Cooking device
By setting up a cracked teeth with adjustable angles in the cooking equipment pot, the problem of large pieces of ingredients being unable to break up is solved, and the cooking efficiency is improved.
Patent Information
- Application Number
- CN202211740215.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-30
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2042-12-30
AI Technical Summary
The existing cooking equipment cannot effectively break or break up large pieces of ingredients, which affects the normal stirring efficiency of the stirring device and leads to a decrease in cooking efficiency.
The dispersed teeth are arranged in the cooking chamber of the pot. One end of the dispersed teeth is used for rotational connection, and the other end can be rotatably arranged. By adjusting the angle between the wall of the cooking chamber, the dispersing of large pieces of ingredients can be achieved.
Effectively breaking up large pieces of ingredients, improving the mixing efficiency of cooking equipment, and ensuring that the ingredients can be cooked better.
Smart Images

Figure CN115998140B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cooking appliances, and particularly to a cooking device. Background Art
[0002] Existing cooking devices are devices that can cook ingredients fully automatically or semi - automatically. Existing cooking devices generally include a frame, a cooking pot, and a stirring device. The cooking pot is installed on the frame and can be driven to rotate, and the stirring device is arranged in the cooking pot to stir the ingredients in the cooking pot.
[0003] However, existing stirring devices only have a stirring function or only have a scraping function. When the size of the ingredients in the cooking pot is large, the stirring device cannot break up or crush large pieces of ingredients, which not only affects the normal stirring of the stirring device but also affects the cooking efficiency of the cooking device. Summary of the Invention
[0004] The main object of the present invention is to provide a cooking device, aiming to facilitate the breaking up of large pieces of ingredients for the cooking device to cook.
[0005] To achieve the above object, the present invention provides a cooking device, which includes a frame, a cooking pot, and a breaking - up assembly; wherein, the cooking pot has a cooking cavity with one end open, the cooking pot is installed on the frame and the cooking pot can be driven to rotate relative to the frame; the breaking - up assembly includes breaking - up teeth, the breaking - up teeth are installed in the cooking cavity, one end of the breaking - up teeth is used for rotational connection, the other end of the breaking - up teeth is rotatably arranged, and the breaking - up teeth are used for breaking up the ingredients in the cooking cavity.
[0006] In some embodiments of the present invention, one end of the breaking - up teeth is rotatably connected to the cavity wall of the cooking cavity, and the other end of the breaking - up teeth extends towards the rotation axis of the cooking pot.
[0007] In some embodiments of the present invention, the breaking - up assembly further includes a rotating shaft, the rotating shaft is rotatably installed in the cooking cavity, the number of the breaking - up teeth is multiple, and the multiple breaking - up teeth are connected to the rotating shaft, and the multiple breaking - up teeth are arranged at intervals along the axial direction of the rotating shaft.
[0008] In some embodiments of the present invention, the multiple breaking - up teeth and the rotating shaft are integrally formed; and / or, the rotating shaft is made of a flexible material, and the rotating shaft can produce elastic deformation under restraint.
[0009] In some embodiments of the present invention, the rotating shaft includes at least two connecting sections, at least two of the connecting sections are rotatably installed in the cooking cavity, at least two of the connecting sections are provided with the breaking teeth, and two adjacent connecting sections are rotatably connected so that the two adjacent connecting sections can move toward or away from the cavity wall of the cooking cavity.
[0010] In some embodiments of the present invention, two adjacent connecting sections are hingedly arranged, or two adjacent connecting sections are connected by a flexible member.
[0011] In some embodiments of the present invention, the breaking up assembly further includes a bearing member, the bearing member is installed in the cooking cavity, and the rotating shaft is rotatably connected to the bearing member.
[0012] In some embodiments of the present invention, the supporting member is fixedly connected to the frame, the rotating shaft extends from the bottom of the cooking cavity to the cavity opening of the cooking cavity, and an input member is provided at one end of the rotating shaft adjacent to the cavity opening of the cooking cavity, and the input member can be driven to drive the rotating shaft to rotate.
[0013] In some embodiments of the present invention, the cooking device further comprises a driving motor, wherein the driving motor is fixedly connected to the frame and connected to the input member to drive the rotating shaft to rotate.
[0014] In some embodiments of the present invention, the carrier is arranged to rotate synchronously with the cookware, the rotating shaft is extended from the cavity bottom of the cooking cavity to the cavity opening of the cooking cavity, and a toggle member is arranged at one end of the rotating shaft adjacent to the cavity opening of the cooking cavity;
[0015] The cooking equipment also includes a toggle device, which includes a toggle body and a toggle pin. The toggle body is arranged on the frame, and the toggle pin is transmission-connected with the toggle body. The toggle body drives the toggle pin to extend and retract from the cavity opening of the cooking cavity to the cavity bottom of the cooking cavity to act on the toggle member.
[0016] In some embodiments of the present invention, the toggle member includes two toggle rods, one end of each of the toggle rods is connected to one end of the rotating shaft adjacent to the cavity opening of the cooking cavity, the other ends of each of the toggle rods extend toward the rotation axis of the cookware, the two toggle rods are also arranged at an angle, and the toggle pin can selectively contact one of the two toggle rods.
[0017] In some embodiments of the present invention, the carrier is fixedly connected to the cavity wall of the cooking cavity, and the rotating shaft is rotatably mounted on a side of the carrier away from the cavity wall of the cooking cavity; or,
[0018] The carrier is fixedly connected to the frame, and the carrier is also spaced apart from the cavity wall of the cooking cavity. The rotating shaft is rotatably installed on one side of the carrier adjacent to the cavity wall of the cooking cavity, or the rotating shaft is rotatably installed on one side of the carrier away from the cavity wall of the cooking cavity; or,
[0019] The carrier is rotatably connected to the frame, the carrier is spaced apart from the cavity wall of the cooking cavity, the rotating shaft is rotatably installed on one side of the carrier adjacent to the cavity wall of the cooking cavity, or the rotating shaft is rotatably installed on one side of the carrier away from the cavity wall of the cooking cavity.
[0020] In some embodiments of the present invention, the carrier is fixedly connected to the cavity wall of the cooking cavity, the rotating shaft is rotatably installed on one side of the carrier away from the cavity wall of the cooking cavity, and a plurality of the dispersing teeth are arranged at intervals from the bottom of the cooking cavity to the mouth of the cooking cavity;
[0021] The cooking device further includes an active stirring assembly, the active stirring assembly includes a stirring bracket and a plurality of active stirring teeth. The stirring bracket is rotatably connected to the frame, the stirring bracket extends from the bottom of the cooking cavity to the mouth of the cooking cavity, the stirring bracket is spaced apart from the cavity wall of the cooking cavity, a plurality of the active stirring teeth are arranged on one side of the stirring bracket adjacent to the cavity wall of the cooking cavity, and a plurality of the active stirring teeth and a plurality of the dispersing teeth are alternately arranged in sequence.
[0022] In some embodiments of the present invention, the carrier is rotatably connected to the frame, the carrier is spaced apart from the cavity wall of the cooking cavity, the rotating shaft is rotatably installed on one side of the carrier adjacent to the cavity wall of the cooking cavity, and a plurality of the dispersing teeth are arranged at intervals from the bottom of the cooking cavity to the mouth of the cooking cavity;
[0023] The cooking device further includes a passive stirring assembly, the passive stirring assembly includes a mounting bracket and a plurality of passive stirring teeth. The mounting bracket is fixedly connected to the frame, the mounting bracket extends from the bottom of the cooking cavity to the mouth of the cooking cavity, the mounting bracket is also located on one side of the carrier adjacent to the cavity wall of the cooking cavity, a plurality of the passive stirring teeth are arranged on one side of the mounting bracket away from the cavity wall of the cooking cavity, and a plurality of the passive stirring teeth and a plurality of the dispersing teeth are alternately arranged in sequence.
[0024] In some embodiments of the present invention, the carrier is fixedly connected to the frame or rotatably connected to the frame. The carrier has a scraping side in contact with the cavity wall of the cooking cavity and a mounting side opposite to the scraping side, and the rotating shaft is rotatably installed on the mounting side of the carrier.
[0025] The present invention further provides a cooking device, which includes a frame, a cooking pot and a dispersing cutter; wherein,
[0026] The cooking pot has a cooking cavity with one end open, the cooking pot is installed on the frame and the cooking pot can be driven to rotate relative to the frame;
[0027] The dispersing cutter is installed in the cooking cavity, and the dispersing cutter can be driven to rotate to disperse the food materials located in the cooking cavity.
[0028] In some embodiments of the present invention, the dispersing cutter has a dispersing part and a mounting part, the mounting part is fixedly connected to the cavity wall of the cooking cavity, the dispersing part extends in a direction away from the cavity wall of the cooking cavity, and the dispersing cutter is arranged to rotate synchronously with the cooking pot; or,
[0029] The cooking pot is provided with an avoidance hole penetrating therethrough, the dispersing cutter has a dispersing part and a mounting part, the mounting part passes through the avoidance hole and is rotationally connected to the frame, and the dispersing part is located in the cooking cavity to disperse the food materials in the cooking cavity.
[0030] In some embodiments of the present invention, the dispersing part is arranged in a conical shape.
[0031] The present invention is provided with a dispersing tooth in the cooking cavity of the cooking pot. One end of the dispersing tooth is used for rotational connection, and the other end of the dispersing tooth is rotatably arranged. This enables the angle between the dispersing tooth and the cavity wall of the cooking cavity to be adjusted. When it is necessary to use the dispersing tooth to disperse large pieces of food materials, the angle between the dispersing tooth and the cavity wall of the cooking cavity can be adjusted to a suitable angle. In this way, when the food materials in the cooking cavity rotate together with the cooking pot, they move towards the dispersing tooth. This facilitates the dispersing tooth to disperse the food materials, and thus facilitates the cooking of the food materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0033] Figure 1 It is a schematic structural diagram of an embodiment of the cooking device of the present invention;
[0034] Figure 2 It is a schematic structural diagram of another embodiment of the cooking device of the present invention;
[0035] Figure 3 It is a schematic structural diagram of still another embodiment of the cooking device of the present invention.
[0036] Description of the reference numerals in the drawings:
[0037]
[0038]
[0039] The realization of the object, functional features and advantages of the present invention will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0040] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0041] It should be noted that all the directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative position relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0042] In addition, the descriptions involving "first", "second", etc. in the present invention are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement it. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.
[0043] The present invention provides a cooking device 100, which can semi-automatically or fully automatically cook food ingredients. Please refer to Figure 1 , the cooking device 100 includes a frame 110, a cooking pot 120 and a dispersing assembly 130. The cooking pot 120 is installed on the frame 110, and the dispersing assembly 130 can disperse the large food ingredients in the cooking pot 120 so that the cooking device 100 can better cook the food ingredients.
[0044] The frame 110 is mainly for the installation of the cookware 120 and other components. The frame 110 can be made of metal materials, or it can be made of plastic, or it can be formed by a combination of metal materials and plastic, or it can be formed by other materials, which will not be listed one by one here. The outer contour of the frame 110 has various shapes. The outer contour of the frame 110 can be cylindrical, or it can be square-columnar, or it can be set in other shapes, which will not be listed one by one here.
[0045] The cookware 120 is installed on the frame 110 and can rotate relative to the frame 110. There are various ways for the cookware 120 to be rotatably connected to the frame 110. The cookware 120 can be rotatably connected to the frame 110 through a rotating shaft. The cookware 120 can be rotatably installed on the frame 110 through a driving device. The driving device can be composed of a motor and a gear assembly, or it can be formed by a motor and a pulley assembly, or it can be composed of a motor and a sprocket assembly, which will not be listed one by one here.
[0046] The cookware 120 has a cooking cavity 120a with an open end. The shape of the inner wall contour of the cooking cavity 120a has various forms. The inner wall contour of the cooking cavity 120a can be cylindrical, or it can be conical, or it can be hemispherical, or the shape of the inner wall contour of the cooking cavity 120a can be set in other shapes, which will not be listed one by one here. Preferably, the inner wall contour of the cooking cavity 120a is conical so as to facilitate the convergence of the food materials at the bottom of the cooking cavity 120a, and thus facilitate the centralized heating of the food materials.
[0047] It should be noted that when the cookware 120 is cooking, the mouth of the cooking cavity 120a of the cookware 120 is located above the bottom of the cooking cavity 120a. The mouth of the cooking cavity 120a of the cookware 120 can be set directly above the bottom of the cooking cavity 120a, or it can be set obliquely above the bottom of the cooking cavity 120a, as long as it is ensured that the mouth of the cooking cavity 120a is located above the bottom of the cooking cavity 120a, so as to ensure that the food materials in the cooking cavity 120a are not easily flown out from the mouth of the cooking cavity 120a.
[0048] The dispersing component 130 includes dispersing teeth 131. The dispersing teeth 131 are installed in the cooking cavity 120a. One end of the dispersing teeth 131 is used for rotational connection, and the other end of the dispersing teeth 131 is rotatably arranged. In this way, the angle between the dispersing teeth 131 and the cavity wall of the cooking cavity 120a can be adjusted. The angle between the dispersing teeth 131 and the cavity wall of the cooking cavity 120a can be set at an angle between 0 degrees and 90 degrees. The dispersing teeth 131 can rotate in the direction of the rotation of the cookware 120, and the dispersing teeth 131 can also rotate against the rotation direction of the cookware 120. The dispersing teeth 131 can also rotate in other directions, which will not be listed one by one here.
[0049] In the present invention, by arranging the dispersing teeth 131 in the cooking cavity 120a of the cookware 120, one end of the dispersing teeth 131 is used for rotational connection, and the other end of the dispersing teeth 131 is rotatably arranged. This enables the angle between the dispersing teeth 131 and the cavity wall of the cooking cavity 120a to be adjusted. When it is necessary to use the dispersing teeth 131 to disperse large pieces of ingredients, the angle between the dispersing teeth 131 and the cavity wall of the cooking cavity 120a can be adjusted to a suitable angle. In this way, when the ingredients in the cooking cavity 120a rotate together with the cookware 120, they move towards the dispersing teeth 131. This facilitates the dispersing teeth 131 to disperse the ingredients, and thus facilitates the cooking of the ingredients.
[0050] It should be noted that the rotation axis of the cookware 120 extends from the bottom of the cooking cavity 120a to the opening of the cooking cavity 120a. Therefore, the rotation axis of the dispersing teeth 131 preferably extends from the bottom of the cooking cavity 120a to the opening of the cooking cavity 120a. At this time, the dispersing teeth 131 can rotate relative to the cookware 120 in the rotation direction of the cookware 120. When the dispersing teeth 131 need to disperse the ingredients, the dispersing teeth 131 rotate against the rotation direction of the cookware 120. When the dispersing teeth 131 do not need to disperse the ingredients, the dispersing teeth 131 rotate in the rotation direction of the cookware 120.
[0051] Specifically, when the dispersing teeth 131 need to disperse large pieces of ingredients, at this time, the dispersing teeth 131 can be rotated against the rotation direction of the cookware 120 to a preset angle, and the preset angle is set to be greater than 0 degrees and less than or equal to 90 degrees. For example, the angle between the dispersing teeth 131 and the cavity wall of the cooking cavity 120a is 30 degrees, 35 degrees, 40 degrees, 45 degrees, 50 degrees, 55 degrees, 60 degrees, 65 degrees, 70 degrees, 75 degrees, 80 degrees, 85 degrees, etc., which will not be listed one by one here. At this time, the ingredients rotating together with the cookware 120 and the dispersing teeth 131 move towards each other. This facilitates the dispersing teeth 131 to disperse the large pieces of ingredients.
[0052] When the crushing teeth 131 do not need to crush large pieces of food materials, the crushing teeth 131 can be rotated to a preset angle along the direction of rotation of the cookware 120 at this time. The preset angle is set to be greater than 0 degree and less than or equal to 90 degrees. For example, the included angle between the crushing teeth 131 and the cavity wall of the cooking cavity 120a is 30 degrees, 35 degrees, 40 degrees, 45 degrees, 50 degrees, 55 degrees, 60 degrees, 65 degrees, 70 degrees, 75 degrees, 80 degrees, 85 degrees, etc., and they will not be listed one by one here. At this time, the food materials rotating together with the cookware 120 move in the same direction as the crushing teeth 131, which facilitates the food materials to pass through the crushing teeth 131.
[0053] It should be noted that there are many ways to rotatably install the crushing teeth 131 in the cooking cavity 120a. In some embodiments of the present invention, the crushing teeth 131 are directly installed on the cavity wall of the cooking cavity 120a. Specifically, one end of the crushing teeth 131 is rotatably connected to the wall of the cooking cavity 120a, and the other end of the crushing teeth 131 extends in the direction of the rotation axis of the cookware 120. With such a setting, the crushing teeth 131 can rotate synchronously with the cookware 120, so as to crush large pieces of food materials.
[0054] In some other embodiments of the present invention, please refer to Figure 1 , Figure 2 or Figure 3 , the crushing assembly 130 further includes a rotating shaft 132. The rotating shaft 132 is rotatably installed in the cooking cavity 120a. The number of the crushing teeth 131 is multiple. The multiple crushing teeth 131 are connected to the rotating shaft 132, and the multiple crushing teeth 131 are arranged at intervals along the axial direction of the rotating shaft 132. With such a setting, when installing the multiple crushing teeth 131, only the rotating shaft 132 needs to be rotatably installed in the installation cavity, thereby simplifying the installation process of the multiple crushing teeth 131.
[0055] It should be noted that there are many connection methods between the multiple crushing teeth 131 and the rotating shaft 132. The multiple crushing teeth 131 and the rotating shaft 132 are fixedly connected. Specifically, the multiple crushing teeth 131 and the rotating shaft 132 can be integrally formed, which not only saves the assembly process between the crushing teeth 131 and the rotating shaft 132, but also ensures the firmness of the connection between the multiple crushing teeth 131 and the rotating shaft 132. The multiple crushing teeth 131 and the rotating shaft 132 can also be detachably connected. Specifically, the multiple crushing teeth 131 and the rotating shaft 132 can be connected by bolts, which can also ensure the firmness of the connection between the multiple crushing teeth 131 and the rotating shaft 132, and at the same time facilitates the replacement of the crushing teeth 131.
[0056] It should be noted that when multiple dispersing teeth 131 are installed in the cooking cavity 120a through the rotating shaft 132, considering that the cavity wall of the cooking cavity 120a may be a concave arc surface, if the shape of the rotating shaft 132 does not match the cavity wall of the cooking cavity 120a, the gap between the rotating shaft 132 and the cavity wall of the cooking cavity 120a will be too large, resulting in the dispersing teeth 131 being unable to completely disperse the ingredients.
[0057] Based on the above problems, in some embodiments of the present invention, the rotating shaft 132 is made of a flexible material, and the rotating shaft 132 can be made of other materials such as a flexible plastic rod, a flexible metal rod, a flexible polymer material, etc. With such a setting, the shape of the rotating shaft 132 can be adjusted according to the cavity wall of the cooking cavity 120a, thereby reducing the gap between the rotating shaft 132 and the cavity wall of the cooking cavity 120a, and further ensuring that the dispersing teeth 131 can completely disperse the ingredients.
[0058] In some other embodiments of the present invention, please refer to Figure 1 , Figure 2 or Figure 3 , the rotating shaft 132 includes at least two connecting segments 1321, at least two connecting segments 1321 are rotatably installed in the cooking cavity 120a, at least two connecting segments 1321 are provided with dispersing teeth 131, and adjacent two connecting segments 1321 are rotatably connected, so that adjacent two connecting segments 1321 can move in the direction of approaching or departing from the cavity wall of the cooking cavity 120a. With such a setting, the shape of the rotating shaft 132 can also be adapted to the cavity wall of the cooking cavity 120a, and further ensure that the dispersing teeth 131 can completely disperse the ingredients.
[0059] It should be noted that there are many connection methods for adjacent two connecting segments 1321. Since both connecting segments 1321 are rotatably installed in the cooking cavity 120a, adjacent two connecting segments 1321 are in transmission connection. For example, adjacent two connecting segments 1321 can be connected by a hinged manner. With such a setting, when one connecting segment 1321 of adjacent two connecting segments 1321 rotates, it can drive the other connecting segment 1321 to rotate, thus achieving the transmission effect.
[0060] For another example, adjacent two connecting segments 1321 can be connected by a flexible member. The flexible member has the effect of deforming under force. When one connecting segment 1321 of adjacent two connecting segments 1321 rotates, a rotational force will be generated on the flexible member. The flexible member will drive the other connecting segment 1321 of adjacent two connecting segments 1321 to rotate under the drive of the rotational force, thus achieving the transmission effect.
[0061] Based on the technical solution that multiple dispersing teeth 131 are arranged on the rotating shaft 132, in some embodiments of the present invention, please refer toFigure 1 , Figure 2 or Figure 3 , the dispersing assembly 130 further includes a carrier 133, which is installed in the cooking cavity 120a. The rotating shaft 132 is rotatably connected to the carrier 133. With such a setting, when assembling the dispersing assembly 130 into the installation cavity, it is only necessary to assemble the dispersing teeth 131 onto the rotating shaft 132, then assemble the rotating shaft 132 onto the carrier 133, and finally fixedly install the carrier 133 in the cooking cavity 120a, which facilitates the installation of the entire dispersing assembly 130.
[0062] It should be noted that there are various fixed positions of the carrier 133. For the convenience of understanding, the following will be described in detail through specific embodiments. For example, please refer to Figure 2 , the carrier 133 is fixedly connected to the cookware 120. Specifically, the carrier 133 is fixedly connected to the cavity wall of the cooking cavity 120a. The rotating shaft 132 is arranged on the side of the carrier 133 away from the cavity wall of the cooking cavity 120a, and a plurality of dispersing teeth 131 are also located on the side of the carrier 133 away from the cavity wall of the cooking cavity 120a. At this time, the dispersing assembly 130 rotates synchronously with the cookware 120 to disperse the food materials in the cooking cavity 120a.
[0063] Again, for example, please refer to Figure 1 , the carrier 133 is fixedly connected to the frame 110, and the carrier 133 is also arranged at an interval from the cavity wall of the cooking cavity 120a. The rotating shaft 132 is arranged on the side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a or on the side away from the cavity wall of the cooking cavity 120a. A plurality of dispersing teeth 131 are connected to the rotating shaft 132. At this time, the dispersing assembly 130 remains fixed relative to the frame 110, and the cookware 120 rotates relative to the frame 110, so that a relative movement can be maintained between the dispersing assembly 130 and the cookware 120. The food materials in the cooking cavity 120a that move with the cookware 120 come into contact with the dispersing assembly 130 and can be dispersed by the dispersing teeth 131 of the dispersing assembly 130.
[0064] It should be noted that the gap between the carrier 133 and the cavity wall of the cooking cavity 120a is relatively small. At this time, the rotating shaft 132 is preferably arranged on the side of the carrier 133 away from the cavity wall of the cooking cavity 120a, and a plurality of dispersing teeth 131 are also arranged on the side of the carrier 133 away from the cavity wall of the cooking cavity 120a; the gap between the carrier 133 and the cavity wall of the cooking cavity 120a is relatively large. At this time, the rotating shaft 132 is preferably arranged on the side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a, and a plurality of dispersing teeth 131 are also arranged on the side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a.
[0065] Again, for example, please refer to Figure 3, the carrier 133 is rotatably connected to the frame 110, the carrier 133 is spaced apart from the cavity wall of the cooking cavity 120a, the rotating shaft 132 is disposed on one side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a or on one side away from the cavity wall of the cooking cavity 120a, and a plurality of dispersing teeth 131 are connected to the rotating shaft 132. At this time, the carrier 133 can rotate relative to the frame 110, and at the same time, the cookware 120 can also rotate relative to the frame 110. Therefore, the rotation speed of the cookware 120 is different from the rotation speed of the carrier 133. Preferably, the rotation direction of the cookware 120 is opposite to the rotation direction of the carrier 133, so that it is convenient for the dispersing member to disperse the food materials in the cooking cavity 120a.
[0066] It should also be noted that the gap between the carrier 133 and the cavity wall of the cooking cavity 120a is relatively small. The rotating shaft 132 is preferably disposed on the side of the carrier 133 away from the cavity wall of the cooking cavity 120a, and a plurality of dispersing teeth 131 are also disposed on the side of the carrier 133 away from the cavity wall of the cooking cavity 120a; the gap between the carrier 133 and the cavity wall of the cooking cavity 120a is relatively large. At this time, the rotating shaft 132 is preferably disposed on the side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a, and a plurality of dispersing teeth 131 are also disposed on the side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a.
[0067] It should be noted that the driving method of the rotating shaft 132 is related to the fixing method of the rotating shaft 132, that is, related to the fixing method of the carrier 133. Please refer to Figure 1 , when the carrier 133 is fixedly connected to the frame 110, the rotating shaft 132 extends from the bottom of the cooking cavity 120a towards the opening of the cooking cavity 120a. An input member 134 is disposed at one end of the rotating shaft 132 adjacent to the opening of the cooking cavity 120a, and the input member 134 is driven to drive the rotating shaft 132 to rotate. With such a setting, only by driving the input member 134 to drive the rotating shaft 132 to rotate, the included angle between the plurality of dispersing teeth 131 and the cavity wall of the cooking cavity 120a can be adjusted, so that it is convenient to adjust the included angle between the plurality of dispersing teeth 131 and the cavity wall of the cooking cavity 120a.
[0068] It should be noted that there are many ways to drive the input member 134. For example, the input member 134 can be driven manually to drive the rotating shaft 132 to rotate. Another example is to drive the input member 134 through a driving motor 140 to drive the rotating shaft 132 to rotate. Preferably, the input member 134 is driven by the driving motor 140. Specifically, the driving motor 140 is fixedly connected to the frame 110, and the driving motor 140 is connected to the input member 134 to drive the rotating shaft 132 to rotate. With such a configuration, the angle between the beating teeth 131 and the cavity wall of the cooking cavity 120a can be fully automatically adjusted. In this way, the operation of the driving motor 140 can be controlled by setting a control program, which is more conducive to realizing fully automated cooking of the cooking device 100.
[0069] See also Figure 2 When the supporting member 133 rotates synchronously with the cooker 120, the rotating shaft 132 extends from the bottom of the cooking cavity 120a to the cavity opening of the cooking cavity 120a, and a toggle member 135 is provided at one end of the rotating shaft 132 adjacent to the cavity opening of the cooking cavity 120a; the cooking device 100 also includes a toggle device 150, the toggle device 150 includes a toggle body 151 and a toggle pin 152, the toggle body 151 is arranged on the frame 110, the toggle pin 152 is transmission-connected with the toggle body 151, and the toggle body 151 drives the toggle pin 152 to extend and retract from the cavity opening of the cooking cavity 120a to the cavity bottom of the cooking cavity 120a to act on the toggle member 135.
[0070] Specifically, the supporting member 133 rotates synchronously with the cooker 120, and the rotating shaft 132 and the plurality of scattering teeth 131 move together with the supporting member 133. When the angle between the plurality of scattering teeth 131 and the cavity wall of the cooking cavity 120a needs to be adjusted, the toggle body 151 drives the toggle pin 152 to move toward the cavity bottom of the cooking cavity 120a, so that the toggle pin 152 is located on the movement path of the toggle member 135. When the toggle member 135 moves together with the cooker 120 and contacts the toggle pin 152, the toggle member 135 is constrained by the toggle pin 152 and rotates around the toggle pin 152, thereby driving the rotating shaft 132 to rotate relative to the supporting member 133, thereby adjusting the angle between the plurality of scattering teeth 131 and the cavity wall of the cooking cavity 120a.
[0071] It is worth noting that the toggle member 135 has many shapes, for example, the toggle member 135 is set in a V-shape, a Y-shape and other shapes. The toggle member 135 includes two toggle rods 1351, one end of the two toggle rods 1351 is connected to one end of the cavity opening of the rotating shaft 132 adjacent to the cooking cavity 120a, and the other ends of the two toggle rods 1351 extend toward the rotation axis of the cooker 120. The two toggle rods 1351 are also set at an angle, and the plane where the two toggle rods 1351 are located is set perpendicular to the rotation axis 132 of the cooker 120. The toggle pin 152 can selectively contact with one of the two toggle rods 1351, so that the angle between the multiple breaking teeth 131 and the cavity wall of the cooking cavity 120a can be switched by selecting to contact with different toggle rods 1351 of the two toggle rods 1351.
[0072] See also Figure 3 The toggle member 135 can also be arranged in a straight line, in which case one end of the toggle member 135 is connected to one end of the rotating shaft 132 adjacent to the cavity opening of the cooking cavity 120a, and the other end of the toggle member is extended toward the rotating shaft 132 of the cooker 120. At this time, when adjusting the angle between the multiple scattering teeth 131 and the cavity wall of the cooking cavity 120a, it can be achieved by adjusting the contact time between the toggle pin 152 and the toggle member 135, or by controlling the forward and reverse rotation of the cooker 120. Of course, other methods can also be used to make the toggle pin 152 act on the toggle member 135, so that the angle between the multiple scattering teeth 131 and the cavity wall of the cooking cavity 120a is adjusted, which will not be listed here one by one.
[0073] It should be noted that the toggle body 151 in the above-mentioned toggle device 150 is mainly used to drive the toggle pin 152 to move from the cavity opening of the cooking cavity 120a to the cavity bottom of the cooking cavity 120a. The toggle body 151 can be a structure that can drive itself to extend and retract along the cavity opening of the cooking cavity 120a to the cavity bottom of the cooking cavity 120a. For example, the toggle body 151 can be composed of a motor, a screw rod and a slider. The motor is fixedly installed on the frame 110, the screw rod is fixedly connected to the output shaft of the motor, the slider is transmission-connected to the screw rod, and the toggle pin 152 is fixedly connected to the slider to move synchronously with the slider.
[0074] The toggle body 151 may also be a structure capable of driving the toggle pin 152 to move. For example, the toggle body 151 includes a mounting body, an electromagnet and a spring. The mounting body is mounted on the frame 110, the electromagnet is mounted on the mounting body, the toggle pin 152 is movably mounted on the mounting body, the spring is mounted on the mounting body, the spring is used to drive the toggle pin 152 to move toward the bottom of the cooking cavity 120a, the toggle pin 152 is made of magnetic material, and the electromagnet is used to magnetically absorb the toggle pin 152 after being powered on, so that the toggle pin 152 moves toward the bottom of the cooking cavity 120a.
[0075] Please refer to Figure 2 , based on the carrier 133 being fixedly arranged on the cavity wall of the cooking cavity 120a, the rotating shaft 132 is rotatably installed on one side of the carrier 133 away from the cavity wall of the cooking cavity 120a. The rotating shaft 132 extends from the bottom of the cooking cavity 120a towards the cavity opening of the cooking cavity 120a. A plurality of dispersing teeth 131 are arranged at intervals from the bottom of the cooking cavity 120a towards the cavity opening of the cooking cavity 120a. The cooking device 100 further includes an active stirring assembly 160. The active stirring assembly 160 includes a stirring bracket 161 and a plurality of active stirring teeth 162. The stirring bracket 161 is rotatably connected to the frame 110. The stirring bracket 161 extends from the bottom of the cooking cavity 120a towards the cavity opening of the cooking cavity 120a. The stirring bracket 161 is arranged at an interval from the cavity wall of the cooking cavity 120a. A plurality of active stirring teeth 162 are arranged on one side of the stirring bracket 161 adjacent to the cavity wall of the cooking cavity 120a. The plurality of active stirring teeth 162 and the plurality of dispersing teeth 131 are arranged alternately in sequence.
[0076] The angle between the plurality of active stirring teeth 162 and the cavity wall of the cooking cavity 120a is usually 90 degrees. Therefore, when the angle between the plurality of dispersing teeth 131 and the cavity wall of the cooking cavity 120a is 90 degrees, at this time, the plurality of dispersing teeth 131 and the plurality of active stirring teeth 162 act together, which can not only disperse the food ingredients, but also further cut the food ingredients, so that the size of the food ingredients cooked by the cooking device 100 is appropriate, and it is also beneficial for the cooking device 100 to quickly complete the cooking of the food ingredients. The angle between the plurality of dispersing teeth 131 and the cavity wall of the cooking cavity 120a can also be other angles. At this time, the plurality of dispersing teeth 131 and the plurality of active stirring teeth 162 are arranged at an angle. When the plurality of dispersing teeth 131 are inclined in the direction opposite to the rotation direction of the cookware 120, the plurality of dispersing teeth 131 can be inserted into large pieces of food ingredients. When the plurality of active stirring teeth 162 pass through the plurality of dispersing teeth 131, they can also disperse the large pieces of food ingredients on the plurality of dispersing teeth 131.
[0077] Please refer to Figure 3, it is rotatably mounted on the frame 110 based on the carrier 133. The carrier 133 is spaced from the cavity wall of the cooking cavity 120a. The rotating shaft 132 is provided on one side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a. A plurality of dispersing teeth 131 are arranged at intervals from the bottom of the cooking cavity 120a towards the opening of the cooking cavity 120a; the cooking device 100 further includes a passive stirring assembly 170. The passive stirring assembly 170 includes a mounting bracket 171 and a plurality of passive stirring teeth 172. The mounting bracket 171 is fixedly connected to the frame 110. The mounting bracket 171 extends from the bottom of the cooking cavity 120a towards the opening of the cooking cavity 120a. The mounting bracket 171 is also located on one side of the carrier 133 adjacent to the cavity wall of the cooking cavity 120a. A plurality of passive stirring teeth 172 are provided on the side of the mounting bracket 171 away from the cavity wall of the cooking cavity 120a. The plurality of passive stirring teeth 172 and the plurality of dispersing teeth 131 are arranged alternately in sequence.
[0078] The angle between the plurality of passive stirring teeth 172 and the cavity wall of the cooking cavity 120a is usually 90 degrees. Therefore, when the angle between the plurality of dispersing teeth 131 and the cavity wall of the cooking cavity 120a is 90 degrees, at this time, the plurality of dispersing teeth 131 and the plurality of passive stirring teeth 172 act together, which can not only disperse the ingredients, but also further cut the ingredients, so that the size of the ingredients cooked by the cooking device 100 is appropriate, and it is also beneficial for the cooking device 100 to quickly complete the cooking of the ingredients. The angle between the plurality of dispersing teeth 131 and the cavity wall of the cooking cavity 120a can also be other angles. At this time, the plurality of dispersing teeth 131 and the plurality of passive stirring teeth 172 are arranged at an angle. When the plurality of dispersing teeth 131 are inclined in the opposite direction of the rotation of the cookware 120, the plurality of dispersing teeth 131 can be inserted into large pieces of ingredients. When the plurality of dispersing teeth 131 pass by the plurality of passive stirring teeth 172, the large pieces of ingredients on the plurality of dispersing teeth 131 can also be dispersed.
[0079] Based on the carrier 133 being fixedly connected or rotatably connected to the frame 110, the carrier 133 has a scraping side in contact with the cavity wall of the cooking cavity 120a and an installation side opposite to the scraping side. The rotating shaft 132 is provided on the installation side of the carrier 133. The rotating shaft 132 can extend from the bottom of the cooking cavity 120a towards the opening of the cooking cavity 120a. A plurality of dispersing teeth 131 are connected to the rotating shaft 132. The plurality of dispersing teeth 131 are arranged at intervals from the bottom of the cooking cavity 120a towards the opening of the cooking cavity 120a. With such a setting, the carrier 133 not only has the function of scraping the cavity wall of the cooking cavity 120a to prevent ingredients from adhering to the cavity wall of the cooking cavity 120a, which may cause uneven frying and heating of the ingredients, but also can ensure that the ingredients can be dispersed by the dispersing teeth 131 as much as possible.
[0080] The present invention provides a cooking device 100, which can perform semi-automatic or fully automatic cooking on food materials. Please refer to Figure 1 or Figure 2 , the cooking device 100 includes a frame 110, a cooking pot 120 and a dispersing cutter 180. The cooking pot 120 is installed on the frame 110. The structures of the frame 110 and the cooking pot 120 can refer to the above embodiments and will not be elaborated here. The dispersing cutter 180 is installed in the cooking cavity 120a of the cooking pot 120, and the dispersing cutter 180 can be driven to rotate to disperse the food materials located in the cooking cavity 120a.
[0081] When the cooking device 100 is performing cooking work, when the size of the food materials in the cooking cavity 120a of the cooking pot 120 is too large, the dispersing cutter 180 can be driven to rotate to break the large pieces of food materials in the cooking cavity 120a into small pieces of food materials, which is convenient for the rapid heating of the food materials until they are cooked through, and thus is beneficial to improving the cooking efficiency of the cooking device 100.
[0082] It should be noted that there are various installation methods for the dispersing cutter 180. In some embodiments of the present invention, the dispersing cutter 180 has a dispersing part 181 and an installation part 182. The installation part 182 is fixedly connected to the cavity wall of the cooking cavity 120a, and the dispersing part 181 extends in a direction away from the cavity wall of the cooking cavity 120a. The dispersing cutter 180 is arranged to rotate synchronously with the cooking pot 120. With such an arrangement, a separate driving device for driving the dispersing cutter 180 to work can be omitted, which is beneficial to simplifying the structure of the cooking device 100.
[0083] In some other embodiments of the present invention, the cooking pot 120 is provided with an avoidance hole penetrating therethrough. The dispersing cutter 180 has a dispersing part 181 and an installation part 182. The installation part 182 passes through the avoidance hole and is rotatably connected to the frame 110, and the installation part 182 is also hermetically connected to the avoidance hole. The dispersing part 181 is located in the cooking cavity 120a to disperse the food materials in the cooking cavity 120a. With such an arrangement, the dispersing cutter 180 can be driven to work independently, so that the rotation speed of the dispersing cutter 180 can be adjusted according to the actual situation to facilitate quickly dispersing the food materials in the cooking cavity 120a.
[0084] Based on the above embodiments, further, the dispersing part 181 can be arranged in a conical shape. At this time, a plurality of dispersing blades are formed on the outer periphery of the dispersing part 181 and are arranged along its circumferential direction. The end of the dispersing part 181 far from the installation part 182 is relatively pointed, and it can penetrate into the large pieces of food materials. The plurality of dispersing blades on the dispersing part 181 can break the large pieces of food materials, so that the large pieces of food materials can be better dispersed.
[0085] It should be noted that the ingredients in the cooking cavity 120a usually gather at the lowest part of the cooking cavity 120a. Therefore, the dispersing cutter 180 is preferably arranged at the lowest part of the cooking cavity 120a. With this arrangement, it is convenient for the dispersing cutter 180 to break up all the large pieces of ingredients that need to be dispersed in the cooking cavity 120a, thereby ensuring the cooking efficiency of the cooking device 100.
[0086] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or direct / indirect application in other related technical fields, is included in the patent protection scope of the present invention.
Claims
1. A cooking device (100), characterized in that, The cooking device (100) includes a frame (110), a cooking pot (120), and a beating component (130); wherein, The cooking pot (120) has a cooking cavity (120a) with one end open. The cooking pot (120) is installed on the frame (110) and the cooking pot (120) can be driven to rotate relative to the frame (110); The beating component (130) includes beating teeth (131) and a rotating shaft (132). The beating teeth (131) are installed in the cooking cavity (120a). One end of the beating teeth (131) is used for rotational connection, and the other end of the beating teeth (131) is rotatably arranged. The beating teeth (131) are used to beat the food materials in the cooking cavity (120a); the beating teeth (131) are connected to the rotating shaft (132). The rotating shaft (132) includes at least two connecting segments (1321). At least two of the connecting segments (1321) are rotatably installed in the cooking cavity (120a), and adjacent two of the connecting segments (1321) are rotationally connected so that adjacent two of the connecting segments (1321) can move in a direction close to or away from the cavity wall of the cooking cavity (120a).
2. The cooking device (100) according to claim 1, characterized in that, One end of the beating teeth (131) is rotationally connected to the cavity wall of the cooking cavity (120a), and the other end of the beating teeth (131) extends towards the rotation axis of the cooking pot (120).
3. The cooking device (100) according to claim 1, characterized in that, The number of the beating teeth (131) is multiple. Multiple beating teeth (131) are connected to the rotating shaft (132), and multiple beating teeth (131) are arranged at intervals along the axial direction of the rotating shaft (132).
4. The cooking device (100) according to claim 3, characterized in that, Multiple beating teeth (131) are integrally formed with the rotating shaft (132); and / or, The rotating shaft (132) is made of a flexible material, and the rotating shaft (132) is restricted to generate elastic deformation.
5. The cooking device (100) according to claim 1, characterized in that, At least two of the connecting segments (1321) are provided with the beating teeth (131).
6. The cooking device (100) according to claim 5, characterized in that, Adjacent two of the connecting segments (1321) are hinged, or adjacent two of the connecting segments (1321) are connected by a flexible member.
7. The cooking device (100) according to any one of claims 1 to 6, characterized in that, The beating component (120) further includes a bearing member (133). The bearing member (133) is installed in the cooking cavity (120a), and the rotating shaft (132) is rotationally connected to the bearing member (133).
8. The cooking device (100) according to claim 7, characterized in that, The bearing member (133) is fixedly connected to the frame (110). The rotating shaft (132) extends from the cavity bottom of the cooking cavity (120a) towards the cavity opening of the cooking cavity (120a). An input member (134) is arranged at one end of the rotating shaft (132) adjacent to the cavity opening of the cooking cavity (120a). The input member (134) is driven to drive the rotating shaft (132) to rotate.
9. The cooking device (100) according to claim 8, characterized in that, The cooking device (100) further includes a driving motor (140). The driving motor (140) is fixedly connected to the frame (110), and the driving motor (140) is connected to the input member (134) to drive the rotating shaft (132) to rotate.
10. The cooking device (100) according to claim 7, characterized in that, The bearing member (133) is arranged to rotate synchronously with the cooker (120); the rotating shaft (132) is extended from the bottom of the cooking cavity (120a) to the cavity opening of the cooking cavity (120a); and a toggle member (135) is arranged at one end of the rotating shaft (132) adjacent to the cavity opening of the cooking cavity (120a); The cooking device (100) further comprises a toggle device (150), the toggle device (150) comprising a toggle body (151) and a toggle pin (152), the toggle body (151) being arranged on the frame (110), the toggle pin (152) being in transmission connection with the toggle body (151), the toggle body (151) driving the toggle pin (152) to extend and retract from the cavity opening of the cooking cavity (120a) to the cavity bottom of the cooking cavity (120a), so as to act on the toggle member (135).
11. The cooking device (100) according to claim 10, characterized in that, The toggle member (135) comprises two toggle rods (1351), one end of each of the toggle rods (1351) being connected to one end of the rotating shaft (132) adjacent to the cavity opening of the cooking cavity (120a), the other ends of each of the toggle rods (1351) extending towards the rotation axis of the cooker (120), the two toggle rods (1351) being arranged at an angle, and the toggle pin (152) being selectively contactable with one of the two toggle rods (1351).
12. The cooking device (100) according to claim 7, characterized in that, The bearing member (133) is fixedly connected to the cavity wall of the cooking cavity (120a), and the rotating shaft (132) is rotatably mounted on a side of the bearing member (133) away from the cavity wall of the cooking cavity (120a); or, The bearing member (133) is fixedly connected to the frame (110); the bearing member (133) is also spaced apart from the cavity wall of the cooking cavity (120a); the rotating shaft (132) is rotatably mounted on a side of the bearing member (133) adjacent to the cavity wall of the cooking cavity (120a); or the rotating shaft (132) is rotatably mounted on a side of the bearing member (133) away from the cavity wall of the cooking cavity (120a); or, The supporting member (133) is rotatably connected to the frame (110); the supporting member (133) is spaced apart from a cavity wall of the cooking cavity (120a); the rotating shaft (132) is rotatably mounted on a side of the supporting member (133) adjacent to the cavity wall of the cooking cavity (120a); or the rotating shaft (132) is rotatably mounted on a side of the supporting member (133) away from the cavity wall of the cooking cavity (120a).
13. The cooking device (100) according to claim 7, characterized in that, The bearing member (133) is fixedly connected to the cavity wall of the cooking cavity (120a); the rotating shaft (132) is rotatably mounted on a side of the bearing member (133) away from the cavity wall of the cooking cavity (120a); and a plurality of the scattering teeth (131) are arranged at intervals from the cavity bottom of the cooking cavity (120a) to the cavity opening of the cooking cavity (120a); The cooking device (100) further includes an active stirring assembly (160). The active stirring assembly (160) includes a stirring bracket (161) and a plurality of active stirring teeth (162). The stirring bracket (161) is rotatably connected to the frame (110). The stirring bracket (161) extends from the bottom of the cooking cavity (120a) towards the opening of the cooking cavity (120a). The stirring bracket (161) is spaced from the cavity wall of the cooking cavity (120a). A plurality of the active stirring teeth (162) are arranged on one side of the stirring bracket (161) adjacent to the cavity wall of the cooking cavity (120a). The plurality of active stirring teeth (162) and the plurality of dispersing teeth (131) are arranged alternately in sequence.
14. The cooking device (100) according to claim 7, characterized in that, The carrier (133) is rotatably connected to the frame (110). The carrier (133) is spaced from the cavity wall of the cooking cavity (120a). The rotating shaft (132) is rotatably installed on one side of the carrier (133) adjacent to the cavity wall of the cooking cavity (120a). The plurality of dispersing teeth (131) are spaced and arranged from the bottom of the cooking cavity (120a) towards the opening of the cooking cavity (120a); The cooking device (100) further includes a passive stirring assembly (170). The passive stirring assembly (170) includes a mounting bracket (171) and a plurality of passive stirring teeth (172). The mounting bracket (171) is fixedly connected to the frame (110). The mounting bracket (171) extends from the bottom of the cooking cavity (120a) towards the opening of the cooking cavity (120a). The mounting bracket (171) is also located on one side of the carrier (133) adjacent to the cavity wall of the cooking cavity (120a). A plurality of the passive stirring teeth (172) are arranged on the side of the mounting bracket (171) away from the cavity wall of the cooking cavity (120a). The plurality of passive stirring teeth (172) and the plurality of dispersing teeth (131) are arranged alternately in sequence.
15. The cooking device (100) according to claim 7, characterized in that, The carrier (133) is fixedly connected to the frame (110) or rotatably connected to the frame (110). The carrier (133) has a scraping side in contact with the cavity wall of the cooking cavity (120a) and a mounting side opposite to the scraping side. The rotating shaft (132) is rotatably installed on the mounting side of the carrier (133).
16. The cooking device (100) according to claim 1, characterized in that, The cooking device (100) further includes a dispersing cutter (180). The dispersing cutter (180) is installed in the cooking cavity (120a). The dispersing cutter (180) can be driven to rotate to disperse the food ingredients located in the cooking cavity (120a).
17. The cooking device (100) according to claim 16, characterized in that, The dispersing cutter (180) has a dispersing portion (181) and a mounting portion (182). The mounting portion (182) is fixedly connected to the cavity wall of the cooking cavity (120a). The dispersing portion (181) extends in a direction away from the cavity wall of the cooking cavity (120a). The dispersing cutter (180) is arranged to rotate synchronously with the cookware (120); or, The cookware (120) is provided with an avoidance hole penetrating therethrough. The crushing cutter (180) has a crushing part (181) and a mounting part (182). The mounting part (182) passes through the avoidance hole and is rotatably connected to the machine frame (110). The crushing part (181) is located in the cooking cavity (120a) to crush the food materials in the cooking cavity (120a).
18. The cooking device (100) according to claim 17, characterized in that, The crushing part (181) is arranged in a conical shape.
Citation Information
Patent Citations
Cooking material stirring device and cooking equipment
CN104939686A
Cooking utensil
CN208692904U