WO2023217257A1 - 集成灶 - Google Patents
集成灶 Download PDFInfo
- Publication number
- WO2023217257A1 WO2023217257A1 PCT/CN2023/093766 CN2023093766W WO2023217257A1 WO 2023217257 A1 WO2023217257 A1 WO 2023217257A1 CN 2023093766 W CN2023093766 W CN 2023093766W WO 2023217257 A1 WO2023217257 A1 WO 2023217257A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- cavity
- integrated stove
- cover
- fan
- opening
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/08—Foundations or supports plates; Legs or pillars; Casings; Wheels
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/20—Removing cooking fumes
Definitions
- the present application relates to the technical field of kitchen appliances, specifically to an integrated stove.
- the shell of the range hood device is in a closed state.
- the range hood device In daily use, the range hood device inhales a large amount of water vapor, or when the user mistakenly pours water from the air inlet into the range hood device, the accumulated water will remain in the range hood device.
- the internal water collection of the range hood device is difficult to clean, which affects the safety of the integrated stove and the service life of the internal electrical components.
- This application aims to solve at least one of the technical problems existing in the prior art.
- one aspect of the present application proposes an integrated stove.
- the integrated stove includes: a casing, including a cavity, an air inlet and an opening.
- the opening is located at the bottom of the casing; a fan is located in the cavity and used to extract oil fume through the air inlet;
- the cover is detachably connected to the shell and covers the opening.
- This application proposes an internal circulation integrated stove that can centrally extract the oil fume generated by cooking into the interior of the integrated stove, complete grease filtration and odor filtration inside the integrated stove, and then discharge it back to the user's indoor environment. in order to realize the internal circulation of oil fume and avoid the need to set up a complicated external exhaust structure.
- the integrated stove includes a housing, a fan and a cover.
- the casing is a frame structure integrating the stove hood assembly, and a cavity is formed inside the casing.
- the fan is used to provide power for sucking oil fume.
- the fan is arranged in the cavity and fixed on the casing.
- the casing includes an air inlet and an air outlet, and the air inlet and heating component
- the air duct is connected, and the air outlet is connected with the external space of the integrated stove.
- the fan is turned on, and the fan extracts the gas in the air duct through the air inlet to form a negative pressure environment in the air duct.
- the hood shell of the range hood device is in a closed state. If the structure inside the hood outer box needs to be maintained, the range hood device needs to be disassembled.
- a large amount of water vapor is included in the oil fume. The water vapor condenses into liquid when it is condensed in the hood casing. This part of the liquid will accumulate at the bottom of the hood casing and cannot be easily removed.
- it is inevitable that some liquid will flow into the hood casing through the air duct, and this part of the liquid will accumulate at the bottom of the hood casing along with condensed water.
- the range hood device has technical problems such as poor safety and reliability and high failure rate.
- some impurities and oil stains will adhere to the internal hood structure, so the hood structure needs to be cleaned.
- the range hood device needs to be disassembled before cleaning the hood shell.
- the internal hood structure needs to be cleaned, which leads to technical problems such as difficulty in maintaining the range hood and poor user experience.
- an opening is provided at the bottom of the casing, and a cover is provided corresponding to the opening.
- the cover body is adapted to the opening, and the cover body is releasably installed at the opening.
- the housing and the cover can provide a sealed working environment for the fan to ensure the fan's ability to suck oil fumes and prevent oil fumes from leaking out.
- the cover can be removed from the casing. Therefore, on the one hand, the liquid accumulated in the cavity can be poured out of the cavity through the opening, so as to prevent the accumulated liquid from contacting and damaging electrical structures such as fans.
- the fan is exposed.
- the user can clean the fan directly through the opening, thereby completing fan maintenance without dismantling the integrated stove.
- the fan can be cleaned after removing the cover. Clean the inner wall of the cavity after cleaning, thereby reducing the difficulty for users to maintain the internal structures of the cavity such as fans.
- the specific cleaning process is to first open the cabinet door on the stove with the integrated stove, then remove the cover from the shell, and then spray and wipe the shell, wind wheel and other structures on the fan with cleaning agent, and finally After cleaning is completed, snap the cover back onto the opening.
- this application solves the problems existing in the related art by providing an opening at the bottom of the casing and a removable cover: poor safety and reliability of the range hood device, high failure rate, and internal structure.
- Technical problems include difficulty in structural maintenance and poor user experience. In order to achieve the technical effect of optimizing the structure of integrated stoves, improving the practicality and safety of integrated stoves, reducing the failure rate of integrated stoves, and providing convenient conditions for users.
- the integrated stove also includes: a filter member, which is arranged in the cavity and used to filter the oil fume flowing to the fan.
- a filter element is also provided in the cavity.
- the filter element is used to filter the oil smoke drawn into the integrated stove to filter out impurities contained in the oil smoke and substances that emit odor. This is to ensure that the gas eventually discharged back into the room will not pollute the indoor environment.
- the filter element is arranged in the cavity in the casing, and the filter element is arranged on the upwind side of the fan, that is, the filter element is located between the air duct and the fan.
- the oil smoke entering the cavity from the air duct must first pass through the filter element. Then it is sucked into the fan.
- the restriction of the filter on the size of the smoke exhaust pipe can be lifted, so that the fan can be connected to different models and smoke exhaust pipes produced by different manufacturers, thereby reducing the user's cost of maintaining the integrated stove, and is conducive to different installations of the integrated stove.
- a unified smoke exhaust pipe standard is formed among brands.
- arranging the filter element in the cavity can rationally utilize the lateral space in the cavity to complete the built-in filter element without increasing the thickness of the integrated stove. It can be seen that by arranging the filter element in the lateral space of the cavity, the technical problems of high maintenance cost and poor product promotion of integrated stoves existing in related technologies are solved. It has achieved the technical effect of optimizing the structural layout of the integrated stove, improving the practicality of the integrated stove, and improving the user experience.
- arranging the filter on the upwind side of the fan can prevent impurities contained in oil smoke from being sucked into the fan, thereby reducing the rate at which the fan is contaminated by impurities and extending the maintenance cycle and service life of the fan. This will further improve the working stability of the integrated stove and reduce the technical effect of the failure rate of the integrated stove.
- the filter element plays the role of removing odorous substances in the oil fume.
- Its material is usually activated carbon, which plays a physical adsorption role on the particulate matter in the oil fume. It can also be a component that plays the role of electrical adsorption or liquid adsorption.
- the user can clean or replace the filter element by removing the cover body.
- the filter separates the cavity into a first cavity and a second cavity; the air inlet is connected to the first cavity, the fan is located in the second cavity, and the opening is located between the first cavity and the second cavity. The bottom of the second cavity.
- the filter element is disposed transversely in the cavity, and the filter element divides the cavity into a first cavity and a first cavity.
- Second cavity the air inlet is connected with the first cavity, and the oil smoke flows into the filter through the air inlet and the first cavity, flows into the second cavity after being filtered by the filter, and is finally discharged from the air outlet on the casing under the action of the fan. Blower components.
- the opening is located below the first cavity and the second cavity, that is, the opening can communicate with the first cavity and the second cavity respectively.
- the oil fume drawn into the integrated stove first flows into the first cavity, and most of the water vapor contained in the oil fume is pre-cooled and condensed in the first cavity. Therefore, the demand for condensate water discharge in the first cavity is relatively important.
- the opening at the bottom of the first cavity is a cleaning area on the integrated stove. After removing the cover, the accumulated waste liquid can be poured out of the cavity through the cleaning area, and the user can also clean the inner wall of the first cavity in the cleaning area.
- the fan is set in the second cavity.
- the fan needs to pressurize and accelerate the oil fume, so a large amount of grease will adhere to the fan casing and wind wheel. If too much grease adheres, it will affect the suction effect of the fan and even cause a fire. . Therefore, the cleaning and maintenance requirements in the second cavity are relatively important, and the opening at the bottom of the second cavity is a maintenance area on the integrated stove. After removing the cover, the user can use cleaning fluid to degrease the inner wall of the second cavity and the fan to avoid fan failure. When the fan has failed, the user can repair the fan through the maintenance area.
- the cover includes: a first cover that covers the opening at the bottom of the first cavity; and a second cover that covers the opening at the bottom of the second cavity.
- the cover body includes a first cover body and a second cover body.
- the first cover body is detachably installed at the bottom of the first cavity and is used to cover the cleaning area at the bottom of the first cavity.
- the second cover is detachably installed at the bottom of the second cavity and is used to cover the maintenance area at the bottom of the second cavity.
- providing the first cover and the second cover can improve the operating freedom of the integrated stove and reduce the difficulty of maintenance.
- the operation difficulty of disassembling the first cover and the second cover is clearly understood, which is conducive to improving the user experience.
- a liquid storage tank is provided on the cover, and the liquid storage tank is used to collect and store the liquid in the cavity.
- a liquid storage tank is provided on the cover, and the opening of the liquid storage tank faces the top surface of the cavity.
- the water vapor carried in the oil fume can be collected by the liquid storage tank after pre-cooling and condensation.
- the liquid condensed on the inner wall of the cavity can flow into the liquid storage tank along the inner wall of the cavity.
- the opening of the liquid reservoir is opposite to the air inlet. If there is liquid flowing directly into the air duct, the liquid storage tank can collect this part of the liquid under the air inlet.
- the liquid storage tank has a certain depth, that is, the liquid storage tank can store liquid to prevent the liquid from overflowing into the filter or fan.
- the cover By providing a liquid storage tank, the cover has the ability to collect and store liquid. On the one hand, it is convenient for the user to centrally handle the accumulated liquid, and on the other hand, it can prevent the accumulated liquid from overflowing to a certain extent. Moreover, after the cover is removed, the liquid storage tank can block the liquid and prevent the liquid from pouring directly to the ground. In this way, the technical effects of optimizing the cover structure, broadening the cover functions, and improving the practicality and reliability of the integrated stove can be achieved.
- annular rib is provided on the upper surface of the cover, and the inner annular surface of the environmental rib and the upper surface of the cover enclose a liquid storage tank.
- the upper end surface of the annular rib is connected with the inner wall of the cavity to facilitate the introduction of liquid condensed on the inner wall of the cavity into the liquid storage tank.
- the housing and/or the cover are provided with drainage holes, and the drainage holes are connected with the liquid storage tank.
- the housing and/or the cover are provided with drainage holes.
- the drainage hole communicates with the liquid storage tank and the external space of the housing.
- the drainage hole is adjacent to the opening to facilitate the discharge of liquid accumulated at the bottom of the cavity.
- the integrated stove also includes: a valve body, located at the drainage hole, used to open or close the drainage hole.
- the integrated stove also includes a valve body.
- the valve body is arranged on the drainage hole, and the valve body is used to control the on-off state of the drainage hole.
- the valve body When the valve body is in a closed state, the valve body seals the drain hole, and the liquid in the reservoir cannot be discharged through the drain hole.
- the valve body when the valve body is opened, the liquid can be discharged out of the cavity through the drainage hole.
- the drain hole has a switch function. The valve body is opened when the accumulated liquid inside the cavity needs to be cleaned, and the valve body is closed under normal working conditions. This improves the card operability of the integrated stove and provides convenience for users.
- the valve body can be a solenoid valve, and the solenoid valve is connected to the main control circuit on the integrated stove.
- the valve body can be controlled to open by inputting a drainage command on the control panel, thereby improving the automation of the integrated stove.
- the valve body includes: a push rod, which is installed in the drainage hole; a sealing gasket, which is installed in the liquid reservoir and connected to the push rod; an elastic member, one end is connected to the push rod, and the other end is connected to the shell.
- a push rod which is installed in the drainage hole
- a sealing gasket which is installed in the liquid reservoir and connected to the push rod
- an elastic member one end is connected to the push rod, and the other end is connected to the shell.
- the valve body has a manual triggering structure.
- the valve body includes a push rod, a sealing gasket and an elastic member.
- the push rod is installed in the drainage hole, and the push rod can move in the extension direction of the drainage hole.
- the sealing gasket is installed on the inner end of the push rod.
- the sealing gasket matches the port of the drainage hole on the inner wall of the cavity.
- the sealing gasket abutting on the inner wall of the cavity can seal the port of the drainage hole.
- the elastic member is sleeved on the push rod, the first end of the elastic member is connected to the push rod, and the second end is connected to the housing.
- the elastic member exerts an external pushing force on the push rod, so that the sealing gasket stops in the first position, and at this time abuts against the port of the drainage hole, thereby maintaining the closed state of the drainage hole.
- the elastic member is compressed during the movement of the push rod. After the pressing force is removed, the elastic member releases elastic potential energy, so that the push rod drives the sealing gasket to automatically reset to the first position to realize automatic closing of the valve body.
- this structure has the advantages of low structural complexity and strong reliability. Even if the integrated stove is in a shutdown state due to faults and other factors, the liquid in the cavity can be discharged through triggering.
- the valve body has an automatic closing function, which ensures that the valve body can seal the drainage hole after the user completes pouring the liquid, thereby reducing the possibility of liquid leakage.
- the integrated stove also includes: a sealing plug, which is located in the drainage hole and used to block the drainage hole.
- the integrated stove also includes a sealing plug.
- the sealing plug is inserted into the drainage hole and used to seal the drainage hole.
- the specific sealing plug is a rubber plug, and a plurality of annular sealing ribs are provided on the circumferential side of the sealing plug. After the sealing plug is inserted into the drainage hole, the sealing ribs are closely attached to the inner wall of the drainage hole to improve the sealing effect. When it is necessary to drain the liquid, pull out the sealing plug from the drainage hole to drain the liquid out of the cavity. Setting up a sealing plug to block the drainage hole will help reduce the production cost of the integrated stove, thereby improving product competitiveness. And the cost of replacing the sealing plug is disclosed, which can reduce the cost of using the integrated stove.
- the integrated stove also includes: a sealing ring, which is provided on the cover body and used to seal the cover body and the casing.
- the integrated stove also includes a sealing ring.
- the sealing ring is installed on the cover body, and the sealing ring is used to seal the gap between the cover body and the opening, thereby preventing liquid from leaking through the structural gap between the cover body and the shell.
- the sealing ring can also prevent gas from leaking out, thereby ensuring that the fume extraction performance of the integrated stove is not affected.
- the cover is provided with a positioning groove, the positioning groove is arranged around the liquid storage tank, and the size of the positioning groove is adapted to the size of the sealing ring.
- press the sealing ring into the positioning groove to complete the assembly.
- the sealing ring contacts the area of the housing that encloses the opening, thereby effectively sealing the cover and the housing.
- the integrated stove also includes: a heating component, connected to the housing, including an air duct, the air duct is connected to the air inlet, and the heating component is used to support and heat the container.
- Integrated stoves include heating components.
- the heating component is the main structure of the integrated stove and is used to position and support other structures on the integrated stove.
- the top of the heating component can provide a cooking operation surface for the user, and a container for holding ingredients is placed above the heating component to support and heat the container through the heating component.
- finished food that meets the user's needs can be cooked on the heating component.
- An air duct is formed inside the heating component.
- the first end of the air duct is connected to the space above the heating component.
- oil smoke is concentrated above the heating component.
- the air duct allows the oil smoke above the heating component to flow into the integrated stove.
- the shell is connected to the heating component, and the second end of the air duct is connected to the air inlet on the shell.
- the fan can extract oil fume above the heating component through the cavity and air duct.
- the fan assembly draws the gas in the air duct into the fan through the cavity to form a negative pressure environment in the air duct area. Under the action of this negative pressure environment, the oil smoke above the heating component is pressed in. into the air duct to complete the extraction of oil fumes and prevent the oil fumes from spreading to the indoor environment.
- the heating component includes: a base, the air duct is located in the base, and the shell is connected to the base; the panel is buckled above the base and includes a through hole connected to the air duct.
- the integrated stove also includes a base and a panel.
- the panel is the exposed structure of the integrated stove, and the panel cover is located above the base. After the integrated stove is installed, the surface of the panel becomes the operating surface of the integrated stove. There is an opening on the panel, and the opening is connected to the air duct. During the working process, a negative pressure is generated in the opening under the suction of the fan. Under the action of the negative pressure, the oil fume above the panel is forced into the collection through the opening. Set up a stove to collect oil fumes and prevent them from spreading indoors.
- the integrated stove also includes a heating device, which is installed inside the base.
- the heating device is connected to the base and is arranged opposite to the panel to form a heating area on the panel.
- the heating device can directly heat the panel to heat the cooking utensils placed on the panel through the locally heated panel, or the heating device can directly heat the cooking utensils placed on the corresponding area of the panel through the panel.
- this technical solution does not impose a rigid limit on the specific structure of the heating device, as long as the heating area can be formed on the panel.
- the bottom of the base is provided with an escape hole opposite to the through hole on the panel, and a ring-shaped member is provided in the base.
- the upper end of the ring-shaped member is connected to the through hole, and the lower end of the ring-shaped member is connected to the escape hole to enclose the interior of the heating component. Outlet.
- the integrated stove is also provided with a grille.
- a grille After the assembly of the grille is completed, at least part of the grille is embedded in the opening.
- the grille can prevent external dust and other impurities from falling into the separation components to a certain extent, thereby preventing large amounts of dust and grease from condensing into clumps that are difficult to clean.
- the integrated stove also includes: a separation component, located in the air duct, used to separate the grease in the oil smoke.
- the integrated stove is also provided with a separation piece, and the separation piece is arranged in the air duct.
- the oil fume flowing into the air duct first flows into the separator, and the separator separates the grease in the oil fume from the air to prevent the grease from continuing to flow into the hood along with the air.
- the separation piece By arranging the separation piece, the grease in the oil fume can be prevented from adhering to the internal working structure of the integrated stove, thereby preventing the grease from clogging the air ducts and filters on the one hand, and preventing the grease being sucked into the fan from damaging the fan on the other hand.
- it eliminates the need to frequently clean the grease inside the integrated stove. This solves the technical problem of the fan being easily damaged by oil dirt and inhaling oil dirt increasing the burden of cleaning the interior of the integrated stove.
- the separation component includes: a bracket, connected to the heating component, including an air inlet and an air outlet; and a filter, located in the bracket.
- the separation assembly includes a bracket and a filter.
- the bracket is connected to the heating component.
- the function of the bracket is to fix the filter, and the shape of the bracket Cooperating with the air duct, the filter can be fixed in the air duct.
- An air inlet and an air outlet are formed on the bracket.
- the oil fume carrying grease particles flows into the inside of the bracket from the air inlet. After being separated by the filter, the gaseous oil fume is evaporated. It is discharged from the air outlet to the outside of the bracket.
- the oil fume passes through the separation component, the grease particles contained in the oil fume will be adhered to the micropores of the filter and remain on the filter to achieve the effect of separating grease and air.
- the material of the filter screen is a material that can form multiple micropores, that is, the filter screen can capture grease and allow air to pass through.
- Commonly used materials are multi-layered metal flat mesh, metal wire mesh, etc. Non-metal material mesh can also be used. and other materials.
- the housing further includes an air outlet
- the integrated stove further includes: a flue assembly connected to the air outlet.
- the integrated stove also includes a flue assembly.
- the flue assembly includes a flue joint and at least one smoke exhaust duct.
- the plurality of smoke exhaust pipes are connected in series, the first end of the flue pipe joint is connected to the air outlet on the housing, and the second end of the flue pipe joint is connected to the mouth of the smoke exhaust pipe.
- the oil fume that has been separated by grease and odor filtering can be discharged to the designated area through the flue assembly.
- a longitudinally extending flue assembly can be provided so that the filtered air is discharged close to the ground to reduce the possibility of the exhaust gas disturbing users. This further improves the practicality and reliability of the integrated stove and optimizes the user experience.
- Figure 1 shows one of the structural schematic diagrams of an integrated stove according to an embodiment of the present application
- Figure 2 shows the second structural schematic diagram of an integrated stove according to an embodiment of the present application
- Figure 3 shows the third structural schematic diagram of an integrated stove according to an embodiment of the present application
- Figure 4 shows the fourth structural schematic diagram of an integrated stove according to an embodiment of the present application
- Figure 5 shows the fifth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 6 shows a partial enlarged view of the integrated focus shown in Figure 5 at A;
- Figure 7 shows the sixth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 8 shows the seventh structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 9 shows the eighth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 10 shows the ninth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 11 shows a tenth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 12 shows an eleventh structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 13 shows a partial enlarged view of the integrated stove shown in Figure 12 at B;
- Figure 14 shows the twelfth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 15 shows the thirteenth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 16 shows a fourteenth structural schematic diagram of an integrated stove according to an embodiment of the present application.
- Figure 17 shows a schematic structural diagram of a heating assembly according to an embodiment of the present application.
- Figure 18 shows a schematic structural diagram of a housing according to an embodiment of the present application.
- Figure 19 shows one of the structural schematic diagrams of a separation component according to an embodiment of the present application.
- Figure 20 shows the second structural schematic diagram of a separation component according to an embodiment of the present application.
- 100 integrated stove 110 shell, 112 cavity, 1122 first cavity, 1124 second cavity, 114 air inlet, 116 opening, 118 air outlet, 120 fan, 130 cover, 132 first cover, 134th Second cover body, 136 liquid reservoir, 138 drain hole, 140 filter, 150 valve body, 152 push rod, 154 sealing gasket, 156 elastic member, 160 sealing plug, 170 sealing ring, 180 heating component, 182 base, 184 Panel, 1842 through holes, 186 air ducts, 190 separate components, 192 brackets, 194 filters.
- the integrated stove 100 according to some embodiments of the present application is described below with reference to FIGS. 1 to 20 .
- the integrated stove 100 includes: a shell 110, including a cavity 112, an air inlet 114 and an opening 116.
- the opening 116 is located at the bottom of the shell 110; a fan 120 is provided in the cavity 112 for extracting oil smoke through the air inlet 114. ; Cover 130 is detachably connected to the housing 110 and covers the opening 116.
- the integrated stove 100 can centrally extract the oil fume generated by cooking into the interior of the integrated stove 100, and complete grease filtration and odor filtration inside the integrated stove 100 before returning it to the user. In order to realize the internal circulation of oil fumes in the indoor environment, it is unnecessary to set up a complex external exhaust structure.
- the integrated stove 100 includes a housing 110, a fan 120 and a cover 130.
- the housing 110 is a frame structure of the hood assembly of the integrated stove 100, and a cavity 112 is formed inside the housing 110.
- the fan 120 is used to provide power for sucking oil smoke.
- the fan 120 is disposed in the cavity 112 and is fixed on the casing 110 .
- the housing 110 includes an air inlet 114 and an air outlet 118.
- the air inlet 114 is connected to the air duct 186 on the heating component 180, and the air outlet 118 is connected to the external space of the integrated stove 100.
- the fan 120 is turned on, and the fan 120 extracts the gas in the air duct 186 through the air inlet 114 to form a negative pressure environment in the air duct 186.
- the oil smoke generated above the integrated stove 100 It is pressed into the air duct 186 to achieve the suction of oil fumes.
- the oil fume flows into the inside of the fan 120 through the cavity 112, and is discharged from the air outlet 118 after the fan 120 is pressurized and accelerated, thereby completing the oil fume treatment process.
- the hood shell of the range hood device is in a closed state. If the structure inside the hood outer box needs to be maintained, the range hood device needs to be disassembled.
- a large amount of water vapor is included in the oil fume. The water vapor is pre-cooled and condensed into a liquid in the hood casing. This part of the liquid will accumulate at the bottom of the hood casing and cannot be easily removed.
- it is inevitable that some liquid will flow into the hood casing 110 through the air duct 186, and this part of the liquid will accumulate at the bottom of the hood casing along with condensed water.
- the range hood device has technical problems such as poor safety and reliability and high failure rate.
- some impurities and oil stains will adhere to the internal hood structure, so the hood structure needs to be cleaned.
- the range hood device needs to be disassembled before cleaning the hood shell.
- the internal hood structure needs to be cleaned, which leads to technical problems such as difficulty in maintaining the range hood and poor user experience.
- an opening 116 is provided at the bottom of the housing 110, and a cover is provided corresponding to the opening 116.
- the cover 130 is adapted to the opening 116, and the cover 130 is releasably installed at the opening 116.
- the cover 130 When the cover 130 is in a closed state, the casing 110 and the cover 130 can provide a sealed working environment for the fan 120 to ensure the suction capacity of the fan 120 for oil smoke and prevent oil smoke from leaking out.
- the cover 130 can be removed from the casing 110 .
- the liquid accumulated in the cavity 112 can be poured out of the cavity 112 through the opening 116 to prevent the accumulated liquid from contacting and damaging electrical structures such as the fan 120 .
- the fan 120 is exposed, and the user can directly clean the fan 120 through the opening 116, thereby completing the maintenance of the fan 120 without disassembling the integrated stove 100.
- the inner wall of the cavity 112 can also be cleaned after the cover 130 is removed, thereby reducing the user's difficulty in maintaining the internal structures of the cavity 112 such as the fan 120.
- the specific cleaning process is as follows: first open the cabinet door on the stove top where the integrated stove 100 is installed, then remove the cover 130 from the housing 110, and then spray and wipe the casing and wind wheel on the fan 120 with a cleaning agent. After cleaning, the cover 130 is refastened to the opening 116 .
- this application solves the problems existing in the related art by providing the opening 116 at the bottom of the housing 110 and cooperating with the removable cover 130: poor safety and reliability of the range hood device, high failure rate, internal structure Technical problems such as difficulty in maintenance and poor user experience. This will further achieve the technical effect of optimizing the structure of the integrated stove 100, improving the practicality and safety of the integrated stove 100, reducing the failure rate of the integrated stove 100, and providing convenient conditions for users.
- the integrated stove 100 further includes: a filter 140, which is provided in the cavity 112 and used to filter the oil fume flowing to the fan 120.
- a filter 140 is also provided in the cavity 112 .
- the filter 140 is used to filter the oil smoke drawn into the integrated stove 100 to filter out the impurities and substances that emit odor contained in the oil smoke. . This is to ensure that the gas eventually discharged back into the room will not pollute the indoor environment.
- the filter element 140 is arranged in the cavity 112 in the housing 110, and the filter element 140 is arranged on the upwind side of the fan 120, that is, the filter element 140 is located between the air duct 186 and the fan 120, and enters through the air duct 186.
- the oil fume in the cavity 112 must first pass through the filter 140 and then be sucked into the fan 120 .
- the restriction of the filter 140 on the size of the smoke exhaust pipe can be released, so that the fan 120 can be connected to different models and smoke exhaust pipes produced by different manufacturers, thereby reducing the user's cost of maintaining the integrated stove 100. , and is conducive to the formation of unified smoke exhaust pipe standards among different brands.
- arranging the filter element 140 in the cavity 112 can rationally utilize the lateral space in the cavity 112 to complete the built-in filter element 140 without increasing the thickness of the integrated stove 100 . It can be seen that by arranging the filter element 140 in the lateral space of the cavity 112, the technical problems of high maintenance cost and poor product promotion of the integrated stove 100 existing in the related art are solved. The technical effect of optimizing the structural layout of the integrated stove 100, improving the practicality of the integrated stove 100, and improving the user experience has been achieved.
- arranging the filter 140 on the upwind side of the fan 120 can prevent impurities contained in the oil smoke from being sucked into the fan 120, thereby reducing the rate at which the fan 120 is contaminated by impurities and extending the maintenance cycle and service life of the fan 120. Thereby improving the working stability of the integrated stove 100 and reducing the technical effect of the failure rate of the integrated stove 100.
- the filter 140 plays a role in removing odorous substances in the oil fume.
- Its material is usually activated carbon, which has a physical adsorption effect on the particulate matter in the oil fume. It can also be a component that functions as electro-adsorption or liquid adsorption.
- the user can clean or replace the filter element 140 by removing the cover 130 .
- the filter 140 separates the cavity 112 into a first cavity 1122 and a second cavity 1124; the air inlet 114 is connected with the first cavity 1122, and the fan 120 is disposed in the second cavity 1124. , the opening 116 is located at the bottom of the first cavity 1122 and the second cavity 1124 .
- the filter member 140 is disposed across the cavity 112 , and the filter member 140 separates the cavity 112 into a first cavity 1122 and a second cavity 1124 .
- the air inlet 114 is connected with the first cavity 1122.
- the oil smoke flows into the filter 140 from the air inlet 114 and the first cavity 1122. After being filtered by the filter 140, it flows into the second cavity 1124.
- the fan 120 assembly is discharged through the air outlet 118 on the housing 110 .
- the opening 116 is located below the first cavity 1122 and the second cavity 1124, that is, the opening 116 can communicate with the first cavity 1122 and the second cavity 1124 respectively.
- the oil fume drawn into the integrated stove 100 first flows into the first cavity 1122.
- Most of the water vapor contained in the oil fume is condensed in the first cavity 1122, so the condensed water in the first cavity 1122
- the demand for external discharge is relatively important, and the opening 116 at the bottom of the first cavity 1122 is a cleaning area on the integrated stove 100 .
- the cover 130 is removed, the accumulated waste liquid can be poured out of the cavity 112 through the cleaning area, and the user can also clean the inner wall of the first cavity 1122 in the cleaning area.
- the fan 120 is arranged in the second cavity 1124.
- the fan 120 needs to pressurize and accelerate the oil fume, so a large amount of grease will adhere to the shell and the wind wheel of the fan 120. If there is too much grease attached, it will affect the fan. The suction effect of 120% can even cause a fire. Therefore, the cleaning and maintenance requirements in the second cavity 1124 are relatively important.
- the opening 116 at the bottom of the second cavity 1124 is a maintenance area on the integrated stove 100 . After removing the cover 130 , the user can use cleaning fluid to degrease the inner wall of the second cavity 1124 and the fan 120 to prevent the fan 120 from malfunctioning. When the fan 120 has failed, the user can repair the fan 120 through the maintenance area.
- the cover 130 includes: a first cover 132, covering the opening 116 at the bottom of the first cavity 1122; a second cover The body 134 covers the opening 116 at the bottom of the second cavity 1124.
- the cover 130 includes a first cover 132 and a second cover 134.
- the first cover 132 is detachably installed at the bottom of the first cavity 1122 and is used to cover the bottom of the first cavity 1122. Clear the area.
- the second cover 134 is detachably installed at the bottom of the second cavity 1124 and is used to cover the maintenance area at the bottom of the second cavity 1124 .
- the user can separately remove the second cover 134 to perform maintenance work. It can be seen that providing the first cover 132 and the second cover 134 can improve the operating freedom of the integrated stove 100 and reduce the difficulty of maintenance. At the same time, compared with disassembling the large-area cover 130 that covers the entire opening 116, the operation difficulty of disassembling the first cover 132 and the second cover 134 is significantly reduced, which is beneficial to improving the user experience.
- the cover 130 is provided with a liquid storage tank 136, and the liquid storage tank 136 is used to collect and store the cavity 112 liquid inside.
- a liquid storage tank 136 is provided on the cover 130 , and the opening 116 of the liquid storage tank 136 faces the top surface of the cavity 112 .
- the water vapor carried in the oil smoke can be collected by the liquid storage tank 136 after being precooled and condensed. Specifically, the liquid condensed on the inner wall of the cavity 112 can flow into the liquid storage tank 136 along the inner wall of the cavity 112 .
- the opening 116 of the liquid storage tank 136 is opposite to the air inlet 114 . If there is liquid flowing directly into the air duct 186, the liquid storage tank 136 can collect this part of the liquid below the air inlet 114.
- the liquid storage tank 136 has a certain depth, that is, the liquid storage tank 136 can store liquid to prevent the liquid from overflowing to the filter 140 or the fan. Within 120.
- the cover 130 has the ability to collect and store liquid. On the one hand, it is convenient for the user to centrally handle the accumulated liquid, and on the other hand, it can prevent the accumulated liquid from overflowing to a certain extent. Moreover, after the cover 130 is removed, the liquid storage tank 136 can block the liquid and prevent the liquid from pouring directly to the ground. This achieves technical effects of optimizing the structure of the cover 130, broadening the functions of the cover 130, and improving the practicality and reliability of the integrated stove 100.
- the upper surface of the cover 130 is provided with an annular rib, and the inner annular surface of the environmental rib and the upper surface of the cover 130 enclose the liquid storage tank 136 .
- the upper end surface of the annular rib is connected to the inner wall of the cavity 112 so that the liquid condensed on the inner wall of the cavity 112 can be introduced into the liquid storage tank 136 .
- the housing 110 and/or the cover 130 are provided with a drainage hole 138 , and the drainage hole 138 is connected with the liquid storage tank 136 .
- the housing 110 and/or the cover 130 are provided with drainage holes 138 .
- the drainage hole 138 communicates with the liquid storage tank 136 and the external space of the housing 110.
- the drainage hole 138 is adjacent to the opening 116 to facilitate the discharge of liquid accumulated at the bottom of the cavity 112.
- the liquid stored in the liquid storage tank 136 can be discharged from the cavity 112 through the drainage hole 138 without removing the cover 130 . This reduces the difficulty of cleaning the liquid inside the cavity 112 and improves the user experience.
- the integrated stove 100 further includes: a valve body 150, located at the drainage hole 138, for opening or closing the drainage hole 138.
- the integrated stove 100 further includes a valve body 150 .
- the valve body 150 is disposed on the drainage hole 138 , and is used to control the on-off state of the drainage hole 138 .
- the valve body 150 seals the drainage hole 138 , and the liquid in the liquid reservoir 136 cannot be discharged through the drainage hole 138 .
- the valve body 150 is opened, the liquid can be discharged out of the cavity 112 through the drainage hole 138 .
- the drain hole 138 has a switch function.
- the valve body 150 is opened when the liquid accumulated inside the cavity 112 needs to be cleaned, and the valve body 150 is closed under normal working conditions. This improves the card operability of the integrated stove 100 and provides convenience for users.
- valve body 150 can be a solenoid valve, and the solenoid valve is connected to the main control circuit on the integrated stove 100.
- the valve body 150 can be controlled by inputting a drainage command on the control panel 184. Turn on, thereby improving the automation level of the integrated stove 100.
- the valve body 150 includes: a push rod 152, which is passed through the drainage hole 138; a sealing gasket 154, which is provided in the liquid reservoir 136 and connected to the push rod 152; an elastic member 156, one end of which is connected to the push rod 152.
- the rod 152 is connected, and the other end is connected to the housing 110 or the cover 130; when the sealing gasket 154 is in the first position, the sealing gasket 154 covers the drainage hole 138, and the elastic member 156 is used to drive the sealing gasket 154 to reset through the push rod 152. to the first position.
- the valve body 150 has a manual triggering structure.
- the valve body 150 includes a push rod 152, a sealing gasket 154 and an elastic member 156.
- the push rod 152 is inserted into the drainage hole 138 , and the push rod 152 can move in the extension direction of the drainage hole 138 .
- the sealing gasket 154 is installed at the inner end of the push rod 152.
- the sealing gasket 154 matches the port of the drainage hole 138 on the inner wall of the cavity 112.
- the sealing gasket 154 abutting on the inner wall of the cavity 112 can seal the port of the drainage hole 138.
- the elastic member 156 is sleeved on the push rod 152.
- the first end of the elastic member 156 is connected to the push rod 152, and the second end is connected to the housing 110.
- the elastic member 156 exerts an external pushing force on the push rod 152 so that the sealing gasket 154 stops in the first position and abuts against the port of the drainage hole 138 to keep the drainage hole 138 in a closed state.
- push the push rod 152 inward to drive the sealing gasket 154 away from the port of the drainage hole 138 so that the liquid is discharged out of the cavity 112 through the drainage hole 138 .
- the elastic member 156 is compressed during the movement of the push rod 152. After the pressing force is removed, the elastic member 156 releases elastic potential energy, causing the push rod 152 to drive the sealing gasket 154 to automatically reset to the first position to realize automatic closing of the valve body 150.
- this structure has the advantages of low structural complexity and strong reliability. Even if the integrated stove 100 is in a shutdown state due to a fault or other factors, the liquid in the cavity 112 can be discharged through triggering. Moreover, the valve body 150 has an automatic closing function, which can ensure that the valve body 150 can block the drain hole 138 after the user completes pouring the liquid, thereby reducing the possibility of liquid leakage.
- the integrated stove 100 further includes: a sealing plug 160, which is provided in the drainage hole 138 and used to block the drainage hole 138.
- the integrated stove 100 further includes a sealing plug 160 .
- the sealing plug 160 is inserted into the drainage hole 138 for blocking the drainage hole 138 .
- the sealing plug 160 is a rubber plug, and a plurality of annular sealing ribs are provided on the peripheral side of the sealing plug 160. After the sealing plug 160 is inserted into the drainage hole 138, the sealing ribs are closely attached to the inner wall of the drainage hole 138 to improve the sealing effect. When it is necessary to drain the liquid, the sealing plug 160 is pulled out from the drainage hole 138 to drain the liquid out of the cavity 112 . Set the sealing plug 160 to block the drainage hole 138 It is beneficial to reduce the production cost of the integrated stove 100, thereby improving product competitiveness. In addition, the cost of replacing the sealing plug 160 can be disclosed, which can reduce the use cost of the integrated stove 100.
- the integrated stove 100 further includes: a sealing ring 170 provided on the cover 130 for sealing the cover 130 and the housing 110 .
- the integrated stove 100 further includes a sealing ring 170 .
- the sealing ring 170 is installed on the cover body 130, and the sealing ring 170 is used to seal the gap between the cover body 130 and the opening 116, thereby preventing liquid from leaking through the structural gap between the cover body 130 and the housing 110.
- the sealing ring 170 can also prevent gas from leaking, thereby ensuring that the fume extraction performance of the integrated stove 100 is not affected. In order to achieve the technical effect of improving the reliability of the integrated stove 100 and improving the user experience.
- the cover 130 is provided with a positioning groove, the positioning groove is provided around the liquid storage tank 136 , and the size of the positioning groove is adapted to the size of the sealing ring 170 .
- the sealing ring 170 is pressed into the positioning groove to complete the assembly.
- the cover 130 is closed at the opening 116 , the sealing ring 170 comes into contact with the area of the housing 110 that surrounds the opening 116 , thereby effectively sealing the cover 130 and the housing 110 .
- the integrated stove 100 also includes: a heating component 180, which is connected to the housing 110 and includes an air duct 186.
- the air duct 186 is connected to the air inlet 114.
- the heating component 180 is used to support and heat containers.
- Integrated range 100 includes heating assembly 180 .
- the heating assembly 180 is the main structure of the integrated stove 100 and is used to position and support other structures on the integrated stove 100 .
- the top of the heating component 180 can provide a cooking work surface for the user, and a container for holding ingredients is placed above the heating component 180 to support and heat the container through the heating component 180 .
- finished food that meets the user's needs is cooked on the heating component 180 .
- An air duct 186 is formed inside the heating assembly 180.
- the first end of the air duct 186 is connected to the space above the heating assembly 180.
- oil smoke is concentrated above the heating assembly 180.
- the air duct 186 can be used by the heating assembly.
- the oil fume above 180 flows into the integrated stove 100.
- the housing 110 is connected to the heating assembly 180
- the second end of the air duct 186 is connected to the air inlet 114 on the housing 110 .
- the fan 120 can extract the oil fume above the heating component 180 through the cavity 112 and the air duct 186 .
- the fan 120 assembly draws the gas in the air duct 186 into the fan 120 through the cavity 112 to form a negative pressure environment in the air duct 186 area. Under the action of this negative pressure environment, heating The oil fume above the component 180 is pressed into the air duct 186 to complete the suction of the oil fume and prevent the oil fume from spreading to the indoor environment.
- the heating assembly 180 includes: a base 182, the air duct 186 is located in the base 182, and the housing 110 is connected to the base 182; the panel 184 is fastened above the base 182 and includes a connection with the air duct. 186 connected through holes 1842.
- the integrated range 100 also includes a base 182 and a panel 184 .
- the panel 184 is the exposed structure of the integrated stove 100.
- the panel 184 is covered above the base 182.
- An opening 116 is provided on the panel 184, and the opening 116 is connected with the air duct 186.
- a negative pressure is generated in the opening 116 under the suction of the fan 120.
- the oil smoke above the panel 184 is pressed through the opening 116.
- Integrated stove 100 is installed to complete the collection of oil fume and prevent the oil fume from spreading into the room.
- the integrated stove 100 also includes a heating device installed inside the base 182 .
- the heating device is connected to the base 182 and is arranged opposite to the panel 184 to form a heating area on the panel 184 .
- the heating device can directly heat the panel 184 to heat the cooking utensils placed on the panel 184 through the locally heated panel 184, or the heating device can directly heat the cooking utensils placed on the corresponding area of the panel 184 through the panel 184.
- this embodiment does not impose a rigid limit on the specific structure of the heating device, as long as the heating area can be formed on the panel 184 .
- the bottom of the base 182 is provided with an escape hole opposite to the through hole 1842 on the panel 184.
- An annular member is provided in the base 182. The upper end of the annular member is connected to the through hole 1842, and the lower end of the annular member is connected to the escape hole.
- An air outlet channel 186 is enclosed inside the heating component 180 .
- the integrated stove 100 is also provided with a grille. After the assembly of the grille is completed, at least part of the grille is embedded in the opening 116 .
- a grille on the opening 116 , on the one hand, large particulate matter generated during the cooking process can be prevented from falling into the separation component 190 , thereby preventing the particulate matter from clogging the air inlet on the separation component 190 .
- the grille can prevent external dust and other impurities from falling into the separation assembly 190 to a certain extent, thereby preventing a large amount of dust and grease from condensing into clumps that are difficult to clean. This achieves the technical effect of improving the working reliability and stability of the separation component 190, reducing the difficulty of cleaning the separation component 190, and improving the user experience.
- the integrated stove 100 further includes: a separation component 190, which is provided in the air duct 186 and is used to separate grease from oil smoke.
- the integrated stove 100 is also provided with a separation piece, and the separation piece is disposed in the air duct 186 .
- the separation piece removes the oil fume.
- the grease is separated from the air to prevent the grease from continuing to flow into the hood with the air.
- the grease in the oil fume can be prevented from adhering to the internal working structure of the integrated stove 100, thereby preventing the grease from clogging the air duct 186 and the filter 140 on the one hand, and preventing the grease being sucked into the fan 120 from being damaged on the other hand.
- Fan 120 On the other hand, the need for frequent cleaning of the internal grease of the integrated stove 100 is eliminated. This solves the technical problem of the fan 120 being easily damaged by oil dirt and inhaling oil dirt increasing the internal cleaning burden of the integrated stove 100 .
- the separation component 190 includes: a bracket 192 connected to the heating component 180 and including an air inlet and an air outlet; and a filter 194 located in the bracket 192 .
- separation assembly 190 includes bracket 192 and filter screen 194.
- the bracket 192 is connected to the heating assembly 180.
- the function of the bracket 192 is to fix the filter 194.
- the shape of the bracket 192 matches the air duct 186 so that the filter 194 can be fixed in the air duct 186.
- An air inlet is formed on the bracket 192. and the air outlet.
- the oil fume carrying grease particles flows into the inside of the bracket 192 from the air inlet.
- the gaseous oil fume is discharged from the air outlet to the outside of the bracket 192.
- the separation component 190 the grease particles contained in the oil fume will be adhered to the micropores of the filter screen 194, and then remain on the filter screen 194, achieving the effect of separating grease and air.
- the filter screen 194 is made of a material that can form multiple micropores, that is, the filter screen 194 can capture grease and allow air to pass through. Commonly used materials are multi-layered metal flat mesh, metal wire mesh, etc., and non-metallic materials can also be used. Material network and other materials.
- the housing 110 further includes an air outlet 118
- the integrated stove 100 further includes: a flue assembly connected to the air outlet 118 .
- the integrated range 100 also includes a flue assembly.
- the flue assembly includes a flue joint and at least one smoke exhaust duct.
- the plurality of smoke exhaust pipes are connected in series, the first end of the flue pipe joint is connected with the air outlet 118 on the housing 110, and the second end of the flue pipe joint is connected with the mouth of the smoke exhaust pipe. .
- the oil fume that has been separated by grease and odor filtering can be discharged to the designated area through the flue assembly.
- a longitudinally extending flue assembly can be provided so that the filtered air is discharged close to the ground to reduce the possibility of the exhaust gas disturbing users. This further improves the practicality and reliability of the integrated stove 100 and optimizes the user experience.
- connection can be A fixed connection between multiple objects can also be a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects, or it can be an intermediate connection between multiple objects. indirectly connected.
- connection can be A fixed connection between multiple objects can also be a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects, or it can be an intermediate connection between multiple objects. indirectly connected.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Ventilation (AREA)
- Electric Stoves And Ranges (AREA)
Abstract
Description
Claims (15)
- 一种集成灶,其中,包括:壳体,包括腔体、进风口和开口,所述开口位于所述壳体底部;风机,设于所述腔体内,用于通过所述进风口抽取油烟;盖体,与所述壳体可拆卸连接,且盖合所述开口。
- 根据权利要求1所述的集成灶,其中,还包括:过滤件,设于所述腔体内,用于对流向所述风机的所述油烟进行过滤。
- 根据权利要求2所述的集成灶,其中,所述过滤件将所述腔体分隔为第一腔体和第二腔体;所述进风口与所述第一腔体连通,所述风机设于所述第二腔体内,所述开口位于所述第一腔体和所述第二腔体底部。
- 根据权利要求3所述的集成灶,其中,所述盖体包括:第一盖体,盖合所述第一腔体底部的所述开口;第二盖体,盖合所述第二腔体底部的所述开口。
- 根据权利要求1所述的集成灶,其中,所述盖体上设有储液槽,所述储液槽用于收集和存储所述腔体内的液体。
- 根据权利要求5所述的集成灶,其中,所述壳体和/或所述盖体上设有排水孔,所述排水孔与所述储液槽连通。
- 根据权利要求6所述的集成灶,其中,还包括:阀体,设于所述排水孔处,用于开启或关闭所述排水孔。
- 根据权利要求7所述的集成灶,其中,所述阀体包括:推杆,穿设于所述排水孔中;密封垫,设于所述储液槽内,与所述推杆连接;弹性件,一端与所述推杆连接,另一端与所述壳体或所述盖体连接;其中,所述密封垫位于第一位置时,所述密封垫盖合所述排水孔,所述弹性件用于通过所述推杆带动所述密封垫复位至所述第一位置。
- 根据权利要求6所述的集成灶,其中,还包括:密封塞,设于所述排水孔内,用于封堵所述排水孔。
- 根据权利要求5所述的集成灶,其中,还包括:密封圈,设于所述盖体上,用于密封所述盖体和所述壳体。
- 根据权利要求1至10中任一项所述的集成灶,其中,还包括:加热组件,与所述壳体连接,包括风道,所述风道与所述进风口连通,所述加热组件用于承托和加热容器。
- 根据权利要求11所述的集成灶,其中,所述加热组件包括:基座,所述风道位于所述基座内,所述壳体与所述基座连接;面板,扣合于所述基座上方,包括与所述风道连通的通孔。
- 根据权利要求11所述的集成灶,其中,还包括:分离组件,设于所述风道,用于分离出所述油烟中的油脂。
- 根据权利要求13所述的集成灶,其中,所述分离组件包括:支架,与所述加热组件连接,包括进气口和出气口;滤网,设于所述支架内。
- 根据权利要求1至10中任一项所述的集成灶,其中,所述壳体还包括出风口,所述集成灶还包括:烟道组件,与所述出风口连接。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202221148985.9 | 2022-05-13 | ||
| CN202221148985.9U CN217423378U (zh) | 2022-05-13 | 2022-05-13 | 集成灶 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2023217257A1 true WO2023217257A1 (zh) | 2023-11-16 |
Family
ID=83186116
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2023/093766 Ceased WO2023217257A1 (zh) | 2022-05-13 | 2023-05-12 | 集成灶 |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN217423378U (zh) |
| WO (1) | WO2023217257A1 (zh) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2026045309A1 (zh) * | 2024-08-30 | 2026-03-05 | 佛山市顺德区美的电热电器制造有限公司 | 过滤组件和集成灶 |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN217423378U (zh) * | 2022-05-13 | 2022-09-13 | 佛山市顺德区美的电热电器制造有限公司 | 集成灶 |
| EP4379265A1 (en) * | 2022-12-01 | 2024-06-05 | Electrolux Appliances Aktiebolag | Container for collection of flowing substances, drainage auxiliary tool and household appliance |
| WO2025218604A1 (zh) * | 2024-04-15 | 2025-10-23 | 佛山市顺德区美的电热电器制造有限公司 | 集成灶 |
Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107940533A (zh) * | 2018-01-10 | 2018-04-20 | 王伟森 | 一种嵌入式集成灶 |
| EP3511633A2 (de) * | 2017-11-20 | 2019-07-17 | Miele & Cie. KG | Anordnung bestehend aus zumindest einer dunstabzugseinrichtung und zumindest einem kochfeld und verfahren zum betreiben der anordnung |
| DE202019106084U1 (de) * | 2018-11-07 | 2019-11-15 | Elica S.P.A | Kochfläche mit Downdraft-Dunstabzugshaube |
| CN213931075U (zh) * | 2020-12-04 | 2021-08-10 | 佛山市顺德区美的洗涤电器制造有限公司 | 集成灶 |
| DE202021105496U1 (de) * | 2021-09-17 | 2021-12-07 | Silverline Endüstri ve Ticaret A.S. | Kochfeldmodul |
| CN215863620U (zh) * | 2021-08-04 | 2022-02-18 | 武汉创新环保工程孝感有限公司 | 一种双环型高效油烟净化机 |
| CN215892498U (zh) * | 2021-10-22 | 2022-02-22 | 广东奥特龙电器制造有限公司 | 一种烟灶一体机 |
| EP3978811A1 (de) * | 2020-10-02 | 2022-04-06 | Miele & Cie. KG | Dunstabzugseinheit zum verbau unterhalb eines kochfeldes, geruchsfiltereinheit, dunstabzugssystem und verfahren zum betreiben eines dunstabzugssystems |
| CN217423378U (zh) * | 2022-05-13 | 2022-09-13 | 佛山市顺德区美的电热电器制造有限公司 | 集成灶 |
-
2022
- 2022-05-13 CN CN202221148985.9U patent/CN217423378U/zh active Active
-
2023
- 2023-05-12 WO PCT/CN2023/093766 patent/WO2023217257A1/zh not_active Ceased
Patent Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP3511633A2 (de) * | 2017-11-20 | 2019-07-17 | Miele & Cie. KG | Anordnung bestehend aus zumindest einer dunstabzugseinrichtung und zumindest einem kochfeld und verfahren zum betreiben der anordnung |
| CN107940533A (zh) * | 2018-01-10 | 2018-04-20 | 王伟森 | 一种嵌入式集成灶 |
| DE202019106084U1 (de) * | 2018-11-07 | 2019-11-15 | Elica S.P.A | Kochfläche mit Downdraft-Dunstabzugshaube |
| EP3978811A1 (de) * | 2020-10-02 | 2022-04-06 | Miele & Cie. KG | Dunstabzugseinheit zum verbau unterhalb eines kochfeldes, geruchsfiltereinheit, dunstabzugssystem und verfahren zum betreiben eines dunstabzugssystems |
| CN213931075U (zh) * | 2020-12-04 | 2021-08-10 | 佛山市顺德区美的洗涤电器制造有限公司 | 集成灶 |
| CN215863620U (zh) * | 2021-08-04 | 2022-02-18 | 武汉创新环保工程孝感有限公司 | 一种双环型高效油烟净化机 |
| DE202021105496U1 (de) * | 2021-09-17 | 2021-12-07 | Silverline Endüstri ve Ticaret A.S. | Kochfeldmodul |
| CN215892498U (zh) * | 2021-10-22 | 2022-02-22 | 广东奥特龙电器制造有限公司 | 一种烟灶一体机 |
| CN217423378U (zh) * | 2022-05-13 | 2022-09-13 | 佛山市顺德区美的电热电器制造有限公司 | 集成灶 |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2026045309A1 (zh) * | 2024-08-30 | 2026-03-05 | 佛山市顺德区美的电热电器制造有限公司 | 过滤组件和集成灶 |
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| Publication number | Publication date |
|---|---|
| CN217423378U (zh) | 2022-09-13 |
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