Mobile lighting monitoring device equipped with solar panel
By introducing threaded rods, gears and wedge-shaped structures into the mobile lighting monitoring device, combining magnetic blocks and magnetic guide rings, the stability of the device during outdoor use and the energy absorption effect of solar panels is solved, and the stable storage and safe operation of the lamp panels and cameras are achieved.
Patent Information
- Application Number
- CN202510755816.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-07
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-06-07
AI Technical Summary
The existing mobile lighting monitoring devices have poor stability when used outdoors, which affects the energy absorption effect of solar panels, and the external settings of the lamp panels and cameras increase the risk of movement and transport of the device.
By setting the threaded rod and nut on the bottom plate, the adjustment plate drives the support column and positioning unit to ensure the stability of the device; the gears and wedge-shaped structures are used to achieve the inclined deployment of the solar panel and the stable storage of the camera; the magnetic block and the magnetic guide ring achieve the angle adjustment between the rotary plate and the top plate, ensuring the stability and safety of lighting monitoring.
It realizes effective energy absorption of solar panels, stable deployment and storage of the device, avoids accidental touching of operating buttons, and improves the working stability and safety of the device.
Smart Images

Figure CN120281881A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of lighting monitoring devices, and relates to a mobile lighting monitoring device, in particular to a mobile lighting monitoring device configured with a solar panel. Background Art
[0002] During the construction process, sometimes it is necessary to use a mobile lighting monitoring device to monitor and illuminate the construction site. Generally, the mobile lighting monitoring device uses a camera and a lighting lamp. The working principle of the solar panel is to convert solar energy into electrical energy by the solar panel, and then store the electrical energy in the storage battery for the camera and the lighting lamp to use.
[0003] After retrieval, a solar mobile lighting monitoring device disclosed in Chinese patent literature [Application No.: CN202120979327.3; Publication No.: CN214369444U] includes a mobile vehicle frame, a chassis, a lifting mast, a lamp, a monitoring mechanism, a first solar panel and a storage battery. The first solar panel is rotatably connected to the chassis through a horizontal rotating shaft, and an electric cylinder for rotating the first solar panel is hinged between the first solar panel and the chassis; second solar panels are hinged on both sides of the first solar panel, and a locking mechanism is provided between the second solar panel and the first solar panel. The locking mechanism is used to lock the position of the second solar panel to keep the second solar panel flush with the first solar panel.
[0004] Although the storage of the solar panel in the mobile lighting monitoring device disclosed in this patent makes the transportation of the solar mobile lighting monitoring device smoother, however, since the mobile lighting monitoring device is usually used in outdoor construction sites, the device is prone to affect the working effect due to instability during use, and also affects the energy absorption effect of the solar panel. Moreover, the existing mobile lighting monitoring device can only store the solar panel, and the external setting of the searchlight and camera with a larger structure will affect the moving stability of the lighting monitoring device, greatly increasing the use risk of the device moving and transporting. Summary of the Invention
[0005] The purpose of the present invention is to address the above problems existing in the prior art, and propose a mobile lighting monitoring device configured with a solar panel. The technical problem to be solved by this invention is: how to effectively store the lamp panel, camera and solar panel as a whole, and ensure the energy absorption effect of the solar panel during the operation of the device and the overall working stability of the device.
[0006] The purpose of the present invention can be achieved by the following technical solutions: A mobile lighting monitoring device configured with solar panels, comprising a bottom plate and a plurality of moving wheels rotatably connected below the bottom plate. The surface of the bottom plate is fixedly connected with a body, and a plurality of support columns are arranged through the interior of the bottom plate. The plurality of support columns are distributed on the outer periphery of the body. The top end of the support column is fixedly connected with an adjustment plate, and the adjustment plate is sleeved on the outer wall of the body. The bottom end of the adjustment plate is fixedly connected with a positioning unit; The positioning unit includes two columns, which are respectively fixedly connected to both sides of the bottom end of the adjustment plate. The outer wall of the column is sleeved and connected with a telescopic spring, and the bottom end of the telescopic spring is fixedly connected to the surface of the bottom plate; Both sides of the bottom end of the column are wedge-fittingly connected with wedge blocks, and the outer side of the wedge block is fixedly connected with a resisting block. The resisting block is telescopically arranged below the bottom plate, and the resisting block is movably attached to one side of the moving wheel; Both sides of the inner wall of the adjustment plate away from the column are fixedly connected with a toothed plate, and the surface of the toothed plate is meshed and connected with a gear column. The gear column is rotatably installed on the outer side of the body. The side of the gear column away from the toothed plate is meshed and connected with a tooth column, and the tooth column is slidably connected to the outer side of the body; The two tooth columns are symmetrically arranged about the central axis of the body, and the tops of the tooth columns are both movably attached to the bottom ends of the solar panel bodies. The two solar panel bodies are symmetrically arranged about the central axis of the body, and the outer sides of the two solar panel bodies are both rotatably connected to the body; The surface of the bottom plate is fixedly installed with an electric push rod. The electric push rod is located inside the body, and a cavity for accommodating the installation of the electric push rod is opened inside the body. The top of the electric push rod is connected with a rotating unfolding unit.
[0007] The working principle of the present invention is as follows: During operation, by squeezing the adjusting plate downward, with the nut arranged on the surface of the adjusting plate, and due to the corresponding arrangement of the nut and the threaded rod, when the adjusting plate moves downward, it drives the nut to rotate, enabling the nut to be threadedly connected to the threaded rod, facilitating the adjusting plate to fit on the surface of the base plate. Moreover, by arranging a limiting plate on one side of the nut and under the action of the bidirectional lead screw, the user can drive the limiting plate to fit and limit the nut through the bidirectional lead screw, ensuring the stability of the adjusting plate on the surface of the base plate. At the same time, by fixedly connecting a plurality of support columns to the bottom end of the adjusting plate, the plurality of support columns support the device outside the moving wheels. Meanwhile, by fixedly connecting a column to the bottom end of the adjusting plate, under the action of the wedge-shaped blocks wedge-connected to both sides of the column, the wedge-shaped blocks drive the abutting blocks to tightly abut against the moving wheels, enabling the device to be doubly limited by the fixed connection of the support columns and the moving wheels, ensuring the stability of the device during outdoor operation. At the same time, by fixedly connecting toothed plates to both sides of the adjusting plate, under the meshing connection of the toothed plates and the gear columns, when the adjusting plate drives the toothed plates to move downward outside the gear columns, the tooth columns on the other side of the gear columns move upward synchronously. By connecting a top block and a fitting roller to the top end of the tooth columns, the fitting roller fits and presses upward at the bottom end of the solar panel body through the guide groove, facilitating the solar panel body to rotate on one side of the mounting block, enabling the solar panel bodies symmetrically arranged on both sides above the machine body to expand outward, facilitating the solar panel bodies to absorb energy, and enabling the upper part of the rotation and expansion unit to be unrestricted. At the same time, under the action of the adjusting plate and the baffle, the operation buttons are not limited, facilitating the user to control the electric push rod through the operation buttons. Under the action of the rotating plate rotatably connected to the bottom of the top plate, the rotating plate can rotate at an angle below the top plate through the magnetic block and the magnetic guiding ring, realizing the angle adjustment between the rotating plate and the top plate. When the rotating plate rotates to a "cross" distribution below the top plate, by fixedly connecting a gear ring to the outer wall of the magnetic block, the gear ring rotates synchronously inside the top plate. By meshing two racks on the outer wall of the gear ring, the two racks drive the mounting plates at the outer ends to slide outward inside the top plate through the connecting rod, enabling the two mounting plates to drive the cameras embedded at the bottom ends to extend out at both ends of the top plate. Moreover, by arranging lamp plates at the bottom ends of both sides of the rotating plate and the top plate, the lighting effect of the device is ensured, facilitating the user to drive the top plate and the rotating plate to rise for lighting and monitoring through the electric push rod, ensuring the deployment stability of the device during operation.
[0008] A plurality of threaded rods are fixedly connected to the surface of the base plate. Through holes corresponding to the threaded rods are formed inside the adjusting plate, and nuts are rotatably connected to the surfaces of the through holes. The nuts are correspondingly arranged above the threaded rods.
[0009] With the above structure, by arranging a threaded rod on the surface of the bottom plate and corresponding the threaded rod with the nut, when the adjusting plate drives the nut to move downward, the nut is threadedly connected to the outer wall of the threaded rod. Under the action of the nut and the threaded rod, the adjusting plate can be fixed at different heights on the surface of the bottom plate through the nut, which is convenient for the user to fit and fix the adjusting plate on the surface of the bottom plate, ensuring the fixing effect of the adjusting plate above the bottom plate and facilitating the accurate movement of the adjusting plate driving the positioning unit.
[0010] One side of the bottom plate is rotatably connected with a rotating column, and a guide wheel is rotatably installed at the bottom end of the rotating column. The guide wheel is located between the two moving wheels. A pulling plate is fixedly installed at the top of the rotating column, and the pulling plate is arranged parallel to the upper part of the bottom plate.
[0011] With the above structure, by arranging a rotating column on one side of the bottom plate, the user can connect the hook with the pulling plate, which is convenient for the pulling plate to drive the guide wheel to conduct guiding through the rotating column. Then the guide wheel drives the whole device to move and guide, ensuring the moving effect of the moving wheels, realizing the moving effect of the device outdoors, and having a simple structure and convenient operation.
[0012] The two abutting blocks are symmetrically arranged about the central axis of the column, and the abutting blocks are vertically distributed with respect to the column. And the moving wheels are arranged in a "concave" structure with respect to the abutting blocks; The bottom end of the column is in an inverted equilateral triangle structure, and the two moving wheels on the same side are symmetrically arranged about the central axis of the column; One side of the wedge-shaped block is fixedly connected with a return spring, and the other end of the return spring is fixedly installed on the bottom plate.
[0013] With the above structure, through the inverted equilateral triangle structure at the bottom end of the column, when the column moves downward, it synchronously drives the two wedge-shaped blocks on both sides to move outward. Under the action of fixedly connecting the abutting blocks to the outer ends of the wedge-shaped blocks, the two abutting blocks respectively fit and press against the two moving wheels on both sides. Moreover, under the "concave" structure of the moving wheels, the fitting and limiting effect between the abutting blocks and the moving wheels is ensured, avoiding the movement of the moving wheels and further improving the limiting effect of the device during fixation.
[0014] The top end of the tooth column is fixedly connected with a top block, and a fitting roller is rotatably connected inside the top block. The top end of the fitting roller is slidably and fittingly connected with a guide groove, and the outer wall of the guide groove is fixedly connected with a solar panel body. The outer side of the solar panel body is rotatably connected with a mounting block, and the mounting block is fixedly connected to the outer wall of the machine body; The outer wall of the tooth column is fixedly connected with a slider, and a slideway for accommodating the sliding of the slider is provided on the outer wall of the machine body.
[0015] With the above structure, under the action of the fitting roller rotatably connected inside the top block, and the top of the fitting roller protruding from the top of the top block, the fitting roller can always press upward against the bottom end of the solar panel body through the guiding groove, facilitating the rotation of the solar panel body on one side of the mounting block. When the adjusting plate drives the support column to move downward to fix the device, the tooth column synchronously tilts the solar panel body outward through the fitting roller at the top, facilitating the unfolding of two symmetrically arranged solar panel bodies, ensuring the energy absorption effect of the solar panel body during use.
[0016] An operation button is fixedly connected to the surface of the body. The operation button is located on the upper outer wall of the body. A baffle is movably arranged outside the operation button, and the baffle is fixedly connected to the inner wall of one side of the adjusting plate.
[0017] With the above structure, by arranging the operation button on the outer wall of the body, under the normal shielding effect of the baffle on the operation button, when the user controls the body through the operation button, it is necessary to drive the baffle to descend through the adjusting plate, ensuring the opening effect of the operation button when the adjusting plate drives the support column to fix the device, ensuring the accuracy of the use of the operation button, avoiding accidental touch and misoperation of the operation button, and improving the safety of the device during operation.
[0018] The rotation and unfolding unit includes a top plate. The inner top wall of the top plate is fixedly connected to the top end of the electric push rod. A rotating plate is rotatably connected below the top plate. Lamp plates are fixedly connected to both the bottom ends of the two sides of the rotating plate and the top plate. A connecting plate is fixedly connected inside the rotating plate. The connecting plate is rotatably connected to the outer wall of the electric push rod. A magnetic block is fixedly connected to the surface of the connecting plate, and a gear ring is fixedly connected to the outer wall of the magnetic block. The gear ring is rotatably connected inside the top plate. A magnetic guiding ring is fixedly connected inside the top plate, and the magnetic guiding ring is magnetically attached and connected to the inner wall of the magnetic block.
[0019] With the above structure, the surface area of the rotating plate is the same as that of the top plate. By fixedly connecting the top plate to the top end of the electric push rod, the electric push rod can drive the top plate to move upward through energization. Moreover, under the rotation of the top plate and the rotating plate, the rotating plate and the top plate move for lighting and monitoring above the body. And through the setting of the magnetic block and the magnetic guiding ring, the user can rotate the angle of the rotating plate below the top plate through the magnetic block, facilitating the angle adjustment between the rotating plate and the top plate, ensuring the magnetic structure in which the magnetic block is stably limited by the magnetic guiding ring, and guaranteeing the stable effect during the rotation adjustment of the rotating plate.
[0020] Both the upper and lower outer walls of the gear ring are meshed and connected with racks. The racks are slidably connected to the inner wall of the top plate. The outer ends of the racks are fixedly connected with connecting rods. One end of the connecting rod away from the rack is fixedly installed with a mounting plate. The bottom end of the mounting plate is fitted and installed with a camera; The inside of the top plate is provided with a chute that can accommodate the sliding of the rack, and through grooves that can accommodate the mounting plate to extend out are opened at both ends of the top plate.
[0021] With the above structure, by meshing and connecting two racks on the outer wall of the gear ring, when the rotating plate drives the gear ring to rotate inside the top plate to the "cross" distribution in the vertical setting, the two racks drive the mounting plates at the outer ends through the connecting rods to slide outward inside the top plate, so that the two mounting plates extend out at both ends of the top plate respectively, which is convenient for the mounting plates to perform mobile monitoring through the cameras fitted at the bottom ends. Through such a setting, the rotating plate can achieve the stable storage of the camera and the top plate through rotation, which is convenient for the safety of the camera and the lamp board when the device is stored, and has a compact structure and strong practicability.
[0022] The rotating plate and the top plate are parallelly distributed, the center of the gear ring coincides with the axis of the top plate, and the center of the gear ring coincides with the center of the electric push rod.
[0023] With the above structure, through the parallel setting of the rotating plate and the top plate, the rotating plate can rotate precisely below the top plate, which is convenient for the rotating plate and the top plate to be in an "X" shape at different angles or a "cross" shape in a balanced setting, so that the rotating plate and the top plate can drive the lamp board at the bottom for large-range lighting. Moreover, through the concentric structure setting of the gear ring and the electric push rod, the rotation of the rotating plate and the top plate is precise, which is convenient for the rotating plate to drive the gear ring to rotate precisely inside the top plate synchronously.
[0024] Two fixing blocks are fixedly connected to the surface of the adjusting plate. A bidirectional lead screw is rotatably connected between the two fixing blocks. Two limiting plates are symmetrically arranged on the outer wall of the bidirectional lead screw. The limiting plates are located on one side of the nuts.
[0025] With the above structure, after the adjusting plate is adjusted to the specified position, the two limiting plates can be driven by the rotation of the bidirectional lead screw to tightly limit the nuts on both sides, ensuring the connection stability between the nuts and the threaded rods.
[0026] Compared with the prior art, the mobile lighting and monitoring device of the present invention has the following advantages: 1. In the present invention, through the setting of the positioning unit, when the adjusting plate drives the support column to fix the device for use, by symmetrically engaging the toothed plates and toothed columns on the outer wall of the gear column, the toothed columns drive the solar panel body to tilt and unfold, facilitating the energy absorption of the solar panel body, and moreover, there is no restriction above the rotation unfolding unit, facilitating the electric push rod to drive the rotating plate and the top plate to rise. At the same time, under the fixing effect of the adjusting plate and the baffle plate, the operation buttons are synchronously limited by the adjusting plate, avoiding the accidental touch of the operation buttons when the device moves, and ensuring the accuracy of device operation and the safety of movement.
[0027] 2. In the present invention, by arranging a threaded rod on the surface of the bottom plate and corresponding setting the threaded rod and the nut, the adjusting plate can be fixed at different heights on the surface of the bottom plate through the nut, facilitating the user to fit and fix the adjusting plate on the surface of the bottom plate, ensuring that the adjusting plate drives the support column at the bottom to move downward to support the whole device. Moreover, under the connection effect of the adjusting plate and the positioning unit, the transmission stability of the adjustment is ensured, guaranteeing the stability of the device during operation and the inclined energy absorption effect of the solar panel body. At the same time, it facilitates the subsequent movement monitoring of the top plate and the rotating plate driving the top plate and the camera to rise, ensuring the stability and safety of the device during outdoor work.
[0028] 3. In the present invention, under the action of the rotation unfolding unit, when there is no solar panel body blocking above the top plate and the rotating plate, they can move upward through the electric push rod, facilitating the movement illumination monitoring of the rotating plate and the top plate above the machine body. Moreover, through the rotational connection of the rotating plate and the top plate, under the rotation effect of the rotating plate driving the gear ring inside the top plate, by engaging two racks on the outer wall of the gear ring, when the rotating plate and the top plate are in a "cross" distribution perpendicular to each other, the two racks drive the mounting plates at the outer ends to slide outward inside the top plate through the connecting rod, so that the two mounting plates extend out at both ends of the top plate respectively, facilitating the movement monitoring of the mounting plates through the cameras embedded at the bottom ends. Through such a setting, the rotating plate can realize the stable storage of the camera and the top plate through rotation, facilitating the safety of the camera and the lamp panel during the storage of the device, and having a compact structure and strong practicability.
[0029] 4. In the present invention, through the setting of the magnetic block and the magnetic guiding ring, the user can rotate the rotating plate below the top plate through the magnetic block, facilitating the angle adjustment between the rotating plate and the top plate, with a simple structure and high stability, ensuring the magnetic structure of the stable limit of the magnetic block through the magnetic guiding ring, and guaranteeing the stable effect during the rotational adjustment of the rotating plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 is a schematic structural diagram of a mobile lighting monitoring device with a solar panel configured according to the present invention; Figure 2It is a schematic bottom view structure diagram of a mobile lighting monitoring device configured with a solar panel in the present invention; Figure 3 It is a schematic side view structure diagram of a mobile lighting monitoring device configured with a solar panel in the present invention; Figure 4 It is a schematic connection structure diagram of a wedge block and a column in the present invention; Figure 5 It is a schematic structure diagram of a wedge block and a resisting block in the present invention; Figure 6 It is a schematic structure diagram of a toothed plate and a machine body in the present invention; Figure 7 It is in the present invention Figure 6 The enlarged structure diagram at position A; Figure 8 It is a schematic structure diagram of a toothed plate and an adjusting plate in the present invention; Figure 9 It is a schematic bottom view structure diagram of the solar panel body in the present invention; Figure 10 It is a schematic sectional structure diagram of a mobile lighting monitoring device configured with a solar panel in the present invention; Figure 11 It is a schematic connection structure diagram of a rotating unfolding unit and an electric push rod in the present invention; Figure 12 It is a schematic structure diagram of a rotating unfolding unit in the present invention; Figure 13 It is a schematic bottom view structure diagram of the top plate in the present invention; Figure 14 It is a schematic structure diagram of a rotating plate in the present invention; Figure 15 It is a schematic sectional structure diagram of a rotating plate in the present invention; Figure 16 It is a schematic top view structure diagram of a gear ring and a top plate in the present invention.
[0031] In the figure, 1, bottom plate; 2, moving wheel; 3, machine body; 4, support column; 5, adjusting plate; 6, threaded rod; 7, nut; 8, rotating column; 9, guide wheel; 10, pulling plate; 11, column; 12, telescopic spring; 13, wedge block; 14, resisting block; 15, reset spring; 16, baffle; 17, operation button; 18, toothed plate; 19, gear column; 20, toothed column; 21, top block; 22, fitting roller; 23, slider; 24, mounting block; 25, solar panel body; 26, guide groove; 27, electric push rod; 28, top plate; 29, rotating plate; 30, lamp plate; 31, connecting plate; 32, magnetic block; 33, gear ring; 34, magnetic guide ring; 35, rack; 36, connecting rod; 37, mounting plate; 38, camera; 39, chute; 40, fixed block; 41, bidirectional lead screw; 42, limiting plate. Detailed implementation manners
[0032] The following are specific embodiments of the present invention. In combination with the accompanying drawings, the technical solutions of the present invention will be further described, but the present invention is not limited to these embodiments.
[0033] As Figures 1 - 16 shown, a mobile lighting monitoring device configured with a solar panel includes a bottom plate 1, a plurality of mobile wheels 2 rotatably connected below the bottom plate 1, a body 3, a support column 4, an adjustment plate 5, a threaded rod 6, a nut 7, a rotating column 8, a guide wheel 9, a pulling plate 10, a column 11, a telescopic spring 12, a wedge block 13, a resisting block 14, a reset spring 15, a baffle 16, an operation button 17, a toothed plate 18, a gear column 19, a toothed column 20, a top block 21, a fitting roller 22, a slider 23, a mounting block 24, a solar panel body 25, a guide groove 26, an electric push rod 27, a top plate 28, a rotating plate 29, a lamp panel 30, a connecting plate 31, a magnetic block 32, a gear ring 33, a magnetic guide ring 34, a rack 35, a connecting rod 36, a mounting plate 37, a camera 38 and a chute 39. A rotating column 8 is rotatably connected to one side of the bottom plate 1, and a guide wheel 9 is rotatably installed at the bottom end of the rotating column 8. The guide wheel 9 is located between the two mobile wheels 2. The top of the rotating column 8 is fixedly installed with a pulling plate 10, and the pulling plate 10 is arranged parallel to the upper part of the bottom plate 1. By providing the rotating column 8 on one side of the bottom plate 1, the user can connect a hook to the pulling plate 10, facilitating the pulling plate 10 to drive the guide wheel 9 to guide through the rotating column 8, so that the guide wheel 9 drives the overall device to move and guide, ensuring the moving effect of the mobile wheels 2 and realizing the moving effect of the device outdoors. Moreover, the structure is simple and the operation is convenient. At the same time, the body 3 is fixedly connected to the surface of the bottom plate 1, and a plurality of support columns 4 are penetrated through the inside of the bottom plate 1. The plurality of support columns 4 are distributed on the outer periphery of the body 3. The top end of the support column 4 is fixedly connected with an adjustment plate 5. The adjustment plate 5 is sleeved on the outer wall of the body 3, and the bottom end of the adjustment plate 5 is fixedly connected with a positioning unit; A plurality of threaded rods 6 are fixedly connected to the surface of the bottom plate 1. Through holes corresponding to the threaded rods 6 are formed inside the adjusting plate 5, and nuts 7 are rotatably connected to the surfaces of the through holes. The nuts 7 are arranged corresponding to the upper sides of the threaded rods 6. By arranging the threaded rods 6 on the surface of the bottom plate 1 and with the threaded rods 6 and the nuts 7 arranged correspondingly, when the adjusting plate 5 moves downward, it drives the nuts 7 to rotate and lock on the outer walls of the threaded rods 6. Under the action of the nuts 7 and the threaded rods 6, the adjusting plate 5 can be fixed on the surface of the bottom plate 1 through the nuts 7, facilitating the user to fit and fix the adjusting plate 5 on the surface of the bottom plate 1, ensuring the fixing effect of the adjusting plate 5 above the bottom plate 1, and facilitating the adjusting plate 5 to drive the positioning unit to move precisely. At the same time, in order to achieve the limit after the nuts 7 rotate downward, two fixing blocks 40 are fixedly connected to the surface of the adjusting plate 5. A bidirectional lead screw 41 is rotatably connected between the two fixing blocks 40. Two limiting plates 42 are symmetrically arranged on the outer wall of the bidirectional lead screw 41. The limiting plates 42 are located on one side of the nuts 7. Through such an arrangement, after the adjusting plate 5 is adjusted to a specified position, the bidirectional lead screw 41 can be rotated to drive the two limiting plates 42 to tightly press and limit the nuts 7 on both sides, ensuring the connection stability between the nuts 7 and the threaded rods 6. At the same time, considering the operation convenience of the machine body 3, operation buttons 17 are fixedly connected to the surface of the machine body 3, and the operation buttons 17 are located on the upper outer wall of the machine body 3. Moreover, in order to prevent the operation buttons 17 from being accidentally touched, a baffle 16 is movably arranged outside the operation buttons 17. The baffle 16 is fixedly connected to the inner wall of one side of the adjusting plate 5. By arranging the operation buttons 17 on the outer wall of the machine body 3 and with the operation buttons 17 being normally blocked by the baffle 16, when the user controls the machine body 3 through the operation buttons 17, it is necessary to drive the baffle 16 to descend through the adjusting plate 5, ensuring the opening effect of the operation buttons 17 synchronously when the adjusting plate 5 drives the support column 4 to fix the device, ensuring the use accuracy of the operation buttons 17, avoiding accidental touch and misoperation of the operation buttons 17, and improving the working safety of the operation buttons 17; Further, the positioning unit includes two columns 11, which are respectively fixedly connected to both sides of the bottom end of the adjusting plate 5. The bottom end of the column 11 is in an inverted equilateral triangle structure, and two moving wheels 2 on the same side are symmetrically arranged about the central axis of the column 11. At the same time, a telescopic spring 12 is sleeved and connected to the outer wall of the column 11, and the bottom end of the telescopic spring 12 is fixedly connected to the surface of the bottom plate 1. To ensure the transmission effect when the column 11 moves, wedge-shaped blocks 13 are wedge-fitted and connected to both sides of the bottom end of the column 11. One side of the wedge-shaped block 13 is fixedly connected to a return spring 15, and the other end of the return spring 15 is fixedly installed on the bottom plate 1. The outer side of the wedge-shaped block 13 is fixedly connected to a resisting block 14, and the resisting block 14 is telescopically arranged below the bottom plate 1 and is movably attached to one side of the moving wheel 2. Through the inverted equilateral triangle structure at the bottom end of the column 11, when the column 11 moves downward, the wedge-shaped blocks 13 on both sides are synchronously driven to move outward. Under the action of fixedly connecting the resisting block 14 to the outer end of the wedge-shaped block 13, the two resisting blocks 14 respectively fit and press against the two moving wheels 2 on both sides. The two resisting blocks 14 are symmetrically arranged about the central axis of the column 11, and the resisting block 14 is perpendicularly distributed with respect to the column 11. Moreover, the moving wheel 2 is arranged in a "concave" structure with respect to the resisting block 14. Under the "concave" action of the moving wheel 2, the fitting and limiting effect between the resisting block 14 and the moving wheel 2 is ensured, the movement of the moving wheel 2 is avoided, and the limiting effect of the device during fixation is further improved; On both inner walls of the adjusting plate 5 far away from the column 11, there are fixedly connected toothed plates 18. The surface of the toothed plate 18 is meshed with a gear column 19. The gear column 19 is rotatably installed on the outside of the machine body 3. On the side of the gear column 19 far away from the toothed plate 18, there is meshed with a toothed column 20. And the toothed column 20 is slidably connected to the outside of the machine body 3. On the outer wall of the toothed column 20, there is fixedly connected a slider 23. And on the outer wall of the machine body 3, there is provided a slideway capable of accommodating the sliding of the slider 23. At the same time, the two toothed columns 20 are symmetrically arranged about the central axis of the machine body 3. And the tops of the toothed columns 20 are both movably and fittingly connected to the bottom ends of the solar panel bodies 25. The two solar panel bodies 25 are symmetrically arranged about the central axis of the machine body 3. And the outsides of the two solar panel bodies 25 are both rotatably connected to the machine body 3. Specifically, at the top end of the toothed column 20, there is fixedly connected a top block 21. And inside the top block 21, there is rotatably connected a fitting roller 22. The top end of the fitting roller 22 is slidably and fittingly connected to a guide groove 26. The outer wall of the guide groove 26 is fixedly connected to the solar panel body 25. And both sides of the top block 21 are slidably connected to the guide groove 26, ensuring the connection stability between the top block 21 and the bottom end of the solar panel body 25. On the outside of the solar panel body 25, there is rotatably connected a mounting block 24. The mounting block 24 is fixedly connected to the outer wall of the machine body 3. Under the action of rotatably connecting the fitting roller 22 inside the top block 21, and the top end of the fitting roller 22 protrudes from the top end of the top block 21, then the fitting roller 22 can always perform upward fitting extrusion at the bottom end of the solar panel body 25 through the guide groove 26, facilitating the rotation of the solar panel body 25 on one side of the mounting block 24. When the adjusting plate 5 drives the support column 4 to move downward to fix the device, the toothed column 20 synchronously tilts the solar panel body 25 outward through the fitting roller 22 at the top, facilitating the unfolding of the two symmetrically arranged solar panel bodies 25, ensuring the energy absorption effect of the solar panel body 25 during use; The surface of the bottom plate 1 is fixedly installed with an electric push rod 27. The electric push rod 27 is located inside the body 3. A cavity for accommodating the installation of the electric push rod 27 is provided inside the body 3. The top of the electric push rod 27 is connected with a rotating and unfolding unit. Specifically, the rotating and unfolding unit includes a top plate 28. The inner top wall of the top plate 28 is fixedly connected to the top end of the electric push rod 27. A rotating plate 29 is rotatably connected below the top plate 28. The rotating plate 29 is parallel to the top plate 28. Light plates 30 are fixedly connected to both bottom ends on the two sides of the rotating plate 29 and the top plate 28. Through the parallel arrangement of the rotating plate 29 and the top plate 28, the rotating plate 29 can rotate precisely below the top plate 28, facilitating the rotating plate 29 and the top plate 28 to form an "X" shape at different angles or a "plus" shape in a balanced setting, so that the rotating plate 29 and the top plate 28 can drive the light plates 30 at the bottom for large-range lighting. A connecting plate 31 is fixedly connected inside the rotating plate 29. The connecting plate 31 is rotatably connected to the outer wall of the electric push rod 27. A magnetic block 32 is fixedly connected to the surface of the connecting plate 31. A gear ring 33 is fixedly connected to the outer wall of the magnetic block 32. The gear ring 33 is rotatably connected inside the top plate 28. The center of the gear ring 33 coincides with the axis of the top plate 28, and the center of the gear ring 33 coincides with the axis of the electric push rod 27. Through the coaxial structure setting of the gear ring 33 and the electric push rod 27, the rotating plate 29 and the top plate 28 rotate precisely, facilitating the rotating plate 29 to synchronously drive the gear ring 33 to rotate precisely inside the top plate 28; A magnetic guide ring 34 is fixedly connected to the inside of the top plate 28, and the magnetic guide ring 34 is magnetically attached to the inner wall of the magnetic block 32. The surface area of the rotating plate 29 is the same as that of the top plate 28. The top plate 28 is fixedly connected to the top of the electric push rod 27, so that the electric push rod 27 can drive the top plate 28 to move upward by powering on. Moreover, under the rotation of the top plate 28 and the rotating plate 29, the rotating plate 29 and the top plate 28 can perform mobile lighting monitoring above the body 3, and through the magnetic The setting of the block 32 and the magnetic guide ring 34 allows the user to rotate the rotating plate 29 below the top plate 28 through the magnetic block 32, which is convenient for adjusting the angle between the rotating plate 29 and the top plate 28, ensuring that the magnetic block 32 is stably limited by the magnetic guide ring 34, ensuring the stability of the rotating plate 29 during rotation adjustment. At the same time, the upper and lower outer walls of the gear ring 33 are meshed and connected with racks 35, and the racks 35 are slidably connected to the inner wall of the top plate 28. The top plate 28 The interior of the top plate 28 is provided with a slide groove 39 for accommodating the sliding of the rack 35, the outer end of the rack 35 is fixedly connected to a connecting rod 36, and a mounting plate 37 is fixedly installed at one end of the connecting rod 36 away from the rack 35, and a camera 38 is embedded and installed at the bottom end of the mounting plate 37, and through grooves for accommodating the extension of the mounting plate 37 are provided at both ends of the top plate 28. By meshing and connecting the two racks 35 on the outer wall of the gear ring 33, the rotating plate 29 drives the gear ring 33 to rotate inside the top plate 28 to a vertically arranged "cross" distribution. When the two racks 35 drive the mounting plates 37 at the outer ends to slide outward inside the top plate 28 through the connecting rod 36, the two mounting plates 37 are respectively extended at both ends of the top plate 28, so that the mounting plate 37 can be moved and monitored by the camera 38 embedded at the bottom. Through such an arrangement, the rotating plate 29 can realize the stable storage of the camera 38 and the top plate 28 by rotation, which is convenient for the safety of the camera 38 and the light board 30 when the device is stored, and the structure is compact and practical.
[0034] Working principle of the present invention: When in use, the device is pulled through the pull plate 10. Under the action of the pull plate 10 and the rotating column 8, the guide wheel 9 can drive the whole device for guiding, facilitating the accurate and stable movement of the device. After the device moves to the designated position, by pressing down the adjusting plate 5, under the action of the nut 7 arranged on the surface of the adjusting plate 5, due to the corresponding arrangement of the nut 7 and the threaded rod 6, when the adjusting plate 5 moves downward, it drives the nut 7 to rotate, enabling the nut 7 to be threadedly connected with the threaded rod 6, facilitating the adjusting plate 5 to fit on the surface of the bottom plate 1. Moreover, by arranging a limiting plate 42 on one side of the nut 7, under the action of the bidirectional lead screw 41, the user can drive the limiting plate 42 to fit and limit the nut 7 through the bidirectional lead screw 41, ensuring the stability of the adjusting plate 5 on the surface of the bottom plate 1. At the same time, by fixedly connecting a plurality of support columns 4 to the bottom end of the adjusting plate 5, the plurality of support columns 4 support the device outside the moving wheels 2. Meanwhile, by fixedly connecting a column 11 to the bottom end of the adjusting plate 5, under the action of the wedge-shaped blocks 13 wedge-connected on both sides of the column 11, the wedge-shaped blocks 13 drive the abutting blocks 14 to abut against the moving wheels 2, enabling the device to be doubly limited by the support columns 4 and the moving wheels 2, ensuring the stability of the device during outdoor work. At the same time, by fixedly connecting tooth plates 18 to both sides of the adjusting plate 5, under the meshing connection of the tooth plates 18 and the gear columns 19, when the adjusting plate 5 drives the tooth plates 18 to move downward outside the gear columns 19, the tooth columns 20 on the other side of the gear columns 19 move upward synchronously. By connecting a top block 21 and a fitting roller 22 to the top end of the tooth column 20, the fitting roller 22 is pressed upward through the guide groove 26 at the bottom end of the solar panel body 25, facilitating the solar panel body 25 to rotate on one side of the mounting block 24, enabling the solar panel bodies 25 symmetrically arranged on both sides above the body 3 to unfold outward, facilitating the solar panel bodies 25 to absorb energy, and making the upper part of the rotation and unfolding unit unrestricted. At the same time, under the action of the adjusting plate 5 and the baffle 16, the operation button 17 is not limited, facilitating the user to control the electric push rod 27 through the operation button 17. Under the action of the rotating plate 29 rotatably connected to the bottom of the top plate 28, the rotating plate 29 can rotate at an angle below the top plate 28 through the magnetic block 32 and the magnetic guide ring 34, realizing the angle adjustment between the rotating plate 29 and the top plate 28. When the rotating plate 29 rotates to a "cross" distribution below the top plate 28, by fixedly connecting a gear ring 33 to the outer wall of the magnetic block 32, the gear ring 33 rotates synchronously inside the top plate 28. By meshing two racks 35 on the outer wall of the gear ring 33, the two racks 35 drive the mounting plates 37 at the outer ends through the connecting rod 36 to slide outward inside the top plate 28, enabling the two mounting plates 37 to drive the cameras 38 embedded at the bottom ends to extend out at both ends of the top plate 28. Moreover, by arranging light plates 30 at the bottom ends of both sides of the rotating plate 29 and the top plate 28, the lighting effect of the device is ensured.It facilitates the user to drive the top plate 28 and the rotating plate 29 to rise through the electric push rod 27 for lighting monitoring, ensuring the deployment stability of the device during operation. In this way, the working principle of the mobile lighting monitoring device is completed.
[0035] In summary, in the present invention, through the setting of the positioning unit, when the adjusting plate 5 drives the support column 4 to fix the device for use, by symmetrically engaging the toothed plate 18 and the toothed column 20 on the outer wall of the gear column 19, the toothed column 20 drives the solar panel body 25 to tilt and unfold, facilitating the solar panel body 25 to absorb energy, and there is no restriction above the rotation and deployment unit, facilitating the electric push rod 27 to drive the rotating plate 29 and the top plate 28 to rise. At the same time, under the fixing action of the adjusting plate 5 and the baffle 16, the operation button 17 is synchronously limited by the adjusting plate 5, preventing the operation button 17 from being accidentally touched during the movement of the device, ensuring the accuracy of device operation and the safety of movement, and solving the technical problems that the current mobile lighting monitoring device has a poor overall storage effect on the lamp panel 30, the camera 38, and the solar panel body 25, and cannot ensure the energy absorption effect of the solar panel during the operation of the device and the overall working stability of the device.
[0036] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art to which the present invention pertains can make various modifications or supplements to the described specific embodiments or use similar methods for substitution, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
Claims
1. A mobile lighting monitoring device configured with a solar panel, comprising a bottom plate (1) and a plurality of moving wheels (2) rotatably connected below the bottom plate (1), characterized in that, The surface of the bottom plate (1) is fixedly connected with an organism (3), and a plurality of support columns (4) are arranged through the inside of the bottom plate (1). The plurality of support columns (4) are distributed on the outer periphery of the organism (3). The top end of the support column (4) is fixedly connected with an adjusting plate (5). The adjusting plate (5) is sleeved on the outer wall of the organism (3). The bottom end of the adjusting plate (5) is fixedly connected with a positioning unit; The positioning unit includes two columns (11). The two columns (11) are respectively fixedly connected to both sides of the bottom end of the adjusting plate (5). The outer wall of the column (11) is sleeved and connected with a telescopic spring (12). The bottom end of the telescopic spring (12) is fixedly connected to the surface of the bottom plate (1); Both sides of the bottom end of the column (11) are wedge-shaped and fitted with wedge blocks (13). The outer side of the wedge block (13) is fixedly connected with a resisting block (14). The resisting block (14) is telescopically arranged below the bottom plate (1), and the resisting block (14) is movably fitted on one side of the moving wheel (2); On both sides of the inner wall of the adjusting plate (5) away from the column (11), a toothed plate (18) is fixedly connected. The surface of the toothed plate (18) is meshed with a gear column (19). The gear column (19) is rotatably installed on the outside of the organism (3). On the side of the gear column (19) away from the toothed plate (18), it is meshed with a tooth column (20). The tooth column (20) is slidably connected to the outside of the organism (3); The two tooth columns (20) are symmetrically arranged about the central axis of the organism (3). The tops of the tooth columns (20) are both movably fitted with the bottom ends of the solar panel bodies (25). The two solar panel bodies (25) are symmetrically arranged about the central axis of the organism (3). The outer sides of the two solar panel bodies (25) are both rotatably connected to the organism (3); The surface of the bottom plate (1) is fixedly installed with an electric push rod (27). The electric push rod (27) is located inside the organism (3). A cavity for accommodating the installation of the electric push rod (27) is opened inside the organism (3). The top of the electric push rod (27) is connected with a rotating and unfolding unit.
2. The mobile lighting monitoring device configured with a solar panel according to claim 1, wherein, The surface of the bottom plate (1) is fixedly connected with a plurality of threaded rods (6). Through holes corresponding to the threaded rods (6) are opened inside the adjusting plate (5). The surface of the through holes is rotatably connected with nuts (7). The nuts (7) are correspondingly arranged above the threaded rods (6); One side of the bottom plate (1) is rotatably connected with a rotating column (8). The bottom end of the rotating column (8) is rotatably installed with a guide wheel (9). The guide wheel (9) is located between the two moving wheels (2) on both sides. The top of the rotating column (8) is fixedly installed with a pulling plate (10). The pulling plate (10) is parallel to the top of the bottom plate (1); 3. The mobile lighting monitoring device configured with a solar panel according to claim 1, characterized in that, The two resisting blocks (14) are symmetrically arranged about the central axis of the column (11). The resisting blocks (14) are perpendicularly distributed to the column (11). The moving wheels (2) are arranged in a "concave" structure with respect to the resisting blocks (14); The bottom end of the column (11) is in an inverted equilateral triangle structure. The two moving wheels (2) on the same side are symmetrically arranged about the central axis of the column (11); A return spring (15) is fixedly connected to one side of the wedge block (13), and a bottom plate (1) is fixedly mounted to the other end of the return spring (15).
4. A mobile lighting monitoring device configured with a solar panel according to claim 1, wherein, The top end of the tooth column (20) is fixedly connected to a top block (21), and the top block (21) is rotatably connected to a laminating roller (22), the top end of the laminating roller (22) is slidably connected to a guide groove (26), the outer wall of the guide groove (26) is fixedly connected to a solar panel body (25), the outer side of the solar panel body (25) is rotatably connected to a mounting block (24), and the mounting block (24) is fixedly connected to the outer wall of the machine body (3); The outer wall of the tooth column (20) is fixedly connected to a sliding block (23), and the outer wall of the body (3) is provided with a slideway capable of accommodating the sliding of the sliding block (23).
5. The mobile lighting monitoring device configured with a solar panel according to claim 4, characterized in that, An operating button (17) is fixedly connected to the surface of the machine body (3), the operating button (17) is located on the upper outer wall of the machine body (3), and a baffle (16) is movably provided on the outer side of the operating button (17), and the baffle (16) is fixedly connected to the inner wall of one side of the adjustment plate (5).
6. The mobile lighting monitoring device configured with a solar panel according to claim 1, characterized in that, The rotating unfolding unit comprises a top plate (28), the inner top wall of the top plate (28) is fixedly connected to the top end of the electric push rod (27), a rotating plate (29) is rotatably connected below the top plate (28), and the bottom ends of both sides of the rotating plate (29) and the top plate (28) are fixedly connected to light panels (30); The interior of the rotating plate (29) is fixedly connected to a connecting plate (31), the connecting plate (31) is rotatably connected to the outer wall of the electric push rod (27), the surface of the connecting plate (31) is fixedly connected to a magnetic block (32), and the outer wall of the magnetic block (32) is fixedly connected to a gear ring (33), and the gear ring (33) is rotatably connected to the interior of the top plate (28); A magnetic guide ring (34) is fixedly connected to the interior of the top plate (28), and the magnetic guide ring (34) is magnetically attached to the inner wall of the magnetic block (32).
7. The mobile lighting monitoring device configured with a solar panel according to claim 6, characterized in that, The upper and lower outer walls of the gear ring (33) are meshedly connected with racks (35), the racks (35) are slidably connected to the inner wall of the top plate (28), the outer end of the racks (35) is fixedly connected to a connecting rod (36), the end of the connecting rod (36) away from the racks (35) is fixedly mounted with a mounting plate (37), and the bottom end of the mounting plate (37) is embedded with a camera (38); The top plate (28) is provided with a sliding groove (39) inside which the rack (35) can slide, and through grooves are provided at both ends of the top plate (28) to accommodate the extension of the mounting plate (37).
8. The mobile lighting monitoring device configured with a solar panel according to claim 6, characterized in that, The rotating plate (29) and the top plate (28) are arranged in parallel, and the center of the circle of the gear ring (33) coincides with the axis of the top plate (28), and the center of the circle of the gear ring (33) coincides with the center of the circle of the electric push rod (27).
9. The mobile lighting monitoring device configured with a solar panel according to claim 5, characterized in that, Two fixing blocks (40) are fixedly connected to the surface of the adjustment plate (5), a bidirectional screw rod (41) is rotatably connected between the two fixing blocks (40), and two limit plates (42) are symmetrically arranged on the outer wall of the bidirectional screw rod (41), and the limit plates (42) are located on one side of the nut (7).
Citation Information
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