Folding top air inlet gas stove and burner assembly thereof

By improving the design of the burner assembly, the burner and control unit are separated and concealed, solving the problems of large space occupation and exposed wires after flipping, thus improving the cleanliness and service life of the gas stove.

CN118532722BActive Publication Date: 2025-11-11GUANGDONG MACRO GAS APPLIANCE
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Patent Information

Application Number
CN202410695228.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-30
Publication Date
2025-11-11
Estimated Expiration
2044-05-30

AI Technical Summary

Technical Problem

Existing folding top-intake gas stoves still take up a lot of space and are not neat enough after being flipped over. Heat transfer between the burner and control unit affects the lifespan of electronic components, and exposed wires are easily damaged.

Method used

A burner assembly was designed, including a burner component, a rotating shaft component, and a pot support. The burner and control unit are separated by a heat insulation plate, a temperature sensing module, and a magnet structure. The ignition needle is hidden, heat is dissipated by a secondary air inlet and ventilation holes, and the wires are hidden by a detachable end cap.

Benefits of technology

It achieves better burner rotation, reduces space occupation, improves cleanliness, extends the service life of the control components, avoids wire damage, and enhances the miniaturization and ease of cleaning of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to gas stove technical field, disclose a kind of burner assembly of folding upper air inlet gas stove, including burner assembly, pivot assembly and pot support, wherein, the burner assembly includes burner base, and operating panel and burner are installed on the burner base, the burner base is divided into left and right two regions, the operating panel and the burner are respectively arranged in two regions;When the burner assembly is 180 degree overturn folding, the burner assembly is stacked on the first station, the operating panel is stacked on the second station;Heat insulation plate is equipped between the burner and the operating panel, secondary air inlet is equipped on the side of the burner base, ventilation hole is equipped in the installation area of the operating panel, the installation area of the operating panel and the installation area of the burner are communicated;During combustion, air is supplemented by the secondary air inlet, the ventilation hole required for secondary combustion.
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Description

Technical Field

[0001] This invention relates to the field of gas stove technology, and in particular to a folding top-intake gas stove and its burner assembly. Background Technology

[0002] Currently, in common flip-up top-intake burner cooktops, the burner and base are connected by a shaft. This shaft is fixed to a connecting seat by screws or other means, allowing the burner to rotate 180 degrees around this shaft. While flipping the burner 180 degrees in existing solutions provides some storage, the cooktop still appears somewhat cluttered in terms of height. This is addressed in the applicant's earlier patent applications, CN117146301A (titled "A Folding Top-Intake Burner and Gas Stove") and CN117606051A (titled "A Folding Gas-Electric Dual-Use Combination Stove").

[0003] This invention is a further optimized design based on existing technology. Summary of the Invention

[0004] The purpose of this invention is to provide a burner assembly for a folding top-intake gas stove that has a better flipping effect, is neater after flipping, and occupies less space. In order to solve one or more technical problems existing in the prior art, it provides at least a beneficial option or creates conditions.

[0005] To achieve the above objectives, the present invention adopts the following technical solution.

[0006] A burner assembly for a folding, top-intake gas stove includes a burner assembly, a rotating shaft assembly, and a pot support. The burner assembly includes a burner head base, an operation panel mounted on the burner head base, and a burner head. The burner head base is divided into left and right sections, and the operation panel and the burner head are respectively disposed in the two sections. When the burner assembly is folded 180 degrees, the burner assembly is stacked on the first work position, and the operation panel is stacked on the second work position.

[0007] A heat insulation plate is provided between the burner head and the control panel. A secondary air inlet is provided on the side of the burner head seat. Ventilation and heat dissipation holes are provided in the mounting area of ​​the control panel. The mounting area of ​​the control panel and the mounting area of ​​the burner head are connected. During combustion, air is supplied with the secondary air required for combustion through the secondary air inlet and the ventilation and heat dissipation holes.

[0008] More preferably, the first workstation is located on both sides of the second workstation and is set lower than the second workstation.

[0009] More preferably, a temperature sensing module and a touch control module are installed in the area enclosed by the control panel and the burner head base, and the temperature sensing module and the touch control module are attached to the control panel.

[0010] The temperature sensing module is used to sense the temperature of the control panel. When the temperature is too high, the control panel will display a high temperature warning to the user. The touch module is used to realize the touch power on / off and power adjustment functions.

[0011] More preferably, the burner head is provided with an ignition needle mounting hole, which is recessed into the inner sidewall of the burner head.

[0012] More preferably, the burner assembly includes a burner head cover, which is mounted on the burner head seat, and the burner head is mounted in the mounting cavity formed by the burner head seat and the burner head cover. A flow divider and a flame cap are mounted on the gas mixing chamber of the burner head seat.

[0013] More preferably, the burner head cover is provided with a magnet and a storage hole corresponding to the support plate of the pot support, and the burner head base is provided with a storage groove corresponding to the storage hole.

[0014] The pot support is a ferromagnetic pot support that can be placed in both directions and is attracted to the magnet. When the pot support is placed in reverse, the support pieces of the pot support pass through the corresponding storage holes and are embedded into the corresponding storage slots.

[0015] More preferably, the burner shroud is provided with a magnet slot for accommodating the magnet.

[0016] More preferably, the pivot assembly includes an end cap, a retaining ring, a damping decorative cover, a damper, and a pivot decorative cover. The end cap and the damping decorative cover are detachably connected by the deformation of the retaining ring. The damping decorative cover is inserted into the outside of the damper for tight fitting, and the pivot decorative cover is snapped onto the end of the damper. Through holes are provided on the side and end of the end cap.

[0017] The ignition wire on the burner assembly passes through a wire hole on the end cover of the rotating shaft assembly and then enters the cavity formed by the panel assembly and the bottom shell.

[0018] More preferably, the end cap, the retaining ring, the damping decorative cover, and the damper are two sets, respectively disposed on the left and right sides of the rotating shaft decorative cover, and the end cap near the wire hole of the panel assembly is provided with a wire hole.

[0019] On the other hand, the present invention also provides a folding top-intake gas stove having a burner assembly as described above.

[0020] The present invention has at least the following beneficial effects.

[0021] Firstly, because the burner assembly integrates the control panel and the burner head, it achieves an integrated design of the combustion and control components, resulting in a simple structure, easy installation, and greater potential for product miniaturization. Furthermore, since the control panel and burner head are located in two separate areas of the burner head base, the control panel can be stacked on the second working position when the burner assembly is folded 180 degrees. This results in a neater, more aesthetically pleasing folding effect, better overall cleanliness, and less space occupation, making cleaning easier for the user. Additionally, the secondary air inlet on the side of the burner head base and the ventilation and heat dissipation holes in the control panel mounting area allow air to replenish the secondary air required for combustion during operation. This not only facilitates the replenishment of secondary air but also allows the secondary air to be used to dissipate heat from the control panel, effectively extending its service life.

[0022] Second, by setting up heat insulation plates and temperature sensing modules, the heat transfer from the combustion part to the control part can be effectively reduced, thereby ensuring the lifespan of the electronic components in the control part; in addition, when the temperature of the control part is too high, the temperature sensing module can detect and issue warnings, making it convenient for users to intervene manually.

[0023] Third, by setting up structures such as magnets and pot support storage slots, when the burner assembly is flipped and folded 180 degrees, the pot support can also be inverted and the support piece of the pot support can be embedded into the storage slot, so that the surface of the burner assembly is flatter; the product occupies less space after flipping and folding, realizing the ultra-thin design of the whole machine; and ensuring that the pot support will not fall off when the burner assembly is folded.

[0024] Fourth, by setting the ignition needle mounting hole in the inner wall of the burner head, the ignition needle is basically hidden in the burner head, which not only hides the ignition needle, but also facilitates the miniaturization of the product and makes it easier to clean.

[0025] 5. By setting a detachable end cap on the rotating shaft assembly and setting corresponding wire holes on the end cap, the ignition wires on the burner assembly enter the product through the wire holes on the burner head cover, the wire holes on the end cap of the rotating shaft assembly, and the wire holes on the panel assembly. This not only solves the problem of exposed wires, but also avoids the risk of wire breakage during the folding process. Attached Figure Description

[0026] Figure 1 The diagram shown is a structural schematic of the folding top-intake gas stove provided by the present invention.

[0027] Figure 2 As shown Figure 1 The structure explodes.

[0028] Figure 3 The diagram shown is an exploded view of the burner assembly.

[0029] Figure 4 The image shown is a cross-sectional view of the burner assembly.

[0030] Figure 5 The image shown is another cross-sectional view of the burner assembly.

[0031] Figure 6 The image shown is another cross-sectional view of the burner assembly.

[0032] Figure 7 The diagram shown is a cross-sectional view of the burner assembly after it has been folded over.

[0033] Figure 8 The diagram shown is a cross-sectional view of the rotating shaft assembly.

[0034] Figure 9 The diagram shown is an exploded view of the rotating shaft assembly.

[0035] Figure 10 The diagram shown is a structural schematic of the folding top-intake gas stove provided by the present invention in its folded-up state.

[0036] Explanation of the reference numerals in the attached figures.

[0037] 1: Panel assembly, 2: Gas circuit assembly, 3: Bottom shell, 4: Nozzle seat assembly, 5: Pulse igniter, 6: Connecting pipe assembly, 7: Burner assembly, 8: Electric heating module.

[0038] 1-1: Threading hole; 1-2: Side mounting hole.

[0039] 3-1: Heat dissipation and ventilation holes; 3-2: Side mounting holes; 3-3: Damping mounting base.

[0040] 7-1: Burner assembly, 7-2: Shaft assembly, 7-3: Pot support.

[0041] 7-1-1: Burner head base, 7-1-2: Control panel, 7-1-3: Burner head, 7-1-4: Ignition needle, 7-1-5: Diverter plate, 7-1-6: Burner cap, 7-1-7: Burner head cover, 7-1-8: Magnet, 7-1-9: Heat insulation plate, 7-1-10: Temperature sensing module, 7-1-11: Touch control module.

[0042] 7-2-1: End cap, 7-2-2: Snap ring, 7-2-3: Damping decorative cover, 7-2-4: Damping, 7-2-5: Spindle decorative cover. Detailed Implementation

[0043] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings, making the technical solution and beneficial effects of the present invention clearer and more explicit. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0044] Additional aspects and advantages of the invention will become apparent in the following description or may be learned by practice of the invention.

[0045] Reference Figure 1 , Figure 2 As shown, a foldable top-intake gas stove includes a panel assembly 1, a gas circuit assembly 2, a bottom shell 3, a nozzle seat assembly 4, a pulse igniter 5, a connecting pipe assembly 6, a burner assembly 7, and an electric heating module 8. The panel assembly 1 and the bottom shell 3 are assembled together. The gas circuit assembly 2, the nozzle seat assembly 4, the pulse igniter 5, the connecting pipe assembly 6, and the electric heating module 8 are installed in the cavity formed by the panel assembly 1 and the bottom shell 3. The burner assembly 7 is foldably mounted on the bottom shell 3 and / or the panel assembly 1. The panel assembly 1 has a first working position corresponding to the burner assembly 7 and a second working position corresponding to the electric heating module 8. The nozzle seat assembly 4 corresponds to the burner assembly 7. The connecting pipe assembly 6 connects the gas circuit assembly 2 and the nozzle seat assembly 4 to supply gas to the nozzle seat assembly 4.

[0046] In this embodiment, the first workstation is preferably located on both sides of the second workstation and is positioned lower than the second workstation. In some embodiments, the first workstation is located on one side of the second workstation; however, this is not limited to this embodiment. When the first workstation is located on both sides of the second workstation, both sides are combustion heating modules; when the first workstation is located on one side of the second workstation, one side is a gas heating module and the other side is an electric heating module.

[0047] Reference Figures 3-7 As shown, the burner assembly 7 consists of a burner component 7-1, a rotating shaft component 7-2, and a pot support 7-3.

[0048] The burner assembly 7-1 includes a burner head base 7-1-1, an operation panel 7-1-2, a burner head 7-1-3, an ignition needle 7-1-4, a flow divider 7-1-5, a flame cap 7-1-6, a burner head cover 7-1-7, a magnet 7-1-8, a heat insulation plate 7-1-9, a temperature sensing module 7-1-10, and a touch control module 7-1-11. The burner head base 7-1-1 is divided into left and right sections, with the operation panel 7-1-2 and the burner head 7-1-3 respectively located in the two sections. The burner head cover 7-1-7 is mounted on the burner head base 7-1-1, and the burner head 7-1-3 is mounted on the burner head. Within the mounting cavity formed by the base 7-1-1 and the burner head cover 7-1-7, the flow divider 7-1-5 and the burner cap 7-1-6 are mounted on the gas mixing chamber of the burner head base 7-1-3, the ignition needle 7-1-4 is mounted on the burner head 7-1-3, the magnet 7-1-8 is mounted on the burner head cover 7-1-7, the heat insulation plate 7-1-9 is mounted between the burner head 7-1-3 and the operating plate 7-1-2, and the temperature sensing module 7-1-10 and the touch control module 7-1-11 are mounted in the area enclosed by the operating plate 7-1-2 and the burner head base 7-1-1.

[0049] Because the burner assembly 7-1 integrates the control panel 7-1-2 and the burner head 7-1-3, it achieves an integrated design of the combustion and control parts, resulting in a simple structure and easy installation. Furthermore, since the control panel 7-1-2 and the burner head 7-1-3 are respectively located on two areas of the burner head base 7-1-1, when the burner assembly 7-1 is folded 180 degrees, the control panel 7-1-2 can be stacked on the second workstation, resulting in a neater and more aesthetically pleasing appearance after folding, and facilitating user cleaning. In addition, by incorporating the heat insulation plate 7-1-9 and the temperature sensing module 7-1-10, the heat transfer from the combustion part to the control part can be effectively reduced, thereby ensuring the lifespan of the electronic components in the control part. Moreover, when the temperature of the control part is too high, the temperature sensing module can detect and issue an early warning, facilitating manual intervention by the user.

[0050] The magnet 7-1-8 allows for better adsorption and fixation of the pot support 7-3 onto the burner assembly 7-1. Preferably, the burner head cover 7-1-7 has a magnet slot for accommodating the magnet 7-1-8 and a storage hole corresponding to the support piece of the pot support 7-3, while the burner head base 7-1-1 has a storage groove corresponding to the storage hole. The magnet slot facilitates the assembly of the magnet 7-1-8, and the storage groove allows the pot support 7-3 to be inverted and its support piece embedded in the storage groove when the burner assembly 7-1 is folded 180 degrees, resulting in a smoother surface for the burner assembly 7-1. Figure 10As shown; the product occupies less space after being flipped and folded, achieving an ultra-thin design for the whole machine; and ensures that the pot support will not fall off when the burner assembly 7-1 is folded.

[0051] Preferably, a secondary air inlet is provided on the side wall of the mounting cavity formed by the burner head base 7-1-1 and the burner head cover 7-1-7, and ventilation and heat dissipation holes are provided in the mounting area of ​​the operation plate 7-1-2. The mounting area of ​​the operation plate 7-1-2 is connected to the mounting area of ​​the burner head 7-1-3. During combustion, air is supplied to the secondary air required for combustion through the secondary air inlet, making combustion more complete. At the same time, the ventilation and heat dissipation holes can ensure the circulation of secondary air during combustion and also allow the heat accumulated under the operation plate 7-1-2 to dissipate quickly, avoiding high temperature affecting the service life of the operation plate and related electronic components.

[0052] An ignition needle mounting hole is provided on the burner head 7-1-3, and the ignition needle mounting hole is recessed into the inner side wall of the burner head 7-1-3. In this way, the ignition needle 7-1-4 is basically hidden on the burner head 7-1-3, which not only hides the ignition needle, but also facilitates the miniaturization design of the product and makes it easier to clean.

[0053] In this embodiment, preferably, the burner head base 7-1-1 and the burner head cover 7-1-7 are connected through the burner head cover fixing hole. The ejector tube on the burner head 7-1-3 is snapped into the burner head fixing groove on the side wall of the mounting cavity. The heat insulation plate 7-1-9 passes through its rectangular through hole to the pot support plate storage groove on the burner head base 7-1-1. The ignition needle 7-1-4 passes through the ignition needle mounting hole on the burner head 7-1-3, and the wire on the ignition needle 7-1-4 passes through the wire hole on the burner head cover 7-1-7. The diverter plate 7-1-5 is connected to the burner head 7-1-3 through a fixing post. The burner cap 7-1-6 has an annular boss around its outer side wall, which snaps into the inner hole of the burner head cover 7-1-7. Its outer side wall is radially fitted with the outer side wall of the burner head. The sidewall mates with the inner sidewall end face of the burner head 7-1-3; the magnet 7-1-8 is embedded in the magnet slot on the burner head cover 7-1-7. When the pot support 7-3 is placed face up, its base bottom is attracted to the magnet 7-1-8. When the pot support 7-3 is placed face down, its pot support piece 7-3-1 passes through the pot support piece storage hole on the burner head cover 7-1-7 and the pot support piece storage slot on the burner head base 7-1-1, and the periphery of the base of the pot support 7-3 is engaged in the groove on the front of the burner head cover 7-1-7, and the upper part of the base of the pot support 7-3 is attracted to the magnet 7-1-8; the temperature sensing module 7-1-10 and the touch control module 7-1-11 are installed in the burner head base 7-1-1 and are attached to the operation panel 7-1-2. Obviously, the specific connection method of the above components is not limited to the above examples. Those skilled in the art can use other existing or future known connection methods according to different actual needs, and are not limited to this embodiment.

[0054] Combination Figure 8 , Figure 9 As shown, the burner assembly 7-1 is connected to the shaft assembly 7-2 through a shaft assembly fixing hole. The shaft assembly 7-2 includes an end cap 7-2-1, a retaining ring 7-2-2, a damping decorative cover 7-2-3, a damper 7-2-4, and a shaft decorative cover 7-2-5. The end cap 7-2-1 and the damping decorative cover 7-2-3 are connected by the deformation of the retaining ring 7-2-2. The damping decorative cover 7-2-3 is inserted into the outside of the right damper 7-2-4 for tight fitting. The shaft decorative cover 7-2-5 is snapped onto the end of the damper 7-2-4. Through holes are provided on the side and end of the end cap 7-2-1.

[0055] The ignition wire on the burner assembly 7 enters the product through the wire hole on the burner head cover 7-1-7, the wire hole on the end cover of the rotating shaft assembly 7-2, and the wire hole 1-1 on the panel assembly 1. This solves the problem of exposed wires and avoids the risk of wire breakage during the folding process.

[0056] In this embodiment, the end cap 7-2-1, retaining ring 7-2-2, damping decorative cover 7-2-3, and damper 7-2-4 are in two sets, respectively installed on the left and right sides of the rotating shaft decorative cover 7-2-5, and installed in the same way. The advantage of providing two sets of damping structures here is that more damping can be provided, facilitating the flipping and hovering of the burner assembly. In some embodiments, the end cap on the side away from the panel assembly wiring hole 1-1 may not have a wiring hole. The advantage of providing a wiring hole on the end cap is that it facilitates product processing and wiring operations.

[0057] In this embodiment, the nozzle seat assembly 4 is provided with two nozzles and an air inlet connector connected to the connecting pipe assembly 6; the gas path assembly 2 includes a valve body for controlling the gas flow and an air inlet pipe; the connecting pipe assembly 6 is used to connect the nozzle seat assembly 4 and the gas path assembly 6; the panel assembly 1 is connected to the bottom shell 3 through the side mounting hole 1-2; the bottom shell 3 is provided with a heat dissipation ventilation hole 3-1, a side mounting hole 3-2 and a damping mounting seat 3-3, and the rotating shaft assembly 7-2 on the burner assembly 7 is connected to the bottom shell 3 through the damping mounting seat 3-3. Obviously, the specific connection method of the above components is not limited to the above examples. Those skilled in the art can use other existing or future known connection methods according to different actual needs, and are not limited to this embodiment.

[0058] The present invention provides a foldable top-intake gas stove, which can realize defrosting, heat preservation and heating functions by setting an electric heating function (the heating method is not limited to electromagnetic heating) below the panel assembly 1. A temperature sensing module 7-1-10 is set on the control panel 7-1-2 to sense the temperature of the control panel 7-1-2. When the temperature is too high, it will remind the user by displaying high temperature. In addition, a touch module 7-1-11 is set in the front area of ​​the control panel 7-1-2, and the user can realize the functions of turning on and off and adjusting the firepower by touch.

[0059] It should be noted that the burner assembly exemplified above can be used not only in the folding top-intake gas stove with this structure, but also in other known or future-possible gas stoves, and is not limited to this embodiment.

[0060] It should also be noted that in the description of this invention, directional terms such as "center," "lateral," "longitudinal," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise" indicate the orientation and positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. They should not be construed as limiting the specific protection scope of this invention.

[0061] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features. Thus, the use of "first" and "second" to define a feature may explicitly or implicitly include one or more of that feature, and in the description of this invention, "at least" means one or more, unless otherwise explicitly specified.

[0062] In this invention, unless otherwise explicitly specified and limited, the terms "assembly," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can also refer to a mechanical connection; they can refer to a direct connection or a connection through an intermediate medium; or they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0063] In this invention, unless otherwise specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "below," and "over" the second feature includes the first feature being directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Above," "below," and "below" the second feature includes the first feature being directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0064] Based on the above description of the structure and principles, those skilled in the art should understand that this invention is not limited to the specific embodiments described above. Improvements and substitutions made using techniques known in the art based on this invention all fall within the scope of protection of this invention, which should be defined by the claims and their equivalents. Parts not described in the specific embodiments are all prior art or common knowledge.

Claims

1. A burner assembly for a folding, top-intake gas stove, comprising a burner assembly, a rotating shaft assembly, and a pot support, characterized in that, The burner assembly includes a burner head base, an operating panel mounted on the burner head base, and a burner head. The burner head base is divided into left and right sections, with the operating panel and burner head respectively positioned in the two sections. When the burner assembly is folded 180 degrees, the burner head is stacked in the first position, and the operating panel is stacked in the second position. A heat insulation plate is provided between the burner head and the operating panel. A secondary air inlet is provided on the side of the burner head base, and ventilation and heat dissipation holes are provided in the mounting area of ​​the operating panel. The mounting area of ​​the operating panel and the mounting area of ​​the burner head are connected. During combustion, air is supplied with the secondary air required for combustion through the secondary air inlet and the ventilation and heat dissipation holes. The burner assembly includes a burner head cover, which is mounted on the burner head base. The burner head is mounted in the mounting cavity formed by the burner head base and the burner head cover. A flow divider and a flame cap are mounted on the gas mixing chamber of the burner head base. The burner head cover is provided with a magnet and a storage hole corresponding to the support plate of the pot support. The burner head base is provided with a storage groove corresponding to the storage hole. The pot support is a ferromagnetic pot support that can be placed in both directions and is attracted to the magnet. When the pot support is placed in reverse, the support pieces of the pot support pass through the corresponding storage holes and are embedded into the corresponding storage slots.

2. The burner assembly of a folding top-intake gas stove according to claim 1, characterized in that, The first workstation is located on both sides of the second workstation and is set lower than the second workstation.

3. The burner assembly of a folding top-intake gas stove according to claim 1, characterized in that, A temperature sensing module and a touch control module are installed in the area enclosed by the control panel and the burner head base, and the temperature sensing module and the touch control module are attached to the control panel; The temperature sensing module is used to sense the temperature of the control panel. When the temperature is too high, the control panel will display a high temperature warning to the user. The touch module is used to realize the touch power on / off and power adjustment functions.

4. The burner assembly of a folding top-intake gas stove according to claim 1, characterized in that, An ignition needle mounting hole is provided on the burner head, and the ignition needle mounting hole is recessed on the inner side wall of the burner head.

5. The burner assembly of a folding top-intake gas stove according to claim 1, characterized in that, The furnace head cover is provided with a magnet slot to accommodate the magnet.

6. The burner assembly of a folding top-intake gas stove according to claim 1, characterized in that, The rotating shaft assembly includes an end cap, a retaining spring, a damping decorative cover, a damper, and a rotating shaft decorative cover. The end cap and the damping decorative cover are detachably connected by the deformation of the retaining spring. The damping decorative cover is inserted into the outside of the damper for a tight fit, and the rotating shaft decorative cover is snapped onto the end of the damper. Through holes are provided on the side and end of the end cap. The ignition wire that passes through the burner assembly goes through the wire hole on the end cover of the shaft assembly and then enters the cavity formed by the panel assembly and the bottom shell.

7. The burner assembly of a folding top-intake gas stove according to claim 6, characterized in that, The end cap, the retaining ring, the damping decorative cover, and the damper are in two sets, respectively located on the left and right sides of the rotating shaft decorative cover. A wire hole is provided on the end cap on the side near the wire hole of the panel assembly.

8. A folding, top-intake gas stove, characterized in that, A burner assembly having a folding top-intake gas stove as described in any one of claims 1-7.

Citation Information

Patent Citations

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    CN117606051A

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    CN112178640A

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