Intelligent range hood and stove all-in-one machine

By integrating the hood module and the stove module into an intelligent smoke and stove all-in-one machine, sharing a set of control units, and designing a flip-flopable structure of the stove module, the problem of split design increases cost and space occupancy is solved, and more efficient resource utilization and better user experience is achieved.

CN222895168UActive Publication Date: 2025-05-23卢翠琼
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Patent Information

Application Number
CN202421416100.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-20
Publication Date
2025-05-23
Estimated Expiration
2034-06-20

AI Technical Summary

Technical Problem

Existing range hoods and stoves are usually designed in separate units, resulting in the need of two sets of control units, increasing manufacturing costs and packaging materials, and occupying the stove space, affecting the cleanliness and beauty and cleaning convenience.

Method used

A smart smoke and stove integrated machine is designed to integrate the hood module and the stove module. The stove module can be flipped upward and closed in the hood module or flip downward to the lower end of the hood module, and a set of control units are used.

Benefits of technology

It realizes saving packaging materials and reducing costs, reducing the space occupied by the stove, making the stove cleaner and more beautiful, and making it easier for users to clean.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent range hood and kitchen range all-in-one machine which comprises a range hood module, a smoke collecting cavity, a containing cavity, a smoke exhaust fan module, a smoke exhaust fan module, a smoke exhaust fan module, a smoke exhaust fan module, a smoke exhaust fan module, a smoke exhaust fan module, a smoke exhaust fan module and a smoke exhaust fan module. An upper air inlet and / or a lower air inlet which are / is communicated with the smoke collecting cavity are / is formed in the upper end of the front surface of the shell assembly; the baffle assembly is arranged at the front opening; the kitchen range module is rotationally connected with the lower end of the shell assembly, and the kitchen range module can be turned upwards to be folded into the containing cavity and hidden behind the baffle assembly or turned downwards to be unfolded to the front of the lower end of the kitchen range hood module. According to the range hood and stove all-in-one machine, packing materials can be saved, cost can be reduced, the occupied space of a cooking bench can be reduced, the cooking bench is neater, and a user can clean the cooking bench more conveniently.
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Description

Technical Field

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

[0002] Existing range hoods and stoves are usually designed separately, which has the following disadvantages:

[0003] 1. Since the range hood and the stove are independent of each other, control units need to be provided on the range hood and the stove respectively, that is, two sets of control units need to be configured, which has high manufacturing costs;

[0004] 2. When the range hood and stove are packaged separately, two sets of packaging materials are required. When the range hood and stove are packaged together, a larger set of packaging materials is required, which is costly and inconvenient to carry.

[0005] 3. Existing stoves are usually fixedly installed on the stove, occupying a part of the stove space, affecting the neatness and aesthetics of the stove, and making it inconvenient for users to clean the stove. Summary of the invention

[0006] The present invention aims to solve at least one of the problems existing in the existing related technologies to a certain extent. To this end, the present invention proposes an intelligent smoke and stove integrated machine, which can not only save packaging materials and reduce costs, but also reduce the space occupied by the stove, making the stove tidier and more convenient for users to clean the stove.

[0007] According to the above-mentioned intelligent smoke and stove integrated machine, it is implemented through the following technical solutions:

[0008] A smart smoke and stove integrated machine comprises: a range hood module, including a shell assembly and a baffle assembly, wherein a smoke collecting chamber and a accommodating chamber are respectively provided at the upper and lower ends inside the shell assembly, the front end of the accommodating chamber is opened to form a front opening, an upper air inlet and / or a lower air inlet connected to the smoke collecting chamber is provided at the upper end of the front face of the shell assembly, the baffle assembly is arranged at the front opening and is detachably or rotatably connected to the shell assembly; and a stove module, rotatably connected to the lower end of the shell assembly, the stove module can be flipped upwards to be folded into the accommodating chamber and hidden behind the baffle assembly, or flipped downwards to be unfolded to the front of the lower end of the range hood module.

[0009] In some embodiments, the distance between the bottom surface of the housing assembly and the top surface of the accommodating cavity is 280-400 mm.

[0010] In some embodiments, the range hood module further includes a flap assembly and a power assembly. The flap assembly is rotatably connected to the outer shell assembly, and the output end of the power assembly is connected to the flap assembly for driving the flap assembly to switch the upper air inlet. The switch of the flap assembly is linked to the stove module.

[0011] In some embodiments, the range hood module also includes an oil cup assembly, which is detachably installed in the accommodating cavity and located behind the baffle assembly. An oil leakage hole is provided at a position corresponding to the oil cup assembly at the bottom of the smoke collecting cavity, and the oil leakage hole is connected to the oil cup assembly; a visual area is provided at a position of the baffle assembly corresponding to the oil cup assembly.

[0012] In some embodiments, the stove module includes a drive assembly and a burner, wherein the drive assembly is disposed in the accommodating cavity and located behind the baffle assembly, and the fixed end of the burner is respectively connected to the output end of the shell assembly and the drive assembly, and the drive assembly is used to drive the burner to flip upward and be retracted into the accommodating cavity and hidden behind the baffle assembly, or to drive the burner to flip downward and unfold to the front of the lower end of the range hood module; a first notch is provided at the lower end of the baffle assembly for the fixed end of the burner to pass through.

[0013] In some embodiments, the burner includes a burner body and a support assembly, the support assembly is installed on the bottom surface of the accommodating cavity, the fixed end of the burner body is respectively connected to the support assembly and the output end of the driving assembly, an ejection assembly is provided on the burner body, and a nozzle is provided at the position of the support assembly corresponding to the ejection assembly.

[0014] In some embodiments, the stove module further includes a support plate and / or a gas circuit assembly, and two burners are installed on the top of the support plate with a left and right interval. The gas circuit assembly is arranged in the accommodating cavity and located behind the baffle assembly, and is used to provide the burner with the gas required for combustion.

[0015] In some embodiments, a partition plate is provided in the accommodating cavity, the partition plate divides the accommodating cavity into a rear cavity and a front cavity with a front opening, and a second notch is provided at the lower end of the partition plate; the driving assembly is installed in the rear cavity, and the fixed end of the burner passes through the second notch and is rotatably connected to the outer shell assembly, and the burner can be flipped upward and retracted into the front cavity and hidden behind the baffle assembly.

[0016] In some embodiments, the partition plate is provided with a first through hole suitable for accommodating the free end of the burner, and the free end of the burner can movably pass through the first through hole to extend into or move away from the rear cavity.

[0017] In some embodiments, a second through hole is provided at the upper end of the partition plate, and the oil cup assembly can movably pass through the second through hole and extend into the rear cavity.

[0018] Compared with the prior art, the present invention has at least the following beneficial effects:

[0019] The smoke and stove all-in-one machine of the present invention integrates the stove module and the hood module into one, and the stove module can be flipped upwards and stored in the hood module or flipped downwards and unfolded to the outside of the lower end of the hood module. This not only saves packaging materials and reduces costs, but also reduces the space occupied by the stove, making the stove neater and more beautiful, and making it more convenient for users to clean the stove. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is an exploded view of the smoke and stove integrated machine in Embodiment 1 of the present utility model;

[0021] Figure 2 This is a structural schematic diagram of the smoke and stove integrated machine in Embodiment 1 of the utility model in an open state;

[0022] Figure 3 This is a schematic diagram of the structure of the smoke and stove integrated machine in Embodiment 1 of the present utility model in a closed state;

[0023] Figure 4 It is a cross-sectional view of the smoke and stove integrated machine in Embodiment 1 of the utility model in a closed state;

[0024] Figure 5 It is an exploded view of the range hood module in Embodiment 1 of the present utility model;

[0025] Figure 6 This is a structural schematic diagram of the range hood module in the open state in Embodiment 1 of the present utility model;

[0026] Figure 7 It is a cross-sectional view of the range hood module in Embodiment 1 of the present utility model in an open state;

[0027] Figure 8 is a cross-sectional view of the housing assembly in Embodiment 1 of the present utility model;

[0028] Fig. 9 It is a structural schematic diagram of the baffle assembly in Example 1 of the utility model;

[0029] Fig.10 It is a schematic diagram of the structure of the partition plate in Example 1 of the utility model;

[0030] Fig.11 It is a structural schematic diagram of the burner in the embodiment 1 of the utility model in the unfolded state;

[0031] Fig.12 This is a schematic structural diagram of the burner in the folded state in Embodiment 1 of the present utility model;

[0032] Fig.13 This is a schematic diagram of the structure of the burner in Example 1 of the utility model without some components;

[0033] Fig.14 This is an exploded view of the burner in Example 1 of the utility model after some components are omitted;

[0034] Fig.15 It is an exploded view of the smoke and stove integrated machine in Embodiment 2 of the present utility model in an open state;

[0035] Fig.16 It is an exploded view of the smoke and stove integrated machine in Example 2 of the utility model in a closed state;

[0036] Fig.17 This is a schematic diagram of the structure of the smoke and stove integrated machine in Embodiment 3 of the present utility model in an open state;

[0037] Fig.18 This is a schematic diagram of the structure of the smoke and stove integrated machine in Embodiment 3 of the present utility model in a closed state;

[0038] Fig.19 It is an exploded view of the range hood module in Embodiment 3 of the present utility model;

[0039] Fig. 20 This is a schematic diagram of the structure of the smoke and stove integrated machine in Embodiment 4 of the present utility model in an open state;

[0040] Fig.21 This is a schematic diagram of the structure of the smoke and stove integrated machine in Embodiment 4 of the present utility model in a closed state;

[0041] Fig. 22 It is an exploded view of the range hood module in Example 4 of the present utility model.

[0042] In the figure: 1-hood module, 11-housing assembly, 1101-vertical surface, 1102-inclined surface, 111-smoke collecting chamber, 112-accommodating chamber, 1121-rear cavity, 1122-front cavity, 113-upper air inlet, 114-lower air inlet, 115-strip hole, 116-bump, 12-baffle assembly, 121-smoke baffle, 1211-visible area, 1212-first notch, 122-mounting bracket, 13-flap assembly, 14-power assembly, 15-oil cup assembly, 16-partitioning plate, 160-mounting hole, 161-first through hole, 162-second notch, 163-second through hole, 1641-upper flange, 1642-lower flange;

[0043] 2-stove module, 20-gas circuit assembly, 21-drive assembly, 211-driver, 212-connecting rod, 22-burner body, 221-ignition distributor, 222-injection tube assembly, 2221-hinge, 2222-upper stopper, 2223-lower stopper, 223-connecting arm, 23-support assembly, 230-fixed seat, 231-nozzle, 232-limiting bracket, 2321-transverse section, 2322-vertical section, 24-bottom plate assembly, 241-lower bottom plate, 2411-opening, 2412-groove, 242-upper fixed block, 2421-air channel, 2422-mounting hole, 25-pot support, 251-support foot, 26-protective cover, 27-fire cover assembly, 271-inner fire cover, 272-outer fire cover, 28-fixed plate. DETAILED DESCRIPTION

[0044] The following examples illustrate the present invention, but the present invention is not limited by these examples. Modifications to the specific implementation of the present invention or equivalent replacement of some technical features without departing from the spirit of the present invention should be included in the scope of the technical solution claimed for protection in the present invention.

[0045] Example 1

[0046] refer to Figure 1-14 This embodiment provides an intelligent range hood integrated machine, including a range hood module 1, a stove module 2 and a control module (not shown in the figure), wherein the control module is arranged on the range hood module 1, and is electrically connected to the range hood module 1 and the stove module 2 respectively, so as to realize the use of a set of control units to control the two modules, thereby reducing costs. In this embodiment, the ignition and extinguishing of the stove module 2 are respectively linked to the switch of the range hood module 1, and the range hood module 2 can adjust the working gear according to the firepower of the stove module 1.

[0047] The range hood module 1 includes a housing component 11 and a baffle component 12. A smoke collecting chamber 111 and a receiving chamber 112 are respectively provided at the upper and lower ends of the housing component 11. The front end of the receiving chamber 112 is opened to form a front opening (not shown in the figure). The front opening is used for the stove module 2 to move through, and the receiving chamber 112 is configured to accommodate the entire stove module 2. Figure 1-4 An upper air inlet 113 and / or a lower air inlet 114 connected to the smoke collecting chamber 111 are provided at the upper end of the front face of the housing assembly 11. The baffle assembly 12 is provided at the front opening and is detachably or rotatably connected to the housing assembly 11, and is used to open or close the front opening of the accommodating chamber 112, and the baffle assembly 12 can cover most or all of the front opening of the accommodating chamber.

[0048] The stove module 2 is rotatably connected to the lower end of the housing assembly 11. The stove module 2 can be flipped upward to be folded into the accommodating cavity 112 and hidden behind the baffle assembly 12, or flipped downward to be unfolded in front of the lower end of the range hood module 1. In this embodiment, the stove module 2 includes two burners arranged at intervals on the left and right, and the fixed ends of the two burners are rotatably connected to the lower end of the housing assembly 11, so that each burner can be switched between an unfolded state and a folded state.

[0049] It can be seen that the range hood module 1 has the dual functions of smoke extraction and storage of stoves, and the stove module 2 can be switched between a folded state and an unfolded state. Figure 3-4 When the stove module 2 is in the folded state, the stove module 2 is flipped upward into the accommodating cavity 112 and hidden behind the baffle assembly 12, freeing up kitchen space, improving aesthetics, making the stove more tidy and beautiful, and making it easier for users to clean the stove. In addition, it is convenient to package and transport the stove module 2 and the range hood module 1 together, saving packaging materials and reducing costs. Figure 1-2 When the stove module 2 is in the unfolded state, it can meet the user's cooking and smoking requirements.

[0050] refer to Figure 5-8 In this embodiment, a vertical surface 1101 and an inclined surface 1102 are connected in sequence at the upper end of the front of the housing component 11. The inclined surface 1102 is located below the vertical surface 1101 and is arranged from back to front and upwardly inclined to facilitate wind guidance. The upper air inlet 113 is arranged on the vertical surface 1101, and the lower air inlet 114 is arranged on the inclined surface 1102. With the cooperation of the upper air inlet 113 and the lower air inlet 114, the unit smoking area is increased and the smoke collection effect is significantly improved. Specifically, the air inlet 114 includes a left smoking hole group and a right smoking hole group arranged at intervals along the left and right directions. The left smoking hole group and the right smoking hole group are arranged obliquely, and the two are combined to form an inverted "figure eight" shape, which is used to correspond to the left and right burners; the lower air inlet 114 also includes a middle smoking hole group, which is arranged vertically and located between the left smoking hole group and the right smoking hole group to enhance the smoke collection effect in the middle and reduce the escape of oil smoke to the left and right sides. The oil smoke escaping to the left and right sides will be sucked into the smoke collecting cavity 111 of the housing assembly 11 by the left smoking hole group and the right smoking hole group, thereby reducing the escape of oil smoke.

[0051] Specifically, the distance between the bottom surface of the housing assembly 11 and the top surface of the accommodating cavity 112 is 280-400 mm, so as to ensure that the accommodating cavity 112 can accommodate the cooking appliance module 2 while avoiding blocking the sight and affecting the smoke collection effect due to the setting of the accommodating cavity 112. More specifically, the distance is 392±5 mm.

[0052] A first notch 1212 is respectively provided on the left and right sides of the lower end of the baffle assembly 12, and the first notch 1212 is connected to the accommodating cavity 112 for the fixed end of the burner in the stove module 2 to pass through. When the burner in the stove module 2 is turned downward and unfolded to the front of the lower end of the range hood module 1, the baffle assembly 12 can be clamped outside the rear end of the burner and detachably connected to the housing assembly 11.

[0053] refer to Fig. 9 Specifically, the baffle assembly 12 includes a smoke baffle 121 and two mounting brackets 122. The smoke baffle 121 can be a glass plate or a metal plate. A visual area 1211 is formed in the middle of the upper end of the smoke baffle 121. The visual area 1211 is used for the user to view the oil cup assembly 15 installed in the smoke collecting chamber 112 and hidden on the back of the baffle assembly 12. The left and right sides of the lower end of the baffle 121 are respectively provided with a first notch 1212. The two mounting brackets 122 are fixedly connected to the left and right ends of the back of the smoke baffle 121, and each mounting bracket 122 is used to be detachably connected to the housing assembly 11.

[0054] refer to Figure 1-10 Furthermore, the smoke machine module 1 also includes a flap assembly 13 and a power assembly 14. The upper end of the flap assembly 13 is rotatably connected to the upper end of the front face of the housing assembly 11. The output end of the power assembly 14 is connected to the flap assembly 13 to drive the flap assembly 13 to open and close the upper air inlet 113. In this embodiment, a vertically arranged strip hole 115 located outside the upper air inlet 113 is provided at the upper end of the front face of the housing assembly 1. The strip hole 115 is used for the output end of the power assembly 14 to move through. The power assembly 14 is installed in the smoke collecting chamber 111, and its output end is passed through the strip hole 115 and connected to the middle of the back of the flap assembly 13.

[0055] refer to Figure 1-4 Furthermore, the smoke machine module 1 also includes a flap assembly 13 and a power assembly 14. The upper end of the flap assembly 13 is rotatably connected to the upper end of the front face of the housing assembly 11. The output end of the power assembly 14 is connected to the flap assembly 13 to drive the flap assembly 13 to open and close the upper air inlet 113. In this embodiment, a vertically arranged strip hole 115 located outside the upper air inlet 113 is provided at the upper end of the front face of the housing assembly 1. The strip hole 115 is used for the output end of the power assembly 14 to move through. The power assembly 14 is installed in the smoke collecting chamber 111, and its output end is passed through the strip hole and connected to the middle of the back of the flap assembly 13.

[0056] refer to Figure 1-4Furthermore, the smoke machine module 1 further includes an oil cup assembly 15, which is detachably mounted in the accommodating chamber 112, and an oil leakage hole is provided at the position corresponding to the oil cup assembly 15 at the bottom of the smoke collecting chamber 111, and the oil leakage hole is connected to the oil cup assembly 15. In this embodiment, a visible area 1211 is provided at the position corresponding to the oil cup assembly 15 of the baffle assembly 12, so that the user can check the amount of oil in the oil cup assembly 15 through the visible area, and at the same time, the oil cup assembly 15 is hidden behind the baffle assembly 12, so that the appearance of the smoke machine module 1 is more beautiful.

[0057] refer to Figure 1-4 Furthermore, the range hood module 1 also includes a partition plate 16, which is arranged in the accommodating cavity 112 and connected to the outer shell assembly 11. The partition plate 16 divides the accommodating cavity 112 into a rear cavity 1121 and a front cavity 1122 with a front opening. The rear cavity 1121 is configured to be suitable for accommodating the drive assembly 21 and part of the burners in the stove module 2, and the front cavity 1122 is configured to be suitable for accommodating another part of the burners in the stove module 2, so as to make the layout more reasonable and facilitate hiding some components of the stove module 2 in the rear cavity to prevent these components from being contaminated by oil smoke.

[0058] refer to Figure 5-10 In this embodiment, the baffle assembly 12 is arranged at the front opening and is detachably connected to the housing assembly 11 through the partition plate 16. The left and right side walls of the accommodating cavity 112 are respectively provided with protrusions 116 extending toward the inside of the accommodating cavity, and the left and right ends of the partition plate 16 are respectively connected to the two protrusions 116, so that the partition plate 16 can be reliably installed in the accommodating cavity. The left and right ends of the partition plate 16 are respectively provided with mounting holes 160, and the back of the baffle assembly 12 is provided with mounting brackets 122 at positions corresponding to the mounting holes 160. The mounting brackets 122 are matched and snapped with the mounting holes 160 to realize the detachable installation of the baffle assembly 12 on the partition plate 16. It is particularly noted that the baffle assembly 12 can also be connected to the partition plate 16 by magnetic attraction, or connected by other snap-fit ​​structures; of course, the baffle assembly 12 can also be designed to be rotatably connected to the partition plate 16 or the housing assembly 11, so that there is no need to remove the baffle assembly 12, and the front opening of the housing assembly 11 can be opened by simply flipping the baffle assembly 12.

[0059] refer to Fig.10 A first through hole 161 and / or a second notch 162 are provided on the partition plate 16, wherein the first through hole 161 is used for some burners in the cooker module 2 to pass through, and the second notch 162 is used for some components in the cooker module 2 to pass through, see Figure 2-4, so as to make full use of the rear cavity 1121 and ensure that the thickness of the lower end of the range hood module 1 meets the ultra-thin requirement. In this embodiment, mounting holes 160 are respectively provided on the left and right sides of the upper end of the partition plate 16, first through holes 161 are respectively provided on the left and right ends of the partition plate 16, and second notches 162 are respectively provided on the left and right sides of the lower end of the partition plate 16; a second mounting hole 163 is provided in the middle of the upper end of the partition plate 16, and the second mounting hole 163 is used for the oil cup assembly to pass through. The oil cup assembly 15 can movably pass through the second through hole 163 and extend into the rear cavity 1121 and is hidden behind the baffle assembly 12, so as to make full use of the rear cavity 1121 and ensure that the thickness of the lower end of the range hood module 1 meets the ultra-thin requirement. In addition, the upper end of the partition plate 16 is bent backward to form an upper flange 1641, which abuts against the top surface of the accommodating cavity 112; the lower end of the partition plate 16 is bent forward and downward to form a lower flange 1642, and the lower flange 1642 is in an inverted "L" shape, which is used to abut against the bottom surface of the accommodating cavity 112, and is also used to abut against the lower flange edge of the front opening.

[0060] refer to Figure 1-4 and Figure 11-14 , the stove module 2 includes a drive assembly 21 and a burner (not shown in the figure). The drive assembly 21 is arranged in the accommodating cavity 112 and is located behind the baffle assembly 12. The gas path assembly 20 is used to provide the burner with the gas required for combustion. The fixed end of the burner is connected to the output end of the housing assembly 11 and the drive assembly 21 respectively. The drive assembly 21 is used to drive the burner to flip upward and retract into the accommodating cavity 112 and hide behind the baffle assembly 12, or drive the burner to flip downward and unfold to the front of the lower end of the range hood module 1. A first notch 1212 is provided at the lower end of the baffle assembly 12 for the fixed end of the burner to pass through. In this embodiment, the drive assembly 21 is installed in the rear cavity, the fixed end of the burner passes through the second notch 162 and is rotatably connected to the housing assembly 11, and the free end of the burner can move through the first through hole 161 to extend into or move away from the rear cavity 1121. In this way, the rear cavity 1121 is fully utilized to ensure that the thickness of the lower end of the range hood module 1 meets the ultra-thin requirement.

[0061] Furthermore, the burner includes a burner body 22 and a support assembly 23, the support assembly 23 is installed on the bottom surface of the accommodating cavity 112, the fixed end of the burner body 22 is respectively connected to the support assembly 23 and the output end of the driving assembly 21, an ejection assembly 222 is provided on the burner body 22, a nozzle 231 is provided at a position of the support assembly 23 corresponding to the ejection assembly 222, and the nozzle 231 is connected to the air inlet end of the ejection assembly 222. Thus, the burner body can be turned up and folded or turned down and unfolded relative to the support assembly 23, so that the burner can switch between the folded state and the unfolded state.

[0062] Specifically, the burner body 22 includes an ignition divider 221 and an ejection assembly 222. The ejection assembly 222 is transversely arranged at the bottom of the ignition divider 221 and is integrally formed with the ignition divider 221. The air outlet end of the ejection assembly 222 is connected to the ignition divider 221. Hinge portions 2221 are respectively provided on the two opposite outer sides of the air inlet end of the ejection assembly 222. In this embodiment, the ignition divider 221 constitutes the free end of the burner body 22, and the end of the burner body 22 away from the ignition divider constitutes the fixed end. A fire cover assembly 27 detachably connected to the ignition divider 221 is provided at the top of the ignition divider 221, so that the fire cover assembly is connected to the ignition divider as a whole.

[0063] The burner body 22 also includes a connecting arm 223, which is arranged between the igniter 221 and the support assembly 23, and the fixed end of the connecting arm 223 is fixedly connected to the lower end of the outer wall of the igniter 221, and the ejection assembly 222 is fixedly connected to the connecting arm 223.

[0064] refer to Figure 11-14 A limit bracket 232 is provided at the position of the support assembly 23 corresponding to the hinge 2221. The limit bracket 232 includes a transverse section 2321 and a vertical section 2322 fixedly connected to form an "L" or inverted "T" shape. The transverse section 2321 is located below the hinge 2221, and the vertical section 2322 is arranged at the top of the transverse section 2321 and behind the hinge 2221. An upper stopper 2222 and a lower stopper 2223 extending outward are provided at the upper and lower ends of the hinge 2221, respectively. The upper stopper 2222 is used to abut against the top of the vertical section 2322 to limit the upward flipping and folding of the burner body 22, see Fig.12 , and the lower stopper 2223 is used to abut against the front end of the transverse section 2321 to limit the downward flipping of the burner body 22, see Fig.11 .

[0065] In this embodiment, the support assembly 23 includes a fixed seat 230, a nozzle 231 and two limit brackets 232. The fixed seat 230 is in an "L" shape and is arranged between the two hinged parts 2221. It includes a horizontal plate and a vertical plate. The horizontal plate is arranged behind the burner body 22, and the vertical plate is arranged on the top of the horizontal plate and close to the burner body 22. The nozzle 231 is installed on the upper end of the vertical plate of the fixed seat 230, and the two limit brackets are respectively arranged on the left and right outer sides of the vertical plate of the fixed seat 230 and connected to the fixed seat 230.

[0066] refer to Figure 11-14Furthermore, the burner further includes a bottom plate assembly 24, which is connected to the bottom of the burner body 22, so that the bottom plate assembly 24 and the burner body 22 are connected as a whole, ensuring that the bottom plate assembly 24 can be turned up and folded or turned down and unfolded with the burner body 22. The bottom plate assembly 24 is provided with a plurality of openings 2411 at the position corresponding to the ignition distributor 221, and the openings 2411 are used for secondary air or overflow liquid to pass through; and / or an air channel 2421 is formed between the bottom of the ignition distributor 221 and the bottom plate assembly 24, and the air channel 2421 is used for secondary air to pass through, so as to replenish the air cavity of the burner with secondary air.

[0067] The bottom plate assembly 24 includes a lower bottom plate 241 and a plurality of upper fixing blocks 242. The lower bottom plate 241 is arranged at the bottom of the burner body 22 and one end of the lower bottom plate 241 is connected to one end of the burner body 22 close to the support assembly 23. A plurality of upper fixing blocks 242 are arranged at intervals at the top of the other end. The radial inner ends of the plurality of upper fixing blocks 242 are respectively abutted or connected to the bottom of the igniter 221. Specifically, the upper fixing blocks 242 are connected and fixed to the lower bottom plate 241 and / or the igniter 221. An air passage 2421 is formed between adjacent upper fixing blocks 242. A plurality of openings 2411 are arranged at one end of the lower bottom plate 241 close to the igniter 221.

[0068] In this embodiment, a circular groove 2412 opening upward is formed at one end of the lower bottom plate 241 near the fire distributor, a plurality of upper fixing blocks 242 are arranged in the groove 2412 at intervals in the circumferential direction, and a plurality of openings are arranged in the groove bottom surface of the groove 2412 at intervals in the circumferential direction. A mounting hole 2422 is formed at the radial outer end of each upper fixing block 242, and the mounting hole 2422 is used to limit and fix the pot support 25.

[0069] refer to Figure 11-14 Furthermore, the burner also includes a pot support 25, which is sleeved outside the ignition distributor 221 and the fire cover assembly 27. A plurality of support legs 251 extending downward are provided at intervals in the circumferential direction at the bottom of the pot support 25. The lower ends of the support legs 251 are connected to the bottom plate assembly 24, so that the pot support 25 can be connected to the burner body 22 as a whole through the bottom plate assembly 24, ensuring that the bottom plate assembly 24 can synchronously drive the pot support 25 to follow the burner body 22 to turn up and collapse or turn down and unfold. The bottom plate assembly 24 is provided with a plurality of mounting holes 2422 located at the periphery of the ignition distributor 221 at intervals in the circumferential direction, and the support legs 251 are inserted into the corresponding mounting holes.

[0070] refer to Figure 11-14Furthermore, the burner also includes a protective cover 26, which is arranged from top to bottom on the outside of one end of the burner body 22 close to the support assembly 23 and is connected to the rear end of the lower bottom plate 241 of the bottom plate assembly 24. The protective cover 26 cooperates with the lower bottom plate 241 of the bottom plate assembly 24 to surround one end of the burner body 22 close to the support assembly 23, thereby improving the appearance and facilitating cleaning, and preventing oil or overflow from entering the fixed end of the burner body 22.

[0071] refer to Figure 1-4 and Figure 11-12 Furthermore, a fixing plate 28 is provided on one end of the burner body 22 near the support assembly 23, and the fixing plate 28 is detachably connected to the connecting arm of the burner body 22 and the rear end of the lower bottom plate of the bottom plate assembly 24. The output end of the driving assembly 21 is transmission-connected to the burner body 22 through the fixing plate 28, and the driving assembly 21 is used to drive the burner body 22 to drive the fire cover assembly 27 to flip upward and fold or flip downward and unfold, so as to automatically drive the burner to flip upward and fold or flip downward and unfold. In this embodiment, the driving assembly 21 includes a driver 211 and a connecting rod 212, and the driver is preferably a rotary motor, and its output end is connected to the fixing plate 28 through the connecting rod 212.

[0072] Furthermore, the stove module 2 further includes a support plate (not shown in the figure) and / or a gas circuit assembly 20. Two burners are installed on the top of the support plate and arranged at intervals on the left and right sides, so that the two burners are connected as a whole through the support plate, which is convenient for reliably connecting and supporting the two burners through the support plate. The gas circuit assembly 20 is arranged in the accommodating cavity 112 and is located behind the baffle assembly 12, and is used to provide the burner with the gas required for combustion.

[0073] Example 2

[0074] refer to Figure 15-16 The difference between this embodiment and the first embodiment is that the specific structure of the driving assembly 21 is different. In this embodiment, the driving assembly 21 includes a driver 211 and a connecting rod 212. The driver is preferably a push rod motor, and its output end is connected to the fixing plate 28 through the connecting rod 212. The driver 211 is vertically installed in the accommodating cavity 112 of the housing assembly 11, and the connecting rod 212 and the support assembly 23 are both installed on the bottom surface of the accommodating cavity 112. The opposite ends of the connecting rod 212 are respectively connected to the output end of the driver 211 and the burner body 22.

[0075] Example 3

[0076] refer to Figure 17-19The difference between this embodiment and the first embodiment is that the hood module omits the partition plate 16, and the baffle assembly 12 can be detachably connected to the housing assembly 11 through the protrusion 116. The drive assembly 21 and the gas circuit assembly in the stove module 2 are both installed in the accommodating cavity 112, and the burner is turned up and retracted into the accommodating cavity 112 and hidden behind the baffle assembly 12, or turned down and unfolded to the front of the lower end of the hood module and exposed outside the baffle assembly 12.

[0077] Example 4

[0078] refer to Figure 20-22 The difference between this embodiment and the first embodiment is that the baffle assembly 12 is omitted in the range hood module. At this time, the drive assembly 21 and the gas circuit assembly in the stove module 2 are both installed in the rear cavity. When the burner is turned up and folded, part of the burner can pass through the first installation hole of the partition plate 6 and extend into the rear cavity; when the burner is turned down and unfolded, the burner moves away from the partition plate 6 and turns down and unfolds to the front of the lower end of the range hood module.

[0079] The above are only some embodiments of the present invention. For those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of the present invention, which all belong to the protection scope of the present invention.

Claims

1. Intelligent smoke and stove integrated machine, characterized by: include: A range hood module (1) comprises a housing component (11) and a baffle component (12); a smoke collecting chamber (111) and a receiving chamber (112) are respectively arranged at the upper and lower ends of the housing component (11); the front end of the receiving chamber (112) is open to form a front opening; an upper air inlet (113) and / or a lower air inlet (114) connected to the smoke collecting chamber (111) are arranged at the upper end of the front face of the housing component (11); the baffle component (12) is arranged at the front opening and is detachably connected or rotatably connected to the housing component (11); as well as The stove module (2) is rotatably connected to the lower end of the housing assembly (11); the stove module (2) can be flipped upward to be folded into the accommodating cavity (112) and hidden behind the baffle assembly (12), or flipped downward to be unfolded in front of the lower end of the range hood module (1).

2. The intelligent smoke and stove integrated machine according to claim 1, characterized in that: The distance between the bottom surface of the housing component (11) and the top surface of the accommodating cavity (112) is 280 to 400 mm.

3. The intelligent smoke and stove integrated machine according to claim 1, characterized in that: The range hood module (1) further comprises a flap assembly (13) and a power assembly (14); the flap assembly (13) is rotatably connected to the housing assembly (11); an output end of the power assembly (14) is connected to the flap assembly (13) for driving the flap assembly (13) to switch the upper air inlet (113); the switch of the flap assembly (13) is linked to the stove module (2).

4. The intelligent smoke and stove integrated machine according to claim 1, characterized in that: The range hood module (1) further comprises an oil cup assembly (15), wherein the oil cup assembly (15) is detachably mounted in the accommodating cavity (112). An oil leakage hole is provided at a position corresponding to the oil cup assembly (15) at the bottom of the smoke collecting chamber (111) and located behind the baffle assembly (12), and the oil leakage hole is in communication with the oil cup assembly (15); A visible area (1211) is provided at a position of the baffle assembly (12) corresponding to the oil cup assembly (15).

5. The intelligent smoke and stove integrated machine according to claim 1, characterized in that: The stove module (2) comprises a drive assembly (21) and a burner, wherein the drive assembly (21) is arranged in the accommodating cavity (112). The burner is located inside and behind the baffle assembly (12), the fixed end of the burner is respectively connected to the output end of the housing assembly (11) and the drive assembly (21), and the drive assembly (21) is used to drive the burner to flip upward and be retracted into the accommodating cavity (112) and hidden behind the baffle assembly (12), or to drive the burner to flip downward and unfold to the front of the lower end of the range hood module (1); a first notch (1212) is provided at the lower end of the baffle assembly (12) for the fixed end of the burner to pass through.

6. The intelligent smoke and stove integrated machine according to claim 5, characterized in that: The burner comprises a burner body (22) and a support assembly (23); the support assembly (23) is mounted on the bottom surface of the accommodating cavity (112); a fixed end of the burner body (22) is respectively connected to the support assembly (23) and an output end of the driving assembly (21); an ejection assembly is provided on the burner body (22); and a nozzle (231) is provided at a position of the support assembly (23) corresponding to the ejection assembly.

7. The intelligent smoke and stove integrated machine according to claim 5, characterized in that: The stove module (2) further comprises a support plate and / or a gas circuit assembly (20), and two burners are installed on the top of the support plate and are spaced apart from each other on the left and right. The gas circuit assembly (20) is arranged in the accommodating cavity (112) and is located behind the baffle assembly (12) to provide the burner with the gas required for combustion.

8. The intelligent smoke and stove integrated machine according to any one of claims 1 to 7, characterized in that: A partition plate (16) is provided in the accommodating cavity (112), wherein the partition plate (16) divides the accommodating cavity (112) into a rear cavity (1121) and a front cavity (1122) having a front opening, and a second notch (162) is provided at the lower end of the partition plate (16); The drive assembly (21) is installed in the rear cavity (1121), and the fixed end of the burner passes through the second notch (162) and is rotatably connected to the shell assembly (11). The burner can be flipped upward and retracted into the front cavity (1122) and hidden behind the baffle assembly (12).

9. The intelligent smoke and stove integrated machine according to claim 8, characterized in that: The partition plate (16) is provided with a first through hole (161) suitable for accommodating the free end of the burner, and the free end of the burner can movably pass through the first through hole (161) to extend into or move away from the rear cavity (1121).

10. The intelligent smoke and stove integrated machine according to claim 9, characterized in that: A second through hole (163) is provided at the upper end of the partition plate (16), and the oil cup assembly (15) can movably pass through the second through hole (163) and extend into the rear cavity (1121).