Lighting equipment with warning function
By introducing status detection modules and automatic cleaning mechanisms into lighting equipment, the problems of traditional lighting equipment being difficult to visually display and manually clean have been solved. Real-time monitoring of the equipment's operating status and automatic cleaning have been achieved, improving equipment stability and cleaning efficiency.
Patent Information
- Application Number
- CN202510890828.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2025-09-16
AI Technical Summary
Traditional lighting equipment lacks an intuitive status display method, making it difficult to understand the equipment's operating status in real time. Dust and dirt on the surface of the lamp affect the lighting effect, and manual cleaning is costly and poses safety risks.
A lighting device with a status detection module was designed. Sensors were used to monitor device parameters in real time, and LED light groups of different colors were used to display the operating status. At the same time, a processing mechanism was set up to automatically clean the surface of the lighting lamp, and the cleaning intensity was dynamically adjusted by the synergistic effect of water and wind.
It realizes real-time and accurate display of equipment operation status, reduces manual maintenance costs, improves equipment stability and cleaning efficiency, and ensures lighting effects and safety.
Smart Images

Figure CN120650685A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of lighting equipment technology, and in particular to a lighting equipment with a warning function. Background Art
[0002] In various fields such as industrial production, commercial operations, and public facilities management, lighting equipment plays an indispensable role as the infrastructure that provides lighting and ensures normal operations and activities. With the continuous advancement of technology and the increasing complexity of application scenarios, the functional requirements for lighting equipment are becoming more diversified. Among them, lighting equipment with warning functions has gradually received widespread attention.
[0003] In traditional lighting equipment application scenarios, the operating status of the equipment usually lacks an intuitive and effective display method. It is often difficult for staff to understand in real time and accurately whether the equipment is in different states such as normal operation, standby or abnormal operation. For example, in the production workshops of some large factories, there are a large number of lighting equipment and they are widely distributed. When some equipment malfunctions, due to the lack of obvious status prompts, staff may not be able to discover and deal with it in time. This may not only lead to production interruptions and affect production efficiency, but may also cause more serious failures or even safety accidents due to the continued operation of the equipment in an abnormal state.
[0004] At the same time, during the long-term use of lighting equipment, dust, dirt and other impurities are easily accumulated on the surface of the lighting lamp. These impurities will adhere to the surface of the lighting lamp, seriously affecting the light transmittance of the lighting lamp, and thus causing a significant decrease in the lighting effect. Taking outdoor lighting equipment as an example, in an environment with strong wind and sand or high air humidity, the surface of the lighting lamp will soon be covered with dust or water vapor, making the originally bright light dim and unable to meet normal lighting needs. At present, the problem of cleaning the surface of the lighting lamp usually requires manual cleaning on a regular basis, which not only consumes a lot of manpower and time costs, but also in some special environments, manual cleaning also has certain safety risks. Summary of the Invention
[0005] The purpose of the present invention is to solve the above technical problems, thereby providing a lighting device with a warning function; In order to solve the above technical problems, the present invention provides the following technical solutions: The present invention provides a lighting device with a warning function. The device comprises a base, a bracket, and a lighting mechanism. The bracket is arranged on the base, and the lighting mechanism is arranged on both sides of the upper end of the bracket. The bracket is provided with a status detection module, a control module, a lighting module, and a power module. The status detection module is used to detect the operating status of the device in real time. The operating status includes a normal operating state, a standby state, and an abnormal operating state. The status detection module includes multiple sensors, and the sensors are used to detect the operating parameters of the device. The control module is connected to the status detection module, and is used to receive the operating parameter signal transmitted by the status detection module, compare the operating parameter signal with a preset threshold range, and determine the operating status of the device according to the comparison result; The lighting module is connected to the control module and includes light-emitting elements of different colors, which are used to emit lights of corresponding colors and states according to the state control signal output by the control module to intuitively display the operating state of the device. The lighting module includes three light-emitting diode light groups of green, yellow, and red. When the control module determines that the device is in a normal operating state, it outputs a first state control signal to control the green LED light group to emit a steady light. When it determines that the device is in a standby state, it outputs a second state control signal to control the yellow LED light group to emit a steady light. When it determines that the device is in an abnormal operating state, it outputs a third state control signal to control the red LED light group to emit a flashing light. The power supply module is connected to the status detection module, the control module and the lighting module, and is used to provide a stable power supply for the entire device.
[0006] Optionally, the lighting mechanism includes a lighting lamp and a mounting frame, the lighting lamp is arranged on the mounting frame, and a processing mechanism is provided on the side wall of the mounting frame, and the processing mechanism is used to clean the surface of the lighting lamp. The processing mechanism includes a processing box, a water inlet pipe, and a water outlet pipe, and the water inlet pipe and the water outlet pipe are respectively provided on the left and right side walls of the lower end of the processing box, the water inlet pipe is used to pass water into the processing box, and the water outlet pipe is used to output the water in the processing box and clean the surface of the lighting lamp. A drain outlet is provided on the side wall of the mounting frame, and the drain outlet is used to discharge the water used to clean the surface of the lighting lamp.
[0007] 4. The repairing kit for automotive dents, according to claim 1, wherein a bottom of the foot stand comprises a through-hole, and the two foot pieces comprise two bosses, wherein the bosses comprise a through-hole, a screw bolt, and a nut. The through-hole, the screw bolts comprise a through-hole, a screw bolt, and a nut. The through-hole, the screw bolts comprise a through-hole, a screw bolt and a nut. The through-hole, the screw bolts comprise a through-hole, a screw bolt and a nut. An air inlet pipe and an air exhaust pipe are respectively provided on the left and right side walls of the first cavity. The air inlet pipe and the exhaust pipe are both located below the fixed plate. The air inlet pipe is used to introduce wind into the wind pressure chamber, and the air outlet end of the exhaust pipe is connected to the water outlet pipe.
[0008] Optionally, the left and right widths of the fixing plate are smaller than the left and right widths of the first cavity, and sealing layers are provided at both left and right ends of the fixing plate, and the sealing layers are used to seal the gap between the fixing plate and the inner wall of the first cavity.
[0009] Optionally, a reinforcing rib is provided between the fixed plate and the connecting rod. The reinforcing rib is a triangular structure, one side of which is connected to the fixed plate and the other side is connected to the connecting rod, and is used to enhance the connection strength between the fixed plate and the connecting rod to prevent the fixed plate from shaking or deforming under the action of wind.
[0010] Optionally, a plurality of mounting holes are provided on the base, and the mounting holes are evenly distributed on the edge of the base. Threads are provided in the mounting holes for fixing the base on a mounting plane by bolts. An anti-slip gasket is also provided at the bottom of the base.
[0011] Optionally, the drain outlets are arranged in several groups, and the drain outlets in the several groups are arranged at intervals.
[0012] In summary, the present invention has the following beneficial effects: The status detection module of this application contains multiple sensors that can accurately detect the operating parameters of the equipment in real time and comprehensively understand the operating status of the equipment, covering normal operation, standby state, and abnormal operation state. This helps to promptly detect potential equipment problems, prevent small problems from turning into major failures, and ensure the stable operation of the equipment. For example, in an industrial production environment, real-time monitoring of the equipment operating status can ensure the continuity of the production process and reduce production interruptions caused by equipment failures; The adjustment mechanism in the treatment box can adjust the volume of the air pressure chamber by adjusting the motor, adjusting screw, fixing plate and other components, thereby changing the air pressure and realizing dynamic adjustment of the pressure and flow rate of the cleaning water. The dynamic adjustment method can automatically adjust the cleaning force according to the degree of stains on the surface of the lighting lamp and the use environment, thereby improving the cleaning efficiency and effect. For example, when there are many stains on the surface of the lighting lamp, the wind pressure can be increased to strengthen the cleaning force. When there are fewer stains, the wind pressure can be reduced to save water resources and energy. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is the main view of the structure of the present invention.
[0014] Figure 2 It is the front view of the processing mechanism structure of the present invention.
[0015] Figure 3 It is the front view of the internal structure of the processing mechanism of the present invention.
[0016] Figure 4 It is a side view of the internal structure of the processing mechanism of the present invention.
[0017] Figure 5 This is a schematic diagram of the working principle of the warning function of the present invention.
[0018] Explanation of the accompanying drawings: 1-base, 2-bracket, 3-illumination mechanism, 4-status detection module, 5-control module, 6-illumination module, 7-power module, 8-normal operating state, 9-standby state, 10-abnormal operating state, 11-green LED light group, 12-yellow LED light group, 13-red LED light group, 14-illumination lamp, 15-mounting frame, 16-processing mechanism, 17-processing box, 18-water inlet pipe, 19-water outlet pipe, 20-partition, 21-first cavity, 22-second cavity, 23-adjusting motor, 24-adjusting screw, 25-fixing plate, 26-fixing block, 27-movable guide rail, 28-movable slider, 29-connecting plate, 30-connecting rod, 31-wind pressure chamber, 32-air inlet pipe, 33-exhaust pipe. DETAILED DESCRIPTION
[0019] The following will be combined with the accompanying drawings of the embodiments of the present invention to clearly and completely describe the technical solutions in the new embodiments of the system. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.
[0020] Example: like Figure 1-Figure 5 As shown, the present invention provides a lighting device with a warning function, The device comprises a base 1, a bracket 2, and a lighting mechanism 3. The bracket 2 is arranged on the base 1, and the lighting mechanism 3 is arranged on both sides of the upper end of the bracket 2. The bracket 2 is provided with a status detection module 4, a control module 5, a lighting module 6, and a power module 7. The status detection module 4 is used to detect the operating status of the device in real time. The operating status includes a normal operating state 8, a standby state 9, and an abnormal operating state 10. The status detection module 4 includes multiple sensors, which are used to detect the operating parameters of the device. The control module 5 is connected to the status detection module 4 and is used to receive the operating parameter signal transmitted by the status detection module 4, compare the operating parameter signal with a preset threshold range, and determine the operating status of the device according to the comparison result; The lighting module 6 is connected to the control module 5 and includes light-emitting elements of different colors. The light-emitting elements are used to emit lights of corresponding colors and states according to the state control signal output by the control module 5, so as to intuitively display the operating state of the device. The lighting module 6 includes three light-emitting diode groups of green, yellow, and red. When the control module 5 determines that the device is in the normal operating state 8, it outputs a first state control signal to control the green LED light group 11 to emit a steady light. When the control module 5 determines that the device is in the standby state 9, it outputs a second state control signal to control the yellow LED light group 12 to emit a steady light. When the control module 5 determines that the device is in the abnormal operating state 10, it outputs a third state control signal to control the red LED light group 13 to emit a flashing light. The power supply module 7 is connected to the status detection module 4 , the control module 5 and the lighting module 6 to provide a stable power supply for the entire device.
[0021] The status detection module 4 includes multiple sensors to detect the equipment operating parameters in real time, and can obtain various key information during the equipment operation process, such as voltage, current, temperature, vibration frequency, etc. in an all-round and high-precision manner, providing a reliable and accurate data basis for subsequent judgment of the equipment operation status, helping to timely discover potential problems with the equipment, take measures in advance to avoid failures, reduce equipment maintenance costs and downtime, and improve equipment reliability and service life. Different sensors detect different parameters, so that the status detection module 4 can adapt to the monitoring needs of various types of equipment and has a wide range of applicability.
[0022] The control module 5 is connected to the status detection module 4, quickly receives the operating parameter signal and compares it with the preset threshold range, and can quickly and accurately determine whether the equipment is in normal operation, standby or abnormal operation state 10. The automated judgment method not only improves the judgment efficiency, but also reduces the errors that may occur in human judgment, ensures accurate assessment of the equipment status, and provides a reliable basis for subsequent warnings and operations. The control module 5 serves as the "brain" of the entire system. It can automatically output the corresponding status control signal according to the judgment result, realize automatic control of the equipment, and improve the intelligence level of the system.
[0023] The lighting module 6 is connected to the control module 5 and includes light-emitting elements of different colors. It emits lights of corresponding colors and states according to the status control signal output by the control module 5. The three colors of green, yellow and red lights correspond to normal operation, standby and abnormal operation states 10 respectively. The intuitive light display method does not require staff to perform complicated operations or interpretations, and can be clearly seen in environments such as distances or at night. It greatly improves the convenience and timeliness of staff in obtaining equipment operation status information, and facilitates them to make corresponding operational decisions based on the equipment status. When the equipment is in an abnormal operation state 10, the red LED light group 13 emits flashing light. The flashing effect can more strongly attract the attention of staff, enhance the warning effect, and prompt staff to take timely measures to deal with abnormal situations.
[0024] The power supply module 7 provides a stable power supply for the entire device, ensuring that various components such as the status detection module 4, the control module 5 and the lighting module 6 can work normally, ensuring the stable implementation of the equipment functions, avoiding equipment failure or status display errors due to unstable power, and improving the reliability and stability of the system.
[0025] Assume that the lighting device with warning function is used in the equipment monitoring scenario of an industrial production workshop.
[0026] Status Detection Module 4: Multiple sensors are installed on the workshop equipment, such as a PT100 temperature sensor, a CSM025A current sensor, and a VT100 vibration sensor. The temperature sensor monitors the equipment's temperature in real time, the current sensor monitors the equipment's current, and the vibration sensor monitors the equipment's vibration. The sensors transmit the detected operating parameter signals to Control Module 5.
[0027] Control module 5: Siemens S7-1200 series PLC model: 6ES7214-1AG40-0XB0 is used as control module 5, which receives the operating parameter signal transmitted by the status detection module 4 and compares it with the preset threshold range. For example, the temperature threshold range for normal operation of the preset device is 20℃-50℃, the current threshold range is 5A-10A, and the vibration frequency threshold range is 10Hz-50Hz. When the received temperature, current, vibration frequency and other parameters are all within the corresponding threshold range, it is judged that the device is in normal operating state 8; when the parameter is at the edge of the threshold range or slightly lower than the normal operating threshold, it is judged that the device is in standby state 9; when the parameter exceeds the threshold range, it is judged that the device is in abnormal operating state 10.
[0028] Lighting module 6: The lighting module 6 includes three colors of light-emitting diode lamp groups: green, yellow and red. Model: 5050RGB LED lamp beads. When the control module 5 determines that the equipment is in normal operating state 8, it outputs a first state control signal to control the green LED lamp group 11 to emit a stable light; when it determines that the equipment is in standby state 9, it outputs a second state control signal to control the yellow LED lamp group 12 to emit a stable light; when it determines that the equipment is in abnormal operating state 10, it outputs a third state control signal to control the red LED lamp group 13 to emit a flashing light. When staff are inspecting the workshop, they can quickly understand the operating status of the equipment by observing the light color and state of the lighting module 6.
[0029] Power module 7: MEAN WELL power module 7 model: HDR-60-24, which provides a stable 24V DC power supply for the entire device, ensuring the normal operation of various components such as the status detection module 4, control module 5 and lighting module 6.
[0030] During the operation of an equipment, the temperature sensor detects that the temperature of the equipment is gradually rising and exceeds the preset normal operating temperature threshold range. The status detection module 4 transmits this abnormal parameter signal to the control module 5. The control module 5 quickly determines that the equipment is in an abnormal operating state 10, and outputs a third state control signal to control the red LED light group 13 to emit a flashing light. After seeing the flashing red light from a distance, the staff immediately went to the equipment for inspection and found that the temperature rise was due to a failure of the equipment's cooling fan. Since the abnormal situation was discovered and handled in time, the equipment was avoided from being damaged by overheating, and production losses were reduced.
[0031] During normal production, workers can quickly understand the operating status of the equipment by observing the light color of the lighting module 6, without having to frequently approach the equipment for inspection. When the equipment is in normal operating state 8, the green light display reassures the workers; when the equipment is in standby state 9, the yellow light reminds the workers that the equipment is temporarily not in use; when the equipment has an abnormality, the red flashing light immediately attracts the attention of the workers, prompting them to take timely measures. The intuitive warning method greatly improves the convenience and timeliness of the workers in obtaining equipment operating status information, thereby improving work efficiency.
[0032] Optionally, the lighting mechanism 3 includes a lighting lamp 14 and a mounting frame 15, the lighting lamp 14 is arranged on the mounting frame 15, and a processing mechanism 16 is provided on the side wall of the mounting frame 15, and the processing mechanism 16 is used to clean the surface of the lighting lamp 14, and the processing mechanism 16 includes a processing box 17, a water inlet pipe 18, and a water outlet pipe 19, and the water inlet pipe 18 and the water outlet pipe 19 are respectively arranged on the left and right side walls of the lower end of the processing box 17, the water inlet pipe 18 is used to pass water into the processing box 17, and the water outlet pipe 19 is used to output the water in the processing box 17 and clean the surface of the lighting lamp 14, and a drain outlet is opened on the side wall of the mounting frame 15, and the drain outlet is used to discharge the water used to clean the surface of the lighting lamp 14.
[0033] A processing mechanism 16 is provided in the lighting mechanism 3, and the processing box 17 is connected to an external water source through a water inlet pipe 18. Water can smoothly enter the processing box 17 from the water inlet pipe 18, and the water outlet pipe 19 is connected to the water outlet end of the processing box 17, and its water outlet is facing the surface of the lighting lamp 14. When dust, dirt and other impurities accumulate on the surface of the lighting lamp 14 due to long-term use, the processing mechanism 16 starts to work, and water flows into the processing box 17 from the water inlet pipe 18, and then is output through the water outlet pipe 19 at a certain pressure and flow rate, and is directly sprayed onto the surface of the lighting lamp 14. The impact force and fluidity of the water can effectively wash away dust, dirt and other impurities on the surface of the lighting lamp 14, thereby realizing automatic and timely cleaning of the surface of the lighting lamp 14.
[0034] Dust, dirt and other impurities accumulated on the surface of the lighting lamp 14 will block the propagation of light, reduce the transmittance of the lighting lamp 14, and thus affect the lighting effect. The water cleaning of the processing mechanism 16 can completely remove these impurities, restore the surface of the lighting lamp 14 to cleanliness, and greatly improve the transmittance of the lighting lamp 14.
[0035] Good lighting effects are crucial to workplace safety and production efficiency. The automatic and timely cleaning function can ensure that the lighting lamp 14 always maintains a good lighting state and reduces safety hazards caused by insufficient lighting. Traditional lighting lamp 14 cleaning methods usually require manual regular cleaning, which is not only inefficient but also requires a lot of manpower and material resources. The processing mechanism 16 can realize automatic cleaning, greatly reducing manual maintenance costs. At the same time, automatic cleaning can also avoid damage to the lighting lamp 14 that may be caused by manual cleaning, thereby extending the service life of the lighting lamp 14.
[0036] A drain outlet is provided on the side wall of the mounting frame 15, and the position of the drain outlet is usually set at the bottom of the mounting frame 15 or near the bottom, which is conducive to the natural outflow of water under the action of gravity. The shape of the drain outlet can be circular, square or other suitable shapes, and its size should be designed according to the flow rate of the cleaning water and the drainage speed. Generally speaking, the diameter of the drain outlet should not be too small to avoid poor drainage and accumulation of water. In the process of cleaning the surface of the lighting lamp 14, a large amount of water will be generated. If there is no drain outlet, the water will accumulate in the mounting frame 15, which may cause the following problems: First, the water may penetrate into the interior of the lighting lamp 14, damage the electrical components of the lighting lamp 14, and affect the normal use of the lighting lamp 14; second, the water may corrode the mounting frame 15 and other components, shortening the service life of the lighting equipment; third, the accumulated water may breed bacteria and mold, affecting the hygiene of the working environment. By setting a drain outlet, the cleaned water can be discharged from the mounting frame 15 in time, effectively preventing water accumulation.
[0037] The setting of the drain outlet can ensure the dryness of the internal environment of the lighting equipment, avoid electrical and mechanical failures caused by water accumulation, and thus ensure the normal operation of the lighting equipment. For example, in some humid environments, if water accumulates in the mounting frame 15, it may cause a short circuit in the circuit of the lighting lamp 14, causing fire and other safety accidents. The setting of the drain outlet can drain water in time, reduce safety risks, reduce damage to the lighting lamp 14 and other components caused by water, and extend the service life of the lighting equipment. By draining water in time, the corrosion of the lighting lamp 14 housing, mounting frame 15 and other components by water is avoided, the frequency of maintenance and replacement of parts is reduced, and the cost of use is reduced.
[0038] In order to further improve the drainage effect, some auxiliary devices can be installed at the drain outlet, such as drain pipes, filters, etc. The drain pipes can guide the water to the designated drainage area to prevent the water from flowing freely and affecting the working environment. The filters can prevent impurities from entering the drainage pipes and causing blockages. For example, installing a fine metal filter at the drain outlet can filter out dust, dirt and other impurities in the water to ensure the smooth flow of the drainage pipes.
[0039] Optionally, a partition 20 is provided in the processing box 17, and the partition 20 is used to divide the inner cavity of the processing box 17 into a first cavity 21 and a second cavity 22. The water inlet pipe 18 and the water outlet pipe 19 are evenly connected to the second cavity 22. An adjustment mechanism is provided in the first cavity 21, and the adjustment mechanism includes an adjustment motor 23, an adjustment screw 24, and a fixing plate 25. The adjustment motor 23 is arranged on the outer side wall of the first cavity 21, and the output shaft of the adjustment motor 23 passes through the side wall of the processing box 17 and extends into the first cavity 21. The adjustment screw 24 is connected to the output shaft of the adjustment motor 23. Then, a fixed block 26 is provided on the adjusting screw 24. The fixed block 26 follows the rotation of the adjusting screw 24 and moves left and right along the surface of the adjusting screw 24. A movable guide rail 27 is provided on the side wall of the first cavity 21. A movable slider 28 is slidably provided on the surface of the movable guide rail 27. A connecting plate 29 is provided between the movable slider 28 and the fixed block 26. A connecting rod 30 is provided at the lower end of the movable slider 28. The fixing plate 25 is provided at the lower end of the connecting rod 30. The fixing plate 25 is arranged parallel to the partition 20, and a wind pressure chamber 31 is formed between the fixing plate 25 and the partition 20. An air inlet pipe 32 and an air exhaust pipe 33 are respectively provided on the left and right side walls of the first cavity 21. The air inlet pipe 32 and the exhaust pipe are both located below the fixed plate 25. The air inlet pipe 32 is used to introduce wind into the wind pressure chamber 31. The air outlet end of the exhaust pipe 33 is connected to the water outlet pipe 19.
[0040] When the water enters the treatment box 17 through the water inlet pipe 18, it will directly flow into the second cavity 22. In the second cavity 22, the water can undergo preliminary sedimentation, filtration and other processing operations. For example, if the water introduced by the water inlet pipe 18 is mixed with some larger impurities, these impurities can gradually settle to the bottom in the second cavity 22, reducing the number of impurities entering the subsequent cleaning process, thereby avoiding problems such as impurities causing secondary pollution to the surface of the lighting lamp 14 or clogging the cleaning equipment.
[0041] The first cavity 21 provides an independent working space for the adjustment mechanism and other components, avoiding mutual interference with the water treatment process in the second cavity 22. Various components in the adjustment mechanism, such as the adjustment motor 23, the adjustment screw 24, the fixing block 26, etc., may generate certain vibrations or noises during operation. If these components are in the same space as the water treatment area, the vibration may affect the stability of the water, causing water splashing or poor treatment effect, and the noise may also interfere with the monitoring and control of the water treatment process.
[0042] In addition, the independent space can also prevent water from damaging the electrical components of the regulating mechanism. Electrical components are usually sensitive to humid environments. If they are in a water environment for a long time, they may cause short circuits, corrosion and other problems, affecting the normal operation and service life of the regulating mechanism. Placing the regulating mechanism in the first cavity 21 can effectively avoid these problems and ensure that the regulating mechanism can work stably and reliably.
[0043] When the adjusting motor 23 is started, its output shaft will drive the adjusting screw 24 to rotate. Since the fixed block 26 is threadedly connected to the adjusting screw 24, during the rotation of the adjusting screw 24, the fixed block 26 will be subjected to the force of the thread and move left and right along the surface of the adjusting screw 24. The fixed block 26 is connected to the connecting plate 29, and the connecting plate 29 is connected to the moving slider 28. The moving slider 28 is set on the moving guide rail 27. Therefore, when the fixed block 26 moves, it will drive the moving slider 28 to slide on the moving guide rail 27 through the connecting plate 29. The lower end of the moving slider 28 is provided with a connecting rod 30, and the lower end of the connecting rod 30 is connected to the fixed plate 25. In this way, the sliding of the moving slider 28 will drive the fixed plate 25 to move through the connecting rod 30.
[0044] By adjusting the forward and reverse rotation of the motor 23, the position of the fixed plate 25 can be precisely controlled, thereby achieving the adjustment of the size of the wind pressure chamber 31. When the adjusting motor 23 drives the adjusting screw 24 to rotate in one direction, the fixed block 26 will move upward, thereby causing the fixed plate 25 to move in that direction as well, and the volume of the wind pressure chamber 31 will gradually increase; conversely, when the adjusting motor 23 rotates in the opposite direction, the fixed block 26 and the fixed plate 25 will move in opposite directions, and the volume of the wind pressure chamber 31 will gradually decrease.
[0045] The size change of the wind pressure chamber 31 will affect the flow and pressure distribution of the wind in the chamber. When the wind pressure chamber 31 is larger, the flow space of the wind in the chamber is larger and the pressure is relatively small; when the wind pressure chamber 31 is smaller, the flow space of the wind in the chamber is restricted and the pressure will increase. The left and right side walls of the first cavity 21 are respectively provided with an air inlet pipe 32 and an air exhaust pipe 33. The main function of the air inlet pipe 32 is to introduce external wind into the wind pressure chamber 31. When the wind enters the wind pressure chamber 31 through the air inlet pipe 32, a certain pressure will be formed in the chamber. The size and shape of the wind pressure chamber 31 will affect the flow and pressure distribution of the wind in the chamber. If the wind pressure chamber 31 is smaller and better sealed, the incoming wind will accumulate in the chamber to form a higher pressure; if the wind pressure chamber 31 is larger or there is a leak, the wind will diffuse in the chamber and the pressure will be relatively low.
[0046] The wind force entering the wind pressure chamber 31 will generate pressure on the water in the water outlet pipe 19, thereby affecting the water flow in the water outlet pipe 19. For example, if the wind pressure is large, it will generate a thrust toward the water outlet pipe 19, causing the water to flow out of the water outlet pipe 19 at a faster speed, thereby increasing the force of the water in flushing the surface of the lighting lamp 14 and improving the cleaning effect.
[0047] In addition to enhancing the flushing force of water, wind power can also provide power assistance for the flow of water. In some cases, the flow of water in the pipe may be subject to resistance, resulting in poor flow. Through the action of wind power, some resistance can be overcome, allowing the water to flow more smoothly, ensuring the smooth progress of the cleaning process. For example, when the water outlet pipe 19 is long or has a curved part, the flow of water may be subject to greater resistance. At this time, the auxiliary effect of wind power can enable the water to smoothly reach the surface of the lighting lamp 14 for cleaning.
[0048] In addition, wind power can also produce a synergistic effect with water. For example, wind power can make the water form mist or smaller droplets, increase the contact area between the water and the surface of the lighting lamp 14, and further improve the cleaning efficiency and quality. At the same time, wind power can also blow the cleaned impurities away from the surface of the lighting lamp 14, preventing the impurities from adhering to the lighting lamp 14 again, ensuring a more thorough cleaning effect.
[0049] When the processing mechanism 16 starts to work, the adjusting motor 23 starts, driving the adjusting screw 24 to rotate, and the fixed block 26 then starts to move along the surface of the adjusting screw 24, driving the connecting rod 30 and the fixed plate 25 to move through the connecting plate 29 and the movable slider 28, so that the volume of the wind pressure chamber 31 gradually decreases. As the volume of the wind pressure chamber 31 decreases, the internal wind pressure increases rapidly. At this time, the air inlet pipe 32 continues to introduce wind into the wind pressure chamber 31, further aggravating the increase in wind pressure.
[0050] The exhaust pipe 33 is connected to the water outlet pipe 19, and the increased wind pressure is transmitted to the water outlet pipe 19 through the exhaust pipe 33. The water that originally flows out of the second cavity 22 with a certain pressure and flow rate has its pressure and flow rate further increased under the superimposed effect of the wind pressure. The water is ejected from the water outlet pipe 19 with a stronger posture and impacts the surface of the lighting lamp 14. For those impurities such as dust, dirt and oil stains that are stubbornly attached and tightly bound to the surface of the lighting lamp 14, this high-pressure, high-flow-rate water can produce a strong impact force, like a sharp "water knife", penetrating into the gap between the impurities and the surface of the lighting lamp 14, and completely stripping the impurities from the surface of the lighting lamp 14.
[0051] For example, in some industrial plants, a large amount of metal dust may accumulate on the surface of the lighting lamp 14. After a long period of compaction and adsorption, these dusts are very tightly combined with the surface of the lighting lamp 14. In the initial stage, due to the assistance of wind pressure, water can effectively wash these metal dusts off the surface of the lighting lamp 14, achieving deep cleaning and laying a good foundation for subsequent cleaning work.
[0052] As the fixed plate 25 continues to move, the volume of the wind pressure chamber 31 gradually reaches a relatively stable stage, at which point the wind pressure also tends to stabilize. Under the action of the stable wind pressure, the water in the water outlet pipe 19 is continuously sprayed onto the surface of the lamp 14 at a constant pressure and flow rate. The steady water flow thoroughly and evenly cleans the surface of the lamp 14, reaching every corner of the surface and providing a thorough cleaning. The steady water flow further softens any impurities that were not completely washed away in the initial stage, gradually weakening their bond with the surface of the lamp 14. Furthermore, the steady water flow promptly flushes away impurities that have already been stripped from the surface of the lamp 14, preventing them from reattaching to the surface.
[0053] When the fixed plate 25 moves to a certain position, the volume of the wind pressure chamber 31 begins to gradually increase, and the internal wind pressure decreases accordingly. The wind pressure transmitted to the water outlet pipe 19 by the exhaust pipe 33 is weakened, causing the water pressure and flow rate in the water outlet pipe 19 to gradually decrease.
[0054] At this time, the water is sprayed onto the surface of the lighting lamp 14 in a softer manner. The soft water flow can further rinse the surface of the lighting lamp 14, and thoroughly clean up some remaining tiny impurities and water stains generated during the cleaning process. At the same time, the soft water flow will not cause excessive impact force on the surface of the lighting lamp 14, thereby avoiding possible damage to the surface of the lighting lamp 14.
[0055] During the entire dynamic cleaning process, the volume of the wind pressure chamber 31 is adjusted by the adjustment mechanism, thereby changing the wind pressure, so that the effect of the cleaning water on the surface of the lighting lamp 14 is constantly changing, from high-intensity impact cleaning in the initial stage, to comprehensive and uniform cleaning in the middle stage, and then to gentle finishing cleaning in the later stage, forming a complete and efficient dynamic cleaning process, which can effectively remove various impurities on the surface of the lighting lamp 14 and maintain a good lighting effect of the lighting lamp 14.
[0056] Optionally, the left and right widths of the fixing plate 25 are smaller than the left and right widths of the first cavity 21 , and sealing layers are provided at both left and right ends of the fixing plate 25 , and the sealing layers are used to seal the gap between the fixing plate 25 and the inner wall of the first cavity 21 .
[0057] The left and right widths of the fixed plate 25 are smaller than the left and right widths of the first cavity 21, and sealing layers are provided at both left and right ends, which can effectively seal the gap between the fixed plate 25 and the inner wall of the first cavity 21 to prevent wind or water from leaking from the gap, ensure the pressure in the wind pressure chamber 31 is stable, and ensure that wind-assisted cleaning or other functions can function normally and effectively, while also improving the sealing and reliability of the entire processing mechanism 16.
[0058] Optionally, a reinforcing rib is provided between the fixing plate 25 and the connecting rod 30. The reinforcing rib is a triangular structure, one side of which is connected to the fixing plate 25 and the other side is connected to the connecting rod 30, and is used to enhance the connection strength between the fixing plate 25 and the connecting rod 30 to prevent the fixing plate 25 from shaking or deforming under the action of wind.
[0059] Reinforcing ribs are provided between the fixing plate 25 and the connecting rod 30, and the reinforcing ribs are triangular structures, one side of which is connected to the fixing plate 25, and the other side of which is connected to the connecting rod 30. The triangular structure has the characteristic of good stability, which can enhance the connection strength between the fixing plate 25 and the connecting rod 30, prevent the fixing plate 25 from shaking or deforming under the action of wind, ensure that the adjustment mechanism can work stably and accurately, extend the service life of the equipment, and reduce the occurrence of failures caused by shaking or deformation of components.
[0060] Optionally, a plurality of mounting holes are provided on the base 1, and the mounting holes are evenly distributed on the edge of the base 1. Threads are provided in the mounting holes for fixing the base 1 on a mounting plane by bolts. An anti-slip gasket is also provided at the bottom of the base 1.
[0061] The base 1 is provided with a plurality of mounting holes evenly distributed on the edge, and threads are provided in the mounting holes. The base 1 can be fixed to the mounting plane by bolts. The installation method is simple and universal, and is suitable for a variety of different mounting planes, such as walls, floors, etc., which facilitates the installation and disassembly of lighting equipment, and also improves the firmness and stability of the installation. A non-slip gasket is provided at the bottom of the base 1, which can increase the friction between the base 1 and the mounting plane, further preventing the equipment from sliding or shaking due to vibration, collision and other factors during operation, thereby improving the stability and safety of the equipment during operation and reducing component damage or failure caused by equipment shaking.
[0062] Optionally, the drain outlets are arranged in several groups, and the drain outlets in the several groups are arranged at intervals.
[0063] The drainage outlets are arranged in several groups and at intervals, which can increase the drainage area and improve the drainage efficiency, so that the water used to clean the surface of the lighting lamp 14 can be discharged faster and more thoroughly, avoiding the accumulation of water in the mounting frame 15, further ensuring the normal operation of the lighting equipment and extending its service life, while also reducing the risk of equipment failure due to poor drainage.
[0064] The status detection module 4 of the present application includes multiple sensors, which can detect the operating parameters of the equipment in real time and accurately, and fully grasp the operating status of the equipment, covering normal operating status 8, standby status 9 and abnormal operating status 10, which helps to timely discover potential problems of the equipment, avoid small problems from turning into major failures, and ensure the stable operation of the equipment. For example, in an industrial production environment, real-time monitoring of the equipment operating status can ensure the continuity of the production process and reduce production interruptions caused by equipment failures.
[0065] The lighting module 6 emits lights of corresponding colors and states through light-emitting elements of different colors according to the status control signal output by the control module 5, intuitively displaying the operating status of the equipment. The green, yellow and red LED light groups correspond to the normal operating state 8, the standby state 9 and the abnormal operating state 10 respectively. The operator does not need to perform complicated operations and can quickly understand the equipment status by simply observing the light color, which greatly improves work efficiency and safety.
[0066] The processing mechanism 16 set on the side wall of the mounting frame 15 can automatically clean the surface of the lighting lamp 14 without the need for frequent manual cleaning operations, thereby reducing labor costs and labor intensity. Manual cleaning of lighting equipment in some high-altitude or dangerous environments is difficult and risky. The automatic cleaning function of this application can effectively solve this problem.
[0067] Dust, dirt and other impurities easily accumulate on the surface of the lighting lamp 14, affecting the lighting effect. The processing mechanism 16 introduces water into the processing box 17 through the water inlet pipe 18, and then outputs water from the water outlet pipe 19 to clean the surface of the lighting lamp 14. It can remove impurities in time, keep the surface of the lighting lamp 14 clean, improve the light transmittance of the lighting lamp 14, and ensure that the lighting equipment always has a good lighting effect.
[0068] The adjustment mechanism in the processing box 17 can adjust the volume of the wind pressure chamber 31 by adjusting the motor 23, the adjusting screw 24, the fixing plate 25 and other components, thereby changing the wind pressure and realizing dynamic adjustment of the pressure and flow rate of the cleaning water. The dynamic adjustment method can automatically adjust the cleaning force according to the degree of stains on the surface of the lighting lamp 14 and the use environment, thereby improving the cleaning efficiency and effect. For example, when there are more stains on the surface of the lighting lamp 14, the wind pressure can be increased to strengthen the cleaning force. When there are fewer stains, the wind pressure can be reduced to save water resources and energy.
[0069] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A lighting device with a warning function, characterized in that: The device comprises a base, a bracket, and a lighting mechanism. The bracket is arranged on the base, and the lighting mechanism is arranged on both sides of the upper end of the bracket. The bracket is provided with a status detection module, a control module, a lighting module, and a power module. The status detection module is used to detect the operating status of the device in real time. The operating status includes a normal operating state, a standby state, and an abnormal operating state. The status detection module includes multiple sensors, and the sensors are used to detect the operating parameters of the device. The control module is connected to the status detection module, and is used to receive the operating parameter signal transmitted by the status detection module, compare the operating parameter signal with a preset threshold range, and determine the operating status of the device according to the comparison result; The lighting module is connected to the control module and includes light-emitting elements of different colors, which are used to emit lights of corresponding colors and states according to the state control signal output by the control module to intuitively display the operating state of the device. The lighting module includes three light-emitting diode light groups of green, yellow, and red. When the control module determines that the device is in a normal operating state, it outputs a first state control signal to control the green LED light group to emit a steady light. When it determines that the device is in a standby state, it outputs a second state control signal to control the yellow LED light group to emit a steady light. When it determines that the device is in an abnormal operating state, it outputs a third state control signal to control the red LED light group to emit a flashing light. The power supply module is connected to the status detection module, the control module and the lighting module, and is used to provide a stable power supply for the entire device.
2. The lighting device with warning function according to claim 1, characterized in that: The lighting mechanism includes a lighting lamp and a mounting frame. The lighting lamp is arranged on the mounting frame. A processing mechanism is provided on the side wall of the mounting frame. The processing mechanism is used to clean the surface of the lighting lamp. The processing mechanism includes a processing box, a water inlet pipe, and a water outlet pipe. The water inlet pipe and the water outlet pipe are respectively provided on the left and right side walls of the lower end of the processing box. The water inlet pipe is used to pass water into the processing box, and the water outlet pipe is used to output the water in the processing box and clean the surface of the lighting lamp. A drain outlet is provided on the side wall of the mounting frame. The drain outlet is used to discharge the water used to clean the surface of the lighting lamp.
3. The lighting device with warning function according to claim 2, characterized in that: The control rod of described outer combustion gas heating unit is connected with the control rod of described outer combustion gas heating unit, and the control rod of described outer combustion gas heating unit is connected with the control rod of control rod. An air inlet pipe and an air exhaust pipe are respectively provided on the left and right side walls of the first cavity. The air inlet pipe and the exhaust pipe are both located below the fixed plate. The air inlet pipe is used to introduce wind into the wind pressure chamber, and the air outlet end of the exhaust pipe is connected to the water outlet pipe.
4. The lighting device with warning function according to claim 3, characterized in that: The left and right widths of the fixing plate are smaller than the left and right widths of the first cavity. Sealing layers are provided at both left and right ends of the fixing plate to seal the gap between the fixing plate and the inner wall of the first cavity.
5. The lighting device with warning function according to claim 3, characterized in that: A reinforcing rib is provided between the fixing plate and the connecting rod. The reinforcing rib is a triangular structure, one side of which is connected to the fixing plate and the other side is connected to the connecting rod. The reinforcing rib is used to enhance the connection strength between the fixing plate and the connecting rod to prevent the fixing plate from shaking or deforming under the action of wind.
6. The lighting device with warning function according to claim 1, characterized in that: The base is provided with a plurality of mounting holes, which are evenly distributed on the edge of the base. Threads are provided in the mounting holes for fixing the base on a mounting plane by bolts. An anti-slip gasket is also provided at the bottom of the base.
7. The lighting device with warning function according to claim 1, characterized in that: The drainage outlets are arranged in a plurality of groups, and the plurality of groups of drainage outlets are arranged at intervals.