Intelligent fire extinguishing equipment for parking lot
By combining the electromagnetic adsorption and mobile drive mechanism of the intelligent fire extinguishing equipment with fire blankets and high-pressure spray guns, an automated and precise fire extinguishing solution is achieved, solving the problems of untimely response and low efficiency of traditional parking lot fire protection systems, and adapting to various parking lot layouts.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI AUTOMOBILE GROUP (BEIJING) CO LTD
- Filing Date
- 2025-02-21
- Publication Date
- 2026-04-21
AI Technical Summary
Traditional parking lot fire protection systems are slow to respond, rely on manual operation, and are inefficient, making it difficult to effectively control fires, especially in multi-story or densely populated parking lots where fire extinguishing efficiency is insufficient.
The intelligent fire extinguishing equipment, which includes a control circuit, a fire blanket device, and a moving drive mechanism, achieves precise movement and deployment of the fire blanket through electromagnetic adsorption and the moving drive mechanism. Combined with a high-pressure spray gun, it provides dual fire extinguishing methods, enabling automatic response and precise fire suppression.
It achieves automated fire suppression, improves fire suppression efficiency, reduces the risk of malfunction, and is highly adaptable, meeting the needs of parking lots of various sizes and complexities.
Smart Images

Figure CN224141380U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fire protection facilities technology, and relates to a fire extinguishing system, and more particularly to an intelligent fire extinguishing device for parking lots. Background Technology
[0002] With the increasing number of new energy vehicles, fire hazards in densely parked buildings or facilities such as multi-story parking garages, underground parking lots, and mechanical parking garages are gradually becoming apparent. Traditional fire-fighting devices are not able to respond promptly enough in the early stages of a fire, making it difficult to quickly and effectively control the fire, and they can easily affect nearby vehicles, leading to greater losses.
[0003] Ordinary parking lots typically handle fires using fire extinguishers and manual intervention. Fire extinguishers or fire hydrants are installed in various areas of the parking lot, and staff regularly check the equipment to ensure it is always ready for use. In the event of a fire, on-site personnel or parking lot managers manually operate fire extinguishers to directly extinguish the fire on the burning vehicle, or use fire hydrants in conjunction with fire hoses to extinguish the fire.
[0004] This method suffers from drawbacks such as reliance on manual labor, low efficiency, and high risk. Fires require discovery and alarm by personnel for timely response, which can easily lead to missing the optimal window for extinguishing a fire in its early stages. Furthermore, fire extinguishers have limited applicability and are ill-suited for rapidly spreading fires, while fire hydrants are complex to operate, demanding high levels of professional skills and emergency response from operators. In the event of a fire, manual intervention is not only inefficient but may also endanger personnel safety, failing to meet the fire safety requirements of modern parking lots.
[0005] Some parking lots primarily use fixed sprinkler systems for fire prevention, supplemented by smoke sensors for fire monitoring. Smoke sensors, located on the ceiling or walls of the parking lot, detect the concentration of smoke in the air. If a set threshold is reached, the system triggers an alarm and activates the sprinkler system. The sprinkler system then evenly sprays water or extinguishing agent across the entire area, attempting to extinguish the fire by covering the entire area.
[0006] This type of fixed fire suppression system suffers from drawbacks such as delayed response, resource waste, and limited fire extinguishing effectiveness. Because smoke sensors rely on smoke concentration to trigger alarms, a fire may only be detected after it has already spread. Furthermore, sprinkler systems cannot accurately locate the fire source, and the system cannot prevent the fire from spreading, making their fire extinguishing efficiency insufficient, especially in multi-story parking garages or densely parked vehicles.
[0007] In view of this, there is an urgent need to design a new fire suppression system in order to overcome at least some of the aforementioned shortcomings of existing fire suppression systems. Summary of the Invention
[0008] This invention provides an intelligent fire extinguishing device for parking lots, which can automatically respond to fires without human intervention, greatly improving fire extinguishing efficiency; at the same time, it can improve the accuracy of fire fighting and effectively reduce the risk of malfunction.
[0009] To solve the above-mentioned technical problems, according to one aspect of this utility model, the following technical solution is adopted:
[0010] A parking lot intelligent fire extinguishing device, the parking lot intelligent fire extinguishing device includes: a control circuit, a fire blanket device, a track and a moving drive mechanism;
[0011] The moving drive mechanism is connected to the fire blanket device and can drive the fire blanket device to move along a set track, thereby adjusting the position of the fire blanket device.
[0012] The output of the control circuit is connected to the input of the mobile drive mechanism, and can send control signals to the mobile drive mechanism.
[0013] In one embodiment of this utility model, the track includes a first track and a second track, the fire blanket device includes a fire blanket body and several electromagnetic adsorption devices, and the intelligent fire extinguishing equipment for the parking lot includes several mobile drive mechanisms.
[0014] The control circuit is connected to each electromagnetic adsorption device and each mobile drive mechanism respectively, and can send control signals to each electromagnetic adsorption device and each mobile drive mechanism.
[0015] The fire blanket body is provided with a magnetic adsorption mechanism in a designated area that can cooperate with the electromagnetic adsorption device, and it can be attracted to the electromagnetic adsorption device when the corresponding electromagnetic adsorption device is magnetic.
[0016] The electromagnetic adsorption device is set on the corresponding moving drive mechanism, with part of the moving drive mechanism set on the first track and part of the moving drive mechanism set on the second track.
[0017] The mobile drive mechanism can drive the electromagnetic adsorption device to move along a set track, thereby moving the fire blanket body to a set area.
[0018] As one embodiment of this utility model, the intelligent fire extinguishing equipment for parking lots includes four electromagnetic adsorption devices and four mobile drive mechanisms; the four electromagnetic adsorption devices are respectively a first electromagnetic adsorption device, a second electromagnetic adsorption device, a third electromagnetic adsorption device, and a fourth electromagnetic adsorption device.
[0019] The four moving drive mechanisms include a first moving drive mechanism, a second moving drive mechanism, a third moving drive mechanism, and a fourth moving drive mechanism;
[0020] The first electromagnetic adsorption device is based on the first moving drive mechanism, the second electromagnetic adsorption device is based on the second moving drive mechanism, the third electromagnetic adsorption device is based on the third moving drive mechanism, and the fourth electromagnetic adsorption device is based on the fourth moving drive mechanism.
[0021] The first electromagnetic adsorption device and the second electromagnetic adsorption device are disposed on the first track, and the third electromagnetic adsorption device and the fourth electromagnetic adsorption device are disposed on the second track.
[0022] As one embodiment of the present invention, the fire blanket device includes a fire blanket body and a fire blanket deployment drive mechanism, wherein the fire blanket deployment drive mechanism includes a connecting mechanism and a third drive mechanism.
[0023] The connecting mechanism is connected to the third driving mechanism, and the third driving mechanism can drive the connecting mechanism to move along a set path;
[0024] The connecting mechanism can connect to a set part of the fire blanket body, and after being driven in a set direction by the third driving mechanism, it can drive the fire blanket body to unfold.
[0025] As one embodiment of this utility model, the connecting mechanism includes at least one second electromagnetic adsorption mechanism, and the set area of the fire blanket body is provided with a second adsorption and engagement mechanism that can be adsorbed by the second electromagnetic adsorption mechanism when the second electromagnetic adsorption mechanism is magnetic.
[0026] The output terminal of the control circuit is connected to the input terminal of the second electromagnetic adsorption mechanism, and can control the switching of the second electromagnetic adsorption mechanism, thereby controlling whether there is magnetic adsorption force between the second electromagnetic adsorption mechanism and the second adsorption cooperation mechanism.
[0027] The fire blanket deployment drive mechanism further includes a third track, and the third drive mechanism can drive the connecting mechanism to move along the third track.
[0028] The fire blanket body is arranged along a pivot and can be rolled up along the pivot; the third track is arranged horizontally and perpendicular to the central axis of the pivot.
[0029] The set area of the rotating shaft is provided with at least one third electromagnetic adsorption mechanism, and the set area of the fire blanket body is provided with a third adsorption cooperation mechanism that can be adsorbed by the third electromagnetic adsorption mechanism when the third electromagnetic adsorption mechanism is magnetic.
[0030] The output terminal of the control circuit is connected to the input terminal of the third electromagnetic adsorption mechanism, and can control the switch of the third electromagnetic adsorption mechanism, thereby controlling whether there is an adsorption force between the third electromagnetic adsorption mechanism and the third adsorption coordination mechanism.
[0031] As one embodiment of the present utility model, the mobile drive mechanism includes a fire blanket height adjustment mechanism. The fire blanket height adjustment mechanism is connected to the rotating shaft and can adjust the height of the rotating shaft, thereby adjusting the height of the fire blanket body supported by the rotating shaft.
[0032] The intelligent fire extinguishing equipment in the parking lot further includes a second height adjustment mechanism, which is connected to the fire blanket deployment drive mechanism and can adjust the height of the fire blanket deployment drive mechanism.
[0033] The rotating shaft is connected to a rotating shaft drive mechanism, which can drive the rotating shaft to rotate.
[0034] During the retraction of the fire blanket, the fire blanket unfolding drive mechanism drives the connecting mechanism to move in the opposite direction to the first direction through the third drive mechanism, thereby retracting the fire blanket body, thus serving as the fire blanket retraction drive mechanism.
[0035] As one embodiment of this utility model, the intelligent fire extinguishing equipment for parking lots further includes a medium fire extinguishing device, a fifth moving drive mechanism, and a fourth track; the medium fire extinguishing device is disposed on the fifth moving drive mechanism, and the fifth moving drive mechanism is disposed on the fourth track, which can drive the medium fire extinguishing device to move along the fourth track.
[0036] In one embodiment of this utility model, the first track, the second track, and the fourth track are arranged in parallel, the fourth track is arranged between the first track and the second track, and the height of the fourth track is higher than the height of the first track and the second track;
[0037] The medium fire extinguishing device includes a high-pressure spray gun device; the high-pressure spray gun device is provided with a spray nozzle and a spray nozzle rotation drive mechanism, the spray nozzle rotation drive mechanism is connected to the spray nozzle and can drive the spray nozzle to rotate.
[0038] The intelligent fire extinguishing equipment in the parking lot is equipped with a height adjustment mechanism for adjusting the height of the high-pressure spray gun device; the control circuit adjusts the height of the high-pressure spray gun device, and the high-pressure spray gun device also includes a spray orifice adjustment mechanism that can adjust the size of the spray orifice.
[0039] In one embodiment of this utility model, the mobile drive mechanism includes a drive motor; the control circuit includes a main control circuit, several electromagnetic control circuits, and several drive motor control circuits, wherein the main control circuit is connected to each electromagnetic control circuit and each drive motor control circuit respectively.
[0040] The beneficial effects of this utility model are as follows: The intelligent fire extinguishing equipment for parking lots proposed in this utility model can automatically respond to fires without manual intervention, greatly improving fire extinguishing efficiency; precise movement of the fire-fighting device is achieved through slider control, effectively reducing the risk of malfunction; combining fire blankets and high-pressure spray guns provides dual fire extinguishing methods, ensuring rapid control of the fire; in addition, the system is highly adaptable, and the slide rail configuration can be flexibly adjusted according to the layout of different parking lots to meet the needs of parking lots of various sizes and complexities. The overall solution achieves an organic combination of intelligence, efficiency, and flexibility, providing a reliable fire protection solution for modern parking lots. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of the composition of an intelligent fire extinguishing device for parking lots in one embodiment of the present invention.
[0042] Figure 2 This is a schematic diagram of the structure of an intelligent fire extinguishing device for parking lots in one embodiment of the present invention.
[0043] Figure 3 This is a schematic diagram of the structure of the fire blanket device rolling up and unfolding in one embodiment of the present invention.
[0044] Figure 4 This is another structural schematic diagram of the fire blanket device rolling up and unfolding in one embodiment of the present invention.
[0045] Figure 5 This is a schematic diagram of the fire blanket device in one embodiment of the present invention.
[0046] Figure 6 This is a schematic diagram of the high-pressure spray gun device in one embodiment of the present invention.
[0047] Figure 7 This is a schematic diagram of the structure of the fire blanket device and the fire blanket height adjustment mechanism in one embodiment of the present invention.
[0048] Figure 8 This is a schematic diagram of the structure of an intelligent fire extinguishing device for parking lots in one embodiment of the present invention. Detailed Implementation
[0049] The preferred embodiments of this utility model are described in detail below with reference to the accompanying drawings.
[0050] To further understand this utility model, preferred embodiments of this utility model are described below in conjunction with examples. However, it should be understood that these descriptions are only for further illustrating the features and advantages of this utility model, and not for limiting the scope of the claims of this utility model.
[0051] The description in this section pertains to only a few typical embodiments, and this utility model is not limited to the scope of the embodiments described. Substitution of identical or similar prior art methods with some technical features in the embodiments is also within the scope of this utility model's description and protection.
[0052] The term "connection" in the instruction manual includes both direct and indirect connections.
[0053] This utility model discloses an intelligent fire extinguishing device for parking lots. Figure 1 This is a schematic diagram of the composition of an intelligent fire extinguishing device for parking lots in one embodiment of the present invention. Figure 2 This is a structural schematic diagram of an intelligent fire extinguishing device for parking lots according to one embodiment of the present invention; please refer to [link / reference]. Figure 1 , Figure 2 The intelligent fire extinguishing equipment for the parking lot includes: a control circuit 1, a fire blanket device 2, a track 4, and a moving drive mechanism 3.
[0054] The moving drive mechanism 3 is connected to the fire blanket device 2 and can drive the fire blanket device 2 to move along the track 4, thereby adjusting the position of the fire blanket device 3. The output terminal of the control circuit 1 is connected to the input terminal of the moving drive mechanism 3 and can send control signals to the moving drive mechanism 3. Of course, the track 4 can also be omitted, and the moving drive mechanism 3 can drive the fire blanket device 2 to move along a set path to adjust the position of the fire blanket device 3. The moving drive mechanism 3 can adjust the lateral and / or longitudinal movement of the fire blanket device 2. The intelligent fire extinguishing equipment in the parking lot can work in conjunction with the infrared temperature measuring instrument 6.
[0055] In one embodiment of this utility model, the track 4 includes a first track 41 and a second track 42, the fire blanket device 2 includes a fire blanket body 21 and a plurality of electromagnetic adsorption devices 22, and the intelligent fire extinguishing equipment for the parking lot includes a plurality of mobile drive mechanisms 3; the control circuit 1 is connected to each electromagnetic adsorption device 22 and each mobile drive mechanism 3 respectively, and can send control signals to each electromagnetic adsorption device 22 and each mobile drive mechanism 3.
[0056] Figure 4 This is a schematic diagram of the fire blanket device in one embodiment of the present invention; please refer to [link / reference]. Figure 4In one embodiment of this utility model, a magnetic adsorption mechanism is provided in a designated area of the fire blanket body 21, which can cooperate with the electromagnetic adsorption device 22. When the corresponding electromagnetic adsorption device 22 is magnetic, the mechanism attracts the device. The electromagnetic adsorption device 22 is disposed on a corresponding moving drive mechanism 3, with part of the moving drive mechanism 3 disposed on the first track 41 and part of the moving drive mechanism 3 disposed on the second track 42. The moving drive mechanism 3 can drive the electromagnetic adsorption device 22 to move along the designated track, thereby moving the fire blanket body 21 to the designated area.
[0057] In one embodiment, the intelligent fire extinguishing device for the parking lot includes four electromagnetic adsorption devices 22 and four mobile drive mechanisms 3 (the electromagnetic adsorption devices 22 may be part of the fire blanket device or may not be part of the fire blanket device); the four electromagnetic adsorption devices 22 are respectively a first electromagnetic adsorption device, a second electromagnetic adsorption device, a third electromagnetic adsorption device, and a fourth electromagnetic adsorption device; the four mobile drive mechanisms 3 include a first mobile drive mechanism, a second mobile drive mechanism, a third mobile drive mechanism, and a fourth mobile drive mechanism.
[0058] The first electromagnetic adsorption device is based on a first moving drive mechanism, the second electromagnetic adsorption device is based on a second moving drive mechanism, the third electromagnetic adsorption device is based on a third moving drive mechanism, and the fourth electromagnetic adsorption device is based on a fourth moving drive mechanism. The first and second electromagnetic adsorption devices are mounted on the first track 41, and the third and fourth electromagnetic adsorption devices are mounted on the second track 42.
[0059] Each moving drive mechanism may include a drive motor; the control circuit includes a main control circuit, several electromagnetic control circuits, and several drive motor control circuits, with the main control circuit connected to each electromagnetic control circuit and each drive motor control circuit respectively.
[0060] Figure 3 This is a schematic diagram of the fire blanket device rolling up and unfolding in one embodiment of the present invention; please refer to... Figure 3 In one embodiment of the present invention, the fire blanket device includes a fire blanket body 21 and a fire blanket deployment drive mechanism 24, wherein the fire blanket deployment drive mechanism 24 includes a connecting mechanism 241 and a third drive mechanism 242.
[0061] The connecting mechanism 241 is connected to the third driving mechanism 242, which drives the connecting mechanism 241 to move along a predetermined path. The connecting mechanism 241 connects to a predetermined part of the fire blanket body 21, and when driven in a predetermined direction by the third driving mechanism 242, it unfolds the fire blanket body 21. During the unfolding process, the rotating shaft 211 rotates with the fire blanket body 21, with one end of the rotating shaft 211 fixedly connected to one end of the fire blanket body 21.
[0062] In one embodiment, the connecting mechanism 241 includes at least one second electromagnetic adsorption mechanism 2411, and the designated area of the fire blanket body 21 is provided with a second adsorption mechanism that can be adsorbed by the second electromagnetic adsorption mechanism 2411 when the second electromagnetic adsorption mechanism 2411 is magnetic.
[0063] The output terminal of the control circuit 1 is connected to the input terminal of the second electromagnetic adsorption mechanism 2411, and can control the switching of the second electromagnetic adsorption mechanism 2411, thereby controlling whether there is magnetic adsorption force between the second electromagnetic adsorption mechanism 2411 and the second adsorption cooperation mechanism.
[0064] The fire blanket unfolding drive mechanism further includes a third track 243, and the third drive mechanism 242 can drive the connecting mechanism 241 to move along the third track 243. The fire blanket body 21 is arranged along a rotating shaft 211 and can be rolled up along the rotating shaft 211; the third track 243 is arranged horizontally and is perpendicular to the central axis of the rotating shaft 211.
[0065] The rotating shaft 211 has at least one third electromagnetic adsorption mechanism 2111 in its designated area, and the fire blanket body 21 has a third adsorption mechanism in its designated area that can be adsorbed by the third electromagnetic adsorption mechanism 2111 when it is magnetic. The output terminal of the control circuit 1 is connected to the input terminal of the third electromagnetic adsorption mechanism 2111, and can control the switching of the third electromagnetic adsorption mechanism 2111, thereby controlling whether there is an adsorption force between the third electromagnetic adsorption mechanism 2111 and the third adsorption mechanism.
[0066] In one embodiment of this utility model, the moving drive mechanism includes a fire blanket height adjustment mechanism 7, which is connected to the fire blanket body 21 (a fulcrum connecting two points of the fire blanket body 21) and can adjust the height of the fire blanket body 21. In one embodiment, the fire blanket height adjustment mechanism 7 can adjust the movement of the fire blanket body 21 along the track 8; the fire blanket height adjustment mechanism 7 can be driven by a ball screw. The fire blanket height adjustment mechanism 7 includes a drive motor, a ball screw, a nut, and a slider, the slider being connected to the fire blanket body 21; the drive motor drives the ball screw to rotate, the nut is nested in the ball screw and can slide in a set direction under the drive of the ball screw; the nut is connected to the slider, thereby driving the slider to slide along the track 8. Of course, the movement of the fire blanket height adjustment mechanism can also be driven by other methods.
[0067] The moving drive mechanism may include a fire blanket lateral adjustment mechanism 9, which can adjust the left and right positions of the fire blanket body 21. The fire blanket lateral adjustment mechanism 9 works in conjunction with the track 10, and is connected to the fire blanket body 21, driving the fire blanket body 21 to move along the track 10. In one embodiment, the fire blanket lateral adjustment mechanism 9 may also employ a ball screw drive. The fire blanket lateral adjustment mechanism 9 includes a drive motor, a ball screw, a nut, and a slider. The slider is connected to the fire blanket body 21; the drive motor drives the ball screw to rotate, and the nut is nested within the ball screw, allowing it to slide in a set direction under the drive of the ball screw; the nut is connected to the slider, thereby driving the slider to slide along the track 10. Of course, other drive methods can also be used to move the fire blanket height adjustment mechanism.
[0068] Figure 8 This is a structural schematic diagram of an intelligent fire extinguishing device for parking lots according to one embodiment of the present invention; please refer to [link / reference]. Figure 8 In one embodiment of this utility model, the moving drive mechanism may include a fire blanket height adjustment mechanism 7 and a fire blanket lateral adjustment mechanism 9. The fire blanket height adjustment mechanism 7 may be located on both sides of the fire blanket body 21, with a motor 71 and a flexible connecting mechanism 72 on each side; one end of the flexible connecting mechanism 72 is fixed to a rotating shaft, and the other end is connected to the fulcrum of the fire blanket body 21. The motor 71 drives the flexible connecting mechanism 72 to roll up or release through a transmission mechanism, thereby adjusting the height of the fire blanket body 71.
[0069] The fire blanket lateral adjustment mechanism 9 can be driven by the ball screw as described above, or by other driving methods (such as pneumatic, hydraulic, motor with gears or / and racks, etc.). The slider of the fire blanket lateral adjustment mechanism 9 is connected to the support point of the fire blanket height adjustment mechanism 7 through a connecting mechanism, thereby adjusting the lateral position of the fire blanket height adjustment mechanism 7, and thus adjusting the lateral position of the fire blanket body 21.
[0070] In addition, the intelligent fire extinguishing equipment in the parking lot may also include a second height adjustment mechanism; the second height adjustment mechanism is connected to the fire blanket deployment drive mechanism 24 and can adjust the height of the fire blanket deployment drive mechanism 24.
[0071] The rotating shaft 211 can be connected to a rotating shaft drive mechanism, which can drive the rotating shaft 211 to rotate. The rotating shaft drive mechanism can be a drive motor, which drives the rotating shaft 211 to rotate through a transmission mechanism; the transmission mechanism can include a gear assembly, which can be a single gear or a gear set composed of multiple gears (such as planetary gears).
[0072] In one embodiment of the present invention, the fire blanket unfolding drive mechanism 24 drives the connecting mechanism to move in the opposite direction to the first direction during the retraction of the fire blanket body 21 through the third drive mechanism, thereby retracting the fire blanket body 21, thus serving as a fire blanket retraction drive mechanism.
[0073] In addition, such as Figure 2 As shown, the intelligent fire extinguishing equipment for the parking lot may further include a medium fire extinguishing device 5, a fifth moving drive mechanism 51, and a fourth track 52; the medium fire extinguishing device 5 is disposed on the fifth moving drive mechanism 51, and the fifth moving drive mechanism 51 is disposed on the fourth track 52, which can drive the medium fire extinguishing device 5 to move along the fourth track 52.
[0074] The first track 41, the second track 42, and the fourth track 52 are arranged in parallel. The fourth track 52 is located between the first track 41 and the second track 42, and the height of the fourth track 52 is higher than the height of the first track 41 and the second track 42.
[0075] The medium extinguishing device 5 may include a high-pressure spray gun device. Figure 5 This is a schematic diagram of the high-pressure spray gun device in one embodiment of the present invention; please refer to [link / reference]. Figure 5In one embodiment of this utility model, the high-pressure spray gun device is provided with a spray nozzle 52 and a spray nozzle rotation drive mechanism 53. The spray nozzle rotation drive mechanism 53 is connected to the spray nozzle 52 and can drive the spray nozzle 52 to rotate. Furthermore, the high-pressure spray gun device may also include a slider 54, and the spray nozzle 52 and the spray nozzle rotation drive mechanism 53 are based on the slider 54. In one embodiment, the high-pressure spray gun can spray liquid extinguishing media such as fire-fighting water; in another embodiment, the high-pressure spray gun can spray powdered solid extinguishing media.
[0076] In one embodiment, the intelligent fire extinguishing equipment for parking lots can also be equipped with a height adjustment mechanism for adjusting the height of the high-pressure spray gun device. In one application scenario of this utility model, the control circuit can adjust the height of the high-pressure spray gun device according to the size of the fire area, and adjust the spray angle of the spray nozzle through the spray nozzle rotation drive mechanism; in addition, the size of the spray hole of the high-pressure spray gun device can also be electrically adjusted through the spray hole adjustment mechanism, thereby adjusting the fire extinguishing range of the high-pressure spray gun device.
[0077] In summary, the intelligent fire extinguishing equipment for parking lots proposed in this utility model can automatically respond to fires without manual intervention, significantly improving fire extinguishing efficiency. It achieves precise movement of the fire-fighting device through slider control, effectively reducing the risk of malfunction. Combining fire blankets and high-pressure spray guns provides dual fire extinguishing methods, ensuring rapid control of the fire. Furthermore, the system is highly adaptable, allowing for flexible adjustment of the slide rail configuration according to the layout of different parking lots, meeting the needs of parking lots of various sizes and complexities. The overall solution achieves an organic combination of intelligence, efficiency, and flexibility, providing a reliable fire protection solution for modern parking lots.
[0078] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0079] The description and application of this utility model herein are illustrative and not intended to limit the scope of the utility model to the above embodiments. The effects or advantages involved in the embodiments may not be manifested in the embodiments due to various factors, and the description of effects or advantages is not intended to limit the embodiments. Variations and modifications of the embodiments disclosed herein are possible, and various substitutions and equivalents of the components in the embodiments are well known to those skilled in the art. It should be clear to those skilled in the art that this utility model can be implemented in other forms, structures, arrangements, proportions, and with other components, materials, and parts without departing from the spirit or essential characteristics of this utility model. Other variations and modifications can be made to the embodiments disclosed herein without departing from the scope and spirit of this utility model.
Claims
1. A smart fire extinguishing device for parking lots, characterized in that, The intelligent fire extinguishing equipment for the parking lot includes: a control circuit, a fire blanket device, and a moving drive mechanism; The moving drive mechanism is connected to the fire blanket device and can drive the fire blanket device to move along a set path, thereby adjusting the position of the fire blanket device. The output terminal of the control circuit is connected to the input terminal of the mobile drive mechanism, and can send control signals to the mobile drive mechanism. The fire blanket device includes a fire blanket body, and the intelligent fire extinguishing equipment for parking lots further includes a fire blanket deployment drive mechanism, which includes a connecting mechanism and a third drive mechanism. The connecting mechanism is connected to the third driving mechanism, and the third driving mechanism can drive the connecting mechanism to move along a set path; The connecting mechanism can connect to a designated part of the fire blanket body, and after being driven in the first direction by the third driving mechanism, it can cause the fire blanket body to unfold.
2. The intelligent fire extinguishing device for parking lots according to claim 1, characterized in that: The intelligent fire extinguishing equipment for parking lots further includes a track; the track includes a first track and a second track; the fire blanket device includes a fire blanket body and several electromagnetic adsorption devices; the intelligent fire extinguishing equipment for parking lots includes several moving drive mechanisms. The control circuit is connected to each electromagnetic adsorption device and each mobile drive mechanism respectively, and can send control signals to each electromagnetic adsorption device and each mobile drive mechanism. The fire blanket body is provided with a magnetic adsorption mechanism in a designated area that can cooperate with the electromagnetic adsorption device, and it can be attracted to the electromagnetic adsorption device when the corresponding electromagnetic adsorption device is magnetic. The electromagnetic adsorption device is set on the corresponding moving drive mechanism, with part of the moving drive mechanism set on the first track and part of the moving drive mechanism set on the second track. The mobile drive mechanism can drive the electromagnetic adsorption device to move along a set track, thereby moving the fire blanket body to a set area.
3. The intelligent fire extinguishing device for parking lots according to claim 2, characterized in that: The intelligent fire extinguishing equipment for the parking lot includes four electromagnetic adsorption devices and four mobile drive mechanisms; the four electromagnetic adsorption devices are the first electromagnetic adsorption device, the second electromagnetic adsorption device, the third electromagnetic adsorption device, and the fourth electromagnetic adsorption device. The four moving drive mechanisms include a first moving drive mechanism, a second moving drive mechanism, a third moving drive mechanism, and a fourth moving drive mechanism; The first electromagnetic adsorption device is based on the first moving drive mechanism, the second electromagnetic adsorption device is based on the second moving drive mechanism, the third electromagnetic adsorption device is based on the third moving drive mechanism, and the fourth electromagnetic adsorption device is based on the fourth moving drive mechanism. The first electromagnetic adsorption device and the second electromagnetic adsorption device are disposed on the first track, and the third electromagnetic adsorption device and the fourth electromagnetic adsorption device are disposed on the second track.
4. The intelligent fire extinguishing device for parking lots according to claim 1, characterized in that: The connecting mechanism includes at least one second electromagnetic adsorption mechanism, and the designated area of the fire blanket body is provided with a second adsorption and engagement mechanism that can be adsorbed by the second electromagnetic adsorption mechanism when the second electromagnetic adsorption mechanism is magnetic. The output terminal of the control circuit is connected to the input terminal of the second electromagnetic adsorption mechanism, and can control the switch of the second electromagnetic adsorption mechanism, thereby controlling whether there is magnetic adsorption force between the second electromagnetic adsorption mechanism and the second adsorption cooperation mechanism. The fire blanket deployment drive mechanism further includes a third track, which drives the connecting mechanism to move along the third track.
5. The intelligent fire extinguishing device for parking lots according to claim 4, characterized in that: The fire blanket body is arranged along a pivot and can be rolled up along the pivot; the third track is arranged horizontally and perpendicular to the central axis of the pivot. The set area of the rotating shaft is provided with at least one third electromagnetic adsorption mechanism, and the set area of the fire blanket body is provided with a third adsorption cooperation mechanism that can be adsorbed by the third electromagnetic adsorption mechanism when the third electromagnetic adsorption mechanism is magnetic. The output terminal of the control circuit is connected to the input terminal of the third electromagnetic adsorption mechanism, and can control the switch of the third electromagnetic adsorption mechanism, thereby controlling whether there is an adsorption force between the third electromagnetic adsorption mechanism and the third adsorption coordination mechanism.
6. The intelligent fire extinguishing device for parking lots according to claim 5, characterized in that: The moving drive mechanism includes a fire blanket height adjustment mechanism, which is connected to the rotating shaft and can adjust the height of the rotating shaft, thereby adjusting the height of the fire blanket body supported by the rotating shaft. The intelligent fire extinguishing equipment in the parking lot further includes a second height adjustment mechanism, which is connected to the fire blanket deployment drive mechanism and can adjust the height of the fire blanket deployment drive mechanism. The rotating shaft is connected to a rotating shaft drive mechanism, which can drive the rotating shaft to rotate. During the retraction of the fire blanket, the fire blanket unfolding drive mechanism drives the connecting mechanism to move in the opposite direction to the first direction via the third drive mechanism, thereby retracting the fire blanket body, thus serving as the fire blanket retraction drive mechanism.
7. The intelligent fire extinguishing device for parking lots according to claim 2, characterized in that: The intelligent fire extinguishing equipment for the parking lot further includes a medium fire extinguishing device, a fifth moving drive mechanism, and a fourth track; the medium fire extinguishing device is disposed on the fifth moving drive mechanism, and the fifth moving drive mechanism is disposed on the fourth track, which can drive the medium fire extinguishing device to move along the fourth track.
8. The intelligent fire extinguishing device for parking lots according to claim 7, characterized in that: The first track, the second track, and the fourth track are arranged in parallel, and the fourth track is located between the first track and the second track, with the height of the fourth track being higher than the height of the first track and the second track. The medium fire extinguishing device includes a high-pressure spray gun device; the high-pressure spray gun device is provided with a spray nozzle and a spray nozzle rotation drive mechanism, the spray nozzle rotation drive mechanism is connected to the spray nozzle and can drive the spray nozzle to rotate. The intelligent fire extinguishing equipment in the parking lot is equipped with a height adjustment mechanism for adjusting the height of the high-pressure spray gun device; the control circuit adjusts the height of the high-pressure spray gun device, and the high-pressure spray gun device also includes a spray orifice adjustment mechanism that can adjust the size of the spray orifice.
9. The intelligent fire extinguishing device for parking lots according to claim 1, characterized in that: The moving drive mechanism includes a drive motor; The control circuit includes a main control circuit, several electromagnetic control circuits, and several drive motor control circuits. The main control circuit is connected to each electromagnetic control circuit and each drive motor control circuit.