Anti-dazzling lighting device for practical training platform
By designing a training table lighting device with adjustable illumination angle, the shadow shading problem caused by light source fixation in the prior art is solved, and a wider illumination range and a more uniform processing environment are achieved.
Patent Information
- Application Number
- CN202510481035.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-04-17
AI Technical Summary
The light source illumination angle of the existing training platform lighting device is fixed and cannot be adjusted, which can easily lead to the workpiece to be processed being blocked by shadows and the illumination range is not wide.
An anti-glare lighting device for the training platform is designed, including a first lamp panel, a second lamp panel and a first driving mechanism for driving the rotation of the second lamp panel. By cooperating with the lamp adjustment bracket and the driving mechanism, the illumination angle of the light source can be adjusted, and the illumination range can be expanded by the rotation of the second lamp plate.
It realizes flexible adjustment of the light source illumination angle, expands the illumination range, avoids the workpiece to be processed from being blocked by shadows, and improves the uniformity and efficiency of the processing environment.
Smart Images

Figure CN120008014A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of lighting devices, and in particular to an anti-glare lighting device for a training platform. Background Art
[0002] Benchwork is a type of work that mainly relies on manual operations and uses various tools to complete manufacturing, assembly and repair. Generally speaking, when performing benchwork, it is necessary to ensure that the lighting in the work area is uniform and avoid the appearance of light spots or shadows to ensure the feasibility and consistency of the surface of the workpiece to be processed. The existing training bench usually has three light sources, one light source illuminates the workpiece to be processed on the training bench surface, and the other two light sources are located on the front and back sides of the first light source as auxiliary lighting, which are used to illuminate the square hole hanging plate and aisle of the training bench, and do not directly illuminate the workpiece to be processed. When students are doing benchwork training, they rely on a light source on the training bench (the other two light sources are only auxiliary), which is easily blocked by the shadows of hands or tools, and the light source has a fixed angle of illumination, which is not convenient to adjust. Summary of the invention
[0003] Therefore, in view of the above-mentioned problems, the present invention proposes an anti-glare lighting device for a training platform, which can adjust the irradiation angle of the light source and has a wider irradiation range, thereby preventing the workpiece to be processed from being blocked by shadows.
[0004] To achieve the above object, the present invention adopts the following technical solutions: An anti-glare lighting device for a training platform comprises a first light board, a light fixture connector disposed on the top of the first light board, a light fixture adjustment bracket connected to the light fixture connector, a second light board disposed on both sides of the front and rear of the first light board, and a first driving mechanism for driving the second light board to rotate on two axes; The first driving mechanism includes a right-angle seat arranged on the front and rear sides of the top of the first lamp board, a first connecting rod away from the side of the second lamp board and rotatably arranged on the right-angle seat, a second connecting rod rotatably arranged on the top of the right-angle seat, a third connecting rod rotatably connected to the first connecting rod and the second connecting rod, and a first driving device for driving the third connecting rod to rotate, the second lamp board is arranged on the third connecting rod, and the first connecting rod and the second connecting rod are vertically distributed on both sides.
[0005] Furthermore, the first driving device is a rotating shaft arranged between the right-angle seats, the rotating shaft is connected to the second connecting rod, a fixing rod is fixedly connected to the outer side of the rotating shaft, and a first driving cylinder is arranged between the fixing rod and the top surface of the first lamp panel.
[0006] Furthermore, the first driving device includes a transmission box arranged between the right-angle seats, a first transmission shaft rotatably arranged on one side of the transmission box, a second transmission shaft rotatably arranged on the other side of the transmission box, and a second driving mechanism for driving the first transmission shaft and the second transmission shaft to rotate in the same direction or opposite directions, the first transmission shaft is connected to the second connecting rod located in front of the first light board, and the second transmission shaft is connected to the second connecting rod located behind the first light board.
[0007] Furthermore, the second driving mechanism includes a driving gear rotatably arranged in a transmission box, a first motor for driving the driving gear to rotate, a first bevel gear arranged on one side of the transmission box and meshing with the driving gear, a second bevel gear arranged on the other side of the transmission box and meshing with the driving gear, a flat key arranged on the outside of the second transmission shaft, a transmission cylinder slidably arranged on the outside of the second transmission shaft and the flat key, an adjustment block slidably arranged on the side of the transmission box away from the driving gear, and a second driving cylinder for driving the adjustment block to move laterally, the first bevel gear is fixed on one side of the first transmission shaft, and the first transmission shaft is located inside the transmission box, the second bevel gear is arranged on the outside of the second transmission shaft, the adjustment block is connected to the transmission cylinder, a plurality of first convex teeth are provided on one side of the first bevel gear, a plurality of second convex teeth are provided on one side of the second bevel gear, and grooves contacting the first convex teeth and the second convex teeth are provided on both sides of the adjustment block.
[0008] Furthermore, the lamp adjustment bracket includes an upper horizontal tube connected to the lamp connecting piece, an upper L-shaped tube slidably arranged in the upper horizontal tube, a vertical tube slidably arranged on the outside of the upper L-shaped tube, a lower L-shaped tube slidably arranged at the bottom of the vertical tube, and an external connecting tube arranged on the outside of the lower L-shaped tube, the upper horizontal tube and the vertical tube are provided with an upper adjustment knob for fixing the upper L-shaped tube, and the vertical tube and the external connecting tube are provided with a lower adjustment knob for fixing the lower L-shaped tube.
[0009] By adopting the above technical solution, the beneficial effects of the present invention are: The anti-glare lighting device of the training platform is provided with a lamp adjustment bracket. When the illumination angle needs to be adjusted, the first driving device drives the second connecting rods on the front and rear sides to rotate. The second connecting rod rotates 80°-90° along the connection with the rotating shaft. The second connecting rod drives the third connecting rod to rotate, so that the second lamp board on the third connecting rod is distributed in a cross shape with the first lamp board, and the illumination range is wider, so that the workpiece to be processed is not easily obscured by shadows due to the illumination of a single light source during processing. When the second lamp board needs to be adjusted to be perpendicular to the top of the first lamp board, the first driving device drives the second connecting rod to rotate in the opposite direction. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a left schematic diagram of the structure of the present invention.
[0011] Figure 2 It is a schematic front view of the structure of the present invention.
[0012] Figure 3 It is a structural schematic diagram of the first lamp board and the second lamp board of the present invention in use status.
[0013] Figure 4 It is a schematic structural diagram of the partial use state of the first lamp board and the second lamp board of the present invention.
[0014] Figure 5 It is a structural schematic diagram of the first driving mechanism of the present invention driving the second light panel to be in an unfolded state.
[0015] Figure 6 It is a structural schematic diagram of the first driving mechanism of the present invention driving the second lamp panel to form an angled state front and back.
[0016] Figure 7 It is a schematic diagram of the internal structure of the transmission box of the present invention.
[0017] Figure 8 It is a schematic structural diagram of the transmission box of the present invention in an exploded state.
[0018] Fig. 9 It is a schematic diagram of the viewing angle structure of the rear end of the lamp adjustment bracket of the present invention.
[0019] Fig.10 It is a schematic diagram of the front viewing angle structure of the lamp adjustment bracket of the present invention.
[0020] Fig.11 It is a schematic diagram of the local structure of the detection flashlight of the present invention.
[0021] Fig.12 It is a schematic diagram of the structure of the detection flashlight of the present invention.
[0022] Fig.13 It is a schematic structural diagram of a flashlight shell of the detection flashlight of the present invention.
[0023] Fig.14 It is a schematic diagram of the structure of detecting the explosion state of a flashlight according to the present invention.
[0024] Fig.15 It is a schematic diagram of the structure of the filter in the explosion state of the present invention.
[0025] Fig.16 It is a schematic diagram of the local structure of the filter of the present invention.
[0026] Fig.17 It is a schematic diagram of the cylinder structure of the present invention.
[0027] Fig.18 It is a structural schematic diagram of the present invention in use with an external workbench.
[0028] Numbers in the figure: 1. First light board; 2. Light fixture connector; 3. Light fixture adjustment bracket; 4. Second light board; 5. First driving mechanism; 6. Detection flashlight; 301, upper horizontal tube; 302, upper L-shaped tube; 303, vertical tube; 304, lower L-shaped tube; 305, external connecting tube; 306, upper adjustment knob; 307, lower adjustment knob; 501, right angle seat; 502, first connecting rod; 503, second connecting rod; 504, third connecting rod; 505, first driving device; 506, rotating shaft; 507, fixing rod; 508, first driving cylinder; 509, transmission box; 510, driving gear; 511, first motor; 512, first bevel gear; 513, second bevel gear; 514, first transmission shaft; 515, second transmission shaft; 516, flat key; 517, transmission cylinder; 518, adjusting block; 519, second driving cylinder; 520, first convex tooth; 521, second convex tooth; 522, groove; 601, flashlight housing; 602, LED lamp; 603, heat conduction plate; 604, heat dissipation hole; 605, heat conduction pipe; 606, partition; 607, first circulation pipeline; 608, second circulation pipeline; 609, partition hole; 610, pump; 611, heat sink; 612, connecting pipe; 613, filter; 614, transparent tube; 615, skeleton; 616, cylinder; 617, first fan-shaped support plate; 618, first fan-shaped filter; 619, first arc-shaped hole; 620, first circular filter; 621, second circular filter; 622, second fan-shaped support plate; 623, second fan-shaped filter; 624, second arc-shaped hole; 625, enclosure. DETAILED DESCRIPTION
[0029] The present invention will now be further described with reference to the accompanying drawings and specific implementation methods.
[0030] refer to Figures 1 to 18 The present embodiment provides an anti-glare lighting device for a training platform, including a first light board 1, a lamp connector 2 arranged on the top of the first light board 1, a lamp adjustment bracket 3 connected to the lamp connector 2, a second light board 4 arranged on the front and rear sides above the first light board 1, and a first driving mechanism 5 for driving the second light board 4 to rotate on two axes.
[0031] like Figure 3 and Figure 4, taking the x-axis, y-axis and z-axis as reference lines, the first driving mechanism 5 includes a right-angle seat 501 arranged on the front and rear sides of the top of the first lamp board 1, a first connecting rod 502 rotatably arranged on the right-angle seat 501 away from the second lamp board 4 and rotating along the z-axis, a second connecting rod 503 rotatably arranged on the top of the right-angle seat 501 and rotating along the y-axis, a third connecting rod 504 rotatably connected to the first connecting rod 502 and the second connecting rod 503, and a first driving device 505 for driving the third connecting rod 504 to rotate, and the second lamp board 4 is provided On the third link 504, the first link 502 and the second link 503 are distributed vertically on both sides, the connection between the first link 502 and the third link 504 is located on the x-axis, the connection between the second link 503 and the third link 504 is located on the z-axis, the connection between the right-angle seat 501 and the first link 502 has a first extension axis a, the connection between the right-angle seat 501 and the second link 503 has a second extension axis b, and the angle between the first extension axis a and the second extension axis b is 95°-105°.
[0032] The first driving device 505 is a rotating shaft 506 disposed between the right-angle seats 501, the rotating shaft 506 is connected to the second connecting rod 503, a fixing rod 507 is fixedly connected to the outer side of the rotating shaft 506, and a first driving cylinder 508 is provided between the fixing rod 507 and the top surface of the first lamp panel 1.
[0033] When the rotating shaft 506 needs to be driven to rotate, the first driving cylinder 508 is extended and retracted to control the rotation direction of the rotating shaft 506, so as to control the direction of the second lamp panel 4.
[0034] The first driving device 505 includes a transmission box 509 arranged between the right-angle seats 501, a first transmission shaft 514 rotatably arranged on one side of the transmission box 509, a second transmission shaft 515 rotatably arranged on the other side of the transmission box 509, and a second driving mechanism for driving the first transmission shaft 514 and the second transmission shaft 515 to rotate in the same direction or opposite directions. The first transmission shaft 514 is connected to the second connecting rod 503 located in front of the first lamp board 1, and the second transmission shaft 515 is connected to the second connecting rod 503 located behind the first lamp board 1. The second driving mechanism is conducive to controlling the first transmission shaft 514 and the second transmission shaft 515 to rotate in the same direction, or the first transmission shaft 514 and the second transmission shaft 515 rotate in opposite directions at the same time, thereby controlling the illumination angle of the second lamp board 4.
[0035] The second driving mechanism includes a driving gear 510 rotatably arranged in a transmission box 509, a first motor 511 for driving the driving gear 510 to rotate, a first bevel gear 512 arranged at one side of the transmission box 509 and meshing with the driving gear 510, a second bevel gear 513 arranged at the other side of the transmission box 509 and meshing with the driving gear 510, a flat key 516 arranged at the outside of a second transmission shaft 515, a transmission cylinder 517 slidably arranged at the outside of the second transmission shaft 515 and the flat key 516, an adjustment block 518 slidably arranged at the side of the transmission box 509 away from the driving gear 510, and a A second driving cylinder 519 is used to drive the adjustment block 518 to move horizontally, the first bevel gear 512 is fixed on one side of the first transmission shaft 514, and the first transmission shaft 514 is located inside the transmission box 509, the second bevel gear 513 is arranged on the outside of the second transmission shaft 515, the adjustment block 518 is connected to the transmission cylinder 517, a plurality of first convex teeth 520 are arranged on one side of the first bevel gear 512, a plurality of second convex teeth 521 are arranged on one side of the second bevel gear 513, and grooves 522 that contact the first convex teeth 520 and the second convex teeth 521 are arranged on both sides of the adjustment block 518.
[0036] In the initial state, the first motor 511 drives the driving gear 510 to rotate, and the driving gear 510 drives the first bevel gear 512 and the second bevel gear 513 to rotate, and the first bevel gear 512 drives the first transmission shaft 514 fixed on one side to rotate, and the groove 522 on the lateral side of the adjustment block 518 contacts the first convex tooth 520 on one side of the first bevel gear 512. Since the middle part of the adjustment block 518 is connected with the flat key 516 and the second transmission shaft 515, when the first bevel gear 512 rotates, the adjustment block 518 will be driven to rotate through the first convex tooth 520, and the adjustment block 518 will drive the second transmission shaft 515 to rotate through the flat key 516. At this time, the first transmission shaft 514 and the second transmission shaft 515 will keep rotating in the same direction, and the first transmission shaft 514 and the second transmission shaft 515 respectively drive the second lamp boards 4 on the front and rear sides to rotate through the second connecting rod 503, so that the second lamp board 4 moves from above the first lamp board 1 to a position parallel to the plane and distributed in a cross shape.
[0037] After completion, when it is necessary to adjust the front and rear second lamp panels 4 to opposite illumination angles, the second driving cylinder 519 drives the adjustment block 518 to move horizontally, and the adjustment block 518 drives the groove 522 on one side of the transmission cylinder 517 to contact the second convex tooth 521 on one side of the second bevel gear 513. Due to the action of the active gear 510, the first bevel gear 512 and the second bevel gear 513 rotate in opposite directions. The adjustment block 518 drives the second transmission shaft 515 to rotate in the opposite direction to the first transmission shaft 514 through the second bevel gear 513. The second lamp panels 4 located on the front and rear sides of the first lamp panel 1 will rotate in opposite directions, and the front and rear second lamp panels 4 will form a V-shaped angle. When restoration is needed, the front and rear second lamp panels 4 will restore to a parallel state. The second driving cylinder 519 drives the adjusting block 518 to move toward the side of the first bevel gear 512, and the groove 522 on one side of the adjusting block 518 contacts the first convex tooth 520 to restore the initial state, thereby adjusting the second lamp board 4 to the top of the second lamp board 4 and restoring the original illumination. The illumination angle of the second lamp board 4 can be adjusted to avoid the dazzling effect of the second lamp board 4 caused by the illumination angle, and the illumination angle of the second lamp board 4 can be adjusted according to the shape of the workpiece to be processed to reduce the blind angle of illumination. After the processing is completed, the illumination angle in the initial state can be restored by moving the position of the transmission cylinder 517. Compared with the first driving device 505, the second driving mechanism has a larger adjustable angle range of the second lamp board 4, thereby improving the illumination angle of the second lamp board 4.
[0038] The lamp adjustment bracket 3 includes an upper horizontal tube 301 connected to the lamp connector 2, an upper L-shaped tube 302 slidably arranged in the upper horizontal tube 301, a vertical tube 303 slidably arranged on the outside of the upper L-shaped tube 302, a lower L-shaped tube 304 slidably arranged at the bottom of the vertical tube 303, and an external connecting tube 305 arranged on the outside of the lower L-shaped tube 304. The upper horizontal tube 301 and the vertical tube 303 are provided with an upper adjustment knob 306 for fixing the upper L-shaped tube 302, and the vertical tube 303 and the external connecting tube 305 are provided with a lower adjustment knob 307 for fixing the lower L-shaped tube 304.
[0039] When the position of the first light board 1 needs to be adjusted, the upper adjustment knob 306 can be loosened. After completion, the upper horizontal tube 301 can be pulled to one side to adjust the front and rear position of the first light board 1. When the height of the first light board 1 needs to be adjusted, the lower adjustment knob 307 on the outside of the vertical tube 303 is loosened, and then the upper L-shaped tube 302 is moved longitudinally, thereby driving the upper horizontal tube 301 to move longitudinally, thereby adjusting the height of the first light board 1. It can be adjusted according to actual usage.
[0040] A detection flashlight 6 is provided on the top surface of the first light board 1, and the detection flashlight 6 includes a flashlight housing 601, an LED lamp 602 provided at the bottom of the flashlight housing 601, a heat conducting plate 603 provided on the top surface of the LED lamp 602, a heat dissipation hole 604 provided on the outside of the flashlight housing 601 and located at the position of the heat conducting plate 603, a heat conducting pipe 605 provided on both sides of the heat conducting plate 603, a partition plate 606 provided in the top of the flashlight housing 601 and used for the heat conducting pipe 605 to pass through, and a first circulation pipe 606 provided on the top of one side of the heat conducting pipe 605. 07. A second circulation pipe 608 is arranged at the top of the other side of the heat pipe 605, a partition hole 609 is arranged at the top of the flashlight housing 601 and is used for the first circulation pipe 607 and the second circulation pipe 608 to pass through, a pump 610 and a heat sink 611 are arranged on the top surface of the first lamp board 1, a connecting pipe 612 is arranged between the pump 610 and the heat sink 611, and a filter 613 connected to the heat sink 611, the first circulation pipe 607 is connected to the pump 610, and the second circulation pipe 608 is connected to the filter 613.
[0041] During use, the heat conducting plate 603 is attached to the back of the LED lamp 602, and the heat conducting plate 603 will conduct heat to the heat source on the back of the LED lamp 602. The heat conducting plate 603 transfers the heat to the top fins, and the heat conducting pipe 605 at the bottom is attached to the back of the LED lamp 602 and will also conduct heat. The built-in coolant in the first circulation pipe 607 and the second circulation pipe 608 will absorb the heat from the heat source when passing through the heat conducting pipe 605. The coolant is transported to the pump 610 through the first circulation pipe 607, and the pump 610 is transported to the heat sink 611 through the connecting pipe 612. The heat sink 611 is a liquid-cooled radiator with a built-in fan to cool the liquid. The cooled coolant is transported to the second circulation pipe 608 through the filter 613 to cool the heat conducting plate 603 and the LED lamp 602. The first circulation pipe 607 and the second circulation pipe 608 are located above the partition 606. The first circulation pipe 607 and the second circulation pipe 608 are connected to the heat sink 611. The components connected by the heat pipe 605 are separately arranged in the partition 606 and the flashlight housing 601, which can prevent the first circulation pipe 607 and the second circulation pipe 608 from leaking at the position of the heat pipe 605, causing the LED lamp 602 to be short-circuited and damaged, thereby reducing the risk of water cooling leakage. In addition, the heat pipe 605 and the back fins of the heat plate 603 are also provided in the heat conductive plate 603. When the heat sink 611 needs maintenance, the LED lamp 602 can be maintained for a period of time. Within 1 hour after the power is turned on, the heat conductive plate 603 can continue to provide effective heat dissipation for the LED lamp 602, avoiding the disadvantage of a short water cooling maintenance cycle that causes the LED lamp 602 to need to be shut down for maintenance. The water cooling component pump 610, the heat sink 611 and the filter 613 are located on the first lamp board 1, which can reduce the weight of the detection flashlight 6. At the same time, the heat dissipation performance is good, avoiding the high heat of the LED lamp 602 due to the detection lampshade or other light-transmitting properties, affecting the service life of the LED lamp 602.
[0042] The filter 613 includes a transparent tube 614, a frame 615 arranged in the transparent tube 614, a cylinder 616 arranged in the middle of the frame 615, a first fan-shaped support plate 617 fixed to the outside of the front end of the cylinder 616, a first fan-shaped filter screen 618 arranged on the first fan-shaped support plate 617, a first arc-shaped hole 619 arranged on the outside of the cylinder 616 and close to the direction of the first fan-shaped filter screen 618, a first circular filter screen 620 arranged in the middle of the cylinder 616, and a second circular filter screen 621 arranged on the side of the cylinder 616 away from the first circular filter screen 620.
[0043] A plurality of second sector-shaped support pieces 622 distributed in a spiral shape are arranged at intervals on the outside of the cylinder 616, and each of the second sector-shaped support pieces 622 forms an angle of 90° between each other. A second sector-shaped filter screen 623 is arranged on each of the second sector-shaped support pieces 622. A second arc-shaped hole 624 is arranged on the outside of the cylinder 616, and located on the outside of the second sector-shaped filter screen 623. A raised enclosure 625 is arranged on the outside of the first sector-shaped filter screen 618 and the second sector-shaped filter screen 623. The outsides of the first sector-shaped support piece 617 and the second sector-shaped support piece 622 fit the inner circular surface of the transparent tube 614 and can be inserted into the transparent tube 614. Both sides of the transparent tube 614 are connected to the second circulation pipe 608 and the heat sink 611. The mesh apertures of the first sector-shaped filter screen 618, the second sector-shaped filter screen 623, the first circular filter screen 620 and the second circular filter screen 621 are 150 microns.
[0044] After long-term use, impurities in the coolant will clog the heat sink 611 and the heat pipe 605, affecting the speed and flow of the pump 610. Although the existing mesh filter can collect impurities, it clogs quickly and needs to be replaced frequently. Through the setting of the filter 613, the coolant is diverted from the inside and outside of the cylinder 616. When the coolant passes from the outside, since the four first fan-shaped support plates 617 and the second fan-shaped support plates 622 are at a 90° angle, the first fan-shaped filter 618 and the three second fan-shaped filter screens 623 will filter the coolant passing through the outside of the cylinder 616. After the coolant passes through the first fan-shaped filter screen 618 and the second fan-shaped filter screen 623, the impurities on the coolant will adhere to the surface, and the enclosure 625 will prevent the impurities from leaking from the first fan-shaped filter screen 618 and the second fan-shaped filter screen 623. The liquid passing through the inside of the cylinder 616 will be blocked by the first circular filter screen 620 and the second circular filter screen 621. Collection, since there is a first arc hole 619 at the position of the first fan-shaped filter 618 and the second fan-shaped filter 623 on the outside of the cylinder 616, when the first circular filter 620 on the inside of the cylinder 616 is clogged with impurities, the coolant will flow out from the first arc hole 619 and the second arc hole 624, and the liquid passes through the first fan-shaped filter 618 and the second fan-shaped filter 623 on the outside. When the second circular filter 621 is clogged, it is blocked and guided by the enclosure 625, and the liquid will flow back to the inside of the cylinder 616 through the second arc hole 624, and be filtered through the second circular filter 621 to complete the filtration of the coolant. The first fan-shaped filter 618, the second fan-shaped filter 623, the first circular filter 620 and the second circular filter 621 of the filter 613 are segmented filtration with a long service life. When some areas are clogged, the liquid circulation speed is not affected, thereby improving the durability of the existing filter 613.
[0045] In the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected or indirectly connected through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0046] Although the present invention has been specifically shown and described in conjunction with the preferred embodiments, it should be understood by those skilled in the art that various changes may be made to the present invention in form and details without departing from the spirit and scope of the present invention as defined by the appended claims, all of which are within the scope of protection of the present invention.
Claims
1. An anti-glare lighting device for a training platform, characterized in that: The invention comprises a first light board (1), a light fixture connecting piece (2) arranged on the top of the first light board (1), a light fixture adjustment bracket (3) connected to the light fixture connecting piece (2), a second light board (4) arranged on the front and rear sides above the first light board (1), and a first driving mechanism (5) for driving the second light board (4) to rotate on two axes; The first driving mechanism (5) comprises a right-angle seat (501) arranged on the front and rear sides of the top of the first light board (1), a first connecting rod (502) which is away from the side of the second light board (4) and is rotatably arranged on the right-angle seat (501), a second connecting rod (503) which is rotatably arranged on the top of the right-angle seat (501), a third connecting rod (504) which is rotatably connected to the first connecting rod (502) and the second connecting rod (503), and a first driving device (505) for driving the third connecting rod (504) to rotate, wherein the second light board (4) is arranged on the third connecting rod (504), and the first connecting rod (502) and the second connecting rod (503) are vertically distributed on both sides.
2. The anti-glare lighting device for a training platform according to claim 1, characterized in that: The first driving device (505) is a rotating shaft (506) disposed between the right-angle seats (501); the rotating shaft (506) is connected to the second connecting rod (503); a fixing rod (507) is fixedly connected to the outside of the rotating shaft (506); and a first driving cylinder (508) is disposed between the fixing rod (507) and the top surface of the first lamp panel (1).
3. The anti-glare lighting device for a training platform according to claim 1, characterized in that: The first driving device (505) comprises a transmission box (509) arranged between the right-angle seats (501), a first transmission shaft (514) rotatably arranged on one side of the transmission box (509), a second transmission shaft (515) rotatably arranged on the other side of the transmission box (509), and a second driving mechanism for driving the first transmission shaft (514) and the second transmission shaft (515) to rotate in the same direction or in opposite directions, wherein the first transmission shaft (514) is connected to a second connecting rod (503) located in front of the first light board (1), and the second transmission shaft (515) is connected to a second connecting rod (503) located behind the first light board (1).
4. The anti-glare lighting device for a training platform according to claim 3, characterized in that: The second driving mechanism comprises a driving gear (510) rotatably arranged in a transmission box (509), a first motor (511) for driving the driving gear (510) to rotate, a first bevel gear (512) arranged on one side of the transmission box (509) and meshing with the driving gear (510), a second bevel gear (513) arranged on the other side of the transmission box (509) and meshing with the driving gear (510), a flat key (516) arranged on the outside of a second transmission shaft (515), a transmission cylinder (517) slidably arranged on the outside of the second transmission shaft (515) and the flat key (516), an adjustment block (518) slidably arranged on the side of the transmission box (509) away from the driving gear (510), and a drive shaft (517) for adjusting the driving gear (510). A second driving cylinder (519) for driving the adjustment block (518) to move laterally, the first bevel gear (512) is fixed on one side of the first transmission shaft (514), and the first transmission shaft (514) is located inside the transmission box (509), the second bevel gear (513) is arranged outside the second transmission shaft (515), the adjustment block (518) is connected to the transmission cylinder (517), a plurality of first convex teeth (520) are arranged on one side of the first bevel gear (512), a plurality of second convex teeth (521) are arranged on one side of the second bevel gear (513), and grooves (522) are arranged on both sides of the adjustment block (518) for contacting the first convex teeth (520) and the second convex teeth (521).
5. The anti-glare lighting device for a training platform according to claim 1, characterized in that: The lamp adjustment bracket (3) comprises an upper horizontal tube (301) connected to the lamp connecting member (2), an upper L-shaped tube (302) slidably arranged in the upper horizontal tube (301), a vertical tube (303) slidably arranged outside the upper L-shaped tube (302), a lower L-shaped tube (304) slidably arranged at the bottom of the vertical tube (303), and an external connection tube (305) arranged outside the lower L-shaped tube (304); an upper adjustment knob (306) for fixing the upper L-shaped tube (302) is provided on the upper horizontal tube (301) and the vertical tube (303); and a lower adjustment knob (307) for fixing the lower L-shaped tube (304) is provided on the vertical tube (303) and the external connection tube (305).
Citation Information
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