Dual-energy touch control type oven and stove integrated system

By introducing a mode switching mechanism, mechanical linkage and adjustable heat insulation board into the dual-energy touch-screen oven stove integrated system, the problems of complex operation and safety hazards are solved, and the effects of simplifying operation, improving stability and energy utilization are achieved.

CN120702001APending Publication Date: 2025-09-26JIANGMEN MINSHENG KITCHEN EQUIP CO LTD
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Patent Information

Application Number
CN202510977107.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

The existing dual-energy touch-screen oven stove integrated system has shortcomings in terms of operational smoothness, safety and system complexity. Users need to perform multiple steps to switch between gas stoves and induction stoves. The high temperature on the top of the oven affects the use of the stove, and the reliance on electronic sensors increases the risk of failure.

Method used

By setting a mode switching mechanism and a mechanical linkage mechanism on the top plate of the stove, the synchronous switching of the gas stove and the induction cooker can be achieved; an adjustable top plate and insulation plate are set in the oven to dynamically adjust the oven space and insulation mode; support columns are set on both sides of the stove to physically disconnect the energy supply of different working modes.

Benefits of technology

It simplifies the operating process, improves system stability and safety, reduces the risk of electronic failure, and improves energy utilization and work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of household appliances, and more particularly discloses a dual-energy touch type oven and stove integrated system, a stove top plate is arranged at the top of a stove, an oven is arranged at the bottom of the stove, a partition plate is arranged in the oven, an oven door is arranged in front of the oven, and the oven door is arranged in front of the stove. An oven adjustable top plate is arranged at the top of the partition plate, an adjustable heat insulation plate is arranged at the top of the oven adjustable top plate, a dual-energy gas appliance is arranged in the middle of the stove, a fire burning bottom plate is arranged at the top of the dual-energy gas appliance, and a mode switching mechanism is arranged in the middle of the stove top plate. A rotary knob is arranged at the top of the mode switching mechanism, a middle shaft is arranged at the bottom of the rotary knob, a key groove gear is arranged on the outer side of the middle shaft, a return spring is arranged below the key groove gear, a fixed base is arranged on the outer side of the return spring, and a bottom cross rod is fixedly connected to the bottom end of the middle shaft.
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Description

Technical Field

[0001] The present invention relates to the technical field of household appliances, and more particularly to a dual-energy touch-control oven and stove integrated system. Background Art

[0002] Dual-energy touch-screen oven and stove integrated systems are becoming increasingly popular in modern kitchen cooking, significantly improving the convenience and efficiency of cooking. They play an important role in achieving an intelligent, efficient and clean cooking experience.

[0003] The main structure of a dual-energy touch-control oven-stove integrated system typically consists of a cooking unit, an energy supply system, an intelligent control system, and functional modules. These components work together to accomplish diverse cooking tasks, including rapid heating, precise baking and roasting, timing control, temperature maintenance, and safety monitoring. These systems offer convenient operation, integrated functions, diverse energy sources, and safety and reliability. However, these systems have the following drawbacks: 1. Users must perform multiple steps on the touchscreen to switch between the gas and induction cooktops, or switch between physical buttons, rather than using a single, intuitive mechanical action. This disrupts the flow of cooking. 2. The oven is located below the cooktop. When the oven is in use, its top, i.e., the bottom of the stovetop, becomes hot. This limits users from operating the cooktop directly above the oven for extended periods of time and at high power. This is especially true for induction cooktops, whose coils are more sensitive to the high temperatures at the bottom, resulting in limited functionality in this area or potential safety hazards. 3. Safety interlocks to prevent the gas and induction cooktops from being accidentally activated simultaneously, or to prevent the cooktop from overheating when the oven is operating, typically rely on electronic sensors and control boards, increasing system complexity and the risk of potential electronic failures. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a dual-energy touch-control oven stove integrated system to solve the problems existing in the above-mentioned background technology.

[0005] The present invention provides the following technical solution: a dual-energy touch-control oven stove integrated system, wherein a stove top plate is provided on the top of the stove, an oven is provided at the bottom of the stove, a partition is provided inside the oven, an oven door is provided in front of the oven, an adjustable oven top plate is provided on the top of the partition, an adjustable heat insulation plate is provided on the top of the adjustable oven top plate, a dual-energy burner is provided in the middle of the stove, a fire bottom plate is provided on the top of the dual-energy burner, a mode switching mechanism is provided in the middle of the stove top plate, a knob is provided on the top of the mode switching mechanism, a central axis is provided at the bottom of the knob, a keyway gear is provided on the outside of the central axis, a return spring is provided below the keyway gear, a fixed base is provided on the outside of the return spring, and the bottom end of the central axis is fixedly connected to the bottom cross bar.

[0006] Furthermore, two touch adjustment screens are provided on the top of the stove top plate, a main connecting rod bracket is fixedly connected to the middle position inside the stove, a main connecting rod is provided in the middle of the main connecting rod bracket, the end of the main connecting rod is fixedly connected to a first transverse connecting rod, and the side of the main connecting rod bracket away from the end of the first transverse connecting rod is fixedly connected to a second transverse connecting rod, a transverse main rack base is fixedly connected to the middle position inside the stove, a transverse main rack is provided on the top of the transverse main rack base, a transverse auxiliary rack is fixedly connected to the bottom surface of the interior of the stove, a transverse auxiliary rack is provided on the top of the transverse auxiliary rack base, a auxiliary rack connecting rod is provided at the front end of the transverse auxiliary rack, a gas valve connecting rod is fixedly connected to the end of the second transverse connecting rod, and a flip outer support seat is provided on the outer sides of the two dual-energy burning appliances.

[0007] Furthermore, a gas valve is provided on the inner side of the flip outer support seat, a flip inner support seat is provided on the side between the two dual-energy fuel appliances, a coil power supply block is provided on the inner side of the flip inner support seat, a power supply connector is provided inside the coil power supply block, a movable power supply base is provided on the side of the coil power supply block, the movable power supply base is fixedly connected to the inner bottom surface of the stove, a power supply connecting rod is provided on the top of the movable power supply base, a movable power supply module is provided at the end of the power supply connecting rod, and a main power supply connector is provided inside the movable power supply module.

[0008] Furthermore, the two flip inner support seats are arranged between the two dual-energy burning appliances, and the two flip outer support seats are arranged outside the two dual-energy burning appliances.

[0009] Furthermore, the bottom of the adjustable top plate of the oven is fixedly connected to the oven inner tank, the top of the adjustable top plate of the oven is fixedly connected to a top plate screw, four of the top plate screws are fixedly connected to the top of the adjustable top plate of the oven, a top plate motor is provided on the top of the adjustable top plate of the oven, the top of the adjustable heat insulation plate is fixedly connected to the heat insulation plate screw, four of the heat insulation plate screws are fixedly connected to the top of the adjustable heat insulation plate, a heat insulation plate motor base is provided on the top of the adjustable heat insulation plate, a heat insulation plate motor is provided on the side of the heat insulation plate motor base, two of the heat insulation plate motor bases are provided on both sides of the top of the adjustable heat insulation plate, a shell is provided at the back of the oven door, a baffle is provided at the top of the oven door, and heat dissipation holes are provided at the bottom of the oven door.

[0010] Furthermore, a fire head is provided on the top of the fire base plate, a fire fixing seat is provided on the bottom of the fire base plate, a movable bracket is provided on the top of the fire fixing seat, and an inclined block is provided on the bottom of the movable bracket. Four movable brackets are evenly distributed on the top of the fire fixing seat, and a gas pipe support column is fixedly connected to the side of the fire fixing seat. A gas hole is provided inside the gas pipe support column, and a positioning groove is provided at the bottom of the fire fixing seat. Two positioning grooves are symmetrically arranged at the bottom of the fire fixing seat, and a rotating disk is provided at the bottom of the fire fixing seat.

[0011] Furthermore, a guide groove is provided on the side of the rotating disk, and the two guide grooves are symmetrically distributed. A linkage block is provided inside the guide groove, and a linkage block spring is provided at the bottom of the linkage block. The bottom of the linkage block is movably connected to a linkage block connecting rod, and a linkage block rack is provided at the end of the linkage block connecting rod. A rack guide block is provided on the side of the linkage block rack, and the rack guide block is fixedly connected to the top surface of the inner part of the fire fixing seat. The middle part of the rotating disk is fixedly connected to the middle gear, and a heating coil base is provided at the bottom of the rotating disk, and a coil power supply block is fixedly connected to the side of the heating coil base, and a heating coil is provided at the bottom of the heating coil base, and an electric heating top plate is provided at the bottom of the heating coil.

[0012] Furthermore, a keyway is provided inside the keyway gear, a spindle key is provided on the side of the central shaft, a locking strip is provided at the bottom of the central shaft, and four locking strips are evenly distributed at the bottom of the central shaft. A spring top plate is provided at the top of the return spring, and a spring base is provided at the bottom of the return spring. A slot is provided inside the spring base, and four slots are evenly distributed inside the spring base.

[0013] Technical effects and advantages of the present invention:

[0014] 1. The present invention realizes the switching between gas stove and electromagnetic stove by arranging the mode switching mechanism in the middle of the stove top plate to realize the switching between gas stove and electromagnetic stove. The coil power supply block is arranged on the side of the dual-energy burner. When the dual-energy burner rotates, the power supply connector inside it can synchronously realize the connection and disconnection of energy. At the same time, the gas pipe support column arranged on the other side can also realize the disconnection and connection of the gas pipe while rotating, thereby realizing the synchronous switching of energy supply mode during the stove mode switching process, simplifying the operation process, and realizing the linkage effect of the knob on the keyway gear through the key strip on the side of the main shaft below the knob and the keyway inside the keyway gear. The movement of the knob is amplified by the keyway gear. The multiple sets of connecting rod mechanisms arranged inside the stove realize the flipping operation of the burner, thereby realizing the switching of the stove energy mode, which is conducive to simplifying the operation process. At the same time, the linkage of multiple mechanical structures avoids the influence of high temperature on the life of electronic components and improves the stability of the system.

[0015] 2. The present invention provides a dynamically adjustable oven top plate heating liner on the upper inner part of the oven, and the screw provided on the inner wall of the oven is driven by a motor, so that the oven liner can automatically and dynamically adjust the internal space of the oven according to usage requirements, thereby saving system power consumption and improving energy utilization. At the same time, an insulating top plate is provided on the upper part of the oven liner top plate, and a screw for freely lifting and lowering the insulating top plate is provided on the upper part of the top plate. The insulating top plate is driven by the action of the motor to adjust the distance from the top stove. When the top temperature is high, the insulating top plate is adjusted away from the top stove, and an insulating space of air and insulating plate is formed between the bottom of the stove and the top of the oven, thereby minimizing temperature interference between the two heat sources. Similarly, when the oven temperature is too high, an insulating space of air and insulating plate is formed between the oven top plate and the stove bottom plate, which is conducive to reducing heat interference between different heating operations and improving system working efficiency.

[0016] 3. The present invention provides different support columns on both sides of the dual-energy burner, and through the different positional relationships between the internal pipelines and the external energy supply modules, it is achieved that when switching between different working modes, the energy supply of the other working mode is physically disconnected, thereby preventing the gas stove and the induction cooker from being accidentally turned on at the same time. At the same time, a connecting rod mechanism that can move up and down with the knob is provided at the bottom of the knob. Combined with the self-locking device of the mode switching mechanism, when the knob is pressed, the energy supply modules of all stoves are automatically physically disconnected, and the locked state of the knob can be automatically released by rotating the knob, and the energy supply modules of each stove are synchronously connected. Subsequently, the required parameters can be finely adjusted through the touch screen. The system does not need to rely on electronic sensors and control panels, which reduces the system complexity and potential electronic failure risks, and is conducive to improving system safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0018] Figure 2 For the present invention Figure 1 Schematic diagram of the cross-sectional structure at point A.

[0019] Figure 3 For the present invention Figure 1 Schematic diagram of the cross-sectional structure at point B.

[0020] Figure 4 It is a schematic diagram of the internal structure of the stove of the present invention.

[0021] Figure 5 This is a schematic diagram of the explosion of the overall structure of the dual-energy burning appliance of the present invention.

[0022] Figure 6 It is an exploded schematic diagram of the overall structure of the mode switching mechanism of the present invention.

[0023] Figure 7 For the present invention Figure 2 C detailed structural diagram.

[0024] Figure 8 For the present invention Figure 3 D. Detailed structural diagram.

[0025] Figure 9 For the present invention Figure 4 E detailed structural diagram.

[0026] Figure 10 For the present invention Figure 5 F detailed structural diagram.

[0027] The accompanying drawings are marked as follows: 1. Cooker; 11. Cooker top plate; 111. Touch adjustment screen; 12. Main connecting rod bracket; 121. Main connecting rod; 122. First transverse connecting rod; 123. Second transverse connecting rod; 13. Transverse main rack base; 131. Transverse main rack; 14. Transverse auxiliary rack; 141. Auxiliary rack connecting rod; 142. Transverse auxiliary rack base; 15. Flip outer support seat; 151. Gas valve; 152. Gas valve connecting rod; 16. Flip Inner support base; 161, coil power supply block; 162, power supply connector; 17, movable power supply base; 171, power supply connecting rod; 172, movable power supply module; 173, main power supply connector; 2, oven; 21, shell; 211, oven door; 212, heat dissipation hole; 213, baffle; 22, partition; 23, oven adjustable top plate; 231, oven liner; 232, top plate screw, 233, top plate motor; 24, adjustable insulation board; 241, insulation Hot plate screw; 242, insulation board motor base; 243, insulation board motor; 3, dual energy burner; 31, burning base; 311, burning head; 32, burning fixed seat; 321, movable bracket; 3211, inclined plane block; 322, gas pipe support column; 3221, gas hole; 323, positioning groove; 33, rotating disk; 331, guide groove; 332, linkage block; 3321, linkage block spring; 333, linkage block connecting rod; 334, Linkage block rack; 335, rack guide block; 336, middle gear; 34, heating coil base; 35, heating coil; 36, electric heating top plate; 4, mode switching mechanism; 41, knob; 42, keyway gear; 421, keyway; 43, return spring; 431, spring top plate; 432, spring base; 4321, slot; 44, fixed base; 45, bottom cross bar; 46, middle axis; 461, locking clip; 462, spindle key. DETAILED DESCRIPTION

[0028] The technical solutions of the present invention will be described clearly and completely below in conjunction with the accompanying drawings of the present invention. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The dual-energy touch-screen oven cooker integrated system involved in the present invention is not limited to the various structures described in the following embodiments. All other embodiments obtained by ordinary technicians in this field without making creative efforts fall within the scope of protection of the present invention.

[0029] Reference Figure 1 、 Figure 2 and Figure 6 The present invention provides a dual-energy touch-control oven stove integrated system, wherein a stove top plate 11 is provided on the top of the stove 1, an oven 2 is provided at the bottom of the stove 1, a partition 22 is provided inside the oven 2, an oven door 211 is provided in front of the oven 2, an adjustable oven top plate 23 is provided on the top of the partition 22, an adjustable heat insulation plate 24 is provided on the top of the adjustable oven top plate 23, a dual-energy burner 3 is provided in the middle of the stove 1, a burning bottom plate 31 is provided on the top of the dual-energy burner 3, a mode switching mechanism 4 is provided in the middle of the stove top plate 11, a knob 41 is provided on the top of the mode switching mechanism 4, a central axis 46 is provided at the bottom of the knob 41, a keyway gear 42 is provided on the outside of the central axis 46, a return spring 43 is provided below the keyway gear 42, a fixed base 44 is provided on the outside of the return spring 43, and the bottom end of the central axis 46 is fixedly connected to a bottom cross bar 45.

[0030] Reference Figure 4 and Figure 7 Two touch adjustment screens 111 are provided on the top of the stove top plate 11, a main connecting rod bracket 12 is fixedly connected to the middle position inside the stove 1, a main connecting rod 121 is provided in the middle of the main connecting rod bracket 12, and a first transverse connecting rod 122 is fixedly connected to the end of the main connecting rod bracket 12 away from the end of the first transverse connecting rod 122. A second transverse connecting rod 123 is fixedly connected to the middle position inside the stove 1, and a transverse main rack base 13 is provided on the top of the transverse main rack base 13. A transverse auxiliary rack base 142 is fixedly connected to the bottom surface of the stove 1, a transverse auxiliary rack 14 is provided on the top of the transverse auxiliary rack base 142, and a sub-rack connecting rod 141 is provided at the front end of the transverse auxiliary rack 14. A gas valve connecting rod 152 is fixedly connected to the end of the second transverse connecting rod 123, and a flip outer support seat 15 is provided on the outside of the two dual-energy burning appliances 3.

[0031] By moving the main rack base 13 laterally, the rotation of the knob 41 is converted into a transverse movement, so that the transverse auxiliary rack 14 can realize a transverse movement under the rotation of the knob 41, so that the transverse auxiliary rack 14 drives the gear support column above it to rotate, and finally realizes the flipping operation of the burning appliance. At the same time, the gas valve connecting rod 152 can convert the downward movement of the knob 41 into a force to close the gas valve, thereby realizing the physical disconnection of gas supply, ensuring that there is no gas leakage after the system is closed, and improving system safety.

[0032] Reference Figure 4 and Figure 9 A gas valve 151 is provided on the inside of the flip outer support seat 15, and a flip inner support seat 16 is provided on the side between the two dual-energy burning appliances 3. A coil power supply block 161 is provided on the inside of the flip inner support seat 16, and a power supply connector 162 is provided inside the coil power supply block 161. A movable power supply base 17 is provided on the side of the coil power supply block 161. The movable power supply base 17 is fixedly connected to the bottom surface of the interior of the cooker 1, and a power supply connecting rod 171 is provided on the top of the movable power supply base 17. A movable power supply module 172 is provided at the end of the power supply connecting rod 171, and a main power supply connector 173 is provided inside the movable power supply module 172.

[0033] Through the rotation of the power supply connecting rod 171, the movable power supply module 172 can be moved up and down, thereby realizing the separation and contact of the movable power supply module 172 and the coil power supply block 161, and finally realizing the cutting off and connecting of the power supply of the heating wire. At the same time, the movement of the movable power supply module 172 can be controlled by the up and down movement of the knob 41. When the knob 41 is pressed, the downward movement is converted into the downward movement of the movable power supply module 172 through the main connecting rod 121 through the connecting rod, thereby realizing the operation of disconnecting the power supply. The whole process is realized through the mechanical structure, which improves the efficiency when cutting off the energy and improves the stability of the system.

[0034] Reference Figure 4 The two flip inner support seats 16 are arranged between the two dual-energy burning appliances 3, and the two flip outer support seats 15 are arranged outside the two dual-energy burning appliances 3. Through the different support columns on both sides of the dual-energy burning appliances 3 and the position relationship of the internal joints, the energy supply mode is automatically switched during the flipping process of the dual-energy burning appliances 3.

[0035] Reference Figure 1 、 Figure 3 and Figure 8The bottom of the adjustable top plate 23 of the oven is fixedly connected to the oven liner 231, the top of the adjustable top plate 23 of the oven is fixedly connected to the top of the top plate screw 232, four top plate screws 232 are fixedly connected to the top of the adjustable top plate 23 of the oven, and a top plate motor 233 is provided on the top of the adjustable top plate 23 of the oven. The top of the adjustable heat insulation plate 24 is fixedly connected to the heat insulation plate screw 241, four heat insulation plate screws 241 are fixedly connected to the top of the adjustable heat insulation plate 24, and a heat insulation plate motor base 242 is provided on the top of the adjustable heat insulation plate 24. The heat insulation plate motor 243 is provided on the side of the heat insulation plate motor base 242, and two heat insulation plate motor bases 242 are provided on both sides of the top of the adjustable heat insulation plate 24. A shell 21 is provided behind the oven door 211, a baffle 213 is provided on the top of the oven door 211, and a heat dissipation hole 212 is provided below the oven door 211.

[0036] Through the combined action of the top plate motor 233 and the top plate screw 232 on the side of the adjustable top plate 23 of the oven, the adjustable top plate 23 of the oven can dynamically adjust the internal volume of the oven according to usage, thereby maximizing energy utilization. At the same time, the adjustable insulation plate 24 can automatically adjust its position according to the temperature difference on both sides, thereby forming different insulation modes, minimizing the impact of heat between the stove and the oven, and ensuring that the two work together.

[0037] Reference Figure 5 The top of the fire-burning base plate 31 is provided with a fire head 311, the bottom of the fire-burning base plate 31 is provided with a fire fixing seat 32, the top of the fire fixing seat 32 is provided with a movable bracket 321, and the bottom of the movable bracket 321 is provided with an inclined block 3211. The four movable brackets 321 are evenly distributed on the top of the fire fixing seat 32, and the side of the fire fixing seat 32 is fixedly connected to the gas pipe support column 322, the gas pipe support column 322 is provided with a gas hole 3221 inside the gas pipe support column 322, and a positioning groove 323 is provided at the bottom of the fire fixing seat 32. The two positioning grooves 323 are symmetrically arranged at the bottom of the fire fixing seat 32, and a rotating disk 33 is provided at the bottom of the fire fixing seat 32. Through the action of the inclined block 3211 at the bottom of the movable bracket 321, the movable bracket 321 can be driven to be folded or erected by the rotation of the rotating disk 33, thereby avoiding affecting the flipping process of the stove.

[0038] Reference Figure 10A guide groove 331 is provided on the side of the rotating disk 33, and the two guide grooves 331 are symmetrically distributed. A linkage block 332 is provided inside the guide groove 331, and a linkage block spring 3321 is provided at the bottom of the linkage block 332. A linkage block connecting rod 333 is movably connected to the bottom of the linkage block 332, and a linkage block rack 334 is provided at the end of the linkage block connecting rod 333. A rack guide block 335 is provided on the side of the linkage block rack 334. The rack guide block 335 is fixedly connected to the top surface of the inner part of the burning fixed seat 32, and a middle gear 336 is fixedly connected to the middle of the rotating disk 33. A heating coil base 34 is provided at the bottom of the rotating disk 33, and a coil power supply block 161 is fixedly connected to the side of the heating coil base 34. A heating coil 35 is provided at the bottom of the heating coil base 34, and an electric heating top plate 36 is provided at the bottom of the heating coil 35. The electric heating top plate 36 is heated by the heating coil 35.

[0039] By retracting and protruding the linkage block 332, the linkage block rack 334 at the rear can be driven to move laterally, thereby driving the middle gear 336 in the middle of the rotating disk 33 to rotate, and finally realizing the rotation of the rotating disk 33, thereby driving the movable bracket 321 to move.

[0040] Reference Figure 6 A keyway 421 is provided inside the keyway gear 42, a spindle key 462 is provided on the side of the central axis 46, a locking strip 461 is provided at the bottom of the central axis 46, and four locking strips 461 are evenly distributed at the bottom of the central axis 46. A spring top plate 431 is provided on the top of the return spring 43, and a spring base 432 is provided at the bottom of the return spring 43. A card slot 4321 is provided inside the spring base 432, and four card slots 4321 are evenly distributed inside the spring base 432. Through the action of the return spring 43, the central axis 46 automatically returns to its original position after being unlocked, thereby driving the bottom cross bar 45 to move upward, and finally achieving unlocking while the energy supply of the system is connected.

[0041] Working principle of the present invention: In the initial stage, the locking card strip 461 provided at the bottom of the mode switching mechanism 4 and the bottom of the spring base 432 combine to realize that the mode switching mechanism 4 structure is in a locked state at the lowest position. At this time, the bottom cross bar 45 provided at the bottom of the mode switching mechanism 4 is in the lowest position. At this time, the main connecting rod 121 provided at the end of the bottom cross bar 45 is under the action of the lever, so that the first transverse connecting rod 122 at the end is lifted, and then under the transmission action of the power supply connecting rod 171, the movable power supply module 172 is finally realized in the lowest position. At this time, the movable power supply module 172 is separated from the coil power supply block 161, thereby realizing the physical cutting off of the power supply to the burning appliance. At the same time, the second transverse connecting rod 123 fixedly connected to the side of the main connecting rod 121 near the bottom cross bar 45 is also in the lowest position. The gas valve connecting rod 152 provided at the end of the second transverse connecting rod 123 is under the action of the lever, so that the gas valve 151 is in a closed state, thereby realizing the synchronous physical cutting off of the energy supply of the dual-energy burning appliance.

[0042] In the unlocking stage, the locking strip 461 at the bottom of the central axis 46 is driven to move by rotating the knob 41. The locking strip 461 is aligned with the slot 4321 through the rotation of the locking strip 461. Finally, under the elastic action of the return spring 43, the locking strip 461 moves upward along the slot 4321, so that the main shaft key 462 and the key slot 421 coincide with each other, thereby realizing that the key slot gear 42 can be driven to rotate by the knob 41. When the central axis 46 rises, it will drive the bottom cross bar 45 to move upward, thereby driving the main connecting rod 121 to move downward away from the end of the bottom cross bar 45. At the same time, the second cross connecting rod 123 moves upward. Under the action of multiple levers, the energy supply module is finally connected to both ends of the burning appliance, realizing synchronous unlocking and energy supply connection.

[0043] Specifically, the second transverse link 123 moves downward, and under the action of the gas valve link 152 at the end of the second transverse link 123, the gas valve 151 is opened. At the same time, as the main link 121 rises away from the end of the bottom cross bar 45, the movable power supply module 172 at the end of the power supply link 171 moves upward, and finally the movable power supply module 172 and the coil power supply block 161 are aligned and connected. At this time, since the stove is in the gas function state, all the power supply connectors 162 and the main power supply connector 173 are in the upper and lower positions and are not in the connected state. When the stove switches the energy mode, the power supply connector 162 and the main power supply connector 173 are connected through the rotation of the coil power supply block 161.

[0044] In the gas mode, the linkage block 332 provided in the middle of the dual-energy burning appliance 3 and the wall of the stove top plate 11 are used to realize the movement of the linkage block 332 toward the inside of the dual-energy burning appliance 3. Under the linkage action of the end linkage block connecting rod 333, the linkage block 332 pushes the middle gear 336 to rotate, thereby driving the rotating disk 33 to rotate, and finally the inclined block 3211 is disengaged from the top notch of the rotating disk 33, and then the movable bracket 321 is pushed up through the top of the rotating disk 33, realizing the automatic rising of the movable bracket 321. At the same time, the gas hole 3221 on the side of the dual-energy burning appliance 3 and the gas valve 151 are in the connected state, and the detailed data can be adjusted using the touch adjustment screen 111.

[0045] In the electric mode, by rotating the knob 41, the keyway gear 42 drives the main transverse rack 131 to move horizontally, and under the lever action of the auxiliary rack connecting rod 141, the transverse auxiliary rack 14 is moved horizontally, thereby driving the coil power supply blocks 161 and the gas pipe support column 322 on both sides of the dual-energy burning appliance 3 to rotate, and finally driving the dual-energy burning appliance 3 to flip over. During the flipping process of the dual-energy burning appliance 3, the linkage block 332 on the side of the dual-energy burning appliance 3 is separated from the inner wall surface of the stove top plate 11. Under the action of the linkage block spring 3321, the linkage block 332 moves outward, and then under the action of the linkage block connecting rod 333, the linkage block rack 33 is rotated. 4 drives the middle gear 336 to rotate in the opposite direction, and finally realizes that the inclined block 32111 at the bottom of the movable bracket 321 returns to the inside of the top notch of the rotating disk 33, so that the movable bracket 321 is automatically retracted during the flipping process of the dual-energy burning appliance 3. After the flipping, the power supply connector 162 inside the coil power supply block 161 and the main power supply connector 173 are connected. At the same time, due to the flipping effect, the gas pipe inside the gas pipe support column 322 on the side of the dual-energy burning appliance 3 and the internal pipeline of the gas valve 151 are disconnected, realizing the automatic switching of the energy connection mode during the flipping and automatically disconnecting other energy supply channels. Subsequently, the touch adjustment screen 111 is used to switch and adjust other data.

[0046] The oven is adjusted synchronously. The insulation board motor 243 on the top of the adjustable insulation board 24 can automatically adjust the distance between the adjustable insulation board 24 and the upper stove, and then adjust the insulation mode according to the usage to minimize the impact of heat between the oven and the stove. The top plate motor 233 set on the top of the adjustable top plate 23 of the oven can realize the free adjustment of the height of the adjustable top plate 23 of the oven, and then dynamically adjust the internal space of the oven according to needs.

[0047] Secondly: The drawings of the embodiments disclosed in the present invention only involve structures related to the embodiments disclosed in the present invention. Other structures may refer to conventional designs. The same embodiment and different embodiments of the present invention may be combined with each other without conflict.

[0048] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A dual-energy touch-control oven stove integrated system, comprising a stove (1), characterized in that: The top of the stove (1) is provided with a stove top plate (11), the bottom of the stove (1) is provided with an oven (2), the interior of the oven (2) is provided with a partition (22), the front of the oven (2) is provided with an oven door (211), the top of the partition (22) is provided with an oven adjustable top plate (23), the top of the oven adjustable top plate (23) is provided with an adjustable heat insulation plate (24), the middle of the stove (1) is provided with a dual-energy burner (3), the top of the dual-energy burner (3) is provided with a burner. A bottom plate (31) is provided in the middle of the stove top plate (11), a mode switching mechanism (4) is provided at the top of the mode switching mechanism (4), a knob (41) is provided at the top, a central axis (46) is provided at the bottom of the knob (41), a keyway gear (42) is provided on the outside of the central axis (46), a return spring (43) is provided below the keyway gear (42), a fixed base (44) is provided on the outside of the return spring (43), and the bottom end of the central axis (46) is fixedly connected to a bottom cross bar (45).

2. The dual-energy touch-control oven cooker integrated system according to claim 1, characterized in that: Two touch adjustment screens (111) are provided on the top of the stove top plate (11), a main connecting rod bracket (12) is fixedly connected to the middle position inside the stove (1), a main connecting rod (121) is provided in the middle of the main connecting rod bracket (12), a first transverse connecting rod (122) is fixedly connected to the end of the main connecting rod bracket (12), a second transverse connecting rod (123) is fixedly connected to the side of the end of the main connecting rod bracket (12) away from the first transverse connecting rod (122), and a transverse main rack base (123) is fixedly connected to the middle position inside the stove (1). 13), a main transverse rack (131) is provided on the top of the main transverse rack base (13), a sub-transverse rack base (142) is fixedly connected to the inner bottom surface of the stove (1), a sub-transverse rack (14) is provided on the top of the sub-transverse rack base (142), a sub-transverse rack connecting rod (141) is provided at the front end of the sub-transverse rack (14), a gas valve connecting rod (152) is fixedly connected to the end of the second transverse connecting rod (123), and a flip outer support seat (15) is provided on the outer side of the two dual-energy burners (3).

3. The dual-energy touch-control oven cooker integrated system according to claim 2, characterized in that: A gas valve (151) is provided on the inner side of the flip outer support seat (15), a flip inner support seat (16) is provided on the side between the two dual-energy fuel appliances (3), a coil power supply block (161) is provided on the inner side of the flip inner support seat (16), a power supply connector (162) is provided inside the coil power supply block (161), a movable power supply base (17) is provided on the side of the coil power supply block (161), the movable power supply base (17) is fixedly connected to the inner bottom surface of the stove (1), a power supply connecting rod (171) is provided on the top of the movable power supply base (17), a movable power supply module (172) is provided at the end of the power supply connecting rod (171), and a main power supply connector (173) is provided inside the movable power supply module (172).

4. The dual-energy touch-control oven-cooker integrated system according to claim 3, characterized in that: The two flip inner support seats (16) are arranged between the two dual-energy burning appliances (3), and the two flip outer support seats (15) are arranged outside the two dual-energy burning appliances (3).

5. The dual-energy touch-control oven cooker integrated system according to claim 1, characterized in that: The bottom of the adjustable oven top plate (23) is fixedly connected to an oven liner (231), the top of the adjustable oven top plate (23) is fixedly connected to a top plate screw (232), four of the top plate screws (232) are fixedly connected above the adjustable oven top plate (23), a top plate motor (233) is provided on the top of the adjustable oven top plate (23), the top of the adjustable heat insulation plate (24) is fixedly connected to a heat insulation plate screw (241), four of the heat insulation plate screws (241) are fixedly connected to the adjustable heat insulation plate. The top of the adjustable heat insulation board (24) is provided with a heat insulation board motor base (242), the side of the heat insulation board motor base (242) is provided with a heat insulation board motor (243), two heat insulation board motor bases (242) are provided on both sides of the top of the adjustable heat insulation board (24), a shell (21) is provided behind the oven door (211), a baffle (213) is provided on the top of the oven door (211), and a heat dissipation hole (212) is provided below the oven door (211).

6. The dual-energy touch-control oven-cooker integrated system according to claim 1, characterized in that: The top of the fire base plate (31) is provided with a fire head (311), the bottom of the fire base plate (31) is provided with a fire fixing seat (32), the top of the fire fixing seat (32) is provided with a movable bracket (321), the bottom of the movable bracket (321) is provided with an inclined block (3211), four movable brackets (321) are evenly distributed on the top of the fire fixing seat (32), the side of the fire fixing seat (32) is fixedly connected with a gas pipe support column (322), the interior of the gas pipe support column (322) is provided with a gas hole (3221), the bottom of the fire fixing seat (32) is provided with a positioning groove (323), two positioning grooves (323) are symmetrically arranged at the bottom of the fire fixing seat (32), and a rotating disk (33) is provided at the bottom of the fire fixing seat (32).

7. The dual-energy touch-control oven-cooker integrated system according to claim 6, characterized in that: A guide groove (331) is provided on the side of the rotating disk (33), and the two guide grooves (331) are symmetrically distributed. A linkage block (332) is provided inside the guide groove (331), a linkage block spring (3321) is provided at the bottom of the linkage block (332), a linkage block connecting rod (333) is movably connected to the bottom of the linkage block (332), a linkage block rack (334) is provided at the end of the linkage block connecting rod (333), and a rack guide is provided on the side of the linkage block rack (334). Block (335), the rack guide block (335) is fixedly connected to the inner top surface of the burning fixed seat (32), the middle of the rotating disk (33) is fixedly connected to the middle gear (336), the bottom of the rotating disk (33) is provided with a heating coil base (34), the side of the heating coil base (34) is fixedly connected to the coil power supply block (161), the bottom of the heating coil base (34) is provided with a heating coil (35), and the bottom of the heating coil (35) is provided with an electric heating top plate (36).

8. The dual-energy touch-control oven-cooker integrated system according to claim 1, characterized in that: A keyway (421) is provided inside the keyway gear (42), a main shaft key (462) is provided on the side of the central shaft (46), a locking clip (461) is provided at the bottom of the central shaft (46), and four locking clips (461) are evenly distributed at the bottom of the central shaft (46), a spring top plate (431) is provided at the top of the return spring (43), a spring base (432) is provided at the bottom of the return spring (43), a card slot (4321) is provided inside the spring base (432), and four card slots (4321) are evenly distributed inside the spring base (432).