Cooker and smoke stove all-in-one machine

By designing a reversible stove connection mechanism and support part, the existing stove connection is solved, the problems of unstable space, difficulty in cleaning and safety hazards are solved, and space saving, convenient cleaning and high safety are achieved.

CN223204422UActive Publication Date: 2025-08-08ZHEJIANG SUPOR KITCHEN & BATHROOM APPLIANCE CO LTD
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Patent Information

Application Number
CN202422449266.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-08
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

The existing reversible stoves have problems such as unstable connections, low strength, large space, difficult cleaning and safety hazards.

Method used

By designing a stove, the main body and the furnace head assembly are rotatably connected by a connecting mechanism. The furnace head assembly can be turned to parallel to the vertical plane, equipped with a support part to dissipate the rotation force, and use the driving mechanism to accurately control the rotation, avoid deformation of the bottom shell, and simplify the installation and cleaning process.

Benefits of technology

It achieves space saving, convenient cleaning and high safety, avoids scalds and discharge corrosion caused by unclear heating, reduces line failures caused by rat insect retention, and improves user experience and structural stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a stove and smoke stove all-in-one machine, which comprises a main body, a connecting mechanism and a burner assembly, the main body is arranged on a vertical surface, the connecting mechanism is provided with a first part and a second part, the first part is rotatably connected with the main body, and the second part is fixedly connected with the first part; wherein the furnace end assembly is provided with a bottom shell, the bottom shell forms a containing cavity, the second part is provided with a supporting part extending into the containing cavity, and the supporting part is fixedly connected with the bottom shell. According to the utility model, the second part is provided with the supporting part which extends into the bottom shell and is fixed with the bottom shell, so that the acting force in the rotating process can be dispersed to the furnace end assembly to the maximum extent, the phenomenon that the bottom shell is pulled to deform after being used for a long time is avoided, and the connection between the second part and the furnace end assembly is more stable.
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Description

Technical Field

[0001] The utility model relates to the technical field of kitchenware, in particular to a stove and a smoke and stove integrated machine. Background Art

[0002] As people's quality of life improves, their expectations for kitchen cooking environments are also increasing. For stoves, which are essential in the kitchen, commonly used built-in or tabletop stoves take up a large amount of kitchen space and make the countertop where the stove is placed or mounted difficult to clean. Furthermore, built-in stoves need to be mounted on the countertop, but the mounting dimensions vary across brands. Even within the same brand, the mounting dimensions can vary, making stove replacement difficult. Furthermore, built-in and tabletop stoves pose safety risks. For example, after use, the stove may not fully dissipate, and users may accidentally touch it, causing injury. Alternatively, if the stove is used for an extended period, spills may seep into the stove, attracting rodents and insects, potentially causing disconnection of internal circuits or clogging of nozzles. Therefore, reversible stoves, which require less space, offer easy cleaning, and offer increased safety, are becoming increasingly popular in the market.

[0003] However, most existing reversible stoves have problems such as an unstable and low-strength connection mechanism for reversing the burner head assembly relative to the main body, which poses a safety hazard. Utility Model Content

[0004] In order to at least partially solve the problems existing in the prior art, according to one aspect of the present invention, a stove is provided, and the technical solution is as follows.

[0005] The stove includes a main body, a connecting mechanism and a burner assembly. The main body is arranged on a vertical plane. The connecting mechanism has a first part and a second part. The first part is rotatably connected to the main body, and the second part is fixedly connected to the first part. The burner assembly has a bottom shell, the bottom shell forms a accommodating cavity, and the second part has a supporting part extending into the accommodating cavity, and the supporting part is fixedly connected to the bottom shell.

[0006] The stove of the present invention, on the one hand, rotatably connects the main body and the burner assembly together via a connecting mechanism, allowing the burner assembly to rotate relative to the main body. When the stove is in use, the user can rotate the burner assembly onto the countertop. When the stove is not in use, the user can rotate the burner assembly parallel to a vertical plane. This saves space and facilitates cleaning the countertop. Furthermore, the stove does not require embedded installation, avoiding the trouble associated with embedded installation. The overall structure is simple and easy to install. Furthermore, because the burner assembly can be rotated parallel to a vertical plane, it prevents users from being burned by touching the stove due to lack of understanding of the heating conditions, prevents overflow from penetrating into the stove and corroding the internal circuits and pipes, and prevents rodents and insects from being attracted to the stove and causing internal circuit breakage or nozzle blockage. Furthermore, the second portion includes a support portion that extends into the accommodating cavity and is fixed to the bottom shell. This maximizes the distribution of force applied during rotation to the burner assembly, preventing deformation of the bottom shell after prolonged use and further strengthening the connection between the second portion and the burner assembly.

[0007] For example, the bottom shell has a length H1, and the support portion has a length H2 along the length direction of the bottom shell, and 1 / 2H1≤H2≤H1. When the length H2 of the support portion is within this range, the support portion is more stable and has higher strength, avoiding safety hazards during rotation.

[0008] For example, the first portion is connected to a drive mechanism comprising a fixing assembly and a drive assembly. The drive assembly is fixed to the main body via the fixing assembly, and the first portion is rotated relative to the main body by the drive assembly. This arrangement allows the burner assembly to be precisely rotated relative to the main body by controlling the drive assembly, preventing damage to the burner assembly from colliding with the main body or countertop, simplifying operation, and enhancing the user experience.

[0009] Exemplarily, the drive assembly includes a drive member and a rotating shaft, the rotating shaft being connected to the drive member. A connecting cavity is formed at one end of the first portion proximate to the main body, and the rotating shaft is inserted into the connecting cavity and fixedly connected to the first portion. This arrangement forms the connecting cavity at the end of the first portion proximate to the main body, thereby increasing the structural strength of the end of the first portion proximate to the main body and reducing deformation of the end of the first portion proximate to the main body due to applied forces during rotation. Furthermore, the rotating shaft is inserted into the connecting cavity and fixedly connected to the first portion, further enhancing the stability of the connection between the rotating shaft and the first portion.

[0010] For example, the fixed assembly comprises a bracket and two support seats, one on each side of the bracket. The rotating shaft comprises two connecting segments located outside the connecting cavity, each of which is inserted into a bearing hole in the support seats. This arrangement provides fixed support for the rotating shaft, and the two support seats, located on either side of the bracket, cooperate with the two connecting segments of the rotating shaft located outside the connecting cavity, further enhancing the stability of the rotating shaft during rotation.

[0011] For example, the first portion is hingedly connected to the main body so as to be rotatable relative to the main body. This arrangement simplifies the structure and saves costs. When the stove is in use, the user can manually rotate the burner assembly onto the countertop. When the stove is not in use, the burner assembly can be manually rotated parallel to the vertical surface, saving countertop space, making it easier for the user to clean the countertop, and improving the user experience.

[0012] For example, the bottom shell comprises a bottom wall and two opposing side walls, the side walls being connected to either side of the bottom wall, and the support portion comprising two opposing support plates, each secured to the side walls. This arrangement maximizes the distribution of forces acting on the burner assembly during rotation, preventing deformation of the bottom shell after prolonged use. Furthermore, this side-mounted securing arrangement provides greater stability during rotation, preventing vibration of the burner assembly. Furthermore, it facilitates installation and removal for easier cleaning or maintenance.

[0013] For example, the first portion includes a connecting body, with two support plates connected to either end of the connecting body. This arrangement disperses the forces transmitted to the connecting body by the two support plates, thus preventing damage to the connecting body due to excessive local forces.

[0014] For example, the first part further comprises an enclosure, which forms a connection cavity with the connection body. This configuration saves materials, ensures structural strength, and reduces deformation of the enclosure caused by applied force during rotation.

[0015] For example, the enclosure includes a first enclosure portion, a second enclosure portion, and a third enclosure portion. The second enclosure portion is opposite the connecting body, the first enclosure portion is opposite the third enclosure portion, and the first enclosure portion and the third enclosure portion are connected between the second enclosure portion and the connecting body. This configuration saves material, ensures structural strength, and reduces deformation of the enclosure due to applied forces during rotation by connecting the first enclosure portion and the third enclosure portion between the second enclosure portion and the connecting body.

[0016] For example, the bottom shell has a top wall disposed opposite the bottom wall, and a first flange and a second flange extend from either side of the support plate, respectively. The first flange is attached to the bottom wall, and the second flange is attached to the top wall. This configuration provides the support plate with a higher structural strength and stability. Furthermore, the first flange is attached to the bottom wall, and the second flange is attached to the top wall, further strengthening the connection between the support plate and the bottom shell.

[0017] According to another aspect of the present invention, a smoke and stove combination unit is provided, comprising the stove described above, wherein the main body has a receiving cavity, and when the first portion is rotated to a predetermined angle relative to the main body, the burner assembly is at least partially located within the receiving cavity. Thus, by storing the burner assembly within the receiving cavity, the smoke and stove combination unit is further integrated and prevents the stove from becoming easily contaminated by dust and dirt due to prolonged periods of non-use. Since the stove described above has the aforementioned beneficial effects, the smoke and stove combination unit including the stove described above also has the aforementioned beneficial effects, which will not be further elaborated here.

[0018] The Summary of the Utility Model introduces a series of simplified concepts, which will be further described in detail in the Detailed Description of the Utility Model. This Summary of the Utility Model does not intend to limit the key features and essential technical features of the claimed technical solution, nor does it intend to determine the scope of protection of the claimed technical solution.

[0019] The advantages and features of the present invention are described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The following drawings of the present invention are used as part of the present invention for understanding the present invention. The drawings show the embodiments of the present invention and their descriptions, and are used to explain the principles of the present invention. In the drawings,

[0021] Figure 1 A cross-sectional view of a cooker according to an exemplary embodiment of the present invention;

[0022] Figure 2 for Figure 1 The cooker shown is a three-dimensional image with the main body removed;

[0023] Figure 3 for Figure 1 An exploded view of a portion of the cooktop is shown;

[0024] Figure 4 for Figure 1 a perspective view of a portion of the cooktop shown;

[0025] Figure 5 for Figure 1 A perspective view of the connecting mechanism shown

[0026] Figure 6 This is a cross-sectional view of a portion of a smoke and stove integrated machine according to an exemplary embodiment of the present invention.

[0027] The above drawings include the following reference numerals:

[0028] 10. Cooker; 110. Main body; 111. Accommodating cavity; 120. Connecting mechanism; 121. First part; 1211. Connecting cavity; 1212. Connecting body; 1212a. Second avoidance hole; 1213. Enclosed body; 1213a. First enclosed portion; 1213b. Second enclosed portion; 1213c. Third enclosed portion; 122. Second part; 1221. Support portion; 1221a. Support plate; 1221b. First flange; 1221c. Second flange; 130. Burner head assembly; 131. Bottom shell; 1311. Bottom wall; 1312. Side wall; 1312a. Protrusion; 13 13. Top wall; 1314. First wall; 1314a. First avoidance hole; 1314b. Third avoidance hole; 1315. Second wall; 1316. Accommodation chamber; 132. Burner; 1321. Outer ring fire cover; 1322. Inner ring fire cover; 1323. Fire distributor; 1324. Pot support; 140. Drive mechanism; 141. Fixing assembly; 1411. Bracket; 1412. Support seat; 1412a. Bearing hole; 142. Drive assembly; 1421. Drive member; 1422. Rotating shaft; 1422a. Connecting section; 1423. Coupling; 150. Threaded hole; 160. Through hole. DETAILED DESCRIPTION

[0029] In the following description, numerous details are provided to facilitate a thorough understanding of the present invention. However, those skilled in the art will appreciate that the following description merely illustrates preferred embodiments of the present invention, and that the present invention may be practiced without one or more of these details. Furthermore, to avoid confusion with the present invention, some technical features well known in the art have not been described in detail.

[0030] To thoroughly understand the embodiments of the present invention, a detailed structure will be provided in the following description. Obviously, the implementation of the embodiments of the present invention is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of the present invention are described in detail below, but in addition to these detailed descriptions, the present invention may also have other embodiments.

[0031] An embodiment of the present invention provides a stove. The stove provided by the present invention can be used in a range hood and stove combination unit. The following describes a stove according to an embodiment of the present invention in detail with reference to the accompanying drawings.

[0032] See also Figures 1 to 5The stove 10 may include a main body 110, a connecting mechanism 120, and a burner assembly 130. The main body 110 may be disposed on a vertical surface. The connecting mechanism 120 may include a first portion 121 and a second portion 122. The first portion 121 may be rotatably connected to the main body 110. The second portion 122 may be fixedly connected to the first portion 121. The burner assembly 130 may include a bottom shell 131. The bottom shell 131 may be formed with a receiving cavity 1316. The second portion 122 may include a support portion 1221 that extends into the receiving cavity 1316, and the support portion 1221 may be fixedly connected to the bottom shell 131.

[0033] The stove 10 of the present invention, on the one hand, rotatably connects the main body 110 and the burner assembly 130 via a connecting mechanism 120, allowing the burner assembly 130 to rotate relative to the main body 110. When the stove 10 is in use, the user can rotate the burner assembly 130 onto a countertop (not shown). When the stove 10 is not in use, the user can rotate the burner assembly 130 parallel to a vertical surface. This saves space and facilitates cleaning the countertop. Furthermore, the stove 10 does not require flush mounting, avoiding the hassles associated with such installation, resulting in a simple structure and easy installation. Furthermore, because the burner assembly 130 can be rotated parallel to a vertical surface, it prevents burns from the user's lack of knowledge of the stove 10's heating conditions, prevents spills from penetrating and corroding internal wiring and piping, and prevents rodents and insects from being attracted to the stove 10, potentially causing circuit breakage or nozzle blockage. On the other hand, the second part 122 has a support portion 1221 that extends into the accommodating cavity 1316 and is fixed to the bottom shell 131, which can disperse the force during the rotation process to the burner assembly 130 to the maximum extent, avoiding the deformation of the bottom shell 131 after long-term use, and making the connection between the second part 122 and the burner assembly 130 more stable.

[0034] It should be noted that the countertop can be perpendicular to a vertical surface. The vertical surface can be a mounting wall, a cabinet sidewall, etc. The countertop can be a cooking platform, that is, a platform for installing a stove or cooker 10 in the kitchen, or the countertop can be a cabinet top plate or a floor cabinet top plate, etc.

[0035] Specifically, the burner assembly 130 may further include a burner 132. The burner 132 may be at least partially mounted within the accommodating cavity 1316. The burner 132 may include an outer ring fire cover 1321, an inner ring fire cover 1322, an ignition distributor 1323, and a pot support 1324. The outer ring fire cover 1321 and the inner ring fire cover 1322 are mounted on the ignition distributor 1323 to form at least two rings of flame, thereby providing a variety of flame modes when used by the user. Accordingly, the burner 132 may further include an ignition assembly (not shown) and an air intake assembly (not shown). The air intake assembly may be connected to the ignition distributor 1323 to provide gas. The ignition assembly may be at least partially connected to the air intake assembly. There may be multiple pot supports 1324, and the multiple pot supports 1324 may be arranged on the periphery of the outer ring fire cover 1321 and coaxial with the outer ring fire cover 1321 so that the pot supports 1324 can support the pots used for cooking. In this way, it is ensured that the user can cook by using the burner 132 .

[0036] The main body 110 can be a mounting plate (such as Figure 1 As shown). When the stove 10 is not in use, the user can rotate the burner head assembly 130 to a certain angle and abut it against the mounting plate to complete the storage of the burner head assembly 130. At this time, the user can clean the countertop. It is understandable that the thickness of the mounting plate is relatively small and takes up less space on the countertop. The burner head assembly 130 can be rotated 90°, so that the burner head assembly 130 occupies less countertop space when abutting the mounting plate, thereby improving the user's experience. A liquid collection pan (not shown in the figure) can be provided under the mounting plate. When the burner head assembly 130 is rotated to a certain angle and abuts the mounting plate, the liquid collection pan can receive the overflow dripping from the burner head assembly 130 and the bottom shell 131 due to gravity, avoiding the overflow from dirtying the countertop, thereby making it convenient for the user to clean the overflow, and avoiding the overflow from accumulating on the burner head assembly 130 and the bottom shell 131 for a long time, especially inside the bottom shell 131, which will slowly cause damage or corrosion to the circuit inside the bottom shell 131 due to immersion and physical and chemical reactions.

[0037] Furthermore, a limiting structure such as a buckle can be provided on the main body 110. After the burner head assembly 130 rotates to a certain angle and abuts against the mounting plate, the limiting structure can constrain the position of the burner head assembly 130, preventing the burner head assembly 130 from rotating and falling on its own, thereby avoiding safety hazards.

[0038] See Figure 4, the bottom shell 131 may have a length H1. The support portion 1221 may have a length H2 along the length direction of the bottom shell 131. 1 / 2H1≤H2≤H1. When the length H2 of the support portion 1221 is within this range, the support portion 1221 is more stable and has higher strength, thereby avoiding potential safety hazards during the rotation process. It can be understood that within this range, the longer the length H2 of the support portion 1221, the more stable and stronger the support portion 1221. Preferably, the length H2 of the support portion 1221 may be equal to the length H1 of the bottom shell 131.

[0039] See also Figures 1 to 4 , the first part 121 can be connected to a driving mechanism 140. The driving mechanism 140 may include a fixing component 141 and a driving component 142. The driving component 142 can be fixed to the main body 110 through the fixing component 141. The first part 121 can be rotated relative to the main body 110 through the driving component 142. The user can achieve precise rotation of the burner head assembly 130 relative to the main body 110 by controlling the driving mechanism 140. Specifically, the stove 10 may be provided with an input component (not shown in the figure) and a controller (not shown in the figure). The input component can be a button, a knob, a touch screen, etc. The user can input control information to the controller through the input component, and then control the working state of the driving component 142. In this way, the burner head assembly 130 is prevented from colliding with the main body 110 or the countertop and causing damage, and the operation process is simplified, thereby improving the user experience.

[0040] See also Figures 2 to 5The drive assembly 142 may include a drive member 1421 and a rotating shaft 1422. The rotating shaft 1422 may be connected to the drive member 1421. A connecting cavity 1211 may be formed at one end of the first portion 121 close to the main body 110. The rotating shaft 1422 may be inserted into the connecting cavity 1211 and fixedly connected to the first portion 121. The connecting cavity 1211 is formed at one end of the first portion 121 close to the main body 110, so that the structural strength of the end of the first portion 121 close to the main body 110 is higher, and the deformation of the end of the first portion 121 close to the main body 110 due to the force during rotation is reduced. Moreover, the rotating shaft 1422 is inserted into the connecting cavity 1211 and fixedly connected to the first portion 121, so that the connection between the rotating shaft 1422 and the first portion 121 is more stable. Specifically, the portion of the rotating shaft 1422 inserted into the connecting cavity 1211 may be designed to be in a shape that matches the connecting cavity 1211. The rotating shaft 1422 may be a solid shaft. When the rotating shaft 1422 is a solid shaft, the structural strength of the rotating shaft 1422 is higher and less susceptible to bending and damage. The rotating shaft 1422 may also be a hollow shaft. Preferably, the rotating shaft 1422 and the first portion 121 may be connected by fasteners such as screws. Taking screw connection as an example, the rotating shaft 1422 and the first portion 121 may be provided with corresponding threaded holes 150. After the rotating shaft 1422 and the first portion 121 are assembled, the screws can be used to securely connect the two together through the threaded holes 150. The screw connection between the rotating shaft 1422 and the first portion 121 provides a more secure connection and facilitates assembly and disassembly of the rotating shaft 1422 and the first portion 121. Of course, the rotating shaft 1422 and the first portion 121 may also be secured by other means, such as gluing or welding. Furthermore, the rotating shaft 1422 and the driving member 1421 may be connected by a coupling 1423. The coupling 1423 can effectively transmit torque from the driving member 1421 to the rotating shaft 1422, ensuring the continuity and efficiency of power transmission. It is understandable that when the driving member 1421 or the rotating shaft 1422 fails, the coupling 1423 can also protect the rotating shaft 1422 or the driving member 1421 from damage.

[0041] Furthermore, the driving member 1421 may be a motor. Preferably, the driving member 1421 may be a reduction motor. The reduction motor can increase the output torque by reducing the speed of the motor, so that it can easily rotate the burner head assembly 130. The controller may be a reduction motor controller. The reduction motor controller can accurately control the start, stop, speed and direction of the reduction motor through the control information received. In this way, the rotation speed and position of the burner head assembly 130 can be accurately controlled, thereby avoiding the burner head assembly 130 from colliding with the main body 110 or the table top and causing damage, thereby improving the user experience. Of course, the driving member 1421 may also be other devices that can drive the burner head assembly 130 to rotate.

[0042] See also Figures 2 to 4 The fixing assembly 141 may include a bracket 1411 and two support seats 1412. The two support seats 1412 may be respectively arranged on both sides of the bracket 1411. The rotating shaft 1422 may include two connecting sections 1422a located outside the connecting cavity 1211. The two connecting sections 1422a may be respectively inserted into the bearing holes 1412a of the support seat 1412. Specifically, the bracket 1411 is connected to the main body 110. The bracket 1411 and the main body 110 may be connected by means of bonding, welding or fastener connection. The support seat 1412 may be connected to the bracket 1411 by fasteners such as screws. Of course, the support seat 1412 and the bracket 1411 may also be connected by other connection methods, such as bonding, welding and other connection methods. The bearings on the support seat 1412 may be ball bearings, roller bearings, sliding bearings and the like. The two connecting segments 1422a can each form an interference fit with the corresponding bearing holes 1412a of the support base 1412, thereby strengthening the connection between the rotating shaft 1422 and the support base 1412 and reducing friction between the connecting segments 1422a and the support base 1412 during rotation, thereby making the rotation of the rotating shaft 1422 smoother. The two support bases 1412 provide fixed support for the rotating shaft 1422. At the same time, the two support bases 1412 are respectively arranged on both sides of the bracket 1411 and cooperate with the two connecting segments 1422a of the rotating shaft 1422 located outside the connecting cavity 1211, further enhancing the stability of the rotating shaft 1422 during rotation.

[0043] In an embodiment not shown in the figures, the first portion 121 can be hingedly connected to the main body 110 so as to be rotatable relative to the main body 110. Specifically, the first portion 121 and the main body 110 can be hingedly connected via a hinge, pin, or shaft. This simplifies the structure and saves costs. When the stove 10 is in use, the user can manually rotate the burner assembly 130 onto the countertop. When the stove 10 is not in use, the user can manually rotate the burner assembly 130 parallel to the vertical surface. This saves countertop space, facilitates cleaning, and improves the user experience.

[0044] Furthermore, the cooker 10 may also include both a drive mechanism 140 and a hinge structure between the first portion 121 and the main body 110. Understandably, if the drive mechanism 140 is damaged or unavailable due to a power outage, the user can rotate the burner head assembly 130 via the hinge structure between the first portion 121 and the main body 110, thereby avoiding the situation in which the user is unable to rotate the burner head assembly 130 and improving the user experience.

[0045] See also Figures 2 to 5The bottom shell 131 may have a bottom wall 1311 and two oppositely arranged side walls 1312. The two side walls 1312 may be connected to the two sides of the bottom wall 1311 respectively. The support portion 1221 may have two oppositely arranged support plates 1221a. The two support plates 1221a may be fixed to the two side walls 1312 respectively. In this way, the force during the rotation process can be dispersed to the burner head assembly 130 to the maximum extent, avoiding the phenomenon of the bottom shell 131 being pulled and deformed after long-term use. At the same time, this side fixing method is also more stable when the burner head assembly 130 is rotated, and will not cause the burner head assembly 130 to shake, and is more convenient to install and disassemble, so as to facilitate cleaning or maintenance.

[0046] Furthermore, to accommodate the burner 132, protrusions 1312a protruding toward the interior of the bottom shell 131 may be provided on the side walls 1312. The support plate 1221a may be bent into an N-shape to cooperate with the side walls 1312, thereby enhancing the secure connection between the support plate 1221a and the side walls 1312. It is understood that bending the support plate 1221a into an N-shape can reduce the probability of the support plate 1221a being bent and deformed.

[0047] Specifically, the support plate 1221a and the side wall 1312 can be connected by fasteners such as screws or bolts. The support plate 1221a and the side wall 1312 can be provided with corresponding through holes 160. After the support plate 1221a and the side wall 1312 are assembled, screws can be used to pass through the through holes 160 to fix the two together. In this way, the structure is simple and easy to disassemble and assemble. When the burner head assembly 130 needs to be removed from the connecting mechanism 120, it is only necessary to remove the bolts on the support plate 1221a and the side wall 1312, and the burner head assembly 130 can be easily pulled out, making it convenient for the user to inspect and clean the burner head assembly 130, thereby improving the user's experience.

[0048] The two side walls 1312 may be connected to a first wall 1314 and a second wall 1315, respectively, which are arranged opposite each other to provide greater strength and stability to the bottom housing 131. The first wall 1314 is closer to the main body 110 than the second wall 1315. First avoidance holes 1314a may be defined in the first wall 1314 to facilitate the insertion of the support plate 1221a and its connection to the side walls 1312. It is understood that the number of first avoidance holes 1314a corresponds to the number of support plates 1221a.

[0049] Again, refer to Figures 2 to 5The first portion 121 may include a connecting body 1212. Two support plates 1221a may be connected to the ends of the connecting body 1212, respectively. Specifically, the connecting body 1212 may be provided with a second avoidance hole 1212a. The pipeline of the air intake assembly may pass through the second avoidance hole 1212a to facilitate connection between the pipeline and the ignition distributor 1323. By connecting the two support plates 1221a to the ends of the connecting body 1212, the forces transmitted to the connecting body 1212 by the two support plates 1221a are dispersed, preventing damage to the connecting body 1212 due to excessive local forces. It is understood that third avoidance holes 1314b are provided on the first wall 1314 at positions corresponding to the second avoidance holes 1212a, thereby facilitating the entry of the pipeline of the air intake assembly into the bottom shell 131. The number of third avoidance holes 1314b corresponds to the number of second avoidance holes 1212a.

[0050] See also Figures 3 and 4 The first portion 121 may further include an enclosure 1213. The enclosure 1213 may be enclosed with the connecting body 1212 to form a connecting cavity 1211. This saves material, ensures structural strength, and reduces deformation of the enclosure 1213 caused by applied force during rotation.

[0051] See also Figures 3 to 5 The enclosure 1213 may include a first enclosure portion 1213a, a second enclosure portion 1213b, and a third enclosure portion 1213c. The second enclosure portion 1213b may be opposite to the connecting body 1212, the first enclosure portion 1213a may be opposite to the third enclosure portion 1213c, and the first enclosure portion 1213a and the third enclosure portion 1213c may be connected between the second enclosure portion 1213b and the connecting body 1212. In this way, by connecting the first enclosure portion 1213a and the third enclosure portion 1213c between the second enclosure portion 1213b and the connecting body 1212, material is saved, structural strength is ensured, and deformation of the enclosure 1213 due to applied force during rotation is reduced.

[0052] Furthermore, one end of the third enclosing portion 1213c close to the second portion 122 can extend downwardly in contact with a surface of the connecting body 1212 close to the main body 110. This further ensures structural strength and reduces deformation of the enclosing body 1213 during rotation.

[0053] See also Figures 1 to 5The bottom shell 131 may have a top wall 1313 disposed opposite the bottom wall 1311. A first flange 1221b and a second flange 1221c may extend from both sides of the support plate 1221a. The first flange 1221b may be attached to the bottom wall 1311. The second flange 1221c may be attached to the top wall 1313. Thus, the first flange 1221b and the second flange 1221c extend from both sides of the support plate 1221a, respectively, providing the support plate 1221a with greater structural strength and stability. The first flange 1221b is attached to the bottom wall 1311, and the second flange 1221c is attached to the top wall 1313, further enhancing the secure connection between the support plate 1221a and the bottom shell 131. Specifically, the burner 132 may be at least partially placed on the top wall 1313. The top wall 1313 can block the oil spilled by the user during cooking, thereby preventing the oil spilled into the bottom shell 131 and making it difficult to clean. Of course, the support plate 1221a can also be extended with a first flange 1221b or a second flange 1221c.

[0054] See also Figures 1 to 6 According to another aspect of the present invention, a smoke and stove integrated machine 1 is provided, comprising the stove 10 as described above. The main body 110 may have a accommodating cavity 111. When the first portion 121 of the burner assembly 130 is rotated to a predetermined angle relative to the main body 110, at least a portion of the burner assembly 130 is located in the accommodating cavity 111. In this way, by storing the burner assembly 130 in the accommodating cavity 111, the smoke and stove integrated machine 1 is more integrated, and the situation in which the stove 10 is easily dusted and dirty due to long periods of non-use of the stove 10 is avoided. Preferably, the predetermined angle may be 90°, and the stove 10 may be flipped between the countertop and the accommodating cavity 111. Since the stove 10 as described above has the above-mentioned beneficial effects, the smoke and stove integrated machine 1 comprising the stove 10 as described above also has the above-mentioned beneficial effects, which will not be described in detail here.

[0055] In the description of the present invention, it should be understood that the directions or positional relationships indicated by directional words such as "front", "back", "up", "down", "left", "right", "horizontal", "vertical", "vertical", "horizontal", "top", "bottom", etc. are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of the present invention; the directional words "inside" and "outside" refer to the inside and outside relative to the outline of each component itself.

[0056] For ease of description, area-relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used here to describe the regional positional relationship between one or more components or features shown in the figures and other components or features. It should be understood that area-relative terms include not only the orientation of the components as described in the figures, but also different orientations in use or operation. For example, if the components in the drawings are inverted as a whole, the situation where the components are "above other components or features" or "above other components or features" will include the situation where the components are "below other components or structures" or "below other components or structures". Thus, the exemplary term "above" may include both the orientations "above" and "below". In addition, these components or features may also be positioned at other different angles (e.g., rotated 90 degrees or other angles), and this document is intended to include all of these situations.

[0057] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, parts, components and / or combinations thereof.

[0058] It should be noted that the terms "first," "second," and the like in the specification and claims of this application and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0059] The present invention has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative and illustrative purposes only and are not intended to limit the present invention to the described embodiments. Furthermore, those skilled in the art will appreciate that the present invention is not limited to the above embodiments and that various variations and modifications may be made based on the teachings of the present invention, all of which fall within the scope of the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A stove, characterized in that: The burner comprises a main body, a connecting mechanism and a burner head assembly, wherein the main body is arranged on a vertical plane, the connecting mechanism comprises a first part and a second part, the first part is rotatably connected to the main body, and the second part is fixedly connected to the first part; The burner head assembly has a bottom shell, the bottom shell forms a receiving cavity, the second part has a supporting portion extending into the receiving cavity, and the supporting portion is fixedly connected to the bottom shell.

2. The cooker according to claim 1, characterized in that: The bottom shell has a length H1, and the support portion has a length H2 along the length direction of the bottom shell, where 1 / 2 H1 ≤ H2 ≤ H1.

3. The cooker according to claim 1, characterized in that: The first part is connected to a driving mechanism, which includes a fixing component and a driving component. The driving component is fixed to the main body through the fixing component, and the first part rotates relative to the main body through the driving component.

4. The cooker according to claim 3, characterized in that: The driving assembly comprises a driving member and a rotating shaft, wherein the rotating shaft is connected to the driving member, and a connecting cavity is formed at one end of the first part close to the main body, wherein the rotating shaft is inserted into the connecting cavity and fixedly connected to the first part.

5. The cooker according to claim 4, characterized in that: The fixing assembly has a bracket and two support seats, the two support seats are respectively arranged on both sides of the bracket, and the rotating shaft has two connecting sections located outside the connecting cavity, and the two connecting sections are respectively inserted into the bearing holes of the support seats.

6. The cooker according to claim 1, characterized in that: The first part is hinged to the main body so as to be rotatable relative to the main body.

7. The cooker according to claim 1, characterized in that: The bottom shell has a bottom wall and two oppositely arranged side walls, the two side walls are respectively connected to the two sides of the bottom wall, and the supporting portion has two oppositely arranged support plates, the two support plates are respectively fixed to the two side walls.

8. The cooker according to claim 7, characterized in that: The first part has a connecting body, and the two supporting plates are respectively connected to two ends of the connecting body.

9. The cooker according to claim 8, characterized in that: The first part further has an enclosure, and the enclosure and the connecting body are combined to form a connecting cavity.

10. The cooker according to claim 9, characterized in that: The enclosure has a first enclosure portion, a second enclosure portion and a third enclosure portion, the second enclosure portion is opposite to the connecting body, the first enclosure portion is opposite to the third enclosure portion, and the first enclosure portion and the third enclosure portion are connected between the second enclosure portion and the connecting body.

11. The cooker according to claim 8, characterized in that: The bottom shell has a top wall arranged opposite to the bottom wall, and a first flange and a second flange extend from both sides of the support plate respectively. The first flange is attached to the bottom wall, and the second flange is attached to the top wall.

12. A smoke and stove integrated machine, characterized in that: The stove comprises the stove according to any one of claims 1 to 11, wherein the main body has a receiving cavity, and when the first part of the burner assembly is rotated to a predetermined angle relative to the main body, at least a part of the burner assembly is located in the receiving cavity.