Factory workshop emergency lighting intelligent control system
By installing pulling and rotating mechanisms on the frame in the factory workshop, the angle of light illumination can be adjusted, solving the problem of difficult adjustment of the light angle of emergency lighting facilities. This provides flexible multi-angle lighting and flashlight storage, ensuring the safe escape of personnel.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 梁云招
- Filing Date
- 2023-10-27
- Publication Date
- 2026-04-17
AI Technical Summary
The existing emergency lighting facilities in factory workshops have difficult-to-adjust light angles, resulting in dark areas when people escape during power outages, making it difficult to see obstacles and posing a safety hazard.
The angle of the light beam can be adjusted by the pulling and rotating mechanisms on the mounting frame, and it is equipped with flashlight storage and automatic start functions to ensure that the light evenly illuminates the surrounding environment and provides multi-angle lighting.
It enables flexible adjustment of the light angle during power outages, reduces glare, ensures that people can clearly see the surrounding roads, and provides a backup flashlight to assist in escape.
Smart Images

Figure CN121876409A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of factory workshop technology, and specifically to an intelligent control system for emergency lighting in factory workshops. Background Technology
[0002] Night shifts are common in factories and workshops, and these units typically provide emergency training and are equipped with emergency lighting facilities. In the event of a power outage during a night shift, the emergency lighting will automatically activate. These emergency lights are usually wall-mounted at a certain height, and in darkness, the light can be quite glaring, potentially causing discomfort. Therefore, the light is generally directed towards the ground. Since factories and workshops usually have a significant number of workers, the angle of the existing emergency lighting is difficult to adjust when people are queuing to evacuate according to emergency procedures. Dark areas may exist between the lighting fixtures, and given the abundance of raw materials and equipment in factories and workshops, people may have difficulty seeing obstacles in these dark areas, potentially leading to injury and causing considerable danger and inconvenience. Summary of the Invention
[0003] To overcome the aforementioned technical problems, the present invention aims to provide an intelligent control system for emergency lighting in factory workshops. By installing the frame onto the wall, the system uses a pulling mechanism to rotate the rotating mechanism. Simultaneously, the pulling mechanism drives the turnover mechanism to start automatically, causing the turnover mechanism to rotate the rotating mechanism once. This allows the light on the rotating mechanism to illuminate the surrounding road surface, thereby adjusting the light illumination angle to facilitate users' visibility of the surrounding road.
[0004] The objective of this invention can be achieved through the following technical solutions: An intelligent control system for emergency lighting in a factory workshop includes a frame, a rotating mechanism on one side of the frame, a pulling mechanism at the bottom of the rotating mechanism, a turnover mechanism in conjunction with the rotating mechanism, and a storage mechanism inside the frame, which is fixedly connected to the turnover mechanism. The rotating mechanism includes a lamp frame, a light-transmitting plate fixedly connected to one side of the lamp frame, a lampshade fixedly connected to one side of the light-transmitting plate, a connecting rod fixedly connected to the middle of the other side of the lamp frame, a lamp body fixedly connected to the middle of one side of the connecting rod, and a rotating roller fixedly connected to the middle of the other side. A rectangular groove is opened on one side of the frame, and one end of the rotating roller is rotatably connected to the center of the rectangular groove. A connecting groove is opened on the bottom surface of the lamp frame, and a pulling mechanism is located inside the connecting groove. The frame is installed on the wall, and the rectangular lamp frame can be rotated around the rotating roller by the pulling mechanism in the pulling system. Originally, the light from the lamp body was blocked by the lampshade, and most of the light shone on the ground. However, bright light in the dark is easy to dazzle and glare. The lampshade can prevent the light from shining directly into people's eyes and illuminate the road clearly. At the same time, when the user uses the pulling mechanism, the lamp frame can be rotated to adjust the angle of light illumination, making it easier for the user to see the surrounding road.
[0005] Furthermore, the pulling mechanism includes a connecting plate, one end of which is rotatably connected to one end of the connecting groove. A smart push rod is fixedly connected to one end of the lamp frame. A stop plate is provided below the movable end of the smart push rod. The middle part of the stop plate is rotatably connected to one end of the bottom surface of the lamp frame. One end of the stop plate is rotatably connected to the movable end of the smart push rod, and the other end is in contact with the connecting plate. By connecting the smart push rod to the controller, in the initial position, one end of the stop plate is kept horizontal by the pressure of the smart push rod, so that the other end of the stop plate supports the connecting plate and keeps it stationary. After the main circuit stops supplying power, the lamp body automatically starts, and the smart push rod starts automatically at the same time, pulling one end of the stop plate upward and lowering the other end of the stop plate, so that the stop plate no longer supports the connecting plate and the connecting plate automatically hangs down, making it convenient for the user to pull the connecting plate to drive the lamp frame to rotate, thereby adjusting the position of the light illumination.
[0006] Furthermore, both ends of the top surface of the lamp frame are provided with light-leaking grooves, so that when the lamp frame rotates, the light leaking from the light-leaking grooves will sweep across the ground due to the rotating lamp frame, helping people to see the road clearly. At the same time, since the frame is installed at a high position on the wall, the light leaking from the light-leaking grooves is not easily seen by people, thus not being dazzling.
[0007] Furthermore, the turnover mechanism includes a slide plate, a groove is provided on one side of the rectangular groove, the slide plate is slidably connected to the inside of the groove, an L-shaped plate is fixedly connected to one end of the slide plate, multiple rotating plates are rotatably connected to one side of the L-shaped plate, a spring is fixedly connected to one side of each of the multiple rotating plates, and one end of each of the multiple springs is fixedly connected to one side of the L-shaped plate. A ratchet is fixedly sleeved on the outer wall of the rotating roller, and the ratchet engages movably with the adjacent rotating plate. Multiple pressure springs are fixedly connected to the bottom surface of the slide plate, and one end of each of the multiple pressure springs is fixedly connected to the bottom surface inside the rectangular groove. A stop block is fixedly connected to the other side of the connecting rod, and the stop block movably abuts against the top surface of the slide plate. By pulling the connecting plate, the rectangular light frame will rotate around the rotating roller. At the same time, because the frame is installed at a high height, when the user pulls the connecting plate down, one end of the connecting groove will face the ground, controlling the rotation direction of the light frame. Then, the rotation of the light frame causes the stop block to move in an arc and press the slide plate down. Simultaneously, the light frame drives the rotating roller and ratchet to rotate synchronously. When the ratchet rotates, it squeezes multiple adjacent rotating plates, causing multiple springs to contract and reset, without affecting the rotation of the ratchet. Then, when the light frame rotates to one end of the connecting groove close to the ground, the stop block disengages from the sliding plate, causing the sliding plate to be reset by the stop spring, which drives the L-shaped plate to move upward. At the same time, multiple rotating plates on the L-shaped plate engage with the teeth of the ratchet, driving the ratchet to rotate. This causes the ratchet to drive the rotating roller and the light frame to continue rotating, allowing the light frame to complete a full rotation. This provides simultaneous illumination of the front and rear of the road, making it easier for evacuated people to see the road.
[0008] Furthermore, the storage mechanism includes a ring body fixedly connected inside a frame. A disc is fixedly connected to the inner wall of the ring body. A rotating shaft is rotatably connected to the center of one side of the disc. A torsion spring is provided at one end of the rotating shaft. One end of the torsion spring is fixedly connected to one end of the rotating shaft, and the other end is fixedly connected to one side of the disc. Two trays for supporting flashlights are symmetrically fixedly connected to the outer wall of the rotating shaft. An arc-shaped plate is fixedly connected to one side of the disc. A guide groove is provided on one side of the frame body. A fixed rod is slidably embedded in the guide groove. A round rod is fixedly connected to the top of the fixed rod, and its bottom end is fixedly connected to the top surface of the sliding plate. One tray is in movable contact with the arc-shaped plate, and the top surface of the other tray is in contact with the round rod. Filling grooves are provided on the top surface of the frame body and the outer wall of the disc. The two filling grooves are connected internally. One side of the rectangular groove is located at the corresponding position of the arc-shaped plate. A connecting port is provided. In the initial state, the two trays are tilted, with one tray below the other. Multiple emergency flashlights are filled into the filling slot, moving them above one tray. Then, after the slide is pressed down by the abutment block, the slide pulls the fixing rod and the round rod down synchronously, causing the round rod to press down the other tray. This causes one tray to rotate and lift around the pivot, allowing the flashlights on one tray to roll towards the pivot. One of the flashlights moves to the curved plate and is lifted by the curved plate. One edge of the curved plate is sloping, making it easy to lift the flashlight that slides along the top surface of one tray. After the slide is lifted and reset by multiple pressure springs, the pivot automatically twists and resets under the action of the torsion spring. Except for the flashlight lifted by the curved plate, all other flashlights will be reset and stacked on one tray.
[0009] Furthermore, the sum of the length of the abutment and the thickness of the fixing rod is equal to the width of the top surface of the slide plate, so that the abutment will not come into contact with the fixing rod when sliding, thereby preventing the fixing rod from blocking the abutment from detaching from the slide plate.
[0010] Furthermore, the arc-shaped plate is equipped with a jacking mechanism; The jacking mechanism includes a rotating rod, one end of which is rotatably connected to the inner wall of the ring. The rotating rod is located on the other side of the disc. The other end of the rotating rod is fixedly connected to two symmetrical connecting frames, each containing a slider. A sliding hole is provided on the other side of the disc at a corresponding position on the arc-shaped plate. A jacking rod is slidably embedded in the sliding hole and is movably embedded in the arc-shaped plate. One slider is rotatably connected to one end of the jacking rod, and the other slider is rotatably connected to a plate. A notch is provided on one side of the disc, and a pulley is rotatably connected to one side of the plate, with the pulley located inside the notch. A return spring is fixedly connected to the other side of the plate, one end of which is fixedly connected to the other side of the frame. A moving groove is provided on one side of the frame, and a trapezoidal block is slidably connected inside the moving groove. One end of the trapezoidal block is fixedly connected to one side of the sliding plate, and the trapezoidal block movably abuts against the pulley. As the skateboard slides down, it causes the trapezoidal block to slide down synchronously, eliminating contact with the pulley. This allows the return spring, which was initially compressed by the trapezoidal block, to return to its original position and spring back, lifting the plate and causing another slider to move towards the disc and rotate the rotating rod. The slider that was originally closer to the disc will be affected by the rotation of the rotating rod and move away from the disc, allowing the push rod to disengage from the curved plate without affecting the curved plate's ability to lift the flashlight. At this point, part of the push rod will remain stuck in the sliding hole, ensuring that it can re-embed into the curved plate when it returns to its original position. Then, when the skateboard returns to its original position due to the return force of the compression spring, it will cause the trapezoidal block to move upward. The trapezoidal block will then contact the pulley and move away from the disc. The pulley will move along the inclined surface of the trapezoidal block, causing the push rod to re-insert into the sliding hole, making contact with the inner curved surface of the curved plate, and pushing the flashlight out of the connecting opening into the light frame.
[0011] Furthermore, a sliding groove is provided on one side of the connecting plate, and a rectangular frame is provided inside the sliding groove. One end of the rectangular frame is slidably connected to the inside of the sliding groove, and a slot is provided at the other end of the rectangular frame. An inclined plate is fixedly connected to one inner side wall of the lamp frame. After the flashlight moves into the inside of the lamp frame, as the lamp frame rotates once, the connecting groove faces the ground again, allowing the flashlight to slide into the inside of the rectangular frame through the inclined plate. When the connecting plate hangs down naturally, the rectangular frame will naturally slide to one end of the sliding groove, extending the length of the connecting plate and making it easier for the user to access the rectangular frame and pull the connecting plate through the rectangular frame. At the same time, the sliding of the rectangular frame makes it difficult for the connecting plate to re-embed into the connecting groove when the lamp frame rotates once. After the rectangular frame hangs down again, the flashlight falls naturally inside the rectangular frame, and the user can take out the flashlight from inside the rectangular frame through the slot. Then, the user can use the flashlight to provide auxiliary lighting for the road surface, so that the user can quickly find the evacuation route in the dark environment.
[0012] Furthermore, the top surface of the inclined plate is provided with multiple light-transmitting grooves, allowing light to pass through and increasing the illumination area of the light.
[0013] Furthermore, a stretching pad is fixedly connected between one end of the inclined plate and one end of the rectangular frame, and a rubber pad is fixedly connected to one end of the slot. The stretching pad is made of silicone and can be stretched. After the flashlight moves into the lamp frame, the lamp frame rotates once, and the connecting slot faces the ground again, so that the flashlight will slide along the inclined plate and enter the rectangular frame through the stretching pad. The rubber pad can prevent the flashlight from sliding out of the slot naturally.
[0014] The beneficial effects of this invention are: The frame is installed on the wall. By pulling the pull mechanism in the system, the internal light-emitting rotating mechanism is rotated. At the same time, the pull mechanism will drive the turnover mechanism to start automatically. The turnover mechanism will drive the rotating mechanism to complete one revolution, so that the light on the rotating mechanism illuminates the surrounding road surface, thereby adjusting the light illumination angle so that users can see the surrounding road clearly.
[0015] Connect the intelligent push rod to the controller. After the main circuit stops supplying power, the lamp automatically starts, and the intelligent push rod starts automatically at the same time, pulling one end of the support plate upwards, causing the other end of the support plate to descend. This removes the support plate from the connecting plate, allowing it to automatically drop. This makes it easy for the user to pull the connecting plate to rotate the lamp frame, thereby adjusting the light illumination position. Pulling down the connecting plate on the pulling mechanism causes the rectangular lamp frame to rotate around the roller, so that one end of the connecting groove faces the ground. Then, the rotation of the lamp frame causes the support block to move in an arc and press the sliding plate downwards. At the same time, the lamp frame... The rotating roller and ratchet rotate synchronously. When the ratchet rotates, it squeezes multiple adjacent rotating plates, causing multiple springs to contract and reset, without affecting the rotation of the ratchet. Then, when the lamp frame rotates to one end of the connecting groove close to the ground, the stop block disengages from the sliding plate, causing the sliding plate to be reset by the stop spring, which drives the L-shaped plate to move upward. At the same time, multiple rotating plates on the L-shaped plate mesh with the teeth of the ratchet, driving the ratchet to rotate. The ratchet then drives the rotating roller and lamp frame to continue rotating, allowing the lamp frame to complete a full rotation. This provides simultaneous illumination of the front and rear of the road, making it easier for evacuated people to see the road.
[0016] Multiple flashlights are filled into the filling slot, moving them above a tray. Then, after the slide is pressed down by the abutment block, the slide pulls the fixing rod and the round rod down synchronously, causing the round rod to press down another tray, lifting one tray and causing it to roll towards the pivot. A flashlight is then lifted by the curved plate. After the slide is lifted and reset by multiple pressure springs, the pivot automatically twists and resets under the action of the torsion spring. Except for the flashlight lifted by the curved plate, all other flashlights will be reset and stacked on a tray, allowing them to be moved to the connecting opening for easy access.
[0017] As the slide descends, the trapezoidal block slides down synchronously, causing the retracted return spring to return and rebound, lifting the plate body and moving it towards the disc. This causes the rotating rod to rotate, causing a slider to move away from the disc due to the rotation of the rotating rod. This allows the push rod to disengage from the curved plate without affecting the curved plate's ability to lift the flashlight. When the slide returns to its original position due to the return force of the compression spring, it will move the trapezoidal block upward. The trapezoidal block will then move away from the disc by contacting the pulley, and the pulley will move along the inclined surface of the trapezoidal block. At the same time, the push rod will re-insert into the sliding hole, making contact with the inner curved surface of the curved plate. This will push the flashlight out of the curved plate from the connecting opening into the light frame. The flashlight then passes through the inclined plate and the stretching pad into the rectangular frame. After the light frame has completed one rotation, the user can remove the flashlight from the slot to illuminate the road. Attached Figure Description
[0018] The invention will now be further described with reference to the accompanying drawings.
[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the pulling mechanism structure in this invention; Figure 3 This is a schematic diagram of the internal structure of the lamp frame in this invention; Figure 4 This is a schematic diagram showing the positional relationship between the pulling mechanism and the rotating mechanism in this invention; Figure 5 This is a schematic diagram of the turnover mechanism structure in this invention; Figure 6 This is a schematic diagram showing the positional relationship between the abutment block and the fixing rod in this invention; Figure 7 This is a schematic diagram of the transfer plate and rebound spring structure in this invention; Figure 8 This is a schematic diagram of the frame structure in this invention; Figure 9 This is a schematic diagram of the storage mechanism structure in this invention; Figure 10 This is a schematic diagram of the jacking mechanism in this invention; Figure 11 This is a schematic diagram of the disk and arc plate structure in this invention.
[0020] In the diagram: 100, frame; 101, rectangular groove; 102, sliding groove; 103, connecting port; 104, guide groove; 105, moving groove; 200, rotating mechanism; 210, lamp frame; 211, light-transmitting plate; 212, connecting groove; 213, light-leaking groove; 220, connecting rod; 221, abutment; 230, lamp body; 240, rotating roller; 250, lampshade; 300, pulling mechanism; 310, connecting plate; 311, sliding groove; 320, intelligent push rod; 330, abutment; 340, rectangular frame; 341, groove; 342, rubber pad; 343, tension pad; 350, inclined plate; 351, light-transmitting... 400, Turnover mechanism; 410, Slide plate; 420, L-shaped plate; 430, Turning plate; 431, Rebound spring; 440, Ratchet; 450, Compression spring; 500, Storage mechanism; 510, Ring body; 511, Filling groove; 520, Disc; 521, Sliding hole; 522, Notch; 530, Rotating shaft; 531, Support plate; 540, Arc plate; 550, Fixed rod; 551, Round rod; 600, Pushing mechanism; 610, Rotating rod; 620, Connecting frame; 621, Slider; 630, Push rod; 640, Plate body; 641, Return spring; 642, Pulley; 650, Trapezoidal block. Implementation
[0021] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0022] Please see Figure 1-11 As shown, an intelligent control system for emergency lighting in a factory workshop includes a frame 100, a rotating mechanism 200 on one side of the frame 100, a pulling mechanism 300 at the bottom of the rotating mechanism 200, a turnover mechanism 400 in conjunction with the rotating mechanism 200, and a storage mechanism 500 inside the frame 100, which is fixedly connected to the turnover mechanism 400. The rotating mechanism 200 includes a lamp frame 210. A light-transmitting plate 211 is fixedly connected to one side of the lamp frame 210, and a lampshade 250 is fixedly connected to one side of the light-transmitting plate 211. A connecting rod 220 is fixedly connected to the middle of the other side of the lamp frame 210. A lamp body 230 is fixedly connected to the middle of one side of the connecting rod 220, and a rotating roller 240 is fixedly connected to the middle of the other side. A rectangular groove 101 is provided on one side of the frame 100. One end of the rotating roller 240 is rotatably connected to the center of the rectangular groove 101. A connecting groove 212 is provided on the bottom surface of the lamp frame 210, and the pulling mechanism 300 is located in the connecting groove 212. The frame 100 is installed on the wall. The rectangular lamp frame 210 can rotate around the roller 240 by the pulling mechanism 300 in the pulling system. Originally, the light from the lamp body 230 was blocked by the lampshade 250, and most of the light was directed to the ground. However, the bright light in the dark is easy to dazzle and glare. The lampshade 250 can prevent the light from shining directly into people's eyes and illuminate the road clearly. At the same time, when the user uses the pulling mechanism 300, the lamp frame 210 can be rotated to adjust the angle of light illumination, making it easier for the user to see the surrounding road.
[0023] The pulling mechanism 300 includes a connecting plate 310, one end of which is rotatably connected to one end of the connecting groove 212. A smart push rod 320 is fixedly connected to one end of the lamp frame 210, and a stop plate 330 is provided below the movable end of the smart push rod 320. The middle part of the stop plate 330 is rotatably connected to one end of the bottom surface of the lamp frame 210. One end of the stop plate 330 is rotatably connected to the movable end of the smart push rod 320, and the other end is in contact with the connecting plate 310. By connecting the smart push rod 320 to the controller, in the initial position, the stop plate 330... The end of the lamp is kept horizontal by the pressure of the intelligent push rod 320, so that the other end of the support plate 330 supports the connecting plate 310 and keeps it stationary. After the main circuit stops supplying power, the lamp body 230 starts automatically, and the intelligent push rod 320 starts automatically at the same time, pulling one end of the support plate 330 upward and lowering the other end of the support plate 330. This causes the support plate 330 to no longer support the connecting plate 310, and the connecting plate 310 to automatically drop down, making it easy for the user to pull the connecting plate 310 to drive the lamp frame 210 to rotate, thereby adjusting the position of the light illumination.
[0024] Both ends of the top surface of the lamp frame 210 are provided with light leakage grooves 213, so that when the lamp frame 210 rotates, the light leaking from the light leakage grooves 213 will sweep across the ground due to the rotating lamp frame 210, helping people to see the road clearly. At the same time, since the frame 100 is installed at a high position on the wall, the light leaking from the light leakage grooves 213 is not easy for people to see directly, thus not being dazzling.
[0025] The turnover mechanism 400 includes a slide plate 410. A groove 102 is formed on one side of the rectangular groove 101, and the slide plate 410 is slidably connected to the inside of the groove 102. An L-shaped plate 420 is fixedly connected to one end of the slide plate 410, and multiple rotating plates 430 are rotatably connected to one side of the L-shaped plate 420. A return spring 431 is fixedly connected to one side of each of the multiple rotating plates 430, and one end of each of the multiple return springs 431 is fixedly connected to one side of the L-shaped plate 420. A ratchet 440 is fixedly sleeved on the outer wall of the rotating roller 240, and the ratchet... Wheel 440 engages with the adjacent rotating plate 430. Multiple compression springs 450 are fixedly connected to the bottom surface of the slide plate 410, with one end of each spring fixedly connected to the bottom surface of the rectangular groove 101. A stop block 221 is fixedly connected to the other side of the connecting rod 220, and the stop block 221 movably abuts against the top surface of the slide plate 410. By pulling the connecting plate 310, the rectangular lamp frame 210 rotates around the rotating roller 240. Simultaneously, due to the high installation height of the frame 100, it allows the user to... When the connecting plate 310 is pulled down, one end of the connecting groove 212 will face the ground, controlling the rotation direction of the lamp frame 210. Then, the rotation of the lamp frame 210 causes the abutment 221 to move in an arc and press the slide plate 410 down. At the same time, the lamp frame 210 drives the rotating roller 240 and the ratchet 440 to rotate synchronously. When the ratchet 440 rotates, it will squeeze multiple adjacent rotating plates 430, causing multiple return springs 431 to contract and reset, without affecting the rotation of the ratchet 440. Then, when the lamp frame 210 rotates to the connecting plate 310, the connecting groove 212 will be pulled down. When one end of the through groove 212 is close to the ground, the stop block 221 disengages from the slide plate 410, causing the slide plate 410 to move upward due to the reset effect of the stop spring 450. At the same time, multiple rotating plates 430 on the L-shaped plate 420 engage with the teeth of the ratchet 440, causing the ratchet 440 to rotate. This causes the ratchet 440 to drive the rotating roller 240 and the lamp frame 210 to continue rotating, allowing the lamp frame 210 to complete a full rotation, providing simultaneous illumination to the front and rear of the road, making it easier for evacuated people to see the road.
[0026] Storage mechanism 500 includes a ring 510, which is fixedly connected inside the frame 100. A disc 520 is fixedly connected to the inner wall of the ring 510. A rotating shaft 530 is rotatably connected to the center of one side of the disc 520. A torsion spring is provided at one end of the rotating shaft 530, with one end of the torsion spring fixedly connected to one end of the rotating shaft 530 and the other end fixedly connected to one side of the disc 520. Two trays 531 for supporting flashlights are symmetrically fixedly connected to the outer wall of the rotating shaft 530. An arc-shaped plate 540 is fixedly connected to one side of the disc 520. The frame 100... A guide groove 104 is provided on one side, and a fixed rod 550 is slidably embedded inside the guide groove 104. A round rod 551 is fixedly connected to the top of the fixed rod 550, and the bottom end is fixedly connected to the top surface of the slide plate 410. One support plate 531 is in movable contact with the arc plate 540, and the top surface of the other support plate 531 is in contact with the round rod 551. Filling grooves 511 are provided on the top surface of the frame 100 and the outer wall of the disc 520, and the two filling grooves 511 are connected internally. A rectangular groove 101 is provided on one side at the corresponding position of the arc plate 540. There is a connecting port 103. In the initial state, the two trays 531 are tilted, with one tray 531 located below the other. Multiple emergency flashlights are filled into the filling groove 511, causing these flashlights to move above one tray 531. Then, after the slide plate 410 is pressed down by the abutment block 221, the slide plate 410 pulls the fixing rod 550 and the round rod 551 to descend synchronously, causing the round rod 551 to press down the other tray 531, causing one tray 531 to rotate around the pivot 530 and lift. The mechanism causes a flashlight on a tray 531 to roll toward the pivot 530, moving one of the flashlights to the curved plate 540 where it is lifted up. One side of the curved plate 540 is sloped to facilitate lifting the flashlight that slides along the top surface of a tray 531. After the slide plate 410 is lifted and reset by multiple compression springs 450, the pivot 530 automatically twists and resets under the action of the torsion spring. Except for the flashlight lifted by the curved plate 540, all other flashlights will be reset and stacked on a tray 531.
[0027] The sum of the length of the abutment 221 and the thickness of the fixing rod 550 is equal to the width of the top surface of the slide plate 410, so that the abutment 221 will not come into contact with the fixing rod 550 when sliding, thereby preventing the fixing rod 550 from blocking the abutment 221 from detaching from the slide plate 410.
[0028] The curved plate 540 is equipped with a jacking mechanism 600; The actuating mechanism 600 includes a rotating rod 610, one end of which is rotatably connected to the inner wall of the ring 510. The rotating rod 610 is located on the other side of the disc 520, and the other end of the rotating rod 610 is fixedly connected to two symmetrical connecting frames 620. Sliding sliders 621 are slidably connected inside each of the two connecting frames 620. A sliding hole 521 is provided on the other side of the disc 520 at a corresponding position on the arc plate 540. A push rod 630 is slidably embedded inside the sliding hole 521. The push rod 630 is movably embedded in the arc plate 540. One slider 621 is rotatably connected to one end of the push rod 630, and the other… A slider 621 is rotatably connected to a plate 640 at one end. A notch 522 is provided on one side of the disc 520. A pulley 642 is rotatably connected to one side of the plate 640, and the pulley 642 is located inside the notch 522. A return spring 641 is fixedly connected to the other side of the plate 640. One end of the return spring 641 is fixedly connected to the other side of the frame 100. A moving groove 105 is provided on one side of the frame 100. A trapezoidal block 650 is slidably connected inside the moving groove 105. One end of the trapezoidal block 650 is fixedly connected to one side of the slide plate 410. The trapezoidal block 650 and the pulley 642 move in contact, and the slide plate 410... 10 slides down, causing trapezoidal block 650 to slide down synchronously, so that there is no resistance at pulley 642. This allows the return spring 641, which was compressed by the pressure of trapezoidal block 650 in the initial position, to return to its original position and rebound, thereby lifting plate 640 and moving it. This causes another slider 621 to move towards disk 520 and drive rotating rod 610 to rotate. The slider 621 that was originally close to disk 520 will be affected by the rotation of rotating rod 610 and move away from disk 520. This allows top rod 630 to disengage from arc plate 540 without affecting arc plate 540's ability to pick up the flashlight. At this time, top rod 630 will... Part of the rod remains stuck in the sliding hole 521 and will not come out, ensuring that the top rod 630 can be re-embedded in the arc plate 540 when it is reset. Then, when the slide plate 410 is reset by the reset force of the compression spring 450, it will drive the trapezoidal block 650 to move upward. The trapezoidal block 650 moves away from the disc 520 by contacting the pulley 642. The pulley 642 moves along the inclined surface of the trapezoidal block 650. At the same time, the top rod 630 is re-inserted into the sliding hole 521, so that the top rod 630 contacts the inner arc surface of the arc plate 540, and pushes the flashlight on the arc plate 540 out from the connecting port 103 into the lamp frame 210.
[0029] A sliding groove 311 is provided on one side of the connecting plate 310. A rectangular frame 340 is provided inside the sliding groove 311. One end of the rectangular frame 340 is slidably connected to the inside of the sliding groove 311, and a slot 341 is provided at the other end of the rectangular frame 340. An inclined plate 350 is fixedly connected to one inner side wall of the lamp frame 210. After the flashlight moves into the lamp frame 210, as the lamp frame 210 rotates one revolution, the connecting groove 212 faces the ground again, causing the flashlight to slide into the rectangular frame 340 through the inclined plate 350. The rectangular frame 340 will naturally slide to one end of the sliding groove 311 when the connecting plate 310 hangs down naturally. The length of the connecting plate 310 is extended, making it easier for users to access the rectangular frame 340 and pull the connecting plate 310 through the rectangular frame 340. At the same time, the sliding of the rectangular frame 340 makes it less likely for the connecting plate 310 to re-embed into the connecting groove 212 when the lamp frame 210 rotates once. After the rectangular frame 340 hangs down again, the flashlight falls naturally inside the rectangular frame 340. Users can take out the flashlight inside the rectangular frame 340 through the slot 341. Then, users can use the flashlight to provide auxiliary lighting for the road surface so that users can quickly find the evacuation route in the dark.
[0030] The top surface of the inclined plate 350 has multiple light-transmitting grooves 351, which allow light to pass through the inclined plate 350 and increase the illumination area of the light.
[0031] A tension pad 343 is fixedly connected between one end of the inclined plate 350 and one end of the rectangular frame 340. A rubber pad 342 is fixedly connected to one end of the slot 341. The tension pad 343 is made of silicone and can be stretched. After the flashlight moves into the lamp frame 210, the lamp frame 210 rotates once and the connecting slot 212 faces the ground again, so that the flashlight will slide along the inclined plate 350 and enter the rectangular frame 340 through the tension pad 343. The rubber pad 342 can prevent the flashlight from sliding out of the slot 341 naturally.
[0032] Working principle: When in use, the frame 100 is installed on the wall with screws and connected to the circuit. The lamp body 230 and the intelligent push rod 320 are connected to the controller and the backup power supply. Multiple emergency small flashlights are filled into the filling slot 511, so that these flashlights are moved above a support plate 531. After the power is cut off, the lamp body 230 and the intelligent push rod 320 are automatically turned on. The movable end of the intelligent push rod 320 is automatically moved up, pulling one end of the support plate 330 up, so that the other end of the support plate 330 is lowered, so that the connecting plate 310 is automatically lowered. The rectangular frame 340 will naturally slide to one end of the sliding slot 311 when the connecting plate 310 is naturally lowered.
[0033] Then, the user pulls down the rectangular frame 340, causing the rectangular light frame 210 to rotate around the rotating roller 240. Simultaneously, pulling down the rectangular frame 340 moves the connecting plate 310 downwards, so that one end of the connecting groove 212 faces the ground. This causes the light frame 210, ratchet 440, and rotating roller 240 to rotate in the same direction. The rotation of the light frame 210 causes the abutment block 221 to move in an arc, pressing the sliding plate 410 downwards. As the ratchet 440 rotates, it squeezes adjacent rotating plates 430, causing multiple return springs 431 to contract. The multiple return springs 431 then automatically reset due to their restoring force, without affecting... When the ratchet 440 rotates, and the lamp frame 210 rotates to the point where one end of the connecting groove 212 is close to the ground, the abutment block 221 disengages from the slide plate 410, causing the slide plate 410 to move upward due to the reset effect of the pressure spring 450. At the same time, multiple rotating plates 430 on the L-shaped plate 420 mesh and lock with the teeth of the ratchet 440, causing the ratchet 440 to rotate. This causes the ratchet 440 to drive the rotating roller 240 and the lamp frame 210 to continue rotating, allowing the lamp frame 210 to complete one full rotation. This allows the light from the lamp body 230 and the light from the light leakage groove 213 to illuminate the road in front of and behind the frame 100.
[0034] After the slide plate 410 is pressed down by the abutment block 221, the slide plate 410 pulls the fixing rod 550 and the round rod 551 down synchronously, causing the round rod 551 to press down another support plate 531, causing one support plate 531 to rotate and lift around the pivot 530, so that the flashlight on one support plate 531 rolls towards the pivot 530, so that one of the flashlights moves to the curved plate 540 and is scooped up by the curved plate 540. One side edge of the curved plate 540 is a slope, which makes it easy to scoop up the flashlight that slides along the top surface of the support plate 531. Then, after the slide plate 410 is lifted and reset by multiple pressure springs 450, the pivot 530 automatically twists and resets under the action of the torsion spring. Except for the flashlight that was scooped up by the curved plate 540, the other flashlights will be reset to a support plate 531 and piled up.
[0035] When the skateboard 410 is pressed down by the abutment block 221, it causes the trapezoidal block 650 to slide down synchronously, so that there is no contact at the pulley 642. This causes the originally contracted return spring 641 to return to its original position, thereby lifting the plate 640 and moving it. This causes another slider 621 to move towards the disc 520 and drive the rotating rod 610 to rotate. The slider 621 that was originally close to the disc 520 will be affected by the rotation of the rotating rod 610 and move away from the disc 520. This allows the push rod 630 to disengage from the curved plate 540 without affecting the curved plate 540's ability to pick up the flashlight. At this time, the top rod 630 will remain partially stuck in the sliding hole 521 and will not come out. Then, when the slide plate 410 is reset by the reset force of the compression spring 450, it will drive the trapezoidal block 650 to move upward. The trapezoidal block 650 will move away from the disc 520 by contacting the pulley 642. The pulley 642 will move along the inclined surface of the trapezoidal block 650. At the same time, the top rod 630 will be reinserted into the sliding hole 521, so that the top rod 630 contacts the inner arc surface of the arc plate 540, and pushes the flashlight on the arc plate 540 out from the connecting port 103 into the lamp frame 210.
[0036] After the flashlight falls into the lamp frame 210, after the lamp frame 210 has rotated once, the connecting groove 212 faces the ground again, and the rectangular frame 340 hangs down naturally, so that the flashlight inside the lamp frame 210 will slide along the inclined plate 350 and slide into the rectangular frame 340 along the stretch pad 343. Due to its own weight, the flashlight slides from the rectangular frame 340 to the slot 341. Then, after the lamp frame 210 has rotated once, the user can observe the surrounding environment by taking out the flashlight from the slot 341.
[0037] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0038] The above description is merely an example and illustration of the present invention. Those skilled in the art can make various modifications or additions to the specific embodiments described, or use similar methods to replace them, as long as they do not deviate from the invention or exceed the scope defined in the claims, all of which should fall within the protection scope of the present invention.
Claims
1. An intelligent control system for emergency lighting in a factory workshop, comprising a frame, characterized in that, A rotating mechanism is provided on one side of the frame, a pulling mechanism is provided at the bottom of the rotating mechanism, a turnover mechanism is provided in conjunction with the rotating mechanism, and a storage mechanism is provided inside the frame, with the storage mechanism and the turnover mechanism being fixedly connected. The rotating mechanism includes a lamp frame, a light-transmitting plate fixedly connected to one side of the lamp frame, a lampshade fixedly connected to one side of the light-transmitting plate, a connecting rod fixedly connected to the middle of the other side of the lamp frame, a lamp body fixedly connected to the middle of one side of the connecting rod, and a rotating roller fixedly connected to the middle of the other side. A rectangular groove is opened on one side of the frame, and one end of the rotating roller is rotatably connected to the center of the rectangular groove. A connecting groove is opened on the bottom surface of the lamp frame, and the pulling mechanism is located inside the connecting groove.
2. The intelligent control system for emergency lighting in a factory workshop according to claim 1, characterized in that, The pulling mechanism includes a connecting plate, one end of which is rotatably connected to one end of the connecting groove. A smart push rod is fixedly connected to one end of the lamp frame. A stop plate is provided below the movable end of the smart push rod. The middle part of the stop plate is rotatably connected to one end of the bottom surface of the lamp frame. One end of the stop plate is rotatably connected to the movable end of the smart push rod, and the other end is in contact with the connecting plate.
3. The intelligent control system for emergency lighting in a factory workshop according to claim 2, characterized in that, Light leakage grooves are provided at both ends of the top surface of the lamp frame.
4. The intelligent control system for emergency lighting in a factory workshop according to claim 1, characterized in that, The turnover mechanism includes a slide plate. A groove is opened on one side of the rectangular groove. The slide plate is slidably connected to the inside of the groove. An L-shaped plate is fixedly connected to one end of the slide plate. Multiple rotating plates are rotatably connected to one side of the L-shaped plate. A spring is fixedly connected to one side of each of the multiple rotating plates. One end of each spring is fixedly connected to one side of the L-shaped plate. A ratchet is fixedly sleeved on the outer wall of the rotating roller. The ratchet is movably engaged with the adjacent rotating plate. Multiple compression springs are fixedly connected to the bottom surface of the slide plate. One end of each compression spring is fixedly connected to the bottom surface of the rectangular groove. A stop block is fixedly connected to the other side of the connecting rod. The stop block movably abuts against the top surface of the slide plate.
5. The intelligent control system for emergency lighting in a factory workshop according to claim 4, characterized in that, The storage mechanism includes a ring body fixedly connected to the inside of a frame. A disc is fixedly connected to the inner wall of the ring body. A rotating shaft is rotatably connected to the center of one side of the disc. A torsion spring is provided at one end of the rotating shaft. One end of the torsion spring is fixedly connected to one end of the rotating shaft, and the other end is fixedly connected to one side of the disc. Two trays for supporting flashlights are symmetrically fixedly connected to the outer wall of the rotating shaft. An arc-shaped plate is fixedly connected to one side of the disc. A guide groove is provided on one side of the frame body. A fixed rod is slidably embedded in the guide groove. A round rod is fixedly connected to the top of the fixed rod, and the bottom end is fixedly connected to the top surface of the sliding plate. One tray is in movable contact with the arc-shaped plate, and the top surface of the other tray is in contact with the round rod. Filling grooves are provided on the top surface of the frame body and the outer wall of the disc. The two filling grooves are connected internally. A connecting opening is provided on one side of the rectangular groove at the corresponding position of the arc-shaped plate.
6. The intelligent control system for emergency lighting in a factory workshop according to claim 5, characterized in that, The sum of the length of the abutment and the thickness of the fixing rod is equal to the width of the top surface of the slide plate.
7. The intelligent control system for emergency lighting in a factory workshop according to claim 5, characterized in that, The arc-shaped plate is equipped with a jacking mechanism; The jacking mechanism includes a rotating rod, one end of which is rotatably connected to the inner wall of the ring. The rotating rod is located on the other side of the disc, and the other end of the rotating rod is fixedly connected to two symmetrical connecting frames. A slider is slidably connected inside each of the two connecting frames. A sliding hole is opened on the other side of the disc at the corresponding position of the arc plate. A jacking rod is slidably embedded inside the sliding hole. The jacking rod is movably embedded in the arc plate. One end of a slider is rotatably connected to one end of the jacking rod, and the other end of a slider is rotatably connected to a plate. A notch is opened on one side of the disc, and a pulley is rotatably connected to one side of the plate. The pulley is located inside the notch. A return spring is fixedly connected to the other side of the plate. One end of the return spring is fixedly connected to the other side of the frame. A moving groove is opened on one side of the frame. A trapezoidal block is slidably connected inside the moving groove. One end of the trapezoidal block is fixedly connected to one side of the sliding plate, and the trapezoidal block and the pulley move in contact.
8. The intelligent control system for emergency lighting in a factory workshop according to claim 2, characterized in that, A sliding groove is provided on one side of the connecting plate, and a rectangular frame is provided inside the sliding groove. One end of the rectangular frame is slidably connected to the inside of the sliding groove, and a slot is provided at the other end of the rectangular frame. An inclined plate is fixedly connected to one inner side wall of the lamp frame.
9. The intelligent control system for emergency lighting in a factory workshop according to claim 8, characterized in that, The top surface of the inclined plate has multiple light-transmitting grooves.
10. A factory workshop emergency lighting intelligent control system according to claim 8, characterized in that, A tension pad is fixedly connected between one end of the inclined plate and one end of the rectangular frame, and a rubber pad is fixedly connected to one end of the trough.