LED lamp for industrial lighting

By adopting a combination of annular filter plate and fan in the LED lamp, the problem of reduced ventilation caused by dust accumulation on the heat dissipation screen is solved, and efficient heat dissipation and air filtration of LED lamp beads are achieved, avoiding the need for manual cleaning of the annular filter plate.

CN119934468AActive Publication Date: 2025-05-06SHENZHEN WESTOP TECH CO LTD
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Patent Information

Application Number
CN202510313352.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2025-05-06
Estimated Expiration
2045-03-17

AI Technical Summary

Technical Problem

The dust accumulated by existing LED spotlight lenses for industrial lighting on the heat dissipation screen leads to a decrease in ventilation, thereby reducing the heat dissipation effect of the LED lamp.

Method used

An LED lamp for industrial lighting is designed, using a combination of annular filter plate and a fan, which blows from the inside to the annular filter plate through the fan to achieve the back-flushing and blowing effect of the annular filter plate, cleans up dust and flying insects, and drives the sleeve and the annular filter plate to rotate through the annular rack plate to prevent flying insects from adhering and blocking.

Benefits of technology

It effectively realizes the heat dissipation of LED lamp beads, and filters dust and flying insects in the air to avoid the impact on LED lamp beads. There is no need to manually clean the ring filter plate to ensure the stable operation of LED lamps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The LED lamp for industrial lighting comprises a mounting plate, four pull rods are fixed to the bottom of the mounting plate, an upper cover is fixed to the bottoms of the four pull rods, a lower cover is arranged below the upper cover, and the upper cover and the lower cover are fixed together through a plurality of connecting rods. The upper cover and the lower cover are sleeved with sleeves rotationally connected with the upper cover and the lower cover, annular filter plates opposite to the connecting rods are installed on the sleeves, a driving shaft is fixed to the output end of the motor, a gear is installed on the driving shaft, and the gear is connected with the annular rack plate in an engaged mode. According to the LED lamp, dust and winged insects in air can be filtered while the LED lamp beads are effectively cooled, influences on the LED lamp beads are avoided, meanwhile, dust removal and winged insect repelling can be conducted on the annular filter plate, manual cleaning of the annular filter plate is not needed, effective and efficient heat dissipation can be conducted on the circuit board and the LED lamp beads, and the service life of the circuit board and the LED lamp beads is prolonged. Therefore, the stable work is ensured.
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Description

Technical Field

[0001] The invention relates to the technical field of LED lamps, and in particular to an LED lamp for industrial lighting. Background Art

[0002] Compared with traditional light sources, LED has the advantages of high luminous efficiency, good color rendering, low power consumption, energy saving and environmental protection, high safety and reliability, and long service life. It has been widely used in various fields and is considered by the industry to be the main direction of the lighting source market with huge market potential.

[0003] The prior art publication number is CN204213825U, which is an LED spotlight lens for industrial lighting, characterized in that it includes a circular lens plate, the circular lens plate is provided with a curved trapezoidal hole, a heat dissipation screen is fixed on the curved trapezoidal hole, the left end of the circular lens plate and the right end of the circular lens plate are provided with a boss, the boss is provided with a guide hole, the upper end of the circular lens plate and the lower end of the circular lens plate are provided with an arc block, the arc block is provided with a threaded hole, the middle part of the circular lens plate is provided with an air convection hole, and the outer side of the air convection hole is provided with a conical lens.

[0004] The above-mentioned prior art helps the circular lens plate to dissipate heat by setting a curved trapezoidal hole with a heat dissipation screen, thereby enhancing the heat dissipation effect; however, with the use of the heat dissipation screen, the increase of dust on the heat dissipation screen will lead to a decrease in the ventilation of the heat dissipation screen, thereby reducing the heat dissipation effect of the LED lamp; for this reason, the present application proposes an LED lamp for industrial lighting. Summary of the invention

[0005] The purpose of the present invention is to solve the above technical problems and to propose an LED lamp for industrial lighting.

[0006] In order to achieve the above object, the present invention adopts the following technical solutions: An LED lamp for industrial lighting comprises a mounting plate, four pull rods are fixed at the bottom of the mounting plate, an upper cover is fixed at the bottom of the four pull rods, a lower cover is arranged below the upper cover, the upper cover and the lower cover are fixed together by a plurality of connecting rods, a sleeve is provided on the outer sleeve of the upper cover and the lower cover for rotation therewith, an annular filter plate opposite to the connecting rod is installed on the sleeve, a circuit board is installed in the upper cover, a plurality of LED lamp beads are installed at the bottom of the circuit board, a fan is fixed on the lower cover, an air outlet end of the fan is arranged opposite to the annular filter plate, an annular groove is provided on the inner wall of the sleeve, an annular rack plate is fixed in the annular groove, a motor is installed on the upper cover, a driving shaft is fixed at the output end of the motor, a gear is installed on the driving shaft, the gear is meshed with the annular rack plate, the motor drives the driving shaft and the gear to rotate when working, the gear rotation drives the sleeve and the annular filter plate to rotate, the position of the annular filter plate with the air outlet end of the fan continuously changes when the annular filter plate rotates, and the fan blows from the inside to the annular filter plate for back-blowing and cleaning.

[0007] Preferably, it also includes a heat dissipation mechanism for dissipating heat for the circuit board and LED lamp beads, the heat dissipation mechanism includes four connecting columns fixed to the inner top of the upper cover, a hollow heat-conducting rubber plate is fixed to the bottom of the four connecting columns, the circuit board is embedded and installed in the bottom of the hollow heat-conducting rubber plate, a positioning plate is fixed to the inner top of the upper cover, a piston cylinder is installed on the positioning plate, a movable piston is slidably connected in the piston cylinder, a connecting rod is hingedly connected to the movable piston, and the connecting rod is eccentrically hingedly connected to the bottom of the gear, a refrigeration box is installed on the upper end of the upper cover, heat exchange oil is installed in the refrigeration box, the reciprocating movement of the movable piston can transport the heat exchange oil in the refrigeration box to the hollow heat-conducting rubber plate to exchange heat for the circuit board, a serpentine exhaust pipe is installed on the refrigeration box, the lower end of the serpentine exhaust pipe is arranged corresponding to the LED lamp beads, and the serpentine exhaust pipe is located above the liquid level of the heat exchange oil.

[0008] Preferably, a liquid inlet pipe and a liquid outlet pipe are installed on the piston cylinder, the liquid inlet pipe is connected to the hollow heat-conducting rubber plate, the liquid outlet pipe is connected to the refrigeration box, a first one-way valve is installed on the liquid inlet pipe, a second one-way valve is installed on the liquid outlet pipe, and the hollow heat-conducting rubber plate is connected to the refrigeration box through a delivery pipe.

[0009] Preferably, it also includes an air intake pipe, which is connected to the piston cylinder and on which a third one-way valve is installed.

[0010] Preferably, the first one-way valve only allows heat exchange oil to enter the piston cylinder through the liquid inlet pipe, the second one-way valve only allows hydraulic oil in the piston cylinder to be transported to the liquid outlet pipe, and the third one-way valve only allows air to enter the piston cylinder through the air inlet pipe.

[0011] Preferably, a semiconductor refrigeration sheet is installed through the refrigeration box, the cooling end of the semiconductor refrigeration sheet is located in the refrigeration box, and a heat sink is installed at the heating end of the semiconductor refrigeration sheet.

[0012] Preferably, a through slot is penetrated through the upper cover, and the gear is disposed through the through slot.

[0013] Preferably, a temperature sensor is installed on the inner top of the upper cover.

[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. The fan can discharge the heat between the upper cover and the lower cover, and the external air enters between the upper cover and the lower cover through the annular filter plate, so as to realize the air circulation at the LED lamp beads and dissipate the heat of the LED lamp beads; the annular filter plate can block the dust and flying insects in the air to prevent them from entering between the upper cover and the lower cover, so as not to affect the internal LED lamp beads.

[0015] 2. The rotation of the annular rack plate drives the sleeve and the annular filter plate to rotate. Due to the rotation of the annular filter plate, the flying insects cannot stably attach to the annular filter plate, which makes it difficult to cause the annular filter plate to be blocked.

[0016] 3. Since the position of the fan is fixed, when the sleeve and the annular filter plate rotate, the relative position of the annular filter plate and the air outlet of the fan is constantly changing. The fan blows from the inside of the annular filter plate to the outside, achieving a backwashing effect on the annular filter plate. It can effectively remove dust on the annular filter plate and small flying insects attached to it, and avoid clogging of the annular filter plate, which affects the heat dissipation of the LED lamp beads, without manual cleaning.

[0017] 4. The heat exchange oil and air in the piston cylinder can be transported to the refrigeration box. The heat exchange oil in the refrigeration box is transported to the hollow heat-conducting rubber plate through the delivery pipe due to pressure and gravity. In this way, the flow of heat exchange oil in the hollow heat-conducting rubber plate can be realized. The heat on the circuit board can be taken away through heat transfer, so that the circuit board can be effectively cooled to ensure its stable operation.

[0018] 5. The air can be transported to the serpentine exhaust pipe. Since the serpentine exhaust pipe is located in the heat exchange oil, when the air flows through the serpentine exhaust pipe, the temperature of the air can be reduced by heat exchange. Finally, the low-temperature air after heat exchange is discharged through the serpentine exhaust pipe. As shown in the figure, since the fan and the serpentine exhaust pipe are arranged relative to each other, the low-temperature air flows through the surface of the LED lamp beads, which can cool and dissipate the heat of the LED lamp beads.

[0019] To sum up, the present invention can effectively dissipate heat for LED lamp beads and filter out dust and flying insects in the air to avoid affecting the LED lamp beads. At the same time, it can remove dust from the annular filter plate and drive away flying insects without manual participation in cleaning the annular filter plate. It can also effectively and efficiently dissipate heat for circuit boards and LED lamp beads to ensure their stable operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the structure of an LED lamp for industrial lighting proposed by the present invention; Figure 2 This is a rear view of an LED lamp for industrial lighting proposed by the present invention; Figure 3 This is a schematic diagram of the structure of the upper cover and the lower cover of an LED lamp for industrial lighting proposed by the present invention; Figure 4 A cross-sectional view of an LED lamp for industrial lighting proposed by the present invention; Figure 5 This is a schematic diagram of a heat dissipation mechanism in an LED lamp for industrial lighting proposed by the present invention; Figure 6 This is a schematic diagram of the structure of a gear and an annular rack plate in an LED lamp for industrial lighting proposed by the present invention; Figure 7 This is a structural schematic diagram of a first one-way valve in an LED lamp for industrial lighting proposed by the present invention; Figure 8 This is a schematic diagram of the structure of a movable piston in an LED lamp for industrial lighting proposed by the present invention; Fig. 9 This is a schematic diagram of the structure of the through groove on the upper cover of an LED lamp for industrial lighting proposed by the present invention; Fig.10 This is a schematic diagram of the structure of a sleeve in an LED lamp for industrial lighting proposed by the present invention; Fig.11 This is a schematic diagram of the structure of a serpentine exhaust pipe in an LED lamp for industrial lighting proposed by the present invention.

[0021] In the figure: 1 mounting plate, 2 pull rod, 3 motor, 4 refrigeration box, 5 sleeve, 6 annular filter plate, 7 serpentine exhaust pipe, 8 delivery pipe, 9 liquid outlet pipe, 10 semiconductor refrigeration plate, 11 radiator, 12 upper cover, 13 annular rack plate, 14 lower cover, 15 connecting rod, 16 fan, 17 hollow heat-conducting rubber plate, 18 circuit board, 19 LED lamp beads, 20 connecting column, 21 drive shaft, 22 gear, 23 piston cylinder, 24 annular groove, 25 connecting rod, 26 intake pipe, 27 third one-way valve, 28 temperature sensor, 29 second one-way valve, 30 liquid inlet pipe, 31 first one-way valve, 32 positioning plate, 33 through groove, 34 moving piston. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0023] Reference Figure 1-Figure 11 An LED lamp for industrial lighting comprises a mounting plate 1, wherein the mounting plate 1 is provided with four mounting holes, and the mounting plate 1 can be mounted on a mounting panel by passing bolts through the mounting holes; four tie rods 2 are fixed to the bottom of the mounting plate 1, an upper cover 12 is fixed to the bottom of the four tie rods 2, a lower cover 14 is provided below the upper cover 12, the upper cover 12 and the lower cover 14 are fixed together by a plurality of connecting rods 15, the outer sleeves of the upper cover 12 and the lower cover 14 are provided with sleeves 5 rotatably connected thereto, the upper cover 12 and the lower cover 14 are both circular in shape and cylindrical in arrangement, wherein the bottom of the lower cover 14 is a light-transmitting plate so that the LED lamp beads 19 can emit light and transmit light.

[0024] An annular filter plate 6 opposite to the connecting rod 15 is installed on the sleeve 5, and a bearing or other guide component can be installed on the upper cover 12 or the lower cover 14 to enable the sleeve 5 to stably rotate on the upper cover 12 and the lower cover 14; wherein, a dustproof net can be installed on the annular filter plate 6 to further improve the dustproof effect, and at the same time, it can prevent flying insects from entering the upper cover 12 and the lower cover 14, so that it is not easy for flying insects and flying insect feces to fall on the light-transmitting plate to affect the light transmittance.

[0025] A circuit board 18 is installed in the upper cover 12, and a plurality of LED lamp beads 19 are installed at the bottom of the circuit board 18. A fan 16 is fixed on the lower cover 14, and the fan 16 does not contact the sleeve 5; the air outlet end of the fan 16 is arranged opposite to the annular filter plate 6, and the inner wall of the sleeve 5 is provided with an annular groove 24, and an annular rack plate 13 is fixed in the annular groove 24; a motor 3 is installed on the upper cover 12, and a driving shaft 21 is fixed to the output end of the motor 3, and a gear 22 is installed on the driving shaft 21, and the gear 22 is meshed and connected with the annular rack plate 13. When the motor 3 works, the driving shaft 21 is driven to rotate, and the rotation of the driving shaft 21 drives the gear 22 to rotate, and the rotation of the gear 22 drives the annular rack plate 13 to rotate, thereby realizing the rotation of the sleeve 5 and the annular filter plate 6 on the upper cover 12 and the lower cover 14; wherein, a through groove 33 is penetrated on the upper cover 12, and the gear 22 is arranged to penetrate the through groove 33.

[0026] The motor 3 drives the drive shaft 21 and the gear 22 to rotate, and the gear 22 rotates to drive the sleeve 5 and the annular filter plate 6 to rotate. When the annular filter plate 6 rotates, the position of the annular filter plate 6 and the air outlet end of the fan 16 continuously changes. The fan 16 works to blow toward the annular filter plate 6 from the inside, and back-blows and cleans the annular filter plate 6; wherein, a temperature sensor 28 is installed on the inner top of the upper cover 12, and also includes a controller connected to the temperature sensor 28, and the controller is connected to the fan 16 and the motor 3; when the temperature sensor 28 detects that the temperature inside the upper cover 12 reaches the set value, the temperature sensor 28 transmits a signal to the controller, and the controller controls the motor 3 and the fan 16 to work, so as to dissipate heat for the LED lamp beads 19 and the circuit board 18.

[0027] It also includes a heat dissipation mechanism for dissipating heat from the circuit board 18 and the LED lamp beads 19. The heat dissipation mechanism includes four connecting columns 20 fixed to the top of the upper cover 12. A hollow heat-conducting rubber plate 17 is fixed to the bottom of the four connecting columns 20. The circuit board 18 is embedded and installed at the bottom of the hollow heat-conducting rubber plate 17. In this way, a larger contact area with the circuit board 18 can be provided, which is conducive to transferring the heat on the circuit board 18 and dissipating the heat of the circuit board 18. At the same time, the hollow heat-conducting rubber plate 17 has an insulating effect to prevent short circuits of electrical components on the circuit board 18.

[0028] A positioning plate 32 is fixed to the inner top of the upper cover 12, and a piston cylinder 23 is installed on the positioning plate 32. A mobile piston 34 is slidably connected in the piston cylinder 23. A connecting rod 25 is hingedly connected to the mobile piston 34. The connecting rod 25 is eccentrically hingedly connected to the bottom of the gear 22. A refrigeration box 4 is installed on the upper end of the upper cover 12. Heat exchange oil is installed in the refrigeration box 4. The reciprocating movement of the mobile piston 34 can transport the heat exchange oil in the refrigeration box 4 to the hollow heat-conducting rubber plate 17 to exchange heat for the circuit board 18; a liquid inlet pipe 30 and a liquid outlet pipe 9 are installed on the piston cylinder 23. The liquid inlet pipe 30 is connected to the hollow heat-conducting rubber plate 17, and the liquid outlet pipe 9 is connected to the refrigeration box 4. A first one-way valve 31 is installed on the liquid inlet pipe 30, and the first one-way valve 31 only allows the heat exchange oil to enter the piston cylinder 23 through the liquid inlet pipe 30.

[0029] A second one-way valve 29 is installed on the liquid outlet pipe 9. The hollow heat-conducting rubber plate 17 is connected to the refrigeration box 4 through the delivery pipe 8. The second one-way valve 29 only allows the hydraulic oil in the piston cylinder 23 to be delivered to the liquid outlet pipe 9; it also includes an air intake pipe 26, which is connected to the piston cylinder 23. A third one-way valve 27 is installed on the air intake pipe 26. The third one-way valve 27 only allows air to enter the piston cylinder 23 through the air intake pipe 26.

[0030] Among them, a semiconductor refrigeration sheet 10 is installed throughout the refrigeration box 4, the cooling end of the semiconductor refrigeration sheet 10 is located in the refrigeration box 4, and a radiator 11 is installed at the heating end of the semiconductor refrigeration sheet 10, which can cool the heat exchange oil in the refrigeration box 4; wherein the controller controls the operation of the radiator 11 and the semiconductor refrigeration sheet 10; a serpentine exhaust pipe 7 is installed on the refrigeration box 4, and a part of the serpentine exhaust pipe 7 is located in the heat exchange oil, the lower end of the serpentine exhaust pipe 7 is arranged corresponding to the LED lamp bead 19, and the serpentine exhaust pipe 7 is located above the liquid level of the heat exchange oil, and the upper end of the serpentine exhaust pipe 7 at one end of the refrigeration box 4 is located above the liquid level of the heat exchange oil, so that the air in the refrigeration box 4 can be discharged through the serpentine exhaust pipe 7.

[0031] When the present invention is used, the LED lamp beads 19 are powered on and work, and as the LED lamp beads 19 are used, the temperature between the upper cover 12 and the lower cover 14 increases, and the heat between the upper cover 12 and the lower cover 14 can be naturally dissipated through the annular filter plate 6; As the temperature between the upper cover 12 and the lower cover 14 increases, when the temperature sensor 28 detects that the temperature is greater than the set value, the temperature sensor 28 transmits a signal to the controller, and the controller controls the motor 3, the fan 16 and the semiconductor cooling sheet 10 to work; The fan 16 can discharge the heat between the upper cover 12 and the lower cover 14 when it is working, and the external air can enter between the upper cover 12 and the lower cover 14 through the annular filter plate 6, so that the air circulation at the LED lamp beads 19 can be realized, and the LED lamp beads 19 can be cooled; the dust and flying insects in the air can be blocked by the annular filter plate 6 to prevent them from entering between the upper cover 12 and the lower cover 14, so as not to affect the internal LED lamp beads 19; The motor 3 drives the driving shaft 21 to rotate, and the driving shaft 21 rotates to drive the gear 22 to rotate. The gear 22 rotates to drive the annular rack plate 13 to rotate. The annular rack plate 13 rotates to drive the sleeve 5 and the annular filter plate 6 to rotate. Due to the rotation of the annular filter plate 6, the flying insects cannot stably attach to the annular filter plate 6 (this part has a bright light to attract small flying insects), and thus it is not easy to cause the annular filter plate 6 to be blocked; since the position of the fan 16 is fixed, when the sleeve 5 and the annular filter plate 6 rotate, the relative position of the annular filter plate 6 and the air outlet end of the fan 16 is continuously changing, and the fan 16 works to blow from the inside of the annular filter plate 6 to the outside, so as to achieve a backwashing effect on the annular filter plate 6, which can effectively remove dust on the annular filter plate 6 and the attached small flying insects, and can avoid the annular filter plate 6 from being blocked, affecting the heat dissipation of the LED lamp beads 19, and no manual cleaning is required; The semiconductor refrigeration sheet 10 can cool the heat exchange oil in the refrigeration box 4 when it works. The rotation of the gear 22 drives the connecting rod 25 to move. The movement of the connecting rod 25 drives the moving piston 34 to move back and forth. When the moving piston 34 moves toward the motor 3, the heat exchange oil in the hollow heat-conducting rubber plate 17 can be sucked into the piston cylinder 23 through the liquid inlet pipe 30. At the same time, part of the air can be sucked into the piston cylinder 23 through the air inlet pipe 26. Therefore, the piston cylinder 23 contains heat exchange oil and air. When the moving piston 34 moves away from the motor 3, the heat exchange oil and air in the piston cylinder 23 can be transported to the refrigeration box 4. The heat exchange oil in the refrigeration box 4 is transported to the hollow heat-conducting rubber plate 17 through the delivery pipe 8 due to pressure and gravity. In this way, the flow of the heat exchange oil in the hollow heat-conducting rubber plate 17 can be realized, and the heat on the circuit board 18 can be taken away by heat transfer, so that the circuit board 18 and the LED lamp beads 19 can be effectively cooled to ensure their stable operation. As the movable piston 34 reciprocates, the air in the refrigerating box 4 increases, resulting in an increase in the pressure in the refrigerating box 4. This not only squeezes the heat exchange oil, but also allows the heat exchange oil in the refrigerating box 4 to be transported to the hollow heat-conducting rubber plate 17 through the delivery pipe 8. At the same time, the air can be transported to the serpentine exhaust pipe 7. Since the serpentine exhaust pipe 7 is located in the heat exchange oil, when the air flows through the serpentine exhaust pipe 7, the temperature of the air can be reduced by heat exchange. Finally, the low-temperature air after heat exchange is discharged through the serpentine exhaust pipe 7. Figure 4As shown, since the fan 16 and the serpentine exhaust pipe 7 are arranged opposite to each other, low-temperature air flows through the surface of the LED lamp beads 19, which can cool and dissipate the heat of the LED lamp beads 19 to ensure its stable operation.

[0032] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An LED lamp for industrial lighting, comprising a mounting plate (1), characterized in that: Four pull rods (2) are fixed to the bottom of the mounting plate (1), an upper cover (12) is fixed to the bottom of the four pull rods (2), a lower cover (14) is provided below the upper cover (12), the upper cover (12) and the lower cover (14) are fixed together via a plurality of connecting rods (15), the outer sleeves of the upper cover (12) and the lower cover (14) are provided with sleeves (5) rotatably connected thereto, an annular filter plate (6) opposite to the connecting rods (15) is installed on the sleeve (5), a circuit board (18) is installed inside the upper cover (12), a plurality of LED lamp beads (19) are installed at the bottom of the circuit board (18), a fan (16) is fixed to the lower cover (14), an air outlet end of the fan (16) is provided opposite to the annular filter plate (6), and a plurality of LED lamp beads (19) are installed at the bottom of the circuit board (18). The inner wall of the sleeve (5) is provided with an annular groove (24), an annular rack plate (13) is fixed in the annular groove (24), a motor (3) is mounted on the upper cover (12), a drive shaft (21) is fixed to the output end of the motor (3), a gear (22) is mounted on the drive shaft (21), the gear (22) is meshingly connected with the annular rack plate (13), the motor (3) drives the drive shaft (21) and the gear (22) to rotate when working, the gear (22) drives the sleeve (5) and the annular filter plate (6) to rotate when rotating, the position of the annular filter plate (6) with the air outlet end of the fan (16) continuously changes when the annular filter plate (6) rotates, the fan (16) blows toward the annular filter plate (6) from the inside when working, and back-blows and cleans the annular filter plate (6).

2. The LED lamp for industrial lighting according to claim 1, characterized in that: The invention also comprises a heat dissipation mechanism for dissipating heat from the circuit board (18) and the LED lamp beads (19), the heat dissipation mechanism comprising four connecting columns (20) fixed to the inner top of the upper cover (12), the bottoms of the four connecting columns (20) being fixed with a hollow heat-conducting rubber plate (17), the circuit board (18) being embedded and mounted on the bottom of the hollow heat-conducting rubber plate (17), the inner top of the upper cover (12) being fixed with a positioning plate (32), the positioning plate (32) being mounted with a piston cylinder (23), the piston cylinder (23) being slidably connected with a movable piston (34), the movable piston (34) being hinged on A connecting rod (25) is connected, and the connecting rod (25) is eccentrically hingedly connected to the bottom of the gear (22). A refrigeration box (4) is installed at the upper end of the upper cover (12), and heat exchange oil is installed in the refrigeration box (4). The movable piston (34) can reciprocate to transport the heat exchange oil in the refrigeration box (4) to the hollow heat-conducting rubber plate (17) to exchange heat with the circuit board (18). A serpentine exhaust pipe (7) is installed on the refrigeration box (4), and the lower end of the serpentine exhaust pipe (7) is arranged corresponding to the LED lamp bead (19), and the serpentine exhaust pipe (7) is located above the liquid level of the heat exchange oil.

3. The LED lamp for industrial lighting according to claim 2, characterized in that: The piston cylinder (23) is provided with a liquid inlet pipe (30) and a liquid outlet pipe (9); the liquid inlet pipe (30) is connected to the hollow heat-conducting rubber plate (17); the liquid outlet pipe (9) is connected to the refrigeration box (4); the liquid inlet pipe (30) is provided with a first one-way valve (31); the liquid outlet pipe (9) is provided with a second one-way valve (29); and the hollow heat-conducting rubber plate (17) is connected to the refrigeration box (4) via a delivery pipe (8).

4. The LED lamp for industrial lighting according to claim 3, characterized in that: It also includes an air intake pipe (26), the air intake pipe (26) being connected to the piston cylinder (23), and a third one-way valve (27) being installed on the air intake pipe (26).

5. The LED lamp for industrial lighting according to claim 4, characterized in that: The first one-way valve (31) only allows heat exchange oil to enter the piston cylinder (23) through the liquid inlet pipe (30), the second one-way valve (29) only allows hydraulic oil in the piston cylinder (23) to be transported to the liquid outlet pipe (9), and the third one-way valve (27) only allows air to enter the piston cylinder (23) through the air inlet pipe (26).

6. The LED lamp for industrial lighting according to claim 2, characterized in that: A semiconductor refrigeration sheet (10) is installed through the refrigeration box (4); a refrigeration end of the semiconductor refrigeration sheet (10) is located inside the refrigeration box (4); and a heat sink (11) is installed at a heating end of the semiconductor refrigeration sheet (10).

7. The LED lamp for industrial lighting according to claim 1, characterized in that: The upper cover (12) is provided with a through slot (33) extending therethrough, and the gear (22) is arranged to pass through the through slot (33).

8. The LED lamp for industrial lighting according to claim 1, characterized in that: A temperature sensor (28) is installed on the inner top of the upper cover (12).

Citation Information

Patent Citations

  • Light-emitting diode (LED) spotlight lens used for industrial lighting

    CN204213825U

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