Fireproof intelligent wardrobe
By designing a motor-driven rotary nozzle and an automated fire extinguishing system in a fire-proof smart wardrobe, the problem that thermal insulation materials in the existing technology cannot effectively control the larger fire situation, and timely extinguishing the fire source and controlling the fire situation are achieved.
Patent Information
- Application Number
- CN202421133152.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-23
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-05-23
AI Technical Summary
When the existing fireproof smart wardrobe occurs, the insulation material cannot effectively control or extinguish the larger fire, and when manual cannot arrive in time, the expansion of the fire affects the timely extinguishing of the flames.
A fire-proof smart wardrobe is designed, equipped with a motor-driven nozzle. The nozzle rotates when the motor starts and the nozzle hole angle changes to achieve uniform fire extinguishing at multiple angles. At the same time, the wardrobe has a built-in temperature sensor and controller, which can automatically start the fire extinguishing system.
The timely extinguishing of the fire source has been achieved, making up for the defect that the thermal insulation materials in the existing technology cannot effectively control the larger fire situation, and ensuring the control and extinguishing of the fire when manual cannot arrive in time.
Smart Images

Figure CN222828990U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of fireproof intelligence, in particular to a fireproof intelligent wardrobe. Background Art
[0002] Smart wardrobes are usually equipped with sensors, microprocessors and connectivity, enabling them to sense the environment and respond accordingly. Through smart technology, users can remotely monitor and manage the status of the wardrobe through mobile phone applications or other remote control methods. Fireproof smart wardrobes use a series of fire safety technologies to prevent the occurrence, spread or mitigate the damage caused by fire. This may include but is not limited to fire detectors, fire alarm systems, fireproof materials, etc. Fireproof smart wardrobes usually use fireproof materials as the main construction material to increase their resistance to fire, but to a certain extent, there are still the following disadvantages.
[0003] The existing fireproof smart wardrobe changes the materials used in the wardrobe and uses heat-insulating materials for fire prevention. When a fire actually occurs, the heat-insulating materials can only slightly prevent the spread of the flames, because the wardrobe contains daily necessities except the wardrobe itself, and although the heat-insulating materials of the existing technology will not burn in an actual fire, it cannot guarantee that the items inside will burn, causing the fire source to continue to spread. When a fire occurs, the materials of the wardrobe will still burn when the fire becomes larger, and the fire cannot be well controlled and extinguished. If manual labor cannot reach the fire source in time, the fire will expand and affect the best time to extinguish the fire in time. Utility Model Content
[0004] The utility model provides a fireproof intelligent wardrobe, which has the advantage of timely extinguishing fire sources, so as to solve the problem that when the motor is started, the nozzle fixedly connected to the output end thereof will be driven to rotate, and the rotating nozzle will rotate on the inner wall of the bearing at this time. Because a plurality of spray holes are provided on the outer surface of the nozzle, the angle of the spray hole will be changed when the nozzle rotates, so that the angle of the sprayed fire extinguishing material will be changed, thereby realizing the spraying of the fire extinguishing material matched with the fire extinguisher to realize multi-angle uniform fire extinguishing in the wardrobe, and the nozzle can be used as a hanger when no fire occurs. In addition, the prior art is based on the existing technology and basically uses a heat insulation method for the actual fire extinguishing problem. Although the heat insulation has a certain effect of preventing the spread of flames when a fire occurs, it is unable to control and suppress the spread of the fire when the fire is large.
[0005] In order to achieve the purpose of intelligent fire extinguishing, the utility model provides the following technical solutions: a fireproof intelligent wardrobe, comprising a wardrobe and a cabinet door, the cabinet door is installed on one side surface of the wardrobe, a controller is installed on one side surface of the wardrobe, a temperature sensor is installed on one side surface of the wardrobe, a protective cover is installed on the top surface of the wardrobe, an electric telescopic rod is installed on the top surface of the wardrobe, a push plate is installed on one side surface of the electric telescopic rod, a signal transmitter is installed on one side surface of the wardrobe, a fire extinguishing component is installed on one side surface of the wardrobe, and an angle adjustment component is installed on one side surface of the wardrobe.
[0006] As a preferred technical solution of the utility model, there are two cabinet doors, which are equidistantly distributed on one side surface of the wardrobe, the cabinet doors are movably and rotatably connected to the wardrobe, the temperature sensor is electrically connected to the controller, the controller is electrically connected to the electric telescopic rod, the electric telescopic rod is fixedly connected to the push plate, and the controller is electrically connected to the signal transmitter.
[0007] As a preferred technical solution of the utility model, the fire extinguishing assembly includes an inlet pipe, a bracket is installed on the inner wall of the inlet pipe, a pointed cone is installed on one side surface of the bracket, a fire extinguisher is installed on one side surface of the push plate, a sealing cover is installed on one end of the fire extinguisher, and the inlet pipe is installed on one side surface of the cabinet door.
[0008] As a preferred technical solution of the utility model, the bracket is fixedly connected to the pointed cone, the inner wall of the introduction pipe is in movable contact with the fire extinguisher, one side surface of the sealing cover is in movable contact with the pointed cone, the fire extinguisher is fixedly connected to the push plate, and the outer surface of the fire extinguisher is in movable contact with the inner wall of the protective cover.
[0009] As a preferred technical solution of the utility model, the adjustment component includes a motor, a support frame is installed on the top of the inner wall of the wardrobe, a bearing is installed on one side surface of the inner wall of the wardrobe and the inner wall of the support frame, a nozzle is installed on the inner wall of the bearing, and a nozzle hole is opened on the outer surface of the nozzle, and the motor is installed on one side surface of the wardrobe.
[0010] As a preferred technical solution of the utility model, there are three bearings, one of which is distributed on the inner wall of the support frame, the outer surface of the bearing is fixedly connected to the inner wall of the support frame, the inner wall of the bearing is movably and rotatably connected to the outer surface of the nozzle, and the outer surfaces of the other two bearings are fixedly connected to the inner wall of the wardrobe.
[0011] As a preferred technical solution of the utility model, there are a plurality of spray holes, which are evenly distributed on the outer surface of the nozzle in a circular array, the motor is electrically connected to the controller, and the inner wall of the nozzle is in active contact with the outer surface of the introduction pipe.
[0012] Compared with the prior art, the utility model provides a fireproof intelligent wardrobe, which has the following beneficial effects:
[0013] The motor of the fireproof smart wardrobe will start synchronously. When the motor starts, it will drive the nozzle fixedly connected to its output end to rotate. At this time, the rotating nozzle will rotate on the inner wall of the bearing. Because a number of spray holes are opened on the outer surface of the nozzle, the angle of the spray hole will change when the nozzle rotates, so that the angle of the sprayed fire extinguishing material will change, thereby realizing the spraying of fire extinguishing materials in combination with the fire extinguisher to achieve multi-angle uniform fire extinguishing in the wardrobe, and the nozzle can be used as a clothes hanger when no fire occurs, thereby making up for the defects of the prior art that when a fire occurs, the thermal insulation material of the wardrobe cannot prevent the fire from growing larger and cannot well realize the control and extinguishing of a larger fire. If manual labor cannot arrive at the fire site in time, the fire will expand and affect the timely extinguishing of the flame. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the external structure of the utility model;
[0015] Figure 2 This is a schematic diagram of the internal structure of the utility model;
[0016] Figure 3 This is a schematic diagram of the internal structure of the utility model from another angle;
[0017] Figure 4 The utility model provides Figure 3 A schematic diagram of the structure enlargement of part A;
[0018] Figure 5 This is a schematic diagram of the structure of the utility model when viewed from above;
[0019] Figure 6 The utility model provides Figure 5 A magnified view of the structure of part B.
[0020] In the figure: 1. wardrobe; 2. cabinet door; 3. controller; 4. temperature sensor; 5. protective cover; 6. electric telescopic rod; 7. push plate; 8. signal transmitter; 9. inlet pipe; 10. bracket; 11. cone; 12. fire extinguisher; 13. sealing cover; 14. motor; 15. support frame; 16. bearing; 17. nozzle; 18. spray hole. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0022] Embodiment 1
[0023] See also Figure 1-Figure 3 The utility model discloses a fireproof intelligent wardrobe, comprising a wardrobe 1 and a cabinet door 2, the cabinet door 2 is installed on one side surface of the wardrobe 1, a controller 3 is installed on one side surface of the wardrobe 1, a temperature sensor 4 is installed on one side surface of the wardrobe 1, a protective cover 5 is installed on the top surface of the wardrobe 1, an electric telescopic rod 6 is installed on the top surface of the wardrobe 1, a push plate 7 is installed on one side surface of the electric telescopic rod 6, a signal transmitter 8 is installed on one side surface of the wardrobe 1, a fire extinguishing component is installed on one side surface of the wardrobe 1, and an angle adjustment component is installed on one side surface of the wardrobe 1.
[0024] There are two cabinet doors 2, which are equidistantly distributed on one side surface of the wardrobe 1. The cabinet doors 2 are movably and rotatably connected to the wardrobe 1, the temperature sensor 4 is electrically connected to the controller 3, the controller 3 is electrically connected to the electric telescopic rod 6, the electric telescopic rod 6 is fixedly connected to the push plate 7, and the controller 3 is electrically connected to the signal transmitter 8.
[0025] The fire extinguishing assembly includes an inlet pipe 9, a bracket 10 is installed on the inner wall of the inlet pipe 9, a pointed cone 11 is installed on one side surface of the bracket 10, a fire extinguisher 12 is installed on one side surface of the push plate 7, a sealing cover 13 is installed on one end of the fire extinguisher 12, and the inlet pipe 9 is installed on one side surface of the cabinet door 2.
[0026] The bracket 10 is fixedly connected to the pointed cone 11 , the inner wall of the introduction pipe 9 is in movable contact with the fire extinguisher 12 , and one side surface of the sealing cover 13 is in movable contact with the pointed cone 11 .
[0027] When a fire occurs in the wardrobe 1, the temperature sensor 4 installed inside the wardrobe 1 detects that the temperature inside the wardrobe 1 is too high. The controller 3 controls the signal transmitter 8 to send a fire alarm to the user's receiving end to remind the user of the fire. At this time, the controller 3 controls the electric telescopic rod 6 installed on the top surface of the wardrobe 1 to start. When the electric telescopic rod 6 starts, one end of it will extend out and drive the push plate 7 installed on one side of the surface to move along the protective cover 5 installed on the top surface of the wardrobe 1. At this time, the moving push plate will drive the fire extinguisher 12 to move. When the electric telescopic rod 6 is fully extended, the sealing cover 13 at one end of the fire extinguisher 12 will contact with the pointed cone 11 due to the movement, and the extension of the electric telescopic rod 6 will squeeze each other. When the squeezing type is generated, the pointed cone 11 will penetrate into the interior of the fire extinguisher 12.
[0028] Embodiment 2
[0029] Based on the above Example 1, please refer to Figure 4-Figure 6 , including a motor 14, a support frame 15 is installed on the top of the inner wall of the wardrobe 1, a bearing 16 is installed on one side surface of the inner wall of the wardrobe 1 and the inner wall of the support frame 15, a nozzle 17 is installed on the inner wall of the bearing 16, and a nozzle hole 18 is opened on the outer surface of the nozzle 17, and the motor 14 is installed on one side surface of the wardrobe 1.
[0030] There are three bearings 16, one of which is distributed on the inner wall of the support frame 15, the outer surface of the bearing 16 is fixedly connected to the inner wall of the support frame 15, the inner wall of the bearing 16 is movably and rotatably connected to the outer surface of the nozzle 17, and the outer surfaces of the other two bearings 16 are fixedly connected to the inner wall of the wardrobe 1.
[0031] There are a plurality of spray holes 18 equidistantly distributed in a circular array on the outer surface of the spray pipe 17 . The motor 14 is electrically connected to the controller 3 . The inner wall of the spray pipe 17 is in active contact with the outer surface of the introduction pipe 9 .
[0032] At this time, the fire extinguishing material will be sprayed out from the spray hole 18 and sprayed on the inside of the wardrobe 1. The controller 3 and the signal transmitter 8 are used in coordination to realize intelligent monitoring and processing of the fire source, thereby extinguishing the fire source in the wardrobe 1 and realizing the fire extinguishing function.
[0033] When the electric telescopic rod 6 is started, the motor 14 will start synchronously. When the motor 14 is started, the nozzle 17 fixedly connected to its output end will be driven to rotate. At this time, the rotating nozzle 17 will rotate on the inner wall of the bearing 16. Because a plurality of spray holes 18 are provided on the outer surface of the nozzle 17, the angle of the spray hole 18 will change when the nozzle 17 rotates, so that the angle of the sprayed fire extinguishing material will change, thereby realizing the spraying of the fire extinguishing material in combination with the fire extinguisher 12 to realize multi-angle uniform fire extinguishing in the wardrobe 1.
[0034] The working principle and use process of the utility model are as follows: when a fire occurs in the wardrobe 1, the temperature sensor 4 installed inside the wardrobe 1 detects that the temperature inside the wardrobe 1 is too high, and the controller 3 controls the signal transmitter 8 to send a fire alarm to the user's receiving end to remind the user of the fire. At this time, the controller 3 controls the electric telescopic rod 6 installed on the top surface of the wardrobe 1 to start. When the electric telescopic rod 6 starts, one end of it will extend and drive the push plate 7 installed on one side of the surface to move along the protective cover 5 installed on the top surface of the wardrobe 1. At this time, the moving push plate will drive the fire extinguisher 12 to move. When the electric telescopic rod 6 is fully extended, the sealing cover 13 at one end of the fire extinguisher 12 will interact with the pointed cone 11 due to the movement. When the electric telescopic rod 6 is in contact with the outer wall of the closet 1, the two are squeezed against each other by the extension of the electric telescopic rod 6. When the squeezing is generated, the extrusion-type pointed cone 11 will penetrate into the interior of the fire extinguisher 12, and the sealing cover 13 will be punctured. The pressurized fire extinguishing material inside the fire extinguisher 12 will be ejected by the pressure inside the fire extinguisher 12. At this time, the fire extinguishing material ejected by the pressure will be ejected into the inner wall of the introduction pipe 9 and into the interior of the nozzle 17 along the introduction pipe 9. The outer surface of the nozzle 17 is provided with a plurality of spray holes 18. At this time, the fire extinguishing material will be ejected from the spray holes 18 and sprayed on the interior of the closet 1. The controller 3 and the signal transmitter 8 are used in coordination to realize intelligent monitoring and processing of the fire source, thereby extinguishing the fire source in the closet 1, thereby realizing the function of fire extinguishing.
[0035] When the electric telescopic rod 6 is started, the motor 14 will start synchronously. When the motor 14 is started, the nozzle 17 fixedly connected to its output end will be driven to rotate. At this time, the rotating nozzle 17 will rotate on the inner wall of the bearing 16. Because a plurality of spray holes 18 are provided on the outer surface of the nozzle 17, the angle of the spray hole 18 will change when the nozzle 17 rotates, so that the angle of the sprayed fire extinguishing material will change, thereby realizing the spraying of the fire extinguishing material in combination with the fire extinguisher 12 to realize multi-angle uniform fire extinguishing in the wardrobe 1, and the nozzle 17 can be used as a clothes hanger when no fire occurs.
Claims
1. A fireproof smart wardrobe (1), comprising a wardrobe (1) and a cabinet door (2), wherein the cabinet door (2) is mounted on a side surface of the wardrobe (1), characterized in that: A controller (3) is installed on one side surface of the wardrobe (1), a temperature sensor (4) is installed on one side surface of the wardrobe (1), a protective cover (5) is installed on the top surface of the wardrobe (1), an electric telescopic rod (6) is installed on the top surface of the wardrobe (1), a push plate (7) is installed on one side surface of the electric telescopic rod (6), a signal transmitter (8) is installed on one side surface of the wardrobe (1), a fire extinguishing component is installed on one side surface of the wardrobe (1), and an angle adjustment component is installed on one side surface of the wardrobe (1).
2. A fireproof smart wardrobe (1) according to claim 1, characterized in that: There are two cabinet doors (2), and the two cabinet doors (2) are equidistantly distributed on a side surface of the wardrobe (1); the cabinet doors (2) are movably and rotatably connected to the wardrobe (1); the temperature sensor (4) is electrically connected to the controller (3); the controller (3) is electrically connected to the electric telescopic rod (6); the electric telescopic rod (6) is fixedly connected to the push plate (7); and the controller (3) is electrically connected to the signal transmitter (8).
3. A fireproof smart wardrobe (1) according to claim 1, characterized in that: The fire extinguishing assembly comprises an inlet pipe (9), a bracket (10) is installed on the inner wall of the inlet pipe (9), a pointed cone (11) is installed on one side surface of the bracket (10), a fire extinguisher (12) is installed on one side surface of the push plate (7), a sealing cover (13) is installed on one end of the fire extinguisher (12), and the inlet pipe (9) is installed on one side surface of the cabinet door (2).
4. A fireproof smart wardrobe (1) according to claim 3, characterized in that: The bracket (10) is fixedly connected to the pointed cone (11), the inner wall of the introduction pipe (9) is in movable contact with the fire extinguisher (12), and the side surface of the sealing cover (13) is in movable contact with the pointed cone (11).
5. The fireproof smart wardrobe (1) according to claim 1, characterized in that: The adjustment component comprises a motor (14); a support frame (15) is installed on the top of the inner wall of the wardrobe (1); a bearing (16) is installed on one side surface of the inner wall of the wardrobe (1) and the inner wall of the support frame (15); a nozzle (17) is installed on the inner wall of the bearing (16); a nozzle hole (18) is provided on the outer surface of the nozzle (17); and the motor (14) is installed on one side surface of the wardrobe (1).
6. A fireproof smart wardrobe (1) according to claim 5, characterized in that: There are three bearings (16), one of which is distributed on the inner wall of the support frame (15), the outer surface of the bearing (16) is fixedly connected to the inner wall of the support frame (15), the inner wall of the bearing (16) is movably and rotatably connected to the outer surface of the nozzle (17), and the outer surfaces of the other two bearings (16) are fixedly connected to the inner wall of the wardrobe (1).
7. The fireproof smart wardrobe (1) according to claim 5, characterized in that: There are a plurality of spray holes (18), which are evenly distributed in a circular array on the outer surface of the spray pipe (17). The motor (14) is electrically connected to the controller (3), and the inner wall of the spray pipe (17) is in active contact with the outer surface of the introduction pipe (9).