A rice cooker for reducing blood sugar
By employing a detachable cooking basket support and a dual-pivot drive mechanism in the sugar-reducing rice cooker, the problems of complex structure and poor versatility in existing technologies are solved, enabling flexible replacement and simple maintenance of the equipment and improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN VITAMAX ELECTRIC CO LTD
- Filing Date
- 2025-08-22
- Publication Date
- 2026-07-21
AI Technical Summary
In existing sugar-reducing rice cookers, the cooking basket is fixedly connected to the lifting bracket, resulting in a complex device structure, poor versatility, difficulty in cleaning, and a poor user experience due to unilateral force application.
The design features a detachable support for the cooking basket, combined with a dual-pivot drive mechanism, enabling flexible replacement and suspension of the cooking basket. A detachable electrocoupler simplifies the connection between the pot assembly and the main body.
It improves the versatility and cleanability of the equipment, reduces the force required for users to place or remove the cooking basket with one hand, and enhances the user experience and equipment adaptability.
Smart Images

Figure CN224522865U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cooking appliance technology, and in particular to a sugar-lowering rice cooker. Background Technology
[0002] Existing sugar-reducing rice cookers are based on the principle of separating rice water from rice during cooking to reduce sugar content. However, current technologies generally use a structure where the cooking basket and lifting bracket are fixedly connected, resulting in a complex overall structure and difficult disassembly and assembly. Furthermore, the fixed connection limits the adaptability of the cooking basket, making it difficult to replace or clean, leading to poor versatility and difficulty in meeting diverse cooking needs and maintenance requirements, thus impacting user experience. Secondly, some current technologies connect the lifting bracket to the cooking basket on only one side, requiring a ball bearing between the cooking basket and the inner wall of the pot to prevent deformation of the lifting bracket and contact between the cooking basket and the inner wall of the pot. On the other hand, this one-sided force-bearing design results in significant force being applied to the user when placing or removing the cooking basket with one hand, leading to a poor user experience. Summary of the Invention
[0003] One objective of this invention is to overcome the problems of the existing technology where the cooking basket and the lifting bracket are fixedly connected, resulting in a complex structure and poor versatility. This problem is solved by configuring a bracket that can detachably load the cooking basket and using a dual-pivot drive.
[0004] This application provides a sugar-reducing rice cooker, comprising: a main body, a pot assembly, a cooking basket, a support, and a pair of drive mechanisms; the pot assembly is disposed on the main body and has a pot cavity with an upper opening; a heating element is used to provide cooking heat to the pot assembly; the support is used to detachably mount the cooking basket and suspend it within the pot cavity, and has two supports disposed opposite to it; the pair of drive mechanisms are arranged opposite to each other on both sides of the main body, and include a lifting member and a motor, the lifting member being configured with a rack tooth, and the motor being coupled to the rack tooth through one or more gears; in response to the drive of the motors of the two drive mechanisms, the lifting member acts on the corresponding supports to raise or lower the cooking basket relative to the pot cavity.
[0005] This application employs a detachable support for loading the cooking basket and suspending it inside the pot cavity, solving the problems of complex structure and poor versatility caused by the fixed connection between the pot body assembly and the lifting support in the prior art. The detachable structure enables the cooking basket to be detachably loaded and flexibly replaced, improving the equipment's versatility and cleanability. The dual-pivot drive method avoids the problem of deformation of the lifting support caused by unilateral force, reducing the force exerted by the user's hand when picking up and placing the cooking basket.
[0006] In some improvements, the support also includes a ring, with the supports positioned opposite each other on both sides of the ring. The cooking basket is detachably suspended from the ring via a support structure constructed with an opening. The design of the ring allows the cooking basket to be detachably suspended from the ring via the support structure at the opening, enhancing the stability of the suspension structure and the ease of installation and removal.
[0007] In some improvements, the support and the ring are connected by a bent connector. The bent connector controls the depth to which the cooking basket is placed into the pot cavity, ensuring that it is entirely within the pot cavity.
[0008] In some improvements, the ring is made of metal. The metal material increases the mechanical strength of the ring, ensuring stable support of the cooking basket in high-temperature cooking environments and preventing deformation or failure.
[0009] In some improvements, the bent connector is a metal wire that is welded to the ring body. The bent connector, being a metal wire and welded to the ring body, enhances the strength and durability of the connection point, preventing loosening or detachment and improving the reliability of the connection between the support and the ring body.
[0010] In some improvements, the support structure includes a first handle with heat-insulating material. This handle, with its heat-insulating design, reduces heat during manual operation, enhancing safety without compromising lifting functionality. The first handle facilitates lifting or loading of the rack and cooking basket.
[0011] In some improvements, a concave-convex positioning structure is constructed between the lifting component and the support. This structure ensures the alignment between the lifting component and the support, preventing offset or misalignment during lifting, improving lifting smoothness and positioning accuracy, and enhancing system stability.
[0012] In some improvements, second handles are constructed on both sides of the pot body assembly. These second handles form coupling channels through which the lifting component engages with the support. The integration of coupling channels into the second handles on both sides of the pot body assembly allows the lifting component to engage with the support, improving the product's integration and aesthetics.
[0013] Another aspect of this application provides a low-sugar rice cooker, comprising: a main body, a pot assembly, a heating element, a cooking basket, a support, and a drive mechanism; the pot assembly is disposed on the main body and has a pot cavity with an upper opening; the heating element provides cooking heat to the pot assembly; the support is used to detachably mount the cooking basket and suspend it within the pot cavity, and is equipped with a support seat; the drive mechanism is arranged on the side of the main body and includes a lifting member and a motor, the motor driving the lifting member to rise and fall; in response to the drive of the motor of the drive mechanism, the lifting member acts on the corresponding support seat to cause the cooking basket to rise or fall relative to the pot cavity. By mounting the cooking basket with a detachable support and suspending it within the pot cavity, combined with the drive mechanism driving the lifting member to rise and fall, the rising or falling of the cooking basket is achieved, solving the problem of poor versatility caused by fixed connections and improving the adaptability and structural simplicity of the equipment.
[0014] In some improvements, the pot assembly is detachably assembled from the main body, the heating element is mounted in the lower part of the pot assembly, and a detachable electrical coupler is constructed between the pot assembly and the main body. This detachable assembly, with the heating element mounted in the lower part of the pot assembly and electrically connected via the detachable electrical coupler, allows the pot assembly to be cleaned or replaced independently, simplifying maintenance and improving equipment versatility and user convenience. Attached Figure Description
[0015] Figure 1 This is a three-dimensional schematic diagram of the sugar-reducing rice cooker described in this application. Figure 2 This is a cross-sectional view of the sugar-reducing rice cooker described in this application. Figure 3 This is a three-dimensional schematic diagram of the sugar-reducing rice cooker body shown by dashed lines in this application. Figure 4 This is a three-dimensional schematic diagram of the sugar-reducing rice cooker body, shown by dashed lines, from another angle. Figure 5 This is an exploded view of the sugar-reducing rice cooker that I am applying for. Figure 6 This is an exploded view of another state of the sugar-reducing rice cooker described in this application. Figure 7 This is a three-dimensional schematic diagram of the cooking basket mounted on the support frame according to this application. Figure 8 This is a schematic diagram of the cooking basket of this application mounted on the support. Figure 9 This is an exploded view of the cooking basket and support of this application. Figure 10 This is a three-dimensional schematic diagram of the pot body assembly of this application. Figure 11 This is a three-dimensional schematic diagram of the pot body assembly of this application, represented by dashed lines. Figure 12 This is a cross-sectional view of the pot body assembly of this application. Figure 13 This is an exploded view of the pot body assembly of this application. Figure 14 This is a three-dimensional schematic diagram of the pot body assembly from another angle. Figure 15 This is a three-dimensional schematic diagram of the subject of this application. Figure 16 This is a three-dimensional schematic diagram of the main body of this application, represented by dashed lines. Figure 17 This is a three-dimensional schematic diagram from another angle, partially indicated by the dashed lines in this application. Figure 18 This is a three-dimensional schematic diagram of the two drive mechanisms and drive brackets shown by dashed lines in this application. Figure 19 This is the circuit schematic diagram of this application. Detailed Implementation
[0016] See Figures 1 to 18 An embodiment of the sugar-reducing rice cooker of this application includes: a main body 1, a pot assembly 2, a heating element 2.3, a cooking basket 3, a support 4, and a pair of drive mechanisms 5; the pot assembly 2 is disposed on the main body 1 and has a pot cavity 200 with an upper opening; the heating element 2.3 is used to provide cooking heat to the pot assembly 2; the support 4 is used to detachably load the cooking basket 3 and suspend it in the pot cavity 200, and has two supports 4.1 arranged opposite to each other; the pair of drive mechanisms 5 are arranged opposite to each other on both sides of the main body 1, including a lifting member 5.1 and a motor 5.2, the motor 5.2 driving the lifting member 5.1 to rise and fall; in response to the driving of the motor 5.2 of the two drive mechanisms 5, the supports 4.1 corresponding to the lifting member 5.1 cause the cooking basket 3 to rise or fall relative to the pot cavity 200.
[0017] This application employs a detachable support 4 for mounting the cooking basket 3 and suspending it within the pot cavity 200, combined with a dual-support drive mechanism 5. This provides excellent stability and solves the problems of structural complexity and poor versatility caused by the fixed connection between the pot body assembly and the lifting support in existing technologies. The detachable mounting and flexible replacement of the cooking basket 3 improves the equipment's versatility and cleanability. Furthermore, because the cooking basket 3 is supported by two supports, the lifting support 4 experiences balanced forces on both sides, keeping the cooking basket 3 separated from the inner wall of the pot body assembly 2 and preventing contact during use. The dual-support drive method avoids deformation of the lifting support 4 caused by unilateral force, eliminating the need for additional ball bearings to prevent contact between the cooking basket and the inner wall of the pot body assembly 2. This reduces the force required by the user when placing or removing the cooking basket 3, improving the user experience.
[0018] As attached Figure 10 As shown, the cooking basket 3 has at least a drainage structure at its bottom, such as a mesh. In some embodiments, the cooking basket 3 is constructed of a thin metal sheet, and its bottom has a drainage structure formed by stamping or laser cutting.
[0019] In other embodiments, the support 4 is provided with a support 4.1, and a corresponding drive mechanism 5 is provided and arranged on the side of the body. In response to the drive of the motor 5.2 of the drive mechanism 5, the support 4.1 corresponding to the lifting member 5.1 causes the cooking basket 3 to rise or fall relative to the pot cavity 200.
[0020] See Figure 4 , Figures 16 to 16 In some embodiments, the lifting member 5.1 is equipped with a strip tooth 5.11, and the motor 5.2 is coupled to the strip tooth 5.11 via one or more gears 5.21. In response to the driving of the motors 5.2 of the two drive mechanisms 5, the one or more gears 5.21 drive the strip tooth 5.11, causing the lifting member 5.1 to act on the corresponding support 4.1, thus raising or lowering the cooking basket 3 relative to the pot cavity 200. The coupling between the motor 5.2 of the drive mechanism 5 and the strip tooth 5.11 of the lifting member 5.1 via the gears 5.21 provides good stability and high reliability.
[0021] See Figure 4 , Figures 16 to 16 In some embodiments, a single gear 5.21 is configured and mounted on the output shaft of the motor 5.2. Of course, in other embodiments, two or more gears 5.21 may be configured with multiple speed-changing structures.
[0022] See Figure 4 , Figures 16 to 16 In some embodiments, the lifting member 5.1 is mounted on the body 1 via a lifting support 5.3. Specifically, the lifting support 5.3 is constructed with a vertically extending sliding channel 5.30, and the lifting member 5.1 is adapted to be slidably mounted in the sliding channel 5.30.
[0023] In some embodiments, the lifting support 5.3 can be locked to the body 1 by means of screws or other connectors.
[0024] In some embodiments, the motor 5.2 is secured to the lifting support 5.3 by screws or other connecting parts, so that the motor 5.2, the lifting support 5.3, and the lifting component 5.1 can be integrated into a single assembly, which facilitates overall assembly, improves the installation accuracy between them, and allows for overall assembly into the body 1.
[0025] Of course, in other embodiments, the motor 5.2 is secured to the body 1 by screws or other connecting parts.
[0026] See Figures 5 to 10In some embodiments, the bracket 4 further includes a ring 4.2, with the support 4.1 disposed opposite to each other on both sides of the ring 4.2. The cooking basket 3 is detachably suspended from the ring 4.2 by means of a support structure 3.1 constructed with an opening. The design of the bracket 4 allows the cooking basket 3 to be detachably suspended from the ring 4.2 by means of the support structure 3.1 at the opening, enhancing the stability of the suspension structure and the ease of installation and removal. This avoids the limitations of versatility caused by fixed connections and facilitates adaptation to cooking baskets 3 of different sizes, as long as the support structure 3.1 is compatible.
[0027] In some embodiments, the support structure 3.1 is an annular protrusion formed on the outer side of the port of the cooking basket 3, which can be manufactured by a metal bending process. Of course, in other embodiments, other known methods, such as welding, can also be used. The support structure 3.1 is constructed as an annular protrusion, and the cooking basket 3 and the ring body 4.2 can be assembled at any angle without alignment, thus improving applicability.
[0028] See Figure 7 and Figure 8 In some embodiments, the support 4.1 and the ring 4.2 are connected by a bent connector 4.3. The connector 4.3 can control the depth of the cooking basket inserted into the pot cavity, ensuring that it is completely within the pot cavity.
[0029] In some embodiments, the bending connector 4.3 includes a first connecting portion 4.31 extending laterally from the connecting ring 4.2, a second connecting portion 4.32 including a connecting support 4.1 and located above the first connecting portion 4.31 and extending in the opposite direction, and a third connecting portion 4.33 extending vertically to connect the first connecting portion 4.31 and the second connecting portion 4.32. A bracket slot 400 for engaging with the side wall of the pot assembly 2 is formed between the third connecting portion 4.33 and the support 4.1.
[0030] In some embodiments, the second connecting portion 4.32 is connected to the upper part of the support 4.1, such that the support 4.1 and the third connecting portion 4.33 form the bracket slot 400.
[0031] See Figures 5 to 10 In some embodiments, the ring 4.2 is a metal ring. The metal material increases the mechanical strength of the ring 4.2, ensuring stable support of the cooking basket 3 in high-temperature cooking environments and preventing deformation or failure.
[0032] See Figures 5 to 10 In some embodiments, the bent connector 4.3 is a metal wire that is welded to the ring 4.2. The bent connector 4.3 being a metal wire and welded to the ring 4.2 enhances the strength and durability of the connection point, preventing loosening or detachment, and improving the reliability of the connection between the support 4.1 and the ring 4.2.
[0033] See Figures 5 to 10 In some embodiments, the support 4.1 is configured with a first handle 4.1' including heat-insulating material. The support 4.1 is equipped with the first handle 4.1' containing heat-insulating material. This handle reduces the heat sensation during manual operation by the user through its heat-insulating design, enhancing safety during use, without affecting the lifting function. The first handle 4.1' facilitates lifting or loading the support 4 and the cooking basket 3.
[0034] In some embodiments, the support 4.1 is manufactured entirely by injection molding, and the second connecting part 4.32 can be injection molded together with the support 4.1 by the same injection molding process, which is a well-known injection molding method.
[0035] See Figure 2 , Figures 5 to 8 In some embodiments, a concave-convex positioning structure 54 is constructed between the lifting member 5.1 and the support 4.1. The concave-convex positioning structure 54 ensures the alignment between the lifting member 5.1 and the support 4.1, prevents offset or misalignment during the lifting process, improves the smoothness of lifting and positioning accuracy, and enhances the stability of the system.
[0036] In some embodiments, the concave-convex positioning structure 54 includes a recess 4.11 formed on the support 4.1 and a protrusion 5.10 formed on the top of the lifting member 5.1, wherein the protrusion 5.10 acts on the top wall 4.10 of the recess 4.11 during lifting. Of course, in other embodiments, a protrusion may be provided on the support 4.1, and a recess may be provided on the top of the lifting member 5.1.
[0037] See Figures 1 to 6 ,as well as Figures 10 to 14 In some embodiments, the pot body assembly 2 has second handles 2' on both sides, and the second handles 2' have coupling channels 20'. The lifting member 5.1 and the support 4.1 are engaged through the coupling channels 20'. The second handles 2' on both sides of the pot body assembly 2 integrate the coupling channels 20', enabling the lifting member 5.1 to engage with the support 4.1 through the coupling channels 20', thereby improving the integration and aesthetics of the product.
[0038] See Figures 1 to 8 The recess 4.11 on the support 4.1 is adapted to the second handle 2'. With this structure, the support 4.1 can be positioned by the second handle 2' of the pot body assembly 2, and the lifting component 5.1 can be hidden by the second handle 2', which can improve safety and aesthetics.
[0039] See Figure 2 , Figure 6 , Figures 10 to 15In some embodiments, the pot body assembly 2 is detachably assembled with the main body 1, the heating element 2.3 is mounted on the lower part of the pot body assembly 2, and a detachable electrical coupler 21 is constructed between the pot body assembly 2 and the main body 1. The detachable assembly of the pot body assembly 2 and the main body 1, the heating element 2.3 mounted on the lower part of the pot body assembly 2, and the electrical connection achieved through the detachable electrical coupler 21 allow the pot body assembly 2 to be cleaned or replaced independently, simplifying the maintenance process and improving equipment versatility and user convenience.
[0040] The electrical coupler 21 includes a first electrical coupler 21a installed at the bottom of the pot assembly 2 and electrically connected to the heating element 2.3, and a second electrical coupler 21b installed on the body 1 and electrically connected to the circuitry of the body 1. The first electrical coupler 21a and the second electrical coupler 21b are pluggable. The electrical coupler 21 is prior art, specifically as an electrical coupler between a split kettle and its base.
[0041] In some embodiments, the top of the body 1 is provided with a lifting hole 10 for the lifting member 5.1 to pass through. The protrusion 5.10 at the top of the lifting member 5.1 is at least partially located above the lifting hole 10. With this design, the user can quickly install the pot assembly 2 by observing the protrusion 5.10. Specifically, the pot assembly 2 can be quickly positioned with the body 1 by assembling it with the protrusion 5.10 through the coupling channel 20' of the second handle 2'.
[0042] See Figures 1 to 5 ,as well as Figure 15 The main body 1 has a pot cavity 100. The second electric coupler 21b is installed at the bottom of the pot cavity 100. The upper end of the pot wall of the pot body assembly 2 is higher than the top of the main body 1. The second handle 2' is located above the upper end of the pot wall so that the support 4.1 is locked to the outer side of the upper end of the pot wall of the pot body assembly 2 through the bracket slot 400 and coupled with the lifting member 5.1.
[0043] See Figures 11 to 15 In some embodiments, the pot assembly 2 further includes a pot body 2.1, a base assembly 2.2, and a heating plate 201, wherein the heating plate 201 is mounted on the bottom of the pot body 2.1, and the heating element 2.3 is integrated on the heating plate 201.
[0044] In some embodiments, the heating element 2.3 may be a heating tube, and the heating plate 201 may be a stainless steel die casting. The heating element 2.3 and the heating plate 201 are integrally formed by die casting, and this material and process are existing.
[0045] In some embodiments, the base assembly 2.2 includes a connection plate 2.21 and a bottom shell 2.22. An opening 20 is formed at the bottom of the pot body 2.1. The heating plate 201 is provided with a connection edge 2011 that overlaps with the edge 2.11 of the opening 20. A seal 2012 is arranged between the connection edge 2011 and the edge 2.11. The connection plate 2.21 is connected to the heating plate 201 through a connecting member so that the connection edge 2011 and the edge 2.11 clamp the seal 2012 to form a seal, and the bottom shell 2.22 is connected to the lower side of the connection plate 2.21. Specifically, the connection plate 2.21 is restricted at the lower end of the pot body 2.1, and under the pulling force of the connecting member, the connection edge 2011 and the edge 2.11 are clamped.
[0046] On the lower side of the heating plate 201, a plurality of first connection portions 2011 are formed. The connection plate 2.21 is correspondingly provided with a plurality of second connection holes 2.211. Screws (not shown) pass through the second connection holes 2.211 and are connected to the first connection portions 2011 to connect the connection plate 2.21 and the heating plate 201.
[0047] In some embodiments, a plurality of second connection portions 2.212 are further provided on the lower side of the heating plate 201. The bottom shell 2.22 is correspondingly provided with second connection holes 2.222. Screws (not shown) pass through the second connection holes 2.222 and are connected to the second connection portions 2.212.
[0048] Refer to Figure 13 As shown in the figure, in the middle of the bottom shell 2.22, a coupling hole 2.220 is formed. The first electric coupler 21a is installed in the coupling hole 2.220. The first electric coupler 21a can be specifically fixed to the bottom shell 2.22 by screws.
[0049] Refer to Figures 12 to 15 As shown in the figure, in some embodiments, one or more supporting platforms 101 are formed at the edge of the bottom wall of the pot cavity 100. The bottom shell 2.22 is provided with heat dissipation holes 2.20. The heat dissipation holes 2.20 are connected to the lower side space of the heating plate 201 through the ring holes in the middle of the connection plate 2.21. A heat dissipation gap 100' is left between the bottom shell 2.22 and the bottom wall of the pot cavity 100. The supporting platforms 101 are configured so that the heat of the base assembly 2.2 can be discharged in time through the gap 100' left between the bottom shell 2.22 and the bottom wall of the pot cavity 100.
[0050] In some embodiments, the bottom shell 2.22 is provided with recesses 2.22' that cooperate with the one or more supporting platforms 101. The configuration of the recesses 2.22' can position the pot body assembly 2 and at the same time facilitate the user to quickly assemble and position.
[0051] In some embodiments, there are two sets of the supporting platforms 101 and the recesses 2.22 arranged opposite to each other.
[0052] Refer to Figure 18In some embodiments, a limiting mechanism is also configured, which includes a first micro switch k1 and a second micro switch k2 for detecting the upper and lower limit positions of the lifting member 5.1, and a triggering part k that triggers the first micro switch k1 and the second micro switch k2 as the lifting member 5.1 moves.
[0053] In some embodiments, the trigger part k and the lifting member 5.1 are an integral structure.
[0054] During cooking, the control circuit controls the heating element 2.3 to heat the food (such as rice) for a preset time t1. Then, the control motors 5.2 (M1 and M2) drive the lifting member 5.1 upwards until the trigger part k triggers the first micro switch k1. At this point, the motors 5.2 (M1 and M2) stop working, keeping the cooking basket 3 in the lifted position (draining position) to filter out the hot water t2 from the rice. Then, the control motors 5.2 (M1 and M2) drive the lifting member 5.1 downwards again until the trigger part k triggers the second micro switch k2. At this point, the motors 5.2 (M1 and M2) stop working, immersing the food (such as rice) in the soup for a time t3. This process is repeated multiple times until the designed time is reached.
[0055] The t1, t2 and t3 are designed by the manufacturers according to actual needs and are not improvements in this application.
[0056] Based on the disclosure and teachings of the above specification, those skilled in the art to which this utility model pertains can make changes and modifications to the above embodiments. This utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model.
Claims
1. A sugar-lowering rice cooker, characterized in that, include: Ontology(1); The pot body assembly (2) is disposed on the main body (1) and has a pot cavity (200) with an upper opening. Heating element (2.3) for providing cooking heat to pot body assembly (2); Cooking basket (3); A support (4) is provided for detachably loading the cooking basket (3) and suspending it within the pot cavity (200), and two supports (4.1) are arranged opposite each other. A pair of drive mechanisms (5) are arranged opposite to each other on both sides of the body (1). The drive mechanism (5) includes a lifting member (5.1) and a motor (5.2). The lifting member (5.1) is equipped with a rack tooth (5.11). The motor (5.2) is coupled to the rack tooth (5.11) through one or more gears (5.21). In response to the drive of the motors (5.2) of the two drive mechanisms (5), the lifting member (5.1) acts on the corresponding support (4.1) to raise or lower the cooking basket (3) relative to the pot cavity (200).
2. The sugar-lowering rice cooker according to claim 1, characterized in that, The support (4) also includes a ring (4.2), the support (4.1) being disposed opposite to each other on both sides of the ring (4.2), and the cooking basket (3) being detachably suspended from the ring (4.2) by means of a support structure (3.1) having an opening.
3. The sugar-lowering rice cooker according to claim 2, characterized in that, The support (4.1) and the ring (4.2) are connected by a bent connector (4.3).
4. The sugar-lowering rice cooker according to claim 3, characterized in that, The ring (4.2) is a metal ring.
5. The sugar-lowering rice cooker according to claim 4, characterized in that, The bent connector (4.3) is a metal wire body, which is connected to the ring body (4.2) by welding.
6. The sugar-lowering rice cooker according to any one of claims 1 to 5, characterized in that, The support (4.1) is constructed with a first handle (4.1') including thermal insulation material.
7. The sugar-lowering rice cooker according to any one of claims 1 to 5, characterized in that, A concave-convex positioning structure (54) is constructed between the lifting component (5.1) and the support (4.1).
8. The sugar-lowering rice cooker according to any one of claims 1 to 5, characterized in that, The pot body assembly (2) has a second handle (2') on both sides, and the second handle (2') has a coupling channel (20'). The lifting member (5.1) and the support (4.1) are connected through the coupling channel (20').
9. A blood sugar-lowering rice cooker, characterized in that, include: Ontology(1); The pot body assembly (2) is disposed on the main body (1) and has a pot cavity (200) with an upper opening. Heating element (2.3) for providing cooking heat to pot body assembly (2); Cooking basket (3); A support (4) for detachably loading the cooking basket (3) and suspending it within the pot cavity (200) is provided with two supports (4.1). A drive mechanism (5) is arranged on the side of the main body (1). The drive mechanism (5) includes a lifting member (5.1) and a motor (5.2). The motor (5.2) drives the lifting member (5.1) to rise and fall. In response to the drive of the motor (5.2) of the drive mechanism (5), the lifting member (5.1) acts on the support (4.1) to raise or lower the cooking basket (3) relative to the pot cavity (200).
10. The sugar-lowering rice cooker according to claim 1 or 9, characterized in that, The pot body assembly (2) is detachably assembled with the body (1), the heating element (2.3) is assembled at the lower part of the pot body assembly (2), and a detachable electrical coupler (21) is constructed between the pot body assembly (2) and the body (1).