CN111306594B - Integrated stove - Google Patents

Integrated stove Download PDF

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Publication number
CN111306594B
CN111306594B CN202010234405.7A CN202010234405A CN111306594B CN 111306594 B CN111306594 B CN 111306594B CN 202010234405 A CN202010234405 A CN 202010234405A CN 111306594 B CN111306594 B CN 111306594B
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CN
China
Prior art keywords
oil
smoke
assembly
filter assembly
rotary filter
Prior art date
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Application number
CN202010234405.7A
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Chinese (zh)
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CN111306594A (en
Inventor
贾志强
刘凡继
王佳新
宋祖龙
何新奎
蒋济武
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Foshan Shunde Midea Washing Appliances Manufacturing Co Ltd
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Foshan Shunde Midea Washing Appliances Manufacturing Co Ltd
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Application filed by Foshan Shunde Midea Washing Appliances Manufacturing Co Ltd filed Critical Foshan Shunde Midea Washing Appliances Manufacturing Co Ltd
Priority to CN202010234405.7A priority Critical patent/CN111306594B/en
Publication of CN111306594A publication Critical patent/CN111306594A/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/20Removing cooking fumes
    • F24C15/2035Arrangement or mounting of filters

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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)
  • Baking, Grill, Roasting (AREA)

Abstract

本发明公开一种集成灶,该集成灶包括灶台;机头,从所述灶台向上伸出,所述机头形成有油烟通道以及与所述油烟通道连通的油烟入口;旋转过滤组件,所述旋转过滤组件安装于所述油烟通道内用以分离烟油,所述旋转过滤组件开设有多个过烟孔并可绕其自身轴线枢转;以及接油组件,所述接油组件位于所述旋转过滤组件下方用以收集烟油,本发明所提供的集成灶清洗方便,使用寿命长。

The present invention discloses an integrated stove, which includes a stove top; a machine head extending upward from the stove top, wherein the machine head is formed with an oil fume channel and an oil fume inlet connected to the oil fume channel; a rotating filter assembly, wherein the rotating filter assembly is installed in the oil fume channel to separate the oil and smoke, and the rotating filter assembly is provided with a plurality of smoke holes and can pivot around its own axis; and an oil receiving assembly, wherein the oil receiving assembly is located below the rotating filter assembly to collect the oil and smoke. The integrated stove provided by the present invention is easy to clean and has a long service life.

Description

Integrated kitchen range
Technical Field
The invention relates to the technical field of kitchen appliances, in particular to an integrated kitchen range.
Background
The existing integrated kitchen adopts a lower smoke discharging structure, when a fan system in the machine body starts to work, a large amount of oil smoke is sucked into a machine head flue and downwards passes through the fan system, and finally is discharged from an air outlet of the machine body. Therefore, in the smoke sucking and exhausting process, the oil smoke entering the machine head flue almost completely passes through the fan system, and the fan system is seriously polluted after long-term use due to the fact that the user is difficult to clean, so that the working efficiency and the service life of the fan system are seriously affected.
Disclosure of Invention
The invention mainly aims to provide an integrated stove, which aims to greatly reduce the pollution degree of components in a machine body in the smoke sucking and discharging process and realize the collection of filtered oil, thereby ensuring the working efficiency and the service life of the components in the machine body and being convenient for cleaning by users.
To achieve the above object, the present invention provides an integrated cooker comprising:
A cooking bench;
the machine head extends upwards from the cooking bench and is provided with an oil smoke channel and an oil smoke inlet communicated with the oil smoke channel;
The rotary filter assembly is arranged in the oil smoke channel and used for separating tobacco tar, is provided with a plurality of smoke passing holes and can pivot around the axis of the rotary filter assembly, and
The oil receiving assembly is positioned below the rotary filtering assembly and used for collecting tobacco tar.
Optionally, the rotary filter assembly is disposed obliquely from top to bottom.
In this embodiment, the inclined rotary filter member makes it have a large contact area, thereby improving the filtering efficiency.
Optionally, the rotary filtering component is provided with at least two, at least two rotary filtering components are arranged at intervals in the longitudinal length direction of the oil smoke channel, a flow guiding piece is further arranged between two adjacent rotary filtering components, and the flow guiding piece guides the oil smoke to the rotary filtering components located on two sides of the flow guiding piece.
In this embodiment, the fume is directed to the rotary filter assembly by the deflector so that the fume is filtered more fully.
Optionally, the ends of two adjacent rotary filter assemblies are located below the flow guide.
In this embodiment, the baffle may protect the end structure of the rotary filter pack.
Optionally, the guide member includes a guide plate and a mounting plate, the mounting plate is located below the guide plate, the guide plate is configured in a pointed shape protruding upward, and the mounting plate is formed with a mounting structure for mounting an end portion of the rotary filter assembly.
In this embodiment, the deflector enables the mounting of the end of the rotary filter assembly, so that the overall structure is simplified.
Optionally, connect oily subassembly includes leads the oil groove and connects oily box, lead the oil groove connect in the inner wall of oil smoke passageway and from last to the slope setting down, connect oily box to be located lead the bottom of oil groove.
In this embodiment, through the cooperation of oil guide groove and oil receiving box, realize that tobacco tar collects, compact structure easily washs.
Optionally, two bottom ends of the oil guiding grooves are provided with an oil receiving box, and the oil receiving box is located below the guiding piece.
In this embodiment, two oil guide grooves are converged into one oil receiving box, so that parts can be reduced, and air flow in the oil smoke channel is facilitated.
Optionally, the oil receiving box can be detached from the oil smoke channel.
In this embodiment, the oil receiving box can be detached for cleaning, and cleaning is more convenient.
Optionally, the oil guiding grooves are installed on the front and rear inner walls of the oil fume channel below each rotary filter assembly.
In this embodiment, the design of the two oil guiding grooves enables the tobacco tar to be collected more thoroughly and efficiently.
Optionally, the machine head comprises a back coaming, side coamings respectively connected to two opposite sides of the back coaming, and smoke baffle plates with two sides detachably connected with the two side coamings respectively, wherein the upper end of each smoke baffle plate is provided with the oil smoke inlet;
the rotary filter assembly is mounted to the back panel.
In this embodiment, after opening the smoke baffle, the structure in the oil smoke passageway can be exposed, facilitating the disassembly of the oil receiving box and the cleaning of the internal structure.
Optionally, the rotary filter assembly includes a filter body that is cylindric and is located a plurality of guide vanes of the drum intracavity of filter body, the perisporium of filter body is formed with a plurality of the cigarette hole is crossed, a plurality of guide vanes along circumference interval in proper order set up on the interior perisporium of filter body and follow the drum central axis direction of filter body extends.
In this embodiment, the setting of guide vane realizes that rotatory filter component passes through the air current drive rotation in the oil smoke passageway, simple structure, convenient to use.
Optionally, the integrated kitchen comprises a driving motor for driving the rotary filter assembly to rotate, and/or the rotating speed range of the rotary filter assembly is greater than or equal to 200r/min.
In this embodiment, the rotary filter assembly is easily installed into an integrated oven, and a variety of modes of electrically driven rotation and self-rotation can be achieved.
According to the technical scheme, the rotary filter assembly is arranged in the oil smoke channel in the machine head of the integrated kitchen, and the oil receiving assembly is arranged below the rotary filter assembly, so that when the integrated kitchen smokes and discharges smoke, the oil smoke sucked into the oil smoke channel enters the machine body after entering the oil receiving assembly through the filtration of the rotary filter assembly, the oil smoke entering the machine body is greatly reduced, the pollution degree of parts in the machine body is also reduced, and the working efficiency and the service life of the machine body are ensured.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and other drawings may be obtained according to the structures shown in these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of an integrated kitchen range in an embodiment of the present invention;
FIG. 2 is a side cross-sectional view of the integrated cooktop of FIG. 1, without the rotary filter assembly and oil receiving assembly;
FIG. 3 is a schematic rear view of the integrated cooktop of FIG. 1 showing the air duct assembly;
FIG. 4 is a schematic view of the integrated cooking stove of FIG. 1 with the smoke baffle removed;
FIG. 5 is a schematic view of an assembly structure of an oil guide groove and a smoke baffle in the integrated cooker of FIG. 1;
FIG. 6 is a front view of the integrated cooktop of FIG. 1 with the smoke baffle removed;
FIG. 7 is a schematic view of the assembly of the rotary filter assembly and the oil receiving assembly of the integrated burner of FIG. 1;
fig. 8 is a perspective view of a oil guide groove in the integrated cooker of fig. 1;
FIG. 9 is a side cross-sectional view of the integrated cooktop of FIG. 1;
FIG. 10 is an enlarged schematic view of FIG. 9A;
Fig. 11 is a side cross-sectional view of a rotary oil filter in the integrated cooker of fig. 1.
Reference numerals illustrate:
Reference numerals Name of the name Reference numerals Name of the name
1 Integrated kitchen range 590 Oil smoke inlet
10 Fuselage body 70 Rotary filter assembly
11 Rack 710 Filter element body
111 Air outlet 730 End cap
13 Integrated functional part 750 Mounting bracket
15 Air duct assembly 770 Guide vane
17 Oil collecting box 80 Flow guiding piece
151 Volute casing 81 Deflector plate
153 Impeller wheel 82 Mounting plate
155 Motor with a motor housing 821 First plate body
30 Cooking bench 822 Second plate body
50 Machine head 823 Mounting structure
510 Rear coaming 90 Oil receiving assembly
530 Side wall plate 910 Oil guide groove
550 Smoke baffle 930 Oil receiving box
570 Top plate 950 Placement bracket
580 Lampblack channel
The achievement of the objects, functional features and advantages of the present invention will be further described with reference to the accompanying drawings, in conjunction with the embodiments.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
It should be noted that all the directional indicators in the embodiments of the present invention are only used to explain the relative positional relationship, movement conditions, etc. between the components in a specific posture, and if the specific posture is changed, the directional indicators are correspondingly changed.
In the present invention, unless explicitly specified and limited otherwise, the terms "connected," "fixed," and the like are to be construed broadly, and for example, "fixed" may be fixedly connected, detachably connected, or integrally formed, mechanically connected, electrically connected, directly connected, indirectly connected via an intervening medium, or in communication between two elements or in an interaction relationship between two elements, unless otherwise explicitly specified. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art according to the specific circumstances.
Furthermore, descriptions such as those referred to as "first," "second," and the like, are provided for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implying an order of magnitude of the indicated technical features in the present disclosure. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present invention.
The present invention proposes an integrated oven 1.
Referring to fig. 1 to 4 in combination, in the embodiment of the present invention, the integrated cooker 1 includes a main body 10, a cooking bench 30, a head 50, a rotary filter assembly 70, and an oil receiving assembly 90.
The fuselage 10 includes a frame 11, with integrated functions 13 and a duct assembly 15 disposed within the frame 11. The integrated function part 13 and the air duct assembly 15 are generally arranged back and forth, and the integrated function part 13 may include a dishwasher part, a sterilizing cabinet part, a locker part, a steamer part, an oven part, or a microwave oven part, etc., so that functions of the integrated cooker 1 are diversified. The air duct assembly 15 comprises a volute 151 formed with an air duct, an impeller 153 installed in the volute 151 and a motor 155 for driving the impeller 153 to rotate, the frame 11 is provided with an air outlet 111 connected with the air duct, the air outlet 111 is arranged on the bottom side wall of the frame 11, the air outlet 111 is used for discharging oil smoke out of the machine body 10, and the air duct assembly 15 is used for generating wind power for smoking and exhausting smoke.
The cooking bench 30 is positioned at the upper part of the frame 11, and the head 50 protrudes upward from the upper part of the frame 11 and from one side of the cooking bench 30. The handpiece 50 includes a handpiece housing including a back shroud 510, side panels 530 respectively connected to opposite sides of the back shroud 510, a smoke baffle 550 having opposite sides detachably connected to the side panels 530 respectively, and a top plate 570 connected to the top of the back shroud 510, wherein the upper end of the smoke baffle 550, the side panels 530, and the top plate 570 define a smoke inlet 590 above the cooking bench 30, and the back shroud 510, the smoke baffle 550, and the side panels 530 enclose a smoke channel 580 defining an air duct and the smoke inlet 590 in the air duct assembly 15.
The rotary filter assembly 70 is installed in the smoke channel 580 for separating the smoke and oil, the rotary filter assembly 70 is provided with a plurality of smoke passing holes and can pivot around the self axis, and the oil receiving assembly 90 is located below the rotary filter assembly 70 for collecting the smoke and oil.
It should be noted that, the oil smoke inlet 590 is generally provided with a primary oil smoke filter screen, and the rotary filter assembly 70 in the present exemplary embodiment is a filter structure located at a later stage of the primary oil smoke filter screen.
In the working process of the integrated kitchen 1, under the drive of the air duct assembly 15, the integrated kitchen 1 generates suction force to suck external air flow into the oil smoke channel 580 through the oil smoke inlet 590, so that the oil smoke generated in the cooking operation process of the kitchen bench 30 enters the oil smoke channel after being filtered by the primary filter at the oil smoke inlet 590 and further filtered and separated by the rotary filter assembly 70, the oil smoke generated at the two positions is collected by the oil receiving assembly 90 below the rotary filter assembly 70, the oil content of the oil smoke entering the air duct assembly 15 through the two filters is greatly reduced, and the oil collecting box 15 is arranged in the air duct assembly 15 and is arranged at the bottom of the rack 11, and the oil collecting box 15 is used for collecting the oil smoke filtered and separated by the oil smoke entering the air duct again. Further, the smoke baffle 550 and the side wall 530 of the present application are detachably connected, specifically, hooks may be provided on the edge of the smoke baffle 550, and a hanger may be provided on the side wall 530, so that the smoke baffle 550 can be hung and installed. After a longer period of use, the user may be able to directly operatively clean the oil assembly 90 by removing the smoke baffle 550.
According to the technical scheme, the rotary filter assembly 70 is arranged in the oil smoke channel 580 in the machine head 50 of the integrated kitchen 1, and the oil receiving assembly 90 is arranged below the rotary filter assembly 70, so that when the integrated kitchen 1 smokes and discharges smoke, the oil smoke sucked into the oil smoke channel 580 enters the machine body 10 after being filtered by the rotary filter assembly 70 and enters the oil receiving assembly 90, the oil smoke entering the machine body 10 is greatly reduced, the pollution degree of components in the machine body 10 is also reduced, and the working efficiency and the service life of the machine are ensured.
In some embodiments, referring to fig. 1to 6, the rotary filter assembly 70 is disposed obliquely from top to bottom, wherein the rotary filter assembly 70 is integrally formed in an elongated shape, and by disposing it obliquely, the contact area between the rotary filter assembly 70 and the oil smoke can be increased, so that the filtering effect is better, and it can be appreciated that the rotary filter assembly 70 of the present application can be disposed horizontally under the condition that the filtering requirement can be satisfied.
Further, at least two rotary filter assemblies 70 are arranged at intervals in the longitudinal length direction of the oil smoke channel 580, and a flow guiding member 80 is further arranged between two adjacent rotary filter assemblies 70, and the flow guiding member 80 guides the oil smoke to the rotary filter assemblies 70 located at two sides of the flow guiding member 80. The number of the rotary filter assemblies 70 may be set to correspond to the number of the cooking tops 30, as in the case of two cooking tops 30 in the drawings, the number of the rotary filter assemblies 70 may be set to be two, and of course, the number of the rotary filter assemblies 70 may be one or two when the number of the cooking tops 30 is one. The preferred arrangement mode of the rotary filter assemblies 70 according to the application, which corresponds to the number of cooking tops on the cooking bench 30, has the advantages that the span of a single rotary filter assembly 70 is not too long, so that the structural strength of the rotary filter assembly 70 is ensured to be large, in addition, in the actual use process, two cooking tops can not be used simultaneously, therefore, when only one cooking top is actually used, more oil smoke is generated at the position, the rotary speed of the rotary filter assembly 70 corresponding to the cooking top can be matched with the rotary speed through program control, and the rotary speed of the other rotary filter assembly 70 can be properly reduced, so that the oil filtering requirement can be met, and meanwhile, the energy source can be saved. Further, the present application also provides the two rotary filter units 70 to be spaced apart, i.e. the projections of the two rotary filter units 70 on the horizontal plane do not overlap, which is advantageous in that the filtered oil generated when the two rotary filter units 70 are operated does not fall down onto the other rotary filter unit 70.
Further, the ends of adjacent rotary filter assemblies 70 are located below the baffle 80. Because the end of the selective filter assembly 70 is designed with a structure such as a bearing and an oil seal, etc. which can rotate, open fire can be generated during cooking in the process of using the integrated kitchen, the open fire can enter the oil smoke channel 580 under the suction effect, and the open fire can be guided to the rotary filter assemblies 70 on two sides by the guide members 80 by extending the end of the rotary filter assembly 70 below the guide members 80, and the open fire can not be directly burnt on the structure of the end of the rotary filter assembly 70, so the guide members 80 can also have the protection effect on the rotary filter assembly 70.
Referring to fig. 7, specifically, the flow guiding member 80 includes a flow guiding plate 81 and a mounting plate 82, wherein the mounting plate is located below the flow guiding plate, the flow guiding plate 81 may be formed by two plate bodies into an upwardly protruding spike shape, and the flow guiding plate 81 is integrally formed into an inverted V-shape, and of course, the flow guiding plate 81 may also be formed by bending one plate into an upwardly protruding spike shape, wherein an included angle range of the inverted V-shape formed by the flow guiding plate 81 may be 30 to 60 degrees. The front and rear sides of the deflector 80 are respectively abutted against the inner walls of the rear wall plate 510 and the smoke baffle 550 of the head 50 so that the smoke can move only to both sides thereof along the deflector 81. The mounting plate 82 includes a first plate body 821 bent inward and a second plate body 822 extending obliquely downward, and the second plate body 822 is formed with a mounting structure 823 for mounting the end of the rotary filter module, wherein the mounting structure is a groove structure capable of accommodating the end of the rotary filter module 70, and a structure such as a bearing or an oil seal located at the end of the rotary filter module 70 is embedded in the groove of the mounting structure. In this way, the installation of the end of the rotary filter 70 is simultaneously realized by the guide 80 through the mounting plate 82, or the guide 80 is designed to be integrated with the installation structure of the end of the rotary filter 70, so that the structure of the range hood can be further simplified. Further, a skirt may extend from the edge of the baffle 81 and/or the mounting plate 82, and a threaded hole is formed in the skirt, so that the entire baffle 80 may be fixedly connected to the inner wall of the oil smoke channel 580 in a screw connection manner, and thus the installation and the disassembly are also convenient.
Referring to fig. 5 to 8, the oil receiving assembly 90 includes an oil guiding groove 910 and an oil receiving box 930, the oil guiding groove 910 is connected to an inner wall of the oil smoke channel 580 and is disposed obliquely from top to bottom, and the oil receiving box 930 is located at a bottom end of the oil guiding groove 910. In the present application, two adjacent rotary filter assemblies 70 are arranged in a V-shape, and an oil guiding groove 910 is disposed below one rotary filter assembly 70, and the inclination extending trend of the oil guiding groove 910 is similar to that of the rotary filter assembly 70, so that the bottom ends of the two oil guiding grooves 910 will be close to each other, and an oil receiving box 930 can collect the tobacco tar in the two oil guiding grooves 910, so that the whole structure is simplified, and it can be understood that two adjacent rotary filter assemblies 70 can also be arranged in a splayed shape.
Furthermore, on the basis of receiving oil from the two oil guide grooves 910 through one oil receiving box 930, the oil receiving box 930 of the application is also positioned below the guide member 80, and as can be seen from the above, the guide member 80 above is used for shunting oil smoke to the rotary filter assemblies 70 on two sides of the guide member, so that the airflow below the guide member 80 tends to be smaller, even if the oil receiving box 930 is positioned in the oil smoke channel 580, through the cooperation, the oil receiving box 930 does not greatly block the airflow in the oil smoke channel 580, wind resistance is much smaller, power can be improved, and open fire sucked into the oil smoke channel 580 in the cooking process is not easy to flow towards the oil receiving box 930 through the blocking of the guide member 80, so that the risk of igniting the oil smoke collected in the oil receiving box 930 can be reduced. In order to further reduce wind resistance and improve collection efficiency of oil smoke, oil guide grooves 910 are installed on both inner walls of the oil smoke channel 580 corresponding to the lower side of one rotary filter assembly 70. That is, in this embodiment, an air gap is formed between the two oil guide grooves 910, so that the upper rotary filter assembly 70 can sufficiently receive the generated tobacco tar without obstructing the air flow.
In order to facilitate cleaning of filtered tobacco tar, the application provides that the oil receiving box 930 can be detached from the oil smoke channel 580 on the basis that the smoke baffle 550 is designed to be detachable in the above description, specifically, the oil receiving assembly 90 further comprises a placing bracket 950 fixedly connected to the inner wall of the tobacco tar channel, and the oil receiving box 930 can be inserted into the placing bracket 950.
In some embodiments, the rotary filter assembly 70 is mounted to the back wall plate 510, and preferably, the rotary filter assembly 70 and the back wall plate 510 may be detachably connected, so that the rotary filter assembly 70 may be detached for cleaning in the case of opening the smoke barrier 550. In order to realize the self-pivoting of the rotary filter assembly 70, the back wall plate 510 is detachably connected with a mounting bracket 750, the mounting bracket 750 is provided with a pivot or a bearing or a shaft hole, the end part of the rotary filter assembly 70 comprises an end cover 730 which is in rotation fit with the pivot or the bearing or the shaft hole on the mounting bracket 750, and a filter body 710 connected with the end cover 730, and a plurality of smoke through holes are formed in the filter body 710, wherein the mounting bracket 750 can be used for mounting one end part of the rotary filter assembly 70, and the other end part of the rotary filter assembly 70 is mounted by the guide 80.
Referring to fig. 9 to 11, the rotary filter assembly 70 of the present application may be self-rotated by air flow in the oil smoke channel 580, or may be rotated by providing a driving motor 155 for driving the rotary filter assembly 70 to rotate in the integrated cooker 1. In the self-rotation scheme driven by the airflow in the oil smoke channel 580, the filter body 710 may be, for example, a cylinder in the drawing, a plurality of guide vanes 770 are disposed in a cavity of the cylinder filter body 710, a plurality of guide members 80 are mounted on the end cap 730, and the plurality of guide vanes 770 are sequentially disposed on an inner peripheral wall of the cylinder filter body 710 at intervals along a circumferential direction and extend along a central axis direction of the cylinder filter body 710. During operation, the soot passes through the soot holes and acts on the guide vanes 770 to push the entire rotary filter assembly 70 to rotate. In another self-rotating version, the filter body 710 may not be cylindrical, such as in the configuration of a wind wheel and the rotary filter assembly 70 may have a windward driving surface formed therein for driving the rotary filter assembly 70 to rotate under the impact of an air flow.
In the case of a rotation driven by the drive motor 155, the motor 155 in the air duct assembly 15 may be used to connect to the rotary filter assembly 70 via a transmission and pulleys. Of course, a separate motor may be additionally provided for driving. It should be noted that, when the rotation speed is too slow, a better oil smoke separation effect cannot be achieved, and the separated tobacco tar cannot be collected by the oil guide groove 910 well. Therefore, in order to enhance the oil smoke separation and collection effect as much as possible, the rated rotation speed of the rotary filter assembly 70 is preferably set to 200r/min or more. The oil smoke in the oil smoke can be fully separated, and can be thrown to the inner wall of the oil smoke channel 580, so that the oil smoke separation and collection effects can be better.
In summary, according to the present invention, by disposing the rotary filter assembly 70 in the oil smoke channel 580, the oil smoke generated during cooking of the cooking bench 30 enters the oil smoke channel 580 from the oil smoke inlet 590 as shown by the arrow direction in the drawing, the flow guide 80 further guides the oil smoke to the rotary filter assembly 70, the air flow direction of the oil smoke is changed under the rotation of the rotary filter assembly 70, most of the oil smoke is separated and thrown to the inner wall of the oil smoke channel 580, the oil smoke flows into the oil guide groove 910 along the inner wall of the oil smoke channel 580, and further flows into the oil receiving box 930, and the user can take out the oil receiving box 930 without bending down operation because the oil receiving box 930 is located in the machine head 50, and cleaning is convenient. The filtered oil fume only contains a small amount of residual oil dirt, so that the influence on the air duct assembly 15 is small, and the service life of the integrated kitchen range 1 can be prolonged. The oil smoke is further filtered and separated by a filter screen at the air outlet 111 of the air duct assembly 15 to generate a small amount of oil smoke, the oil smoke is discharged into an oil collecting box 17 arranged at the bottom of the frame 11, and finally the oil smoke after being sufficiently filtered is discharged out of the integrated kitchen 1,
The foregoing description is only of the preferred embodiments of the present invention and is not intended to limit the scope of the invention, and all equivalent structural changes made by the description of the present invention and the accompanying drawings or direct/indirect application in other related technical fields are included in the scope of the invention.

Claims (10)

1.一种集成灶,其特征在于,包括:1. An integrated stove, comprising: 机身,包括机架,所述机架内设置有风道组件,所述风道组件用于产生吸烟排烟的风力;所述风道组件内的风道中设置有滤网并在所述机架底部安装有集油盒;The machine body comprises a frame, wherein an air duct assembly is arranged in the frame, and the air duct assembly is used to generate wind force for smoking and exhausting smoke; a filter is arranged in the air duct in the air duct assembly, and an oil collecting box is installed at the bottom of the frame; 灶台;Cooking range; 机头,从所述灶台向上伸出,所述机头形成有油烟通道以及与所述油烟通道连通的油烟入口;A machine head extending upward from the stove, wherein the machine head is formed with an oil fume passage and an oil fume inlet communicating with the oil fume passage; 旋转过滤组件,所述旋转过滤组件安装于所述油烟通道内用以分离烟油,所述旋转过滤组件开设有多个过烟孔并可绕其自身轴线枢转;所述旋转过滤组件从上至下倾斜设置;以及A rotating filter assembly, which is installed in the oil smoke channel to separate the oil smoke, and has a plurality of smoke holes and can pivot around its own axis; the rotating filter assembly is tilted from top to bottom; and 接油组件,所述接油组件位于所述旋转过滤组件下方用以收集烟油。The oil receiving assembly is located below the rotary filter assembly and is used to collect smoke oil. 2.如权利要求1所述的集成灶,其特征在于,所述旋转过滤组件设置有至少两个,所述至少两个旋转过滤组件在所述油烟通道的纵向长度方向间隔排列,相邻的两个所述旋转过滤组件之间还设置有导流件,所述导流件将油烟导向位于其两侧的旋转过滤组件。2. The integrated stove according to claim 1 is characterized in that there are at least two rotating filter assemblies, and the at least two rotating filter assemblies are arranged at intervals in the longitudinal length direction of the oil fume channel, and a guide member is also provided between two adjacent rotating filter assemblies, and the guide member guides the oil fume to the rotating filter assemblies located on both sides thereof. 3.如权利要求2所述的集成灶,其特征在于,相邻的两所述旋转过滤组件的端部位于所述导流件的下方。3. The integrated stove as described in claim 2 is characterized in that the ends of two adjacent rotating filter assemblies are located below the guide member. 4.如权利要求3所述的集成灶,其特征在于,所述导流件包括导流板和安装板,所述安装板位于所述导流板下方,所述导流板构造成向上凸出的尖角状,所述安装板形成有用以安装所述旋转过滤组件的端部的安装结构。4. The integrated stove as described in claim 3 is characterized in that the guide member includes a guide plate and a mounting plate, the mounting plate is located below the guide plate, the guide plate is configured to be an upwardly protruding pointed shape, and the mounting plate forms a mounting structure for mounting the end of the rotary filter assembly. 5.如权利要求2所述的集成灶,其特征在于,所述接油组件包括导油槽和接油盒,所述导油槽连接于所述油烟通道的内壁并从上至下倾斜设置,所述接油盒位于所述导油槽的底端,且所述接油盒位于所述导流件的下方。5. The integrated stove as described in claim 2 is characterized in that the oil receiving assembly includes an oil guide groove and an oil receiving box, the oil guide groove is connected to the inner wall of the oil fume channel and is inclined from top to bottom, the oil receiving box is located at the bottom end of the oil guide groove, and the oil receiving box is located below the guide member. 6.如权利要求5所述的集成灶,其特征在于,两个所述导油槽的底端设置有一接油盒。6. The integrated stove as described in claim 5 is characterized in that an oil receiving box is provided at the bottom end of the two oil guide grooves. 7.如权利要求5所述的集成灶,其特征在于,所述接油盒能够从所述油烟通道内拆卸出来。7. The integrated stove as described in claim 5 is characterized in that the oil collecting box can be removed from the oil fume passage. 8.如权利要求1、3至7中任意一项所述的集成灶,其特征在于,所述机头包括后围板、分别连接于所述后围板相对两侧的侧围板、两侧分别与两所述侧围板可拆卸连接的挡烟板,所述挡烟板的上端形成有所述油烟入口;8. The integrated stove according to any one of claims 1, 3 to 7, characterized in that the head comprises a rear panel, side panels respectively connected to opposite sides of the rear panel, and smoke shields respectively detachably connected to the two side panels on both sides, and the upper end of the smoke shield is formed with the oil fume inlet; 所述旋转过滤组件安装于所述后围板。The rotary filter assembly is mounted on the rear panel. 9.如权利要求1、3至7中任意一项所述的集成灶,其特征在于,所述旋转过滤组件包括呈圆筒状的过滤件本体和位于所述过滤件本体的圆筒腔内的多个导流叶片,所述过滤件本体的周壁形成有多个所述过烟孔,多个所述导流叶片沿周向依次间隔设置在所述过滤件本体的内周壁上且沿所述过滤件本体的圆筒中心轴线方向延伸。9. The integrated stove as described in any one of claims 1, 3 to 7 is characterized in that the rotary filter assembly includes a cylindrical filter body and a plurality of guide blades located in the cylindrical cavity of the filter body, a plurality of smoke holes are formed on the circumferential wall of the filter body, and the plurality of guide blades are arranged on the inner circumferential wall of the filter body at intervals in sequence along the circumferential direction and extend along the cylindrical center axis direction of the filter body. 10.如权利要求1、3至7中任意一项所述的集成灶,其特征在于,所述集成灶包括用于驱动所述旋转过滤组件旋转的驱动电机,和\或,所述旋转过滤组件的转速范围大于或等于200r/min。10. The integrated stove according to any one of claims 1, 3 to 7, characterized in that the integrated stove comprises a driving motor for driving the rotating filter assembly to rotate, and/or the rotation speed range of the rotating filter assembly is greater than or equal to 200r/min.
CN202010234405.7A 2020-03-27 2020-03-27 Integrated stove Active CN111306594B (en)

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CN114322007B (en) * 2020-09-28 2024-11-08 青岛海尔智慧厨房电器有限公司 Integrated stove
CN114322006B (en) * 2020-09-28 2025-02-28 青岛海尔智慧厨房电器有限公司 Filter device, range hood and integrated stove including the filter device
CN113217963A (en) * 2021-05-24 2021-08-06 绍兴市永辉电器有限公司 Integrated kitchen system
CN117109037A (en) * 2022-05-16 2023-11-24 芜湖美的智能厨电制造有限公司 Integrated stove

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