Multifunctional cooking machine
By designing heating and exhaust channels for the pot and lid, the problems of condensation on the lid scalding users and oil fumes affecting health have been solved, achieving a safe and healthy cooking environment.
Patent Information
- Application Number
- CN202111249714.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-10-26
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2041-10-26
AI Technical Summary
Existing cooking machines produce steam and fumes during cooking, causing water droplets to condense on the lid, posing a risk of scalding users and affecting their health.
Heating elements are used to heat the pot body and lid. Combined with the design of exhaust channels and blocking components, it ensures that oil fumes and water vapor are discharged in time to prevent condensation.
It effectively prevents water droplets from condensing on the lid, avoiding scalding users, and promptly removes oil fumes and moisture, ensuring user health.
Smart Images

Figure CN116019347B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a multifunctional cooking machine. BACKGROUND
[0002] In the existing cooking machine, a large amount of water vapor and a small amount of oil fume are generated in the process of frying, so that a large amount of water droplets or water mist is condensed on the top of the pot cover of the cooking machine, too much water vapor affects the taste of the dishes, and the water droplets condensed on the pot cover have the risk of scalding the user when the user opens the cover, and the oil fume and water vapor will also affect the health of the user if not discharged in time. SUMMARY
[0003] The technical problem to be solved by the present application is to overcome the defects in the prior art that the water droplets condensed on the pot cover have the risk of scalding the user when the user opens the cover, and the oil fume and water vapor will also affect the health of the user if not discharged in time, and to provide a multifunctional cooking machine.
[0004] The present application solves the above technical problems by the following technical scheme:
[0005] The present application discloses a multifunctional cooking machine, which comprises a pot body assembly, a cover body assembly, and an exhaust passage.
[0006] In the present application, the first heating component is attached to the pot body component, so that the pot body component is heated by the first heating component, and the second heating component is attached to the cover body component. By using the above structure, the cover body component is heated by the second heating component to prevent water droplets from condensing on the cover body component, thereby avoiding scalding the user. The cooking cavity is connected to the outside through the exhaust passage, so that the oil fume and water vapor generated during cooking can be discharged in time, avoiding the influence of the generated oil fume and water vapor on the health of the user.
[0007] Preferably, the cover body component is rotationally connected to the pot body component, the cover body component has a heating surface, the first heating component is attached to the heating surface, and the cover body component can be rotated around the pot body component to a cooking position in which the heating surface faces outward from the pot body component, and the heating surface is used for cooking in the cooking position.
[0008] In the scheme, the cover assembly is rotationally connected to the pot assembly, facilitating opening and closing of the cover assembly. The cover assembly can be rotated around the pot assembly to a cooking position with the heating surface facing outward of the pot assembly, and food is cooked by the heating surface on the cover assembly, improving the integration of the multifunctional cooking machine and reducing the cooking time.
[0009] Preferably, the cover component can be rotated around the pot component to a closed position to form the cooking cavity in the pot component, and the heating surface is located at the top of the cooking cavity in the closed position.
[0010] In the scheme, the cover assembly is heated by the heating surface of the cover assembly, improving the temperature of the lower surface of the cover assembly, preventing water vapor from condensing on the lower surface of the cover assembly, thereby preventing burns to the user or affecting the taste of the food due to water droplets falling on the food.
[0011] Preferably, the cover component includes a cover body and a cover shell, the cover body is arranged in the cover shell, the heating surface is located on the cover body, and the first heating component is located between the cover body and the cover shell.
[0012] And / or, the pot component includes a pot body and a pot shell, the pot body is located in the pot shell, and the second heating component is located between the pot body and the pot shell.
[0013] In the scheme, the cover body is arranged in the cover shell, which can protect the cover body and improve the service life of the cover body. The first heating component is located between the cover body and the cover shell, which can also protect the first heating component and improve the service life of the first heating component, and can also prevent the first heating component from causing harm to the operator. The pot body is arranged in the pot shell, which can protect the pot body and improve the service life of the pot body. The second heating component is located between the pot body and the pot shell, which can also protect the second heating component and improve the service life of the second heating component, and can also prevent the second heating component from causing harm to the operator.
[0014] Preferably, one of the pot component and the cover component has a buckle, and the other has a button part, and the buckle is engaged with the button part when the cover component is closed on the pot component.
[0015] In the scheme, the button part and the buckle are engaged, so that the cover component can be stably closed on the pot component, improving the stability of the closure.
[0016] Preferably, the button part comprises a fixed part, a movable part, an elastic part and a button, two ends of the elastic part are connected with the fixed part and the movable part respectively, the button is connected with a surface of the movable part away from the elastic part, the buckle extends between the button and the movable part, and the movable part and the buckle can be connected under the action of the elastic part.
[0017] In the scheme, the buckle and the button part are matched to stably buckle the cover part and the pot part. When the buckle extends between the button and the movable part, the buckle pushes the movable part to move towards the fixed part, and the elastic part is deformed by being pressed by the movable part and the fixed part. Then, the buckle and the movable part are dislocated to make the buckle be buckled on the movable part. Since the button is connected with the surface of the movable part away from the elastic part, and the buckle extends between the button and the movable part, the button and the movable part are in linkage. When the button is pressed, the buckle is separated from the movable part, and the movable part can return to the initial position under the action of the elastic part. The buckle and the button part are matched, and the opening is simple in operation.
[0018] Preferably, the multifunctional cooking machine further comprises a blocking assembly and a matching assembly, the blocking assembly is used to block the communication between the air inlet and the cooking cavity, the matching assembly is arranged to move between an initial position and a position away from the blocking assembly, when the matching assembly is in the position away from the blocking assembly, the blocking assembly is opened, the air inlet is communicated with the cooking cavity, and when the matching assembly returns to the initial position, the matching assembly is used to limit the opening of the blocking assembly, and the blocking assembly blocks the communication between the air inlet and the cooking cavity.
[0019] In the scheme, since the matching assembly can move between the initial position and the position away from the blocking assembly, when the matching assembly is away from the blocking assembly during cooking, the blocking assembly can be opened, and the oil fume generated in the cooking cavity is discharged through the air inlet and the exhaust passage in sequence. When the matching assembly returns to the initial position, it can limit the opening of the blocking assembly, and thus can prevent the condensed oil fume liquid and the gas and liquid from the outside from entering the cooking cavity through the blocking assembly. The cooking material can be prevented from being polluted, and the cooking quality is improved by using the above structure.
[0020] Preferably, the matching assembly comprises a matching part and a top abutting part, the matching part is used to block the opening of the blocking assembly, the top abutting part abuts against the matching part to drive the matching part to move to the position away from the blocking assembly, the top abutting part is separated from the matching part, and the matching part returns to the initial position.
[0021] In the scheme, the abovementioned structure is adopted, the abutment portion is abutted against the cooperation portion to realize the movement of the cooperation portion, and the movement between the initial position and the position of the disengagement from the blocking assembly is realized, which has the characteristics of simple structure and convenient operation.
[0022] Preferably, the multifunctional cooking machine further comprises an air inlet section, two ends of the air inlet section are respectively connected with the cooking cavity and the air outlet channel, when the abutment portion is in the position of abutting against the cooperation portion, the abutment portion is used to block the communication between the air inlet section and the air outlet channel, when the abutment portion is in the position of disengaging from the cooperation portion, the abutment portion is disengaged from the air inlet section, and the air inlet section is communicated with the air outlet channel.
[0023] In the scheme, the two ends of the air inlet section are respectively communicated with the cooking cavity and the air outlet channel, that is, the flue gas in the cooking cavity can also be discharged through the air inlet section. When the abutment portion abuts against the cooperation portion, that is, the cooperation portion disengages from the blocking assembly, the abutment portion blocks the communication between the air inlet section and the air outlet channel when the blocking assembly is opened. At this time, the oil fume in the cooking cavity can be discharged from the air inlet; when the abutment portion disengages from the cooperation portion, the abutment portion disengages from the air inlet section when the blocking assembly is closed, that is, the blocking assembly blocks the communication between the air inlet and the cooking cavity, and the air inlet section is communicated with the air outlet channel. At this time, the oil fume in the cooking cavity can be discharged from the air inlet section. The abovementioned structure is adopted, the abutment portion can realize the mutual switching of the communication mode between the air inlet and the air outlet channel and the communication mode between the air inlet section and the air outlet channel, and the user can select the communication mode in different use scenarios.
[0024] Preferably, the multifunctional cooking machine further comprises a smoke suction component, the air inlet section and the air inlet are arranged in the smoke suction component, and the flue gas in the cooking cavity enters the air outlet channel from the smoke suction component.
[0025] In the scheme, the abovementioned structure is adopted, the air inlet and the air inlet section are arranged on the smoke suction component, which can realize the modular design, has the characteristics of compact structure, and can be mass-produced.
[0026] Preferably, the air inlet section comprises a collection channel and a plurality of smoke suction channels, the collection channel is communicated with the air outlet channel, and the two ends of the smoke suction channel respectively have a large opening end and a small opening end, the large opening end faces the cooking cavity and is communicated with the cooking cavity, and the small opening end is communicated with the collection channel.
[0027] In the scheme, the abovementioned structure is adopted, the smaller the cross-sectional area of the smoke suction channel is, the greater the wind speed is, and the smaller the pressure is, which is beneficial to the flue gas and water vapor entering the collection channel through the smoke suction channel and being discharged to the outside through the collection channel. The abovementioned structure is adopted, the cross-sectional area of the smoke suction channel is changed, and the efficiency of the water vapor and oil fume suction is improved.
[0028] Preferably, the exhaust passage comprises a converging member, two ends of the converging member are respectively provided with a first converging opening and a second converging opening, the first converging opening is communicated with the collecting passage, the second converging opening is communicated with the exhaust passage, and the first converging opening has a larger diameter than the second converging opening.
[0029] In the scheme, the first converging opening has a larger diameter than the second converging opening, which is beneficial to the smoke entering the converging member from the first converging opening and the smoke being exhausted from the second converging opening. The above structure can accelerate the rapid exhaust of water vapor and smoke.
[0030] Preferably, the multifunctional cooking machine further comprises a stirring part and a containing part, the stirring part is detachably connected in the cooking cavity and used for stirring food materials, and the containing part surrounds a stirring cavity for containing the stirring part in the cooking cavity, and the stirring cavity can place food materials.
[0031] In the scheme, the food materials are placed in the stirring cavity, and the stirring part can stir the food materials in the stirring cavity, so that the integration of the multifunctional cooking machine is improved and the daily needs of people are met.
[0032] Preferably, the stirring part comprises a stirring member and a motor, the stirring member is detachably connected in the cooking cavity, and the stirring member is electrically connected with the motor.
[0033] In the scheme, the stirring member can stir the food materials in the stirring cavity, and the stirring member is electrically connected with the motor, so that the motor can drive the stirring member to rotate.
[0034] Preferably, the containing part comprises a stirring main body and a stirring cover, the stirring main body is located in the cooking cavity, the stirring main body is provided with a sealing opening, the sealing opening can be used for throwing food materials, and the stirring cover is detachably covered on the stirring main body to form the stirring cavity in the stirring main body.
[0035] In the scheme, the stirring cover is detachably abutted on the stirring main body to form the stirring cavity, and the stirring main body is provided with the sealing opening, which is convenient for an operator to throw food materials into the stirring cavity from the sealing opening.
[0036] Preferably, the cooking cavity is provided with a passage communicated with the outside, and the stirring cover is covered on the sealing opening through the passage.
[0037] In the scheme, the stirring cover can be contacted with the sealing opening through the passage, which has the characteristic of convenient connection.
[0038] Preferably, the cover assembly is provided with a first through hole communicating with the cooking cavity, and the channel is arranged in the first through hole.
[0039] In the scheme, the cover part, the pot part and the stirring body are connected at one time by the stirring cover, so that the operation is convenient.
[0040] Preferably, the multifunctional cooking machine further comprises a steaming rack assembly, the steaming rack assembly is detachably connected to the cover assembly, the steaming rack assembly is provided with a steaming rack cavity, the second through hole is arranged in the steaming rack assembly, and the first through hole and the second through hole are communicated to communicate the steaming rack cavity with the pot assembly.
[0041] In the scheme, the steaming rack cavity is communicated with the pot assembly through the communication of the first through hole and the second through hole. In the cooking process, the water vapor with temperature generated in the pot assembly can enter the steaming rack cavity through the first through hole and the second through hole, and the food in the steaming rack cavity is heated through the temperature of the water vapor, so that the function of steaming food is realized.
[0042] Preferably, the surface of the steaming rack assembly close to the cover assembly is provided with a boss, and the boss extends into the first through hole and is connected with the first through hole.
[0043] In the scheme, the steaming rack assembly and the pot assembly are connected through the connection of the boss and the first through hole. The connection area of the steaming rack assembly and the pot assembly is increased, and the stability of the connection of the steaming rack assembly and the pot assembly is improved.
[0044] Preferably, the second through hole penetrates the boss.
[0045] In the scheme, the water vapor can also enter the steaming rack cavity through the second through hole on the boss while the boss and the first through hole are connected. The structure is simple.
[0046] Preferably, the multifunctional cooking machine further comprises a fan, the fan is communicated with the exhaust channel, so that the flue gas in the exhaust channel can be discharged to the outside from the fan.
[0047] In the scheme, the oil fume and the water vapor can be quickly discharged through the fan.
[0048] The positive progress effect of the present application is that:
[0049] The second heating component heats the cover component, prevents water droplets from condensing on the cover component, and avoids scalding the user. The cooking cavity is connected with the outside through the exhaust channel, so that the oil fume and water vapor generated during cooking can be discharged in time, and the generated oil fume and water vapor can avoid affecting the health of the user. BRIEF DESCRIPTION OF DRAWINGS
[0050] Figure 1 A schematic view of a multifunctional cooking machine is provided for the embodiment of the present application.
[0051] Figure 2 A three-dimensional schematic view of a multifunctional cooking machine is provided for the embodiment of the present application.
[0052] Figure 3 Another schematic view of a multifunctional cooking machine is provided for the embodiment of the present application.
[0053] Figure 4 An exploded schematic view of a multifunctional cooking machine is provided for the embodiment of the present application.
[0054] Figure 5 A schematic view of a containing part is provided for the embodiment of the present application.
[0055] Figure 6 A schematic view of a stirring main body is provided for the embodiment of the present application.
[0056] Figure 7 A Figure 6 A partial enlarged view at A in the middle.
[0057] Figure 8 A schematic view of a stirring cover is provided for the embodiment of the present application.
[0058] Figure 9 A schematic view of a multifunctional cooking machine containing a steaming rack assembly is provided for the embodiment of the present application.
[0059] Figure 10 A partial schematic view of a multifunctional cooking machine is provided for the embodiment of the present application.
[0060] Figure 11 A schematic view of a steaming rack assembly is provided for the embodiment of the present application.
[0061] Figure 12 A three-dimensional schematic view of a smoke suction component is provided for the embodiment of the present application.
[0062] Figure 13 A sectional view schematic view of a smoke suction component is provided for the embodiment of the present application.
[0063] Figure 14 Another sectional view schematic view of a smoke suction component is provided for the embodiment of the present application.
[0064] Figure 15 A schematic view of a smoking component is provided for an embodiment of the present application.
[0065] Figure 16 Another schematic view of a multifunctional cooking machine is provided for an embodiment of the present application.
[0066] Figure 17 A schematic view of a button part is provided for an embodiment of the present application. DETAILED DESCRIPTION
[0067] The present application is further illustrated by the following examples, but the present application is not limited to the scope of the examples.
[0068] The present embodiment provides a multifunctional cooking machine 1 for solving the problem that water droplets condensed on the cover have the risk of scalding the user when the user opens the cover, and the oil fume and water vapor will also affect the health of the user if not discharged in time.
[0069] As shown in Figures 1 to 17 The multifunctional cooking machine 1 includes a pot body assembly 11 and a cover assembly 12. The pot body assembly 11 includes a pot body part 111, a second heating part 112, and an exhaust passage 19, and the second heating part 112 is attached to the pot body part 111, so that the pot body part 111 is heated by the second heating part 112. The cover assembly 12 includes a cover part 121 and a first heating part 123, and the first heating part 123 is attached to the cover part 121, and the cover part 121 covers the pot body part 111 to form a cooking cavity in the pot body part 111. With the above structure, the cover part 121 is heated by the first heating part 123 to increase the temperature of the cover part 121, so that water vapor in the cooking cavity can be prevented from condensing when it meets the cover part 121 with lower temperature, i.e., the above scheme can prevent water droplets from condensing on the cover part 121, thereby avoiding scalding the user. The exhaust passage 19 includes an air inlet 191 communicating with the cooking cavity, and the cooking cavity is connected to the outside through the exhaust passage 19, so that the oil fume and water vapor generated during cooking can be discharged in time through the exhaust passage 19, avoiding the influence of the generated oil fume and water vapor on the health of the user.
[0070] The cover member 121 has a heating surface 1213, and the cover member 121 can rotate around the pot member 111 to a cooking position in which the heating surface 1213 faces outward of the pot member 111, and the heating surface 1213 is used for cooking. With the above structure, the cover member 121 is rotatably connected to the pot member 111, facilitating opening and closing of the cover member 121. The cover member 121 can rotate around the pot member 111 to the cooking position in which the heating surface 1213 faces outward of the pot member 111, and food is cooked by the heating surface 1213 on the cover member 121, improving the integration of the multifunctional cooking machine 1 and reducing the cooking time.
[0071] In specific use, the cover member 121 can be located at the upper end of the pot member 111. In other embodiments, the cover member 121 can also be rotatably connected to other positions of the pot member 111, which are not limited herein, for example, the cover member 121 is rotatably connected to the sidewall of the pot member 111.
[0072] The cover member 121 can rotate around the pot member 111 to a covering position to form a cooking cavity in the pot member 111, and the heating surface 1213 is located at the top of the cooking cavity in the covering position. With the above structure, the cover member 121 can be heated by the heating surface 1213, improving the temperature of the lower surface of the cover member 121, preventing water vapor from condensing on the lower surface of the cover member 121, thereby preventing users from being scalded or affecting the taste of food due to water droplets falling on the food. The above description can also be understood as follows: the cover member 121 rotates around the pot member 111 to the cooking position, and the cooking cavity of the pot member 111 and the heating surface 1213 of the cover member 121 can simultaneously perform cooking, improving the cooking efficiency of the multifunctional cooking machine 1. The cover member 121 rotates around the pot member 111 to the covering position, and the heating surface 1213 at the top of the cooking cavity in this position can prevent water droplets from condensing on the top of the cooking cavity, thereby preventing users from being scalded and affecting the taste of food. That is, the heating surface 1213 not only has the function of cooking food in the cooking position, but also prevents water droplets from condensing on the top of the cooking cavity in the covering position.
[0073] The cover member 121 includes a first cooking cavity for cooking, and the heating surface 1213 is the bottom surface of the first cooking cavity in the cooking position. With the above structure, food can be placed in the first cooking cavity, and the heating surface 1213 at the bottom of the first cooking cavity can be used for heating, thereby heating the food in the first cooking cavity to achieve the effect of cooking the food.
[0074] In a specific use, the first cooking cavity has an opening, and in the cooking position, the opening of the first cooking cavity faces, so as to facilitate the placement of food through the opening. In other embodiments, the cover component 121 includes a flat surface, and the flat surface is used for cooking. In the cooking position, the heating surface 1213 is the flat surface. With the above structure, the cooking process such as grilling can be achieved through the heatable flat surface, and the diversity of cooking is improved.
[0075] Preferably, the cover component 121 includes a cover body 1321 and a cover shell 1211, and the cover body 1321 is arranged in the cover shell 1211, so that the cover body 1321 can be protected by the cover shell 1211, and the service life of the cover body 1321 is improved. The heating surface 1213 is located on the cover body 1321, and the second heating component 112 is located between the cover body 1321 and the cover shell 1211, so that the second heating component 112 can be protected by the cover shell 1211, the service life of the second heating component 112 is improved, and the second heating component 112 can also prevent the operator from being injured. The pot body component 111 includes a pot body 1112 and a pot shell 1111, and the pot body 1112 is arranged in the pot shell 1111, so that the pot body 1112 can be protected by the pot shell 1111, and the service life of the pot body 1112 is improved. The first heating component 123 is located between the pot body 1112 and the pot shell 1111, so that the first heating component 123 can be protected by the pot shell 1111, the service life of the first heating component 123 is improved, and the first heating component 123 can also prevent the operator from being injured.
[0076] The pot body component 111 and the cover component 121, one of which has a buckle 29, and the other has a button portion 24, and when the cover component 121 is covered on the pot body component 111, the buckle 29 is clamped on the button portion 24. With the above structure, the cover component 121 can be stably covered on the pot body component 111 through the clamping of the button portion 24 and the buckle 29, and the stability of the covering is improved.
[0077] The button part 24 comprises a fixed part 242, a movable part 241, an elastic part 243 and a button 244. The two ends of the elastic part 243 are connected with the fixed part 242 and the movable part 241 respectively, and the button 244 is connected with the surface of the movable part 241 away from the elastic part 243. The buckle 29 extends between the button 244 and the movable part 241, and under the action of the elastic part 243, the connection between the movable part 241 and the buckle 29 can be realized. By using the above structure, the cover part 121 and the pot part 111 are stably buckled by the cooperation of the buckle 29 and the button part 24. The two ends of the elastic part 243 are connected with the fixed part 242 and the movable part 241 respectively, when the buckle 29 extends between the button 244 and the movable part 241, the buckle 29 pushes the movable part 241 to move towards the fixed part 242, at this time the elastic part 243 is extruded by the movable part 241 and the fixed part 242 to produce deformation. Subsequently, the buckle 29 continues to move, so that the buckle 29 and the movable part 241 are dislocated, so that the buckle 29 is clamped on the movable part 241. Since the button 244 is connected with the surface of the movable part 241 away from the elastic part 243, and the buckle 29 extends between the button 244 and the movable part 241, that is, the button 244 and the movable part 241 are in linkage. Press the button 244, the buckle 29 is separated from the movable part 241, and under the action of the elastic part 243, the movable part 241 can return to the initial position. By using the above structure, the cooperation of the buckle 29 and the button part 24 and the opening have the characteristics of simple operation.
[0078] In specific use, the fixed part 242 and the movable part 241 are plate-shaped, and the elastic part 243 is a spring. In other embodiments, the shape of the fixed part 242 and the movable part 241 can not be limited; the type of the elastic part 243 can also not be limited, for example, the elastic part 243 can be a disc spring and the like.
[0079] The buckle 29 comprises a protruding part 291 and a buckle body 292, the protruding part 291 is connected with the buckle body 292, the protruding part 291 is used to push the movable part 241 to move towards the fixed part 242, and the surface of the protruding part 291 pushing the movable part 241 is a slope. The part of the lower end of the protruding part 291 protruding the buckle body 292 is greater than the part of the upper end of the protruding part 291 protruding the buckle body 292, that is, the cross section of the protruding part 291 is inverted triangular. By using the above structure, the protruding part 291 is more likely to push the movable part 241 to move, preventing the upper surface of the movable part 241 from contacting the buckle 29 when the protruding part 291 just contacts the movable part 241, so that the protruding part 291 cannot continue to move downward.
[0080] The buckle 29 further comprises a stop top surface 293 connected with the protruding part 291, which is in surface contact with the lower surface of the movable part 241 when the movable part 241 is in the position connected with the buckle 29. With the above structure, the stop top surface 293 is connected with the upper surface of the protruding part 291. When the protruding part 291 pushes the movable part 241 to move towards the fixed part 242, the protruding part 291 is misaligned with the movable part 241, so that the surface of the protruding part 291 pushing the movable part 241 is misaligned with the movable part 241. As the force pushing the movable part 241 disappears, the movable part 241 returns to the initial position, so that the upper surface of the stop top surface 293 is in contact with the lower surface of the movable part 241, and the buckle 29 cannot move upwards, thereby realizing the clamping of the buckle 29 and the movable part 241.
[0081] In specific use, the stop top surface 293 and the protruding part 291 are integrally formed, having the characteristics of high integration and high strength.
[0082] The button 244 comprises a connecting part 2441 and a button body 2442, the two ends of the connecting part 2441 are respectively connected with the movable part 241 and the button body 2442, and a groove 294 extending along the clamping direction of the buckle 29 is formed on the buckle 29, and the connecting part 2441 penetrates through the groove 294 when the buckle 29 is in the position extending into the button 244 and the movable part 241. With the above structure, the lower surface of the groove 294 has an opening, the connecting part 2441 is inserted into the groove 294 through the opening, so that the connecting part 2441 can penetrate through the groove 294, and the end of the connecting part 2441 extending out of the groove 294 is connected with the button body 2442. The button body 2442 can have a certain gap 1412 with the buckle 29, facilitating the movement of the button body 2442 towards the buckle 29, and further facilitating the movement of the movable part 241 away from the buckle 29 under the driving of the button body 2442, i.e. by pressing the button body 2442, the stop top surface 293 is separated from the movable part 241, the buckle 29 without the limitation of the stop top surface 293 moves upwards, and finally realizes the separation of the buckle 29 and the movable part 241. The extension direction of the groove 294 is the same as the clamping direction of the buckle 29, which improves the movement range of the buckle 29.
[0083] The multifunctional cooking machine 1 further comprises a blocking assembly 27 and a cooperating assembly 26. The blocking assembly 27 is configured to block the communication between the air inlet 191 and the cooking cavity; the cooperating assembly 26 is configured to move between an initial position and a position away from the blocking assembly 27; when the cooperating assembly 26 is in the position away from the blocking assembly 27, the blocking assembly 27 is opened, and the air inlet 191 is in communication with the cooking cavity; when the cooperating assembly 26 returns to the initial position, the cooperating assembly 26 is configured to limit the opening of the blocking assembly 27. At this time, the blocking assembly 27 blocks the communication between the air inlet 191 and the cooking cavity. Since the cooperating assembly 26 can move between the initial position and the position away from the blocking assembly 27, when the cooperating assembly 26 is away from the blocking assembly 27 during the cooking process, the blocking assembly 27 can be opened, and the smoke generated in the cooking cavity is sequentially discharged through the air inlet 191 and the exhaust passage 19. When the cooperating assembly 26 returns to the initial position, it can limit the opening of the blocking assembly 27, thereby preventing the condensed oil fume liquid and the external gas and liquid from entering the cooking cavity through the blocking assembly 27. With the above structure, the cooked food can be prevented from being contaminated, and the cooking quality can be improved. Specifically, the opening of the blocking assembly 27 can be a rotation around the air inlet 191, or the blocking assembly 27 can be opened by sliding to realize the communication between the air inlet 191 and the cooking cavity.
[0084] The cooperating assembly 26 comprises a cooperating part 261 and a top abutting part 262, and the cooperating part 261 is configured to block the opening of the blocking assembly 27. When the top abutting part 262 abuts against the cooperating part 261, the top abutting part 262 can drive the cooperating part 261 to move to the position away from the blocking assembly 27, and the direction in which the top abutting part 262 drives the cooperating part 261 to move can be any direction that makes the cooperating part 261 move away from the blocking assembly 27; when the top abutting part 262 is away from the cooperating part 261, the cooperating part 261 returns to the initial position. With the above structure, the movement of the cooperating part 261 is realized by the top abutting part 262, so that the cooperating part 261 moves between the initial position and the position away from the blocking assembly 27, which has the characteristics of simple structure and convenient operation.
[0085] The multifunctional cooking machine 1 further comprises an air inlet section 25, and the air inlet section 25 is in communication with the cooking cavity and the air exhaust channel 19 at both ends, that is, the flue gas in the cooking cavity can also be discharged through the air inlet section 25. When the abutting portion 262 abuts against the fitting portion 261, the abutting portion 262 drives the fitting portion 261 to move away from the blocking piece. At this time, the blocking assembly 27 is opened due to the absence of the blocking of the fitting portion 261, so that the air inlet 191 is in communication with the cooking cavity, and then the flue gas in the cooking cavity can be discharged from the air inlet 191. At the same time, when the abutting portion 262 abuts against the fitting portion 261, the abutting portion 262 also blocks the communication between the air inlet section 25 and the air exhaust channel 19. Therefore, according to the above description, it can be summarized that the communication mode at this time is the communication between the air inlet 191 and the cooking cavity; when the abutting portion 262 is separated from the fitting portion 261, the fitting portion 261 returns to the initial position, so that the blocking assembly 27 is closed, and then the air inlet 191 is not in communication with the cooking cavity. At the same time, when the abutting portion 262 is separated from the fitting portion 261, the abutting portion 262 is also separated from the air inlet section 25, so that the air inlet section 25 is in communication with the air exhaust channel 19. Therefore, according to the above description, it can be summarized that the communication mode at this time is the communication between the air inlet section 25 and the cooking cavity. By adopting the above structure, the abutting portion 262 can realize the mutual switching of the communication modes between the air inlet 191 and the air exhaust channel 19 and the air inlet section 25 and the air exhaust channel 19, and the user can select different communication modes in different use scenarios.
[0086] Specifically, the return of the fitting portion 261 to the initial position can be that a certain structure applies a resilient force to the fitting portion 261, so that the fitting portion 261 returns to the initial position under the action of the force. In other embodiments, the way of returning the fitting portion 261 to the initial position can not be limited, for example, the fitting portion 261 is manually pushed back to the initial position.
[0087] The multifunctional cooking machine 1 comprises a smoke suction component 28. The air inlet 191 and the air inlet section 25 are arranged in the smoke suction component 28, and the flue gas in the cooking cavity enters the air exhaust channel 19 from the smoke suction component 28. By adopting the above structure, modular design can be realized, and the structure is compact and can be mass-produced. Specifically, the smoke suction component 28 can be arranged above the cooking cavity, which is convenient for adsorbing the flue gas in the cooking cavity.
[0088] The number of the air inlet sections 25 is multiple. The multiple air inlet sections 25 are circumferentially spaced along the smoking component 28. With the above structure, the multiple air inlet sections 25 are circumferentially spaced along the smoking component 28, which improves the efficiency of the smoke entering the air inlet sections 25. Specifically, the smoking component 28 is annular, and the multiple air inlet sections 25 can be arranged in the inner circle of the smoking component 28, which facilitates the smoke in the cooking cavity to be discharged from the air inlet sections 25. Of course, in other embodiments, the shape of the smoking component 28 and the arrangement position of the multiple air inlet sections 25 can not be limited.
[0089] The air inlet section 25 includes a collection channel 251 and multiple smoke suction channels 252, and the collection channel 251 is in communication with the exhaust channel 19. The two ends of the smoke suction channel 252 are respectively provided with a large end 2521 and a small end 2522, the large end 2521 is directed to the cooking cavity and in communication with the cooking cavity, and the small end 2522 is in communication with the collection channel 251. The smaller the cross-sectional area of the smoke suction channel 252 is, the greater the wind speed is, and the smaller the pressure is, which facilitates the smoke and water vapor to enter the collection channel 251 through the smoke suction channel 252 and be discharged to the outside through the collection channel 251. With the above structure, the efficiency of the water vapor and oil fume suction is improved by changing the cross-sectional area of the smoke suction channel 252.
[0090] In specific use, the collection channel 251 is annular, and the multiple smoke suction channels 252 are circumferentially spaced along the collection channel 251. With the above structure, the flow and collection of the water vapor and oil fume are facilitated. In other embodiments, the shape of the collection channel 251 can not be limited
[0091] The exhaust channel 19 includes a converging component 192, and the two ends of the converging component 192 are respectively provided with a first converging opening 1921 and a second converging opening 1922, the first converging opening 1921 is in communication with the collection channel 251, and the second converging opening 1922 is in communication with the outside, which can discharge the smoke in the collection channel 251 through the converging component 192. The diameter of the first converging opening 1921 is greater than that of the second converging opening 1922, which facilitates the smoke to enter the converging component 192 from the first converging opening 1921 and be discharged from the second converging opening 1922. With the above structure, the water vapor and smoke can be quickly discharged.
[0092] The converging component 192 comprises a first converging piece 1923 and a second converging piece 1924, the collection channel 251 is connected with the outside in sequence through the first converging piece 1923 and the second converging piece 1924, the first converging piece 1923 comprises a first converging opening 1921 and a small opening end 2522 opposite to the first converging opening 1921, the second converging piece 1924 comprises a second converging opening 1922 and a large opening end 2521 opposite to the second converging opening 1922, the small opening end 2522 is towards the large opening end 2521 and is connected with the large opening end 2521. By using the above structure, the water vapor and the flue gas can be better collected through the first converging piece 1923 and the second converging piece 1924, and the discharge of the flue gas and the water vapor is accelerated. Specifically, the diameter of the first converging opening 1921 is larger than the diameter of the small opening end 2522, and the diameter of the large opening end 2521 is larger than the diameter of the second converging opening 1922.
[0093] The first converging piece 1923 comprises a first converging surface, a second converging surface, a third converging surface 19231 and a fourth converging surface, and the first converging surface, the second converging surface, the third converging surface 19231 and the fourth converging surface are connected in sequence to form a hollow structure. The first converging surface and the second converging surface are symmetrically arranged up and down, and the third converging surface 19231 and the fourth converging surface are inclined surfaces, which accelerate the entering of the water vapor and the flue gas into the second converging piece 1924. That is, the two ends of the hollow structure are connected with the collection channel 251 and the outside, so that the oil fume and the water vapor can be discharged after being collected through the first converging piece 1923. The third converging surface 19231 and the fourth converging surface are inclined surfaces, so that the hollow structure can form the first converging opening 1921 close to the collection channel 251 and the small opening end 2522 away from the collection channel 251. The first converging opening 1921 can facilitate the oil fume and the water vapor to enter the first converging piece 1923, and improve the efficiency of the oil fume and the water vapor entering the first converging piece 1923, and the end surface of the small opening end 2522 has a smaller diameter relative to the large opening end 2521, so that the flow rate of the oil fume and the water vapor is increased, and the discharge efficiency of the oil fume and the water vapor is improved. Specifically, the first converging surface and the second converging surface have a certain extension length, and the extension directions of the third converging surface 19231 and the fourth converging surface can converge to a intersection point, so as to form the first converging opening 1921 with a large diameter and the small opening end 2522 with a small diameter at the two ends of the hollow structure.
[0094] The second converging member 1924 includes two converging segments 19241 which are symmetrically arranged in up and down directions, and the large opening end 2521 and the second converging opening 1922 are respectively located at two ends of the converging segments 19241. By using the above structure, the water vapor and the flue gas are further accelerated to be discharged through the second converging member 1924. Specifically, the two converging segments 19241 have a certain extension direction, and the extension directions of the two converging segments 19241 can converge to a junction to form the large opening end 2521 with a large caliber and the second converging opening 1922 with a small caliber at the two ends of the converging segments 19241.
[0095] The two converging segments 19241 are integrally formed. By using the above structure, the strength of the second converging member 1924 is improved. In other embodiments, the two converging segments 19241 can be connected by a direction of adhesion to connect the two converging segments 19241. Of course, in other embodiments, the connection mode of the converging segments 19241 is not limited herein.
[0096] The multifunctional cooking machine 1 further includes a stirring part 20 and a containing part 13. The stirring part 20 is detachably connected in the cooking cavity and is used for stirring food materials. The containing part 13 surrounds a stirring cavity in the cooking cavity, and the stirring cavity is used for containing the stirring part 20 and placing food materials. By using the above structure, the food materials are placed in the stirring cavity, and the stirring of the food materials in the stirring cavity can be realized through the stirring part 20, so as to improve the integration of the multifunctional cooking machine 1 and meet the daily needs of people.
[0097] The containing part 13 includes a stirring main body 131 and a stirring cover 132. The stirring main body 131 is located in the cooking cavity, and the stirring main body 131 has a sealing opening 14 which is used for throwing food materials. The stirring cover 132 is detachably abutted to the stirring main body 131 to form the stirring cavity in the stirring main body 131. By using the above structure, the stirring cover 132 is detachably abutted to the stirring main body 131 to form the stirring cavity, and the stirring main body 131 has the sealing opening 14, so as to facilitate the operator to throw the food materials from the sealing opening 14 into the stirring cavity.
[0098] When the stirring cover 132 is in the position abutting against the sealing port 14, the sealing port 14 is deformed towards the cooking cavity, and finally abuts against the cooking cavity and is limited. In order to facilitate the placement of the containing part 13 in the cooking cavity, a gap can be provided between the stirring body 131 and the cooking cavity, but when the stirring cover 132 abuts against the sealing port 14, the gap gradually decreases under the action of the deformation of the sealing port 14, and finally even approaches zero. That is, the deformed sealing port 14 is attached to the inner wall of the cooking cavity, so that during the cooking process, the stirring body 131 does not shake in the cooking cavity, and the stirring body 131 does not collide with the pot body assembly 11, thereby reducing the possibility of noise generation and improving the service life of the containing part 13 and the pot body assembly 11. Specifically, the materials of the stirring body 131 and the stirring cover 132 can be metal materials, which have the characteristics of wear resistance. In other embodiments, the materials of the stirring body 131 and the stirring cover 132 are not limited, for example, the stirring body 131 and the stirring cover 132 are both plastic materials.
[0099] In use, the stirring cover 132 abutting against the sealing port 14 can have the following implementation manners. In a first implementation manner, the stirring cover 132 extends into the sealing port 14, so that the sealing port 14 is expanded and attached to the cooking cavity. In a second implementation manner, the stirring cover 132 extrudes the sealing port 14, the sealing port 14 is deformed under extrusion, and the part of the sealing port 14 extruded close to the cooking cavity is attached to the cooking cavity. In other embodiments, the form of the stirring cover 132 abutting against the sealing port 14 is not limited.
[0100] The sealing port 14 includes an elastic port 141, and the elastic port 141 includes a plurality of elastic sheets 1411. The plurality of elastic sheets 1411 are circumferentially arranged, so that the sealing port 14 has a larger attachment area with the cooking cavity, improves the stability of the containing part 13 during cooking, and has a gap 1412 between adjacent two elastic sheets 1411, so that each elastic sheet 1411 can be deformed, and the deformability of the sealing port 14 is improved. Specifically, the material of the elastic sheet 1411 is plastic material, which has the characteristics of easy deformation. In order to make the deformed elastic sheet 1411 more easily recover to the original shape.
[0101] The first elastic ring 142 is at least partially overlapped with the gap 1412 in the axial direction, so that the adjacent two elastic pieces 1411 are deformed due to the gap 1412 under the action of the stirring cover 132. At this time, the first elastic ring 142 deforms along with the elastic piece 1411, but when the stirring cover 132 is in the position away from the sealing port 14, the elastic piece 1411 returns to the original position under the action of the first elastic ring 142, so that the elastic port 141 returns to the original position, improving the service life of the elastic piece 1411. Preferably, the first elastic ring 142 is completely overlapped with the gap 1412 in the axial direction, which improves the possibility of the elastic piece 1411 returning to the original position, and the first elastic ring 142 can also improve the efficiency of returning to the original position in the process of making the elastic piece 1411 return to the original position. Specifically, the first elastic ring 142 is made of silica gel. In other embodiments, the first elastic ring 142 can also be made of rubber, which is not limited here.
[0102] When the stirring cover 132 extends into the sealing port 14 to abut the inner wall of the cooking cavity, the abutting surface of the stirring cover 132 is preferably inclined, and the sealing port 14 can expand along the inclined surface to facilitate the insertion of the stirring cover 132 into the sealing port 14. The above structure improves the stability of the connection of the stirring cover 132. In other embodiments, the abutting surface of the stirring cover 132 can also be flat.
[0103] The stirring cover 132 includes a cover body 1321, and the cover body 1321 is in the shape of an inverted circular truncated cone. The above structure has the characteristics of convenient insertion, and the cover body 1321 realizes the fit of the sealing port 14 and the inner wall of the cooking cavity after being inserted into the sealing port 14 and moving a certain distance. That is, the above structure has the characteristics of reliable connection because the contact area between the cover body 1321 and the cooking cavity is large.
[0104] The sealing port 14 has at least one first connecting portion 15, and the stirring cover 132 has at least one second connecting portion 16. The first connecting portion 15 is connected with the second connecting portion 16 to connect the stirring cover 132 to the stirring body 131. The above structure can make the connection of the stirring cover 132 and the stirring body 131 more stable through the cooperation of the first connecting portion 15 and the second connecting portion 16.
[0105] The first connecting part 15 is in a plurality, and the plurality of first connecting parts 15 are arranged along the inner wall of the sealing port 14 in a circumferential direction; the second connecting part 16 is in a plurality, and the plurality of second connecting parts 16 are arranged along the outer wall of the stirring cover body 132 in a circumferential direction, and the first connecting part 15 and the second connecting part 16 are in one-to-one correspondence and abutment, so as to realize the connection of the stirring cover body 132 and the stirring main body 131. By adopting the above structure, the stability of the connection of the stirring cover body 132 and the stirring main body 131 is further improved. In other embodiments, the first connecting part 15 and the second connecting part 16 can both be annular, and the connection of the stirring cover body 132 and the sealing port 14 is realized by the cooperation of the annular first connecting part 15 and the second connecting part 16.
[0106] The third connecting part 17 is arranged on the stirring cover body 132, and the fourth connecting part 18 is arranged on the inner wall of the first through hole 122. The third connecting part 17 is connected with the fourth connecting part 18, so as to connect the stirring cover body 132 with the cover assembly 12. By adopting the above structure, the stirring cover body 132 is stably connected to the cover assembly 12 through the connection of the third connecting part 17 and the fourth connecting part 18.
[0107] The third connecting part 17 is in a plurality, and the plurality of third connecting parts 17 are arranged along the inner wall of the stirring cover body 132 in a circumferential direction; the fourth connecting part 18 is in a plurality, and the plurality of fourth connecting parts 18 are arranged along the outer wall of the first through hole 122 in a circumferential direction, and the third connecting part 17 and the fourth connecting part 18 are in one-to-one correspondence and abutment, so as to realize the connection of the stirring cover body 132 and the cover assembly 12. By adopting the above structure, the stability of the connection of the stirring cover body 132 and the cover assembly 12 is further improved. The stirring main body 131 is in a circular truncated cone type. By adopting the above structure, the volume of the stirring cavity is reduced, and the efficiency of the stirring part 20 in stirring food materials is improved.
[0108] The accommodating part 13 further comprises a second elastic ring 133, one end of the second elastic ring 133 is connected with the stirring part 20, and the other end of the second elastic ring 133 abuts against the cooking cavity. By adopting the above structure, when the stirring main body 131 is placed on the cooking cavity, the situation of metal colliding with metal does not occur, the service life of the accommodating part 13 is increased, and because the size chain of the accommodating part 13 and the entire cooking cavity is relatively long, the installation failure due to size error can be reduced by arranging the second elastic ring 133, and finally the second elastic ring 133 at the bottom of the accommodating part 13 can reduce the downward conduction of the vibration generated by the accommodating part 13 in the crushing process. Specifically, one end of the second elastic ring 133 is connected with the stirring part 20, and the other end of the second elastic ring 133 abuts against the cooking cavity, so that the second elastic ring 133 can realize surface contact with the cooking cavity, so as to realize the detachable connection of the stirring part 20 and the cooking cavity.
[0109] The stirring part 20 comprises a stirring piece 201 and a motor 202, the stirring piece 201 is detachably connected in the cooking cavity, and the stirring piece 201 is electrically connected with the motor 202. With the above structure, the stirring piece 201 can stir the food materials in the stirring cavity, and the stirring piece 201 is electrically connected with the motor 202, so that the motor 202 can drive the stirring piece 201 to rotate. Specifically, the motor 202 can be arranged on the outer wall of the cooking cavity, thereby prolonging the service life of the motor 202. In other embodiments, the position of the motor 202 can not be limited.
[0110] The cooking cavity has a channel communicating with the outside, and the stirring cover 132 abuts against the sealing port 14 through the channel. With the above structure, it is convenient to connect. The first through hole 122 communicating with the cooking cavity is arranged on the cover assembly 12, and the channel is arranged in the first through hole 122. With the above structure, the cover assembly 12, the pot assembly 11 and the stirring main body 131 are connected at one time through the stirring cover 132, which is convenient to operate. Specifically, the cover assembly 12 comprises a heat-resistant piece, and the heat-resistant piece is sleeved on the sealing port 14. When the stirring cover 132 abuts against the sealing port 14, the sealing port 14 is deformed, and the deformation direction is the direction close to the heat-resistant piece, so as to realize the fit between the sealing port 14 and the heat-resistant piece.
[0111] The multifunctional cooking machine 1 further comprises a steaming grid assembly 22, and the steaming grid assembly 22 is detachably connected to the cover assembly 12. When the user needs the steaming grid assembly 22 to realize the function of steaming food materials, the steaming grid assembly 22 is connected to the cover assembly 12. When the user only needs to use the cooking cavity to realize the function of cooking food materials, the steaming grid assembly 22 can also be detached from the cover assembly 12, thereby improving the utilization rate of the steaming grid assembly 22. The first through hole 122 is arranged at the upper end of the cover assembly 12, and the second through hole 224 is arranged on the steaming grid assembly 22, the first through hole 122 and the second through hole 224 are communicated, so as to communicate the steaming grid cavity and the cover assembly 12. With the above structure, in the cooking process, the water vapor with temperature generated in the cover assembly 12 can enter the steaming grid cavity through the first through hole 122 and the second through hole 224, and the temperature brought by the water vapor is used to heat the food materials in the steaming grid cavity, so as to realize the function of steaming food materials. The first through hole 122 is arranged at the upper end of the cover assembly 12, which is conducive to the entry of water vapor into the steaming grid cavity. In other embodiments, the first through hole 122 can also be located at other positions of the cover assembly 12, such as the side wall of the cover assembly 12, which is not limited here.
[0112] In specific use, when the steaming grid assembly 22 is used to steam food materials, the containing part 13 can be taken out of the pot assembly 11.
[0113] The steaming basket assembly 22 further comprises a steaming basket 221 and a steaming cover 222, the steaming cover 222 covers the steaming basket 221 to form a steaming cavity, and the second through hole 224 is formed on the steaming basket 221. By using the above structure, the steaming cavity formed by covering the steaming cover 222 on the steaming basket 221 can realize the function of steaming food materials.
[0114] In specific use, the steaming basket 221 has a hollow cubic structure, and the steaming cover 222 has a plate shape and covers the upper part of the hollow part of the steaming basket 221. In order to facilitate taking, a handle can be connected to the upper part of the steaming cover 222.
[0115] The surface of the steaming basket assembly 22 close to the cover assembly 12 has a boss 223, and the boss 223 extends into the first through hole 122 and is connected with the first through hole 122 to realize the connection between the steaming basket assembly 22 and the cover assembly 12. By using the above structure, the steaming basket assembly 22 and the cover assembly 12 are connected, and at the same time, the contact area between the steaming basket assembly 22 and the first through hole 122 is increased, thereby improving the stability of the connection between the steaming basket assembly 22 and the cover assembly 12.
[0116] The second through hole 224 penetrates the boss 223. By using the above structure, when the boss 223 is connected with the first through hole 122, water vapor can also enter the steaming cavity through the second through hole 224 on the boss 223, which facilitates the communication between the steaming cavity and the cover assembly 12, and has the characteristics of simple structure. In other embodiments, the second through hole 224 and the boss 223 can also be located at different positions of the steaming basket assembly 22, and the second through hole 224 and the first through hole 122 can be connected by a connecting pipe. Of course, in other embodiments, the connection mode of the first through hole 122 and the second through hole 224 can also be not limited.
[0117] The boss 223 has a fifth connecting part 23, and the fifth connecting part 23 is connected with the fourth connecting part 18 to connect the steaming cavity with the cover assembly 12. By using the above structure, the fourth connecting part 18 and the fifth connecting part 23 are matched to realize the connection between the boss 223 and the first through hole 122, and then realize the connection between the steaming basket assembly 22 and the cover assembly 12.
[0118] In specific use, the number of the fifth connecting part 23 is multiple, and the multiple fifth connecting parts 23 are arranged along the side wall of the boss 223 in a circumferential interval, and the number of the fourth connecting part 18 is also multiple, and the multiple fourth connecting parts 18 are arranged along the inner wall of the first through hole 122 in a circumferential interval. The fifth connecting part 23 and the fourth connecting part 18 are connected one by one to improve the stability of the connection between the boss 223 and the first through hole 122.
[0119] The multifunctional cooking machine 1 further comprises a fan 21 which is communicated with the exhaust passage 19 so that the flue gas in the exhaust passage 19 can be discharged to the outside through the fan 21. With the above structure, the discharge of the oil fume and the water vapor can be quickly realized through the fan 21. In specific use, the fan 21 is arranged in the pot assembly 11, thereby improving the integration of the multifunctional cooking machine 1.
[0120] Although the specific embodiments of the present application are described above, those skilled in the art should understand that this is only an illustration, and the protection scope of the present application is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present application, and these changes and modifications all fall within the protection scope of the present application.
Claims
1. A multifunction cooking machine, characterized by, The multifunctional cooking machine comprises: a pot assembly comprising a pot component and a first heating component, the first heating component being attached to the pot assembly; a cover assembly comprising a cover component and a second heating component, the second heating component being attached to the cover component, the cover component covering the pot component to form a cooking cavity in the pot component; an exhaust passage comprising an air inlet communicating with the cooking cavity, the cooking cavity being in communication with the outside through the exhaust passage; the multifunctional cooking machine further comprises a blocking assembly and a cooperating assembly, the blocking assembly being used to block the communication between the air inlet and the cooking cavity, the cooperating assembly being arranged to move between an initial position and a position away from the blocking assembly, when the cooperating assembly is in the position away from the blocking assembly, the blocking assembly is opened, the air inlet is in communication with the cooking cavity; when the cooperating assembly returns to the initial position, the cooperating assembly is used to limit the opening of the blocking assembly, the blocking assembly blocks the communication between the air inlet and the cooking cavity; the cooperating assembly comprises a cooperating part and an abutting part, the cooperating part is used to block the opening of the blocking assembly, the abutting part abuts the cooperating part to drive the cooperating part to move to the position away from the blocking assembly, the abutting part is separated from the cooperating part, and the cooperating part returns to the initial position; the multifunctional cooking machine further comprises an air inlet section, two ends of the air inlet section are respectively in communication with the cooking cavity and the exhaust passage, when the abutting part abuts the cooperating part, the abutting part is used to block the communication between the air inlet section and the exhaust passage, when the abutting part is separated from the cooperating part, the abutting part is separated from the air inlet section, and the air inlet section is in communication with the exhaust passage; the multifunctional cooking machine further comprises a smoke suction component, the air inlet section and the air inlet are arranged in the smoke suction component, and smoke in the cooking cavity enters the exhaust passage from the smoke suction component; the air inlet section comprises a collection passage and a plurality of smoke suction passages, the collection passage is in communication with the exhaust passage, and two ends of each smoke suction passage have a large end and a small end, the large end faces the cooking cavity and is in communication with the cooking cavity, and the small end is in communication with the collection passage.
2. The multi-functional cooking machine according to claim 1, wherein the cover component is rotationally connected to the pot component, the cover component has a heating surface, the first heating component is attached to the heating surface, the cover component can be rotated around the pot component to a cooking position where the heating surface faces outward of the pot component, and the heating surface is used for cooking in the cooking position.
3. The multi-functional cooking machine according to claim 2, wherein the cover component can be rotated around the pot component to a covering position to form the cooking cavity in the pot component, and the heating surface is located at the top of the cooking cavity in the covering position.
4. The multi-functional cooking machine according to claim 2, wherein the cover component comprises a cover body and a cover shell, the cover body is arranged in the cover shell, the heating surface is located on the cover body, and the first heating component is located between the cover body and the cover shell. And / or, the pot body component comprises a pot body and a pot shell, the pot body is located in the pot shell, and the second heating component is located between the pot body and the pot shell.
5. The multi-functional cooking machine according to claim 1, wherein One of the pot body component and the cover body component has a buckle, and the other has a button part, the buckle is buckled to the button part when the cover body component covers the pot body component.
6. The multi-functional cooking machine according to claim 5, wherein The button part comprises a fixed part, a movable part, an elastic part and a button, two ends of the elastic part are connected with the fixed part and the movable part respectively, the button is connected with the surface of the movable part away from the elastic part, the buckle extends between the button and the movable part, and the movable part and the buckle can be connected under the action of the elastic part.
7. The multi-functional cooking machine according to claim 1, wherein The exhaust passage comprises a converging component, two ends of the converging component are respectively provided with a first converging opening and a second converging opening, the first converging opening is communicated with the collecting passage, the second converging opening is communicated with the exhaust passage, and the caliber of the first converging opening is larger than that of the second converging opening.
8. The multi-functional cooking machine according to claim 1, wherein The multifunctional cooking machine further comprises a stirring part and a containing part, the stirring part is detachably connected in the cooking cavity and used for stirring food materials, and the containing part surrounds a stirring cavity used for containing the stirring part in the cooking cavity, and the stirring cavity can place food materials.
9. The multi-functional cooking machine according to claim 8, wherein The stirring part comprises a stirring part and a motor, the stirring part is detachably connected in the cooking cavity, and the stirring part is electrically connected with the motor.
10. The multi-functional cooking machine according to claim 8, wherein The containing part comprises a stirring main body and a stirring cover body, the stirring main body is located in the cooking cavity, the stirring main body is provided with a sealing opening, the sealing opening can be used for throwing food materials, and the stirring cover body is detachably covered on the stirring main body to form the stirring cavity in the stirring main body.
11. The multi-functional cooking machine according to claim 10, wherein The cooking cavity is provided with a passage communicated with the outside, and the stirring cover body is covered on the sealing opening through the passage.
12. The multi-functional cooking machine according to claim 11, wherein A first through hole communicated with the cooking cavity is formed in the cover body assembly, and the passage is arranged in the first through hole.
13. The multi-functional cooking machine according to claim 12, wherein The multifunctional cooking machine further comprises a steamer assembly, the steamer assembly is detachably connected on the cover body assembly, the steamer assembly is provided with a steamer cavity, a second through hole is formed in the steamer assembly, the first through hole and the second through hole are communicated, so that the steamer cavity is communicated with the pot body assembly.
14. The multi-functional cooking machine according to claim 13, wherein The surface of the steamer assembly close to the cover body assembly is provided with a boss, the boss extends into the first through hole and is connected with the first through hole.
15. The multi-functional cooking machine according to claim 14, wherein The second through hole penetrates the boss.
16. The multi-functional cooking machine according to claim 1, wherein The multifunctional cooking machine further comprises a fan, the fan is communicated with the exhaust passage, so that the flue gas in the exhaust passage is discharged to the outside through the fan.
Citation Information
Patent Citations
Multifunctional cooking machine
CN216416791U