Integrated cooker
By placing the air box module horizontally at the bottom of the casing and installing the fan using a detachable sliding rail, the problems of low space utilization and cumbersome maintenance in integrated stoves are solved, achieving efficient space utilization and convenient maintenance.
Patent Information
- Application Number
- CN202311180623.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-13
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-09-13
AI Technical Summary
The vertical placement of the air box components in existing integrated stoves results in low space utilization and makes maintenance cumbersome and costly.
The air box module is placed horizontally at the bottom of the chassis, and the fan can be detached and installed via a slide rail assembly. The air duct module is equipped with a smoke extraction duct that connects to the smoke exhaust module. The fan can be detached separately from the front of the chassis.
It improves the space utilization of integrated stoves, simplifies the maintenance process, and reduces maintenance costs.
Smart Images

Figure CN117128557B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to an integrated cooker. BACKGROUND
[0002] A large amount of oil fume is generated in the cooking process, and if the user is in the oil fume environment for a long time, the user's health will be damaged, and the oil fume generated with the cooking will be attached to the kitchen utensils and walls, which is difficult to clean, therefore, most families will install an oil smoke exhauster to alleviate this situation. The integrated cooker, as a kitchen appliance integrating an oil smoke exhauster, a cooker, a disinfection cabinet, a steaming oven and other functions, has the advantages of saving space, good oil smoke extraction effect, energy saving, low consumption, environmental protection and the like, and becomes the first choice of most families when decorating.
[0003] The wind box assembly of the prior art integrated cooker is mostly of a back-mounted structure, that is, the wind box assembly is vertically placed at the rear of the cabinet. This structure has the following defects:
[0004] 1) The wind box assembly almost occupies the entire space below the cooker, resulting in low space utilization of the integrated cooker and causing waste of kitchen space;
[0005] 2) When the fan needs to be repaired due to failure, the repair personnel also need to move the integrated cooker as a whole and repair the fan at the rear of the cabinet, the repair process is relatively cumbersome, the workload of the repair personnel is large, and the repair cost is high.
[0006] Therefore, it is urgent to provide an integrated cooker to solve the above problems. SUMMARY
[0007] The purpose of the present application is to provide an integrated cooker which can improve the space utilization of the integrated cooker and facilitate maintenance.
[0008] As conceived above, the technical solution adopted by the present application is:
[0009] An integrated cooker comprises:
[0010] a cabinet;
[0011] a duct module vertically arranged in the cabinet, wherein a smoke suction duct is arranged through the duct module;
[0012] a wind box module horizontally arranged at the inner bottom of the cabinet, wherein the wind box module comprises a box body and a fan detachably arranged in the box body, and the box body is provided with a smoke inlet communicated with the outlet of the smoke suction duct;
[0013] a smoke exhaust module, wherein the inlet of the smoke exhaust module is communicated with the outlet of the fan.
[0014] As a preferred scheme of the integrated cooker provided by the present application, the wind box module further comprises a slide rail assembly, one side of the box body is provided with a taking and placing opening, the slide rail assembly comprises a fixed slide rail and a movable slide rail in sliding cooperation, the fixed slide rail is arranged at the bottom of the box body, and the movable slide rail is arranged at the bottom of the fan, and the fan can be taken and placed from the taking and placing opening.
[0015] As a preferred scheme of the integrated cooker provided by the present application, the slide rail assembly further comprises a locking component configured to lock the relative position of the fixed slide rail and the movable slide rail.
[0016] As a preferred scheme of the integrated cooker provided by the present application, the fixed slide rail is provided with a first locking hole, and the movable slide rail is provided with a second locking hole corresponding to the first locking hole.
[0017] The locking component comprises a locking pad, a locking pin and a locking elastic piece, the movable slide rail is provided with the locking pad at the position of the second locking hole, the locking pad is provided with a locking through hole opposite to the second locking hole, the locking through hole is in a stepped shape, the locking pin is arranged in the locking through hole, the two ends of the locking elastic piece are respectively abutted on the locking pin and the stepped surface of the locking through hole, and the locking pin has a locking position arranged in the first locking hole and the second locking hole and an unlocking position arranged in the second locking hole.
[0018] As a preferred scheme of the integrated cooker provided by the present application, the bottom of the air duct module is capable of being inserted into the smoke inlet.
[0019] As a preferred scheme of the integrated cooker provided by the present application, the width of the air duct module in the left-right direction gradually decreases from top to bottom.
[0020] As a preferred scheme of the integrated cooker provided by the present application, the smoke exhaust module comprises an expansion port connector seat, a fixed seat and an exhaust pipe assembly which are arranged in a split mode and are sequentially connected, and the end of the expansion port connector seat away from the fixed seat is connected with the outlet flange of the fan.
[0021] As a preferred scheme of the integrated cooker provided by the present application, the box body is provided with an oil collecting port, the oil collecting port is located below the smoke outlet of the box body, the bottom of the fixed seat is provided with an oil collecting channel, and the two ends of the oil collecting channel are respectively connected with the oil collecting port and the exhaust pipe assembly.
[0022] As a preferred scheme of the integrated cooker provided by the present application, the fixed seat comprises a first main body part and an inlet end and an outlet end connected to two ends of the first main body part respectively, the inlet end is connected to the diffuser joint seat, the outlet end is connected to the exhaust pipe assembly, and the bottom surface of the first main body part is gradually inclined upward in the direction away from the fan; and / or
[0023] The diffuser joint seat comprises a second main body part and a first connecting end and a second connecting end connected to two ends of the second main body part respectively, the first connecting end is communicated with the outlet of the fan, and the second connecting end is connected to the inlet of the fixed seat; and the bottom surface of the second main body part is gradually inclined upward in the direction away from the fan.
[0024] As a preferred scheme of the integrated cooker provided by the present application, the exhaust pipe assembly comprises:
[0025] A connecting seat, the first end of the connecting seat is in a rectangular cross-sectional shape, the first end of the connecting seat is connected to the fixed seat, and the second end of the connecting seat is in a circular cross-sectional shape;
[0026] An exhaust pipe connected to the second end of the connecting seat.
[0027] The present application has the following beneficial effects:
[0028] The present application provides an integrated cooker, which comprises a cabinet, an air duct module, an air box module and a smoke exhaust module, the air duct module is vertically arranged in the cabinet, an air suction duct is arranged through the air duct module, and the air suction duct is communicated with an air suction inlet on the cabinet; the air box module is horizontally arranged on the inner bottom of the cabinet, the air box module comprises a box body and a fan which is detachably arranged in the box body, and an air suction inlet is arranged on the box body and communicated with the outlet of the air suction duct; the smoke exhaust module is arranged on the cabinet, and the inlet of the smoke exhaust module is communicated with the air outlet of the box body. When a user cooks, the fan is started to generate negative pressure in the air box module and the air duct module, so that the oil fume is sequentially exhausted from the air suction duct, the air box module and the smoke exhaust module into a public smoke exhaust channel, thereby purifying the air in the kitchen; by horizontally arranging the air box module on the inner bottom of the cabinet and detachably arranging the fan in the box body, on the one hand, since the air box module is arranged on the inner bottom of the cabinet, the air duct module does not need to accommodate the air box module, and the width of the air suction duct arranged in the air duct module only needs to ensure that the oil fume can pass through, thereby ensuring that there is sufficient space in the cabinet to install functional components such as a sterilization cabinet and a steaming oven, further improving the volume of the functional components and improving the space utilization of the integrated cooker; on the other hand, when the fan needs to be repaired, the fan can be individually detached from the front of the cabinet, without the need to move the integrated cooker as a whole, thereby saving time and effort and reducing the repair cost. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a structural schematic view of an integrated cooker provided by an embodiment of the present application;
[0030] Figure 2 is a partial cross-sectional schematic view of an integrated cooker provided by an embodiment of the present application;
[0031] Figure 3 is a structural schematic view of an integrated cooker showing internal structure provided by an embodiment of the present application;
[0032] Figure 4 is an exploded schematic view of a wind channel module and a wind box module provided by an embodiment of the present application;
[0033] Figure 5 is an exploded schematic view of a wind box module provided by an embodiment of the present application;
[0034] Figure 6 is a structural schematic view of a box body showing internal structure provided by an embodiment of the present application;
[0035] Figure 7 is a structural schematic view of a fan provided by an embodiment of the present application;
[0036] Figure 8 is a structural schematic view of a fixed slide rail provided by an embodiment of the present application;
[0037] Figure 9 is an exploded schematic view of a fixed slide rail provided by an embodiment of the present application;
[0038] Figure 10 is an exploded schematic view of a movable slide rail provided by an embodiment of the present application;
[0039] Figure 11 is a partial structural schematic view of a movable slide rail when a locking pin is in a locking position provided by an embodiment of the present application;
[0040] Figure 12 is a partial structural schematic view of a movable slide rail when a locking pin is in an unlocking position provided by an embodiment of the present application;
[0041] Figure 13 is a cross-sectional schematic view of a wind box module provided by an embodiment of the present application;
[0042] Figure 14 is Figure 13 is a local enlarged view at A;
[0043] Figure 15 is a schematic view of a position relationship between a diffuser port connector seat and a fixing seat provided by an embodiment of the present application;
[0044] Figure 16 is a partial cross-sectional schematic view of a diffuser port connector seat provided by an embodiment of the present application;
[0045] Figure 17 is Figure 16 a local enlarged view at B;
[0046] Figure 18 is a sectional view of the cooperation of the bellow module and the smoke exhaust module provided by the embodiment of the present application;
[0047] Figure 19 is Figure 18 a local enlarged view at C;
[0048] Figure 20 is an exploded view of the fixing base provided by the embodiment of the present application;
[0049] Figure 21 is a partial sectional view of the fixing base provided by the embodiment of the present application;
[0050] Figure 22 is Figure 21 a local enlarged view at D;
[0051] Figure 23 is an exploded view of the exhaust pipe assembly provided by the embodiment of the present application;
[0052] Figure 24 is Figure 18 a local enlarged view at E.
[0053] in the figure:
[0054] 100 - cabinet;
[0055] 200 - air duct module; 201 - air suction air duct;
[0056] 300 - bellow module;
[0057] 1 - fan;
[0058] 2 - cabinet; 21 - taking and placing opening; 22 - smoke inlet; 23 - smoke outlet; 24 - bellow cover plate; 25 - positioning convex ring; 26 - oil collecting opening;
[0059] 3 - slide rail assembly; 31 - fixed slide rail; 311 - first locking hole; 312 - air suction through hole; 32 - movable slide rail; 321 - second locking hole; 33 - locking component; 331 - locking pad; 3311 - locking through hole; 3312 - locking notch; 332 - locking pin; 3321 - limiting ring; 333 - locking elastic member; 334 - unlocking handle; 3341 - convex block; 34 - side surface locking structure; 341 - locking fastener; 3411 - connecting part; 3412 - locking part; 342 - elastic lock; 35 - front end buffering structure; 351 - front end buffering member; 352 - front end buffering support;
[0060] 400 - smoke evacuation module; 401 - diffuser adapter; 4011 - second body portion; 4012 - first connection end; 40121 - U-shaped receiving groove; 40122 - diffuser seal; 40123 - diffuser seal groove; 4013 - second connection end; 402 - mounting base; 4020 - oil collection channel; 4021 - first body portion; 4022 - inlet end; 40221 - stationary seal; 40222 - stationary seal groove; 4023 - outlet end; 40231 - exhaust seal; 402311 - first seal; 402312 - second seal; 40232 - exhaust seal groove; 40233 - assembly groove; 403 - exhaust tube assembly; 4031 - connection base; 4032 - exhaust tube; 4033 - clamp;
[0061] 500 - cooktop module. DETAILED DESCRIPTION
[0062] The application will be further described below in conjunction with the drawings and embodiments. It is to be understood that the specific embodiments described herein are intended to be illustrative only and not limiting of the scope of the application. Additionally, it is to be understood that the drawings are not necessarily to scale and that, unless otherwise indicated, the drawings are intended to be illustrative only and not limiting of the scope of the application.
[0063] In the description of the present application, unless otherwise clearly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0064] In the present application, unless otherwise clearly specified and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0065] In the description of the present embodiment, the terms "upper", "lower", "left", "right", and the like, orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.
[0066] Figure 1 A structural schematic diagram of the integrated stove provided by the present embodiment is shown. Figure 2 A partial cross-sectional schematic diagram of the integrated stove provided by the present embodiment is shown. Figure 3 A structural schematic diagram of the integrated stove provided by the present embodiment is shown. As shown in the figure, Figures 1-3 The present embodiment provides an integrated stove, which comprises a cabinet 100, an air duct module 200, an air box module 300, a smoke exhaust module 400, and a stove module 500. The stove module 500 is arranged on the cabinet 100, the top of the cabinet 100 is provided with a smoke inlet, the air duct module 200 is vertically arranged in the cabinet 100, a smoke suction air duct 201 is vertically arranged in the air duct module 200, and the smoke suction air duct 201 is in communication with the smoke inlet on the cabinet 100. The air box module 300 is horizontally arranged at the inner bottom of the cabinet 100, and the air box module 300 comprises a box body 2 and a fan 1 which is detachably arranged in the box body 2. The box body 2 is provided with a smoke inlet 22 which is in communication with the outlet of the smoke suction air duct 201. The inlet of the smoke exhaust module 400 is in communication with the outlet of the fan 1.
[0067] The integrated stove provided by the present embodiment, when the user uses the stove module 500 for cooking, starts the fan 1, and negative pressure is generated in the air box module 300 and the air duct module 200, so that the oil fume generated by the stove module 500 is sequentially discharged into the public smoke exhaust channel from the smoke exhaust module 400 through the smoke inlet, the smoke suction air duct 201, and the air box module 300, thereby realizing the purification of the kitchen air. By horizontally arranging the air box module 300 at the inner bottom of the cabinet 100 and detachably arranging the fan 1 in the box body 2, on the one hand, since the air box module 300 is located at the inner bottom of the cabinet 100, the air duct module 200 does not need to accommodate the air box module 300, and the width of the smoke suction air duct 201 arranged therein only needs to ensure that the oil fume can pass through smoothly, thereby making the cabinet 100 have sufficient space to install functional components such as a disinfection cabinet and a steaming oven, further improving the volume of the above-mentioned functional components, and improving the space utilization of the integrated stove. On the other hand, when the fan 1 needs to be repaired due to failure, the maintenance personnel can individually disassemble the fan 1 at the front of the cabinet 100, without the need to move the integrated stove as a whole, thereby saving time and effort and reducing maintenance cost.
[0068] Optionally, the cooking hob module 500 comprises two cooking hobs arranged in the left-right direction, so as to improve the cooking efficiency of the user, and when one of the cooking hobs fails, the user can use the other cooking hob to cook, without delaying the user's meal time.
[0069] In the embodiment, the wind box module 300 is horizontally arranged on the inner bottom of the cabinet 100. Compared with the integrated cooker in the prior art, the sinking height of the wind box module 300 is about 30 mm, which effectively compresses the occupied space and meets the volume improvement requirement of functional components such as the disinfection cabinet and the steaming oven. Optionally, the cabinet 2 is fixed to the cabinet 100 through damping screws to ensure the stability of the wind box module 300 during operation and prevent resonance of the entire integrated cooker when the fan 1 is working.
[0070] Figure 4 An explosion diagram of the air duct module 200 and the wind box module 300 provided in the embodiment is shown. Figure 4 As shown, the bottom of the air duct module 200 can be inserted into the smoke inlet 22. Only a simple plug-in operation is needed to realize the assembly between the air duct module 200 and the wind box module 300, and the assembly efficiency is relatively high. In addition, the joint between the air duct module 200 and the wind box module 300 has no reflecting surface, which will not cause turbulence and noise. The cabinet 2 also adopts a circular arc transition at the 90° turning position of the oil fume passing path, and the oil fume sucked by the fan 1 can generate a Coanda effect at the circular arc transition position, thereby ensuring the smoothness of the oil fume passing.
[0071] Optionally, the opening of the smoke inlet 22 is in the shape of an expanding mouth, which facilitates the operator to quickly position when assembling the air duct module 200 and the wind box module 300, and enables the wind box module 300 to be quickly inserted into the smoke inlet 22, thereby further improving the assembly efficiency between the air duct module 200 and the wind box module 300.
[0072] Further, the width of the air duct module 200 in the left-right direction gradually decreases from top to bottom, that is, the width of the inlet of the smoke suction air duct 201 is greater than the width of the outlet of the smoke suction air duct 201. This design can enable the air duct module 200 to quickly collect the oil fume entering the inside of the cabinet 100 and guide the oil fume inside, thereby ensuring the smoke suction efficiency of the integrated cooker.
[0073] In order to prevent smoke leakage at the connection between the air duct module 200 and the wind box module 300, a smoke leakage prevention sealing ring is arranged between the smoke inlet 22 and the air duct module 200.
[0074] Figure 5 An explosion diagram of the wind box module 300 provided in the embodiment is shown. Figure 6 A structure diagram of the inside of the cabinet 2 provided in the embodiment is shown. Figure 7 A structure diagram of the fan 1 provided in the embodiment is shown.Figures 5-7 As shown, the wind box module 300 further comprises a slide rail assembly 3, one side of the box 2 is provided with a taking and placing opening 21, the slide rail assembly 3 comprises a fixed slide rail 31 and a movable slide rail 32 in sliding cooperation, the fixed slide rail 31 extends along the front and back direction and is arranged at the bottom of the box 2, the movable slide rail 32 is arranged at the bottom of the fan 1, and the fan 1 can be taken and placed from the taking and placing opening 21. When the fan 1 needs to be repaired due to failure, the maintenance personnel only need to open the taking and placing opening 21 and pull out the fan 1 along the extension direction of the fixed slide rail 31, which is simple, convenient and fast.
[0075] In the embodiment, the taking and placing opening 21 is located at the front end of the box 2, so as to facilitate the maintenance personnel to repair the fan 1 without moving the integrated cooker. Alternatively, a wind box cover plate 24 is detachably connected at the taking and placing opening 21, and the wind box cover plate 24 is used to block the taking and placing opening 21 to ensure the negative pressure environment of the whole oil fume channel. In the embodiment, the wind box cover plate 24 is installed at the taking and placing opening 21 through screws, which is simple in structure and convenient to disassemble and assemble.
[0076] Alternatively, the number of the fixed slide rails 31 is multiple, the multiple fixed slide rails 31 are arranged at intervals along the left and right directions, and each fixed slide rail 31 corresponds to one movable slide rail 32, so as to ensure the stability of the sliding process of the fan 1 relative to the box 2. In the embodiment, the number of the fixed slide rails 31 and the number of the movable slide rails 32 are both two, which ensures the stable sliding of the fan 1 relative to the box 2, reduces the number of the fixed slide rails 31 and the movable slide rails 32, and thus reduces the production cost. Of course, in other embodiments, the number of the fixed slide rails 31 and the number of the movable slide rails 32 can also be other values, which are not limited in the embodiment.
[0077] In order to prevent the relative sliding between the fan 1 and the box 2 when the integrated cooker works, the slide rail assembly 3 further comprises a locking component 33, which is configured to lock the relative positions of the fixed slide rail 31 and the movable slide rail 32.
[0078] Figure 8 The structure schematic diagram of the fixed slide rail 31 provided in the embodiment is shown. Figure 9 The explosion schematic diagram of the fixed slide rail 31 provided in the embodiment is shown. Figure 10 The explosion schematic diagram of the movable slide rail 32 provided in the embodiment is shown. Figure 11 The partial structure schematic diagram of the movable slide rail 32 provided in the embodiment when the locking pin 332 is in the locking position is shown. Figure 12 The partial structure schematic diagram of the movable slide rail 32 provided in the embodiment when the locking pin 332 is in the unlocking position is shown. Figures 8-12As shown, the fixed slide rail 31 is provided with a first locking hole 311, and the movable slide rail 32 is provided with a second locking hole 321 corresponding to the first locking hole 311; the locking component 33 comprises a locking pin 332, which has a locking position for being simultaneously arranged in the first locking hole 311 and the second locking hole 321, and an unlocking position for being arranged in only one of the first locking hole 311 or the second locking hole 321.
[0079] Specifically, the locking component 33 further comprises a locking pad 331 and a locking elastic member 333. The movable slide rail 32 is provided with the locking pad 331 at the position of the second locking hole 321, and the locking pad 331 is provided with a locking through hole 3311 opposite to the second locking hole 321, the locking through hole 3311 being stepped. The locking elastic member 333 is arranged in the locking through hole 3311, and the two ends of the locking elastic member 333 abut against the locking pin 332 and the stepped surface of the locking through hole 3311, respectively. When installing the fan 1 in the cabinet 2, the movable slide rail 32 is first installed on the fixed slide rail 31, and then the fan 1 is pushed to make the movable slide rail 32 slide along the fixed slide rail 31. When the second locking hole 321 on the movable slide rail 32 is opposite to the first locking hole 311 on the fixed slide rail 31, the locking pin 332 can be extended into the first locking hole 311 under the elastic action of the locking elastic member 333, so as to realize the switching of the locking pin 332 from the unlocking position to the locking position. At this time, the fan 1 is installed in place. When the fan 1 fails, the locking pin 332 can be pulled out first, so as to be separated from the first locking hole 311. At this time, the movable slide rail 32 can slide relative to the fixed slide rail 31. The maintenance personnel only need to pull the fan 1 to take it out from the taking and placing opening 21.
[0080] In the embodiment, the locking elastic member 333 is a spring, which is sleeved on the locking pin 332. When the locking pin 332 is in the locking position, it can be tightly locked in the first locking hole 311 and the second locking hole 321 under the elastic action of the spring, so as to ensure the stability of the connection between the fan 1 and the cabinet 2.
[0081] Optionally, the bottom of the locking pin 332 is conical, so that the locking pin 332 can be smoothly inserted into the first locking hole 311.
[0082] Optionally, the side wall of the locking pin 332 is provided with a limiting ring 3321, the outer diameter of the limiting ring 3321 is smaller than the inner diameter of the large end of the locking through hole 3311, and larger than the inner diameter of the small end of the locking through hole 3311. This design can prevent the locking pin 332 from being pulled out of the locking pad 331, which increases the maintenance time and affects the maintenance efficiency.
[0083] To facilitate the maintenance personnel to pull out the locking pin 332, the locking component 33 further comprises an unlocking handle 334 connected to the top of the locking pin 332. When it is needed to switch the locking pin 332 from the locking position to the unlocking position, the maintenance personnel can hold the unlocking handle 334 to pull out the locking pin 332. Optionally, the unlocking handle 334 is provided with anti-skid structures to prevent the fingers of the maintenance personnel from slipping with the unlocking handle 334. In the embodiment, the anti-skid structures can be anti-skid ribs protruding on the unlocking handle 334, or can be anti-skid layers coated on the outer surface of the unlocking handle 334.
[0084] It can be understood that when the unlocking pin 332 is in the unlocking position, the locking elastic member 333 is in a compressed state, and during the sliding of the movable slide rail 32 relative to the fixed slide rail 31, the unlocking pin 332 is tightly pressed on the top surface of the fixed slide rail 31 under the elastic action of the locking elastic member 333, so that the sliding of the movable slide rail 32 is blocked. To solve this problem, the top of the locking pad 331 is provided with a locking notch 3312 in communication with the locking through hole 3311; the bottom of the unlocking handle 334 is provided with a protrusion 3341, when the protrusion 3341 is accommodated in the locking notch 3312, the locking pin 332 is in the locking position, and when the protrusion 3341 abuts against the top surface of the locking pad 331, the locking pin 332 is in the unlocking position. When it is needed to pull out the fan 1 from the cabinet 2, the maintenance personnel can hold the unlocking handle 334 to pull out the locking pin 332, and rotate the unlocking handle 334 to make it out of the locking notch 3312 and abut against the top surface of the locking pad 331, at this time, the unlocking pin 332 can be separated from the top surface of the fixed slide rail 31, so that the movable slide rail 32 can smoothly slide relative to the fixed slide rail 31.
[0085] Optionally, the number of the protrusions 3341 is two, and the two protrusions 3341 are symmetrically arranged on the bottom of the unlocking handle 334, and each protrusion 3341 corresponds to a locking notch 3312 to ensure that the pressure of the unlocking handle 334 acting on the locking pad 331 is balanced.
[0086] As shown in Figure 8 the bottom of the fixed slide rail 31 is upwardly recessed; and / or the side of the fixed slide rail 31 away from the taking and placing opening 21 is provided with a suction through hole 312. This design can expand the suction channel of the air inlet airflow below the cabinet 2 when the fan 1 is running, to ensure that the air inlet airflow below the cabinet 2 can smoothly enter.
[0087] As shown in Figures 10-12As shown, the front end of the movable slide rail 32 is provided with a front end buffer structure 35. The front end buffer structure 35 comprises a front end buffer piece 351 and a front end buffer bracket 352, the front end buffer bracket 352 is a U-shaped structure, one U-shaped arm of the front end buffer bracket 352 is connected to the front end of the movable slide rail 32, and the other U-shaped arm of the front end buffer bracket 352 is connected with the front end buffer piece 351. When the movable slide rail 32 slides relative to the fixed slide rail 31 to the locking position, the front end buffer piece 351 can abut against the fixed slide rail 31. The front end buffer structure 35 can prevent the movable slide rail 32 from colliding with the rear wall of the cabinet 2 after passing the locking position, and can also play a role in vibration isolation and reduction, reducing the radiation of discrete noise when the fan 1 is running. In this embodiment, the front end buffer piece 351 is made of elastic material.
[0088] In this embodiment, the fixed slide rail 31 is formed by stamping a metal plate, which is simple to operate, has good product performance and stable quality.
[0089] Optionally, the cross-sectional shape of the fixed slide rail 31 is substantially U-shaped, and the two U-shaped arms of the fixed slide rail 31 are both outwardly extended and provided with a flange, so as to increase the contact area with the cabinet 2, improve the stability of the connection, and effectively improve the overall strength of the fixed slide rail 31. Optionally, the top of the end of the fixed slide rail 31 towards the access opening 21 is inwardly extended and provided with a flange, so as to further improve the strength of the fixed slide rail 31.
[0090] Figure 13 A cross-sectional view of the air bellow module 300 is shown. Figure 14 A cross-sectional view of the air bellow module 300 is shown. Figure 13 A local enlarged view at A. As shown, Figures 13-14 and in combination with Figures 8-10 As shown, the slide rail assembly 3 further comprises a side locking structure 34, the side locking structure 34 comprises a locking buckle 341 and an elastic lock 342, the locking buckle 341 comprises a connecting part 3411 and a locking part 3412, the connecting part 3411 is a U-shaped structure, the fixed slide rail 31 is accommodated in the U-shaped groove of the connecting part 3411, and the two locking parts 3412 are respectively connected to the two U-shaped arms of the connecting part 3411 and both extend inwardly; each locking part 3412 is provided with an elastic lock 342, and the elastic lock 342 can abut against the side of the movable slide rail 32 and / or the flange of the side of the movable slide rail 32. The side locking structure 34 plays a role in connecting and locking the middle part of the movable slide rail 32 and the fixed slide rail 31, ensuring the stability of the fan 1 when running; at the same time, the elastic lock 342 also plays a role in vibration isolation and reduction, reducing the radiation of discrete noise when the fan 1 is running.
[0091] Optionally, the bottom of the elastic lock 342 is provided with a damping rib to reduce the contact area between the movable slide rail 32 and the elastic lock 342, thereby reducing the resistance when the movable slide rail 32 slides relative to the fixed slide rail 31.
[0092] Optionally, the locking fastener 341 is connected to the fixed slide rail 31 by a rivet to improve the stability of the connection between the two.
[0093] Figure 15 The positional relationship between the diffuser joint seat 401 and the fixed seat 402 provided by the embodiment is shown in the schematic view. As shown in the figure, Figure 15 and in combination with Figure 5 It is shown that the smoke exhaust module 400 includes the diffuser joint seat 401, the fixed seat 402, and the exhaust pipe assembly 403, which are arranged separately and connected in sequence, and the end of the diffuser joint seat 401 away from the fixed seat 402 is connected to the outlet of the fan 1. The smoke exhaust module 400 arranged separately can facilitate processing and assembly, thereby improving the assembly efficiency of the integrated cooker; by arranging the diffuser joint seat 401, part of the kinetic energy in the fan 1 can be converted into static pressure to ensure that the oil fume can flow smoothly through the smoke exhaust module 400 and be discharged into the public smoke exhaust passage.
[0094] In the embodiment, the cross-sectional shape of the outlet of the fan 1 is rectangular. Adaptively, the cross-sectional shape of the smoke outlet 23 on the cabinet 2, the cross-sectional shape of the diffuser joint seat 401, the cross-sectional shape of the fixed seat 402, and the cross-sectional shape of the end of the exhaust pipe assembly 403 close to the fixed seat 402 are all rectangular. This design can facilitate assembly, and the operator can quickly distinguish the up-down direction of the diffuser joint seat 401, the fixed seat 402, and the exhaust pipe assembly 403 to improve the assembly accuracy and efficiency.
[0095] When the prior art integrated cooker is installed, the lowest part of the smoke exhaust module 400 often interferes with the standard cabinet in the user's kitchen, and part of the cabinet bottom plate needs to be removed to meet the installation requirements, which is time-consuming and laborious, and the installation cost is high. In order to solve this problem, the fixed seat 402 includes a first main body part 4021 and an inlet end 4022 and an outlet end 4023 connected to both ends of the first main body part 4021, respectively, the inlet end 4022 is connected to the diffuser joint seat 401, and the outlet end 4023 is connected to the exhaust pipe assembly 403, the bottom surface of the first main body part 4021 gradually inclines upward in the direction away from the fan 1, so that the lowest position of the smoke exhaust module 400 is higher than the bottom plate of the standard cabinet in the user's kitchen, thereby preventing the smoke exhaust module 400 from interfering with the bottom plate of the cabinet when the integrated cooker is installed, i.e. the integrated cooker can be installed without removing part of the cabinet bottom plate, which saves time and labor, and the installation cost is lower.
[0096] In the embodiment, the angle between the bottom surface of the first main body part 4021 and the horizontal plane is 8°-12°. The angle can ensure that the smoke exhaust module 400 and the cabinet bottom plate have sufficient avoidance space to quickly install the entire integrated cooker. Alternatively, the angle between the bottom surface of the first main body part 4021 and the horizontal plane can be 9°, 9.5°, 10°, 10.5°, 11°, 11.5°, etc. Under the premise of ensuring that the smoke exhaust module 400 and the cabinet bottom plate have sufficient avoidance space, the inclination angle of the first main body part 4021 is reduced to ensure the stable connection between the entire smoke exhaust module 400 and the wind box module 300.
[0097] To enable the smoke exhaust module 400 to transition smoothly, the diffuser joint seat 401 includes a second main body part 4011 and first and second connecting ends 4012 and 4013 respectively connected to both ends of the second main body part 4011. The first connecting end 4012 is connected to the outlet flange of the fan 1, and the second connecting end 4013 is connected to the inlet end 4022. The bottom surface of the second main body part 4011 gradually inclines upward in a direction away from the fan 1.
[0098] In the embodiment, the angle between the bottom surface of the second main body part 4011 and the horizontal plane is 3°-5°. Preferably, the angle between the bottom surface of the second main body part 4011 and the horizontal plane is 3.5°, 3.5°, 4°, or 4.5°. In the embodiment, the entire smoke exhaust module 400 adopts a 4.5°-10° upward angle design from the outlet flange of the fan 1 to the outlet end 4023 of the fixing seat 402. On the one hand, it can ensure that after the wind box module 300 sinks 30 mm during installation of the integrated cooker, the smoke exhaust module 400 and the cabinet bottom plate still have sufficient avoidance space to prevent interference between the smoke exhaust module 400 and the cabinet bottom plate. On the other hand, it ensures the stability of the entire inclined smoke exhaust module 400.
[0099] Figure 16 A partial cross-sectional view of the diffuser joint seat 401 provided in the embodiment is shown. Figure 17 A partial cross-sectional view of the diffuser joint seat 401 provided in the embodiment is shown. Figure 16 A partial enlarged view at B. As shown in Figures 16-17 and in combination with Figure 15As shown, in order to ensure that the fan 1 can be accurately docked with the smoke exhaust module 400 when reinstalled, a U-shaped accommodation groove 40121 is arranged at the inlet of the diffuser joint seat 401, and the U-shaped groove opening of the U-shaped accommodation groove 40121 is arranged towards the front end. The outlet flange of the fan 1 can be accommodated in the U-shaped accommodation groove 40121. When the fan 1 is disassembled and reinstalled, the outlet flange of the fan 1 can be inserted into the U-shaped groove opening of the U-shaped accommodation groove 40121 to ensure that the outlet of the fan 1 can be accurately docked with the smoke exhaust module 400 after the fan 1 is pushed into the box body 2, so as to meet the installation accuracy requirement of the docking port of the fan 1 after being pushed into the box body 2, and prevent smoke leakage. Alternatively, the U-shaped groove opening of the U-shaped accommodation groove 40121 is flared to facilitate quick insertion of the outlet flange of the fan 1 into the U-shaped accommodation groove 40121.
[0100] It should be noted that in the present embodiment, the included angle between the groove bottom of the U-shaped accommodation groove 40121 and the vertical plane is 2°-4°; and the end face of the outlet flange of the fan 1 can be fitted with the groove bottom of the U-shaped accommodation groove 40121. Preferably, the included angle between the groove bottom of the U-shaped accommodation groove 40121 and the vertical plane is 3°, on the one hand, it can meet the installation accuracy requirement of the docking port of the fan 1 after being pushed into the box body 2, and on the other hand, the outlet flange of the fan 1 does not need to be connected with the diffuser joint seat 401 using screws, which can save the time for punching holes on the fan 1 and the diffuser joint seat 401, improve the processing efficiency, and maintain the integrity of the fan 1 and prolong the service life. In the present embodiment, the height of each surrounding wall of the second connecting end 4013 is flush with the height of each surrounding wall corresponding to the inlet end 4022, so as to facilitate the assembly between the diffuser joint seat 401 and the fixing seat 402.
[0101] In order to ensure the sealing between the diffuser joint seat 401 and the outlet flange of the fan 1, a diffuser sealing member 40122 is arranged between the diffuser joint seat 401 and the outlet flange of the fan 1. Alternatively, a diffuser sealing groove 40123 is arranged on the end face of the first connecting end 4012 close to the fan 1, and the diffuser sealing member 40122 is accommodated in the diffuser sealing groove 40123 to ensure the installation stability of the diffuser sealing member 40122 and prevent the diffuser sealing member 40122 from falling off when the fan 1 is disassembled. In the present embodiment, the diffuser sealing member 40122 is interference-fitted in the diffuser sealing groove 40123 to further prevent the diffuser sealing member 40122 from falling off.
[0102] Further, the diffuser sealing member 40122 comprises a sealing body and a sealing protrusion provided on the sealing body, the sealing body is accommodated in the diffuser sealing groove 40123, and the sealing protrusion is capable of abutting against the end face of the outlet flange of the fan 1. This design can convert the surface sealing between the fan 1 and the diffuser joint seat 401 into linear sealing, so as to meet the air tightness requirement after the abutting of the two, to ensure that there is no oil smoke leakage at the connection of the two, and meanwhile, the phenomenon that the sealing force between the two is too large to cause the difficulty in dismounting the fan 1 can be prevented. Alternatively, the number of the sealing protrusions is multiple, and the multiple sealing protrusions are arranged in the thickness direction of the sealing body, so as to improve the sealing between the fan 1 and the diffuser joint seat 401.
[0103] Figure 18 A sectional view of the cooperation between the wind box module 300 and the smoke exhaust module 400 is shown. Figure 19 A sectional view of the cooperation between the wind box module 300 and the smoke exhaust module 400 is shown. Figure 18 A local enlarged view at C. As shown in Figures 18-19 And as shown in Figure 6 As shown, the outer side wall of the box body 2 is provided with a positioning protruding ring 25 around the outer periphery of the smoke outlet 23, the second connecting end 4013 of the diffuser joint seat 401 penetrates into the positioning protruding ring 25, and the inlet end 4022 of the fixing seat 402 is sleeved outside the positioning protruding ring 25. By arranging the positioning protruding ring 25 on the outer side wall of the box body 2, the positioning accuracy between the diffuser joint seat 401 and the box body 2, between the fixing seat 402 and the box body 2, and between the diffuser joint seat 401 and the fixing seat 402 can be ensured.
[0104] In order to further ensure the stability of the connection between the diffuser joint seat 401 and the box body 2 and between the fixing seat 402 and the box body 2, the second connecting end 4013 is fixedly connected with the box body 2 through screws, and the inlet end 4022 is fixedly connected with the box body 2 through screws, which has the advantages of simple processing and stable connection.
[0105] In order to ensure the sealing between the diffuser joint seat 401 and the fixing seat 402, a fixed sealing member 40221 is arranged between the diffuser joint seat 401 and the fixing seat 402. Specifically, the inlet end 4022 of the fixing seat 402 is provided with a fixed sealing groove 40222, the positioning protruding ring 25 is inserted into the fixed sealing groove 40222, and the fixed sealing member 40221 is accommodated in the fixed sealing groove 40222, and the two ends of the fixed sealing member 40221 abut against the positioning protruding ring 25 and the inlet end 4022, respectively. Alternatively, the fixed sealing member 40221 is interference-fitted in the fixed sealing groove 40222, so as to ensure the sealing between the diffuser joint seat 401 and the fixing seat 402 and the stability of the fixed sealing member 40221, and prevent the fixed sealing member 40221 from falling off.
[0106] In the embodiment, the cross-sectional shape of the fixed seal 40221 is V-shaped, and after the positioning convex ring 25 is inserted into the fixed seal groove 40222, the fixed seal 40221 can be squeezed to improve the sealing between the diffuser port joint seat 401 and the fixed seat 402 by increasing the compression ratio. Alternatively, the fixed seal 40221 is made of silica gel foam material.
[0107] Figure 20 An explosion schematic diagram of the fixed seat 402 provided by the embodiment is shown. Figure 21 A partial cross-sectional schematic diagram of the fixed seat 402 provided by the embodiment is shown. Figure 22 An explosion schematic diagram of Figure 21 A local enlarged view at D. Figure 23 An explosion schematic diagram of the exhaust pipe assembly 403 provided by the embodiment is shown. As Figures 20-23 And in combination Figure 1 As shown, the outlet end 4023 of the fixed seat 402 is provided with a fitting groove 40233, and the exhaust pipe assembly 403 can be inserted into the fitting groove 40233, so as to realize the quick assembly between the fixed seat 402 and the exhaust pipe assembly 403.
[0108] In the embodiment, the exhaust pipe assembly 403 includes a connecting seat 4031 and an exhaust pipe 4032, the first end of the connecting seat 4031 is rectangular in cross-sectional shape to be inserted into the outlet end 4023 of the fixed seat 402, and the second end of the connecting seat 4031 is circular in cross-sectional shape to connect the exhaust pipe 4032. Alternatively, a clamp 4033 is further provided between the connecting seat 4031 and the exhaust pipe 4032 to ensure the stability of the connection between the two. Alternatively, the exhaust pipe 4032 is a folded aluminum foil pipe, which can adjust its length according to the size of the kitchen space to improve its versatility.
[0109] To ensure the sealing between the fixing seat 402 and the exhaust pipe assembly 403, the exhaust sealing piece 40231 is arranged between the fixing seat 402 and the exhaust pipe assembly 403. Specifically, the exhaust sealing piece 40231 includes a first sealing piece 402311, which is accommodated in the groove bottom of the assembly groove 40233 and can abut against the end surface of the exhaust pipe assembly 403, so as to ensure the sealing between the connecting end surfaces of the fixing seat 402 and the exhaust pipe assembly 403. Optionally, the first sealing piece 402311 is interference-fitted in the assembly groove 40233, which can prevent the first sealing piece 402311 from falling off while ensuring the sealing between the fixing seat 402 and the exhaust pipe assembly 403. In the embodiment, the cross-sectional shape of the first sealing piece 402311 is a hollow character, which can be pressed after the exhaust pipe assembly 403 is inserted into the fixing seat 402, so as to improve the sealing between the fixing seat 402 and the exhaust pipe assembly 403 by increasing the compression ratio. Optionally, the first sealing piece 402311 is made of silicone foam material.
[0110] Further, the exhaust sealing piece 40231 includes a second sealing piece 402312, which is arranged on the groove wall of the assembly groove 40233 and the side wall of the exhaust pipe assembly 403, so as to ensure the sealing between the connecting side walls of the fixing seat 402 and the exhaust pipe assembly 403. Through the cooperation between the first sealing piece 402311 and the second sealing piece 402312, the sealing between the fixing seat 402 and the exhaust pipe assembly 403 is ensured, and the smoke leakage is prevented. Optionally, the groove wall of the assembly groove 40233 is further provided with an exhaust sealing groove 40232 for accommodating the second sealing piece 402312, so as to ensure the stability of the second sealing piece 402312 and prevent it from falling off. Further optionally, the second sealing piece 402312 is interference-fitted in the exhaust sealing groove 40232. In the embodiment, the second sealing piece 402312 is made of silicone material and is adhered in the exhaust sealing groove 40232, which is convenient for assembly and stable connection.
[0111] Of course, in other embodiments, only any one of the first sealing piece 402311 and the second sealing piece 402312 can be arranged, and the above-mentioned effects can also be achieved.
[0112] It should be noted that the specific structure of the second sealing member 402312 is the same as that of the pressure expansion sealing member 40122, and the difference lies in the installation direction. The sealing body of the second sealing member 402312 is accommodated in the exhaust sealing groove 40232, and the sealing protrusions of the second sealing member 402312 can abut against the outer wall surface of the exhaust pipe assembly 403 after the exhaust pipe assembly 403 is inserted into the fixed seat 402, so as to achieve the effects of secondary sealing and mutual compensation, and further improve the sealing performance of the exhaust pipe assembly 403 and the fixed seat 402 at the joint.
[0113] In the embodiment, a rectangular connecting port is arranged on the cabinet 100 corresponding to the fixed seat 402. The fixed seat 402 is located on the inner side of the cabinet 100, and the exhaust pipe assembly 403 is mostly located on the outer side of the cabinet 100. The exhaust pipe assembly 403 is inserted into the fixed seat 402 through the connecting port on the cabinet 100 (see Figure 1 ). In order to further ensure the stability of the connection between the fixed seat 402 and the cabinet 100 and the connection between the exhaust pipe assembly 403 and the cabinet 100, the outlet end 4023 of the fixed seat 402 is fixedly connected to the cabinet 100 by screws. The connecting lugs are symmetrically arranged on the connecting seat 4031 of the exhaust pipe assembly 403, and the connecting lugs are fixedly connected to the cabinet 100 by screws. The screw connection has the advantages of simple processing and stable connection.
[0114] Alternatively, the pressure expansion port connector seat 401 is formed by injection molding with a flame-retardant plastic material. The fixed seat 402 is formed by injection molding. The injection molding process has the advantages of fast molding speed, high efficiency, and accurate product size.
[0115] Figure 24 A local enlarged view at E is shown. Figure 18 As shown in Figure 24 and in combination with Figure 6 , Figure 18 , the cabinet 2 is further provided with an oil collecting port 26, which is located below the smoke outlet port 23. The bottom of the fixed seat 402 is provided with an oil collecting channel 4020, and the two ends of the oil collecting channel 4020 are respectively communicated with the oil collecting port 26 and the exhaust pipe assembly 403. When the fan 1 is started, a negative pressure environment will be formed in the cabinet 2, and a negative pressure environment will also be formed in the oil collecting channel 4020 which is communicated with the cabinet 2. When the exhaust pipe assembly 403 leaks oil, the leaked oil can be reabsorbed into the cabinet 2 under the action of negative pressure, avoiding leakage from the connection between the exhaust pipe assembly 403 and the fixed seat 402. Alternatively, a pull-out type oil collecting groove can be arranged in the cabinet 2 to collect the oil absorbed from the oil collecting channel 4020. The user can clean the oil regularly to maintain the cleanliness of the integrated cooker.
[0116] The integrated cooker provided by the embodiment has the following advantages: 1) compared with the prior art integrated cooker, the wind box module 300 is lowered by 30 mm as a whole, which can effectively compress the occupied space and meet the volume improvement requirement of each functional component; 2) the completely modular design is adopted, which is simple to process and high in assembly efficiency; 3) the entire smoke exhaust module 400 is designed with an upward angle that is gradually changed from 4.5° to 10° from the outlet flange of the fan 1 to the outlet end 4023 of the fixing seat 402, which can ensure that, after the wind box module 300 is lowered by 30 mm, the smoke exhaust module 400 still has sufficient avoiding space with the cabinet bottom plate to prevent interference between the smoke exhaust module 400 and the cabinet bottom plate and ensure the stability of the entire inclined smoke exhaust module 400; 4) the combined embedded sealing structure is adopted at the smoke exhaust module 400, which can meet the air tightness requirement at each connection position, prevent high-speed airflow leakage from causing turbulence and noise, and reduce the manufacturing cost; 5) the fan 1 is slidingly arranged in the box body 2 and can be disassembled from the taking and placing opening 21 of the box body 2, which is convenient for maintenance, and the maintenance personnel can maintain the fan 1 at the front end of the integrated cooker without moving the integrated cooker as a whole, saving time and effort; 6) the U-shaped accommodation groove 40121 arranged on the diffuser joint seat 401 can ensure that the fan 1 can still be accurately connected with the smoke exhaust module 400 after repeated disassembly, and the diffuser sealing element 40122 arranged between the wind box module 300 and the diffuser joint seat 401 can ensure that the air tightness between the wind box module 300 and the smoke exhaust module 400 still meets the requirement after repeated disassembly of the fan 1, preventing smoke leakage; 7) the air duct module 200 is inserted and connected with the smoke inlet 22 of the box body 2, which is convenient for assembly, and the joint between the air duct module 200 and the wind box module 300 has no reflecting surface, which will not cause turbulence and noise, and the box body 2 also adopts a circular arc transition at the 90° turning position of the oil fume passing path, so that the oil fume sucked by the fan 1 can generate a Coanda effect at the circular arc transition position, ensuring the smoothness of the oil fume passing.
[0117] The above embodiments only illustrate the basic principles and characteristics of the present application, and the present application is not limited to the above embodiments. Without departing from the spirit and scope of the present application, various changes and modifications can be made to the present application, and these changes and modifications all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. An integrated cooker, characterized in that, The utility model relates to a kind of air duct module and air box module, including: Machine case (100); Air duct module (200), vertical in the machine case (100), air suction duct (201) is provided in the air duct module (200); Air box module (300), transverse in the inner bottom of the machine case (100), the air box module (300) includes box (2) and detachably arranged in the fan (1) of the box (2), the box (2) is provided with the smoke inlet (22) being connected with the outlet of the air suction duct (201); Exhaust module (400), the inlet of the exhaust module (400) is connected with the outlet of the fan (1); The air box module (300) further includes slide rail assembly (3), one side of the box (2) is provided with taking and placing opening (21), the slide rail assembly (3) includes fixed slide rail (31) and movable slide rail (32) of sliding cooperation, the fixed slide rail (31) is arranged in the inner bottom of the box (2), the movable slide rail (32) is arranged in the bottom of the fan (1), the fan (1) can be taken and placed from the taking and placing opening (21); The front end of the movable slide rail (32) is provided with front end buffer structure (35);The front end buffer structure (35) includes front end buffer piece (351) and front end buffer support (352), the front end buffer support (352) is U-shaped structure, one U-shaped arm of the front end buffer support (352) is connected to the front end of the movable slide rail (32), the other U-shaped arm of the front end buffer support (352) is connected with the front end buffer piece (351), when the movable slide rail (32) is slid relative to the fixed slide rail (31) to locking position, the front end buffer piece (351) is abutted on the fixed slide rail (31), can prevent the movable slide rail (32) from continuing to slide back after locking position and the rear wall of the box (2) collision, also can vibration isolation and vibration reduction, reduce the radiation of discrete noise when the fan (1) operates; And / or, the slide rail assembly (3) further includes side locking structure (34), the side locking structure (34) includes locking fastener (341) and elastic lock (342), the locking fastener (341) includes connecting portion (3411) and locking portion (3412), the connecting portion (3411) is U-shaped structure, the fixed slide rail (31) is contained in the U-shaped groove of connecting portion (3411), two locking portions (3412) are connected on two U-shaped arms of the connecting portion (3411) respectively, and all extend inward;Each locking portion (3412) is provided with elastic lock (342), the elastic lock (342) can be abutted to the movable slide rail (32).
2. The integrated stove of claim 1, wherein, The slide rail assembly (3) further includes locking component (33), the locking component (33) is configured to lock the relative position of the fixed slide rail (31) and the movable slide rail (32).
3. The integrated cooktop of claim 2, wherein, The fixed slide rail (31) is provided with a first locking hole (311), and the movable slide rail (32) is provided with a second locking hole (321) corresponding to the first locking hole (311); The locking component (33) comprises a locking pad (331), a locking pin (332) and a locking elastic member (333), the movable slide rail (32) is provided with the locking pad (331) at the position of the second locking hole (321), the locking pad (331) is provided with a locking through hole (3311) opposite to the second locking hole (321), the locking through hole (3311) is in a stepped shape, the locking pin (332) is arranged in the locking through hole (3311), the two ends of the locking elastic member (333) are respectively abutted on the locking pin (332) and the stepped surface of the locking through hole (3311), and the locking pin (332) has a locking position arranged in the first locking hole (311) and the second locking hole (321) and an unlocking position arranged in the second locking hole (321).
4. The integrated cooktop of claim 1, wherein, The bottom of the air duct module (200) is inserted into the smoke inlet (22).
5. The integrated cooktop of claim 1, wherein, The width of the air duct module (200) gradually decreases from top to bottom along the left-right direction.
6. The integrated cooktop of claim 1, wherein, The smoke exhaust module (400) comprises a diffuser joint seat (401), a fixed seat (402) and an exhaust pipe assembly (403) which are separately arranged and sequentially connected, and the end of the diffuser joint seat (401) away from the fixed seat (402) is connected with the outlet flange of the fan (1).
7. The integrated cooktop of claim 6, wherein, The box (2) is provided with an oil collecting port (26), the oil collecting port (26) is located below the smoke outlet (23) of the box (2), the bottom of the fixed seat (402) is provided with an oil collecting channel (4020), and the two ends of the oil collecting channel (4020) are respectively connected with the oil collecting port (26) and the exhaust pipe assembly (403).
8. The integrated cooktop of claim 6, wherein, The fixed seat (402) comprises a first main body part (4021) and an inlet end (4022) and an outlet end (4023) connected to the two ends of the first main body part (4021) respectively, the inlet end (4022) is connected with the diffuser joint seat (401), the outlet end (4023) is connected with the exhaust pipe assembly (403), and the bottom surface of the first main body part (4021) gradually inclines upward in the direction away from the fan (1); and / or The diffuser joint seat (401) comprises a second main body part (4011) and a first connecting end (4012) and a second connecting end (4013) connected to the two ends of the second main body part (4011) respectively, the first connecting end (4012) is connected with the outlet of the fan (1), and the second connecting end (4013) is connected with the inlet of the fixed seat (402); and the bottom surface of the second main body part (4011) gradually inclines upward in the direction away from the fan (1).
9. The integrated cooktop of claim 6, wherein, The exhaust pipe assembly (403) comprises: The first end of the connecting seat (4031) is rectangular in cross-sectional shape, and the first end of the connecting seat (4031) is connected to the fixing seat (402); the second end of the connecting seat (4031) is circular in cross-sectional shape; The exhaust pipe (4032) is connected to the second end of the connecting seat (4031).
Citation Information
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