Integrated cooker

By using mechanical linkage devices in the integrated stove to realize the linkage between the lifting and the expansion and contraction of the storage table, the interference problem caused by independent driving is solved, and the reliability and safety of the integrated stove is improved.

CN223294855UActive Publication Date: 2025-09-02HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Application Number
CN202422625590.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-02
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

When the lifting and retracting functions of the hood in the existing integrated stove are controlled by an independent drive mechanism, it is easy to interfere, resulting in body damage and safety issues.

Method used

The mechanical linkage device is used to connect the lifting and retracting function of the hood to the station through mechanical transmission, and a driving device is used to achieve linkage to avoid interference.

Benefits of technology

It enhances the operational reliability and safety of the integrated stove and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides an integrated cooker and relates to the technical field of kitchen appliances. The integrated cooker comprises a cooker body, a range hood, a storage table, a driving device and a mechanical linkage device, the cooker body is provided with a storage groove, and the range hood is arranged in the storage groove; the storage table comprises a storage table shell and a storage rack, the storage table shell is arranged on the range hood, and the storage rack is slidably connected to the storage table shell; the driving device is arranged in the storage groove, is connected with the range hood and is used for driving the range hood to lift; the mechanical linkage device is arranged on the range hood and connected with the storage rack, and the mechanical linkage device is used for driving the storage rack to extend out of the storage table shell under the condition that the driving device drives the range hood to ascend; and the driving device is used for driving the storage rack to retract into the storage table shell under the condition that the driving device drives the range hood to descend. According to the integrated cooker, lifting of the range hood and stretching of the storage table can be connected through mechanical transmission, the situation that the range hood and the storage table interfere and damage a cooker body is avoided, reliability and safety are enhanced, and user experience is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of kitchen appliances, and in particular to an integrated stove. Background Art

[0002] As a type of integrated stove, a lift-type integrated stove primarily aims to lower and conceal the range hood, resulting in an aesthetically pleasing appearance. Furthermore, to facilitate easy placement of cooking supplies, such as condiment boxes, side dishes, and bowls and chopsticks, the range hood is often equipped with a retractable storage table on top. In existing technology, the range hood's lifting and retractable storage table functions are typically achieved using independent drive mechanisms, coordinated through the control of an electronic control system.

[0003] However, this independent drive method has a complicated electronic control program, which can easily cause interference between the extension and retraction of the storage table and the lifting and lowering of the range hood, thereby damaging the body of the integrated stove and even causing safety issues for users. Utility Model Content

[0004] The purpose of the utility model is to provide an integrated stove, which can connect the lifting and lowering of the range hood and the extension and retraction of the storage table through mechanical transmission, so as to avoid the problem of interference between the two and damage to the body of the stove, enhance the operational reliability and safety of use of the integrated stove, and improve the user experience.

[0005] The embodiment of the present utility model is achieved as follows:

[0006] In a first aspect, the present invention provides an integrated stove, comprising:

[0007] A body, wherein the body is provided with a storage slot;

[0008] a range hood, the range hood being disposed in the storage slot;

[0009] A storage platform, comprising a storage platform shell and a storage rack, wherein the storage platform shell is disposed on the range hood, and the storage rack is slidably connected to the storage platform shell;

[0010] a driving device, the driving device being disposed in the receiving slot and connected to the range hood for driving the range hood to move upward and downward; and

[0011] A mechanical linkage device is provided on the range hood and connected to the storage rack. The mechanical linkage device is used to drive the storage rack to extend out of the storage table shell when the driving device drives the range hood to rise; and is used to drive the storage rack to retract into the storage table shell when the driving device drives the range hood to descend.

[0012] In an optional embodiment, the mechanical linkage device includes a driving assembly, a reversing mechanism, and a driven assembly that are sequentially connected in transmission, the driving assembly is arranged on the range hood, the reversing mechanism and the driven assembly are both arranged in the storage platform housing, and the driven assembly is connected to the storage rack;

[0013] The driving assembly is used to sequentially drive the reversing mechanism and the driven assembly to move when the range hood rises, so as to drive the storage rack to extend out of the storage table shell; and is used to sequentially drive the reversing mechanism and the driven assembly to move when the range hood descends, so as to drive the storage rack to retract into the storage table shell.

[0014] In an optional embodiment, the drive assembly includes a fixing member, a drive ring, and a drive rod, the fixing member is arranged in the receiving groove, the drive ring is arranged in the fixing member, and the inner wall of the drive ring is provided with a first internal thread; the drive rod is arranged in the range hood, one end of the drive rod is transmission-connected to the reversing mechanism, and the other end is passed through the drive ring, and the drive rod is provided with a first external thread, and the first external thread is used to cooperate with the first internal thread;

[0015] The driven assembly includes a driven ring and a driven rod. The driven ring is connected to the storage rack, and the inner wall of the driven ring is provided with a second internal thread. The driven rod is transmission-connected to the reversing mechanism and passes through the driven ring. The driven rod is provided with a second external thread, and the second external thread cooperates with the second internal thread.

[0016] In an optional embodiment, the first external thread is provided at an end of the driving rod away from the reversing mechanism.

[0017] In an optional embodiment, the reversing mechanism is a worm gear mechanism.

[0018] In an optional embodiment, slide rails are provided on both sides of the storage rack, and slide grooves are provided on the two opposite side walls of the storage platform shell, and the slide rails cooperate with the slide grooves.

[0019] In an optional embodiment, the storage platform further includes a storage plate, which is arranged on the storage rack and has an embedding groove for placing items.

[0020] In an optional embodiment, the integrated stove further includes a plurality of return springs and a plurality of gravity sensors, the plurality of gravity sensors being arranged at intervals on the storage rack, and the storage plate being arranged on the plurality of gravity sensors; the plurality of return springs corresponding one-to-one to the plurality of gravity sensors, and being respectively sleeved on the plurality of gravity sensors, and the two ends of the plurality of return springs respectively abutting against the storage plate and the storage rack.

[0021] In an optional embodiment, a plurality of limit blocks are provided at intervals on one side of the storage plate close to the storage rack, the plurality of limit blocks correspond one-to-one to the plurality of return springs, and each of the limit blocks is provided with a limit groove, and the plurality of return springs are respectively arranged in the plurality of limit grooves.

[0022] In an optional embodiment, the storage platform further includes a panel, which is arranged around the periphery of the storage rack, and the storage board is arranged on the storage rack and located inside the panel.

[0023] The beneficial effects of the embodiments of the present utility model include:

[0024] The integrated stove includes a machine body, a range hood, a storage table, a driving device and a mechanical linkage device. The machine body is provided with a storage slot, and the range hood is arranged in the storage slot; the storage table includes a storage table shell and a storage rack, the storage table shell is arranged on the range hood, and the storage rack is slidably connected to the storage table shell; the driving device is arranged in the storage slot and is connected to the range hood to drive the range hood to rise and fall; the mechanical linkage device is arranged on the range hood and connected to the storage rack, and the mechanical linkage device is used to drive the storage rack to extend out of the storage table shell when the driving device drives the range hood to rise; and to drive the storage rack to retract into the storage table shell when the driving device drives the range hood to descend.

[0025] In other words, when the drive device drives the range hood up, it also drives the mechanical linkage device up, achieving a coordinated operation and driving the storage rack to extend out of the storage table shell. Similarly, when the drive device drives the range hood down, it also drives the mechanical linkage device down. Through the coordinated operation of the two, the storage rack is retracted into the storage table shell. In this way, the range hood raising and lowering functions and the storage table extension and retraction functions are achieved simultaneously with the driving force of a single drive device, thus avoiding the problem of interference and damage to the body when the two work independently. This enhances the operational reliability and safety of the integrated stove and improves the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0027] Figure 1 A schematic diagram of a portion of the structure of the integrated stove provided by an embodiment of the present utility model in a first working condition from a first perspective;

[0028] Figure 2A schematic diagram of a portion of the structure of the integrated stove provided by an embodiment of the present utility model under a second working condition from a first viewing angle;

[0029] Figure 3 A schematic structural diagram of the integrated stove provided by an embodiment of the present invention in a third working condition from a second viewing angle;

[0030] Figure 4 A schematic structural diagram of the integrated stove provided by an embodiment of the present invention under a first working condition from a second viewing angle;

[0031] Figure 5 for Figure 2 A partial enlarged view of point A in the middle;

[0032] Figure 6 A schematic diagram of a portion of the structure of a drive assembly provided in an embodiment of the present utility model;

[0033] Figure 7 for Figure 2 A partial enlarged view of point B in the middle;

[0034] Figure 8 An exploded view of a storage table provided in an embodiment of the present utility model;

[0035] Figure 9 This is a cross-sectional view of the storage table provided in an embodiment of the present utility model.

[0036] Icons: 100-integrated stove; 10-machine body; 11-storage slot; 20-range hood; 30-storage table; 31-storage table shell; 32-storage rack; 321-slide rail; 33-storage plate; 331-embedded slot; 332-limiting block; 3321-limiting slot; 34-enclosing plate; 40-driving device; 41-motor; 42-lifting mechanism; 50-mechanical linkage device; 51-driving assembly; 511-fixing part; 512-driving ring; 5121-first internal thread; 513-driving rod; 5131-first external thread; 52-reversing mechanism; 53-driven assembly; 531-driven ring; 5311-second internal thread; 532-driven rod; 5321-second external thread; 60-reset spring; 70-gravity sensor. DETAILED DESCRIPTION

[0037] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0038] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.

[0039] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0040] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer" and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the utility model product is typically placed when in use. These terms are intended solely to facilitate the description of this utility model and to simplify the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third," etc., are used solely to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0041] Furthermore, terms such as "horizontal" and "vertical" do not necessarily mean that a component must be absolutely horizontal or overhanging, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but rather that it can be slightly tilted.

[0042] It should also be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0043] As described in the background, in the prior art, the range hood's lifting and lowering functions and the storage table's retraction and extension functions are typically achieved using independent drive mechanisms, coordinated through the control of an electronic control system. However, this independent drive approach results in complex electronic control procedures, which can easily cause interference between the retraction and extension of the storage table and the range hood's lifting and lowering operations. Specifically, during the range hood's initial ascent, the storage table can be simultaneously extended and pressed against the range hood, causing the range hood and storage table to become stuck within the range hood. Alternatively, during the range hood's descent, the storage table may not retract, preventing the range hood from being properly concealed and causing the range hood and storage table to become stuck on the range hood's surface. This can damage the integrated stove and even pose safety concerns to the user.

[0044] Based on this, please refer to Figures 1-9 The present invention provides an integrated stove 100 that effectively addresses the aforementioned technical issues. Specifically, it mechanically connects the lifting and lowering of the range hood 20 with the retracting and extending of the storage platform 30, preventing interference between the two and potentially damaging the stove body 10. This enhances the operational reliability and safety of the integrated stove 100 and improves the user experience. The integrated stove 100 will be described in detail below.

[0045] Please refer to Figures 1-4 , Figure 1 This is a partial structural diagram of the integrated stove 100 provided in this embodiment under the first working condition from a first viewing angle. Figure 2 This is a partial structural diagram of the integrated stove 100 provided in this embodiment under the second working condition from the first perspective. Figure 3 This is a structural diagram of the integrated stove 100 provided in this embodiment under the third working condition from a second viewing angle. Figure 4 This is a structural diagram of the integrated stove 100 provided in this embodiment under the first working condition from the second viewing angle, combined with Figures 1-4 The integrated stove 100 includes a body 10, a range hood 20, a storage table 30, a driving device 40 and a mechanical linkage device 50. The body 10 is provided with a storage slot 11, and the range hood 20 is arranged in the storage slot 11; the storage table 30 includes a storage table shell 31 and a storage rack 32, the storage table shell 31 is arranged on the range hood 20, and the storage rack 32 is slidably connected to the storage table shell 31; the driving device 40 is arranged in the storage slot 11 and is connected to the range hood 20 for driving the range hood 20 to rise and fall; the mechanical linkage device 50 is arranged on the range hood 20 and is connected to the storage rack 32, the mechanical linkage device 50 is used to drive the storage rack 32 to extend out of the storage table shell 31 when the driving device 40 drives the range hood 20 to rise; and is used to drive the storage rack 32 to retract into the storage table shell 31 when the driving device 40 drives the range hood 20 to descend.

[0046] That is, when the drive device 40 drives the range hood 20 upward, it also drives the mechanical linkage device 50 upward, achieving a coordinated operation and driving the storage rack 32 to extend out of the storage table housing 31. Similarly, when the drive device 40 drives the range hood 20 downward, it also drives the mechanical linkage device 50 downward. With the coordinated operation of the two, the storage rack 32 is driven back into the storage table housing 31. In this way, the range hood 20 raising and lowering functions and the storage table 30 extending and retracting functions are simultaneously achieved with the driving force of a single drive device 40, thereby avoiding the problem of interference between the two working independently and damaging the main body 10, thereby enhancing the operational reliability and safety of the integrated stove 100 and improving the user experience.

[0047] It should be noted that the first working condition of the integrated stove 100 mentioned above can be understood as the working condition when the driving device 40 drives the range hood 20 to rise to the highest point and the storage rack 32 extends out of the storage table shell 31; the second working condition of the integrated stove 100 can be understood as the working condition when the driving device 40 drives the range hood 20 to rise, and the storage rack 32 does not extend out of the storage table shell 31; the third working condition of the integrated stove 100 can be understood as the working condition when the driving device 40 drives the range hood 20 to descend to the lowest point, that is, the storage table 30 retracts into the storage table shell 31, and is stored in the storage slot 11 together with the range hood 20, so as to hide the storage table 30 and the range hood 20, thereby ensuring the overall beautiful appearance of the integrated stove 100.

[0048] In addition, it should be noted that the integrated stove 100 also includes a stove, which is arranged on the countertop of the body 10; of course, for those skilled in the art, it is easy to know that the integrated stove 100 can also include a disinfection cabinet, a steam oven, etc. integrated in the body 10, which will not be elaborated in this embodiment.

[0049] Please combine Figure 3 and Figure 4 The driving device 40 includes a motor 41 and a lifting mechanism 42. The motor 41 is connected to the lifting mechanism 42 in a transmission manner, and the lifting mechanism 42 is connected to the range hood 20. It is easy to understand that the motor 41 drives the lifting mechanism 42 to move, thereby driving the range hood 20 to rise and fall.

[0050] Combine Figures 1-4Specifically, the mechanical linkage device 50 includes a drive assembly 51, a reversing mechanism 52, and a driven assembly 53 that are sequentially connected in transmission. The drive assembly 51 is arranged on the range hood 20, and the reversing mechanism 52 and the driven assembly 53 are both arranged in the storage table shell 31, and the driven assembly 53 is connected to the storage rack 32; the drive assembly 51 is used to sequentially drive the reversing mechanism 52 and the driven assembly 53 to move when the range hood 20 rises, so as to drive the storage rack 32 to extend out of the storage table shell 31; and is used to sequentially drive the reversing mechanism 52 and the driven assembly 53 to move when the range hood 20 descends, so as to drive the storage rack 32 to retract into the storage table shell 31.

[0051] It is easy to understand that the reversing mechanism 52 can achieve the change of the transmission direction, that is, convert the lifting motion of the driving component 51 into the telescopic motion of the driven component 53; Figure 1 As shown, when the range hood 20 rises, it drives the driving assembly 51 to rise, and the driving assembly 51 can transmit the rising power to the driven assembly 53 through the reversing mechanism 52, so that the driven assembly 53 drives the storage rack 32 to extend; similarly, when the range hood 20 descends, it drives the driving assembly 51 to descend, and transmits the descending power to the driven assembly 53 through the reversing mechanism 52, so that the driven assembly 53 drives the storage rack 32 to retract.

[0052] It should be noted that, in this embodiment, the reversing mechanism 52 is specifically a worm gear mechanism, which has the advantages of simple structure, high transmission efficiency, large reduction ratio, high precision and low noise; of course, in other embodiments, the reversing mechanism 52 can also be a bevel gear mechanism or a rack and pinion mechanism or other mechanisms that can realize the reversing function.

[0053] For further information, please refer to Figure 5-Figure 7 , Figure 5 for Figure 2 A partial enlarged view of point A in the middle. Figure 6 This is a partial structural diagram of the drive assembly 51 provided in this embodiment. Figure 7 for Figure 2 The local enlarged view of B in the middle, combined with Figure 2 、 Figure 5-Figure 7The driving assembly 51 includes a fixing member 511, a driving ring 512 and a driving rod 513. The fixing member 511 is arranged in the receiving groove 11, and the driving ring 512 is arranged on the fixing member 511. The inner wall of the driving ring 512 is provided with a first internal thread 5121; the driving rod 513 is arranged in the range hood 20, one end of the driving rod 513 is transmission-connected to the reversing mechanism 52, and the other end is passed through the driving ring 512, and the driving rod 513 is provided with a first external thread 5131. The first external thread 5131 is used to cooperate with the first internal thread 5121; the driven assembly 53 includes a driven ring 531 and a driven rod 532, the driven ring 531 is connected to the storage rack 32, and the inner wall of the driven ring 531 is provided with a second internal thread 5311; the driven rod 532 is transmission-connected to the reversing mechanism 52 and is penetrated by the driven ring 531, and the driven rod 532 is provided with a second external thread 5321, and the second external thread 5321 cooperates with the second internal thread 5311.

[0054] It can be understood that when the driving device 40 drives the range hood 20 to rise, it will drive the reversing mechanism 52 and the driving rod 513 to rise. When the first external thread 5131 of the driving rod 513 contacts the first internal thread 5121 of the driving ring 512, the threads of the two will cooperate, causing the driving rod 513 to start rotating, that is, it will rotate and rise at the same time, and the rotational power will be transmitted to the driven rod 532 through the reversing mechanism 52, causing the driven rod 532 to also start rotating; because the second external thread 5321 of the driven rod 532 cooperates with the second internal thread 5311 of the driven ring 531, the driven ring 531 is moved on the driven rod 532, and drives the storage rack 32 to gradually extend out from the storage table shell 31.

[0055] Similarly, when the drive device 40 drives the range hood 20 to descend, the drive rod 513 rotates in the opposite direction, driving the driven rod 532 to rotate in the opposite direction via the reversing mechanism 52, thereby causing the storage rack 32 to gradually retract into the storage platform housing 31. As will be readily understood, when the first external thread 5131 of the drive rod 513 no longer contacts the first internal thread 5121 of the drive ring 512, the storage rack 32 is fully retracted into the storage platform housing 31, allowing the range hood 20 to be stored in the storage slot 11.

[0056] It should be noted that the timing of the extension and retraction of the storage rack 32 depends on the specific position of the first external thread 5131 on the drive rod 513. In this embodiment, the first external thread 5131 is located at the end of the drive rod 513 away from the reversing mechanism 52. This means that after the range hood 20 rises to a greater height, the storage rack 32 is slowly extended through a coordinated movement. This can also be understood as the storage platform 30 beginning to extend only in the final stage of the range hood 20's ascent; similarly, the storage platform 30 begins to retract in the initial stage of the range hood 20's descent.

[0057] In this embodiment, by disposing the first external thread 5131 at the end of the drive rod 513 away from the reversing mechanism 52, the range hood 20 can extend the storage rack 32 during the final stage of its ascent and retract the storage rack 32 during the initial stage of its descent. This arrangement further avoids interference between the ascending and descending motions of the range hood 20 and the retracting and extending motions of the storage platform 30. Of course, in other embodiments, the first external thread 5131 can also be disposed in the middle of the drive rod 513 or at other locations.

[0058] Please combine Figure 7 It should be noted that, in order to prevent the threads of the driven rod 532 and the driven ring 531 from being stripped, the second external thread 5321 completely covers the driven rod 532, that is, the length of the driven rod 532 is equal to the length of the second external thread 5321. Furthermore, in order to prevent the driving rod 513 and the driving ring 512 from being stripped during the ascending process, the second external thread 5321 is completely covered by the driven rod 532, that is, the length of the driven rod 532 is equal to the length of the second external thread 5321. Figure 4 、 Figure 5 and Figure 7 The relationship between the maximum raised height H of the range hood 20, the length L1 of the first external thread 5131 of the drive rod 513, and the length L3 of the second external thread 5321 of the driven rod 532 must satisfy H>L1>L2. In other words, when the storage rack 32 is fully extended from the storage platform housing 31, the first external thread 5131 of the drive rod 513 is still engaged with the first internal thread 5121 of the drive ring 512. The drive rod 513 has not fully extended from the drive ring 512, and has not disengaged from the drive ring 512.

[0059] Please refer to Figure 8 , Figure 8 The exploded view of the storage platform 30 provided in this embodiment is combined with Figure 8 In this embodiment, slide rails 321 are provided on both sides of the shelf 32. Slide grooves are provided on opposite side walls of the storage platform housing 31, and the slide rails 321 cooperate with the grooves. Driven by the mechanical linkage 50, the slide rails 321 provide guidance for the sliding of the shelf 32, thereby improving the stability of the shelf 32 during its extension and retraction.

[0060] Of course, in other embodiments, a slide groove may be provided on the storage rack 32 , and a slide rail may be provided on the inner wall of the storage table shell 31 , or other sliding connection structures may be used to achieve sliding cooperation between the storage rack 32 and the storage table shell 31 .

[0061] Please continue to combine Figure 8It should be noted that cooking items can be placed directly on the shelf 32. To further enhance storage stability, the storage table 30 also includes a storage plate 33. This plate 33 is mounted on the shelf 32 and has a recess 331 for placing items. Placing items in the recess 331 can help reduce the risk of items falling from the plate 33 during expansion or contraction, or during vertical movement.

[0062] In addition, it should be noted that the wedging groove includes other shapes such as square grooves, circular grooves, triangular grooves, etc. to adapt to different items; of course, the number of the above-mentioned embedding grooves 331 of different shapes is not limited and can be one or more.

[0063] Furthermore, in this embodiment, the storage table 30 further includes a panel 34, which is disposed around the periphery of the storage rack 32. The storage plate 33 is disposed on the storage rack 32 and within the panel 34. The panel 34 protects items placed in the insertion slot 331, further preventing them from falling during use and even injuring the user, thereby further improving the safety of the integrated stove 100.

[0064] When items are placed in the slot 331, if the shelf 32 and the shelf 33 are retracted, the items will collide with the shelf housing 31, making the shelf 33 unable to be retracted and causing damage to the shelf housing 31 and the items. To avoid this, please refer to Figure 9 , Figure 9 The cross-sectional view of the storage platform 30 provided in this embodiment is combined with Figure 8 and Figure 9 The integrated stove 100 also includes multiple return springs 60 and multiple gravity sensors 70. The multiple gravity sensors 70 are arranged at intervals on the storage rack 32, and the storage plate 33 is set on the multiple gravity sensors 70; the multiple return springs 60 correspond to the multiple gravity sensors 70 one by one, and are respectively mounted on the multiple gravity sensors 70, and the two ends of the multiple return springs 60 are respectively in contact with the storage plate 33 and the storage rack 32.

[0065] When there is no item on the storage plate 33, the weight of the storage plate 33 itself is borne by the return spring 60, and the gravity sensor 70 is in a balanced state at this time; when an item is placed somewhere on the storage plate 33, the storage plates 33 around the corresponding position will sink, exerting gravity on the gravity sensor 70. The gravity sensor 70 can recognize that there is an item on the storage plate 33 and send a sensing signal to the control module of the integrated stove 100, so that the control module controls the drive device 40 to be unable to start; that is, when an item is placed on the storage plate 33, the storage plate 33 cannot be retracted into the storage table shell 31. Until all items on the storage plate 33 are removed, the storage plate 33's own gravity and the return spring 60 will restore the equilibrium state and will not exert weight on the gravity sensor 70. At this time, the gravity sensor 70 has no response, so that the control module can control the drive device 40 to start, drive the range hood 20 to descend, and drive the storage rack 32 to retract through the mechanical linkage device 50, thereby further ensuring the safety of the integrated stove 100.

[0066] Furthermore, in order to improve the working stability of the storage plate 33, the return spring 60 and the gravity sensor 70, in this embodiment, a plurality of limit blocks 332 are provided at intervals on one side of the storage plate 33 close to the storage rack 32. The plurality of limit blocks 332 correspond one-to-one to the plurality of return springs 60, and each limit block 332 is provided with a limit groove 3321, and the plurality of return springs 60 are respectively arranged in the plurality of limit grooves 3321.

[0067] Please continue to combine Figure 8 It should be noted that in this embodiment, the storage table housing 31 and the housing of the range hood 20 are integrally formed to improve the overall aesthetics. Of course, in other embodiments, the two can also be separate and fixed by detachable connection or welding.

[0068] To sum up, an embodiment of the present invention provides an integrated stove 100, which includes a body 10, a range hood 20, a storage table 30, a driving device 40 and a mechanical linkage device 50. The body 10 is provided with a storage slot 11, and the range hood 20 is arranged in the storage slot 11; the storage table 30 includes a storage table shell 31 and a storage rack 32, the storage table shell 31 is arranged on the range hood 20, and the storage rack 32 is slidably connected to the storage table shell 31; the driving device 40 is arranged in the storage slot 11 and is connected to the range hood 20 for driving the range hood 20 to rise and fall; the mechanical linkage device 50 is arranged on the range hood 20 and is connected to the storage rack 32, the mechanical linkage device 50 is used to drive the storage rack 32 to extend out of the storage table shell 31 when the driving device 40 drives the range hood 20 to rise; and is used to drive the storage rack 32 to retract into the storage table shell 31 when the driving device 40 drives the range hood 20 to descend. That is to say, when the driving device 40 drives the range hood 20 to rise, it will drive the mechanical linkage device 50 to rise, realize linkage cooperation, and drive the storage rack 32 to extend out of the storage table shell 31; similarly, when the driving device 40 drives the range hood 20 to descend, it will also drive the mechanical linkage device 50 to descend, and under the linkage cooperation of the two, the storage rack 32 is driven to retract into the storage table shell 31.

[0069] Therefore, the integrated stove 100 provided in this embodiment can simultaneously realize the lifting function of the range hood 20 and the telescopic function of the storage table 30 with the support of the driving force of a driving device 40, thereby avoiding the problem of interference and damage to the body 10 when the two work independently, enhancing the operational reliability and safety of use of the integrated stove 100, and improving the user experience.

[0070] The above description is merely a specific embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An integrated stove, characterized in that: include: A machine body (10), wherein the machine body (10) is provided with a receiving groove (11); A range hood (20), the range hood (20) being arranged in the storage slot (11); A storage platform (30), the storage platform (30) comprising a storage platform shell (31) and a storage rack (32), the storage platform shell (31) being arranged on the range hood (20), and the storage rack (32) being slidably connected to the storage platform shell (31); A driving device (40), the driving device (40) being arranged in the receiving slot (11) and connected to the range hood (20) for driving the range hood (20) to move upward and downward; as well as A mechanical linkage device (50) is provided on the range hood (20) and is connected to the storage rack (32). The mechanical linkage device (50) is used to drive the storage rack (32) to extend out of the storage table shell (31) when the driving device (40) drives the range hood (20) to rise; and to drive the storage rack (32) to retract into the storage table shell (31) when the driving device (40) drives the range hood (20) to descend.

2. The integrated stove according to claim 1, characterized in that: The mechanical linkage device (50) comprises a driving assembly (51), a reversing mechanism (52), and a driven assembly (53) which are sequentially connected in transmission, the driving assembly (51) being arranged on the range hood (20), the reversing mechanism (52) and the driven assembly (53) being arranged in the housing (31) of the storage platform, and the driven assembly (53) being connected to the storage rack (32); The driving assembly (51) is used to sequentially drive the reversing mechanism (52) and the driven assembly (53) to move when the range hood (20) is raised, so as to drive the storage rack (32) to extend out of the storage table shell (31); and is used to sequentially drive the reversing mechanism (52) and the driven assembly (53) to move when the range hood (20) is lowered, so as to drive the storage rack (32) to retract into the storage table shell (31).

3. The integrated stove according to claim 2, characterized in that: The driving assembly (51) comprises a fixing member (511), a driving ring (512) and a driving rod (513); the fixing member (511) is arranged on the receiving groove (11); the driving ring (512) is arranged on the fixing member (511); and the inner wall of the driving ring (512) is provided with a first internal thread (5121); the driving rod (513) is arranged in the range hood (20); one end of the driving rod (513) is transmission-connected to the reversing mechanism (52); the other end is passed through the driving ring (512); and the driving rod (513) is provided with a first external thread (5131), and the first external thread (5131) is used to cooperate with the first internal thread (5121); The driven assembly (53) includes a driven ring (531) and a driven rod (532), wherein the driven ring (531) is connected to the storage rack (32), and the inner wall of the driven ring (531) is provided with a second internal thread (5311); the driven rod (532) is transmission-connected to the reversing mechanism (52) and is passed through the driven ring (531), and the driven rod (532) is provided with a second external thread (5321), and the second external thread (5321) cooperates with the second internal thread (5311).

4. The integrated stove according to claim 3, characterized in that: The first external thread (5131) is provided at an end of the driving rod (513) away from the reversing mechanism (52).

5. The integrated stove according to claim 2, characterized in that: The reversing mechanism (52) is a turbine worm mechanism.

6. The integrated stove according to claim 1, characterized in that: Both sides of the storage rack (32) are provided with slide rails (321), and both opposite side walls of the storage platform shell (31) are provided with slide grooves, and the slide rails (321) cooperate with the slide grooves.

7. The integrated stove according to any one of claims 1 to 6, characterized in that: The storage platform (30) further includes a storage plate (33), which is arranged on the storage rack (32), and the storage plate (33) is provided with an embedding groove (331) for placing items.

8. The integrated stove according to claim 7, characterized in that: The integrated stove (100) further comprises a plurality of return springs (60) and a plurality of gravity sensors (70), wherein the plurality of gravity sensors (70) are arranged at intervals on the storage rack (32), and the storage plate (33) is arranged on the plurality of gravity sensors (70); the plurality of return springs (60) correspond to the plurality of gravity sensors (70) one by one, and are respectively sleeved on the plurality of gravity sensors (70), and the two ends of the plurality of return springs (60) are respectively in contact with the storage plate (33) and the storage rack (32).

9. The integrated stove according to claim 8, characterized in that: A plurality of limiting blocks (332) are provided at intervals on one side of the storage plate (33) close to the storage rack (32), the plurality of limiting blocks (332) correspond one to one with the plurality of return springs (60), and each of the limiting blocks (332) is provided with a limiting groove (3321), and the plurality of return springs (60) are respectively arranged in the plurality of limiting grooves (3321).

10. The integrated stove according to claim 7, characterized in that: The storage platform (30) further includes a panel (34), wherein the panel (34) is arranged around the periphery of the storage rack (32), and the storage plate (33) is arranged on the storage rack (32) and is located inside the panel (34).