 50. In this way, the driving structure can drive the stirring shaft 61 in the stirring cup 60 to rotate, and then the stirring knife and other structures on the stirring shaft 61 rotate to stir the materials in the stirring cup 60.
[0035] Before the lifting heating assembly is placed into the body 50 of the mixing cup 60, the linkage seat 30 of the linkage mechanism can be rotated in one direction first. During the rotation of the linkage seat 30, the first guiding portion on the linkage seat 30 is in sliding fit with the second guiding portion on the linkage member, so that the linkage member can be guided to move downward, thereby driving the heating plate 20 connected to the linkage member to move downward. In this way, the heating plate 20 is in a low position after landing and does not protrude from the bottom of the body 50, facilitating the placement of the mixing cup 60 into the interior of the body 50.
[0036] After the mixing cup 60 is placed into the body 50, the stirring shaft 61 on the mixing cup 60 can correspond to the driving shaft 71 of the driving structure on the body 50. Thereafter, the linkage seat 30 can be rotated in the reverse direction. After the linkage seat 30 rotates in the reverse direction, the first guiding portion is in sliding fit with the second guiding portion, guiding the linkage member to move upward, driving the heating plate 20 connected to the linkage member to move upward. The heating plate 20 can then be in a high position after rising, pushing the mixing cup 60 upward. During the upward pushing process of the stirring shaft 61 on the mixing cup 60, it can be in transmission connection with the driving shaft 71 of the driving structure. Thereafter, the driving shaft 71 of the driving structure can drive the stirring shaft 61 in the mixing cup 60 to rotate, realizing the stirring action.
[0037] It should also be noted that when heating the mixing cup 60, the mixing cup 60 is placed on the heating plate 20. At this time, the heating plate 20 can be in sliding fit with the second guiding portion of the linkage member during the rotation of the first guiding portion of the linkage seat 30, guiding the heating plate 20 to rise upward, so that a certain distance can be formed between the heating plate 20 and the mounting base 10. During the heating process of the heating element 21 of the heating plate 20, due to the interval from the mounting base 10, the temperature of the mounting base 10 will not be too high during the heating process of the heating element 21, so it will not cause an excessive temperature impact on the body, thus meeting the safety usage regulations.
[0038] The heating plate 20 can be lowered back to the low position under the linkage action of the linkage seat 30 and the linkage member. At this time, the stirring shaft 61 of the mixing cup 60 is disengaged from the driving shaft 71 of the driving structure of the body 50, and the mixing cup 60 can be taken out without being interfered by the driving shaft, facilitating the taking and placing of the mixing cup 60.
[0039] Furthermore, in this embodiment, the linkage member includes a linkage sleeve 41 and a linkage rod 42. The linkage rod 42 is arranged outside the linkage sleeve 41. During assembly, the linkage seat 30 is assembled onto the mounting base 10, and then the linkage sleeve 41 is inserted through the linkage seat 30. After the linkage sleeve 41 is inserted into the linkage seat 30, the linkage rod 42 of the linkage sleeve 41 can be in sliding fit with the first guiding portion, so that the linkage rod 42 forms the second guiding portion.
[0040] In this way, when the linkage seat 30 rotates, the linkage seat 30 can rotate externally relative to the linkage sleeve 41 with the linkage sleeve 41 as the rotation center. The first guiding portion can be in sliding fit with the linkage rod 42, and the linkage rod 42 can slide along the first guiding portion during the rotation of the linkage seat 30, thereby guiding the up-and-down movement of the linkage sleeve 41.
[0041] Based on this structure, when the above-mentioned heating plate 20 is assembled to the top of the linkage sleeve 41, when the linkage rod 42 moves up and down under the guidance of the first guiding portion, it can drive the heating plate 20 connected to the linkage sleeve 41 to move up and down.
[0042] Specifically, a guiding track 31 can be provided on the linkage seat 30. The guiding track 31 gradually extends obliquely in the rotation direction of the linkage seat 30. The guiding track 31 can be formed as the first guiding portion. After the linkage sleeve 41 is inserted and assembled to the linkage seat 30, the above-mentioned linkage rod 42 can be located above the guiding track 31 and is in sliding fit with the guiding track 31.
[0043] Since the guiding track 31 extends obliquely in the rotation direction, when the linkage seat 30 rotates in one direction, the linkage rod 42 slides downward along the inclined direction of the guiding track 31. The linkage rod 42 can gradually move downward during the rotation of the linkage seat 30, driving the linkage sleeve 41 to gradually move downward and guiding the heating plate 20 to gradually descend. On the contrary, when the linkage seat 30 rotates in the reverse direction, the linkage rod 42 slides upward along the inclined direction of the guiding track 31. The linkage rod 42 can gradually move upward during the rotation of the linkage seat 30, driving the linkage sleeve 41 to gradually move upward and guiding the heating plate 20 to gradually ascend.
[0044] Of course, it can also be that a guiding groove is provided on the linkage seat 30, and the linkage rod 42 can be inserted into the guiding groove. In this way, when the linkage seat 30 rotates in one direction, the upper side wall of the guiding groove can push the linkage rod 42 downward, and the linkage rod 42 can move downward along the guiding groove. When the linkage seat 30 rotates in the reverse direction, the lower side wall of the guiding groove can push the linkage rod 42 upward, guiding the linkage rod 42 to move upward. In addition, the above-mentioned guiding groove and guiding track 31 can be selected as a spiral groove or a spiral track, or can also be selected as an inclined groove or an inclined track, which can be specifically selected according to actual needs.
[0045] Furthermore, guiding tracks 31 can be provided on both sides of the linkage seat 30, corresponding linkage rods 42 are provided on both sides of the linkage sleeve 41, and the linkage rods 42 on both sides are in one-to-one sliding fit with the guiding tracks 31 on both sides of the linkage seat 30. In this way, when the linkage seat 30 rotates, the guiding tracks 31 on both sides of the linkage seat 30 and the linkage rods 42 on both sides of the linkage member slide in one-to-one correspondence, and the guiding forces received on both sides are balanced, so that the lifting movement process of the linkage member is more stable.
[0046] Furthermore, a positioning sleeve 15 may be provided on the mounting base 10 , and the linkage seat 30 may be rotatably mounted outside the positioning sleeve 15 . Based on the structure with the positioning sleeve 15 , the linkage sleeve 41 of the linkage member may be rotatably inserted into the positioning sleeve 15 .
[0047] Specifically, a guide hole 151 is provided on the positioning sleeve 15 , and the guide hole 151 extends along the height direction of the mounting base 10 . After the linkage sleeve 41 is inserted into the positioning sleeve 15 , the linkage rod 42 on the linkage sleeve 41 extends out through the guide hole 151 and slidably cooperates with the guide rail 31 .
[0048] In this way, when the linkage seat 30 rotates, the linkage seat 30 can rotate relative to the positioning sleeve 15, and the linkage sleeve 41 is assembled based on the inside of the positioning sleeve 15. The linkage rod 42 extends from the guide opening 151 and slides with the guide track 31 during the rotation of the linkage seat 30, so that the linkage rod 42 can move stably up and down in the guide opening 151 under the action of the guide track 31. In this way, the lifting process of the linkage sleeve 41 is guided by the positioning sleeve 15, and the lifting process is stable.
[0049] Furthermore, the mounting base 10 in this embodiment includes a bottom plate 14 and a mounting shell 13, and a mounting cavity is provided in the mounting shell 13. During assembly, the bottom plate 14 covers the bottom end of the mounting cavity, and the bottom plate 14 can be assembled with the bottom end of the mounting shell 13 by screws. Based on this structure, the linkage seat 30 is rotatably installed in the mounting cavity, the heating plate 20 is arranged at the top end of the mounting shell 13, and the linkage member is connected to the bottom end of the heating plate 20 and extends into the mounting cavity.
[0050] Specifically, the linkage seat 30 and the linkage member can be assembled on the bottom plate 14. After assembly, the installation shell 13 is sealed on the outer periphery of the bottom plate 14, so that the linkage seat 30 and the linkage member can be located in the installation cavity, which is convenient for assembly. Of course, a through hole is set at the top of the installation shell 13, so that after the heating plate 20 is assembled on the top of the installation shell 13, the linkage member extends into the installation cavity through the through hole and is linked with the linkage seat 30.
[0051] Furthermore, in order to facilitate the rotation of the linkage seat 30, a rotation opening 12 may be provided on the outer peripheral wall of the mounting shell 13, and a toggle plate 11 may be provided in the mounting cavity, the toggle plate 11 being connected to the linkage seat 30 and extending from the rotation opening 12 to drive the linkage seat 30 to rotate. In this way, when the heating plate 20 needs to be raised or lowered, the toggle plate 11 may be rotated, and the toggle plate 11 slides in the rotation opening 12, which may drive the toggle plate 11 to rotate, and then drive the linkage seat 30 connected thereto to rotate, which is convenient for operation.
[0052] Embodiment 2,
[0053] See also Figures 1-7, this embodiment provides a complementary food machine, which includes a machine body 50, a drive assembly, a mixing cup 60, and the heating assembly of Embodiment 1. A processing cavity 51 is provided in the machine body 50. The drive assembly is installed at the top of the machine body 50, and the drive shaft of the drive assembly extends into the processing cavity 51 through the top. The mounting base 10 of the heating assembly is arranged at the bottom of the processing cavity 51 and is connected to the machine body 50; the mixing cup 60 can be installed in the processing cavity 51 through the side of the machine body 50.
[0054] When using the complementary food machine of this embodiment, by putting food materials into the mixing cup 60, and then placing the mixing cup 60 into the processing cavity 51 of the machine body, the mixing shaft 61 in the mixing cup can be connected to the drive shaft 71 of the drive structure at the top of the heating cavity. In this way, the drive structure can drive the mixing shaft 61 in the mixing cup 60 to rotate, and then the mixing blade and other structures on the mixing shaft 61 rotate to stir the materials in the mixing cup 60.
[0055] Specifically, before the mixing cup 60 is placed into the machine body 50, the lifting heating assembly can first rotate in one direction through the linkage seat 30 of the linkage mechanism. During the rotation of the linkage seat 30, the first guiding portion on the linkage seat 30 slides cooperatively with the second guiding portion on the linkage member, so that the linkage member can be guided to move downward, thereby driving the heating plate 20 connected to the linkage member to move downward. In this way, the heating plate 20 is in the lowered low position and does not protrude from the bottom of the processing cavity 51 of the machine body 50, facilitating the mixing cup 60 to be placed inside the machine body 50.
[0056] After the mixing cup 60 is placed into the machine body 50, the mixing shaft 61 on the mixing cup 60 can correspond to the drive shaft 71 of the drive structure on the machine body 50. Thereafter, the linkage seat 30 can be rotated in the reverse direction. After the linkage seat 30 rotates in the reverse direction, the first guiding portion slides cooperatively with the second guiding portion to guide the linkage member to move upward, driving the heating plate 20 connected to the linkage member to move upward. The heating plate 20 can be in the raised high position and jack up the mixing cup 60. During the jacking process of the mixing cup 60, the mixing shaft 61 on the mixing cup 60 can be in transmission connection with the drive shaft 71 of the drive structure. Thereafter, the drive shaft 71 of the drive structure can drive the mixing shaft 61 in the mixing cup 60 to rotate, realizing the stirring action.
[0057] It should also be noted that when heating the mixing cup 60, the mixing cup 60 is placed on the heating plate 20. At this time, the heating plate 20 can slide cooperatively with the second guiding portion of the linkage member during the rotation of the first guiding portion of the linkage seat 30, guiding the heating plate 20 to rise, so that a certain distance can be formed between the heating plate 20 and the mounting base 10. During the heating process of the heating element 21 of the heating plate 20, due to the interval from the mounting base 10, the temperature of the mounting base 10 will not be too high during the heating process of the heating element 21, so it will not cause an excessive temperature impact on the machine body, which meets the safety use regulations.
[0058] The heating plate 20 can be lowered to a lower position again under the linkage action of the linkage seat 30 and the linkage member. At this time, the stirring shaft 61 of the stirring cup 60 is disengaged from the driving shaft 71 of the driving structure of the machine body 50, and the stirring cup 60 can be taken out without being interfered by the driving shaft, facilitating the taking and placing of the stirring cup 60.
[0059] The heating assembly in this embodiment is the same as that in Embodiment 1, and its structure, operation process and operation effect applied to the baby food maker are the same as those in Embodiment 1.
[0060] The technical means disclosed in the solution of the present utility model are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications are also regarded as the protection scope of the present utility model.
Claims
1. A lifting heating assembly, characterized in that: include, Install the base; The heating mechanism comprises a heating plate and a heating element, wherein the heating plate is mounted on the mounting base and can move along the height direction of the mounting base; the heating element is mounted on the heating plate; The linkage mechanism includes a linkage seat and a linkage member. The linkage seat can be rotatably installed on the mounting base. The linkage seat is provided with a first guide portion. The linkage member is connected to the heating plate. The linkage member is provided with a second guide portion. The first guide portion is used to slide with the second guide portion when the linkage seat rotates to guide the linkage member to move along the height direction of the mounting base.
2. The lifting heating assembly according to claim 1, characterized in that: The linkage member includes a linkage sleeve and a linkage rod, wherein the linkage rod is arranged outside the linkage sleeve, and the linkage sleeve is inserted into the linkage seat so that the linkage rod and the first guide portion are slidably matched; the linkage rod forms the second guide portion.
3. The lifting heating assembly according to claim 2, characterized in that: The linkage seat is provided with a guide track, and the guide track gradually extends in an inclined manner in the rotation direction of the linkage seat; the linkage rod is located above the guide track and slidably cooperates with the guide track.
4. The lifting heating assembly according to claim 3, characterized in that: The two ends of the linkage seat are provided with the guide rails, the two sides of the linkage sleeve are provided with the linkage rods, and the linkage rods are arranged above the guide rails in a one-to-one correspondence and slidably cooperate with the guide rails.
5. The lifting heating assembly according to claim 3, characterized in that: The mounting base is provided with a positioning sleeve, and the linkage seat can be rotatably mounted outside the positioning sleeve; the positioning sleeve is provided with a guide opening extending along the height direction of the mounting base; the linkage sleeve is inserted into the positioning sleeve so that the linkage rod can extend through the guide opening and slide with the guide rail.
6. The lifting type heating assembly according to any one of claims 1 to 5, characterized in that: The mounting base includes a bottom plate and a mounting shell, wherein a mounting cavity is provided in the mounting shell, and the bottom plate covers the bottom end of the mounting cavity; the linkage seat is rotatably installed in the mounting cavity; the heating plate is arranged at the top end of the mounting shell; the linkage member is connected to the bottom end of the heating plate and extends into the mounting cavity.
7. The lifting heating assembly according to claim 6, characterized in that: A rotating opening is arranged on the outer peripheral wall of the installation shell; a toggle plate is arranged in the installation cavity, and the toggle plate is connected to the linkage seat and extends out from the rotating opening to drive the linkage seat to rotate.
8. A food supplement machine, characterized in that: It comprises a machine body, a driving assembly, a stirring cup and a heating assembly according to any one of claims 1 to 7, wherein the machine body is provided with a processing cavity, the driving assembly is mounted on the top of the machine body, and the driving shaft of the driving assembly is used to extend into the processing cavity through the top of the processing cavity; the mounting base of the heating assembly is arranged at the bottom of the processing cavity and connected to the machine body; the stirring cup is used to be mounted in the processing cavity.