A gas stove

By introducing temperature control components and switchable support components into the gas stove, the gas stove has the function of rice cooker in the cooking mode and is used as a normal burner in the normal mode, which solves the problems of idle burner and increased thickness, improving the user experience and installation convenience.

CN116817324BActive Publication Date: 2025-09-02HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Application Number
CN202310785174.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2025-09-02
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

When the existing gas stove does not require steaming rice, the burner located in the accommodating space is idle and the overall thickness is thick, which affects the installation and usage experience.

Method used

A gas stove is designed, including a first burner, a temperature control assembly, a first and a second supporting assembly, and the gas supply is controlled by detecting the temperature of the rice cooker through the temperature control assembly, so as to switch between the cooking mode and the normal mode. The first burner can be used to steam rice and can be used as a normal burner.

Benefits of technology

It realizes that the gas stove has the function of a rice cooker in the cooking mode, but can still be used as an ordinary burner in the normal mode, avoiding the burner being idle and not increasing the thickness of the rack assembly, making it easy to install.

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Abstract

The present invention relates to the technical field of kitchen appliances, and discloses a gas stove. The gas stove includes a frame assembly; a first burner, mounted on the frame assembly and at least partially extending to the upper surface of the frame assembly; a temperature control assembly, mounted on the upper side of the first burner; a first support assembly, detachably mounted to the frame assembly; a rice cooker, supported on the first support assembly and with the bottom surface of the rice cooker pressing against the temperature control assembly; a second support assembly, detachably mounted to the frame assembly and capable of being arranged around the first burner, the second support assembly being configured to support the pot and to form a gap between the bottom surface of the pot and the temperature control assembly; a gas supply unit capable of supplying gas to the first burner, and the gas supply unit capable of stopping gas supply to the first burner based on the detection result of the temperature control assembly. The first burner of the above-mentioned gas stove can be used for steaming rice and can be used as an ordinary burner, and the space required under the panel is small, which will not affect the installation of the gas stove on the kitchen countertop.
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Description

Technical Field

[0001] The present invention relates to the technical field of kitchen appliances, in particular to a gas stove. Background Art

[0002] Gas stoves are a common kitchen appliance used in everyday life. They typically consist of a panel and a burner mounted on the panel. When in use, cookware is simply supported on the burner. Some existing gas stoves feature a storage space beneath the panel, housing the burner and rice cooker within this space, thus allowing the stove to function as an electric rice cooker. However, this design makes the stove thick overall, requiring a significant amount of space when installed on a kitchen countertop, limiting its practicality. Furthermore, when not steaming rice, the burner within the storage space remains idle.

[0003] Therefore, there is an urgent need for a gas stove to solve the above-mentioned technical problems. Summary of the Invention

[0004] The purpose of the present invention is to provide a gas stove, the first burner of which can be used for steaming rice and can be used as a common burner, and the space required under the panel is small, which will not affect the installation of the gas stove on the kitchen countertop.

[0005] To achieve this object, the present invention adopts the following technical solutions:

[0006] A gas stove, comprising:

[0007] Rack components;

[0008] a first burner mounted on the frame assembly and at least partially extending from an upper surface of the frame assembly;

[0009] a gas supply unit capable of supplying gas to the first burner;

[0010] a temperature control assembly, mounted on the upper side of the first burner;

[0011] A first support assembly and a second support assembly, either of which can be mounted to the frame assembly and surround the first burner;

[0012] A rice cooker, capable of being supported on the first support assembly, with its bottom surface pressing against the temperature control assembly to place the first burner in a cooking mode;

[0013] The second supporting assembly can support the pot and space the bottom surface of the pot from the temperature control assembly so that the first burner is in normal mode;

[0014] In the cooking mode, the gas supply unit can stop supplying gas to the first burner based on the detection result of the temperature control component.

[0015] As an optional solution, the first support assembly includes an outer support member and a heat preservation plate, the outer support member is arranged on the lower side of the heat preservation plate and is detachably mounted on the frame assembly, the heat preservation plate is constructed as a cylindrical structure and a through hole is provided on the bottom surface, the temperature control assembly can extend into the cylindrical structure from the through hole, the rice cooker is supported in the cylindrical structure, and an exhaust gap is formed between the rice cooker and the heat preservation plate.

[0016] As an optional solution, the outer support member includes a plurality of first support portions, which are arranged at intervals along the circumference of the first burner, and an air intake gap is formed between adjacent first support portions, and the air intake gap connects the external atmosphere and the first burner.

[0017] As an optional solution, the first supporting assembly further includes a heat-insulating shell, which is sleeved on the outer side of the heat-insulating plate. A through hole is provided on the heat-insulating shell, and the through hole connects the external atmosphere and the air intake gap.

[0018] As an optional solution, the first support assembly further includes an inner support member, which is arranged inside the heat preservation tray, and the rice cooker is supported on the inner support member to form the exhaust gap between the rice cooker and the heat preservation tray.

[0019] As an optional solution, the inner support member includes at least two second support portions, and the at least two second support portions are arranged at intervals along the circumference of the rice cooker.

[0020] As an optional solution, the first supporting assembly further includes a first mating piece, the first mating piece is connected to the outer supporting piece, and the frame assembly includes a second mating piece, and the first mating piece and the second mating piece can be magnetically attracted.

[0021] As an optional solution, the gas supply unit includes:

[0022] a first gas supply pipeline, used for supplying gas to the first burner;

[0023] a first operating member and a solenoid valve, wherein the first operating member is configured to be operated by a user, and both the first operating member and the solenoid valve are used to open and close the first gas supply pipeline;

[0024] a transmission assembly, wherein the first operating member is capable of driving the transmission assembly to move;

[0025] In the cooking mode, the first operating member can cause the transmission assembly to trigger the solenoid valve to open the first air supply pipeline and simultaneously trigger the temperature control assembly to open. The temperature control assembly can cause the solenoid valve to close the first air supply pipeline under preset conditions.

[0026] In the normal mode, the first operating member can enable the transmission assembly to trigger the solenoid valve to open the first air supply pipeline.

[0027] As an optional solution, the gas supply unit further includes a switch electrically connected to the solenoid valve, and the transmission assembly includes:

[0028] a lever, wherein a middle portion of the lever is pivotally connected to the frame assembly, a first end of the lever is disposed opposite to the first operating member, and a second end of the lever is disposed opposite to the temperature control assembly;

[0029] a first triggering member connected to the lever;

[0030] a second trigger member, one end of which is connected to the second end of the lever and the other end of which is connected to the temperature control assembly;

[0031] In the cooking mode, when the first operating member is pressed, the first operating member presses the first end of the lever to drive the first trigger member to press the switch and open the solenoid valve, and at the same time drives the second trigger member to push up the temperature control component and trigger the temperature control component. The temperature control component can press the second trigger member under a preset condition to drive the first trigger member to separate from the switch;

[0032] In the normal mode, when the first operating member is pressed, the first operating member presses the first end of the lever to drive the first trigger member to press the switch and open the solenoid valve.

[0033] As an optional solution, the temperature control component is a magnetic steel temperature controller.

[0034] As an optional solution, the gas stove further includes a second burner, a second gas supply pipeline and a second operating member, wherein the second burner is mounted on the frame assembly and at least partially extends to the upper surface of the frame assembly, and the second operating member is configured to be operated by a user to enable the second gas supply pipeline to supply gas to the second burner.

[0035] The beneficial effects of the present invention are:

[0036] In cooking mode, the gas stove's first support assembly is supported by the frame assembly. A rice cooker is placed on the first support assembly, pressing against the temperature control assembly. The gas supply unit supplies gas to the first burner, heating the rice cooker. When the temperature control assembly detects that the rice cooker's temperature has reached a preset temperature, it responds and, based on the temperature control assembly's action, the gas supply unit stops supplying gas to the first burner, completing the cooking process. In normal mode, the second support assembly is mounted on the frame assembly. When a normal cooker is placed on the second support assembly, the bottom of the cooker is spaced from the temperature control assembly. The temperature control assembly does not detect the cooker's temperature or respond, allowing the first burner to function identically to a normal burner. In the gas stove of the present invention, the first burner can be used in conjunction with the temperature control component, the first support component, and the rice cooker to achieve a cooking function (i.e., the function of an electric rice cooker), and can also be used in conjunction with the second support component as a common burner, thereby avoiding the first burner from being idle and improving the user experience. In addition, since the first support component and the rice cooker for achieving the cooking mode are both located above the frame component, the thickness of the frame component will not be significantly increased, thereby not affecting the installation of the gas stove on the kitchen countertop. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 This is a structural diagram of a first gas stove in a cooking mode provided by a specific embodiment of the present invention;

[0038] Figure 2 yes Figure 1 Schematic diagram of the cross-section structure of a gas stove;

[0039] Figure 3 1 is a schematic structural diagram of a gas stove in normal mode provided by a specific embodiment of the present invention;

[0040] Figure 4 1 is a structural diagram of a second gas stove in a cooking mode provided by a specific embodiment of the present invention;

[0041] Figure 5 yes Figure 4 Schematic diagram of the cross-section structure of a gas stove;

[0042] Figure 6 It is a working principle diagram of the temperature control component and the transmission component provided in a specific embodiment of the present invention.

[0043] In the picture:

[0044] 1. Frame assembly; 11. Panel; 12. Lower housing; 13. Second mating component;

[0045] 2. First burner;

[0046] 3. Temperature control component; 31. Temperature-sensitive magnetic steel; 32. Permanent magnet; 33. Elastic part;

[0047] 4. First support assembly; 41. Outer support member; 42. Insulation tray; 421. Through hole; 43. Insulation shell; 431. Through hole; 44. Inner support member; 45. Exhaust gap; 46. First mating member;

[0048] 5. Rice cooker; 51. Pot body; 52. Pot lid;

[0049] 6. Gas supply unit; 61. First operating member; 62. Transmission assembly; 621. Lever; 622. First trigger member; 623. Second trigger member; 63. Switch;

[0050] 7. Second support assembly;

[0051] 81. Second burner; 82. Second operating member; 83. Third supporting assembly; DETAILED DESCRIPTION

[0052] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It will be understood that the specific embodiments described herein are intended only to illustrate the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions relevant to the present invention, not all structures.

[0053] In the description of the present invention, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific circumstances.

[0054] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0055] In the description of this embodiment, the terms "upper," "lower," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meanings.

[0056] This embodiment provides a gas stove, such as Figure 1-Figure 3 As shown, the gas stove includes a frame assembly 1, a first burner 2, a second burner 81, and a gas supply unit 6. The frame assembly 1 includes a lower housing 12 and a panel 11. The lower housing 12 encloses a storage space with an upper opening, and the panel 11 covers the opening of the lower housing 12. The panel 11 is provided with a first mounting hole. The first burner 2 is partially located within the storage space and partially extends above the panel 11 from the first mounting hole, thereby facilitating the placement of kitchenware to be heated above the first burner 2. The panel 11 is also provided with a second mounting hole. The second burner 81 is partially located within the storage space and partially extends above the panel 11 from the second mounting hole, thereby facilitating the placement of kitchenware to be heated above the second burner 81. The gas supply unit 6 is at least partially installed within the storage space and can supply gas to the first burner 2 and the second burner 81, respectively, thereby generating flames in the first burner 2 and the second burner 81, thereby heating the kitchenware placed above the first burner 2 and the second burner 81.

[0057] Specifically, the gas supply unit 6 includes a first gas supply pipeline (not shown) and a first operating member 61, and the first operating member 61 is used for the user to operate so that the first gas supply pipeline can be opened and supply gas to the first burner 2. The gas supply unit 6 also includes a second gas supply pipeline (not shown) and a second operating member 82, and the second operating member 82 is used for the user to operate so that the second gas supply pipeline supplies gas to the second burner 81. In this embodiment, the gas stove includes one first burner 2 and two second burners 81. It should be noted that the number of second gas supply pipelines and second operating members 82 provided in the gas stove is the same as the number of second burners 81 and is arranged in a one-to-one correspondence. In other embodiments, the number of first burners 2 can be increased or the number of second burners 81 can be adjusted according to actual needs, and no specific limitation is made here. Optionally, the first operating member 61 and the second operating member 82 may be both pushable and rotatable knobs. Rotating the first operating member 61 or the second operating member 82 adjusts the opening of the corresponding gas supply line, thereby adjusting the power of the first burner 2 and the second burner 81. The aforementioned knobs are prior art, and their detailed structures are not described in detail here.

[0058] Preferably, if Figure 1-Figure 3As shown, the gas stove also includes a temperature control assembly 3, a first support assembly 4, a rice cooker 5, and a second support assembly 7. The temperature control assembly 3 is mounted above the first burner 2. Either the first support assembly 4 or the second support assembly 7 can be mounted on the frame assembly 1. When the first support assembly 4 is mounted on the frame assembly 1, it surrounds the first burner 2, supporting the rice cooker 5 with its bottom pressing against the temperature control assembly 3. This is the cooking mode for the first burner 2. In this cooking mode, the temperature control assembly 3 can respond based on the temperature at the bottom of the rice cooker 5, and the gas supply unit 6 can stop supplying gas to the first burner 2 based on the action of the temperature control assembly 3. When the second support assembly 7 is mounted on the frame assembly 1, it surrounds the first burner 2, supporting a standard cookware and separating the bottom of the cookware from the temperature control assembly 3. This is the normal mode for the first burner 2.

[0059] When using the gas stove of this embodiment, in cooking mode, the first support assembly 4 is supported on the frame assembly 1. The rice cooker 5 is placed on the first support assembly 4 and presses against the temperature control assembly 3. The gas supply unit 6 supplies gas to the first burner 2, thereby heating the rice cooker 5. When the temperature control assembly 3 detects that the temperature of the rice cooker 5 has reached a preset temperature, it takes action. Based on the action of the temperature control assembly 3, the gas supply unit 6 stops supplying gas to the first burner 2, and the cooking operation is completed. In normal mode, the second support assembly 7 is mounted on the frame assembly 1. When a normal pot is placed on the second support assembly 7, the bottom surface of the pot is separated from the temperature control assembly 3. The temperature control assembly 3 does not detect the temperature of the pot and does not take any action, so that the first burner 2 functions the same as a normal burner. In the gas stove of this embodiment, the first burner 2 can cooperate with the temperature control component 3, the first support component 4, and the rice cooker 5 to realize the cooking function (i.e., the function of an electric rice cooker), and can also be used in conjunction with the second support component 7 as a common burner, thereby avoiding the first burner 2 from being idle and improving the user experience; in addition, since the first support component 4 and the rice cooker 5 for realizing the cooking mode are both located above the frame component 1, the thickness of the frame component 1 will not be significantly increased, and the installation of the gas stove on the kitchen countertop will not be affected.

[0060] like Figure 1 As shown, the gas stove further includes a third support assembly 83 , which can be mounted on the frame assembly 1 and arranged around the second burner 81 , thereby facilitating the support of the cookware above the second burner 81 .

[0061] like Figure 2As shown, the first support assembly 4 includes an outer support member 41 and a heat preservation tray 42. The heat preservation tray 42 is constructed as a cylindrical structure. The bottom surface of the heat preservation tray 42 is provided with a through hole 421. The outer support member 41 is disposed on the lower side of the heat preservation tray 42. The outer support member 41 can be mounted on the panel 11 of the frame assembly 1. At this time, the temperature control assembly 3 and part of the first burner 2 can extend into the cylindrical structure through the through hole 421. After the rice cooker 5 is supported in the cylindrical structure, it presses against the temperature control assembly 3, and an exhaust gap 45 is formed between the rice cooker 5 and the heat preservation tray 42. In this embodiment, the first support assembly 4 ensures that the bottom surface of the rice cooker 5 presses against the temperature control assembly 3. In addition, the heat preservation tray 42 surrounds the rice cooker 5 and forms an exhaust gap 45. The hot gas generated by the combustion of the first burner 2 is discharged through the exhaust gap 45. The hot gas flowing in the exhaust gap 45 fully exchanges heat with various parts of the rice cooker 5, thereby improving the uniformity of heating the rice cooker 5.

[0062] Preferably, the outer support member 41 includes a plurality of first support portions, each of which is connected to the insulation plate 42, and the first support portions are used to support the frame assembly 1. The plurality of first support portions are arranged at intervals along the circumference of the first burner 2, and an air intake gap is formed between adjacent first support portions, and the air intake gap connects the external atmosphere and the first burner 2. That is, the external atmosphere can reach the first burner 2 through the air intake gap between the first support portions, thereby replenishing secondary air for the first burner 2, thereby ensuring the sufficiency of combustion. Optionally, in some embodiments, the plurality of first support portions are fixedly connected to the insulation plate 42, that is, the outer support member 41 and the insulation plate 42 are an integrated structure. In some embodiments, the plurality of first support portions are interconnected to form the outer support member 41, and the outer support member 41 and the insulation plate 42 are independently arranged structures, and the insulation plate 42 can be placed on the outer support member 41.

[0063] Preferably, if Figure 2As shown, the first support assembly 4 also includes an inner support member 44 disposed within the heat-insulating tray 42. The rice cooker 5 is supported on the inner support member 44, thereby forming an air gap 45 between the rice cooker 5 and the heat-insulating tray 42. The provision of the inner support member 44 appropriately elevates the bottom surface of the rice cooker 5, ensuring smooth air flow between the bottom surface of the rice cooker 5 and the bottom surface of the heat-insulating tray 42, and ensuring that the rice cooker 5 is stably supported. In this embodiment, the inner support member 44 includes at least two second support portions, which are spaced apart along the circumference of the rice cooker 5. The space between two adjacent second support portions constitutes a portion of the air gap 45. Preferably, the shape of the support surface of the second support portion matches the shape of the bottom surface of the rice cooker 5, thereby ensuring the stability of the support of the rice cooker 5. Optionally, in this embodiment, the second support portion can be fixedly connected to the heat-insulating tray 42 by welding or other methods. At this time, the outer support member 41 , the heat preservation plate 42 , and the inner support member 44 are constructed as an integrated structure, thereby facilitating the taking and placing of the first support assembly 4 .

[0064] Preferably, if Figure 2 As shown, the first support assembly 4 also includes a first fitting 46, which is connected to the outer support member 41, and the frame assembly 1 includes a second fitting 13, which is fixedly connected to the panel 11. The first fitting 46 and the second fitting 13 can be magnetically attracted to ensure that the first support assembly 4 is stable when supported on the panel 11. Optionally, one of the first fitting 46 and the second fitting 13 can be set as a permanent magnet and the other as a magnetic member. It is also possible to choose to set both the first fitting 46 and the second fitting 13 as permanent magnets, which is not limited here. In this embodiment, each first support portion is connected to a first fitting 46, and the number and position of the second fitting 13 are set corresponding to the first fitting 46.

[0065] In this embodiment, Figure 1 and Figure 2 As shown, the rice cooker 5 includes a pot body 51 and a pot cover 52. The pot body 51 is used to hold food, and the pot body 51 can be placed in the heat preservation tray 42. The pot cover 52 is provided on the pot body 51. In some embodiments, the pot cover 52 can be connected to the heat preservation tray 42 by a hinge structure.

[0066] In some embodiments, such as Figure 4 and Figure 5As shown, the first support assembly 4 also includes a heat-insulating shell 43, which is sleeved on the outside of the heat-insulating plate 42. By providing the heat-insulating shell 43, not only can the heat loss in the exhaust gap 45 be reduced, but it can also prevent users from being burned by accidental touch. Preferably, a plurality of through holes 431 are provided on the heat-insulating shell 43, and the through holes 431 connect the external atmosphere and the air intake gap, that is, the external atmosphere passes through the through holes 431 and the air intake gap in turn to reach the first burner 2, thereby ensuring the supply of secondary air to the first burner 2. Optionally, the heat-insulating shell 43 is fixedly connected to the heat-insulating plate 42, and the specific connection method between the two is not limited.

[0067] Preferably, if Figure 2 As shown, the gas supply unit 6 also includes a solenoid valve (not shown) and a transmission assembly 62. The solenoid valve is used to open and close the first gas supply pipeline. In this embodiment, the first gas supply pipeline is opened and gas is supplied to the first burner 2 only when the solenoid valve and the first operating member 61 are simultaneously opened. It should be noted that turning the first operating member 61 activates the first operating member 61. If either the solenoid valve or the first operating member 61 is closed, the first gas supply pipeline is closed.

[0068] In cooking mode, that is, when the rice cooker 5 is pressed against the temperature control assembly 3, the first operating member 61 can drive the transmission assembly 62 to move, causing the transmission assembly 62 to trigger the solenoid valve to open the first gas supply line and simultaneously trigger the temperature control assembly 3 to open. At this point, the first gas supply line begins to supply gas to the first burner 2, and the cooking function begins. The temperature control assembly 3 can detect the temperature of the rice cooker 5 and, under a preset condition, can cause the solenoid valve to close the first gas supply line, thereby stopping the first gas supply line from supplying gas to the first burner 2, completing the cooking process. In this embodiment, the preset condition is that the temperature of the rice cooker 5 reaches a preset temperature, where the preset temperature can be set within a range of 100°C to 110°C. The specific value of the preset temperature can be set as needed.

[0069] In normal mode, i.e., when the cookware is not pressing against the temperature control assembly 3, the first operating member 61 can drive the transmission assembly 62 to move. At this time, the transmission assembly 62 only triggers the solenoid valve to open the first gas supply line, and the temperature control assembly 3 is not turned on. When the user reverses the rotation of the first operating member 61, the first gas supply line can be closed, thereby stopping the first burner 2 from burning.

[0070] Specifically, in this embodiment, the gas supply unit 6 also includes a switch 63, which is electrically connected to the solenoid valve. When the switch 63 is pressed, the solenoid valve opens, and when the switch 63 is released, the solenoid valve closes. The transmission assembly 62 includes a lever 621, a first trigger member 622, and a second trigger member 623. The middle portion of the lever 621 is pivotally connected to the frame assembly 1. The first end of the lever 621 is disposed opposite the first operating member 61. The first operating member 61 has a rotating shaft, and the first end of the lever 621 is sleeved on the rotating shaft. Therefore, when the user presses and turns the first operating member 61, the first operating member 61 depresses the first end of the lever 621. However, when the first operating member 61 is released, the first end of the lever 621 does not move with the first operating member 61. The second end of the lever 621 is disposed opposite the temperature control assembly 3. The first trigger member 622 is connected to the lever 621. In this embodiment, the first trigger member 622 is connected between the pivot axis and the second end of the lever 621. One end of the second trigger member 623 is connected to the second end of the lever 621 , and the other end is connected to the temperature control component 3 .

[0071] In cooking mode, that is, when the rice cooker 5 is pressed against the temperature control assembly 3, when the first operating member 61 is pressed and turned, the first operating member 61 presses the first end of the lever 621, and the lever 621 rotates about its pivot axis, thereby driving the first triggering member 622 to press against the switch 63, causing the switch 63 to open the solenoid valve. At the same time, the second end of the lever 621 drives the second triggering member 623 to push against the temperature control assembly 3, thereby triggering the temperature control assembly 3 to open. After releasing the first operating member 61, the first triggering member 622 remains pressed against the switch 63. At this time, the first gas supply pipeline supplies gas to the first burner 2, and the temperature control assembly 3 begins to detect the temperature at the bottom of the rice cooker 5. When the temperature control component 3 detects that the temperature at the bottom of the rice cooker 5 exceeds the preset value, it indicates that the rice is cooked. At this time, the temperature control component 3 is activated and presses down the second trigger component 623. The second trigger component 623 drives the first trigger component 622 to move downward through the lever 621, thereby separating the first trigger component 622 from the switch 63, and then the first gas supply pipeline stops supplying gas to the first burner 2.

[0072] In normal mode, i.e., when the cookware on the second support assembly 7 is spaced apart from the temperature control assembly 3, when the first operating member 61 is pressed and turned, the first operating member 61 presses the first end of the lever 621, thereby driving the first trigger member 622 to press against the switch 63 and open the solenoid valve. Since there is no cookware pressing against the temperature control assembly 3, the temperature control assembly 3 will not be triggered to open even if the second trigger member 623 presses against the temperature control assembly 3. When the first operating member 61 is released, the first trigger member 622 remains pressed against the switch 63, and the first gas supply pipeline continues to supply gas to the first burner 2. When the user operates the first operating member 61 again, the first gas supply pipeline can be closed, thereby stopping the supply of gas to the first burner 2.

[0073] In this embodiment, the temperature control component 3 is a magnetic steel temperature controller, which can realize: when the rice cooker 5 presses the temperature control component 3 and the second trigger 623 presses the temperature control component 3, the temperature control component 3 is triggered to open. When only the second trigger 623 presses the temperature control component 3, the temperature control component 3 is not triggered to open. The magnetic steel temperature controller is a prior art. In order to more clearly describe this solution, the following is combined with Figure 5 The working principle of the magnetic thermostat is explained below: The magnetic thermostat includes a temperature-sensitive magnet 31 and a permanent magnet 32, which are arranged in a vertical position relative to each other. The temperature-sensitive magnet 31 and the permanent magnet 32 ​​are connected by an elastic member 33, and the permanent magnet 32 ​​is connected to the second trigger member 623. The temperature-sensitive magnet 31 is used to detect the temperature of the object it contacts. Below a preset temperature, the temperature-sensitive magnet 31 has ferromagnetic properties and can be attracted to the permanent magnet 32. When the temperature exceeds the preset temperature, the ferromagnetism of the temperature-sensitive magnet 31 disappears.

[0074] In cooking mode, that is, when the rice cooker 5 is placed on the temperature control assembly 3, the temperature-sensitive magnet 31 is brought close to the permanent magnet 32. When the second trigger 623 drives the permanent magnet 32 ​​upward, the permanent magnet 32 ​​further approaches the temperature-sensitive magnet 31, causing the permanent magnet 32 ​​and the temperature-sensitive magnet 31 to attract each other, which is equivalent to the temperature control assembly 3 being triggered to turn on. When the temperature of the temperature-sensitive magnet 31 reaches the preset temperature, the temperature-sensitive magnet 31 is demagnetized and no longer attracts the permanent magnet 32. The permanent magnet 32 ​​moves downward under the action of the elastic member 33, and drives the second end of the lever 621 to move downward, thereby separating the first trigger 622 from the switch 63, closing the solenoid valve, and stopping the first gas supply pipeline from supplying gas to the first burner 2.

[0075] In normal mode, since the temperature control component 3 is not pressed by the cookware, when the second trigger part 623 drives the permanent magnet 32 ​​to push up, the distance between the permanent magnet 32 ​​and the temperature-sensitive magnetic steel 31 will not be close, and therefore they will not be attracted to each other, which is equivalent to the temperature control component 3 not being triggered. Subsequently, the second trigger part 623 will not be pressed down by the permanent magnet 32, that is, the temperature control component 3 will not actively close the switch 63, so the solenoid valve remains open. Only when the user operates the first operating part 61 can the first gas supply pipeline be closed through the first operating part 61.

[0076] Obviously, the above embodiments of the present invention are merely examples for the purpose of illustrating the present invention, and are not intended to limit the embodiments of the present invention. Those skilled in the art will readily vary the specific embodiments and scope of application based on the principles of the present invention, and this specification should not be construed as limiting the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention are intended to be included within the scope of protection of the claims.

Claims

1. A gas stove, characterized in that: include: Frame assembly (1); a first burner (2) mounted on the frame assembly (1) and at least partially extending from an upper surface of the frame assembly (1); a gas supply unit (6) capable of supplying gas to the first burner (2); A temperature control assembly (3) is installed on the upper side of the first burner (2); A first support assembly (4) and a second support assembly (7), either of which can be mounted on the frame assembly (1) and surround the first burner (2); A rice cooker (5) can be supported on the first support assembly (4), with its bottom surface pressing against the temperature control assembly (3) to place the first burner (2) in a cooking mode; The second supporting assembly (7) is capable of supporting the pot and forming a gap between the bottom surface of the pot and the temperature control assembly (3), so that the first burner (2) is in a normal mode; In the cooking mode, the gas supply unit (6) can stop supplying gas to the first burner (2) based on the detection result of the temperature control component (3).

2. The gas stove according to claim 1, characterized in that: The first support assembly (4) comprises an outer support member (41) and a heat preservation plate (42); the outer support member (41) is arranged on the lower side of the heat preservation plate (42) and is detachably mounted on the frame assembly (1); the heat preservation plate (42) is constructed as a cylindrical structure and a through hole (421) is provided on the bottom surface; the temperature control assembly (3) can extend into the cylindrical structure from the through hole (421); the rice cooker (5) is supported in the cylindrical structure and forms an exhaust gap (45) between the rice cooker and the heat preservation plate (42).

3. The gas stove according to claim 2, characterized in that: The outer support member (41) includes a plurality of first support portions, which are arranged at intervals along the circumference of the first burner (2), and an air intake gap is formed between adjacent first support portions, wherein the air intake gap communicates with the external atmosphere and the first burner (2).

4. The gas stove according to claim 3, characterized in that: The first support assembly (4) further comprises a heat-insulating shell (43), the heat-insulating shell (43) being sleeved on the outer side of the heat-insulating plate (42), the heat-insulating shell (43) being provided with a through hole (431), the through hole (431) being connected to the external atmosphere and the air intake gap.

5. The gas stove according to claim 2, characterized in that: The first support assembly (4) further comprises an inner support member (44), wherein the inner support member (44) is arranged inside the heat preservation tray (42), and the rice cooker (5) is supported on the inner support member (44), so that the exhaust gap (45) is formed between the rice cooker (5) and the heat preservation tray (42).

6. The gas stove according to claim 5, characterized in that: The inner support member (44) comprises at least two second support portions, and the at least two second support portions are arranged at intervals along the circumference of the rice cooker (5).

7. The gas stove according to claim 2, characterized in that: The first supporting component (4) further comprises a first fitting member (46), the first fitting member (46) being connected to the outer supporting member (41), and the frame component (1) comprises a second fitting member (13), the first fitting member (46) and the second fitting member (13) being capable of magnetic attraction.

8. The gas stove according to any one of claims 1 to 7, characterized in that: The gas supply unit (6) comprises: a first gas supply pipeline for supplying gas to the first burner (2); a first operating member (61) and a solenoid valve, wherein the first operating member (61) is configured to be operated by a user, and both the first operating member (61) and the solenoid valve are used to open and close the first gas supply pipeline; a transmission assembly (62), wherein the first operating member (61) is capable of driving the transmission assembly (62) to move; In the cooking mode, the first operating member (61) can cause the transmission component (62) to trigger the electromagnetic valve to open the first air supply pipeline, and simultaneously trigger the temperature control component (3) to open. The temperature control component (3) can cause the electromagnetic valve to close the first air supply pipeline under preset conditions. In the normal mode, the first operating member (61) enables the transmission assembly (62) to trigger the solenoid valve to open the first air supply pipeline.

9. The gas stove according to claim 8, characterized in that: The gas supply unit (6) further includes a switch (63) electrically connected to the solenoid valve, and the transmission assembly (62) includes: A lever (621), wherein a middle portion of the lever (621) is pivotally connected to the frame assembly (1), a first end of the lever (621) is disposed opposite to the first operating member (61), and a second end of the lever (621) is disposed opposite to the temperature control assembly (3); a first triggering member (622), connected to the lever (621); A second trigger member (623), one end of which is connected to the second end of the lever (621), and the other end of which is connected to the temperature control component (3); In the cooking mode, when the first operating member (61) is pressed, the first operating member (61) presses the first end of the lever (621) to drive the first trigger member (622) to press the switch (63) and open the solenoid valve, and at the same time drive the second trigger member (623) to push up the temperature control component (3) and trigger the temperature control component (3); the temperature control component (3) can press the second trigger member (623) under a preset condition to drive the first trigger member (622) to separate from the switch (63); In the normal mode, when the first operating member (61) is pressed, the first operating member (61) presses the first end of the lever (621) to drive the first trigger member (622) to press the switch (63) and open the solenoid valve.

10. The gas stove according to claim 8, characterized in that: The temperature control component (3) is a magnetic steel temperature controller.

11. The gas stove according to any one of claims 1 to 7, characterized in that: The gas stove further comprises a second burner (81), a second gas supply pipeline and a second operating member (82); the second burner (81) is mounted on the frame assembly (1) and at least partially extends to the upper surface of the frame assembly (1); the second operating member (82) is configured to be operated by a user so that the second gas supply pipeline supplies gas to the second burner (81).

Citation Information

Patent Citations

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