Integrated cooker
By designing a rotatable shielding component in the integrated stove, the problem of pollutants and foreign objects entering due to the open smoke inlet is solved, effective extraction of oil smoke and structural optimization are achieved, and the practicality and safety of the integrated stove are improved.
Patent Information
- Application Number
- CN202422182614.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The smoke inlet of the integrated stove is open when in standby mode, which may cause pollutants and foreign matter to enter the flue, affecting practicality and safety.
A shielding component is designed that can open the smoke inlet to extract oil smoke when the integrated stove is working, and close the smoke inlet to prevent foreign objects from entering the flue when on standby. The shielding component achieves position switching by rotating the connecting structure and is equipped with a limit device to ensure stability.
The practicality and safety of the integrated stove are improved, the difficulty of cleaning and the failure rate are reduced, while the structural design is optimized to provide a smooth exposed surface.
Smart Images

Figure CN223020372U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cooking equipment, in particular to an integrated stove. Background Art
[0002] The integrated stove has cooking function and oil fume treatment function. The oil fume generated during the cooking process can be collected by the integrated stove, and the collected oil fume can be discharged to the designated area after treatment.
[0003] In the related art, a smoke inlet is provided on the panel of the integrated stove, and the oil smoke generated during the cooking process can be sucked into the smoke inlet under the action of negative pressure.
[0004] However, the smoke inlet is always in an open state. When the integrated stove is on standby, pollutants and foreign objects may fall into the smoke inlet, causing pollution and safety hazards, resulting in technical problems of poor practicality and safety of the integrated stove. Utility Model Content
[0005] The utility model aims to solve at least one of the technical problems existing in the prior art.
[0006] To this end, the first aspect of the utility model proposes an integrated stove.
[0007] In view of this, the first aspect of the utility model provides an integrated stove, which includes: a main body, the main body including a smoke inlet and a flue; a shielding component, the shielding component is connected to the main body, and the shielding component can move relative to the main body, and the shielding component includes a first position and a second position; wherein, when the shielding component is in the first position, the shielding component blocks the smoke inlet, and the smoke inlet is closed; when the shielding component is in the second position, the shielding component avoids at least a part of the area of the smoke inlet, and the smoke inlet is opened.
[0008] In this technical solution, an integrated stove is defined, which has heating function and oil fume treatment function.
[0009] The integrated stove includes a main body, a smoke inlet is provided on the main body, and a flue connected to the smoke inlet is formed inside the main body. During cooking, the oil smoke generated above the main body can be sucked into the flue through the smoke inlet by the integrated stove, and the oil smoke is separated and deodorized in the flue before being discharged from the main body through the outlet, thereby reducing secondary pollution of the discharged oil smoke.
[0010] Specifically, the main body includes a panel, which forms the exposed surface of the integrated stove, the cooking utensils to be heated are placed on the panel, and the smoke inlet is opened on the panel.
[0011] On this basis, the integrated stove also includes a shielding component, which is connected to the main body and can move on the main body, so that the shielding component can adjust its position through movement.
[0012] Specifically, the shielding component includes a first position and at least one second position. When the shielding component is in the first position, the shielding component can shield the smoke inlet. Specifically, the shielding component can cover the smoke inlet to meet the shielding requirement, or can be embedded in the inner side of the smoke inlet to meet the shielding requirement, thereby closing the smoke inlet. In this regard, the technical solution does not impose a rigid limit on the specific shielding method, and it is sufficient to meet the requirement of preventing foreign matter from entering the smoke duct through the smoke inlet.
[0013] Correspondingly, when the shielding component is in the second position, the shielding component avoids at least part of the area of the smoke inlet, so that the smoke inlet can absorb the oil smoke through the area avoided by the shielding component, so that the oil smoke can smoothly flow into the flue, thereby opening the smoke inlet. In the second position, the smoke inlet can be fully open or partially open, and this technical solution does not impose a rigid limitation on this, as long as the oil smoke extraction requirements are met.
[0014] It can be seen that by setting the shielding component, the user can operate the shielding component to open or close the smoke inlet according to needs. Specifically, when the integrated stove is working, the shielding component is adjusted to the second position so that the oil smoke can enter the flue smoothly and prevent the oil smoke from spreading in the indoor environment. When the integrated stove is on standby, the shielding component is adjusted to the first position to prevent pollutants and foreign matter from entering the flue through the smoke inlet. On the one hand, pollutants are prevented from polluting the flue, and on the other hand, safety hazards caused by foreign matter are prevented, thereby solving the technical problems of poor practicality and safety existing in the relevant technology, and further achieving the technical effect of optimizing the structure of the integrated stove, reducing the difficulty of cleaning the integrated stove, and reducing the failure rate of the integrated stove.
[0015] At the same time, when the integrated stove is on standby, the shielding component located in the first position can also eliminate the abruptness of the smoke inlet on the panel by shielding the smoke inlet, so that the integrated stove can have a flat and integrated exposed surface when on standby.
[0016] In addition, the above integrated stove provided by the utility model may also have the following additional technical features:
[0017] In some technical solutions of the utility model, optionally, the shielding component is arranged on the inner side of the smoke inlet; the shielding component is rotatably connected to the main body.
[0018] In this technical solution, the shielding component is fixed on the inner side of the smoke inlet. By fixing the shielding component on the inner side of the smoke inlet, the shielding component can be prevented from occupying the space outside the smoke inlet, and the space inside the smoke inlet can be reasonably utilized. On the one hand, this can avoid interference between the shielding component and cooking utensils placed on the top of the main body, and on the other hand, it can provide convenient conditions for the miniaturized design of the main body.
[0019] On this basis, the shielding component is rotatably connected to the main body, and the shielding component switches to the first position or the second position through a rotational movement. Compared with the sliding connection structure, the rotational connection structure has the advantages of low structural complexity and small improvement amplitude, which is beneficial to reducing the production cost and improvement cost of the integrated stove. Moreover, the space occupied by the rotating shielding component on the main body is small, which is beneficial to realizing the miniaturized design of the integrated stove.
[0020] In some technical solutions of the present utility model, optionally, the circumferential side surface of the shielding component includes a slot, and the slot includes a first clamping area. The integrated stove further includes: a rotating shaft, which is arranged on the inner wall of the flue, and the rotating shaft is clamped with the first clamping area, and the shielding component can rotate around the rotating shaft.
[0021] In this technical solution, a rotating shaft is arranged on the inner wall of the flue, and the rotating shaft is specifically a columnar convex structure.
[0022] Correspondingly, the circumferential side surface of the shielding component is provided with a slot, and the shape and size of the slot are adapted to the rotating shaft. During the assembly process, the rotating shaft can be inserted into the slot. Among them, the slot includes a first clamping area. After the rotating shaft is inserted into the slot from the opening of the slot, it can slide towards the first clamping area until it is successfully clamped into the first clamping area to complete the assembly. The first clamping area is clamped and matched with the rotating shaft, thereby limiting the shielding component, so that the shielding component can be fixed at a specified position and retain the rotational freedom of the shielding component.
[0023] During use, the user can push the shielding component to rotate the shielding component around the axis of the rotating shaft, so that the shielding component can be smoothly switched to the first position or the second position. Specifically, when the integrated stove is on standby, the shielding component is controlled to rotate to the first position to prevent pollutants and foreign objects from entering the flue, thereby solving the technical problems of poor practicability and safety in the related art.
[0024] In some technical solutions of the present utility model, optionally, the integrated stove further includes: a first limiting component, which is arranged on the inner wall of the flue. When the shielding component is in the second position, the first limiting component abuts against the shielding component, and the first limiting component is used to prevent the shielding component from rotating along the first rotation direction; wherein, the shielding component located in the first position can be switched to the second position by rotating along the first rotation direction.
[0025] In this technical solution, the shielding component located in the first position can be switched to the second position by rotating along the first rotation direction, that is, the first rotation direction corresponds to the opening direction of the shielding component.
[0026] On this basis, a first convex limiting component is provided on the inner wall of the flue, and the first limiting component is provided on the motion track of the shielding component rotating along the first rotation direction. When the shielding component rotates to the specified second position, the first limiting component blocks the shielding component, so that the shielding component cannot continue to rotate along the first rotation direction, thereby limiting the shielding component to the second position, avoiding excessive rotation of the shielding component, ensuring that the smoke inlet can be maintained at the required opening, and ensuring the efficiency of oil smoke extraction. In this way, the smoke inlet opening can be controlled, and the technical effect of improving the practicality and reliability of the integrated stove is achieved.
[0027] In some technical solutions of the present utility model, optionally, the slot further includes a second clamping area; when the shielding component is in the second position, the first limiting component is clamped into the second clamping area.
[0028] In this technical solution, a second clamping area is further provided in the slot. The second clamping area is closer to the opening of the slot than the first clamping area. The shape and size of the second clamping area are adapted to the first limiting component.
[0029] When the shielding component rotates to the second position, the first limiting component is clamped into the second clamping area, and the second clamping area and the first limiting component limit the shielding component through clamping cooperation, thereby reducing the probability of the shielding component being separated from the second position due to external factors such as scratches, collisions, and vibrations, and avoiding the shielding component from being closed by mistake. The shielding component can be kept in the second position, thereby ensuring that the oil smoke can be sucked into the integrated stove by the smoke inlet when the integrated stove is working, ensuring the oil smoke suction efficiency, and thus achieving the technical effect of improving the practicality and reliability of the integrated stove.
[0030] In some technical solutions of the utility model, optionally, the shielding component includes: a first cover plate, the first cover plate is rotatably connected to the body; a second cover plate, the second cover plate is rotatably connected to the body, and the first cover plate and the second cover plate are arranged side by side on the inner side of the smoke inlet.
[0031] In this technical solution, the shielding component includes a plurality of cover plates, and the plurality of cover plates are arranged side by side on the inner side of the smoke inlet.
[0032] Specifically, the multiple cover plates include a first cover plate and a second cover plate, and the second cover plate and the second cover plate are arranged side by side in the width direction of the smoke inlet. When the first cover plate and the second cover plate are rotated to a position flush with the panel, the shielding component is in the first position, and the smoke inlet is closed by the flattened first cover plate and the second cover plate.
[0033] Correspondingly, when the first cover plate and the second cover plate are rotated to a vertical state, the shielding component is in the second position, at which time a partial area in the smoke inlet is exposed, and the smoke duct can absorb the oil smoke through the exposed area.
[0034] By setting multiple cover plates to jointly open and close the smoke inlet, the size of the rotating structure in the shielding component can be reduced, thereby reducing the coverage area of the rotation trajectory of the shielding component, avoiding interference between the shielding component and the grease separation structure and the filtering structure in the flue, and thus reducing the difficulty of the spatial layout of the integrated stove.
[0035] In some technical solutions of the present utility model, optionally, the integrated stove further includes: a transmission assembly, the transmission assembly is arranged on the body, and the transmission assembly is connected to the first cover plate and the second cover plate, and the transmission assembly is used to drive the first cover plate and the second cover plate to rotate synchronously, or the transmission assembly is used to drive the first cover plate and the second cover plate to rotate mirror-symmetrically.
[0036] In this technical solution, a transmission assembly is also arranged in the body, and the transmission assembly is respectively connected to the first cover plate and the second cover plate. When one of the first cover plate and the second cover plate rotates under the touch of a user, the transmission component can transmit power to the other of the first cover plate and the second cover plate, so that the second cover plate can follow the first cover plate to rotate, or the first cover plate can follow the second cover plate to rotate, so that the first cover plate and the second cover plate can be opened and closed synchronously, thereby eliminating the cumbersome operation of the user operating multiple cover plates one by one, and further achieving the technical effect of reducing the operation difficulty of the shielding component and providing convenient conditions for the user.
[0037] Specifically, the transmission assembly includes a gear set, the gear set includes a plurality of gears, two rotating shafts are respectively connected to two gears in the gear set, and the remaining gears are meshed between the two gears connected to the rotating shafts. Through this gear set, the first cover plate and the second cover plate can rotate mirror-symmetrically. For example, when the first cover plate rotates along the first rotation direction, the second cover plate rotates in the opposite second rotation direction.
[0038] Specifically, the transmission assembly includes a gear and a rack, the gear is connected to the rotating shaft, and the rack is meshed with the gear. Through the structure of the combination of the gear and the rack, the first cover plate and the second cover plate can rotate synchronously, that is, the rotation direction and the rotation speed are the same.
[0039] In some technical solutions of the present utility model, optionally, the integrated stove further includes: a second limiting component, the second limiting component is arranged on the body, when the shielding component is in the first position, the second limiting component abuts against the shielding component, and the second limiting component is used to prevent the shielding component from rotating along the second rotation direction; wherein, the shielding component located in the second position can be switched to the first position by rotating along the second rotation direction.
[0040] In this technical solution, the shielding component located in the second position can be switched to the first position by rotating along the second rotation direction, that is, the second rotation direction corresponds to the closing direction of the shielding component.
[0041] On this basis, a second limiting component protruding outward is further provided on the inner wall of the flue. The second limiting component is arranged on the movement track of the shielding component rotating along the second rotation direction. When the shielding component rotates to the first position, the second limiting component blocks the shielding component, preventing the shielding component from continuing to rotate along the second rotation direction, thereby restricting the shielding component to the first position, avoiding excessive rotation of the shielding component, ensuring that the smoke inlet can be closed by the shielding component, preventing pollutants and foreign objects from entering the flue by mistake, and further achieving the technical effects of reducing the cleaning difficulty of the integrated range hood and reducing the failure rate of the integrated range hood.
[0042] Specifically, the second limiting component and the first limiting component can cooperate to achieve two-way limiting of the shielding component, enabling the shielding component to rotate within a predetermined track. The two end positions of the predetermined track correspond to the first position and the second position, thereby making the rotation switching mode of the shielding component more controllable.
[0043] In some technical solutions of the present utility model, optionally, the integrated range hood further includes: a magnetic member, which is arranged on the second limiting component and is used to attract the shielding component to make the shielding component stop at the first position.
[0044] In this technical solution, a magnetic member is arranged on the second limiting component, and the magnetic member can apply a magnetic attraction force to the shielding component. When the shielding component rotates to the first position, the shielding component can be held at the first position by this magnetic attraction force.
[0045] Thereby reducing the probability that the shielding component disengages from the first position due to external factors such as scraping, collision, and vibration, avoiding accidental opening of the shielding component, ensuring that the smoke inlet can be closed by the shielding component when the integrated range hood is on standby, increasing the difficulty for pollutants and foreign objects to enter the flue, and further achieving the technical effects of improving the integrated safety and reliability.
[0046] In some technical solutions of the present utility model, optionally, the integrated range hood further includes: a metal insert, which is arranged inside the shielding component. When the shielding component is in the first position, the magnetic member is opposite to the metal insert.
[0047] In this technical solution, the shielding component is formed by a non-metallic material. The non-metallic material has a low density. Preparing the shielding component with the non-metallic material can reduce the load on the rotating shaft and the transmission components, thereby reducing the failure rate of the rotating shaft and the transmission components.
[0048] The non-metallic material also has the advantage of corrosion resistance, which is beneficial to extending the service life of the shielding component and enabling the shielding component to effectively close the smoke inlet for a long time.
[0049] On this basis, a metal insert is embedded inside the shielding component. When the shielding component rotates to the first position, the magnetic member can generate a magnetic attraction force on the metal insert, so that the shielding component can be held at the first position by this magnetic attraction force, thereby retaining the locking function of the shielding component on the basis of preparing the shielding component with non-technical materials and reducing the probability of accidental opening of the shielding component.
[0050] The additional aspects and advantages of the present utility model will become apparent in the following description section or be learned through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0051] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, wherein:
[0052] Figure 1 FIG. 1 shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;
[0053] Figure 2 FIG. 1 shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;
[0054] Figure 3 FIG. 1 shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;
[0055] Figure 4 FIG. 2 shows a schematic structural diagram of a main body according to an embodiment of the present utility model;
[0056] Figure 5 FIG. 3 shows a schematic structural diagram of a shielding component according to an embodiment of the present utility model;
[0057] Figure 6 FIG. 4 shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;
[0058] Figure 7 FIG. 5 shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model;
[0059] Figure 8 FIG. 6 shows a schematic structural diagram of an integrated stove according to an embodiment of the present utility model.
[0060] Wherein, Figures 1 to 8 the corresponding relationship between the reference numerals in the drawings and the component names is as follows:
[0061] 100 Integrated stove, 110 main body, 1102 smoke inlet, 1104 flue, 120 shielding component, 122 slot, 1222 first clamping area, 1224 second clamping area, 124 first cover plate, 126 second cover plate, 130 rotating shaft, 140 first limiting component, 150 transmission component, 160 second limiting component, 170 magnetic component, 180 metal insert. Detailed implementation mode
[0062] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation modes. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0063] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited by the specific embodiments disclosed below.
[0064] The following refers to Figures 1 to 8 Describe an integrated stove according to some embodiments of the present invention.
[0065] As Figure 1 、 Figure 2 And Figure 3 Shown, an embodiment of the present invention provides an integrated stove 100, which includes: a main body 110, the main body 110 includes a smoke inlet 1102 and a flue 1104; a shielding component 120, the shielding component 120 is connected to the main body 110, and the shielding component 120 can move relative to the main body 110, and the shielding component 120 includes a first position and a second position; wherein, when the shielding component 120 is in the first position, the shielding component 120 shields the smoke inlet 1102, and the smoke inlet 1102 is closed; when the shielding component 120 is in the second position, the shielding component 120 avoids at least part of the area of the smoke inlet 1102, and the smoke inlet 1102 is opened.
[0066] Among them, Figure 1 In, the shielding component 120 is in the first position, Figure 2 In, the shielding component 120 is in the second position.
[0067] In this embodiment, an integrated stove 100 is defined, and the integrated stove 100 has a heating function and an oil fume treatment function.
[0068] The integrated stove 100 includes a body 110, a smoke inlet 1102 is provided on the body 110, and a smoke duct 1104 connected to the smoke inlet 1102 is formed inside the body 110. During cooking, the oil smoke generated above the body 110 can be sucked into the smoke duct 1104 through the smoke inlet 1102 by the integrated stove 100, and the oil smoke is subjected to grease separation and deodorization in the smoke duct 1104 and then discharged from the body 110 through the outlet, thereby reducing secondary pollution of the discharged oil smoke.
[0069] Specifically, the body 110 includes a panel, which forms the exposed surface of the integrated stove 100, the cooking utensils to be heated are placed on the panel, and the smoke inlet 1102 is opened on the panel.
[0070] On this basis, the integrated stove 100 further includes a shielding component 120, which is connected to the body 110 and can move on the body 110, so that the shielding component 120 can adjust its position through movement.
[0071] Specifically, the shielding component 120 includes a first position and at least one second position. When the shielding component 120 is in the first position, the shielding component 120 can shield the smoke inlet 1102. Specifically, the shielding requirement can be met by covering the shielding component 120 above the smoke inlet 1102, or by embedding the shielding component 120 inside the smoke inlet 1102, thereby closing the smoke inlet 1102. In this regard, this embodiment does not impose a rigid limit on the specific shielding method, and it is sufficient to meet the requirement of preventing foreign matter from entering the flue 1104 through the smoke inlet 1102.
[0072] Correspondingly, when the shielding component 120 is in the second position, the shielding component 120 avoids at least a part of the area of the smoke inlet 1102, so that the smoke inlet 1102 can absorb the oil smoke through the area avoided by the shielding component 120, so that the oil smoke can smoothly flow into the flue 1104, thereby opening the smoke inlet 1102. In the second position, the smoke inlet 1102 can be completely open or partially open, and this embodiment does not make a rigid limitation on this, as long as the oil smoke suction demand is met.
[0073] It can be seen that by setting the shielding member 120, the user can operate the shielding member 120 to open or close the smoke inlet 1102 according to needs. Specifically, when the integrated stove 100 is working, the shielding member 120 is adjusted to the second position so that the oil fume can smoothly enter the flue 1104, preventing the oil fume from spreading in the indoor environment. When the integrated stove 100 is on standby, the shielding member 120 is adjusted to the first position to prevent pollutants and foreign objects from entering the flue 1104 through the smoke inlet 1102. On the one hand, it avoids polluting the flue 1104 with pollutants, and on the other hand, it avoids potential safety hazards caused by foreign objects, thus solving the technical problems of poor practicability and safety in the related art, and further achieving the technical effects of optimizing the structure of the integrated stove 100, reducing the cleaning difficulty of the integrated stove 100, and reducing the failure rate of the integrated stove 100.
[0074] Meanwhile, when the integrated stove 100 is on standby, the shielding member 120 located at the first position can also eliminate the protrusion of the smoke inlet 1102 on the panel by shielding the smoke inlet 1102, enabling the integrated stove 100 to have a flat and highly integrated exposed surface when on standby.
[0075] As Figure 1 、 Figure 2 and Figure 3 shown, in some embodiments of the present utility model, optionally, the shielding member 120 is disposed inside the smoke inlet 1102; the shielding member 120 is rotatably connected to the main body 110.
[0076] In this embodiment, the shielding member 120 is fixed inside the smoke inlet 1102. By fixing the shielding member 120 inside the smoke inlet 1102, it is possible to avoid the shielding member 120 occupying the space outside the smoke inlet 1102, and the space inside the smoke inlet 1102 can be reasonably utilized. Thus, on the one hand, it can avoid interference between the shielding member 120 and the cooking utensils placed on the top of the main body 110, and on the other hand, it can provide convenient conditions for the miniaturization design of the main body 110.
[0077] On this basis, the shielding member 120 is rotatably connected to the main body 110, and the shielding member 120 is switched to the first position or the second position through a rotational movement. Compared with the sliding connection structure, the rotational connection structure has the advantages of low structural complexity and small improvement amplitude, which is beneficial to reducing the production cost and improvement cost of the integrated stove 100. Moreover, the rotating shielding member 120 occupies less space on the main body 110, which is beneficial to realizing the miniaturization design of the integrated stove 100.
[0078] As Figure 4 and Figure 5As shown, in some embodiments of the present utility model, optionally, the peripheral side surface of the shielding member 120 includes a slot 122, and the slot 122 includes a first clamping area 1222. The integrated cooking stove 100 further includes: a rotating shaft 130, the rotating shaft 130 is arranged on the inner wall of the flue 1104, and the rotating shaft 130 is clamped with the first clamping area 1222, and the shielding member 120 can rotate around the rotating shaft 130.
[0079] In this embodiment, a rotating shaft 130 is arranged on the inner wall of the flue 1104, and the rotating shaft 130 is specifically a columnar protruding structure.
[0080] Correspondingly, the peripheral side surface of the shielding member 120 is provided with a slot 122, and the shape and size of the slot 122 are adapted to the rotating shaft 130. During the assembly process, the rotating shaft 130 can be inserted into the slot 122. Among them, the slot 122 includes a first clamping area 1222. After the rotating shaft 130 is inserted into the slot 122 from the opening of the slot 122, it can slide towards the first clamping area 1222 until it is successfully clamped into the first clamping area 1222 to complete the assembly. The first clamping area 1222 is clamped and matched with the rotating shaft 130, so as to limit the shielding member 120, so that the shielding member 120 can be fixed at a specified position and retain the rotational freedom of the shielding member 120.
[0081] During use, the user can push the shielding member 120 to make the shielding member 120 rotate around the axis of the rotating shaft 130, so that the shielding member 120 can be smoothly switched to the first position or the second position. Specifically, when the integrated cooking stove 100 is on standby, the shielding member 120 is controlled to rotate to the first position to prevent pollutants and foreign objects from entering the flue 1104, thereby solving the technical problems of poor practicability and safety in the related art.
[0082] Such as Figure 6 、 Figure 7 and Figure 8 As shown, in some embodiments of the present utility model, optionally, the integrated cooking stove 100 further includes: a first limiting member 140, the first limiting member 140 is arranged on the inner wall of the flue 1104. When the shielding member 120 is in the second position, the first limiting member 140 abuts against the shielding member 120, and the first limiting member 140 is used to prevent the shielding member 120 from rotating along the first rotation direction ( Figure 7 The arrow a in shows). Among them, the shielding member 120 located in the first position can be switched to the second position by rotating along the first rotation direction.
[0083] In this embodiment, the shielding member 120 located in the first position can be switched to the second position by rotating along the first rotation direction, that is, the first rotation direction corresponds to the opening direction of the shielding member 120.
[0084] On this basis, a first convex position-limiting component 140 is provided on the inner wall of the flue 1104. The first position-limiting component 140 is provided on the motion track of the shielding component 120 rotating along the first rotation direction. When the shielding component 120 rotates to the specified second position, the first position-limiting component 140 blocks the shielding component 120, so that the shielding component 120 cannot continue to rotate along the first rotation direction, thereby limiting the shielding component 120 to the second position, avoiding excessive rotation of the shielding component 120, ensuring that the smoke inlet 1102 can be maintained at the required opening, and ensuring the efficiency of oil smoke extraction. In this way, the opening of the smoke inlet 1102 can be controlled, and the technical effect of improving the practicality and reliability of the integrated stove 100 is achieved.
[0085] like Figure 5 , Figure 6 and Figure 7 As shown, in some embodiments of the present invention, optionally, the slot 122 further includes a second clamping area 1224 ; when the shielding component 120 is in the second position, the first limiting component 140 is clamped into the second clamping area 1224 .
[0086] In this embodiment, a second snap-fitting area 1224 is further provided in the slot 122 . The second snap-fitting area 1224 is closer to the opening of the slot 122 than the first snap-fitting area 1222 . The shape and size of the second snap-fitting area 1224 match the first limiting component 140 .
[0087] When the shielding component 120 rotates to the second position, the first limiting component 140 is clamped into the second clamping area 1224, and the second clamping area 1224 and the first limiting component 140 are clamped to limit the shielding component 120, thereby reducing the probability of the shielding component 120 being separated from the second position due to external factors such as scratches, collisions, and vibrations, and avoiding the shielding component 120 from being closed by mistake. The shielding component 120 can be kept in the second position, thereby ensuring that the oil smoke can be sucked into the integrated stove 100 by the smoke inlet 1102 when the integrated stove 100 is working, ensuring the oil smoke suction efficiency, and thus achieving the technical effect of improving the practicality and reliability of the integrated stove 100.
[0088] like Figure 3 and Figure 4 As shown, in some embodiments of the present invention, optionally, the shielding component 120 includes: a first cover plate 124, which is rotatably connected to the body 110; a second cover plate 126, which is rotatably connected to the body 110, and the first cover plate 124 and the second cover plate 126 are arranged side by side on the inner side of the smoke inlet 1102.
[0089] In this embodiment, the shielding component 120 includes a plurality of cover plates, and the plurality of cover plates are arranged side by side inside the smoke inlet 1102 .
[0090] Specifically, the multiple cover plates include a first cover plate 124 and a second cover plate 126. The second cover plate 126 and the second cover plate 126 are arranged side by side in the width direction of the smoke inlet 1102. When the first cover plate 124 and the second cover plate 126 rotate to a position flush with the panel, the shielding member 120 is in the first position, and the smoke inlet 1102 is closed by the flattened first cover plate 124 and second cover plate 126.
[0091] Correspondingly, when the first cover plate 124 and the second cover plate 126 rotate to the vertical state, the shielding member 120 is in the second position. At this time, a partial area in the smoke inlet 1102 is exposed, and the flue 1104 can suck oil fume through the exposed area.
[0092] By setting multiple cover plates to jointly open and close the smoke inlet 1102, the size of the rotating structure in the shielding member 120 can be reduced, thereby reducing the coverage area of the rotation trajectory of the shielding member 120, avoiding interference between the shielding member 120 and the grease separation structure and the filtering structure in the flue 1104, and thus reducing the difficulty of the spatial layout of the integrated stove 100.
[0093] As Figure 8 shown, in some embodiments of the present utility model, optionally, the integrated stove 100 further includes: a transmission assembly 150. The transmission assembly 150 is disposed on the main body 110, and the transmission assembly 150 is connected to the first cover plate 124 and the second cover plate 126. The transmission assembly 150 is used to drive the first cover plate 124 and the second cover plate 126 to rotate synchronously, or the transmission assembly 150 is used to drive the first cover plate 124 and the second cover plate 126 to rotate in a mirror image.
[0094] In this embodiment, a transmission assembly 150 is further provided in the main body 110. The transmission assembly 150 is respectively connected to the first cover plate 124 and the second cover plate 126. When one of the first cover plate 124 and the second cover plate 126 rotates under the touch of a user, the transmission member can transmit power to the other of the first cover plate 124 and the second cover plate 126, so that the second cover plate 126 can follow the rotation of the first cover plate 124, or the first cover plate 124 can follow the rotation of the second cover plate 126, enabling the first cover plate 124 and the second cover plate 126 to be opened and closed synchronously, thereby eliminating the cumbersome operation of the user operating multiple cover plates one by one, and further achieving the technical effect of reducing the operation difficulty of the shielding member 120 and providing convenient conditions for the user.
[0095] Specifically, the transmission assembly 150 includes a gear set. The gear set includes multiple gears. Two rotating shafts 130 are respectively connected to two gears in the gear set, and the remaining gears are meshed between the two gears connected to the rotating shafts 130. Through this gear set, the first cover plate 124 and the second cover plate 126 can rotate in a mirror image. For example, when the first cover plate 124 rotates along a first rotation direction, the second cover plate 126 rotates in the opposite second rotation direction (Figure 7 The rotation is shown by arrow b therein.
[0096] Specifically, the transmission assembly 150 includes a gear and a rack. The gear is connected to the rotating shaft 130, and the rack meshes with the gear. Through the structure of the combination of the gear and the rack, the first cover plate 124 and the second cover plate 126 can rotate synchronously, that is, the rotation directions and speeds are the same.
[0097] As Figure 6 、 Figure 7 and Figure 8 As shown in
[0098] In some embodiments of the present invention, optionally, the integrated cooking stove 100 further includes: a second limiting member 160. The second limiting member 160 is arranged on the main body 110. When the shielding member 120 is in the first position, the second limiting member 160 abuts against the shielding member 120. The second limiting member 160 is used to prevent the shielding member 120 from rotating along the second rotation direction; wherein, the shielding member 120 located in the second position can be switched to the first position by rotating along the second rotation direction.
[0099] In this embodiment, the shielding member 120 located in the second position can be switched to the first position by rotating along the second rotation direction, that is, the second rotation direction corresponds to the closing direction of the shielding member 120.
[0100] On this basis, an outwardly protruding second limiting member 160 is further arranged on the inner wall of the flue 1104. The second limiting member 160 is arranged on the movement track of the shielding member 120 rotating along the second rotation direction. When the shielding member 120 rotates to the first position, the second limiting member 160 blocks the shielding member 120, so that the shielding member 120 cannot continue to rotate along the second rotation direction, thereby limiting the shielding member 120 in the first position, preventing the shielding member 120 from over-rotating, ensuring that the smoke inlet 1102 can be closed by the shielding member 120, ensuring that pollutants and foreign objects will not enter the flue 1104 by mistake, and further achieving the technical effects of reducing the cleaning difficulty of the integrated cooking stove 100 and reducing the failure rate of the integrated cooking stove 100.
[0101] As Figure 6 、 Figure 7 and Figure 8 As shown in
[0102] In this embodiment, a magnetic member 170 is provided on the second limiting member 160. The magnetic member 170 can apply a magnetic attraction force to the shielding member 120. When the shielding member 120 rotates to the first position, the shielding member 120 can be held at the first position by this magnetic attraction force.
[0103] Thereby reducing the probability that the shielding member 120 disengages from the first position due to external factors such as scraping, collision, and vibration, avoiding accidental opening of the shielding member 120, ensuring that the smoke inlet 1102 can be closed by the shielding member 120 when the integrated stove 100 is on standby, increasing the difficulty for pollutants and foreign objects to enter the flue 1104, and thus achieving the technical effect of improving the integrated safety and reliability.
[0104] Such as Figure 8 As shown, in some embodiments of the present utility model, optionally, the integrated stove 100 further includes: a metal insert 180. The metal insert 180 is provided inside the shielding member 120. When the shielding member 120 is in the first position, the magnetic member 170 is opposite to the metal insert 180.
[0105] In this embodiment, the shielding member 120 is formed by a non-metallic material. The non-metallic material has a low density. Preparing the shielding member 120 with the non-metallic material can reduce the load on the rotating shaft 130 and the transmission assembly 150, thereby reducing the failure rate of the rotating shaft 130 and the transmission assembly 150.
[0106] The non-metallic material also has the advantage of being corrosion-resistant, which is beneficial to extending the service life of the shielding member 120, enabling the shielding member 120 to effectively close the smoke inlet 1102 for a long time.
[0107] On this basis, a metal insert 180 is embedded inside the shielding member 120. When the shielding member 120 rotates to the first position, the magnetic member 170 can generate a magnetic attraction force on the metal insert 180, so that the shielding member 120 can be held at the first position by this magnetic attraction force, thereby retaining the locking function of the shielding member 120 on the basis of preparing the shielding member 120 with a non-technical material and reducing the probability of accidental opening of the shielding member 120.
[0108] It should be clear that in the claims, the specification and the drawings of the present utility model, the term "a plurality of" means two or more, unless otherwise explicitly defined. The orientation or positional relationship indicated by terms such as "upper", "lower", etc. is based on the orientation or positional relationship shown in the drawings. This is only for more conveniently describing the present utility model and making the description process simpler, rather than indicating or implying that the device or element referred to must have the specific orientation described, be constructed and operated in a specific orientation. Therefore, these descriptions should not be construed as limitations on the present utility model; terms such as "connection", "installation", "fixation", etc. should all be understood in a broad sense. For example, "connection" can be a fixed connection between multiple objects, a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects, or an indirect connection between multiple objects through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to the specific circumstances of the above data.
[0109] In the claims, the specification and the drawings of the present utility model, the description of terms such as "one embodiment", "some embodiments", "specific embodiments", etc. 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 present utility model. In the claims, the specification and the drawings of the present utility model, the schematic representation 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 a suitable manner in any one or more embodiments or examples.
[0110] The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. For those skilled in the art, the present utility model can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An integrated stove, characterized in that: include: A main body, the main body comprising a smoke inlet and a smoke duct; A shielding component, the shielding component is connected to the body and can move relative to the body, and the shielding component includes a first position and a second position; Wherein, when the shielding component is in the first position, the shielding component shields the smoke inlet, and the smoke inlet is closed; When the shielding component is in the second position, the shielding component avoids at least a portion of the smoke inlet, and the smoke inlet is open.
2. The integrated stove according to claim 1, characterized in that: The shielding component is arranged inside the smoke inlet; The shielding component is rotatably connected to the body.
3. The integrated stove according to claim 2, characterized in that: The peripheral side surface of the shielding component includes a slot, and the slot includes a first clamping area. The integrated stove also includes: A rotating shaft is arranged on the inner wall of the flue, and the rotating shaft is clamped with the first clamping area, and the shielding component can rotate around the rotating shaft.
4. The integrated stove according to claim 3, characterized in that: Also includes: a first limiting component, the first limiting component being arranged on the inner wall of the flue, and when the shielding component is in the second position, the first limiting component abuts against the shielding component, and the first limiting component is used to prevent the shielding component from rotating along the first rotation direction; The shielding component located at the first position can be switched to the second position by rotating along the first rotation direction.
5. The integrated stove according to claim 4, characterized in that: The slot also includes a second clamping area; When the shielding component is at the second position, the first limiting component is locked in the second locking area.
6. The integrated stove according to claim 2, characterized in that: The shielding component comprises: a first cover plate, the first cover plate being rotatably connected to the body; The second cover plate is rotatably connected to the body, and the first cover plate and the second cover plate are arranged side by side at the inner side of the smoke inlet.
7. The integrated stove according to claim 6, characterized in that: Also includes: A transmission assembly is disposed on the main body, and the transmission assembly connects the first cover plate and the second cover plate, and is used to drive the first cover plate and the second cover plate to rotate synchronously, or the transmission assembly is used to drive the first cover plate and the second cover plate to rotate in a mirror image.
8. The integrated stove according to any one of claims 1 to 7, characterized in that: Also includes: a second limiting component, the second limiting component being arranged on the main body, and when the shielding component is in the first position, the second limiting component abuts against the shielding component, and the second limiting component is used to prevent the shielding component from rotating along the second rotation direction; The shielding component located at the second position can be switched to the first position by rotating along the second rotation direction.
9. The integrated stove according to claim 8, characterized in that: Also includes: A magnetic member, wherein the magnetic member is disposed on the second limiting member, and the magnetic member is used for attracting the shielding member to stop the shielding member at the first position.
10. The integrated stove according to claim 9, characterized in that: Also includes: A metal insert is disposed in the shielding component. When the shielding component is in the first position, the magnetic component is opposite to the metal insert.