Integrated stove
By incorporating detection and alert components into the integrated stove, the problem of the inability to observe the liquid storage components in real time has been solved. This enables timely alerts for incorrect installation, missing parts, and overloading, thereby improving the reliability of the integrated stove and the user experience.
Patent Information
- Application Number
- PCT/CN2025/088710
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-15
- Filing Date
- 2025-04-14
- Publication Date
- 2025-10-23
AI Technical Summary
The liquid storage components of existing integrated stoves cannot be observed by users in real time, which makes it impossible to detect problems such as missing, incorrect, or overloaded components in a timely manner, affecting product reliability and user experience.
The integrated stove is equipped with a detection component and a prompting component to detect the position and water level of the liquid storage component, and to send prompts to the user through the prompting component to promptly notify them of incorrect installation, missing installation, or overload.
By combining detection components and indicator parts, users can promptly understand the status of the liquid storage components, avoid malfunctions, and improve the reliability of the integrated stove and the user experience.
Smart Images

Figure CN2025088710_23102025_PF_FP_ABST
Abstract
Description
Integrated cooker
[0001] The present application claims priority to the Chinese patent application No. 202420774242.5, filed on April 15, 2024, entitled “Integrated cooker” and the Chinese patent application No. 202420774237.4, filed on April 15, 2024, entitled “Integrated cooker”, the contents of which are incorporated herein by reference in their entirety. TECHNICAL FIELD
[0002] The present application relates to the technical field of cooking equipment, in particular, relates to an integrated cooker. BACKGROUND
[0003] In the related art, the integrated cooker product is accompanied by water drainage during the process of discharging oil fume. The water is collected in the water receiving box inside.
[0004] However, the water receiving box is usually hidden inside the cooktop, so the user cannot observe the state of the water receiving box when using the integrated cooker. Therefore, the user cannot discover and eliminate the problems such as missing, misplacing, and full loading of the liquid storage component in time, which affects the reliability and practicability of the integrated cooker product and damages the user experience.
[0005] Therefore, how to overcome the above technical defects has become a technical problem to be solved. SUMMARY
[0006] The present application aims to at least solve one of the technical problems existing in the prior art.
[0007] To this end, the present application provides an integrated cooker.
[0008] Therefore, the integrated cooker provided by the present application includes a body, a liquid storage component, a detection assembly, and a prompt component. The liquid storage component is detachably connected with the body and is used to collect and store the liquid in the body. The detection assembly is arranged in the body and is used to detect the state information of the liquid storage component. The prompt component is arranged in the body and is connected with the detection assembly, and is used to send prompt information according to the state information.
[0009] In the technical solution, the integrated cooker includes the body and the liquid storage component. The body is embedded on the cooktop, and the top of the body forms the exposed surface of the integrated cooker. The cooking utensil that needs to be heated is placed above the body. The body also has the function of sucking oil fume. The cooking utensil will inevitably produce oil fume and water vapor when heating the internal food. The body can suck the oil fume and water vapor into the body to realize the collection, treatment, and directional discharge of the oil fume.
[0010] The liquid storage component is arranged on the body and connected with the body through a detachable structure, and specifically, the liquid storage component can be clamped on the body through buckles and clamping grooves. In the working process, oil fume and water vapor drawn into the body can be filtered and separated to form waste water, and the liquid storage component can collect and store the waste water in the body to avoid the waste water from spreading everywhere in the body. The user can timely pour out the waste water stored in the liquid storage component by detaching the liquid storage component, and can also clean the dirt in the liquid storage component to avoid odor in the body.
[0011] The liquid storage component is hidden below the body, and the user cannot observe the condition of the liquid storage component below the body in the use process. With the increase of working time, the amount of waste water in the liquid storage component increases correspondingly. When the waste water in the liquid storage component is full, if the liquid storage component is not timely detached and the waste water in the liquid storage component is not timely poured out, the waste water will overflow to other areas inside the body, causing the electrical structure in the body to be eroded by the waste water, resulting in faults such as short circuit, rust, and blockage. At the same time, after the liquid storage component is detached, the user may miss or misplace the installation of the liquid storage component. At this time, if the control integrated cooker starts to work, the waste water will directly leak into the cooktop, polluting the cooktop and affecting the user experience.
[0012] To this end, the integrated cooker defined in the present application further includes a detection assembly and a prompt component. The detection assembly is arranged on the body and is used to detect state information of the liquid storage component, wherein the state information at least includes position information of the liquid storage component and / or water level information in the liquid storage component. The position information can reflect the current position of the liquid storage component on the body and can be used to determine whether the liquid storage component is installed in place and whether there is a misplacement or missing problem. Correspondingly, the water level information can reflect the current water level height of the waste water in the liquid storage component and can be used to determine whether the liquid storage component is full. The prompt component is installed on the body and connected with the detection assembly. The prompt component can send corresponding prompt information to the user based on the state information detected by the detection assembly. Specifically, when it is determined through the position information that the liquid storage component is misplaced or missing, prompt information prompting the user to timely install the liquid storage component or calibrate the installation position of the liquid storage component is sent. When it is determined through the water level information that the liquid storage component is full, prompt information prompting the user to timely pour out the waste water in the liquid storage component is sent.
[0013] It can be seen that, by arranging the detection assembly and the prompt component, the user can timely understand the current state of the liquid storage component through the prompt information sent by the prompt component when the user cannot observe the liquid storage component, and timely eliminate the faults of the liquid storage component, thereby solving the technical problems of poor reliability and poor user experience of the integrated cooker in the related art, and further realizing the technical effects of optimizing the structure of the integrated cooker, improving the practicality and reliability of the integrated cooker, reducing the failure rate of the integrated cooker, and improving the user experience.
[0014] In some technical solutions of the present application, optionally, the predetermined mounting position of the liquid storage component on the body, the detection assembly comprises: a first sensor arranged on the body and connected with the prompting component, the first sensor being configured to detect whether the liquid storage component is located at the predetermined mounting position; wherein when the first sensor detects that the liquid storage component is not located at the predetermined mounting position, the detection assembly sends a first prompt information.
[0015] In this technical solution, the liquid storage component comprises the first sensor, the first sensor is arranged on the body, and the first sensor is connected with the detection assembly, the state information detected by the first sensor corresponds to the position information of the liquid storage component, specifically, the first sensor can be configured to detect whether the liquid storage component is located at the predetermined mounting position, when the liquid storage component is located at the predetermined mounting position, the liquid storage component can effectively collect the wastewater in the body, and the wastewater will not spread to the inside of the cooking bench and the inside of the body before being full. When the liquid storage component is not located at the predetermined mounting position, the liquid storage component may be misassembled or missed, at this time, the wastewater may directly leak into the cooking bench or spread to the electrical structure in the body, and the inside of the cooking bench may be contaminated.
[0016] In this regard, the first sensor sends a first signal to the prompting component when detecting that the liquid storage component is not located at the predetermined mounting position, the prompting component can send a first prompt information according to the first signal, and the user can learn from the first prompt information that the liquid storage component may be misassembled or missed, so as to open the cooking bench in time and complete the position calibration or installation of the liquid storage component, so as to ensure that the liquid storage component can effectively collect the wastewater in the body, timely eliminate the misassembly or missing fault, and further realize the technical effects of improving the intelligent degree of the integrated cooker, improving the practicality and reliability of the integrated cooker, and reducing the failure rate of the integrated cooker.
[0017] Specifically, the prompting component can send a prompt information that the liquid storage component is installed in place when not receiving the first signal, so as to facilitate the user to real-time control the current state of the liquid storage component.
[0018] In some technical solutions of the present application, optionally, the first sensor comprises: a first magnetic control switch arranged on the body and connected with the prompting component; the detection assembly further comprises: a first magnetic member arranged on the liquid storage component; wherein when the liquid storage component is located at the predetermined mounting position, the first magnetic control switch is opened or conducted under the action of the magnetic field generated by the first magnetic member.
[0019] In this technical solution, the first sensor comprises the first magnetic control switch, and the detection assembly further comprises the first magnetic member used in cooperation with the first magnetic control switch.
[0020] The first magnetic control switch is arranged on the body and electrically connected with the prompting component. The first magnetic component is arranged on the liquid storage component, and the liquid storage component can drive the first magnetic component to move synchronously during dismounting. The first magnetic control switch is in an open or closed state. When the liquid storage component moves to the predetermined mounting position, the magnetic field generated by the first magnetic component arranged on the liquid storage component can actuate the first magnetic control switch, so that the first magnetic control switch is switched from the on state to the off state or from the off state to the on state. The prompting component can determine whether the liquid storage component is mounted at the predetermined mounting position through the state signal of the first magnetic control switch.
[0021] Therefore, by arranging the first magnetic control switch and the first magnetic component, the current position of the liquid storage component can be detected, and the incorrect mounting fault and the missing mounting fault of the liquid storage component can be timely checked in cooperation with the prompting component, so that the user can timely eliminate the fault, and the technical effect of improving the practicability and reliability of the integrated cooker is achieved.
[0022] Specifically, the first magnetic component is a permanent magnet, so that the magnetic field triggering the first magnetic control switch can be generated near the first magnetic component.
[0023] In some technical solutions of the present application, optionally, the liquid storage component comprises a mounting groove, and the first magnetic component is arranged in the mounting groove.
[0024] In this technical solution, the outer side of the liquid storage component is provided with the mounting groove, and the first magnetic component is at least partially arranged in the mounting groove. Specifically, when the liquid storage component is at the predetermined mounting position, the mounting groove faces the first magnetic control switch, so as to shorten the distance between the first magnetic control switch and the first magnetic component, and ensure that the first magnetic component on the liquid storage component can trigger the first magnetic control switch to actuate when the liquid storage component is at the predetermined mounting position.
[0025] Meanwhile, the mounting groove can facilitate the mounting of the first magnetic component, and reduce the assembly difficulty and complexity of the first magnetic component.
[0026] Specifically, the first magnetic component is in interference fit with the mounting groove, and the first magnetic component can be clamped in the mounting groove.
[0027] Alternatively, the first magnetic component is connected with the mounting groove through an adhesive, and the first magnetic component is adhered to the inner side of the mounting groove.
[0028] In some technical solutions of the present application, optionally, the first sensor further comprises a trigger switch arranged on the body and connected with the prompting component. When the liquid storage component is at the predetermined mounting position, the liquid storage component contacts the trigger switch, and the trigger switch is triggered by the liquid storage component.
[0029] In this technical solution, the first sensor comprises the trigger switch, and the trigger switch is arranged on the body and electrically connected with the prompting component.
[0030] The trigger switch is in an open or closed state, when the liquid storage component moves to the predetermined installation position, the liquid storage component can contact the contact point on the trigger switch, so that the trigger switch is switched from the on state to the off state, or from the off state to the on state, and the corresponding prompt component can determine whether the liquid storage component is installed at the predetermined installation position through the state signal of the trigger switch.
[0031] Therefore, by setting the trigger switch, the current position of the liquid storage component can be detected, and the prompt component can timely troubleshoot the misinstallation fault and the missing fault of the liquid storage component, so as to facilitate the user to timely troubleshoot the fault, and realize the technical effects of improving the practicability and reliability of the integrated cooker.
[0032] In some technical solutions of the present application, the detection assembly further comprises a second sensor arranged on the body and connected with the prompt component, the second sensor being used to detect whether the liquid level in the liquid storage component reaches a first height; wherein when the second sensor detects that the liquid level in the liquid storage component reaches the first height, the detection assembly sends a second prompt information.
[0033] In this technical solution, the liquid storage component comprises a second sensor arranged on the body, and the second sensor is connected with the detection assembly, and the state information detected by the second sensor corresponds to the liquid level information in the liquid storage component. Specifically, the second sensor can be used to detect whether the liquid level in the liquid storage component reaches a first height. When the liquid level in the liquid storage component does not reach the first height, it means that the liquid storage component is not full, and the liquid storage component can continue to collect wastewater. When the liquid level in the liquid storage component reaches the first height, it means that the liquid storage component is in a full state. If the wastewater in the liquid storage component is not promptly emptied, the continuously rising wastewater will spread to the inside of the body, causing the electrical structure in the body to be eroded by the wastewater, and inducing electrical faults of the integrated cooker.
[0034] In this regard, when the second sensor detects that the liquid level in the liquid storage component reaches the first height, the second sensor sends a second signal to the prompt component, and the prompt component sends a second prompt information according to the second signal. The user can understand from the second prompt information that the liquid storage component is full, and timely open the cooktop and complete the disassembly action of the liquid storage component and the wastewater emptying operation. After completing the emptying operation, the liquid storage component can be reinstalled at the predetermined installation position for continuous use, ensuring that the liquid storage component can effectively collect the wastewater in the body, timely troubleshoot the full fault, and further realize the technical effects of improving the intelligent degree of the integrated cooker, improving the practicability and reliability of the integrated cooker, and reducing the failure rate of the integrated cooker.
[0035] Specifically, when the prompt component does not receive the second signal, it can also directly display the current water level height of the liquid storage component, so as to facilitate the user to actually control the wastewater loading state of the liquid storage component.
[0036] In some technical solutions of the present application, optionally, the second sensor comprises a second magnetic control switch arranged on the body and connected with the prompting component; the detection assembly further comprises a first floating component arranged in the liquid storage component, the first floating component being capable of rising and falling along with the liquid level in the liquid storage component; and a second magnetic element arranged on the first floating component; wherein when the liquid level in the liquid storage component reaches the first height, the second magnetic control switch is switched off or turned on under the action of the magnetic field generated by the second magnetic element.
[0037] In this technical solution, the second sensor comprises a second magnetic control switch, and the detection assembly further comprises a second magnetic element and a first floating component used in cooperation with the second magnetic control switch.
[0038] The second magnetic control switch is arranged on the body and electrically connected with the prompting component, the first floating component is placed inside the liquid storage component, the second magnetic element is connected with the first floating component, specifically, the bottom of the first floating component is a float, and the second magnetic element is fixed on the top of the first floating component, when the water level in the liquid storage component rises, the first floating component drives the second magnetic element to rise synchronously.
[0039] The second magnetic control switch is in a normally open or normally closed state, when the water level in the liquid storage component rises to the first height, the first floating component drives the second magnetic element to rise to a corresponding height capable of triggering the second magnetic control switch along with the water level, at this time, the magnetic field generated by the second magnetic element can make the second magnetic control switch act, so that the second magnetic control switch is switched from the on state to the off state, or from the off state to the on state, and the corresponding prompting component can determine that the water level in the liquid storage component has risen to the first height through the state signal of the second magnetic control switch.
[0040] Therefore, by arranging the second magnetic control switch, the first floating component and the second magnetic element, the current water level in the liquid storage component can be detected, and the full load failure of the liquid storage component can be promptly investigated in cooperation with the prompting component, so that the user can promptly eliminate the failure, and the technical effects of improving the practicability and reliability of the integrated cooker are achieved.
[0041] In some technical solutions of the present application, optionally, the second sensor further comprises a signal transmitter arranged on the body; and a signal receiver arranged on the body, the signal receiver being oppositely arranged with the signal transmitter and connected with the prompting component; and the detection assembly further comprises a second floating component arranged in the liquid storage component, the second floating component being capable of rising and falling along with the liquid level in the liquid storage component; wherein when the liquid level in the liquid storage component reaches the first height, the second floating component is located between the signal transmitter and the signal receiver, and the second floating component blocks the signal transmission between the signal transmitter and the signal receiver.
[0042] In this technical solution, the second sensor comprises a signal transmitter and a signal receiver, and the detection assembly further comprises a second floating component used in cooperation with the signal transmitter and the signal receiver.
[0043] The signal transmitter and the signal receiver are arranged on the body, the signal transmitter is arranged opposite to the signal receiver, and the signal transmitter and the signal receiver are spaced apart to form a signal passage in the spacing area, and the signal receiver is electrically connected with the prompting component. The second floating component is placed inside the liquid storage component, and specifically, the bottom of the second floating component is a float, and the size of the top of the second floating component is smaller than the size of the spacing between the signal transmitter and the signal receiver, that is, the second floating component can be inserted between the signal transmitter and the signal receiver. When the water level in the liquid storage component rises, the second floating component rises synchronously.
[0044] The signal transmitter continuously transmits signals to the signal receiver, the signals including light signals such as infrared signals, and the signal receiver can continuously receive signals when the signal passage between the signal transmitter and the signal receiver is not blocked.
[0045] When the water level in the liquid storage component rises to the first height, the top end of the second floating component is inserted between the signal transmitter and the signal receiver, the second floating component blocks the signal passage between the signal transmitter and the signal receiver, and at this time, the signal receiver cannot receive signals, and the corresponding prompting component can determine that the water level in the liquid storage component has risen to the first height through the state change of the signal receiver.
[0046] Therefore, by arranging the signal transmitter, the signal receiver and the second floating component, the current water level in the liquid storage component can be detected, and the full load failure of the liquid storage component can be timely checked in cooperation with the prompting component, so that the user can timely eliminate the failure, and the technical effects of improving the practicability and reliability of the integrated cooker are achieved.
[0047] In some technical solutions of the present application, optionally, the body includes: a cooker assembly including a smoke inlet, the prompting component is arranged on the cooker assembly; a smoke machine assembly connected with the cooker assembly, the smoke machine assembly is used for sucking oil fume through the smoke inlet, the liquid storage component and the detection assembly are arranged on the smoke machine assembly; and a power supply assembly arranged on the cooker assembly, the power supply assembly is connected with the prompting component and the detection assembly.
[0048] In this technical solution, the body includes the cooker assembly, the smoke machine assembly and the power supply assembly.
[0049] The cooker assembly is embedded in the mounting port on the cooker, the top of the cooker assembly includes a panel, and the bottom includes a shell, a heating assembly capable of forming a heating area on the panel is arranged in the shell, and a smoke inlet for allowing oil fume to enter the integrated cooker is arranged on the panel. The prompting component can be installed below the panel, and at this time, a light transmission area is arranged in cooperation with the prompting component, so that the user can observe the prompt information emitted by the prompting component through the panel.
[0050] The smoke machine assembly is hung below the cooktop assembly, and the smoke machine assembly can provide power for sucking oil fume. During operation, the smoke machine assembly can suck oil fume into the integrated stove through the smoke inlet, and after treatment by the oil separation assembly and the filter assembly, relatively clean oil fume is discharged to a designated area.
[0051] The power supply assembly is also hung below the cooktop assembly. The power supply circuit in the power supply assembly is connected with the detection assembly and the prompting component, and the power supply assembly can provide power for the detection assembly and the prompting component. Similarly, the power supply assembly is also connected with the smoke machine assembly, thereby providing continuous power for the smoke machine assembly.
[0052] In some technical solutions of the present application, the prompting component includes one or a combination of the following: a display, a loudspeaker, and a light-emitting piece.
[0053] In this technical solution, the prompting component includes at least one or a combination of the following: a display, a loudspeaker, and a light-emitting piece.
[0054] When the prompting component includes a display, the display can display corresponding prompt information through text and symbols, and the user can understand whether the liquid storage component has problems such as misloading, missing loading, and full loading by observing the display.
[0055] When the prompting component includes a loudspeaker, the loudspeaker can emit corresponding prompt information through sound, and the user can understand whether the liquid storage component has problems such as misloading, missing loading, and full loading by hearing the prompt sound emitted by the loudspeaker.
[0056] When the prompting component includes a light-emitting piece, the light-emitting piece can emit corresponding prompt information through light, and the user can understand whether the liquid storage component has problems such as misloading, missing loading, and full loading by observing the light emitted by the light-emitting piece.
[0057] In some technical solutions of the present application, optionally, the body includes a smoke inlet, and the integrated stove further includes: a filter assembly, which is arranged opposite the smoke inlet and is used for filtering oil fume flowing into the smoke inlet; and a collection assembly, which is connected with the filter assembly, the filter assembly is located between the collection assembly and the smoke inlet, and the collection assembly is used for collecting liquid on the filter assembly; wherein the liquid storage component is connected with the collection assembly, and the liquid storage component is used for storing the liquid collected by the collection assembly.
[0058] In this technical solution, a through hole is formed on a local area of the body, and the through hole is the smoke inlet. The smoke inlet is used for absorbing oil fume, and a grille is arranged on the smoke inlet to prevent foreign matter from entering the smoke inlet and causing blockage. The filter assembly is arranged opposite the smoke inlet, specifically, below the smoke inlet. The filter assembly is used for filtering oil fume entering the smoke inlet, and therefore, the filter assembly has the functions of reducing oil in oil fume and reducing odor.
[0059] On this basis, the integrated cooker further comprises a collecting assembly and a liquid storage component. The collecting assembly is connected with the filtering assembly, and the collecting assembly is arranged at a position opposite to the filtering assembly. Therefore, the filtering assembly is located between the collecting assembly and the smoke inlet. The collecting assembly is used for collecting the liquid, such as oil and water, filtered from the filtering assembly. The liquid storage component is connected with the collecting assembly. The liquid storage component is used for storing the liquid collected by the collecting assembly, so that the collected liquid is convenient for centralized processing. The collected liquid is stored in a centralized manner, so as to avoid faults or peculiar smell caused by the accumulation of the liquid in the integrated cooker.
[0060] In the related art, there is an opening on the upper surface of the integrated cooker. However, during use, liquid may flow into the opening. If the liquid is not properly handled, it may cause dangerous situations such as short circuit failure, fire, and explosion of the product. In addition, the liquid may accumulate inside the product, generating unpleasant gas and affecting the user experience.
[0061] Therefore, by arranging the collecting assembly and the liquid storage component, when the liquid (oil and water) overflowed during cooking enters the product through the smoke inlet, the internal electrical components of the integrated cooker are effectively protected from short circuit failure, fire, and explosion.
[0062] Of course, if the water enters the smoke inlet when wiping the surface of the cooking body, it will also enter the collecting assembly and the liquid storage component, achieving the collection and storage of the sewage and facilitating the subsequent centralized processing of the user.
[0063] In addition, the liquid storage component is detachably mounted on the integrated cooker, so that the liquid storage component can be taken out to pour out the liquid, so as to avoid the generation of odor and the attraction of pests.
[0064] In some technical solutions of the present application, the collecting assembly comprises: a first water collecting component comprising a containing cavity, the filtering assembly being arranged in the containing cavity; and a second water collecting component connected with the body and the liquid storage component. The second water collecting component comprises a flue, and the first water collecting component is arranged in the flue. The first end of the flue is in communication with the smoke inlet. The second water collecting component further comprises a drainage channel in communication with the containing cavity and the liquid storage component.
[0065] In this technical solution, the collecting assembly comprises the first water collecting component and the second water collecting component. The first water collecting component comprises the containing cavity, and the filtering assembly is arranged in the containing cavity. After the cooking fume is sucked, it will impact on the filtering assembly at a certain speed, so that the liquid in the fume is continuously collected on the surface of the filtering assembly, and then falls and drips into the first water collecting component.
[0066] The second water collecting component connecting body and the liquid storage component, the second water collecting component includes a flue and a drainage channel, the first water collecting component is arranged in the flue, the oil fume enters the first water collecting component through the smoke inlet connected to the first end of the flue, and is discharged along the direction of the other end of the flue, and the drainage channel is connected between the containing cavity and the liquid storage component. Through the arrangement, the liquid is guided to enter the liquid storage component, that is, the liquid filtered by the filtering assembly flows into the liquid storage component through the drainage channel, so that the liquid collected by the collecting assembly is stored and collected, and the failure or peculiar smell caused by the accumulation of liquid in the integrated cooker is avoided.
[0067] In some technical solutions of the application, optionally, the top of the first water collecting component includes an air inlet opposite to the smoke inlet, the side of the first water collecting component includes an air outlet, and the side and / or bottom of the first water collecting component includes a drainage outlet connected to the drainage channel.
[0068] In the technical solution, the top of the first water collecting component is provided with an air inlet opposite to the smoke inlet, so that the oil fume entering the smoke inlet can fully enter the air inlet, and the oil fume can be fully filtered when flowing through the filtering assembly. The side of the first water collecting component is also provided with an air outlet, so that the oil fume flowing through the first water collecting component can flow to the air outlet through the flue and then be discharged to the outside. The drainage outlet is arranged on the side or bottom of the first water collecting component, so that when the liquid in the first water collecting component further increases, the liquid can flow into the second water collecting component through the drainage outlet. In addition, the drainage outlet is connected to the drainage channel, so that the liquid filtered by flowing through the filtering assembly can flow through the drainage channel to the drainage outlet and then to the liquid storage component, thereby realizing the centralized storage of the liquid and facilitating the subsequent cleaning to avoid the generation of odor, the attraction of pests and the like, and the adverse effects on the product experience.
[0069] In some technical solutions of the application, optionally, the drainage channel includes a drainage groove connected to the flue and located below the first water collecting component, and a flow channel connected to the drainage groove and the liquid storage component.
[0070] In the technical solution, the drainage channel includes a drainage groove and a flow channel, the drainage groove is connected to the flue and located below the first water collecting component, and the flow channel is connected to the drainage groove and the liquid storage component, thereby forming a flow path of the drainage groove, the flow channel and the liquid storage component, which is conducive to guiding the liquid to flow to the liquid storage component in an orderly manner for centralized storage, thereby facilitating the subsequent cleaning to avoid the generation of odor, the attraction of pests and the like, and the adverse effects on the product experience.
[0071] In some technical solutions of the application, optionally, the liquid storage component includes a base connected to the collecting assembly, and a first water storage box detachably connected to the base and connected to the drainage channel.
[0072] In the technical scheme, the liquid storage component includes a base and a first water storage box, the base is connected with one side of the collecting assembly to realize structural connection and fixation of the two. The first water storage box is detachably connected with the base, and the detachable structure facilitates taking out of the first water storage box, so as to realize pouring of liquid and cleaning of the first water storage box. In addition, the first water storage box is communicated with the drainage channel, so that the liquid can enter the first water storage box through the drainage channel to realize centralized storage of the collected liquid, and then pouring is completed through the detachable mode, avoiding faults or peculiar smell caused by accumulation of liquid in the integrated cooker, and improving the user experience.
[0073] In some technical schemes of the present application, optionally, the base includes a first slot, the first slot faces away from the body, and the first water storage box is at least partially arranged in the first slot.
[0074] In the technical scheme, one end of the base facing away from the body is provided with an opening communicated with the external environment, the opening is the first slot, and the first water storage box can be pushed into the opening along the vertical direction, and at least a part of the first water storage box is arranged in the first slot to realize installation of the first water storage box and the base. Through the installation mode, the connection structure is more stable, the overall structural property is better, and in addition, the first water storage box is convenient to take out and pour out the stored liquid.
[0075] In some technical schemes of the present application, optionally, the periphery of the first water storage box includes a limiting groove, the sidewall of the base includes a through hole, and the liquid storage component further includes a limiting piece arranged in the through hole and partially located in the limiting groove.
[0076] In the technical scheme, the periphery of the first water storage box is provided with a limiting groove corresponding to the through hole arranged on the sidewall of the base. When the limiting piece is arranged in the through hole, a part of the limiting piece is located in the limiting groove on the other side of the through hole, so that the first water storage box is accommodated in the interior of the base.
[0077] Specifically, the limiting piece can be a screw rod, which passes through the housing (a through hole can also be arranged), the through hole of the base, and is located on the limiting groove of the first water storage box to limit the first water storage box at the corresponding position, so that the first water storage box is not separated from the base but accommodated in the first water storage box. The positioning mode of the first water storage box has simple structure, low cost and good positioning effect.
[0078] In some technical schemes of the present application, optionally, the smoke machine assembly is connected with the second water collecting component, and the second end of the flue is communicated with the smoke machine assembly, and the smoke machine assembly is used for extracting oil fume through the smoke inlet and the flue.
[0079] In the technical scheme, the smoke machine assembly is connected with the second water collecting component, and the second end of the flue is communicated with the smoke machine assembly, so that the smoke machine assembly extracts oil fume at the smoke inlet through the flue and the second water collecting component, thereby improving the oil fume extraction effect of the integrated cooker.
[0080] In some embodiments of the present application, the second water collecting component is located between the body and the range hood assembly; and the liquid storage component is located on the periphery of the range hood assembly.
[0081] In this embodiment, the second water collecting component is located between the body and the range hood assembly, so that the oil fume entering the smoke inlet of the body is sucked by the range hood assembly and discharged through the flue of the second water collecting component, and the liquid storage component is arranged on the periphery of the range hood assembly, thereby improving the compactness of the integrated stove and reducing the thickness of the integrated stove.
[0082] In some embodiments of the present application, the liquid storage component comprises a second water storage box, which is detachably connected with the range hood assembly, and the second water storage box is in communication with the drain passage.
[0083] In this embodiment, the liquid storage component can also be a second water storage box, which is connected with the range hood assembly and can be detached, so as to clean the liquid stored in the second water storage box. The second water storage box is in communication with the drain passage, so that the water in the drain passage flows into the second water storage box through the flow channel, thereby realizing the centralized storage of the collected liquid.
[0084] In some embodiments of the present application, the range hood assembly comprises a volute and a fan, and the fan is arranged in the volute; the volute comprises a second slot, the second slot faces away from the body, and the second water storage box is at least partially arranged in the second slot.
[0085] In this embodiment, the range hood assembly comprises a volute, which can be divided into an upper volute and a lower volute, and the range hood assembly further comprises a fan, which is arranged in the volute, specifically in the cavity formed by the upper volute and the lower volute, so as to avoid the influence of the external environment and ensure the stability of the operation.
[0086] The volute further comprises a second slot, which is specifically arranged in the interior of the upper volute, and the direction of the slot opening of the second slot is the direction away from the body. The second water storage box is at least partially inserted into the interior of the second slot from the direction away from the body to the body, thereby fixing the second water storage box.
[0087] In some embodiments of the present application, the volute further comprises a clamping slot, which is arranged in the second slot; and the second water storage box comprises a clamping buckle, which is in clamping engagement with the clamping slot.
[0088] In the technical scheme, the volute further comprises a clamping groove, the clamping groove is specifically arranged in the second insertion groove of the upper volute, the clamping groove is in communication with the outside, the clamping groove is a square opening, a buckle is arranged on the second water storage box, and the buckle and the clamping groove are connected in a clamping mode when the second water storage box is installed on the volute, so that the position of the water storage box is limited, and the second water storage box is prevented from falling off due to stress and causing liquid to pour.
[0089] In some technical solutions of the present application, optionally, the body comprises: a shell, the second water collecting component is at least partially located in the shell; a panel connected with the shell, and the smoke inlet is located on the panel.
[0090] In the technical scheme, the body comprises a shell and a panel, the panel is connected with the shell to form the integrated stove body. The smoke inlet is located on the panel, and the installation position of the smoke inlet on the panel can be flexibly set, thereby improving the appearance of the panel and the effect of sucking oil fume. The second water collecting component is at least partially located in the shell, and the shell protects the second water collecting component, effectively avoiding damage to the internal structure of the second water collecting component.
[0091] Additional aspects and advantages of the present application will become apparent from the following description with reference to specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0092] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0093] FIG. 1 shows a structural schematic diagram of an integrated stove according to one embodiment of the present application;
[0094] FIG. 2 shows a structural schematic diagram of a liquid storage component and a first magnetic member according to one embodiment of the present application;
[0095] FIG. 3 shows a structural schematic diagram of an integrated stove according to one embodiment of the present application;
[0096] FIG. 4 shows a structural schematic diagram of an integrated stove according to one embodiment of the present application;
[0097] FIG. 5 shows a structural schematic diagram of an integrated stove according to one embodiment of the present application;
[0098] FIG. 6 shows a structural schematic diagram of an integrated stove according to one embodiment of the present application;
[0099] FIG. 7 shows a structural schematic diagram of a first floating component and a second magnetic member according to one embodiment of the present application;
[0100] FIG. 8 shows a structural schematic diagram of an integrated stove according to one embodiment of the present application;
[0101] FIG. 9 shows one of the exploded views of the integrated cooker according to one embodiment of the present application;
[0102] FIG. 10 shows another of the exploded views of the integrated cooker according to one embodiment of the present application;
[0103] FIG. 11 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application;
[0104] FIG. 12 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application;
[0105] FIG. 13 is a sectional view of the integrated cooker in the A-A direction according to the embodiment shown in FIG. 12;
[0106] FIG. 14 is a sectional view of the integrated cooker in the B-B direction according to the embodiment shown in FIG. 12;
[0107] FIG. 15 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application;
[0108] FIG. 16 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application;
[0109] FIG. 17 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application;
[0110] FIG. 18 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application;
[0111] FIG. 19 shows a structural schematic diagram of the integrated cooker according to one embodiment of the present application.
[0112] Correspondence between reference signs and component names in FIGS. 1-19 is as follows: 100 integrated cooker, 110 body, 112 cooker assembly, 114 range hood assembly, 116 power supply assembly, 120 liquid storage component, 1202 installation groove, 130 detection assembly, 132 first sensor, 1322 first magnetic control switch, 1324 trigger switch, 134 first magnetic component, 136 second sensor, 1362 second magnetic control switch, 1364 signal transmitter, 1366 signal receiver, 137 first floating component, 138 second magnetic component, 139 second floating component, 140 prompt component; 1102 smoke inlet, 118 shell, 119 panel, 150 filter assembly, 160 collection assembly, 162 first water collection component, 1622 containing cavity, 1624 air inlet, 1626 air outlet, 1628 drain outlet, 164 second water collection component, 1642 flue, 1644 drain channel, 1646 drain groove, 1648 flow channel, 170 liquid storage assembly, 172 base, 1722 first slot, 1724 through hole, 174 first water storage box, 1742 limiting groove, 176 limiting component, 177 second water storage box, 1772 buckle, 181 volute, 1812 second slot, 1814 clamping groove, 1802 upper volute, 1804 fan, 1806 lower volute. DETAILED DESCRIPTION
[0113] In order to enable a more complete understanding of the above-mentioned objects, features and advantages of the present application, the present application will be described in further detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0114] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and therefore the scope of protection of the present application is not limited by the specific embodiments disclosed below.
[0115] The integrated cooker according to some embodiments of the present application will be described below with reference to FIGS. 1-19.
[0116] As shown in FIG. 1, one embodiment of the present application proposes an integrated cooker 100, which comprises a body 110, a liquid storage component 120 detachably connected with the body 110, the liquid storage component 120 being configured to collect and store liquid in the body 110, a detection assembly 130 arranged on the body 110, the detection assembly 130 being configured to detect state information of the liquid storage component 120, and a prompt component 140 arranged on the body 110 and connected with the detection assembly 130, the prompt component 140 being configured to send prompt information according to the state information.
[0117] In this embodiment, the integrated cooker 100 comprises a body 110 and a liquid storage component 120, the body 110 is embedded on the cooking bench, and the top of the body 110 forms the exposed surface of the integrated cooker 100, and the cooking utensils that need to be heated are placed above the body 110. Among them, the body 110 also has the function of sucking oil fume. When the cooking utensils heat the internal food, oil fume and water vapor will inevitably be generated. The body 110 can suck the oil fume and water vapor into the body 110 to realize the collection, treatment and directional discharge of the oil fume.
[0118] The liquid storage component 120 is arranged on the body 110, and the liquid storage component 120 and the body 110 are connected through a detachable structure. Specifically, the liquid storage component 120 can be clamped on the body 110 through buckles and clamping grooves. During work, the oil fume and water vapor sucked into the body 110 can be filtered and separated to form waste water. The liquid storage component 120 can collect and store the waste water in the body 110 to avoid the waste water spreading everywhere in the body 110. The user can detach the liquid storage component 120 to timely pour out the waste water stored in the liquid storage component 120, and can also clean the dirt in the liquid storage component 120 to avoid the generation of odor in the body 110.
[0119] Among them, the liquid storage component 120 is hidden below the body 110, and the user cannot observe the condition of the liquid storage component 120 below the body 110 during use. With the increase of working time, the amount of waste water in the liquid storage component 120 increases correspondingly. When the waste water in the liquid storage component 120 is full, if the liquid storage component 120 is not detached in time and the waste water in the liquid storage component 120 is not poured out, the waste water will overflow to other areas inside the body 110, causing the electrical structure inside the body 110 to be eroded by the waste water, resulting in short circuit, rust, blockage and other faults. At the same time, after detaching the liquid storage component 120, the user may miss the window or misplace the installation of the liquid storage component 120. At this time, if the integrated cooker 100 starts to work, the waste water will directly leak into the cooking bench, polluting the cooking bench and affecting the user experience.
[0120] To this end, the integrated cooker 100 defined in the present application further comprises a detection assembly 130 and a prompt component 140, the detection assembly 130 is arranged on the body 110, and the detection assembly 130 is configured to detect state information of the liquid storage component 120, wherein the state information at least includes position information of the liquid storage component 120 and / or water level information in the liquid storage component 120, the position information can reflect the current position of the liquid storage component 120 on the body 110, and can be used to determine whether the liquid storage component 120 is installed in place or whether there is a problem of misinstallation or missing installation. Correspondingly, the water level information can reflect the current water level height of the waste water in the liquid storage component 120, and can be used to determine whether the liquid storage component 120 is full. The prompt component 140 is installed on the body 110, and the prompt component 140 is connected with the detection assembly 130, and the prompt component 140 can send corresponding prompt information to the user based on the state information detected by the detection assembly 130. Specifically, when it is determined through the position information that the liquid storage component 120 is misinstalled or missing installation, prompt information for prompting the user to timely install the liquid storage component 120 or calibrate the installation position of the liquid storage component 120 is sent, and when it is determined through the water level information that the liquid storage component 120 is full, prompt information for prompting the user to timely pour out the waste water in the liquid storage component 120 is sent.
[0121] Therefore, by arranging the detection assembly 130 and the prompt component 140, the user can learn the current state of the liquid storage component 120 in time through the prompt information sent by the prompt component 140 when the user cannot observe the liquid storage component 120, and the failure of the liquid storage component 120 can be timely eliminated, thereby solving the technical problems of poor reliability and poor user experience of the integrated cooker 100 in the related art, and further achieving the technical effects of optimizing the structure of the integrated cooker 100, improving the practicality and reliability of the integrated cooker 100, reducing the failure rate of the integrated cooker 100, and improving the user experience.
[0122] As shown in FIGS. 3 and 4, in some embodiments of the present application, the body 110 has a predetermined installation position of the liquid storage component 120, and the detection assembly 130 comprises a first sensor 132 arranged on the body 110 and connected with the prompt component 140, the first sensor 132 is configured to detect whether the liquid storage component 120 is located at the predetermined installation position; wherein when the first sensor 132 detects that the liquid storage component 120 is not located at the predetermined installation position, the detection assembly 130 sends first prompt information.
[0123] In FIG. 3, arrow a shows the dismounting direction of the liquid storage component 120.
[0124] In FIG. 4, arrow b shows the dismounting direction of the liquid storage component 120.
[0125] In this embodiment, the liquid storage component 120 comprises a first sensor 132, which is arranged on the body 110 and connected with the detection assembly 130, and the state information detected by the first sensor 132 corresponds to the position information of the liquid storage component 120. Specifically, the first sensor 132 can be used to detect whether the liquid storage component 120 is in a predetermined installation position. When the liquid storage component 120 is in the predetermined installation position, the liquid storage component 120 can effectively collect the wastewater in the body 110, and the wastewater will not spread to the inside of the cooking bench and the inside of the body 110 before being full. When the liquid storage component 120 is not in the predetermined installation position, the liquid storage component 120 may be misassembled or missed, and at this time, the wastewater may directly leak into the cooking bench or spread to the electrical structure in the body 110, causing the problem of contamination of the inside of the cooking bench.
[0126] In this regard, the first sensor 132 sends a first signal to the prompting component 140 when it detects that the liquid storage component 120 is not in the predetermined installation position, and the prompting component 140 can send first prompt information according to the first signal. The user can learn from the first prompt information that the liquid storage component 120 may be misassembled or missed, and timely open the cooking bench and complete the position calibration or installation of the liquid storage component 120 to ensure that the liquid storage component 120 can effectively collect the wastewater in the body 110 and timely eliminate the misassembly or missing fault, thereby realizing the technical effects of improving the intelligent degree, improving the practicality and reliability, and reducing the failure rate of the integrated cooker 100.
[0127] Specifically, the prompting component 140 can send prompt information that the liquid storage component 120 is installed in place when it does not receive the first signal, so as to facilitate the user to real-time control the current state of the liquid storage component 120.
[0128] As shown in FIGS. 2 and 3, in some embodiments of the present application, the first sensor 132 comprises a first magnetic control switch 1322 arranged on the body 110 and connected with the prompting component 140, and the detection assembly 130 further comprises a first magnetic member 134 arranged on the liquid storage component 120. When the liquid storage component 120 is in the predetermined installation position, the first magnetic control switch 1322 is opened or conducted under the action of the magnetic field generated by the first magnetic member 134.
[0129] In this embodiment, the first sensor 132 comprises the first magnetic control switch 1322, and the detection assembly 130 further comprises the first magnetic member 134 used in cooperation with the first magnetic control switch 1322.
[0130] The first magnetic control switch 1322 is arranged on the body 110 and is electrically connected with the prompt component 140. The first magnetic component 134 is arranged on the liquid storage component 120, and the liquid storage component 120 can drive the first magnetic component 134 to move synchronously in the process of disassembly and assembly. The first magnetic control switch 1322 is in an open or closed state. When the liquid storage component 120 moves to the predetermined installation position, the magnetic field generated by the first magnetic component 134 arranged on the liquid storage component 120 can make the first magnetic control switch 1322 act, so that the first magnetic control switch 1322 is switched from the on state to the off state or from the off state to the on state. The prompt component 140 can determine whether the liquid storage component 120 is installed at the predetermined installation position through the state signal of the first magnetic control switch 1322.
[0131] Therefore, by arranging the first magnetic control switch 1322 and the first magnetic component 134, the current position of the liquid storage component 120 can be detected, and the prompt component 140 can timely troubleshoot the misinstallation fault and the missing fault of the liquid storage component 120, so as to facilitate the user to timely troubleshoot the fault and realize the technical effect of improving the practicability and reliability of the integrated cooker 100.
[0132] Specifically, the first magnetic component 134 is a permanent magnet, so as to ensure that a magnetic field triggering the first magnetic control switch 1322 can be generated near the first magnetic component 134.
[0133] As shown in FIG. 2, in some embodiments of the present application, the liquid storage component 120 optionally comprises a mounting groove 1202, and the first magnetic component 134 is arranged in the mounting groove 1202.
[0134] In this embodiment, the outer side of the liquid storage component 120 is provided with the mounting groove 1202, and the first magnetic component 134 is at least partially arranged in the mounting groove 1202. Specifically, when the liquid storage component 120 is at the predetermined installation position, the mounting groove 1202 faces the first magnetic control switch 1322, so as to shorten the distance between the first magnetic control switch 1322 and the first magnetic component 134, and ensure that the first magnetic component 134 on the liquid storage component 120 can trigger the first magnetic control switch 1322 to act when the liquid storage component 120 is at the predetermined installation position.
[0135] Meanwhile, the mounting groove 1202 can facilitate the mounting of the first magnetic component 134 and reduce the assembly difficulty and complexity of the first magnetic component 134.
[0136] Specifically, the first magnetic component 134 is in interference fit with the mounting groove 1202, and the first magnetic component 134 can be clamped in the mounting groove 1202.
[0137] Alternatively, the first magnetic component 134 is connected with the mounting groove 1202 through an adhesive, and the first magnetic component 134 is adhered to the inner side of the mounting groove 1202.
[0138] As shown in FIG. 4, in some embodiments of the present application, the first sensor 132 optionally further comprises a trigger switch 1324 arranged on the body 110 and connected with the prompting component 140; wherein when the liquid storage component 120 is located at the predetermined installation position, the liquid storage component 120 contacts the trigger switch 1324, and the trigger switch 1324 is triggered by the liquid storage component 120.
[0139] In this embodiment, the first sensor 132 comprises the trigger switch 1324 arranged on the body 110 and electrically connected with the prompting component 140.
[0140] Wherein the trigger switch 1324 is in an open or closed state, when the liquid storage component 120 moves to the predetermined installation position, the liquid storage component 120 can contact the contact point on the trigger switch 1324, so that the trigger switch 1324 is switched from the on state to the off state, or from the off state to the on state, and the prompting component 140 can determine whether the liquid storage component 120 is installed at the predetermined installation position through the state signal of the trigger switch 1324.
[0141] Therefore, by arranging the trigger switch 1324, the current position of the liquid storage component 120 can be detected, and the prompt component 140 can timely troubleshoot the misinstallation fault and the missing fault of the liquid storage component 120, so as to facilitate the user to timely troubleshoot the fault and realize the technical effects of improving the practicability and reliability of the integrated cooker 100.
[0142] As shown in FIG. 5, FIG. 6 and FIG. 8, in some embodiments of the present application, the detection assembly 130 optionally further comprises a second sensor 136 arranged on the body 110 and connected with the prompting component 140, and the second sensor 136 is used to detect whether the liquid level in the liquid storage component 120 reaches a first height; wherein when the second sensor 136 detects that the liquid level in the liquid storage component 120 reaches the first height, the detection assembly 130 sends a second prompt information.
[0143] In this embodiment, the liquid storage component 120 comprises a second sensor 136, which is arranged on the body 110 and connected with the detection assembly 130, and the state information detected by the second sensor 136 corresponds to the liquid level information in the liquid storage component 120. Specifically, the second sensor 136 can be used to detect whether the liquid level in the liquid storage component 120 reaches a first height. When the liquid level in the liquid storage component 120 does not reach the first height, it indicates that the liquid storage component 120 is not full, and the liquid storage component 120 can continue to collect wastewater. When the liquid level in the liquid storage component 120 reaches the first height, it indicates that the liquid storage component 120 is in a full state. If the wastewater in the liquid storage component 120 is not poured in time, the continuously rising wastewater will spread to the inside of the body 110, causing the electrical structure in the body 110 to be eroded by the wastewater, and inducing electrical failure of the integrated cooker 100.
[0144] To this end, when the second sensor 136 detects that the liquid level in the liquid storage component 120 reaches the first height, the second sensor 136 sends a second signal to the prompting component 140. The prompting component 140 can send second prompt information according to the second signal. The user can learn from the second prompt information that the liquid storage component 120 is full, and timely open the cooktop and complete the disassembly action of the liquid storage component 120 and the wastewater pouring operation. After completing the pouring operation, the liquid storage component 120 can be reinstalled to the predetermined installation position to continue to be used, which ensures that the liquid storage component 120 can effectively collect the wastewater in the body 110, timely eliminate the full failure, and further realize the technical effects of improving the intelligent degree, improving the practicability and reliability, and reducing the failure rate of the integrated cooker 100.
[0145] Specifically, the prompting component 140 can also directly display the current water level height of the liquid storage component 120 when it does not receive the second signal, so as to facilitate the user to actually control the wastewater loading state of the liquid storage component 120.
[0146] As shown in FIGS. 5, 6 and 7, in some embodiments of the present application, the second sensor 136 comprises a second magnetic control switch 1362 arranged on the body 110 and connected with the prompting component 140. The detection assembly 130 further comprises a first floating component 137 arranged in the liquid storage component 120, which can rise and fall with the liquid level in the liquid storage component 120. The detection assembly 130 further comprises a second magnetic element 138 arranged on the first floating component 137. When the liquid level in the liquid storage component 120 reaches the first height, the second magnetic control switch 1362 is opened or conducted under the action of the magnetic field generated by the second magnetic element 138.
[0147] In this embodiment, the second sensor 136 comprises the second magnetic control switch 1362, and the detection assembly 130 further comprises the second magnetic element 138 and the first floating component 137 used in cooperation with the second magnetic control switch 1362.
[0148] The second magnetic control switch 1362 is arranged on the body 110, and the second magnetic control switch 1362 is electrically connected with the prompt component 140. The first floating component 137 is arranged inside the liquid storage component 120. The second magnetic component 138 is connected with the first floating component 137. Specifically, the bottom of the first floating component 137 is a float. The second magnetic component 138 is fixed on the top of the first floating component 137. When the water level in the liquid storage component 120 rises, the first floating component 137 drives the second magnetic component 138 to rise synchronously.
[0149] The second magnetic control switch 1362 is arranged on the body 110, and the second magnetic control switch 1362 is electrically connected with the prompt component 140. The first floating component 137 is arranged inside the liquid storage component 120. The second magnetic component 138 is connected with the first floating component 137. Specifically, the bottom of the first floating component 137 is a float. The second magnetic component 138 is fixed on the top of the first floating component 137. When the water level in the liquid storage component 120 rises, the first floating component 137 drives the second magnetic component 138 to rise synchronously.
[0150] Therefore, by arranging the second magnetic control switch 1362, the first floating component 137 and the second magnetic component 138, the current water level in the liquid storage component 120 can be detected, and the prompt component 140 can be used to timely troubleshoot the full load failure of the liquid storage component 120, so that the user can timely troubleshoot the failure, and the technical effects of improving the practicability and reliability of the integrated cooker 100 are achieved.
[0151] As shown in FIG. 8, in some embodiments of the present application, the second sensor 136 can alternatively include: a signal transmitter 1364 arranged on the body 110; and a signal receiver 1366 arranged on the body 110. The signal receiver 1366 is arranged opposite to the signal transmitter 1364 and is connected with the prompt component 140. The detection assembly 130 further includes: a second floating component 139 arranged inside the liquid storage component 120. The second floating component 139 can rise and fall with the liquid level in the liquid storage component 120. When the liquid level in the liquid storage component 120 reaches a first height, the second floating component 139 is located between the signal transmitter 1364 and the signal receiver 1366, and the second floating component 139 blocks the signal transmission between the signal transmitter 1364 and the signal receiver 1366.
[0152] In this embodiment, the second sensor 136 includes the signal transmitter 1364 and the signal receiver 1366. The detection assembly 130 further includes the second floating component 139 used in cooperation with the signal transmitter 1364 and the signal receiver 1366.
[0153] The signal transmitter 1364 and the signal receiver 1366 are arranged on the body 110, the signal transmitter 1364 is arranged opposite to the signal receiver 1366, and the signal transmitter 1364 and the signal receiver 1366 are spaced apart to form a signal passage in the spacing area, and the signal receiver 1366 is electrically connected with the prompting component 140. The second floating component 139 is arranged inside the liquid storage component 120, and specifically, the bottom of the second floating component 139 is a float, and the size of the top of the second floating component 139 is smaller than the size of the spacing between the signal transmitter 1364 and the signal receiver 1366, that is, the second floating component 139 can be inserted between the signal transmitter 1364 and the signal receiver 1366. When the water level in the liquid storage component 120 rises, the second floating component 139 rises synchronously.
[0154] The signal transmitter 1364 continuously transmits signals to the signal receiver 1366, the signals include infrared signals and other light signals, and when the signal passage between the signal transmitter 1364 and the signal receiver 1366 is not blocked, the signal receiver 1366 can continuously receive signals.
[0155] When the water level in the liquid storage component 120 rises to the first height, the top end of the second floating component 139 is inserted between the signal transmitter 1364 and the signal receiver 1366, and the second floating component 139 blocks the signal passage between the signal transmitter 1364 and the signal receiver 1366, at this time, the signal receiver 1366 cannot receive signals, and the corresponding prompting component 140 can determine that the water level in the liquid storage component 120 has risen to the first height through the state change of the signal receiver 1366.
[0156] Therefore, by arranging the signal transmitter 1364, the signal receiver 1366 and the second floating component 139, the current water level in the liquid storage component 120 can be detected, and the prompting component 140 can timely troubleshoot the full load failure of the liquid storage component 120, which facilitates the user to timely troubleshoot the failure and realizes the technical effects of improving the practicability and reliability of the integrated cooker 100.
[0157] As shown in FIG. 1, in some embodiments of the present application, optionally, the body 110 includes: a stove assembly 112 including a smoke inlet, the prompting component 140 is arranged on the stove assembly 112; a smoke machine assembly 114 connected with the stove assembly 112, the smoke machine assembly 114 is used for sucking oil smoke through the smoke inlet, the liquid storage component 120 and the detection assembly 130 are arranged on the smoke machine assembly 114; and a power supply assembly 116 arranged on the stove assembly 112, the power supply assembly 116 is connected with the prompting component 140 and the detection assembly 130.
[0158] In this embodiment, the body 110 includes the stove assembly 112, the smoke machine assembly 114 and the power supply assembly 116.
[0159] The cooktop assembly 112 is embedded in the mounting hole of the cooktop, the top of the cooktop assembly 112 includes a panel, and the bottom includes a shell, and a heating assembly capable of forming a heating area on the panel is installed in the shell. The panel is provided with an oil fume inlet hole through which oil fume enters the integrated stove 100. The prompting component 140 can be installed below the panel, and at this time, a light transmission area is provided in cooperation with the prompting component 140, so that the user can observe the prompt information issued by the prompting component 140 through the panel.
[0160] The range hood assembly 114 is hung below the cooktop assembly 112, and the range hood assembly 114 can provide power for sucking oil fume. During operation, the range hood assembly 114 can suck oil fume into the integrated stove 100 through the oil fume inlet hole, and after treatment by the oil separation assembly and the filter assembly, relatively clean oil fume is discharged to a designated area.
[0161] The power supply assembly 116 is also hung below the cooktop assembly 112, and the power supply circuit in the power supply assembly 116 is connected with the detection assembly 130 and the prompting component 140. The power supply assembly 116 can provide power for the detection assembly 130 and the prompting component 140. Similarly, the power supply assembly 116 is also connected with the range hood assembly 114, thereby providing continuous working power for the range hood assembly 114.
[0162] In some embodiments of the present application, the prompting component 140 includes one or a combination of the following: a display, a loudspeaker, and a light emitting piece.
[0163] In this embodiment, the prompting component 140 includes at least one or a combination of the following: a display, a loudspeaker, and a light emitting piece.
[0164] When the prompting component 140 includes a display, the display can display corresponding prompt information through text and symbols, and the user can understand whether the liquid storage component 120 has the problems of wrong installation, missing installation, full load, etc. by observing the display.
[0165] When the prompting component 140 includes a loudspeaker, the loudspeaker can issue corresponding prompt information through sound, and the user can understand that the liquid storage component 120 may have the problems of wrong installation, missing installation, full load, etc. by hearing the prompt sound issued by the loudspeaker.
[0166] When the prompting component 140 includes a light emitting piece, the light emitting piece can issue corresponding prompt information through light, and the user can understand whether the liquid storage component 120 has the problems of wrong installation, missing installation, full load, etc. by observing the light emitted by the light emitting piece.
[0167] As shown in FIGS. 9 and 10, in some embodiments of the present application, a through hole 1724 is optionally formed on a local region of the body 110, the through hole 1724 is an oil fume inlet for absorbing oil fume, and a grid is arranged on the oil fume inlet to prevent foreign matters from entering the oil fume inlet and causing blockage. The filter assembly 150 is arranged opposite to the oil fume inlet, specifically, the filter assembly 150 is arranged below the oil fume inlet, and the filter assembly 150 is used for filtering the oil fume entering the oil fume inlet, thus the filter assembly 150 has the functions of reducing grease and reducing odor in the oil fume.
[0168] On this basis, the body includes the oil fume inlet 1102, the integrated stove 100 further includes a collection assembly 160 and a liquid storage assembly 170, the collection assembly 160 is connected with the filter assembly 150, and the collection assembly 160 is arranged at a position opposite and below the filter assembly, thus the filter assembly 150 is located between the collection assembly 160 and the oil fume inlet 1102, and the filter assembly is generally a metal mesh, and the cooking oil fume is sucked and then hits on the metal mesh at a certain speed, continuously gathers and then slides and drops on the metal mesh into the collection assembly 160.
[0169] The collection assembly 160 is used for collecting the liquid such as grease and water filtered from the filter assembly 150. The liquid storage assembly 170 is connected with the collection assembly 160, and the liquid storage assembly 170 is used for storing the liquid collected by the collection assembly 160, so that the collected liquid is convenient for centralized processing, and the liquid collected by the collection assembly 160 is stored in a centralized manner to avoid faults or odors caused by accumulation of the liquid in the integrated stove 100.
[0170] In the related art, there is an opening on the upper surface of the integrated stove, but in the use process, the liquid may flow in, if these liquids are not properly handled, dangerous situations such as product short circuit failure, fire, and machine explosion may occur, and the liquids may also accumulate in the product, produce an unfriendly gas, and affect the experience.
[0171] Therefore, by arranging the collection assembly 160 and the liquid storage assembly 170, when the liquid (oil and water) overflowed in the cooking process enters the product through the oil fume inlet 1102, the internal electrical devices of the integrated stove 100 are effectively protected from dangerous situations such as short circuit failure, fire, and machine explosion.
[0172] Of course, if the stove panel 119 is wiped, the water enters the oil fume inlet 1102, and also partially enters the collection assembly 160 and the liquid storage assembly 170, so that the collection and storage of the sewage are realized, and the subsequent centralized processing of the user is facilitated.
[0173] In addition, the liquid storage assembly is detachably mounted on the integrated stove 100, so that the liquid storage assembly can be taken out, the liquid in the liquid storage assembly is poured out, and the liquid is prevented from producing odor, attracting pests, etc.
[0174] As shown in FIGS. 10, 11 and 13, in some embodiments of the present application, the collecting assembly 160 optionally comprises: a first water collecting component 162 comprising a containing cavity 1622, the filtering assembly 150 is arranged in the containing cavity 1622; a second water collecting component 164 connecting the body 110 and the liquid storage assembly 170, the second water collecting component 164 comprises a flue 1642, the first water collecting component 162 is arranged in the flue 1642, a first end of the flue 1642 is communicated with the smoke inlet 1102, the second water collecting component 164 further comprises a drainage channel 1644, the drainage channel 1644 is communicated with the containing cavity 1622 and the liquid storage assembly 170.
[0175] In this embodiment, the collecting assembly 160 comprises the first water collecting component 162 and the second water collecting component 164, the first water collecting component 162 comprises the containing cavity 1622, the filtering assembly 150 is arranged in the containing cavity 1622, the cooking oil fume is sucked and then hits the filtering assembly 150 at a certain speed, so that the liquid in the oil fume is continuously gathered on the surface of the filtering assembly 150, and then slides and drops into the first water collecting component 162 along with the filtering assembly 150.
[0176] The second water collecting component 164 connects the body 110 and the liquid storage assembly 170, the second water collecting component 164 comprises the flue 1642 and the drainage channel, the first water collecting component 162 is arranged in the flue 1642, the oil fume enters the first water collecting component 162 through the smoke inlet 1102 connected with the first end of the flue 1642 and is discharged along the direction of the other end of the flue 1642, the drainage channel 1644 is communicated with the containing cavity 1622 and the liquid storage assembly 170, through this kind of arrangement, it is helpful to guide the liquid into the liquid storage assembly 170, that is, the liquid filtered by the filtering assembly 150 passes through the drainage channel 1644 and is guided into the liquid storage assembly 170, so as to realize the centralized storage of the liquid collected by the collecting assembly 160, so as to avoid the failure or peculiar smell caused by the accumulation of liquid in the integrated cooker 100.
[0177] As shown in FIGS. 10, 11 and 13, in some embodiments of the present application, the top of the first water collecting component 162 comprises an air inlet 1624, the air inlet 1624 is opposite to the smoke inlet 1102; the circumferential side of the first water collecting component 162 comprises an air outlet 1626; the circumferential side and / or the bottom of the first water collecting component 162 comprises a drainage port 1628, the drainage port 1628 is communicated with the drainage channel 1644.
[0178] In this embodiment, the top of the first water collecting component 162 is provided with an air inlet 1624, which is arranged opposite to the smoke inlet 1102, so that the oil fume entering the smoke inlet 1102 can fully enter the air inlet 1624, so as to be fully filtered when flowing through the filter assembly 150. The side of the first water collecting component 162 is also provided with an air outlet 1626, and the oil fume flowing through the first water collecting component 162 flows to the air outlet 1626 through the flue 1642, and then is discharged to the external environment. The drain 1628 is arranged on the side or bottom of the first water collecting component 162, and when the liquid at the first water collecting component 162 further increases, it will flow into the second water collecting component 164 through the drain 1628. In addition, the drain 1628 is connected to the drain channel 1644, so that the liquid filtered by flowing through the filter assembly 150 flows through the drain channel 1644 to the drain 1628, and then to the liquid storage assembly, so as to realize the centralized storage of the liquid, facilitate subsequent cleaning, and avoid the generation of odor, attraction of pests and the like, and adversely affect the product experience.
[0179] As shown in FIGS. 13, 14 and 15, in some embodiments of the present application, optionally, the drain channel 1644 includes a drain groove 1646 in communication with the flue 1642, and the drain groove 1646 is located below the first water collecting component 162; and a flow channel 1648 in communication with the drain groove 1646 and the liquid storage assembly 170.
[0180] In this embodiment, the drain channel 1644 includes the drain groove 1646 and the flow channel 1648, the drain groove 1646 is in communication with the flue 1642 and is located below the first water collecting component 162, and the flow channel 1648 is in communication with the drain groove 1646 and the liquid storage assembly 170, forming a flow path of the drain groove 1646, the flow channel 1648 and the liquid storage assembly, which is conducive to guiding the liquid to flow to the liquid storage assembly in an orderly manner for centralized storage, facilitating subsequent cleaning, avoiding the generation of odor, attraction of pests and the like, and adversely affecting the product experience.
[0181] In addition, the drain 1628 flows into the drain groove 1646 of the second water collecting component 164, and then flows to the flow channel 1648 and the liquid storage assembly for centralized storage.
[0182] As shown in FIG. 13, arrow c shows the trajectory of the liquid flowing from the drain groove 1646 and the flow channel 1648 to the inside of the first water storage box.
[0183] In another possible design, the flow channel 1648 is arranged on the liquid storage assembly, such as the first water storage box 174, that is, the first water storage box 174 is connected with the drain groove 1646 through the flow channel 1648, so as to simplify the structure of the first water collecting component 162.
[0184] As shown in FIG. 10 and FIG. 13, in some embodiments of the present application, the liquid storage assembly 170 optionally comprises a base 172 connected with the collection assembly 160, and a first water storage box 174 detachably connected with the base 172, the first water storage box 174 being in communication with the drainage channel 1644.
[0185] In this embodiment, the liquid storage assembly 170 comprises the base 172 and the first water storage box 174, the base 172 being connected with one side of the collection assembly 160 to realize structural connection and fixation of the two. The first water storage box 174 is detachably connected with the base 172, and the detachable structure facilitates the removal of the first water storage box 174, thereby realizing liquid pouring and cleaning of the first water storage box 174. In addition, the first water storage box 174 is in communication with the drainage channel 1644, so that the liquid can enter the first water storage box 174 through the drainage channel 1644 to realize centralized storage of the collected liquid, and then the pouring is completed by the way of disassembly, avoiding the accumulation of liquid in the integrated cooker to cause failure or odor, and improving the user experience.
[0186] It should be noted that the liquid storage assembly 170 can be arranged at the front end of the integrated cooker 100, i.e. close to the user side, so as to facilitate the user to disassemble it and then pour out the liquid therein.
[0187] As shown in FIG. 14, in some embodiments of the present application, the base 172 optionally comprises a first slot 1722, the first slot 1722 being away from the body 110, and the first water storage box 174 being arranged at least partially in the first slot 1722.
[0188] In this embodiment, the end of the base 172 away from the body 110 is provided with an opening in communication with the external environment, which is the first slot 1722, and the first water storage box 174 can be pushed into the opening in the vertical direction, and at least a part of the first water storage box 174 is arranged in the first slot 1722 to realize the installation of the first water storage box 174 and the base 172. Through this installation mode, the connection structure is more stable, and the overall structural property is better, and in addition, it is also convenient to take out the first water storage box 174 and pour out the stored liquid therein.
[0189] As shown in FIG. 14, in some embodiments of the present application, the circumferential side of the first water storage box 174 comprises a limiting groove 1742, the side wall of the base 172 comprises a through hole 1724, and the liquid storage assembly 170 further comprises a limiting piece 176 arranged through the through hole 1724 and partially located in the limiting groove 1742.
[0190] In this embodiment, the first water storage box 174 is provided with a limiting groove 1742 on the side, and the limiting groove 1742 corresponds to the through hole 1724 provided on the side wall of the base 172. When the limiting member 176 is inserted into the through hole 1724, a part of the limiting member 176 is located in the through hole 1724 and extends into the limiting groove 1742, so that the first water storage box 174 is accommodated in the interior of the base 172.
[0191] Specifically, the limiting member 176 can be a screw rod, which passes through the shell 118 (a similar through hole structure can also be provided), the through hole 1724 of the base 172, and is located on the limiting groove 1742 of the first water storage box 174, thereby limiting the first water storage box 174 in the corresponding position, so that the first water storage box 174 will not be separated from the base 172, but will be accommodated in the base 172. The positioning mode of this kind of first water storage box is simple in structure, low in cost, and good in positioning effect.
[0192] Alternatively, the base 172 and the first water storage box 174 are connected and fixed by the cantilever lapping and screwing method.
[0193] As shown in FIGS. 11, 12 and 13, in some embodiments of the present application, the range hood assembly 114 is connected with the second water collecting member 164, and the second end of the flue 1642 communicates with the range hood assembly 114, and the range hood assembly 114 is used to extract the oil fume at the smoke inlet 1102 through the smoke inlet 1102 and the flue 1642.
[0194] In this embodiment, the range hood assembly 114 is connected with the second water collecting member 164, and the second end of the flue 1642 communicates with the range hood assembly 114, so that the range hood assembly 114 extracts the oil fume at the smoke inlet 1102 through the flue 1642 and the second water collecting member 164, thereby improving the oil fume extraction effect of the integrated stove.
[0195] The range hood assembly 114 includes a working cavity, an upper volute 1802 and a lower volute 1806, and a fan 1804. The fan 1804 is located below the working cavity and between the upper volute 1802 and the lower volute 1806. The fan 1804 includes a wind wheel and a driving device. The wind wheel is located at the center of the upper volute. When the driving device is powered to operate, the wind wheel extracts the oil fume in the working cavity. The working cavity has a flue 1642, and the flue 1642 partially exists in the body 110. The flue 1642 communicates with the working cavity of the range hood assembly. The working cavity has at least one opening, and the opening communicates with the external environment of the working cavity. After the oil fume passes through the flue, it is filtered by the filter assembly, and then enters the working cavity. Under the action of the fan 1804, the oil fume leaves the working cavity and is discharged to the external environment through the air outlet 1626.
[0196] In addition, the range hood assembly 114 is also fixedly connected with the liquid storage assembly, so that the overall structure is more compact.
[0197] As shown in FIG. 10 and FIG. 13, in some embodiments of the present application, optionally, the second water collecting component 164 is located between the body 110 and the range hood assembly 114; the liquid storage assembly 170 is located on the periphery of the range hood assembly 114.
[0198] In this embodiment, the second water collecting component 164 is located between the body 110 and the range hood assembly 114, so that the oil fume entering the smoke inlet 1102 passes through the flue 1642 of the second water collecting component 164 based on the suction of the range hood assembly 114, achieving the discharge of the oil fume, and the liquid storage assembly 170 is arranged on the periphery of the range hood assembly 114, thereby improving the compactness of the integrated stove structure and reducing the thickness of the integrated stove.
[0199] As shown in FIG. 9 and FIG. 19, in some embodiments of the present application, optionally, the body 110 includes: a housing 118, the second water collecting component 164 is at least partially located in the housing 118; a panel 119 connected with the housing 118, the smoke inlet 1102 is located on the panel 119.
[0200] In this embodiment, the body 110 includes the housing 118 and the panel 119, and the panel 119 is connected with the housing 118 to form the body 110 of the integrated stove. The smoke inlet 1102 is located on the panel 119, and the installation position of the smoke inlet 1102 on the panel 119 can be flexibly set, thereby improving the aesthetic appearance of the panel and also improving the effect of sucking oil fume. The second water collecting component 164 is at least partially located in the housing 118, and the housing 118 protects the second water collecting component 164, effectively avoiding damage to the internal structure of the second water collecting component 164.
[0201] As shown in FIG. 16 and FIG. 17, in some embodiments of the present application, optionally, the liquid storage assembly includes: a second water storage box 177, detachably connected with the range hood assembly 114, and the second water storage box 177 is in communication with the drainage passage.
[0202] In this embodiment, the liquid storage assembly includes the second water storage box 177, and the second water storage box is different from the first water storage box in installation manner. The second water storage box 177 is connected with the range hood assembly 114 and can be detached from the range hood assembly, so as to realize cleaning of the liquid stored in the second water storage box 177. The second water storage box 177 is in communication with the drainage passage, and the water in the drainage passage flows into the second water storage box 177 through the flow channel, achieving centralized storage of the collected liquid.
[0203] As shown in FIG. 14 and FIG. 17, in some embodiments of the present application, optionally, the range hood assembly 114 includes a volute 181 and a fan 1804, and the fan 1804 is arranged in the volute 181; the volute 181 includes a second slot 1812, the second slot 1812 faces away from the body, and the second water storage box 177 is at least partially arranged in the second slot 1812.
[0204] In this embodiment, the smoke machine assembly 114 comprises a volute 181, which can be divided into an upper volute 1802 and a lower volute 1806, and a fan 1804 arranged in the volute 181, specifically in the cavity formed by the upper volute 1802 and the lower volute 1806, so that the fan 1804 is not affected by the outside world and the stability of operation is ensured.
[0205] The volute 181 further comprises a second slot 1812, which is specifically arranged inside the upper volute 1802 and has a direction away from the body. The second water storage box 177 can be at least partially wrapped by the second slot, and when the second water storage box is inserted into the second slot 1812 from the direction away from the body to the direction of the body, the second water storage box 177 is fixed.
[0206] As shown in FIGS. 17 and 18, in some embodiments of the present application, the volute 181 further comprises a clamping slot 1814 arranged in the second slot 1812; and the second water storage box 177 comprises a clamping buckle 1772 clamped with the clamping slot 1814.
[0207] In this embodiment, the volute 181 further comprises a clamping slot 1814 arranged in the second slot 1812 of the upper volute 1802, which is in communication with the outside world. The clamping slot 1814 is specifically a square opening, and the second water storage box 177 is provided with a clamping buckle 1772. When the second water storage box 177 is installed with the volute 181, the clamping buckle 1772 and the clamping slot 1814 are connected by clamping to limit the position of the water storage box, so as to avoid the second water storage box 177 from falling off and causing liquid to pour out when the second water storage box 177 is stressed.
[0208] In FIG. 18, arrow d shows the trajectory of the liquid flowing from the filter assembly 150 to the first water collecting component 162 and the second water collecting component 164, and arrow e shows the trajectory of the liquid flowing from the flow channel 1648 to the inside of the second water storage box 177.
[0209] In a specific embodiment, when the integrated cooker 100 starts to work after the oil fume suction function is turned on, the smoke machine assembly 114 starts to work to form a negative pressure for sucking oil fume. The negative pressure can quickly suck the air around the oil fume inlet 1102 on the panel 119, and the oil fume in the air enters the containing cavity 1622. When passing through the filter assembly 150, the oil in the oil fume is adsorbed on the filter assembly 150, and the water vapor is separated out. The water vapor is collected by the collection assembly 160, and the smoke is discharged to the outside environment through the flue 1642 and the air outlet 1626. At this time, the water collected by the collection assembly 160 passes through the drain port 1628 of the first water collecting part 162 into the drain channel 1644 of the second water collecting part 164, that is, first passes through the drain groove 1646, then flows through the flow channel 1648, and finally enters the liquid storage assembly 170 connected thereto, so as to complete the separation of the smoke, oil and water in the sucked oil fume, and automatically clean and discharge one by one.
[0210] In addition, it is worth noting that in order to facilitate the user to clean the accumulated water in the liquid storage assembly 170 in time, the liquid storage assembly 170 is provided as two parts of the base 172 and the first water storage box 174. The first water storage box 174 can be pushed into the inside of the base 172 in the vertical direction, that is, at least a part of the first water storage box 174 is arranged in the first slot 1722 to realize the installation of the first water storage box 174 and the base 172. Finally, the limiting part 176, that is, the screw rod, is inserted into the first slot 1722 of the first water storage box 174. After the screw rod passes through the respective through holes 1724 of the outer shell and the first water storage box 174, the first water storage box 174 will not fall out and will be accommodated in the base 172. Before the user removes the screw rod, the user only needs to hold the first water storage box 174 with one hand and then extract the screw rod from the through hole 1724 to take out the first water storage box 174 and pour out the stored liquid. The installation process is also the same. The structure is simple, the disassembly is convenient, and the user is therefore willing to clean the first water storage box 174 frequently. Through the above design, the first water storage box 174 is more convenient and quick to take out, and can also avoid the problems of odor and attracting pests, thereby improving the user experience of the product.
[0211] It should be noted that, in the claims, the specification and the drawings of the application, the terms "multiple" refers to two or more, unless otherwise specifically defined, the terms "upper", "lower" and the like indicate the orientation or position relationship based on the orientation or position relationship shown in the drawings, only for more convenient description of the application and make the description process more simple, and not for indicating or implying that the device or element must have the described specific orientation, constructed and operated in a particular orientation, therefore these descriptions can not be understood as a limitation of the application; the terms "connection", "installation", "fixed" and the like should be understood broadly, for example, "connection" can be fixed connection between multiple objects, can also be detachable connection between multiple objects, or integrally connected; can be direct connection between multiple objects, can also be indirect connection between multiple objects through intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances of the above data.
[0212] In the claims, the specification and the drawings of the application, the description of the terms "one embodiment", "some embodiments", "a specific embodiment" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the application. In the claims, the specification and the drawings of the application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0213] The above is only the preferred embodiment of the application, and is not used to limit the application. For those skilled in the art, the application can have various modifications and changes. Any modification, equivalent replacement, improvement and the like within the spirit and principle of the application shall be included in the protection scope of the application.
Claims
1. An integrated cooktop, wherein, The integrated cooker comprises a body, a liquid storage component detachably connected to the body, the liquid storage component being used for collecting and storing liquid in the body, a detection assembly arranged in the body and used for detecting state information of the liquid storage component, and a prompt component arranged in the body and connected to the detection assembly, the prompt component being used for issuing prompt information according to the state information. The body has a predetermined mounting position of the liquid storage component, and the detection assembly comprises a first sensor arranged in the body and connected to the prompt component, the first sensor being used for detecting whether the liquid storage component is located at the predetermined mounting position. When the first sensor detects that the liquid storage component is not located at the predetermined mounting position, the detection assembly issues first prompt information. The first sensor comprises a first magnetic control switch arranged in the body and connected to the prompt component. The detection assembly further comprises a first magnetic member arranged in the liquid storage component.
2. The integrated cooktop of claim 1, wherein, When the liquid storage component is located at the predetermined mounting position, the first magnetic control switch is turned off or turned on under the action of a magnetic field generated by the first magnetic member.
4. The integrated cooker according to claim 3, wherein the liquid storage component comprises a mounting groove, and the first magnetic member is arranged in the mounting groove. The first sensor further comprises a trigger switch arranged in the body and connected to the prompt component.
3. The integrated cooktop of claim 2, wherein, When the liquid storage component is located at the predetermined mounting position, the liquid storage component contacts the trigger switch, and the trigger switch is triggered by the liquid storage component. The detection assembly further comprises a second sensor arranged in the body and connected to the prompt component, the second sensor being used for detecting whether a liquid level in the liquid storage component reaches a first height. When the second sensor detects that the liquid level in the liquid storage component reaches the first height, the detection assembly issues second prompt information. The second sensor comprises a second magnetic control switch arranged in the body and connected to the prompt component. The detection assembly further comprises a first floating component arranged in the liquid storage component, the first floating component being capable of rising and falling along with the liquid level in the liquid storage component, and a second magnetic member arranged in the first floating component. When the liquid level in the liquid storage component reaches the first height, the second magnetic control switch is turned off or turned on under the action of a magnetic field generated by the second magnetic member. The second sensor further comprises a signal transmitter arranged in the body, and a signal receiver arranged in the body and arranged opposite to the signal transmitter, the signal receiver being connected to the prompt component. 5.The integrated cooker according to claim 2, wherein, The detection assembly further comprises a second floating component arranged in the liquid storage component, the second floating component being capable of rising and falling along with the liquid level in the liquid storage component. When the liquid level in the liquid storage component reaches the first height, the second floating component is located between the signal transmitter and the signal receiver, and the second floating component blocks signal transmission between the signal transmitter and the signal receiver. The body comprises 6.The integrated cooker according to claim 1, wherein, 7. The integrated cooktop of claim 6, wherein, 8. The integrated cooktop of claim 6, wherein, 9. The integrated cooktop of any one of claims 1 to 8, wherein, The stove assembly comprises a smoke inlet, and the prompting component is arranged on the stove assembly; The range hood assembly is connected with the stove assembly, and the range hood assembly is used for sucking the oil fume through the smoke inlet, and the liquid storage component and the detection component are arranged on the range hood assembly; The power supply assembly is arranged on the stove assembly, and the power supply assembly is connected with the prompting component and the detection component.
10. The integrated stove according to any one of claims 1 to 8, wherein The prompting component comprises one or a combination of the following: a display, a loudspeaker, and a light-emitting element. 11.The integrated cooker according to claim 9, wherein, The body comprises a smoke inlet, and the integrated stove further comprises: The filter assembly is arranged opposite to the smoke inlet, and the filter assembly is used for filtering the oil fume flowing into the smoke inlet; The collection assembly is connected with the filter assembly, and the filter assembly is located between the collection assembly and the smoke inlet, and the collection assembly is used for collecting the liquid on the filter assembly; The liquid storage component is connected with the collection assembly, and the liquid storage component is used for storing the liquid collected by the collection assembly.
12. The integrated cooktop of claim 11, wherein, The collection assembly comprises: The first water collecting component comprises a containing cavity, and the filter assembly is arranged in the containing cavity; The second water collecting component is connected with the body and the liquid storage component, and the second water collecting component comprises a flue, the first water collecting component is arranged in the flue, a first end of the flue is communicated with the smoke inlet, and the second water collecting component further comprises a drainage channel, the drainage channel is communicated with the containing cavity and the liquid storage component.
13. The integrated stove according to claim 12, wherein A top of the first water collecting component comprises an air inlet, and the air inlet is opposite to the smoke inlet; A side of the first water collecting component comprises an air outlet; A side and / or a bottom of the first water collecting component comprises a drainage outlet, and the drainage outlet is communicated with the drainage channel.
14. The integrated cooktop of claim 12, wherein, The drainage channel comprises: A drainage groove is communicated with the flue, and the drainage groove is located below the first water collecting component; A flow channel is communicated with the drainage groove and the liquid storage component.
15. The integrated cooktop of claim 12, wherein, The liquid storage component comprises: A base is connected with the collection assembly; A first water storage box is detachably connected with the base, and the first water storage box is communicated with the drainage channel.
16. The integrated stove according to claim 15, wherein The base comprises a first insertion slot, the first insertion slot faces away from the body, and the first water storage box is at least partially arranged in the first insertion slot.
17. The integrated cooktop of claim 16, wherein, A side of the first water storage box comprises a limiting groove, a side wall of the base comprises a through hole, and the liquid storage component further comprises: A limiting element is arranged in the through hole and partially located in the limiting groove.
18. The integrated stove according to claim 12, wherein The range hood assembly is connected with the second water collecting component, a second end of the flue is communicated with the range hood assembly, and the range hood assembly is used for sucking the oil fume through the smoke inlet and the flue.
19. The integrated stove according to claim 18, wherein The second water collecting component is located between the body and the range hood assembly; The liquid storage component is located on a side of the range hood assembly.
20. The integrated cooktop of claim 18, wherein, The liquid storage component comprises: A second water storage box is detachably connected with the range hood assembly, and the second water storage box is communicated with the drain passage.
21. The integrated stove of claim 20, wherein The range hood assembly comprises a volute and a fan, and the fan is arranged in the volute; The volute comprises a second insertion slot, and the second insertion slot faces away from the body, and the second water storage box is at least partially arranged in the second insertion slot.
22. The integrated stove of claim 21, wherein The volute further comprises a clamping slot, and the clamping slot is arranged in the second insertion slot; The second water storage box comprises a clasp, and the clasp is clamped with the clamping slot.
23. The integrated cooktop of any one of claims 12 to 22, wherein, The body comprises: A shell, and the second water storage box is at least partially arranged in the shell; A panel is connected with the shell, and the smoke inlet is arranged on the panel.
Citation Information
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