CN209042453U - A kind of self-balancing intelligent gas-burning stove - Google Patents

A kind of self-balancing intelligent gas-burning stove Download PDF

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Publication number
CN209042453U
CN209042453U CN201821565944.3U CN201821565944U CN209042453U CN 209042453 U CN209042453 U CN 209042453U CN 201821565944 U CN201821565944 U CN 201821565944U CN 209042453 U CN209042453 U CN 209042453U
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China
Prior art keywords
cookware
bracket
height
elevating mechanism
controller
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CN201821565944.3U
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吴先锋
李桂玉
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Nanjing Ying Wei Science And Technology Service Co Ltd
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Nanjing Ying Wei Science And Technology Service Co Ltd
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Priority to CN201821565944.3U priority Critical patent/CN209042453U/en
Priority to DE202018105585.2U priority patent/DE202018105585U1/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/10Tops, e.g. hot plates; Rings
    • F24C15/107Pan supports or grates therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C7/00Stoves or ranges heated by electric energy
    • F24C7/08Arrangement or mounting of control or safety devices
    • F24C7/082Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination
    • F24C7/083Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination on tops, hot plates

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Cookers (AREA)
  • Baking, Grill, Roasting (AREA)

Abstract

The application provides a kind of self-balancing intelligent gas-burning stove, and the intelligent gas-burning stove includes hearth plane, stone or metal plate for standing a stove on as a precaution against fire, cookware support device and controller.In use, cookware is placed on the cookware bracket in cookware support device;Weighing sensor detects the pressure value born on each cookware bracket, and controller calculates the average value of multiple pressure values according to the pressure value of detection;Size comparison is carried out to each pressure value and average value respectively again, if pressure value is greater than average value, control elevating mechanism improves the height of cookware bracket;If pressure value is less than average value, control elevating mechanism reduces the height of cookware bracket;It is adjusted by the height to multiple cookware brackets, tilted-putted cookware is enable to revert to equilibrium state, kept cookware bottom and stone or metal plate for standing a stove on as a precaution against fire constant distance, meet optimal burning extent always.

Description

A kind of self-balancing intelligent gas-burning stove
Technical field
This application involves Smart Home technical field more particularly to a kind of self-balancing intelligent gas-burning stoves.
Background technique
Gas-cooker generates flame by the combustion head below cookware bracket when in use, adds to the cookware on cookware bracket Heat.In order to make cookware be uniformly heated stabilization, be equipped with positioning vertical column above the combustion head of existing gas-cooker, lower section with can be upper and lower Mobile cylinder connects, and the outer surface of cylinder is equipped with gear-like protrusion, engages with the gear of two sides.When the gear of two sides rotates When, cylinder can carry out lifting moving.To when in use can autobalance go up and down combustion head position, no matter which kind of pot type, combustion It burns distance between head and the bottom of a pan and meets best combustion distance always.
But since in practical cooking process, cookware bracket generally contacts the arc-shaped pot of cookware along region, and operator may In placing cooker, cookware can not accurately be balanced and be placed.If the cookware being placed on cookware bracket does not balance placement, Can make cookware generate inclination, make combustion head between the bottom of a pan on different location at a distance from differ, to cause the bottom of a pan different zones The flame conditions touched are different, i.e., heating temperature is different.Therefore, when especially stewing for a long time during the cooking process, cookware Place the thermally equivalent of flame full combustion and cookware that imbalance can be unfavorable on combustion head.
Utility model content
This application provides a kind of self-balancing intelligent gas-burning stoves, to solve conventional gas stove during the cooking process, are easy pot Tool places unbalanced problem.
The application provides a kind of self-balancing intelligent gas-burning stove, including hearth plane, and setting is fired in the hearth plane Stone or metal plate for standing a stove on as a precaution against fire in hole burning further includes at least three cookware support devices being evenly arranged in the burner port external position and connection institute State the controller of cookware support device;
The cookware support device includes the cookware bracket being arranged in the hearth plane, and is arranged in the hearth Elevating mechanism under plane;The movable end of the elevating mechanism connects the cookware bracket through the hearth plane, to pass through The elevating mechanism adjusts the height of the cookware bracket;The support device further includes setting in the elevating mechanism and described Weighing sensor between cookware bracket, to detect the pressure that the cookware bracket is born;
The elevating mechanism and weighing sensor in multiple cookware support devices are all connected with the controller;It is described Controller controls the liter in each cookware support device according to the pressure data of each weighing sensor detection Descending mechanism changes the height of the cookware bracket.
The application provides a kind of self-balancing intelligent gas-burning stove, and cooking pot tool is placed on cookware bracket in use;Weighing passes Sensor detects the pressure value that cookware is born on each cookware bracket, and controller calculates multiple pressure values according to the pressure value of detection Average value;Size comparison is carried out to each pressure value and average value respectively again, if pressure value is greater than average value, control lifting The height of mechanism raising cookware bracket;If pressure value is less than average value, control elevating mechanism reduces the height of cookware bracket;It is logical It crosses and the height of multiple cookware brackets is adjusted, tilted-putted cookware is enable to revert to equilibrium state, keep cookware bottom Portion and stone or metal plate for standing a stove on as a precaution against fire constant distance, meet optimal burning extent always.
Detailed description of the invention
Fig. 1 is a kind of structural schematic diagram of self-balancing intelligent gas-burning stove of the application;
Fig. 2 is the partial structural diagram of the application intelligent gas-burning stove;
Fig. 3 is the overlooking structure diagram of the application intelligent gas-burning stove;
Fig. 4 is the structural schematic diagram of the application cookware support device;
Fig. 5 is the structural scheme of mechanism of the application height adjustment mechanism.
Specific embodiment
It is a kind of structural schematic diagram of self-balancing intelligent gas-burning stove referring to Fig. 1.Self-balancing intelligent gas provided by the present application Stove, including hearth plane 1, and the stone or metal plate for standing a stove on as a precaution against fire 2 being arranged in 1 burner port 11 of hearth plane.In actual use, stone or metal plate for standing a stove on as a precaution against fire 2 is generally Cylinder, bottom are passed through combustion gas, and top is equipped with multiple glory holes.Multiple glory holes can discharge the combustion gas being passed through, then The electric spark generated by igniter, the combustion gas of release is lighted, lasting flame is formed.Obviously, burner port 11 is for holding It receives entire stone or metal plate for standing a stove on as a precaution against fire 2, can be the circle hole shape structure concentric with stone or metal plate for standing a stove on as a precaution against fire 2.Due in this application, the circumferential edge portions of burner port 11 Set up separately and be equipped with other component, influences the movement of other component to reduce the heat generated on stone or metal plate for standing a stove on as a precaution against fire 2, it can be in burner port 11 Thermal wall is arranged in lower section, the space of 1 lower section of hearth plane and the combustion space barrier of stone or metal plate for standing a stove on as a precaution against fire 2 is opened, i.e. the lower section of burner port 11 With columnar side wall.
As shown in Fig. 2, the intelligent gas-burning stove provided by the present application, further includes being evenly arranged in 11 external position of burner port At least three cookware support devices 3.Cookware support device 3 in actual use, contacts the bottom or pot edge region of cookware, will Cookware is supported and fixed on the top of stone or metal plate for standing a stove on as a precaution against fire 2.Since 3 points can determine a plane, the quantity of cookware support device 3 is at least It is three.In order to obtain more stable support effect, avoids culinary art food materials weight too big and cookware is caused to topple, can suitably increase Add the quantity of cookware support device 3.Such as Fig. 1, Fig. 2 shows scheme in, set on the intelligent gas-burning stove there are four cookware branch Support arrangement 3.In the embodiment of the present application, multiple cookware support devices 3 uniformly refer in the external position of burner port 11, multiple cookwares Support device 3 is in 360 ° of annular arrays in the circumferential exterior of burner port 11, in order to pot centered on the axis of burner port 11 Tool is supported.For example, if the intelligent gas-burning stove includes three cookware support devices 3, three cookware support devices 3 it Between, it is arranged in the form for being spaced apart from each other 120 °;If the intelligent gas-burning stove include four cookware support devices 3, four Between cookware support device 3, it is arranged in the form for being spaced apart from each other 90 °.
The intelligent gas-burning stove provided by the present application further includes the controller 4 for connecting cookware support device 3.In the application The controller 4 can be that by simple judgement and send the chip of control instruction function, such as single-chip microcontroller.It can also be with It is the complex processor with stronger operational capability, such as programmable logic controller (PLC), microprocessor.In order to realize more intelligence The control mode of energyization, the controller 4 can be with built-in communication module, and communication link is established between the intelligent terminal of user It connects, the operating status of intelligent gas-burning stove described in real-time detection.Internet can also be further connected, and then in internet big data It is middle to obtain more or more accurate control strategies.For being designed beautifully for the intelligent gas-burning stove, the controller 4 can be set It sets under hearth plane 1, and in order to avoid the heat that the burning of stone or metal plate for standing a stove on as a precaution against fire 2 generates, influences controller 4, controller 4 should also be set It sets on the position as far as possible far from stone or metal plate for standing a stove on as a precaution against fire 2.
In order to realize self-balancing control, as shown in Fig. 2, the cookware support device 3 includes being arranged above hearth plane 1 Cookware bracket 31, and the elevating mechanism 33 below hearth plane 1 is set.In technical solution provided by the present application, lifting Mechanism 33 includes fixing end and movable end.Wherein, fixing end is for the position of elevating mechanism 33 to be fixed, it can passes through The fixing end of elevating mechanism 33 is mounted on the bottom surface of hearth plane 1 or the side wall of burner port 11 by the fixations such as screw On;Motor etc. of the movable end for by fixing end drives, and realizes movement in the vertical direction.
The movable end of elevating mechanism 33 connects cookware bracket 31 through hearth plane 1, to adjust pot by elevating mechanism 33 Has the height of bracket 31.In the application, a corresponding elevating mechanism 33, may be implemented multiple pots in each cookware support device 3 It is mutually independent between tool support device 3, carry out the height adjustment of respective cookware bracket 31.The movable end of elevating mechanism 33 runs through Hearth plane 1 can be by being arranged through-hole corresponding with movable end shape in hearth plane 1.For example, if movable end is round Cylindricality rod-like structure then uniformly opens up multiple circular holes centered on the central axes of burner port 11 in hearth plane 1.In addition, circular hole Aperture should be greater than the diameter of movable end, so that movable end moves in circular hole.
In the section Example of the application, as shown in figure 4, the kind of drive of elevating mechanism 33 is screw-driven, that is, rise Descending mechanism 33 includes servo motor 331, and as the elevating lever 332 of movable end, and elevating lever 332 is equipped with screw thread, servo electricity The output end of machine 331 is connected through a screw thread elevating lever 332.By screw-driven, the rotation that servo motor 331 can be exported turns The movement of elevating lever 332, and the self-locking function carried using screw-driven are turned to, maintains the position of elevating lever 332 constant.Cause This, can be to avoid additional setting closedown structure, convenient for simplifying the structure of elevating mechanism 33.It should be noted that for the ease of right Servo motor 331 is controlled, and the lifting moving speed and kinematic accuracy of optimization elevating lever 332, servo motor 331 and liter It is gear-driven retarder that the kind of drive can also be arranged between drop bar 332, and multiple gears in retarder can not only be adjusted The revolving speed exported to elevating lever 332 is saved, and can change the direction of revolving speed output, thus flexible arrangement servo motor 331 Position keeps the intelligent gas-burning stove overall structure more compact.
The cookware support device 3 further includes the weighing sensor being arranged between elevating mechanism 33 and cookware bracket 31 32, to detect the pressure value of the receiving of cookware bracket 31.The weighing sensor 32 can be based on made of varistor principle Sensor chip.Weighing sensor 32 can export corresponding pressure value according to the weight born on cookware bracket 31.Due to In actual use, multiple cookware brackets 31 all touch the bottom of cookware, i.e. the weight of cookware can share multiple cookware branch On frame 31.If cookware balance is placed, the pressure born on multiple cookware brackets 31 should be identical, i.e., each cookware Bracket 31 all bears the average value of cookware total weight;Therefore, each cookware bracket can be detected respectively by weighing sensor 32 The pressure value born on 31 illustrates that cookware lack of equilibrium is placed if the result of multiple cookware brackets 31 detection is not identical.It needs Illustrate, since the factor for influencing cookware balance in actual use is numerous, and practical application is also not necessarily to make cookware Absolute equilibrium state is kept, therefore, can be maintained within a certain range in the gap between the pressure value and average value of detection ?.
In order to be carried out automatically controlling according to height of the pressure value of detection to cookware bracket 31, such as Fig. 3, shown in Fig. 4, this Shen In the technical solution that please be provided, elevating mechanism 33 and weighing sensor 32 in multiple cookware support devices 3 are all connected with controller 4.The pressure data that controller 4 can be detected according to each weighing sensor 32, controls the elevator in each cookware support device 3 Structure 33, to change the height of cookware bracket 31.
It, can be real by following balance control method in technical solution provided by the present application based on above-mentioned intelligent gas-burning stove Existing self-balancing control:
S1: the pressure that each cookware bracket is born is obtained by the weighing sensor at least three cookware support devices Value;
S2: the average value of the multiple pressure values got is calculated;
S3: each pressure value and average value are compared respectively;
S4: if the amplitude that pressure value is greater than average value is more than default tolerance, promotion signal, control are sent to elevating mechanism Elevating mechanism processed improves the height of cookware bracket;
S5: if the amplitude that pressure value is less than average value is more than default tolerance, dropping signal, control are sent to elevating mechanism Elevating mechanism processed reduces the height of cookware bracket.
Above-mentioned steps are it is found that intelligent gas-burning stove provided by the present application when in use, first passes through each cookware bracket 31 of detection The pressure value born calculates average value further according to the multiple pressure values detected, and by comparing each pressure value and meter Size relation between the average value of calculation determines the height and position adjustable strategies of each cookware bracket 31.For example, if pressure value Greater than average value, the pressure for illustrating that current cookware bracket 31 is born is larger, i.e. the center of gravity of cookware after placement is apart from current pot Tool bracket 31 is closer, and therefore, can make the movable end of elevating mechanism 33 by sending promotion signal to elevating mechanism 33 It moves up, to improve the height of cookware bracket 31.Equally, it if pressure value is less than average value, is sent to elevating mechanism 33 Dropping signal, control elevating mechanism 33 reduce the height of cookware bracket 31.By the height and position to multiple cookware brackets 31 into Row adjustment, can make the center of gravity of cookware be located at scheduled position, i.e. leveling cookware.
Further, since in practical applications, different shapes may be presented in cookware, and with assisted parts such as handles Part, therefore cookware shape itself is doomed its center of gravity and is not at center.It therefore, can be preparatory for cookware of different shapes Set the corresponding ratio for bearing pressure of each cookware bracket 31.For example, for the cookware bracket 31 close to operator side, For the ease of cookware of taking, the handle of cookware is often disposed close on the position of this side, therefore can be by this side position On the born pressure of cookware bracket 31 ratio setting it is larger.Furthermore it is also possible to by the way that letter is arranged on the handle of cookware Easy level meter, to reflect whether current cookware is in equilibrium state, then module is sent to by wireless communication by horizontality Controller 4, pilot controller 4 make corresponding adjustable strategies.
Further, since cookware shape and use state are multifarious in actual use, therefore weighing sensor can be passed through 32 continuous collections, the pressure information that cookware in use applies each cookware bracket 31, and pass through further statistical The pressure proportional that each cookware bracket 31 should be born is determined in analysis, then with this ratio for the intelligent gas-burning stove partition equilibrium The scale base of judgement.
In the section Example of the application, as shown in figure 4, the intelligent gas-burning stove further includes being arranged in hearth plane 1 Lower section, and the temperature sensor 5 on 2 position of stone or metal plate for standing a stove on as a precaution against fire, temperature sensor 5 connects controller 4, to detect in cooking process Heating temperature.In the present embodiment, heating temperature in cooking process is detected by temperature sensor 5, it can be determined that current Carried out state is cooked, so that whether setting carries out corresponding self-balancing adjusting.For example, if what temperature sensor 5 detected Heating temperature is higher or the amplitude of temperature change is larger, then illustrating currently may be in the frying for carrying out high fire, due to frying process It needs constantly to stir-fry to food materials, and whether cookware balances and do not have much influence cooking process, therefore can stop It obtains the pressure value of the detection of weighing sensor 32 or stops the control to elevating mechanism 33.And if what temperature sensor 5 detected Heating temperature is lower, can determine whether currently carrying out that mild fire stews or small fire is fried, it is therefore desirable to adjust cookware balance It is whole to maintain optimal heating distance, with obtain preferably culinary art effect.
Further, as shown in figure 3, the intelligent gas-burning stove further includes the adjustment knob 6 being arranged in hearth plane 1, It adjusts knob 6 and connects controller 4, so that rotation angle of the controller 4 according to adjustment knob 6, control are adjusted cookware bracket The opportunity of 31 height.Due to adjustment knob 6 be in practical applications for lighting a fire and adjusting the flame size on stone or metal plate for standing a stove on as a precaution against fire 2, Therefore current cooking status can be determined by the rotation angle of detection adjustment knob 6.For example, the rotation of adjustment knob 6 Angle is larger, then heating temperature used in the current culinary art of explanation is higher, it is possible to be high fire frying, can stop obtaining weighing The pressure value or stop control to elevating mechanism 33 that sensor 32 detects, i.e. control change the height of cookware bracket 31 when Machine.
Since in actual use, the difference in height between multiple cookware brackets 31 should not be too large, in order to avoid cookware is caused to incline It covers, therefore in the section Example of the application, cookware support device 3 further includes connecting the distance biography of 33 movable end of elevating mechanism Sensor 34.Range sensor 34 connects controller 4, to detect the height or mobile height of cookware bracket 31, makes 4 basis of controller Height detected determines the moveable maximum distance of 33 movable end of elevating mechanism.In use, can in advance in controller 4, The maximum raising distance of built-in each cookware bracket 31 and maximum dropping distance, the maximum distance of setting should be able to guarantee not Have maximum height difference different time, cookware or cookware when loading most food materials weight between same cookware bracket 31, will not incline Subject to covering.
In order to avoid toppling or sliding occur when in use in cookware, in the section Example of the application, as shown in Figure 4.Institute State the support portion 311 and the interconnecting piece 312 for connecting support portion 311 that cookware bracket 31 includes contact cookware bottom;Interconnecting piece 312 The movable end of elevating mechanism 33 is connected, support portion 311 is equipped with the anti-skid chequer for preventing cookware from sliding.It can be increased by anti-skid chequer Frictional force between cookware and cookware bracket 31 on contact position, to avoid occurring when adjusting the height of cookware bracket 31 The problem of cookware topples.
In the section Example of the application, as shown in figure 5, the bottom of stone or metal plate for standing a stove on as a precaution against fire 2 is equipped with height adjustment mechanism 7, height is adjusted It saves mechanism 7 and connects controller 4, to adjust the height of stone or metal plate for standing a stove on as a precaution against fire 2 after the height of adjustment cookware bracket 31.Height adjustment mechanism 7 can To adjust the height of stone or metal plate for standing a stove on as a precaution against fire 2 after cookware is adjusted to equilibrium state by cookware bracket 31, protect the bottom of stone or metal plate for standing a stove on as a precaution against fire 2 and cookware Optimal burning extent is held, the combustion state that the flame on stone or metal plate for standing a stove on as a precaution against fire 2 keeps best is helped.The height adjustment mechanism 7 can be Screw drive structure below stone or metal plate for standing a stove on as a precaution against fire 2 is set, and screw drive structure may include lifting tube and rotating cylinder, and rotating cylinder is nested in liter The outside for dropping cylinder, is connected to the motor.It is connected through a screw thread between lifting tube and rotating cylinder, so that motor drives rotating cylinder to be revolved When turning, movement is transmitted, driving lifting tube changes height, to adjust the height of stone or metal plate for standing a stove on as a precaution against fire 2.
In addition, since the height of stone or metal plate for standing a stove on as a precaution against fire 2 is just to be adjusted after the height adjustment of cookware bracket 31, and work as cookware branch When the height adjustment of frame 31 is smaller, the variation of the distance between cookware bottom and stone or metal plate for standing a stove on as a precaution against fire 2 is not too big, therefore in actual use very It is adjusted less using position of the height adjustment mechanism 7 to stone or metal plate for standing a stove on as a precaution against fire 2.It, in practical applications can be by above-mentioned reality based on this It applies in example, what range sensor 34 detected is judged apart from adjustment amount, when determining the distance accumulation of integrated regulation to needs pair After stone or metal plate for standing a stove on as a precaution against fire 2 is adjusted, then the height of stone or metal plate for standing a stove on as a precaution against fire 2 is adjusted.Also, in order to simplify the whole knot of the intelligent gas-burning stove Structure can set manually regulating mechanism for height adjustment mechanism 7.And when needing the height to stone or metal plate for standing a stove on as a precaution against fire 2 to be adjusted, Adjustment signal is issued, operator is notified to implement corresponding adjustment.
From the above technical scheme, the application provides a kind of self-balancing intelligent gas-burning stove, and cooking pot tool is placed in use On cookware bracket 31;Weighing sensor 32 detects the pressure value that cookware is born on each cookware bracket 31, and controller 4 is according to inspection The pressure value of survey calculates the average value of multiple pressure values;Size comparison is carried out to each pressure value and average value respectively again, such as Fruit pressure value is greater than average value, and control elevating mechanism 33 improves the height of cookware bracket 31;If pressure value is less than average value, control Elevating mechanism 33 processed reduces the height of cookware bracket 31;It is adjusted by the height to multiple cookware brackets 31, puts inclination The cookware set can revert to equilibrium state, keep cookware bottom and stone or metal plate for standing a stove on as a precaution against fire constant distance, meet optimal burning extent always.

Claims (7)

1. a kind of self-balancing intelligent gas-burning stove, including hearth plane, and the stone or metal plate for standing a stove on as a precaution against fire being arranged in the hearth plane burner port, It is characterized in that, further including at least three cookware support devices being evenly arranged in the burner port external position, and connection institute State the controller of cookware support device;
The cookware support device includes the cookware bracket being arranged in the hearth plane and is arranged in the hearth plane Under elevating mechanism;The movable end of the elevating mechanism runs through the hearth plane, connect with the cookware bracket, to pass through State the height that elevating mechanism adjusts the cookware bracket;The support device further includes being arranged in the elevating mechanism and the pot Has the weighing sensor between bracket, to detect the pressure value that the cookware bracket is born;
The elevating mechanism and the weighing sensor are all connected with the controller;The controller is passed according to each weighing The pressure value of sensor detection, controls each elevating mechanism, to adjust the height of the cookware bracket.
2. intelligent gas-burning stove according to claim 1, which is characterized in that the intelligent gas-burning stove further includes being arranged described Below hearth plane, and the temperature sensor on the stone or metal plate for standing a stove on as a precaution against fire position, the temperature sensor connect the controller, with Detect the heating temperature in cooking process.
3. intelligent gas-burning stove according to claim 1, which is characterized in that the cookware support device further includes described in connection The range sensor of elevating mechanism movable end;The range sensor connects the controller, to detect the cookware bracket Highly, the distance for making the controller determine that the elevating mechanism movable end should be moved according to height detected.
4. intelligent gas-burning stove according to claim 1, which is characterized in that the intelligent gas-burning stove further includes being arranged described Adjustment knob in hearth plane;The adjustment knob connects the controller, so that the controller is revolved according to the adjustment The rotation angle of button, control adjust the opportunity of the cookware support height.
5. intelligent gas-burning stove according to claim 1, which is characterized in that the kind of drive of the elevating mechanism is screw thread biography It is dynamic;The elevating mechanism includes servo motor, and as the elevating lever of movable end, the elevating lever is equipped with screw thread, described The output end of servo motor is connected through a screw thread the elevating lever, and the servo motor connects the controller.
6. intelligent gas-burning stove according to claim 1, which is characterized in that the cookware bracket includes contact cookware bottom Support portion, and the interconnecting piece of the connection support portion;The interconnecting piece connects the movable end of the elevating mechanism, the support Portion is equipped with the anti-skid chequer for preventing cookware from sliding.
7. intelligent gas-burning stove according to claim 1, which is characterized in that the bottom of the stone or metal plate for standing a stove on as a precaution against fire is equipped with height adjustment machine Structure, the height adjustment mechanism connect the controller, adjusted after the height for adjusting the cookware bracket by the height Save the height of stone or metal plate for standing a stove on as a precaution against fire described in institutional adjustment.
CN201821565944.3U 2018-09-25 2018-09-25 A kind of self-balancing intelligent gas-burning stove Active CN209042453U (en)

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CN201821565944.3U CN209042453U (en) 2018-09-25 2018-09-25 A kind of self-balancing intelligent gas-burning stove
DE202018105585.2U DE202018105585U1 (en) 2018-09-25 2018-09-28 Self-balancing smart gas stove

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109084340A (en) * 2018-09-25 2018-12-25 南京英维尔科技服务有限公司 A kind of self-balancing intelligent gas-burning stove and balance control method
CN111006253A (en) * 2019-12-21 2020-04-14 刘海明 Alcohol stove capable of preventing pan from sliding

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110779051A (en) * 2019-10-28 2020-02-11 宁波方太厨具有限公司 Gas stove
CN112050260A (en) * 2020-07-27 2020-12-08 浙江科大电器股份有限公司 Integrated kitchen that possesses automatic flexible function of head
CN114060856A (en) * 2020-07-30 2022-02-18 南宁富桂精密工业有限公司 Gas stove system and gas stove control method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109084340A (en) * 2018-09-25 2018-12-25 南京英维尔科技服务有限公司 A kind of self-balancing intelligent gas-burning stove and balance control method
CN109084340B (en) * 2018-09-25 2024-03-29 南京英维尔科技服务有限公司 Self-balancing intelligent gas stove and balance control method
CN111006253A (en) * 2019-12-21 2020-04-14 刘海明 Alcohol stove capable of preventing pan from sliding
CN111006253B (en) * 2019-12-21 2022-05-27 刘海明 Alcohol stove capable of preventing pan from sliding

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