Outdoor waterproof pattern beam lamp
By spraying insecticide in the beam lamp and using the centrifugal force to rotate the lens, and combining the rubber sheet to block the atomized spray head, the problem of insect blocking the lens is solved, ensuring that light propagation is not affected, and insects are prevented from getting stuck in the lamp, achieving the normal use of the beam lamp.
Patent Information
- Application Number
- CN202510903997.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2045-07-01
AI Technical Summary
When existing beam lamps are used outdoors, insects block the lens due to phototaxis, which affects the propagation of light sources and affects the use effect.
A waterproof pattern beam lamp for outdoor use is designed to eliminate insects by spraying insecticides, and the rapid rotation and centrifugal force of the lens are used to throw the insects out. At the same time, rubber sheets are used to block the atomized spray head to prevent insects from getting stuck in the lamp.
Effectively avoid insects from blocking the lens, ensure that light propagation is not affected, and prevent insects from getting stuck in the lamp, and keep the lamps from being used normally.
Smart Images

Figure CN120444584A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of beam lamps, and in particular relates to a waterproof pattern beam lamp for outdoor use. Background Art
[0002] Beam lights, also known as sharpy lights, are lamps that produce an intense, concentrated beam of light. They are widely used in stage performances, concerts, nightclubs, and other occasions to create a visually striking effect. Beam lights have extremely high lumens and can produce a very bright beam.
[0003] When existing beam lights are used outdoors, some insects tend to linger on the lens due to their tendency to attract light, which affects the spread of the light source and thus the effectiveness of the beam lights.
[0004] Therefore, it is necessary to invent an outdoor waterproof pattern beam light to solve the above problems. Summary of the Invention
[0005] In view of the above problems, the present invention provides an outdoor waterproof pattern beam light to solve the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a waterproof patterned beam light for outdoor use, comprising a beam light, wherein a circular shell is fixedly mounted on the beam light, a ring frame is provided inside the circular shell, a lens is provided inside the ring frame, a rotating assembly is provided outside the ring frame for driving the ring frame to rotate, a sealing assembly is provided on the inner side of the circular shell to seal the ring frame and the circular shell, and a spray assembly is provided on the circular shell for spraying insecticide into the area where the lens is located;
[0007] The rotating assembly includes: a ring plate, bolts, a bracket, teeth, a motor, a gear, and a control assembly for controlling the motor;
[0008] The bracket is fixedly mounted on the inner side of the circular shell. The bracket is annular and has an opening at the bottom. The ring plate is rotatably mounted in the bracket. The ring frame is connected to the ring plate by bolts. The teeth are equidistantly arranged around the bottom of the ring plate. The motor is fixedly mounted on the circular shell. The output shaft of the motor is fixedly connected to the gear, and the gear is engaged with the teeth.
[0009] Furthermore, the control assembly includes: a mounting plate, a first controller, and a first battery for powering the motor;
[0010] The first controller and the first battery are fixedly mounted on a mounting plate, and the mounting plate is threadedly connected to the outer side of the round shell. The first controller can control the rotation of the motor output shaft.
[0011] Furthermore, the spray assembly includes: a cylinder, a box, a first pipe connecting the cylinder and the box, a counterweight, a second pipe, a one-way valve, an annular cavity arranged inside the circular shell, an atomizing nozzle, a piston plate, a lifting assembly for driving the piston plate to rise and fall, a liquid adding pipe, and a plug;
[0012] The cylinder body and the box body are both fixedly mounted on the inner side of the circular shell. The first pipeline includes a first part and a second part. The first part is a hard pipe connected to the cylinder body, and the second part is a hose connected to the box body. The hard pipe and the hose are fixedly connected. There are two one-way valves, and the two one-way valves are respectively arranged in the hard pipe and the second pipeline. The counterweight block is fixedly sleeved on the outside of the hose. One end of the liquid adding pipe is connected to the box body, and the other end of the liquid adding pipe extends to the outside of the circular shell. The plug is threadedly connected to the liquid adding pipe. The piston plate is arranged in the cylinder body. One end of the second pipeline is connected to the cylinder body, and the other end is connected to the annular cavity. There are multiple atomizing nozzles, and the multiple atomizing nozzles are equidistantly arranged around the inner side of the circular shell, and one end of the atomizing nozzle is connected to the annular cavity.
[0013] Furthermore, the lifting assembly includes: an L-shaped rod, a ratchet, a pressure rod, a first spring, a pawl, a torsion spring, and a fixed shaft;
[0014] A circular groove is provided in the middle of the inner side of the gear, one end of the L-shaped rod is rotatably installed in the circular groove, the ratchet is fixedly sleeved on the outside of the L-shaped rod, the fixed shaft is fixedly installed on the inner side of the gear, the pawl is rotatably sleeved on the outside of the fixed shaft, the torsion spring is sleeved outside the fixed shaft, the two ends of the torsion spring are respectively fixedly connected to the fixed shaft and the pawl, the pressure rod is fixedly installed on the top of the piston plate, and the top end of the pressure rod extends outside the cylinder body, and the first spring is sleeved outside the pressure rod.
[0015] Furthermore, the sealing assembly includes: a sealing ring, an airbag, an extrusion block, a second spring, and a first electromagnet;
[0016] A cavity is provided inside the sealing ring, and a mounting groove matching the sealing ring is provided on the inner side of the circular shell. The sealing ring is fixedly installed inside the mounting groove, and one side of the sealing ring is in conflict with the ring frame. A groove is provided on the outer side of the circular shell, and the airbag is fixedly installed in the groove. The airbag is communicated with the interior of the sealing ring, and a slide groove is provided on the bottom wall of the groove. The extrusion block is slidably set in the slide groove. The second spring is located in the slide groove, and its two ends are fixedly connected to the extrusion block and the inner wall of the slide groove respectively. The first electromagnet is fixedly installed on the outside of the circular shell. The first controller can control the first electromagnet to be energized or de-energized, and the first battery supplies power to the first electromagnet.
[0017] Furthermore, the top of the circular shell is provided with an arc surface, the top of the ring frame is provided with a rubber sheet, the rubber sheet is ring-shaped, the inner ring of the rubber sheet is fixedly connected to the ring frame, and the ring frame is provided with a pulling component for driving the outer ring of the rubber sheet to rise.
[0018] Furthermore, the pulling assembly includes: a ring, a connecting rod, a magnet block, a third spring, a second electromagnet, a second controller, and a second battery;
[0019] The circular ring is fixedly sleeved on the outside of the rubber sheet, a placement groove matching the circular ring is opened at the top edge of the ring frame, the circular ring is located in the placement groove, and a placement cavity is symmetrically provided inside the ring frame. The connecting rod is located in the placement cavity, one end of the connecting rod passes through the placement cavity and the placement groove and is fixedly connected to the circular ring, the other end of the connecting rod is fixedly connected to the magnet block, the second electromagnet is fixedly mounted on the bottom wall of the placement cavity, the direction of the magnetic pole generated by the second electromagnet when energized is the same as the direction of the magnetic pole of the magnet block, the third spring is sleeved outside the connecting rod, the second controller and the second battery are both fixedly mounted on the bottom of the ring frame, the second battery supplies power to the second electromagnet, and the second controller can control the power on and off of the second electromagnet.
[0020] Furthermore, the first controller and the second controller are both remote controllers.
[0021] Technical effects and advantages of the present invention:
[0022] 1. The present invention kills insects first, and then uses the centrifugal force generated by the rapidly rotating lens to fling the remaining insects outward, so that the insects leave the lens and do not block the lens and affect the transmission of light. By disinfecting the insects, it can prevent the insects from returning to the lens.
[0023] 2. The present invention shields the atomizing nozzle by stretching the rubber sheet into a bucket shape, thereby preventing insects from being thrown onto the atomizing nozzle when the lens rotates, affecting the subsequent use of the atomizing nozzle. When the rubber sheet is in a bucket shape, its inner side forms a continuous arc surface with the arc surface of the circular shell. Therefore, when the insect is thrown away from the lens and moves onto the rubber sheet, the arc surface formed can cooperate with the formed arc surface to guide the insect out of the circular shell, preventing the insect from getting stuck inside the circular shell. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 A schematic structural diagram of an outdoor waterproof pattern beam light according to an embodiment of the present invention is shown;
[0025] Figure 2 The structure of the circular shell of the embodiment of the present invention is shown Figure 1 ;
[0026] Figure 3A schematic cross-sectional view of a circular shell according to an embodiment of the present invention is shown;
[0027] Figure 4 The embodiment of the present invention is shown Figure 3 A in the middle is an enlarged structural diagram;
[0028] Figure 5 The embodiment of the present invention is shown Figure 4 The enlarged structural diagram at B in the middle;
[0029] Figure 6 The structure diagram of the circular shell of the embodiment of the present invention is shown Figure 2 ;
[0030] Figure 7 The embodiment of the present invention is shown Figure 6 The enlarged structural diagram at C in the middle;
[0031] In the figure: 1. beam lamp; 2. round shell; 3. ring frame; 4. lens; 5. ring plate; 6. bolt; 7. bracket; 8. teeth; 9. motor; 10. gear; 11. cylinder; 12. box; 13. first pipe; 14. counterweight; 15. second pipe; 16. one-way valve; 17. annular cavity; 18. atomizing nozzle; 19. L-shaped rod; 20. ratchet; 21. piston plate; 22. pressure rod; 23. first spring; 24. pawl; 25. torsion spring; 26. sealing ring; 27. airbag; 28. squeeze block; 29. second spring; 30. first electromagnet; 31. first controller; 32. first battery; 33. rubber sheet; 34. ring; 35. magnet; 36. third spring; 37. second electromagnet; 38. second controller; 39. second battery; 40. plug. DETAILED DESCRIPTION
[0032] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0033] The present invention provides a waterproof pattern beam light for outdoor use, such as Figures 1 to 7 As shown, it includes a beam lamp 1, on which a round shell 2 is fixedly mounted. The beam lamp 1 is a waterproof pattern beam lamp for outdoor use in the prior art. A ring frame 3 is provided inside the round shell 2, and a lens 4 is provided inside the ring frame 3. The lens 4 and the ring frame 3 are threadedly connected. A rotating assembly for driving the ring frame 3 to rotate is provided on the outside of the ring frame 3. A sealing assembly is provided on the inside of the round shell 2 to seal the ring frame 3 and the round shell 2. The round shell 2 is provided with a spray assembly for spraying insecticide to the area where the lens 4 is located;
[0034] The rotating assembly includes: a ring plate 5, a bolt 6, a bracket 7, teeth 8, a motor 9, a gear 10, and a control assembly for controlling the motor 9;
[0035] The bracket 7 is fixedly mounted on the inner side of the circular shell 2. The bracket 7 is annular and has an opening at the bottom of the bracket 7. The ring plate 5 is rotatably mounted in the bracket 7. The ring frame 3 is connected to the ring plate 5 by bolts 6. The teeth 8 are equidistantly arranged around the bottom of the ring plate 5. The motor 9 is fixedly mounted on the circular shell 2. The output shaft of the motor 9 is fixedly connected to the gear 10, and the gear 10 is engaged with the teeth 8.
[0036] During use, the beam lamp 1 emits light, which is transmitted to the outside through the lens 4. Due to the phototaxis of insects, some insects may lie on the lens 4, thereby affecting the transmission of light. At this time, the seal between the ring frame 3 and the circular shell 2 is removed by the sealing component, and the insecticide is sprayed to the area where the lens 4 is located by the spray component to kill the insects. The killed insects remain on the lens 4. At this time, the control component controls the output shaft of the motor 9 to rotate forward, causing the gear 10 to rotate, thereby cooperating with the teeth 8 to drive the ring plate 5, the bolt 6, the ring frame 3, and the lens 4 to rotate rapidly. The centrifugal force generated causes the remaining killed insects to be thrown outward, so that the insects leave the lens 4, so that the insects do not block the lens 4 and affect its transmission of light. By disinfecting the insects, the insects can be prevented from returning to the lens 4. The rapid rotation of the lens 4 will also dry some of the insecticide on the lens 4, preventing the presence of insecticide liquid on the lens 4 from affecting the transmission of light. After the lens 4 resumes normal use, the sealing component is restored to seal the ring frame 3 and the circular shell 2, preventing external moisture from entering the beam lamp 1.
[0037] like Figures 3 and 4 As shown, the control assembly includes: a mounting plate, a first controller 31, and a first battery 32 for powering the motor 9;
[0038] The first controller 31 and the first battery 32 are fixedly mounted on a mounting plate, which is threadedly connected to the outer side of the round shell 2. The first controller 31 can control the rotation of the output shaft of the motor 9.
[0039] like Figures 3 and 4 As shown, the spray assembly includes: a cylinder 11, a box 12, a first pipe 13 connecting the cylinder 11 and the box 12, a counterweight 14, a second pipe 15, a one-way valve 16, an annular chamber 17 provided inside the circular shell 2, an atomizing nozzle 18, a piston plate 21, a lifting assembly for driving the piston plate 21 to move up and down, a liquid filling pipe, and a plug 40. The cylinder 11 and the box 12 are filled with liquid insecticide;
[0040] The cylinder body 11 and the box body 12 are both fixedly mounted on the inner side of the circular shell 2. The first pipe 13 includes a first part and a second part. The first part is a hard pipe communicating with the cylinder body 11, and the second part is a hose communicating with the box body 12. The hard pipe and the hose are fixedly connected. There are two one-way valves 16, and the two one-way valves 16 are respectively arranged in the hard pipe and the second pipe 15. The counterweight 14 is fixedly sleeved on the outside of the hose. One end of the liquid adding pipe is communicated with the box body 12, and the other end of the liquid adding pipe extends to the outside of the circular shell 2. The plug 40 is threadedly connected to the liquid adding pipe. The piston plate 21 is arranged in the cylinder body 11. One end of the second pipe 15 is communicated with the cylinder body 11, and the other end is communicated with the annular cavity 17. There are multiple atomizing nozzles 18, and multiple atomizing nozzles 18 are equidistantly arranged around the inner side of the circular shell 2, and one end of the atomizing nozzle 18 is communicated with the annular cavity 17.
[0041] The piston plate 21 is driven down by the lifting assembly to squeeze the insecticide inside it outward. At this time, the one-way valve 16 located in the hard tube is closed, and the one-way valve 16 located in the second pipe 15 is opened. The insecticide enters the annular cavity 17 through the second pipe 15 and is then atomized and sprayed to the outside world through the atomizing nozzle 18, so that the area where the lens 4 is located is disinfected by insects. Then the lifting assembly drives the piston plate 21 to rise, so that the insecticide is drawn into the cylinder 11. At this time, the one-way valve 16 located in the hard tube is opened, and the one-way valve 16 located in the second pipe 15 is closed. The insecticide in the box 12 is drawn into the cylinder 11 through the first pipe 13 for replenishment. The gravity of the counterweight block 14 itself ensures that the hose part of the first pipe 13 is always in the insecticide liquid in the box 12, which facilitates the extraction of the insecticide. The plug 40 is rotated and removed, and insecticide is added to the box 12 through the liquid adding pipe.
[0042] like Figure 4 and Figure 7 As shown, the lifting assembly includes: an L-shaped rod 19, a ratchet 20, a pressure rod 22, a first spring 23, a pawl 24, a torsion spring 25, and a fixed shaft;
[0043] A circular groove is provided in the middle part of the inner side of the gear 10, and one end of the L-shaped rod 19 is rotatably installed in the circular groove. The ratchet 20 is fixedly sleeved on the outside of the L-shaped rod 19, and the fixed shaft is fixedly installed on the inner side of the gear 10. The pawl 24 is rotatably sleeved on the outside of the fixed shaft, and the torsion spring 25 is sleeved outside the fixed shaft. The two ends of the torsion spring 25 are respectively fixedly connected to the fixed shaft and the pawl 24. The pressure rod 22 is fixedly installed on the top of the piston plate 21, and the top end of the pressure rod 22 extends to the outside of the cylinder body 11. The first spring 23 is sleeved outside the pressure rod 22. The torsion force of the torsion spring 25 can keep the pawl 24 in contact with the ratchet 20.
[0044] The output shaft of the motor 9 drives the gear 10 to reverse, causing the pawl 24 to move accordingly. The pawl 24 presses against the ratchet 20 and the L-shaped rod 19 to rotate accordingly. After the L-shaped rod 19 conflicts with the pressure rod 22, the L-shaped rod 19 cooperates with its side to squeeze the pressure rod 22, causing the piston plate 21 to descend and at the same time compressing the first spring 23 to deform it to generate a force. When the L-shaped rod 19 leaves the pressure rod 22, the first spring 23 releases its force and drives the pressure rod 22 and the piston plate 21 to rise. The output shaft of the motor 9 rotates forward. Similarly, the L-shaped rod 19 rotates accordingly. When the L-shaped rod 19 conflicts with the pressure rod 22, with the rotation of the gear 10, the pawl 24 moves relative to the surface of the ratchet 20, so that the L-shaped rod 19 is stationary at this time, and the gear 10 can rotate normally, so that the pressure rod 22 is also stationary at this time, and the piston plate 21 is stationary at this time.
[0045] like Figure 4 As shown, the sealing assembly includes: a sealing ring 26, an air bag 27, an extrusion block 28, a second spring 29, and a first electromagnet 30;
[0046] A cavity is provided inside the sealing ring 26, and a mounting groove matching the sealing ring 26 is provided on the inner side of the circular shell 2. The sealing ring 26 is fixedly installed inside the mounting groove. One side of the sealing ring 26 conflicts with the ring frame 3. A groove is provided on the outer side of the circular shell 2. The airbag 27 is fixedly installed in the groove. The airbag 27 is communicated with the interior of the sealing ring 26. A slide is provided on the bottom wall of the groove. The extrusion block 28 is slidably set in the slide. The extrusion block 28 is made of iron. The second spring 29 is located in the slide, and its two ends are fixedly connected to the extrusion block 28 and the inner wall of the slide respectively. The first electromagnet 30 is fixedly installed on the outside of the circular shell 2. The first controller 31 can control the first electromagnet 30 to be powered on or off. The first battery 32 supplies power to the first electromagnet 30.
[0047] The first electromagnet 30 is remotely controlled by the first controller 31 so that it is energized and has magnetism, so that the squeezing block 28 is attracted to the first electromagnet 30, so that the second spring 29 is compressed and deformed to generate a force. As the squeezing block 28 moves, the squeezing of the airbag 27 is canceled, and the deformation of the airbag 27 is restored, so that the air in the sealing ring 26 is sucked in, causing the sealing ring 26 to deflate and cancel the interference state with the ring frame 3, so that the ring frame 3 can rotate subsequently without causing wear to the sealing ring 26. The first electromagnet 30 is de-energized and loses the adsorption of the squeezing block 28. At this time, the second spring 29 is restored and the squeezing block 28 is reset to squeeze the airbag 27, so that the air inside the airbag is pressed into the sealing ring 26, causing the sealing ring 26 to expand and then interfere with the ring frame 3.
[0048] like Figure 4 、 Figure 5As shown, the top of the circular shell 2 is provided with an arc surface, and the top of the ring frame 3 is provided with a rubber sheet 33. The rubber sheet 33 is ring-shaped, and the inner ring of the rubber sheet 33 is fixedly connected to the ring frame 3. The ring frame 3 is provided with a pulling component for driving the outer ring of the rubber sheet 33 to rise.
[0049] By pulling the outer ring of the rubber sheet 33 upward through the pulling assembly, the rubber sheet 33 becomes funnel-shaped, and the atomizing nozzle 18 is shielded by the funnel-shaped rubber sheet 33, thereby preventing insects from being thrown onto the atomizing nozzle 18 when the lens 4 rotates, affecting the subsequent use of the atomizing nozzle 18, and when the rubber sheet 33 is funnel-shaped, its inner side forms a continuous arc surface with the arc surface of the circular shell 2, so that when the insect is thrown away from the lens 4 and moves onto the rubber sheet 33, the arc surface formed can cooperate with the formed insect to guide the insect out of the circular shell 2, thereby preventing the insect from getting stuck inside the circular shell 2.
[0050] like Figure 5 As shown, the pulling assembly includes: a ring 34, a connecting rod, a magnet block 35, a third spring 36, a second electromagnet 37, a second controller 38, and a second battery 39;
[0051] The circular ring 34 is fixedly sleeved on the outer side of the rubber sheet 33, and the outer side of the circular ring 34 fits with the inner side of the circular shell 2. The end of the atomizing nozzle 18 does not exceed the inner side of the circular shell 2. A placement groove matching the circular ring 34 is opened at the top edge of the ring frame 3, and the circular ring 34 is located in the placement groove. The interior of the ring frame 3 is symmetrically provided with a placement cavity. The connecting rod is located in the placement cavity, one end of the connecting rod passes through the placement cavity and the placement groove and is fixedly connected to the circular ring 34, and the other end of the connecting rod is fixedly connected to the magnet block 35. The second electromagnet 37 is fixedly mounted on the bottom wall of the placement cavity. The direction of the magnetic pole generated by the second electromagnet 37 when energized is the same as the direction of the magnetic pole of the magnet block 35. The third spring 36 is sleeved outside the connecting rod. The second controller 38 and the second battery 39 are both fixedly mounted on the bottom of the ring frame 3. The second battery 39 supplies power to the second electromagnet 37, and the second controller 38 can control the power on and off of the second electromagnet 37.
[0052] The second controller 38 remotely controls the second electromagnet 37 to be energized to make it magnetic, so that the repelling magnet block 35 causes it to rise with the connecting rod and the ring 34, and the third spring 36 is compressed to deform it and generate a force. As the ring 34 rises, the outer ring with the rubber sheet 33 rises, making the rubber sheet 33 funnel-shaped. The second electromagnet 37 is de-energized, and the third spring 36 is reset, causing the magnet block 35, the connecting rod, and the ring 34 to descend and reset, so that the rubber sheet 33 is reset.
[0053] like Figure 4 and Figure 5 As shown, the first controller 31 and the second controller 38 are both remote controllers.
[0054] The remote control technology of the first controller 31 and the second controller 38 is the same as the remote control technology in the prior art, and the principles thereof are not described in detail here.
[0055] Working principle: When in use, light is emitted through the beam lamp 1, and the light is transmitted to the outside through the lens 4. Due to the phototaxis of insects, some insects will lie on the lens 4, which affects the propagation of light. At this time, the seal between the ring frame 3 and the round shell 2 is cancelled by the sealing component, and the output shaft of the motor 9 is controlled by the control component to reverse, so that the pawl 24 moves accordingly. The pawl 24 presses against the ratchet 20, and the L-shaped rod 19 rotates accordingly. After the L-shaped rod 19 contacts the pressure rod 22, the cooperation between the ratchet 20 and the pawl 24 makes the L-shaped rod 19 unable to deflect at this time, so that the L-shaped rod 19 cooperates with its side to squeeze the pressure rod 22, causing the piston plate 21 to descend, and at the same time compressing the first spring The spring 23 deforms it to generate a force. When the L-shaped rod 19 leaves the pressure rod 22, the first spring 23 releases its force and carries the pressure rod 22 and the piston plate 21 upward. When the piston plate 21 descends, the insecticide inside it is squeezed outward. At this time, the one-way valve 16 in the hard tube is closed, and the one-way valve 16 in the second pipe 15 is opened. The insecticide enters the annular cavity 17 through the second pipe 15, and is then atomized and sprayed to the outside world through the atomizing nozzle 18, so that the area where the lens 4 is located is disinfected by insects. When the piston plate 21 rises, the insecticide is drawn into the cylinder 11. At this time, the one-way valve 16 in the hard tube is opened, and the one-way valve 16 in the second pipe 15 is closed. The insecticide in the box 12 is drawn into the cylinder 11 through the first pipe 13 for replenishment. The continuous movement of the L-shaped rod 19 allows the insecticide to be continuously sprayed, thereby killing insects. The killed insects remain on the lens 4. At this time, the control component controls the output shaft of the motor 9 to rotate forward, causing the gear 10 to rotate. Similarly, the L-shaped rod 19 rotates accordingly. When the L-shaped rod 19 conflicts with the pressure rod 22, the rotation of the gear 10 causes the pawl 24 to move relative to the surface of the ratchet 20, so that the L-shaped rod 19 is stationary at this time, and the gear 10 can rotate normally, so that the pressure rod 22 is also stationary at this time, and then the piston plate 21 is stationary at this time, and no insecticide is sprayed. When the light is sprayed out, the output shaft of the motor 9 rotates forward, causing the gear 10 to rotate, thereby cooperating with the teeth 8 to drive the ring plate 5, the bolt 6, the ring frame 3, and the lens 4 to rotate rapidly. The centrifugal force generated causes the remaining insects to be eliminated to be thrown outward, so that the insects leave the lens 4, so that the insects will not block the lens 4 and affect its light transmission. In addition, by disinfecting the insects, it is possible to prevent the insects from returning to the lens 4 again. When the lens 4 rotates rapidly, part of the insecticide on the lens 4 will be dried to prevent the presence of insecticide liquid on the lens 4 from affecting the light transmission. After the lens 4 resumes normal use, the sealed component is reset to seal the ring frame 3 and the round shell 2 to prevent external water vapor from entering the beam lamp 1;
[0056] The second controller 38 remotely controls the second electromagnet 37 to be energized to make it magnetic, so that the repelling magnet block 35 causes it to rise with the connecting rod and the ring 34, and the third spring 36 is compressed to deform it to generate a force. As the ring 34 rises, the outer ring with the rubber sheet 33 rises, making the rubber sheet 33 funnel-shaped, and the atomizing nozzle 18 is blocked by the funnel-shaped rubber sheet 33, thereby preventing insects from being thrown onto the atomizing nozzle 18 when the lens 4 rotates, affecting the subsequent use of the atomizing nozzle 18, and when the rubber sheet 33 is funnel-shaped, its inner side forms a continuous arc surface with the arc surface of the circular shell 2, so that when the insect is thrown away from the lens 4 and moves onto the rubber sheet 33, the arc surface formed can guide the insect to leave the circular shell 2, preventing the insect from getting stuck inside the circular shell 2. After the end, the second electromagnet 37 is de-energized, the third spring 36 is reset, and the magnet block 35, the connecting rod, and the ring 34 are lowered and reset, so that the rubber sheet 33 is reset.
[0057] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.
Claims
1. A waterproof pattern beam light for outdoor use, comprising a beam light (1), characterized in that: A circular shell (2) is fixedly mounted on the beam lamp (1), a ring frame (3) is provided inside the circular shell (2), a lens (4) is provided inside the ring frame (3), a rotating assembly for driving the ring frame (3) to rotate is provided outside the ring frame (3), a sealing assembly is provided on the inner side of the circular shell (2) to seal the ring frame (3) and the circular shell (2), and a spraying assembly for spraying insecticide to the area where the lens (4) is located is provided on the circular shell (2); The rotating assembly comprises: a ring plate (5), a bolt (6), a bracket (7), teeth (8), a motor (9), a gear (10), and a control assembly for controlling the motor (9); The bracket (7) is fixedly mounted on the inner side of the circular shell (2). The bracket (7) is annular and has an opening at the bottom of the bracket (7). The ring plate (5) is rotatably mounted in the bracket (7). The ring frame (3) is connected to the ring plate (5) by bolts (6). The teeth (8) are equidistantly arranged around the bottom of the ring plate (5). The motor (9) is fixedly mounted on the circular shell (2). The output shaft of the motor (9) is fixedly connected to a gear (10), and the gear (10) is meshed with the teeth (8).
2. The outdoor waterproof pattern beam light according to claim 1, characterized in that: The control assembly comprises: a mounting plate, a first controller (31), and a first storage battery (32) for supplying power to the motor (9); The first controller (31) and the first storage battery (32) are fixedly mounted on a mounting plate, and the mounting plate is threadedly connected to the outside of the circular shell (2). The first controller (31) can control the rotation of the output shaft of the motor (9).
3. The outdoor waterproof pattern beam light according to claim 2, characterized in that: The spray assembly comprises: a cylinder (11), a box (12), a first pipe (13) connecting the cylinder (11) and the box (12), a counterweight (14), a second pipe (15), a one-way valve (16), an annular cavity (17) arranged inside the circular shell (2), an atomizing nozzle (18), a piston plate (21), a lifting assembly for driving the piston plate (21) to rise and fall, a liquid adding pipe, and a plug (40); The cylinder (11) and the box (12) are fixedly mounted on the inner side of the round shell (2). The first pipe (13) includes a first part and a second part. The first part is a hard pipe communicating with the cylinder (11), and the second part is a soft pipe communicating with the box (12). The hard pipe and the soft pipe are fixedly connected. There are two one-way valves (16), and the two one-way valves (16) are respectively arranged in the hard pipe and the second pipe (15). The counterweight (14) is fixedly sleeved outside the soft pipe. The liquid adding pipe One end of the liquid-adding pipe is connected to the box body (12), the other end of the liquid-adding pipe extends to the outside of the circular shell (2), the plug (40) is threadedly connected to the liquid-adding pipe, the piston plate (21) is arranged in the cylinder body (11), one end of the second pipe (15) is connected to the cylinder body (11), and the other end is connected to the annular cavity (17), the atomizing nozzle (18) is multiple and the multiple atomizing nozzles (18) are equidistantly arranged around the inner side of the circular shell (2), and one end of the atomizing nozzle (18) is connected to the annular cavity (17).
4. The outdoor waterproof pattern beam light according to claim 3, characterized in that: The lifting assembly comprises: an L-shaped rod (19), a ratchet (20), a pressure rod (22), a first spring (23), a pawl (24), a torsion spring (25), and a fixed shaft; A circular groove is provided in the middle of the inner side of the gear (10), one end of the L-shaped rod (19) is rotatably mounted in the circular groove, the ratchet (20) is fixedly sleeved on the outside of the L-shaped rod (19), the fixed shaft is fixedly mounted on the inner side of the gear (10), the pawl (24) is rotatably sleeved on the outside of the fixed shaft, the torsion spring (25) is sleeved outside the fixed shaft, the two ends of the torsion spring (25) are respectively fixedly connected to the fixed shaft and the pawl (24), the pressure rod (22) is fixedly mounted on the top of the piston plate (21), and the top end of the pressure rod (22) extends to the outside of the cylinder body (11), and the first spring (23) is sleeved outside the pressure rod (22).
5. The outdoor waterproof pattern beam light according to claim 4, characterized in that: The sealing component includes: a sealing ring (26), an air bag (27), an extrusion block (28), a second spring (29), and a first electromagnet (30); The sealing ring (26) is provided with a cavity inside, the inner side of the circular shell (2) is provided with a mounting groove matching the sealing ring (26), the sealing ring (26) is fixedly installed inside the mounting groove, one side of the sealing ring (26) contacts the ring frame (3), the outer side of the circular shell (2) is provided with a groove, the air bag (27) is fixedly installed in the groove, the air bag (27) is communicated with the inside of the sealing ring (26), the bottom wall of the groove is provided with a slide groove, the extrusion block (28) is slidably arranged in the slide groove, the second spring (29) is located in the slide groove, and its two ends are fixedly connected to the extrusion block (28) and the inner wall of the slide groove respectively, the first electromagnet (30) is fixedly installed outside the circular shell (2), the first controller (31) can control the first electromagnet (30) to be energized or de-energized, and the first battery (32) supplies power to the first electromagnet (30).
6. The outdoor waterproof pattern beam light according to claim 5, characterized in that: The top of the circular shell (2) is provided with an arc surface, the top of the ring frame (3) is provided with a rubber sheet (33), the rubber sheet (33) is annular in shape, the inner ring of the rubber sheet (33) is fixedly connected to the ring frame (3), and the ring frame (3) is provided with a pulling component for driving the outer ring of the rubber sheet (33) to rise.
7. The outdoor waterproof pattern beam light according to claim 6, characterized in that: The pulling assembly comprises: a ring (34), a connecting rod, a magnet block (35), a third spring (36), a second electromagnet (37), a second controller (38), and a second storage battery (39); The circular ring (34) is fixedly sleeved on the outside of the rubber sheet (33); a placement groove matching the circular ring (34) is provided at the top edge of the ring frame (3); the circular ring (34) is located in the placement groove; a placement cavity is symmetrically provided inside the ring frame (3); the connecting rod is located in the placement cavity; one end of the connecting rod passes through the placement cavity and the placement groove and is fixedly connected to the circular ring (34); the other end of the connecting rod is fixedly connected to the magnet block (35).
8. The outdoor waterproof pattern beam light according to claim 7, characterized in that: The second electromagnet (37) is fixedly mounted on the bottom wall of the placement chamber. The direction of the magnetic poles generated by the second electromagnet (37) when energized is the same as the direction of the magnetic poles of the magnet block (35). The third spring (36) is sleeved outside the connecting rod. The second controller (38) and the second battery (39) are both fixedly mounted on the bottom of the ring frame (3). The second battery (39) supplies power to the second electromagnet (37). The second controller (38) can control the power on and off of the second electromagnet (37).
Citation Information
Patent Citations
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