Cooking utensil
By designing the interference fit of the scraper and the pot body and the elastic cantilever structure in the cooking utensil, the problems of poor mixing effect and difficulty in cleaning are solved, and a closer fit and a more uniform mixing effect are achieved.
Patent Information
- Application Number
- CN202422173001.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-06-28
- Filing Date
- 2024-09-04
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-04
AI Technical Summary
Traditional cooking utensils have the problem of poor mixing effect during the stirring process, especially the gap between the stirring arm and the pot body, which causes some raw materials to be unable to be stirred and it is difficult to clean.
A cooking utensil is designed, using the scraper piece to interfere with the inner wall of the pot body, and a cantilever structure is formed through elastic connections. The scraper piece and the inner wall of the pot body are closely fitted, and the fit state is adjusted by deformation of the elastic components to ensure the close contact between the scraper piece and the inner wall of the pot body.
It improves the stirring effect, reduces the stirring blind spots, enhances the convenience of cleaning, ensures the close fit between the scraper and the inner wall of the pot body, and improves the stirring uniformity and cleanliness.
Smart Images

Figure CN223208243U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cooking, and in particular to a cooking utensil. Background Art
[0002] Traditional cooking appliances use a motor to drive a stirring arm, which then adheres to the pot to stir the ingredients, achieving uniform mixing during cooking. However, gaps can easily form between the stirring arm and the pot, causing some ingredients to remain stuck to the pot for extended periods without being stirred, affecting the mixing effect. Furthermore, the stirring arm's overall structural design leaves many blind spots, making cleaning difficult. Utility Model Content
[0003] The main purpose of the utility model is to provide a cooking utensil to solve the problem of poor stirring effect of the cooking utensil in the prior art.
[0004] In order to achieve the above-mentioned objectives, the present invention provides a cooking utensil, including a pot body, a stirring member, a connecting member, and a pot scraper. The stirring member is rotatably arranged in the pot body, one end of the connecting member is connected to the stirring member, and the pot scraper is connected to the end of the connecting member away from the stirring member to form a cantilever structure, and the pot scraper is interference fit with the inner wall of the pot body; the connecting member is an elastic member, and the pot scraper is deformed by the squeezing of the pot body; and / or the pot scraper is an elastic member, and the pot scraper is deformed by the squeezing of the pot body.
[0005] Furthermore, there are multiple pot scrapers, and at least two pot scrapers are arranged in sequence along the axial direction of the pot body, and respectively abut against the top inner wall and the bottom inner wall of the pot body.
[0006] Furthermore, the stirring member includes a base body and a connecting arm, and two ends of the connecting arm are respectively connected to the base body and the connecting member.
[0007] Furthermore, the connecting member includes a first section and a second section that are bent and connected in sequence, an end of the first section away from the second section is connected to the stirring member, and the second section is connected to the pot scraping member.
[0008] Furthermore, one of the pot scraper and the connecting member has a slot, and the other of the pot scraper and the connecting member has an inserting portion, which is inserted into the slot to detachably connect the pot scraper and the connecting member.
[0009] Furthermore, the cooking appliance further comprises a driving assembly, the driving assembly comprises a transmission shaft, the stirring member is threadedly connected to the transmission shaft, and the direction of loosening the thread is opposite to the rotation direction of the stirring member.
[0010] Furthermore, the transmission shaft has a mounting hole, which includes a first hole section and a second hole section axially connected in sequence, and the diameter of the first hole section is larger than the diameter of the second hole section. The transition area between the first hole section and the second hole section forms a guide slope, and the bottom end of the stirring member has a stud, which extends from the first hole section into the second hole section and is threadedly engaged with the second hole section.
[0011] Furthermore, a mounting area is formed between the stirring member and the transmission shaft, and the threaded structures of the stirring member and the transmission shaft are located in the mounting area. The cooking appliance also includes a sealing member, which is located in the mounting area and seals the mounting area.
[0012] The cooking appliance further includes a drive assembly, the drive assembly including a transmission shaft that is drivably connected to the stirring member and drives the scraper member to rotate. The cooking appliance further includes a sensor and a detector, the sensor being connected to the transmission shaft and rotating synchronously, and the detector detecting the position of the sensor. The drive assembly further includes a driven wheel that is drivably connected to the transmission shaft and rotating synchronously, the sensor and the driven wheel being superimposed, and at least one of the sensor and the driven wheel having an arcuate groove. The drive assembly further includes a fastener that is disposed within the arcuate groove and locks the sensor and the driven wheel together.
[0013] The technical solution of the present invention is to provide at least one of the scraper and the connector as an elastic component, and to connect the scraper to the connector to form a cantilever structure. This, combined with the interference fit between the scraper and the inner wall of the pot, allows the scraper to fit more closely against the inner wall of the pot, thereby improving the stirring effect. Specifically, the cantilever structure and elastic component of the scraper and connector allow the scraper to drive the connector, or only the scraper, to deform, thereby causing the scraper to move. The interference fit between the scraper and the pot causes the elastic scraper and / or connector to be squeezed, placing the scraper and / or connector in a compressed state. When the scraper member and the inner wall of the pot tend to move away from each other due to external force, wear, etc., the force between the scraper member and the inner wall of the pot decreases, thereby reducing the force on the scraper member and the connecting member. Due to the provision of the elastic component, the scraper member and / or the connecting member tend to expand, thereby driving the scraper member to move closer to the inner wall of the pot. When the scraper member and the inner wall of the pot tend to move closer to each other due to external force, etc., the force between the scraper member and the inner wall of the pot increases, thereby increasing the force on the scraper member and the connecting member. Due to the provision of the elastic component, the scraper member and / or the connecting member tend to compress, thereby driving the scraper member to move away from the inner wall of the pot. In this way, the connecting member, the scraper member and the inner wall of the pot are always in a balanced state, so that the scraper member and the inner wall of the pot are always in an interference state, thereby ensuring a close fit between the scraper member and the inner wall of the pot, improving the fitting effect, and thus ensuring the stirring effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The drawings constituting part of this application are provided to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are provided to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0015] Figure 1 Shows a bottom view of the cooking utensil of the present invention;
[0016] Figure 2 A cross-sectional view of a cooking appliance is shown;
[0017] Figure 3 A cross-sectional view showing another angle of the cooking appliance;
[0018] Figure 4 Shown Figure 3 A local enlarged view of point A;
[0019] Figure 5 Shows the assembly diagram of the stirring member, connecting member, and pot scraping member;
[0020] Figure 6 shows a schematic structural diagram of the driven wheel;
[0021] Figure 7 A schematic structural diagram of the sensor sheet is shown.
[0022] The above drawings include the following reference numerals:
[0023] 10. Pot body; 20. Stirring element; 30. Connecting element; 31. First section; 32. Second section; 40. Pot scraper; 50. Drive assembly; 51. Transmission shaft; 511. Mounting hole; 512. First hole section; 513. Second hole section; 52. Fastener; 60. Sealing element; 70. Induction element; 71. Protrusion; 80. Detection element; 90. Driven wheel. DETAILED DESCRIPTION
[0024] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0025] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by ordinary technicians in the technical field to which this application belongs.
[0026] In the present invention, unless otherwise specified, directional words such as "up, down, top, bottom" are usually used with reference to the directions shown in the drawings, or with reference to the components themselves in the vertical, perpendicular or gravity direction; similarly, for ease of understanding and description, "inside and outside" refer to the inside and outside relative to the outline of each component itself, but the above directional words are not used to limit the present invention.
[0027] In order to solve the problem of poor stirring effect of cooking utensils in the prior art, the utility model provides a cooking utensil.
[0028] Figures 1 to 7The cooking device shown includes a pot body 10, a stirring member 20, a connecting member 30, and a pot scraper 40. The stirring member 20 is rotatably disposed within the pot body 10. One end of the connecting member 30 is connected to the stirring member 20, and the pot scraper 40 is connected to the end of the connecting member 30 away from the stirring member 20 to form a cantilever structure. The pot scraper 40 has an interference fit with the inner wall of the pot body 10. The connecting member 30 is an elastic component, and the pot scraper 40 is deformed by the pressure of the pot body 10; or the pot scraper 40 is an elastic component, and the pot scraper 40 is deformed by the pressure of the pot body 10. In this embodiment, by configuring at least one of the pot scraper 40 and the connecting member 30 as an elastic component and connecting the connecting member 30 to the pot scraper 40 to form a cantilever structure, the interference fit between the pot scraper 40 and the inner wall of the pot body 10 ensures a closer fit between the pot scraper 40 and the inner wall of the pot body 10, thereby improving the stirring effect. Specifically, the cantilever structure and elastic component of the scraper 40 and the connecting member 30 enable the scraper 40 to drive the connecting member 30 or only the scraper 40 to deform, thereby causing the scraper 40 to move. The interference fit between the scraper 40 and the pot body 10 causes the elastic scraper 40 and / or the connecting member 30 to be squeezed, and the scraper 40 and / or the connecting member 30 are in a compressed state. When the scraper 40 and the inner wall of the pot body 10 tend to move away from each other due to external force, wear, etc., the force between the scraper 40 and the inner wall of the pot body 10 decreases, thereby reducing the force on the scraper 40 and the connecting member 30. Due to the provision of the elastic component, the scraper 40 and / or the connecting member 30 tend to expand, thereby driving the scraper 40 to move toward the inner wall of the pot body 10. When the scraper 40 and the inner wall of the pot body 10 tend to move toward each other due to external force, etc., the scraper 40 and the pot body 10 tend to move toward each other. 0, thereby increasing the force on the scraper member 40 and the connecting member 30. Due to the provision of the elastic component, the scraper member 40 and / or the connecting member 30 are compressed, thereby driving the scraper member 40 to move away from the inner wall of the pot body 10. In this way, the connecting member 30, the scraper member 40, and the inner wall of the pot body 10 are always in a balanced state, so that the scraper member 40 and the inner wall of the pot body 10 are always in an interference state, thereby ensuring that the scraper member 40 and the inner wall of the pot body 10 are closely fitted, improving the fitting effect, and thus ensuring the stirring effect.
[0029] It should be noted that the up and down direction refers to the axial direction of the pot body 10, that is, the direction perpendicular to the rotation direction, that is, Figure 1 The up and down directions in .
[0030] This embodiment is described by taking the connecting member 30 as an elastic member as an example. Of course, the pot scraping member 40 can also be an elastic member, or both the connecting member 30 and the pot scraping member 40 can be elastic members. The mode of action and specific effects thereof are similar to those of this embodiment and will not be described in detail.
[0031] In this embodiment, there are multiple pot scrapers 40, with at least two pot scrapers 40 positioned sequentially along the axial direction of the pot body 10, respectively abutting the top and bottom inner walls of the pot body 10. This reduces blind spots for the pot scrapers 40 and improves the stirring effect. Specifically, in this embodiment, there are two pot scrapers 40, staggered vertically at different heights of the stirring member 20. Accordingly, there are also two connecting members 30, so that the two pot scrapers 40 coordinate with the different heights of the pot body 10 to scrape the bottom and side walls. This facilitates stirring of food at different heights within the pot body 10 by the pot scrapers 40 while avoiding interference. Of course, the pot scrapers 40 can also be provided in other quantities as needed, and the number of connecting members 30 can be adjusted to match the number of pot scrapers 40 to secure the pot scrapers 40 to different heights on the stirring member 20.
[0032] In this embodiment, considering that the stirring member 20 serves as a supporting member for the connecting member 30 and the pot scraper 40, and that the stirring member 20 needs to rotate continuously, the stirring member 20 needs to have a certain strength, and the main function of the pot scraper 40 is to fit the inner wall of the pot body 10 to improve the stirring effect. Relatively thin materials are easy to deform, which is conducive to fitting with the inner wall of the pot body 10. Therefore, along the circumference of the pot body 10, the thickness of the pot scraper 40 can usually be set to be less than the thickness of the stirring member 20. Optionally, the pot scraper 40 can be made of sheet metal, which has good elasticity and is conducive to improving the fitting effect between the pot scraper 40 and the inner wall of the pot body 10. Of course, in this application, the thickness of the pot scraper 40 can also be set to be greater than or equal to the thickness of the stirring member 20, and reasonable adaptation is made depending on the actual usage situation. This is not specifically limited in this application. The stirring member 20 of this embodiment includes a base and a connecting arm. The connecting arm is in the shape of a curved rod and extends obliquely along the upper and lower directions of the pot body 10. The base is arranged at the bottom of the pot body 10, the bottom end of the connecting arm is connected to the base, and the top side of the connecting arm is connected to the connecting member 30.
[0033] In this embodiment, the connecting member 30 is the primary component that deforms to adjust the fit between the pot scraper 40 and the inner wall of the pot body 10. The connecting member 30 comprises a first section 31 and a second section 32, which are sequentially bent and connected. The end of the first section 31, distal from the second section 32, is connected to the stirring member 20, enabling the connecting member 30 to rotate with the stirring member 20. The second section 32 is connected to the pot scraper 40, driving the pot scraper 40 to rotate with the stirring member 20. The first section 31 extends radially along the pot body 10, while the second section 32 is bent and connected to the first section 31, forming an angle greater than 90° at the bend. This allows the pot scraper 40 to deform at the bend when a force is applied to the pot scraper 40, thereby changing the angle between the first section 31 and the second section 32. This adjusts the fit between the pot scraper 40 and the inner wall of the pot body 10, ensuring a good fit between the pot scraper 40 and the inner wall of the pot body 10.
[0034] In this embodiment, one of the scraper 40 and the connector 30 has a slot, and the other has a plug-in portion that plugs into the slot, allowing the scraper 40 to be removably connected to the connector 30. Specifically, the second section 32 of the connector 30 in this embodiment has a groove extending through the thickness of the scraper 40 on the side closest to the scraper 40, forming two protrusions on either side of the groove. The protrusions serve as the plug-in portions. Slots are provided on the side surfaces of the scraper 40 in the thickness direction to mate with the two protrusions. The shape of the slots matches the shape of the protrusions, allowing the protrusions to fit into the slots, thereby securing the scraper 40 and the connector 30 and preventing the scraper 40 from dislodging when the connector 30 and the scraper 40 rotate with the stirring member 20. When cleaning is required, the protrusions are removed from the slots, separating the scraper 40 and the connector 30 for easier cleaning. Alternatively, the slots can be configured as square slots, round holes, etc., and the protrusions can also be configured as square, cylindrical, etc. Of course, the connecting member 30 and the pot scraper 40 can also be fixed by providing a slot on the second section 32 of the connecting member 30 and a protrusion on the pot scraper 40. This plug-and-pull connection between the pot scraper 40 and the connecting member 30, on the one hand, makes the pot scraper 40 easy to disassemble, allowing for timely removal of food residues. On the other hand, the pot scraper 40 does not use fastening parts, which can reduce the accumulation of food residues on the pot scraper 40, thereby reducing the risk of food residues being hidden in the pot scraper 40 and breeding bacteria.
[0035] In this embodiment, the cooking appliance further includes a drive assembly 50, which includes a transmission shaft 51. The stirring member 20 is threadedly connected to the transmission shaft 51, and the direction of the threaded screw loosening is opposite to the direction of rotation of the stirring member 20. The direction of rotation of the pot body 10 is opposite to that of the stirring member 20. In this way, when the stirring member 20 rotates with the transmission shaft 51, the threaded screw tightens with the rotation of the stirring member 20, making the connection between the stirring member 20 and the transmission shaft 51 more secure and reliable, and preventing the stirring member 20 from loosening and requiring frequent maintenance of the cooking appliance. In addition, the counter-rotation between the pot body 10 and the stirring member 20 helps to improve the stirring effect.
[0036] In this embodiment, the transmission shaft 51 has a mounting hole 511, which includes a first hole section 512 and a second hole section 513 axially connected in sequence, and the diameter of the first hole section 512 is larger than the diameter of the second hole section 513. The transition area between the first hole section 512 and the second hole section 513 forms a guiding slope, and the bottom end of the stirring member 20 has a stud, which extends from the first hole section 512 into the second hole section 513 and is threadedly engaged with the second hole section 513. Specifically, the stud of the stirring member 20 has an external thread, and the second hole section 513 has an internal thread. The stud of the stirring member 20 is screwed into the second hole section 513. Since the first hole section 512 is located above the second hole section 513, the stud needs to enter the first hole section 512 first. Since the inner diameter of the first hole section 512 is larger than the outer diameter of the stud, the stud only needs to be roughly aligned when extending into the first hole section 512. During the process of the stud extending, it can abut against the guide bevel, and thus accurately dock with the second hole section 513 under the guidance of the guide bevel, thereby achieving the effect of facilitating the stud to be smoothly screwed into the second hole section 513.
[0037] In this embodiment, a mounting area is formed between the stirring member 20 and the transmission shaft 51. The threaded structures of the stirring member 20 and the transmission shaft 51 are located within the mounting area. In this embodiment, a recess is provided at the bottom of the stirring member 20. A portion of the stud is located within the recess, and the top end of the transmission shaft 51 can extend into the recess, thereby achieving the mating of the stirring member 20. Within this recess, the stirring member 20 and the transmission shaft 51 form a mounting area, and the stud and other components are naturally located within the mounting area. To ensure that food in the pot body 10 does not contact the threads, which could cause bacterial growth and shorten the service life of the cooking appliance, the cooking appliance is provided with a seal 60. The seal 60 is located within the mounting area and seals the mounting area. In this way, the seal 60 seals the gap between the mounting area and the outside, thereby isolating the stud and other components within the mounting area from the outside, thereby isolating the external food from contacting the threads. This makes the entire structure simple, hygienic, easy to disassemble, and convenient to clean. Preferably, the seal 60 in this embodiment is an O-ring. An annular groove is provided on the outer circumference of the drive shaft 51 above the agitator 20 where it mates. When the stud of the drive shaft 51 is screwed into the mounting hole 511, the drive shaft 51 squeezes the O-ring, thereby sealing the mounting area. Of course, other methods can be used to seal the mounting area, as long as they achieve the desired sealing effect and prevent food from entering the mounting hole 511. For example, the seal 60 can be a gasket disposed between the lower surface of the agitator 20 and the upper surface of the drive shaft 51.
[0038] In this embodiment, the drive shaft 51 is drivably connected to the stirring member 20 and drives the pot scraper 40 to rotate. The cooking appliance also includes a sensor 70 and a detector 80. The sensor 70 is connected to the drive shaft 51 and rotates synchronously with it. The detector 80 detects the position of the sensor 70. During installation of the cooking appliance, the stirring member 20 is first adjusted to the same initial position, and then the sensor 70 and the detector 80 are adjusted to the same relative position, thereby maintaining the consistent position of the pot scraper 40 for each appliance shipped. In this way, the drive shaft 51 can drive the stirring member 20 and the sensor 70 to rotate synchronously, so that the detector 80 can determine the position of the pot scraper 40 by detecting the position of the sensor 70, thereby detecting the operating status of the cooking appliance.
[0039] In this embodiment, the sensing member 70 has a radially protruding portion 71 , and when the sensing member 70 rotates, the protruding portion 71 can trigger the detecting member 80 . Specifically, the sensing member 70 is an irregular annular structure, and a portion of the edge of the sensing member 70 at a circumferential position radially protrudes, and the protruding portion is the protrusion 71, so that the distance between the circumferential outer edge of the sensing member 70 and the transmission shaft 51 is not completely the same. The detection member 80 can adopt a photoelectric switch or other components. The sensing member 70 of this embodiment is in a sheet shape, and its plane passes through the detection gap of the detection member 80. Due to the provision of the protrusion 71, when the sensing member 70 rotates, the protrusion 71 can switch between a position extending into the detection gap of the detection member 80 and a position exiting the detection gap of the detection member 80. In this way, when the protrusion 71 is in the detection gap, the protrusion 71 blocks the light signal emitted by the detection member 80, so that the detection member 80 is in one state. When the protrusion 71 exits the detection gap, the sensing member 70 no longer blocks the light signal emitted by the detection member 80, so that the detection member 80 is in another state, thereby realizing the detection of the position of the sensing member 70, and also realizing the detection of the positions of the stirring member 20 and the scraping member 40.
[0040] In this embodiment, the drive assembly 50 further includes a driven wheel 90, which is drivenly connected to the transmission shaft 51 and rotates synchronously. The induction member 70 is overlapped with the driven wheel 90, and at least one of the induction member 70 and the driven wheel 90 has an arcuate groove. The drive assembly 50 further includes a fastener 52, which is inserted into the arcuate groove and locks the induction member 70 and the driven wheel 90 together. Specifically, the drive assembly 50 of this embodiment is driven by a motor and further includes a motor. The output end of the motor is provided with a bevel gear, and the axis of the bevel gear is perpendicular to the axis of the driven wheel 90, and the two are meshed with each other. A D-shaped hole is provided in the center of the driven wheel 90, and the transmission shaft 51 has a matching shape so that it is inserted into the D-shaped hole to achieve synchronous rotation of the driven wheel 90 and the transmission shaft 51. In this embodiment, an arc-shaped groove is provided in the thickness direction of the sensing member 70, that is, in the overall axial direction. Correspondingly, a bolt hole is provided on the driven wheel 90, and the position of the bolt hole is corresponding to the position of the arc-shaped groove. In this way, the bolt can be passed through the bolt hole and the arc-shaped groove. Due to the shape of the arc-shaped groove, the bolt can move in the arc-shaped groove, thereby adjusting the positional relationship between the sensing member 70 and the driven wheel 90. After the adjustment is completed, tightening the bolt can achieve the locking of the sensing member 70 and the driven wheel 90, and achieve the effect of the transmission shaft 51 driving the sensing member 70 to rotate together. In this way, the setting of the arc-shaped groove enables the circumferential position of the sensing member 70 relative to the driven wheel 90 to be adjusted, thereby making the fixation of the driven wheel 90 and the sensing member 70 more flexible. During adjustment, the position of the stirring member 20 and the position of the sensing member 70 can be adjusted separately, that is, when adjusting the stirring member 20, the sensing member 70 can be adjusted without affecting the sensing member 70, and when adjusting the sensing member 70, the stirring member 20 can be adjusted without affecting the stirring member 20. This can not only keep the position of the scraper member 40 of each device leaving the factory consistent, but also ensure the effective cooperation between the sensing member 70 and the detection member 80. Of course, the fixing method of the driven wheel 90 and the transmission shaft 51 is not limited to this, and a fixing method such as gears can also be used. The fixing method of the driven wheel 90 and the sensing member 70 can also be set to a method of providing an arc groove on the driven wheel 90 and providing a bolt hole on the sensing plate, so as to achieve the purpose of flexible fixation.
[0041] Preferably, in this embodiment, multiple groups of bolt holes are evenly distributed along the circumference of the driven wheel 90. Correspondingly, multiple groups of arc grooves are set along the circumference of the sensing member 70, and one or more bolts are set in each arc groove, so that the adjustable fit between the driven wheel 90 and the sensing member 70 is more accurate and stable.
[0042] It should be noted that, in the above embodiments, a plurality refers to at least two.
[0043] From the above description, it can be seen that the above embodiments of the present invention achieve the following technical effects:
[0044] 1. Solve the problem of unsatisfactory stirring effect of cooking utensils in the prior art;
[0045] 2. The scraper is connected to the pot by an elastic connector to form a cantilever structure. The scraper fits tightly with the inner wall of the pot, thereby improving the stirring effect.
[0046] 3. The connecting parts, the scraper and the inner wall of the pot are always in a balanced state, so that the scraper and the inner wall of the pot are always in an interference state, thereby ensuring that the scraper and the inner wall of the pot fit closely, improving the fitting effect, and thus ensuring the stirring effect.
[0047] Obviously, the embodiments described above are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.
[0048] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, tasks, devices, components and / or combinations thereof.
[0049] It should be noted that the terms "first," "second," and the like in the specification and claims of this application and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.
[0050] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A cooking utensil, characterized in that: include: Pot body (10); a stirring member (20), the stirring member (20) being rotatably disposed in the pot body (10); a connecting member (30), one end of the connecting member (30) being connected to the stirring member (20); a pot scraper (40), the pot scraper (40) being connected to an end of the connecting member (30) away from the stirring member (20) to form a cantilever structure, the pot scraper (40) being interference fit with the inner wall of the pot body (10); The connecting member (30) is an elastic member, and the pot scraping member (40) is squeezed by the pot body (10) to drive the connecting member (30) to deform; and / or, the pot scraping member (40) is an elastic member, and the pot scraping member (40) is squeezed and deformed by the pot body (10).
2. The cooking appliance according to claim 1, wherein There are multiple pot scraping members (40), and at least two pot scraping members (40) are sequentially arranged along the axial direction of the pot body (10) and respectively abut against the top inner wall and the bottom inner wall of the pot body (10).
3. The cooking appliance according to claim 1, wherein The stirring member (20) comprises a seat body and a connecting arm, and two ends of the connecting arm are respectively connected to the seat body and the connecting member (30).
4. The cooking appliance according to claim 1, wherein The connecting member (30) comprises a first section (31) and a second section (32) which are bent and connected in sequence, wherein the end of the first section (31) away from the second section (32) is connected to the stirring member (20), and the second section (32) is connected to the pot scraping member (40).
5. The cooking appliance according to claim 1, wherein One of the pot scraper (40) and the connecting member (30) has a slot, and the other of the pot scraper (40) and the connecting member (30) has a plug-in portion, which is plugged into the slot to detachably connect the pot scraper (40) and the connecting member (30). The cooking appliance according to claim 1 , wherein: The cooking appliance further comprises a driving assembly (50), wherein the driving assembly (50) comprises a transmission shaft (51), the stirring member (20) is threadedly connected to the transmission shaft (51), and the direction of loosening the thread is opposite to the direction of rotation of the stirring member (20).
7. The cooking appliance according to claim 6, characterized in that The transmission shaft (51) has a mounting hole (511), and the mounting hole (511) includes a first hole section (512) and a second hole section (513) connected in axial sequence, and the diameter of the first hole section (512) is larger than the diameter of the second hole section (513), and a transition area between the first hole section (512) and the second hole section (513) forms a guiding inclined surface, and the bottom end of the stirring member (20) has a stud, which extends from the first hole section (512) into the second hole section (513) and is threadedly engaged with the second hole section (513).
8. The cooking appliance according to claim 6, wherein An installation area is formed between the stirring member (20) and the transmission shaft (51), and the threaded structures of the stirring member (20) and the transmission shaft (51) are located in the installation area. The cooking appliance also includes a sealing member (60), which is located in the installation area and seals the installation area.
9. The cooking appliance according to claim 1, wherein The cooking appliance further comprises a driving assembly (50), wherein the driving assembly (50) comprises a transmission shaft (51), wherein the transmission shaft (51) is drivingly connected to the stirring member (20) and drives the pot scraping member (40) to rotate, and the cooking appliance further comprises a sensing member (70) and a detecting member (80), wherein the sensing member (70) is connected to the transmission shaft (51) and rotates synchronously, and the detecting member (80) detects the position of the sensing member (70).
10. The cooking appliance according to claim 9, characterized in that The driving assembly (50) further includes a driven wheel (90), which is connected to the transmission shaft (51) by driving and rotates synchronously, the sensing member (70) and the driven wheel (90) are stacked, and at least one of the sensing member (70) and the driven wheel (90) has an arcuate groove, and the driving assembly (50) further includes a fastener (52), which is inserted into the arcuate groove and locks the sensing member (70) and the driven wheel (90) together.