Fully embedded integrated structure

The fully embedded integrated lifting mechanism design solves the problems of embedded functional components occupying the lower cabinet and being inconvenient to clean, achieving the effect of cleaning without bending over and preventing steam fumes, thus improving the user experience.

CN223807230UActive Publication Date: 2026-01-16NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202420603624.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-03-22
Filing Date
2024-03-26
Publication Date
2026-01-16
Estimated Expiration
2034-03-26

AI Technical Summary

Technical Problem

The existing embedded functional components have a poor user experience, take up cabinet space, are inconvenient to clean, and cause serious steam inhalation.

Method used

A fully embedded integrated structure was designed, including a fan assembly, a first lifting mechanism, functional components, and an air inlet plate assembly. The lifting mechanism enables the synchronous movement of the functional components and the air inlet plate assembly. The fan assembly is located above and the functional components are located below, and can be lowered to a suitable height during use. The air inlet plate assembly is lowered to extract fumes and steam.

Benefits of technology

It doesn't take up any space in the lower cabinets, doesn't require bending over to clean, effectively prevents steam from wafting out, and enhances the aesthetics and ease of use of the kitchen.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to a fully-embedded integrated structure. The fully-embedded integrated structure comprises a fan assembly, a first lifting mechanism, a functional assembly, an air inlet plate set and a second lifting mechanism. The functional assembly, the air inlet plate set and the second lifting mechanism are connected with the fan assembly through the first lifting mechanism, and the first lifting mechanism can drive the functional assembly, the air inlet plate set and the second lifting mechanism to synchronously move in the direction close to or away from the fan assembly. The air inlet plate set is connected with the functional assembly through the second lifting mechanism, and the second lifting mechanism can drive the air inlet plate set to move in the direction close to or away from the functional assembly. According to the full-embedded integrated structure provided by the invention, the problem that the user experience of the existing functional component is relatively poor is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of kitchen integrated stove, in particular to a full-embedded integrated structure. BACKGROUND

[0002] At present, the user experience of the functional assembly is poor. For example, the embedded functional assembly is generally placed below the countertop. On the one hand, the lower cabinet space is occupied, and on the other hand, the functional plate needs to be placed by bending over, and the inner container also needs to be cleaned by squatting down. In addition, when the door is opened, the face will be splashed with steam, so the user experience is poor. CONTENT OF THE UTILITY MODEL

[0003] Therefore, it is necessary to provide a full-embedded integrated structure to solve the problem of poor user experience of the existing functional assembly.

[0004] The full-embedded integrated structure provided by the present application comprises a fan assembly, a first lifting mechanism, a functional assembly, an air inlet plate set and a second lifting mechanism. The functional assembly, the air inlet plate set and the second lifting mechanism are connected to the fan assembly through the first lifting mechanism respectively, and the first lifting mechanism can drive the functional assembly, the air inlet plate set and the second lifting mechanism to move synchronously towards the direction of approaching or moving away from the fan assembly. The air inlet plate set is connected to the functional assembly through the second lifting mechanism, and the second lifting mechanism can drive the air inlet plate set to move towards the direction of approaching or moving away from the functional assembly.

[0005] In one of the embodiments, the functional assembly comprises a functional box and a partition frame, the partition frame is provided with a containing cavity, the functional box is installed at one end of the containing cavity, and the second lifting mechanism is installed at the other end of the containing cavity. The second lifting mechanism can drive the air inlet plate set to extend out of the containing cavity towards the direction of moving away from the fan assembly, or to retract into the containing cavity towards the direction of approaching the fan assembly.

[0006] In one of the embodiments, the second lifting mechanism is arranged on the side of the functional box away from the opening thereof.

[0007] In one of the embodiments, the side wall of the partition frame is provided with a first assembly opening communicating with the containing cavity, the functional box can be installed in the containing cavity from the first assembly opening, and the opening of the functional box is arranged in the same direction as the first assembly opening.

[0008] In one of the embodiments, the partition frame is provided with a first air inlet communicating with the containing cavity and the fan assembly, and the side wall of the partition frame away from the first assembly opening is arranged in a spaced manner with the functional box to form an air inlet passage. When the air inlet plate set is in a closed state, the air inlet plate set can be accommodated in the air inlet passage, and when the air inlet plate set is in an open state, the air inlet plate set can pass through the air inlet passage and the first air inlet in sequence to communicate with the fan assembly.

[0009] In one of the embodiments, the second lifting mechanism comprises a second motor, a worm, a worm wheel, a driving shaft and a pin, the worm is connected to the output end of the second motor, and the worm and the worm wheel are in meshing connection. The second motor is installed on one of the separating frame and the air inlet plate set, one end of the driving shaft is coaxially arranged and fixedly assembled with the worm, and the other end is clamped to the other one of the separating frame and the air inlet plate set through the pin, so that the second motor can drive the air inlet plate set to move towards the direction of approaching or moving away from the separating frame through the worm wheel, the worm, the driving shaft and the pin in sequence.

[0010] In one of the embodiments, the full-embedded integrated structure further comprises an adapter frame, the fan assembly is connected to the adapter frame through the first lifting mechanism, and the functional assembly, the air inlet plate set and the second lifting mechanism are respectively installed at one end of the adapter frame away from the fan assembly.

[0011] In one of the embodiments, the adapter frame is provided with a nesting cavity, and when the first lifting mechanism drives the adapter frame to move towards the direction of approaching the fan assembly, the adapter frame can be sleeved outside the fan assembly through the nesting cavity.

[0012] In one of the embodiments, the first lifting mechanism comprises a first motor and a lead screw, the first motor is installed on one of the fan assembly and the adapter frame, one end of the lead screw is connected to the output end of the first motor, and the other end is threadedly connected to the other one of the fan assembly and the adapter frame in a movable manner, so that the first motor can drive the lead screw to drive the adapter frame to move towards the direction of approaching or moving away from the fan assembly.

[0013] In one of the embodiments, the first lifting mechanism further comprises a first guide rail and a first sliding block, the first guide rail is installed on one of the fan assembly and the adapter frame, the first sliding block is installed on the other one of the fan assembly and the adapter frame, and the first sliding block and the first guide rail are in sliding fit.

[0014] Compared with the prior art, in the full-embedded integrated structure provided by the present application, the fan assembly is arranged above, and the functional assembly is arranged below. When the functional assembly starts to work, the first lifting mechanism can drive the functional assembly to descend by a predetermined height in the direction away from the fan assembly, so as to facilitate the use of the functional assembly. When oil fume and steam are generated from the functional assembly or other positions (such as gas stove and pot) in the kitchen, the second lifting mechanism can drive the air inlet plate set to descend by a predetermined height in the direction away from the fan assembly, so as to facilitate the suction of oil fume and steam.

[0015] As can be seen from the above, since the functional assembly and the range hood are integrated and arranged above the countertop, in the full-embedded integrated structure provided by the present application, the functional assembly does not need to occupy the space of the lower cabinet, and does not need to be bent down for cleaning. Moreover, the steam can be sucked away by the fan assembly and the air inlet plate set, so that the functional assembly can be effectively prevented from being covered with steam. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0017] Figure 1 Assembly structure of the upper cabinet, lower cabinet, cookware and full-embedded integrated structure of an embodiment provided by the present application Figure 1 ;

[0018] Figure 2 Assembly structure of the upper cabinet, lower cabinet, cookware and full-embedded integrated structure of an embodiment provided by the present application Figure 2 ;

[0019] Figure 3 Structural schematic diagram of the full-embedded integrated structure of an embodiment provided by the present application

[0020] Figure 4 Partial structural schematic diagram of the full-embedded integrated structure of an embodiment provided by the present application

[0021] Figure 5 Side view of the function box of an embodiment provided by the present application

[0022] Figure 6 Partial structural schematic diagram of the function box of an embodiment provided by the present application

[0023] Fig. 1000, fan assembly; 1100, groove; 2000, air inlet plate set; 3100, first motor; 3200, lead screw; 3300, first guide rail; 3400, first sliding block; 4100, second motor; 4200, drive shaft; 4300, latch; 4400, second guide rail; 5000, adapter frame; 5100, nested cavity; 5200, second assembly opening; 6100, partition frame; 6110, containing cavity; 6120, first assembly opening; 6200, function box; 6210, main box body; 6211, function cavity; 6212, communication port; 6213, inner container; 6214, outer shell; 6220, door body; 6230, elastic member; 6231, first connection point; 6232, second connection point; 6240, first connecting rod; 6241, first hinged shaft; 6242, second hinged shaft; 6243, first rod segment; 6244, second rod segment; 6250, second connecting rod; 6251, third hinged shaft; 6252, fourth hinged shaft; 6253, hook-shaped groove; 7100, upper cabinet; 7200, lower cabinet; 7300, cookware. DETAILED DESCRIPTION

[0024] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0025] In addition, the terms "first", "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.

[0026] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like 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, unless otherwise explicitly limited. 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.

[0027] In the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate 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 can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.

[0028] It is to be understood that when an element such as a layer, region or substrate is referred to as being "on" or "connected to" another element, it can be directly on or connected to the other element or intervening elements can be present. In contrast, when an element is referred to as being "directly on" or "directly connected to" another element, there are no intervening elements present. It will be understood that, when a term is used in this specification specifying the relative position of one part to another (for example, "vertical", "horizontal", "upper", "lower", "left", "right", and the like), the expressly recited relative position is intended. The use herein of terms such as "vertical", "horizontal", "up", "down", "left", "right", and the like are for purposes of illustration and description and are not intended to limit the subject matter of the application to a sole embodiment.

[0029] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0030] The current functional assembly has a poor user experience. For example, the embedded functional assembly is generally placed below the countertop. In this way, on the one hand, the lower cabinet space is occupied, and on the other hand, the functional plate needs to be placed by bending over, and the inner container also needs to be cleaned by squatting down. In addition, when the door is opened, the face will be splashed with steam, and therefore, the user experience is poor.

[0031] Please refer to Figures 1-6 , in order to solve the problem of poor user experience of the existing functional assembly, the application provides a full-embedded integrated structure, which comprises a fan assembly 1000, a first lifting mechanism, a functional assembly, an air inlet plate group 2000 and a second lifting mechanism.

[0032] It should be noted that the functional assembly includes but is not limited to a steaming and baking assembly, an air frying module assembly and a dishwashing module assembly, etc., which are not listed one by one here.

[0033] Further, it should be noted that the fan assembly 1000 and the air inlet plate group 2000 both belong to part of the range hood. The fan assembly 1000 is used to generate suction, and the external oil fume and steam are transported to the fan assembly 1000 through the air inlet plate group 2000. The functional assembly is mainly used for steaming or baking objects, and it is worth noting that the object will generate steam in the steaming process, and the object will generate smoke in the baking process. Therefore, the steam and smoke generated by the functional assembly during use also need to be discharged to the outside (the outside space of the kitchen) through the fan assembly 1000 and the air inlet plate group 2000.

[0034] As Figure 1 and Figure 2As shown, the functional assembly, the air inlet plate set 2000 and the second lifting mechanism are connected with the fan assembly 1000 through the first lifting mechanism respectively, and the first lifting mechanism can drive the functional assembly, the air inlet plate set 2000 and the second lifting mechanism to move synchronously towards the direction of approaching or moving away from the fan assembly 1000.

[0035] The air inlet plate set 2000 is connected with the functional assembly through the second lifting mechanism, and the second lifting mechanism can drive the air inlet plate set 2000 to move towards the direction of approaching or moving away from the functional assembly.

[0036] In use, the fan assembly 1000 is arranged above, and the functional assembly is arranged below. When the functional assembly starts to work, the first lifting mechanism can drive the functional assembly to descend by a predetermined height towards the direction of moving away from the fan assembly 1000, so as to facilitate the use of the functional assembly. When oil fume and steam are generated from the functional assembly or other positions of the kitchen (for example, the gas stove and the pot 7300, etc.), the second lifting mechanism can drive the air inlet plate set 2000 to descend by a predetermined height towards the direction of moving away from the fan assembly 1000, so as to facilitate the suction of the oil fume and the steam.

[0037] It should be noted that the first lifting mechanism and the second lifting mechanism are independently operated, that is, the air inlet plate set 2000 can be directly driven to descend by the second lifting mechanism alone in the case that the first lifting mechanism drives the functional assembly, the air inlet plate set 2000 and the second lifting mechanism to descend as a whole. Of course, the air inlet plate set 2000 can also be driven to descend by the second lifting mechanism in the case that the first lifting mechanism drives the functional assembly, the air inlet plate set 2000 and the second lifting mechanism to descend as a whole. Obviously, at this time, the position of the air inlet plate set 2000 is lower, which is more conducive to the suction of the oil fume at a lower position.

[0038] As can be seen from the above, since the functional assembly and the range hood are integrally arranged, and the functional assembly is arranged above the countertop, in the full-embedded integrated structure provided in the present application, the functional assembly does not need to occupy the space of the lower cabinet 7200, and does not need to be bent down for cleaning, and the steam can be effectively prevented from being puffed by the functional assembly through the fan assembly 1000 and the air inlet plate set 2000.

[0039] Further, the functional assembly and the range hood can be fully embedded in the upper cabinet 7100, so that the countertop of the kitchen is more simple and beautiful, and does not occupy too much countertop space.

[0040] In an embodiment, the air inlet plate set 2000 is mainly surrounded by a plurality of plates to form a structure with one side smoke suction port, so as to improve the smoke suction efficiency of the air inlet plate set 2000.

[0041] In an embodiment, as shown in FIG. 7, the air inlet plate set 2000 is mainly surrounded by a plurality of plates to form a structure with one side smoke suction port. Figures 2-4As shown, the functional assembly includes a functional box 6200 and a partition frame 6100, wherein the functional box 6200 is used to realize the steaming function and the baking function of the functional assembly. The partition frame 6100 is provided with a containing cavity 6110, the functional box 6200 is installed at one end of the containing cavity 6110, and the second lifting mechanism is installed at the other end of the containing cavity 6110.

[0042] It should be noted that the functional box 6200 includes but is not limited to a steaming oven, an air fryer, a dishwasher, and the like, which are not listed here.

[0043] Specifically, in order to facilitate use, in an embodiment, the functional box 6200 is installed at the front end of the partition frame 6100, and it should be noted that the front end of the partition frame 6100 is close to the cabinet door of the upper cabinet 7100. The second lifting mechanism is installed at the rear end of the partition frame 6100, and it should be noted that the rear end of the partition frame 6100 is close to the wall surface.

[0044] However, it is not limited to this, and in other embodiments, the functional box 6200 and the second lifting mechanism can also be installed at the left and right ends of the partition frame 6100.

[0045] Further, as shown in Figures 2-4 , the second lifting mechanism can drive the air inlet plate set 2000 to extend out of the containing cavity 6110 in a direction away from the fan assembly 1000, or, as shown in Figure 1 , the second lifting mechanism can drive the air inlet plate set 2000 to retract into the containing cavity 6110 in a direction close to the fan assembly 1000.

[0046] By providing the partition frame 6100, the functional box 6200 and the air inlet plate set 2000 can be arranged in the containing cavity 6110, greatly improving the assembly compactness of the fully-embedded integrated structure, so that the volume of the fully-embedded integrated structure in the closed state is greatly reduced. At this time, the entire fully-embedded integrated structure can be accommodated in the upper cabinet 7100, thereby increasing the aesthetic appearance of the entire kitchen decoration to a certain extent.

[0047] Further, in an embodiment, as shown in Figures 2-4 , the second lifting mechanism is arranged on the side of the functional box 6200 away from the opening thereof, that is, the second lifting mechanism is arranged on the back of the functional box 6200.

[0048] In this way, the air inlet plate set 2000 and the opening of the functional box 6200 can be arranged at intervals, so as to avoid the oil fume and steam in the air inlet plate set 2000 from directly entering the interior of the functional box 6200 through the opening of the functional box 6200.

[0049] Further, in an embodiment, as shown in Figures 2-4As shown, the side wall of the partition frame 6100 is provided with a first assembly opening 6120 communicating with the accommodating cavity 6110, and the functional box 6200 can be mounted in the accommodating cavity 6110 from the first assembly opening 6120, and the opening of the functional box 6200 is arranged in the same direction as the first assembly opening 6120, so as to facilitate opening or closing of the functional box 6200 through the first assembly opening 6120.

[0050] Specifically, the partition frame 6100 is in a cuboid shape, and one side end face of the cuboid-shaped partition frame 6100 is not provided with a shell to form the first assembly opening 6120, so as to reduce the processing difficulty of the first assembly opening 6120.

[0051] In an embodiment, the top wall of the partition frame 6100 is provided with a first air inlet communicating with the accommodating cavity 6110 and the fan assembly 1000, and the functional box 6200 and the side wall of the partition frame 6100 away from the first assembly opening 6120 are spaced apart to form an air inlet channel, when the air inlet plate group 2000 is in a closed state, the air inlet plate group 2000 can be accommodated in the air inlet channel, and when the air inlet plate group 2000 is in an open state, the air inlet plate group 2000 can sequentially pass through the air inlet channel and the first air inlet to communicate with the fan assembly 1000.

[0052] By spacing the functional box 6200 and the side wall of the partition frame 6100 away from the first assembly opening 6120 to form an air inlet channel, on the one hand, an air inlet channel for passing through oil fumes and steam can be formed in the accommodating cavity 6110, avoiding the escape of oil fumes and steam everywhere, thereby avoiding mutual interference between the air inlet plate group 2000 and the functional box 6200 during use. On the other hand, a partition plate does not need to be separately arranged in the accommodating cavity 6110, thereby saving materials and reducing weight and cost.

[0053] Further, since the air inlet plate group 2000 can be accommodated (shrinked) in the air inlet channel in the closed state, the space utilization rate of the accommodating cavity 6110 is effectively improved.

[0054] It should be noted that in the present embodiment, the second lifting mechanism is mounted on the side wall of the partition frame 6100 away from the first assembly opening 6120, that is, the second lifting mechanism is mounted on the rear wall of the partition frame 6100.

[0055] But not limited to this, in other embodiments, the second lifting mechanism can also be mounted on the left and right side walls of the accommodating cavity 6110,

[0056] In an embodiment, as Figures 3-4As shown, the full-embedded integrated structure further comprises a transfer frame 5000, the fan assembly 1000 is connected to the transfer frame 5000 through the first lifting mechanism, and the functional assembly, the air inlet plate set 2000 and the second lifting mechanism are respectively installed at one end of the transfer frame 5000 away from the fan assembly 1000, so that the first lifting mechanism can drive the functional assembly, the air inlet plate set 2000 and the second lifting mechanism to move synchronously towards or away from the fan assembly 1000 through the transfer frame 5000.

[0057] In this way, the transfer frame 5000 is conducive to integrated assembly of the functional assembly, the air inlet plate set 2000 and the second lifting mechanism, and the assembly difficulty of the functional assembly, the air inlet plate set 2000 and the second lifting mechanism is reduced.

[0058] However, the functional assembly, the air inlet plate set 2000 and the second lifting mechanism can also be directly installed on the first lifting mechanism in other embodiments.

[0059] Further, in an embodiment, as shown in the drawings, Figure 4 The transfer frame 5000 is provided with a nested cavity 5100, and when the first lifting mechanism drives the transfer frame 5000 to move towards the fan assembly 1000, the transfer frame 5000 can be sleeved on the outside of the fan assembly 1000 through the nested cavity 5100.

[0060] In this way, the volume of the full-embedded integrated structure is further reduced, and the full-embedded integrated structure is conducive to being accommodated in the upper cabinet 7100.

[0061] Further, in an embodiment, the transfer frame 5000 is further provided with a second air inlet communicating with the first air inlet and the nested cavity 5100, so that the air inlet plate set 2000, the air inlet channel, the first air inlet, the second air inlet, the nested cavity 5100 and the fan assembly 1000 are sequentially communicated, so as to facilitate the oil fume and the steam to finally enter the fan assembly 1000.

[0062] Specifically, in an embodiment, as shown in the drawings, Figures 2-4 The transfer frame 5000 is in the shape of a rectangular parallelepiped, the upper side of the transfer frame 5000 is provided with a second assembly opening 5200 communicating with the nested cavity 5100, and the transfer frame 5000 can be sleeved on the outside of the fan assembly 1000 through the second assembly opening 5200.

[0063] Further, the second air inlet is arranged at one end of the transfer frame 5000 away from the second assembly opening 5200.

[0064] In an embodiment, as shown in the drawings, Figures 3-4As shown, the first lifting mechanism comprises a first motor 3100 and a screw rod 3200, the first motor 3100 is mounted on one of the fan assembly 1000 and the adapter frame 5000, one end of the screw rod 3200 is connected to the output end of the first motor 3100, and the other end is threadedly connected to the other one of the fan assembly 1000 and the adapter frame 5000, so that the first motor 3100 can drive the screw rod 3200 to move the adapter frame 5000 towards or away from the fan assembly 1000.

[0065] That is, when the first motor 3100 is mounted on the fan assembly 1000, one end of the screw rod 3200 is connected to the output end of the first motor 3100, and the other end is threadedly connected to the adapter frame 5000. Conversely, when the first motor 3100 is mounted on the adapter frame 5000, one end of the screw rod 3200 is connected to the output end of the first motor 3100, and the other end is threadedly connected to the fan assembly 1000.

[0066] Specifically, as shown, Figure 4 the back (the side away from the first assembly opening 6120) of the fan assembly 1000 is provided with a groove 1100 for accommodating the screw rod 3200. The inner wall of the adapter frame 5000 is fixedly provided with a connecting block (not shown), and the screw rod 3200 and the connecting block are threadedly connected.

[0067] Further, in an embodiment, as shown, Figure 4 the first lifting mechanism further comprises a first guide rail 3300 and a first sliding block 3400, the first guide rail 3300 is mounted on one of the fan assembly 1000 and the adapter frame 5000, and the first sliding block 3400 is mounted on the other one of the fan assembly 1000 and the adapter frame 5000. Moreover, the first sliding block 3400 and the first guide rail 3300 are slidingly connected, so that the adapter frame 5000 can move along a predetermined track relative to the fan assembly 1000, and the stability of the movement of the adapter frame 5000 is improved.

[0068] Further, in an embodiment, the number of the first guide rail 3300 and the first sliding block 3400 is multiple, and the multiple first guide rails 3300 and the first sliding blocks 3400 are distributed around the circumference of the fan assembly 1000.

[0069] In an embodiment, as shown, Figures 3-4As shown, the second lifting mechanism comprises a second motor 4100, a worm (not shown), a worm wheel (not shown), a driving shaft 4200 and a pin 4300, the worm is connected to the output end of the second motor 4100, and the worm and the worm wheel are engagedly connected. The second motor 4100 is installed on one of the partition frame 6100 and the air inlet plate set 2000, one end of the driving shaft 4200 is coaxially arranged and fixedly assembled with the worm, and the other end is clamped to the other one of the partition frame 6100 and the air inlet plate set 2000 through the pin 4300, so that the second motor 4100 can drive the air inlet plate set 2000 to move towards or away from the partition frame 6100 through the worm wheel, the worm, the driving shaft 4200 and the pin 4300 in sequence.

[0070] Specifically, the pin 4300 is arranged through the driving shaft 4200, and the two ends of the pin 4300 are respectively arranged in the air inlet plate set 2000.

[0071] Further, in an embodiment, as shown, Figures 3-4 The second lifting mechanism further comprises a second guide rail 4400 and a second sliding block, the second guide rail 4400 is installed on one of the partition frame 6100 and the air inlet plate set 2000, and the second sliding block is installed on the other one of the partition frame 6100 and the air inlet plate set 2000. Moreover, the second sliding block and the second guide rail 4400 are slidingly matched, so that the air inlet plate set 2000 can move along a predetermined track relative to the partition frame 6100, and the moving stability of the air inlet plate set 2000 is improved.

[0072] Further, in an embodiment, the number of the second guide rail 4400 and the second sliding block is multiple, and the multiple second guide rails 4400 and the second sliding blocks are distributed around the circumference of the air inlet plate set 2000.

[0073] In an embodiment, as shown, Figures 2-6 The function box 6200 comprises a main box body 6210, a door body 6220, a connecting rod mechanism and an elastic member 6230, the main box body 6210 is provided with a function cavity 6211 and a communication port 6212 communicating with the function cavity 6211, and an object to be cooked is placed in the function cavity 6211 through the communication port 6212, or the object is taken out from the function cavity 6211 through the communication port 6212.

[0074] The door body 6220 can be sealingly arranged at the communication port 6212, so that the function box 6200 remains in a closed state during use. Moreover, one end of the connecting rod mechanism is hingedly connected to the main box body 6210, and the other end is hingedly connected to the door body 6220, so that the door body 6220 can be arranged in relative rotation with the main box body 6210 to open or close the communication port 6212.

[0075] The elastic member 6230 is connected to the main box body 6210 at one end and connected to the connecting rod mechanism at the other end, and the elastic member 6230 can exert an elastic tension on the connecting rod mechanism.

[0076] It should be noted that the main box body 6210 includes an inner container 6213 and an outer shell 6214, the outer shell 6214 is wrapped outside the inner container 6213, the connecting rod mechanism and the elastic member 6230 are connected to the outer shell 6214 of the main box body 6210, and the functional cavity 6211 and the communication port 6212 are arranged in the inner container 6213.

[0077] In this way, on the one hand, when the door body 6220 is covered on the main box body 6210, the elastic member 6230 can pull the connecting rod mechanism to make the connecting rod mechanism drive the door body 6220 to close the main box body 6210, thereby improving the sealing performance of the communication port 6212 of the main box body 6210. On the other hand, when it is necessary to close the door body 6220, the elastic member 6230 can pull the door body 6220 to move towards the main box body 6210, so that the door body 6220 is closed more easily, thereby improving the use experience of the functional box 6200.

[0078] In an embodiment, as shown in Figures 5-6 the elastic member 6230 is a compression spring, and one end of the compression spring is fixedly connected to the side wall of the main box body 6210, and the other end is fixedly connected to the connecting rod mechanism.

[0079] The compression spring structure is simple and easy to install, which is conducive to reducing the manufacturing cost of the functional box 6200.

[0080] But not limited to this, in another embodiment, the elastic member 6230 can also be an elastic rope, specifically, the elastic rope can be a latex piece, a rubber piece, a polyethylene piece or a nylon piece, etc., which are not listed one by one.

[0081] In an embodiment, as shown in Figures 5-6 the connecting rod mechanism includes a first connecting rod 6240 and a second connecting rod 6250, one end of the first connecting rod 6240 is hinged to the main box body 6210 through a first hinge shaft 6241, the other end is hinged to the door body 6220 through a second hinge shaft 6242, similarly, one end of the second connecting rod 6250 is hinged to the main box body 6210 through a third hinge shaft 6251, the other end is hinged to the door body 6220 through a fourth hinge shaft 6252, and the first hinge shaft 6241, the second hinge shaft 6242, the fourth hinge shaft 6252 and the third hinge shaft 6251 are arranged in turn at the four vertices of the quadrilateral structure.

[0082] It should be noted that the first hinge shaft 6241 and the second hinge shaft 6242 define a first connecting line, and the third hinge shaft 6251 and the fourth hinge shaft 6252 define a second connecting line, since the first hinge shaft 6241, the second hinge shaft 6242, the fourth hinge shaft 6252 and the third hinge shaft 6251 are arranged in sequence at the four vertices of the quadrilateral structure, therefore, the first connecting line and the second connecting line are not crossed, thus, it is beneficial to the linkage structure to drive the door body 6220 to rotate in a large range.

[0083] Further, one end of the elastic member 6230 is connected to the first connecting rod 6240, and the other end is connected to the main box body 6210.

[0084] Thus, the first connecting rod 6240 in the linkage mechanism is a driving member, and the second connecting rod 6250 is a driven member, compared with the scheme that the first connecting rod 6240 and the second connecting rod 6250 are both driving members, the present scheme is obviously beneficial to avoid the situation that the first connecting rod 6240 and the second connecting rod 6250 are subjected to force in different directions and affect the rotation of the door body 6220.

[0085] Further, in an embodiment, as shown in Figure 5 the distance A between the first hinge shaft 6241 and the second hinge shaft 6242, the distance B between the third hinge shaft 6251 and the fourth hinge shaft 6252, the vertical distance C between the first hinge shaft 6241 and the door body 6220 when the door body 6220 sealing cover is arranged at the communication port 6212, and the vertical distance D between the third hinge shaft 6251 and the door body 6220 satisfy A>C, B>D.

[0086] Thus, when the linkage mechanism drives the door body 6220 to open the communication port 6212, since A>C, B>D, the distance between the door body 6220 and the main box body 6210 increases during rotation, which can effectively avoid the door body 6220 from bumping into the edge of the main box body 6210 during rotation.

[0087] But not limited to this, in other embodiments, when the edge where the main box body 6210 and the door body 6220 are connected is in a circular arc shape, then A can be equal to C, and B can be equal to D, at this time, the door body 6220 will not bump into the main box body 6210 during rotation.

[0088] Further, in an embodiment, the vertical height of the first hinge shaft 6241 is greater than the vertical height of the third hinge shaft 6251, and A>B, so that the door body 6220 can be rotated to the bottom of the main box body 6210.

[0089] It should be noted that the bottom of the main box body 6210 is the side of the main box body 6210 away from the fan assembly 1000, and since the vertical height of the first hinged shaft 6241 is greater than the vertical height of the third hinged shaft 6251, and since the first hinged shaft 6241, the second hinged shaft 6242, the fourth hinged shaft 6252, and the third hinged shaft 6251 are arranged in the four vertices of the quadrilateral structure in turn, that is, the first connecting line and the second connecting line do not intersect, and thus the first connecting rod 6240 is obviously arranged above the second connecting rod 6250. Therefore, when A > B, the first connecting rod 6240 can obviously extend a longer distance, and thus it is more beneficial to avoid the door body 6220 from knocking against the corners of the main box body 6210 near the door body 6220 during the rotation of the door body 6220 towards the bottom of the main box body 6210.

[0090] However, the door body 6220 can also be rotated to the top of the main box body 6210 when B > A, and the vertical height of the first hinged shaft 6241 is less than the vertical height of the third hinged shaft 6251.

[0091] It should be noted that the door body 6220 can be rotated to a position parallel to the bottom of the main box body 6210.

[0092] In an embodiment, C > D, which can avoid the distance between the door body 6220 and the main box body 6210 being too large during rotation, causing the door body 6220 to easily knock against the operator.

[0093] However, in other embodiments, C can also be less than or equal to D.

[0094] Further, in an embodiment, as shown in Figures 5-6 the first connecting rod 6240 includes a first rod segment 6243 and a second rod segment 6244 arranged at an angle, and the main box body 6210 connects the door body 6220 through the first rod segment 6243 and the second rod segment 6244 in turn, that is, the first rod segment 6243 is arranged near the first hinged shaft 6241, and the second rod segment 6244 is arranged near the second hinged shaft 6242. Moreover, the first rod segment 6243 and the second rod segment 6244 are connected to form an angle with the tip of the angle facing away from the door body 6220, and one end of the elastic member 6230 is connected to the main box body 6210 and the other end is connected to the first rod segment 6243.

[0095] Specifically, the connection point of the elastic member 6230 and the main box body 6210 is defined as the first connection point 6231, the connection point of the elastic member 6230 and the first rod segment 6243 is defined as the second connection point 6232, and the third connecting line between the first connection point 6231 and the first hinged shaft 6241. When the door body 6220 is in a state of closing the communication port 6212, the angle between the third connecting line and the first rod segment 6243 is less than 90 degrees.

[0096] In this way, the distance between the first connecting point 6231 and the second connecting point 6232 can be set to be closer, avoiding excessive stretching of the elastic member 6230.

[0097] In addition, in this way, as the first rod segment 6243 rotates, the stretching amount of the elastic member 6230 tends to increase as the door body 6220 rotates from the communication opening 6212 to the bottom of the main box body 6210. It can be understood that as the door body 6220 moves away from the main box body 6210, the torque effect of the door body 6220 on the linkage mechanism tends to increase, and therefore, the increase in the stretching amount of the elastic member 6230 is conducive to providing greater pulling force to the door body 6220, so that the door body 6220 can hover at any angle in the air.

[0098] Specifically, in an embodiment, the included angle between the first rod segment 6243 and the second rod segment 6244 is 90 degrees.

[0099] In an embodiment, as shown in Figures 5-6 The second linkage 6250 is provided with a hook-shaped groove 6253, and when the door body 6220 closes the communication opening 6212, the second linkage 6250 can be clamped in the hook-shaped groove 6253 of the first hinge shaft 6241, and when the door body 6220 opens the communication opening 6212, the hook-shaped groove 6253 can be separated from the first hinge shaft 6241.

[0100] Specifically, the second linkage 6250 is curved towards the direction away from the door body 6220 to form a structure provided with the hook-shaped groove 6253, and the second linkage 6250 as a whole has an eagle hook shape.

[0101] In this way, when the door body 6220 closes the communication opening 6212, the first hinge shaft 6241 can exert a clamping force on the second linkage 6250 through the hook-shaped groove 6253, avoiding loosening of the door body 6220.

[0102] In an embodiment, two linkage mechanisms are respectively arranged on the left and right sides of the main box body 6210 and are respectively connected to the left and right ends of the door body 6220, which is conducive to stabilizing the force during the opening and closing of the door body 6220.

[0103] It should be noted that the function box 6200 and the full-embedded integrated structure are both intelligent control, and the control logic of the full-embedded integrated structure is described below.

[0104] First, the control logic of the range hood part is as follows:

[0105] The range hood is turned on, the first lifting mechanism drives the functional assembly, the air inlet plate group 2000 and the second lifting mechanism to start to drop as a whole, and the distance sensor detects for the first time whether the distance between the lowermost end of the full-embedded integrated structure and the pot 7300 is greater than the safety distance;

[0106] When the distance sensor detects for the first time that the distance between the lowermost end of the full-embedded integrated structure and the pot 7300 is greater than the safety distance, the functional assembly, the air inlet plate group 2000 and the second lifting mechanism drop as a whole to the position point H2, and the second lifting mechanism continues to drive the air inlet plate group 2000 to drop to the position point h1;

[0107] Then, the infrared sensor detects the oil fume concentration, and when the oil fume concentration is less than or equal to the set value A1, the air inlet plate group 2000 maintains the position point h1 to operate;

[0108] When the oil fume concentration is greater than the set value A1, the controller issues an instruction for the functional assembly, the air inlet plate group 2000 and the second lifting mechanism to continue to drop as a whole to the position point H3, and if the user does not confirm the above instruction to drop to the position point H3 within n seconds, the second lifting mechanism continues to drive the air inlet plate group 2000 to drop to the position point h2, and the rotating speed of the fan assembly 1000 is increased to the high gear;

[0109] If the user confirms the above instruction to drop to the position point H3 within n seconds, the distance sensor detects for the second time whether the distance between the lowermost end of the full-embedded integrated structure and the pot 7300 is greater than the safety distance, and when the distance sensor detects for the second time that the distance between the lowermost end of the full-embedded integrated structure and the pot 7300 is less than or equal to the safety distance, the functional assembly, the air inlet plate group 2000 and the second lifting mechanism stop dropping, the second lifting mechanism continues to drive the air inlet plate group 2000 to drop to the position point h2, and the rotating speed of the fan assembly 1000 is increased to the high gear;

[0110] When the distance between the lowermost end of the full-embedded integrated structure and the pot 7300 is greater than the safety distance, the functional assembly, the air inlet plate group 2000 and the second lifting mechanism execute the instruction to drop as a whole to the position point H3, and the air inlet plate group 2000 maintains the position point h1 to operate;

[0111] Then, the infrared sensor detects the oil fume concentration again, and when the oil fume concentration is less than or equal to the set value A1, the position point H3 and the position point h1 are maintained, and when the oil fume concentration is greater than the set value A1, the second lifting mechanism continues to drive the air inlet plate group 2000 to drop to the position point h2, and the rotating speed of the fan assembly 1000 is increased to the high gear.

[0112] When the distance sensor first measures the distance between the lowermost end of the fully-embedded integrated structure and the pot 7300 to be less than or equal to the safe distance, the functional assembly, the air inlet plate group 2000, and the second lifting mechanism stop descending, and the second lifting mechanism drives the air inlet plate group 2000 to descend to the position point h1;

[0113] After that, the infrared sensor detects the oil fume concentration, and when the oil fume concentration is less than or equal to the set value A1, the air inlet plate group 2000 maintains the position point h1 to operate;

[0114] When the oil fume concentration is greater than the set value A1, the second lifting mechanism continues to drive the air inlet plate group 2000 to descend to the position point h2, and the rotating speed of the fan assembly 1000 is increased to the high gear.

[0115] Then, the control logic of the functional box 6200 part is as follows:

[0116] When the functional box 6200 is opened, the first detection is whether the range hood is in the operating state;

[0117] When the range hood is in the operating state, the height information of the functional assembly, the air inlet plate group 2000, and the second lifting mechanism at this moment is identified, and the distance between the lowermost end of the fully-embedded integrated structure and the pot 7300 is detected;

[0118] When the distance between the lowermost end of the fully-embedded integrated structure and the pot 7300 is greater than the safe distance, the first lifting mechanism drives the functional assembly, the air inlet plate group 2000, and the second lifting mechanism to descend to the position point H11 of the put-and-take functional tray, and then it is automatically identified whether the door body 6220 of the functional box 6200 is opened;

[0119] It should be noted that when the distance between the lowermost end of the fully-embedded integrated structure and the pot 7300 is less than or equal to the safe distance, it is directly automatically identified whether the door body 6220 of the functional box 6200 is opened;

[0120] After it is automatically identified whether the door body 6220 of the functional box 6200 is opened, it is continuously identified whether the door body 6220 of the functional box 6200 is closed, and whether the steaming function and the baking function of the functional box 6200 are opened;

[0121] After that, the functional assembly, the air inlet plate group 2000, and the second lifting mechanism descend to the position point H, and the descending height of the functional assembly, the air inlet plate group 2000, and the second lifting mechanism is dynamically adjusted according to the oil fume concentration.

[0122] When the range hood is in the non-operating state, the first lifting mechanism drives the functional assembly, the air inlet plate group 2000, and the second lifting mechanism to descend to the position point H11 of the put-and-take functional tray;

[0123] Then, the automatic identification function box 6200 door body 6220 is opened, and then, continue to identify the function box 6200 door body 6220 is closed, and identify the function box 6200 steaming function and baking function whether to open;

[0124] The controller issues a user-operable first lifting mechanism command, and if the user does not operate the command within n seconds, the first lifting mechanism drives the functional assembly, the air inlet plate group 2000 and the second lifting mechanism to the position point H1;

[0125] If the user operates the command within n seconds, the first lifting mechanism drives the functional assembly, the air inlet plate group 2000 and the second lifting mechanism to the position specified by the user.

[0126] The technical features of the above-described embodiments can be combined in any manner. To make the description concise, not all possible combinations of the technical features in the above-described embodiments are described, but as long as the combinations of the technical features do not contradict, they should be considered within the scope of the present disclosure.

[0127] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be noted that for those skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.

Claims

1. A fully embedded integrated structure, characterized in that, The fan assembly (1000), the first lifting mechanism, the function assembly, the air inlet plate group (2000) and the second lifting mechanism are connected to each other through the first lifting mechanism, and the first lifting mechanism can drive the function assembly, the air inlet plate group (2000) and the second lifting mechanism to move synchronously towards or away from the fan assembly (1000); The air inlet plate group (2000) is connected to the function assembly through the second lifting mechanism, and the second lifting mechanism can drive the air inlet plate group (2000) to move towards or away from the function assembly. The function assembly comprises a function box (6200) and a partition frame (6100), the partition frame (6100) is provided with a containing cavity (6110), the function box (6200) is installed at one end of the containing cavity (6110), and the second lifting mechanism is installed at the other end of the containing cavity (6110).

2. The fully embedded integrated structure of claim 1, wherein, The second lifting mechanism can drive the air inlet plate group (2000) to extend out of the containing cavity (6110) away from the fan assembly (1000), or to retract into the containing cavity (6110) towards the fan assembly (1000). The second lifting mechanism is arranged on the side of the function box (6200) away from the opening thereof.

3. The fully embedded integrated structure of claim 2, wherein, The side wall of the partition frame (6100) is provided with a first assembly opening (6120) communicating with the containing cavity (6110), the function box (6200) can be installed in the containing cavity (6110) from the first assembly opening (6120), and the opening of the function box (6200) is arranged in the same direction as the first assembly opening (6120).

4. The fully embedded integrated structure of claim 2 or 3, wherein, The partition frame (6100) is provided with a first air inlet communicating with the containing cavity (6110) and the fan assembly (1000), and the function box (6200) and the partition frame (6100) are arranged apart from the side wall away from the first assembly opening (6120) to form an air inlet channel.

5. The fully embedded integrated structure of claim 4, wherein, When the air inlet plate group (2000) is in a closed state, the air inlet plate group (2000) can be accommodated in the air inlet channel, and when the air inlet plate group (2000) is in an open state, the air inlet plate group (2000) can communicate with the fan assembly (1000) through the air inlet channel and the first air inlet in sequence. The second lifting mechanism comprises a second motor (4100), a worm, a worm gear, a drive shaft (4200) and a latch (4300), the worm is connected to the output end of the second motor (4100), and the worm and the worm gear are engaged.

6. The fully embedded integrated structure of claim 2, wherein, ​ The second motor (4100) is mounted on one of the partition frame (6100) and the air inlet plate group (2000), one end of the drive shaft (4200) is coaxially arranged and fixedly assembled with the worm, and the other end is clamped on the other one of the partition frame (6100) and the air inlet plate group (2000) through the latch (4300), so that the second motor (4100) can drive the air inlet plate group (2000) to move towards the direction close to or away from the partition frame (6100) through the worm, the worm gear, the drive shaft (4200) and the latch (4300) in sequence.

7. The fully embedded integrated structure of claim 1, wherein, The adapter frame (5000) is connected to the fan assembly (1000) through the first lifting mechanism, and the functional assembly, the air inlet plate group (2000) and the second lifting mechanism are respectively mounted on one end of the adapter frame (5000) away from the fan assembly (1000).

8. The fully embedded integrated structure of claim 7, wherein, The adapter frame (5000) is provided with a nesting cavity (5100), when the first lifting mechanism drives the adapter frame (5000) to move towards the direction close to the fan assembly (1000), the adapter frame (5000) can be sleeved outside the fan assembly (1000) through the nesting cavity (5100).

9. The fully embedded integrated structure of claim 7, wherein, The first lifting mechanism includes a first motor (3100) and a lead screw (3200), the first motor (3100) is mounted on one of the fan assembly (1000) and the adapter frame (5000), one end of the lead screw (3200) is connected to the output end of the first motor (3100), and the other end is threadedly connected to the other one of the fan assembly (1000) and the adapter frame (5000), so that the first motor (3100) can drive the lead screw (3200) to drive the adapter frame (5000) to move towards the direction close to or away from the fan assembly (1000).

10. The fully embedded integrated structure of claim 9, wherein, The first lifting mechanism further includes a first guide rail (3300) and a first sliding block (3400), the first guide rail (3300) is mounted on one of the fan assembly (1000) and the adapter frame (5000), the first sliding block (3400) is mounted on the other one of the fan assembly (1000) and the adapter frame (5000), and the first sliding block (3400) and the first guide rail (3300) are slidingly matched.