Intelligent kitchen intelligent monitoring device
By setting up monitoring and heating zones on the outside of the stove, and equipping them with liquid level sensors and solenoid valves, the smart kitchen intelligent monitoring device solves the problem of fire or explosion caused by liquid spillage, achieving higher safety and reliability.
Patent Information
- Application Number
- CN202422686860.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-04
AI Technical Summary
Existing smart kitchen cabinets pose a serious safety hazard because spilled liquids during cooking can easily lead to fires or equipment explosions.
A monitoring area and a heating area are set up on the outside of the stove, and equipped with a liquid level sensor and a solenoid valve. The liquid level sensor detects water overflow and controls the solenoid valve to shut off the gas pipeline. Combined with the sealing component, the monitoring area is covered when not in use to prevent accidental shutdown.
It effectively avoids the risk of poisoning or explosion caused by gas leaks, improves kitchen safety, and prevents the solenoid valve from being accidentally shut off due to water spraying during daily cleaning.
Smart Images

Figure CN223525184U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of intelligent kitchen intelligent monitoring devices. BACKGROUND
[0002] With the rapid economic development, the improvement of people's living standards, kitchen becomes more and more intelligent, intelligent kitchen equipment not only facilitates life, but also improves life quality. Intelligent kitchen cabinet is convenient for people's life and guarantee personal safety, and is relatively perfect, and although traditional intelligent kitchen cabinet is unique in fire prevention, when cooking, liquid boiling overflows container and flows to intelligent stove, causing equipment failure, leading to fire or equipment explosion, which seriously threatens people's personal safety. INVENTION CONTENTS
[0003] In view of the defects of the prior art, the technical problem to be solved by the utility model is to provide an intelligent kitchen intelligent monitoring device.
[0004] An intelligent kitchen intelligent monitoring device, comprising a cabinet, a cooktop is arranged on the cabinet, a mounting seat is arranged on the cooktop, a heating zone and a monitoring zone are sequentially arranged from inside to outside of the mounting seat, a first gap is communicated between the heating zone and the monitoring zone, and the bottom surface of the heating zone is higher than the bottom surface of the monitoring zone, a burner is arranged in the heating zone, a blocking member capable of blocking the opening of the monitoring zone to isolate the first gap is arranged on the mounting seat, a liquid level sensor is arranged in the monitoring zone, a gas pipeline connected with the burner is arranged in the cabinet, an electromagnetic valve is arranged on the gas pipeline, a controller is arranged on the cabinet, the liquid level sensor is electrically connected with the controller, and the controller is electrically connected with the electromagnetic valve.
[0005] In one embodiment, the blocking member comprises a cover ring, the monitoring zone is annularly recessed on the mounting seat, the heating zone is located in the inner ring of the monitoring zone, a connecting wall is arranged between the monitoring zone and the heating zone, the first gap is formed on the connecting wall and is uniformly distributed along the circumference of the connecting wall, the cover ring is fitted and rotatably arranged on the connecting wall and covers the opening of the monitoring zone, a plurality of second gaps are uniformly recessed on the inner side of the cover ring along the circumference, a plurality of stop blocks are arranged on the outer side wall of the connecting wall above the cover ring along the circumference, the number of the plurality of first gaps, the plurality of second gaps and the plurality of stop blocks are one-to-one corresponding, and the plurality of first gaps and the plurality of stop blocks are arranged in a staggered manner, and the stop blocks can block the second gaps.
[0006] In one embodiment, the blocking member further comprises a driving member arranged on the mounting seat and capable of driving the cover ring to rotate.
[0007] In one embodiment, the driving member comprises a telescopic rod movably arranged on the mounting base, the telescopic rod extends to above the heating area at the upper end, a pressing rod is arranged on one side of the telescopic rod, a guide chute is arranged on one side of the cover ring, the pressing rod is movably arranged in the guide chute, and a spring is arranged between the lower end of the telescopic rod and the mounting base.
[0008] In one embodiment, the lower end of the telescopic rod is provided with a heat insulation layer.
[0009] In one embodiment, the telescopic rod is made of high-temperature-resistant material.
[0010] In one embodiment, the liquid level sensor is a non-contact liquid level sensor.
[0011] In summary, the utility model has the beneficial effects that:
[0012] The utility model discloses a monitoring area is arranged on the outside of the stove head, when the container on the stove head in the heating area boils and overflows due to heating, the overflow will flow to the monitoring area through the heating area, when the liquid level sensor in the monitoring area detects water, can send the electric signal to the controller and closes the electromagnetic valve through the controller, and then realizes the closing of the pipeline of the gas pipeline, thereby effectively avoiding the risk of poisoning or explosion caused by gas leakage, and improving the safety.
[0013] And when the stove head is closed and not used, the monitoring area can be covered and blocked by the blocking member, effectively avoiding the error closing of the electromagnetic valve caused by water spraying or splashing into the monitoring area during daily cleaning or washing vegetables, and effectively further improving the safety of use. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a three-dimensional structure schematic view of a smart kitchen intelligent monitoring device in one embodiment of the utility model;
[0015] Figure 2 It is an enlarged schematic view of A in one embodiment of the utility model; Figure 2
[0016] Figure 3 It is a partial top view of a smart kitchen intelligent monitoring device in one embodiment of the utility model;
[0017] Figure 4 It is a partial sectional structure schematic view of a smart kitchen intelligent monitoring device in one embodiment of the utility model;
[0018] Figure 5 It is a partial three-dimensional structure schematic view of a smart kitchen intelligent monitoring device in one embodiment of the utility model. DETAILED DESCRIPTION
[0019] The utility model is further described below in combination with the drawings and specific embodiments:
[0020] As Figures 1 to 5 The embodiment of the utility model provides a smart kitchen intelligent monitoring device, which comprises a cabinet 1, a cooking bench 2 is arranged on the cabinet 1, a mounting seat 3 is arranged on the cooking bench 2, a heating area 4 and a monitoring area 5 are sequentially arranged from inside to outside of the mounting seat 3, a first gap 6 is communicated between the heating area 4 and the monitoring area 5, the bottom surface of the heating area 4 is higher than the bottom surface of the monitoring area 5, a burner 7 is arranged in the heating area 4, a blocking member 8 for blocking the opening of the monitoring area 5 to isolate the first gap 6 is arranged on the mounting seat 3, a liquid level sensor (not marked in the figure) is arranged in the monitoring area 5, a gas pipeline 9 connected with the burner 7 is arranged in the cabinet 1, an electromagnetic valve 10 is arranged on the gas pipeline 9, a controller is arranged on the cabinet 1, the liquid level sensor (not marked in the figure) is electrically connected with the controller (not marked in the figure), and the controller (not marked in the figure) is electrically connected with the electromagnetic valve 10.
[0021] Specifically, the liquid level sensor sends an electric signal to the controller after detecting the set water level, and the controller controls the opening and closing of the electromagnetic valve, which is a relatively common prior art, and the circuit control principle is not described in detail.
[0022] When the container placed on the burner in the heating area boils and overflows due to heating, the overflow will flow to the monitoring area through the first gap, when the liquid level sensor in the monitoring area detects the set water level, an electric signal can be sent to the controller and the electromagnetic valve is closed through the controller, and then the pipeline of the gas pipeline is closed, thereby effectively avoiding the risk of poisoning or explosion caused by gas leakage, and improving the safety;
[0023] When the burner is closed and not used, the monitoring area can be covered and blocked by the blocking member, effectively avoiding the error closing of the electromagnetic valve caused by water spraying or splashing into the monitoring area during daily cleaning or washing vegetables, and effectively further improving the safety of use.
[0024] Further, the sealing member 8 comprises a cover ring 81, the monitoring area 5 is annularly concave on the mounting base 3, the heating area 4 is located at the inner ring of the monitoring area 5, a connecting wall 82 is arranged between the monitoring area 5 and the heating area 4, the first notch 6 is formed on the connecting wall 82 and is uniformly distributed along the circumference of the connecting wall 82, the cover ring 81 is fitted and rotated on the connecting wall 82 and covers the opening of the monitoring area 5, the inner side of the cover ring 81 is uniformly concave with a plurality of second notches 83 along the circumference, the outer side wall of the connecting wall 82 is uniformly distributed with a plurality of stop blocks 84 above the cover ring 81 along the circumference, the number of the plurality of first notches 6, the plurality of second notches 83 and the plurality of stop blocks 84 are one-to-one corresponding, and the plurality of first notches 6 and the plurality of stop blocks 84 are staggered, and the stop block 84 can block the second notch 83.
[0025] Specifically, in the initial state, the second notch of the cover ring is one-to-one corresponding with the stop block, and then the stop block covers the second notch, thereby effectively preventing water from being sprayed or splashed into the second notch and flowing into the monitoring area to cause the electromagnetic valve to be closed incorrectly. When cooking food normally, the cover ring can be rotated, at this time, the second notch on the cover ring is rotated away from the stop block and is one-to-one corresponding with the first notch, and then the overflow water in the heating area can flow into the monitoring area through the first notch and the second notch, thereby realizing safe monitoring.
[0026] Further, the sealing member 8 further comprises a driving member 11 arranged on the mounting base 3 to drive the cover ring 81 to rotate. The driving member 11 comprises a telescopic rod 12 movably arranged on the mounting base 3, the upper end of the telescopic rod 12 extends above the heating area 4, one side of the telescopic rod 12 is provided with a pressing rod 13, one side of the cover ring 81 is provided with a guide inclined groove 14, the pressing rod 13 is movably arranged in the guide inclined groove 14, and the lower end of the telescopic rod 12 abuts against the mounting base 3 through a spring 15.
[0027] Specifically, in the initial state, the telescopic rod is in a connected state of protruding upward above the mounting base under the action of the spring force, and at this time, the second notch on the cover ring is in a corresponding position directly below the stop block, and is in a state of covering the monitoring area. When the container is placed in the heating area, the container will press against the telescopic rod, thereby causing the telescopic rod to move downward and compress the spring force. At this time, the pressing rod on the telescopic rod also moves downward, the pressing rod presses against the guide inclined groove of the cover ring downward, is guided to drive the cover ring to rotate relative to the mounting base, the second notch on the cover ring rotates away from the stop block and corresponds to the position of the first notch, and then the heating area and the monitoring area are communicated with each other through the first notch and the second notch, thereby realizing safe monitoring.
[0028] Further, the lower end of the telescopic rod 12 is provided with a heat insulation layer. Then, the heat is effectively prevented from being transmitted to the spring, thereby affecting the service life of the spring.
[0029] Further, the telescopic rod 12 is made of high-temperature resistant material.
[0030] Further, the liquid level sensor is a non-contact liquid level sensor, so that the liquid level sensor can be installed outside the mounting seat and a heat insulation layer is arranged between the liquid level sensor and the mounting seat.
[0031] Further, a buzzer can be arranged on the cabinet and electrically connected with the controller. The liquid level sensor sends an electric signal to the controller after detecting the set water level, and the controller controls the buzzer to open and close.
[0032] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the skilled in the art should understand that the utility model is not limited by the above examples, and the above examples and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. A smart kitchen intelligent monitoring device, comprising a cabinet (1), a cooking table (2) is arranged on the cabinet (1) respectively, characterized in that: The stove (2) is provided with a mounting seat (3), the mounting seat (3) is sequentially provided with a heating area (4) and a monitoring area (5) from inside to outside, the heating area (4) and the monitoring area (5) are communicated with a first gap (6), and the bottom surface of the heating area (4) is higher than the bottom surface of the monitoring area (5), the heating area (4) is provided with a burner (7), the mounting seat (3) is provided with a blocking member (8) capable of blocking the opening of the monitoring area (5) to isolate the first gap (6), the monitoring area (5) is provided with a liquid level sensor, the cabinet (1) is provided with a gas pipeline (9) connected with the burner (7), the gas pipeline (9) is provided with a solenoid valve (10), the cabinet (1) is provided with a controller, the liquid level sensor is electrically connected with the controller, and the controller is electrically connected with the solenoid valve (10). 2.The smart monitoring device of a smart kitchen of claim 1, wherein: The blocking member (8) comprises a cover ring (81), the monitoring area (5) is annularly recessed on the mounting seat (3), the heating area (4) is located in the inner ring of the monitoring area (5), a connecting wall (82) is arranged between the monitoring area (5) and the heating area (4), the first gap (6) is formed on the connecting wall (82) and is uniformly distributed along the circumference of the connecting wall (82), the cover ring (81) is rotatably sleeved on the connecting wall (82) and covers the opening of the monitoring area (5), a plurality of second gaps (83) are uniformly recessed on the inner side of the cover ring (81) along the circumference, a plurality of stop blocks (84) are arranged on the outer side wall of the connecting wall (82) above the cover ring (81) and along the circumference, the number of the plurality of first gaps (6), the plurality of second gaps (83) and the plurality of stop blocks (84) are one-to-one corresponding, and the plurality of first gaps (6) and the plurality of stop blocks (84) are arranged in an interlaced manner, and the stop block (84) can block the second gap (83). 3.The smart monitoring device of a smart kitchen of claim 2, characterized in that: The blocking member (8) further comprises a driving member (11) arranged on the mounting seat (3) and capable of driving the cover ring (81) to rotate. 4.The smart monitoring device of a smart kitchen of claim 3, characterized in that: The driving member (11) comprises a telescopic rod (12) movably arranged on the mounting seat (3), the upper end of the telescopic rod (12) extends above the heating area (4), a pressing rod (13) is arranged on one side of the telescopic rod (12), a guide inclined groove (14) is arranged on one side of the cover ring (81), the pressing rod (13) is movably arranged in the guide inclined groove (14), and a spring (15) is arranged between the lower end of the telescopic rod (12) and the mounting seat (3). 5.The smart monitoring device of a smart kitchen of claim 4, characterized in that: The lower end of the telescopic rod (12) is provided with a heat insulation layer. 6.The smart monitoring device of a smart kitchen of claim 4, characterized in that: The telescopic rod (12) is made of high-temperature resistant material. 7.The smart monitoring device of a smart kitchen of claim 1, wherein: The liquid level sensor is a non-contact liquid level sensor.