A windproof type outdoor solar energy lamp box

By using a wind detection and control system, the supporting structure and center of gravity of the solar light box are automatically adjusted, solving the problem of it being blown over by strong winds, achieving stability and automatic reset, and reducing losses and energy consumption.

CN120340378BActive Publication Date: 2025-11-18XIAMEN LUZ OPTO ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202510813442.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2025-11-18
Estimated Expiration
2045-06-18

AI Technical Summary

Technical Problem

Existing solar-powered light boxes are easily blown over by strong winds in coastal areas or typhoon-prone regions, resulting in damage and property loss.

Method used

A windproof outdoor solar light box was designed. It uses a wind detector and controller in conjunction with a wireless signal system to automatically adjust the position of the support base and rotating wheels, so that the light box tilts over and lowers the center of gravity in strong winds, reducing the contact area with the wind. It is equipped with a counterweight liquid system to automatically adjust the center of gravity and automatically reset when the wind force decreases.

Benefits of technology

It effectively reduces the risk of light boxes being blown over, lowers the risk of loss, and the automatic reset is convenient and quick, saving energy and protecting the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of outdoor lamp boxes, in particular to a windproof outdoor solar lamp box, which comprises a box body of a lamp box, a solar panel arranged on the box body, a windproof protection device arranged on the box body, a first wind force detector, a first controller, a support seat, a placing seat, a first wireless signal transmitter arranged in the lamp box, a rotating wheel abutting against the box body, a motor arranged on the support seat to drive a rotating shaft, a first wireless signal receiver arranged on the support seat, a second controller arranged on the support seat, when the first wind force detector detects a large wind force, the first controller controls the first wireless signal transmitter to emit a signal to the first wireless signal receiver, and the second controller controls the motor to work to move the support seat towards a side away from the placing seat, so that the lamp box is greatly reduced in hidden danger of being blown down by the wind, and the effect of effectively reducing property loss is achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of outdoor lamp boxes, in particular to a windproof outdoor solar lamp box. BACKGROUND

[0002] At present, most of the solar advertising lamp boxes on the market use solar panels, first controllers, lead-acid maintenance-free batteries and super-high brightness LED light sources as power supply systems and light sources. The solar power supply system converts and stores electric energy during the day and emits light at night. It not only saves electricity and is environmentally friendly, but also plays the role of advertising media and beautifying the environment.

[0003] However, the current solar lamp box still has some problems, such as when used in Guangdong and Guangxi or coastal areas, due to the influence of typhoons in these coastal areas, the wind is too strong, which is easy to blow down the lamp box, causing damage to the lamp box and the solar panel on the lamp box, resulting in property loss defects.

[0004] Based on this, the present application designs a windproof outdoor solar lamp box to solve the above problems. SUMMARY

[0005] To achieve the above purpose, the present application provides the following technical scheme: a windproof outdoor solar lamp box, comprising a lamp box body, a solar panel arranged on the lamp box body, a wind protection device arranged on the lamp box body, the wind protection device comprising a first wind power detector, a first controller, a support seat, a placing seat, a fixed plate fixedly arranged on the placing seat, the lamp box body being rotatably arranged on the fixed plate, the center of gravity of the lamp box body being close to one side of the support seat, a support plate fixedly arranged on the fixed plate, the support plate supporting the lamp box body, a first wireless signal transmitter arranged in the lamp box, the first wind power detector and the first wireless signal transmitter being electrically connected with the first controller, a lifting plate arranged on the support seat, a rotating wheel arranged on the lifting plate, the rotating wheel abutting against the lamp box body, a drive shaft rotatably arranged on the support seat, a moving wheel coaxially and fixedly arranged on the drive shaft, a motor arranged on the support seat and driving the drive shaft to rotate, a first wireless signal receiver arranged on the support seat and matched with the first wireless signal transmitter, a second controller arranged on the support seat, the second controller being electrically connected with the first wireless signal receiver and the motor, when the first wind power detector detects a large wind power, the first controller controls the first wireless signal transmitter to transmit a signal to the first wireless signal receiver, the second controller controls the motor to work and moves the support seat away from the placing seat, at this time, the rotating wheel is located below the lamp box body.

[0006] By adopting the above technical scheme, when strong wind weather is encountered, at this time the first wind force detector detects excessive wind force, the first controller controls the first wireless signal transmitter to transmit signals according to the signals transmitted by the first wind force detector, after the first wireless signal receiver receives the signals, the second controller controls the motor to work, so that the support base moves away from the placing base, the box body is rotated towards the support base after the moving wheel moves, until the box body is laid down, the area of contact with the strong wind is greatly reduced, the center of gravity of the box body is lowered, the stability of the box body is improved, the hidden danger of being blown down by the wind is greatly reduced, and the effect of effectively reducing the property loss is achieved.

[0007] Preferably, a lifting hole is vertically arranged on the support base, a lifting plate is arranged in the lifting hole, the rotating wheel is arranged on the lifting plate, a connecting hole is vertically arranged on the lifting plate, the connecting hole is a threaded hole, an installation plate is fixedly arranged on the lower side of the support base, a rotating rod is rotatably arranged on the installation plate, and the rotating rod is threadedly connected in the connecting hole; a worm is fixedly connected coaxially on the driving shaft, a turbine meshing with the worm is fixedly arranged coaxially on the rotating rod, and the lifting plate is lowered when the support base moves away from the placing base.

[0008] By adopting the above technical scheme, when the support base moves, the rotating wheel is lowered, so that the box body is always attached to the rotating wheel, the damage of the box body is reduced.

[0009] Preferably, a counterweight plate is fixedly arranged in the box body, a counterweight cavity is arranged in the counterweight plate, a partition plate and a guide plate are fixedly arranged in the counterweight cavity, the side wall of the guide plate, the partition plate and the counterweight plate surrounds a partial weight cavity, and the partial weight cavity is filled with a counterweight liquid; when the box body is erected, the center of gravity of the counterweight plate is close to the side of the support base.

[0010] By adopting the above technical scheme, the counterweight liquid is arranged in the partial weight cavity, so that the center of gravity of the box body is further deviated to the side of the support base, and the box body is more fully rotated when the support base is moved away.

[0011] Preferably, the placing base is provided with a second wireless signal receiver, a second wind force detector, a third controller, a second wireless signal transmitter matched with the first wireless signal receiver, the second wind force detector is electrically connected with the controller, the second wireless signal transmitter and the second wireless signal receiver are respectively electrically connected with the controller, when the second wind force detector detects that the wind force is lower than the set value, at this time the third controller controls the second wireless signal transmitter to transmit signals, after the first wireless signal receiver receives the signals transmitted by the second wireless signal transmitter, the second controller controls the motor to work, at this time the moving wheel moves towards the placing base.

[0012] By adopting the technical scheme, when the second wind force detector detects that the wind force becomes small, the third controller controls the second wireless signal transmitter to transmit a signal to the first wireless signal receiver, and the second controller controls the motor to work, so that the supporting base moves towards the placing base side, and the rotating wheel slowly rises upwards to lift the box body until the box body stands up and is manually lifted, thereby achieving the effect of conveniently standing up the box body.

[0013] Preferably, a drainage plate is fixedly arranged in the counterweight cavity, the drainage plate is fixedly connected to the partition plate, a containing cavity is surrounded by the drainage plate, the partition plate and the sidewall of the counterweight plate, a water pump is fixedly arranged in the counterweight cavity, the water suction end of the water pump is located in the counterweight cavity, and the water outlet end is located in the containing cavity; a touch switch is arranged on the sidewall of the box body, the first controller is electrically connected to the water pump and the touch switch; when the box body is laid down, the rotating wheel abuts against the touch switch, at this time, the first controller detects the signal on the touch switch and controls the water pump to work for a certain time, so that the water pump transports the water in the counterweight cavity to the containing cavity.

[0014] By adopting the technical scheme, when the box body is laid down, the rotating wheel contacts the touch switch to transport the water in the counterweight cavity to the containing cavity, and when the rotating wheel lifts the box body, the center of gravity of the box body gradually approaches the placing base side, thereby avoiding the center of gravity of the box body from being excessively deviated to the supporting base side and reducing the burden of the motor.

[0015] Preferably, a contact block is fixedly arranged on the supporting plate, a contact rod is movably arranged on the guide plate, a communication hole is formed in the partition plate, a moving rod is inserted into the communication hole, the moving rod is smaller than the communication hole, a flow blocking cover is fixedly arranged on the moving rod and covers the communication hole, the contact rod is fixedly connected to the moving rod, a baffle is fixedly arranged on the contact rod, the baffle is arranged obliquely, a telescopic spring is sleeved on the contact rod and located between the baffle and the partition plate, the telescopic spring abuts against the baffle to make the flow blocking cover cover the communication hole, and when the box body stands up, the contact block abuts against the contact rod, and the flow blocking cover is separated from the partition plate.

[0016] By adopting the technical scheme, when the lower side of the box body contacts the supporting plate after standing up, the contact block abuts against the contact rod, the contact rod moves upwards, the flow blocking cover is no longer covered on the communication hole, the counterweight liquid flows into the counterweight cavity through the communication hole, and the center of gravity of the box body is adjusted to approach the supporting base side again, thereby achieving the effect of automatically adjusting the center of gravity of the box body.

[0017] Preferably, a telescopic rod is arranged between the placing base and the supporting base.

[0018] By adopting the above technical solution, the telescopic rod can reduce the swaying of the support base and stabilize its movement when the support base moves.

[0019] Preferably, when the rotating wheel contacts the tactile switch, the first controller controls the battery to stop supplying power to the light strip.

[0020] By adopting the above technical solution, the light strips are prevented from continuing to illuminate during windy weather, thus reducing power consumption.

[0021] Preferably, a second wireless signal receiver is provided on the placement base. The second wireless signal receiver is electrically connected to the third controller. When the rotating wheel contacts the tactile switch, the first controller controls the first wireless signal transmitter to transmit a signal to the first wireless signal receiver, so that the second controller controls the motor to stop working for half an hour. At the same time, the first controller controls the first wireless signal transmitter to transmit a signal to the second wireless signal receiver, so that the third controller controls the second wind detector to detect the wind force again after half an hour.

[0022] By adopting the above technical solution, the motor can wait half an hour before starting during periods of strong winds, which can prevent the enclosure from rising directly after being laid down, effectively protecting the enclosure.

[0023] Preferably, if the second wind detector detects excessive wind force after half an hour, the third controller controls the second wind detector to detect wind force again after half an hour, and so on in a cycle; when the wind force is normal, the third controller sends a signal to the wireless signal receiver through the second wireless signal transmitter, so that the second controller controls the motor to work.

[0024] By adopting the above technical solution, the second wind detector checks every half hour to ensure that the wind force is below the specified value after a strong wind, thus ensuring that the container can be raised when the wind force is low, and further reducing the damage to the container.

[0025] In summary, this application has the following beneficial technical effects: 1. When encountering strong winds, the container will automatically tilt down, greatly reducing the area in contact with the wind and lowering the center of gravity of the container, thus improving the stability of the container and greatly reducing the risk of being blown over by the wind, thereby effectively reducing property damage.

[0026] After the second wind detector detects that the wind force has decreased, it controls the second wireless signal transmitter to transmit a signal to the first wireless signal receiver through the third controller. The second controller controls the motor to work, so that the support base moves toward the side of the placement base, and at the same time the rotating wheel slowly rises up to lift the box until the box is upright. No manual support is required, which achieves the effect of conveniently standing the box upright.

[0027] During periods of sustained high winds, the motor waits half an hour before starting to operate, preventing the enclosure from rising immediately after being laid down and effectively protecting it. A second wind detector checks every half hour to ensure that the wind speed is below a specified value after the high winds subside, thus ensuring that the enclosure rises when the wind is weaker and further reducing the risk of damage to the enclosure. Attached Figure Description

[0028] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0029] Figure 1 This is a schematic diagram of the structure of the light box when it is erected in this embodiment;

[0030] Figure 2 This is a schematic diagram of the structure of the light box when it is laid down in this embodiment;

[0031] Figure 3 This is a schematic diagram of the internal structure of the light box in this embodiment;

[0032] Figure 4 This is a schematic diagram of the mounting structure of the rotating shaft in this embodiment;

[0033] Figure 5 This is a schematic diagram of the support base in this embodiment;

[0034] Figure 6 This is a schematic diagram of the drive shaft mounting structure in this embodiment;

[0035] Figure 7 This is a schematic diagram of the installation structure of the lifting plate in this embodiment;

[0036] Figure 8 This is a schematic diagram of the internal structure of the counterweight plate in this embodiment;

[0037] Figure 9 This is a schematic diagram of the structure of the contact block contacting the contact rod in this embodiment;

[0038] Figure 10 This is a schematic diagram of the structure of the placement base in this embodiment;

[0039] Figure 11 This is a schematic diagram of the control flow of the wind protection device in this embodiment.

[0040] The attached diagram lists the components represented by each number as follows:

[0041] 1. Housing; 2. Solar panel; 3. Advertising panel; 4. Counterweight plate; 5. Light strip; 6. Battery; 7. First wind detector; 8. First controller; 9. Support base; 10. Placement base; 11. Telescopic rod; 12. Pulley; 13. First wireless signal transmitter; 14. Fixing plate; 15. Rotating shaft; 16. Support plate; 17. Lifting hole; 18. Lifting plate; 19. Rotating wheel; 20. Connecting hole; 21. Mounting plate; 22. Rotating rod; 23. Vertical plate; 24. Drive shaft; 25. Moving wheel; 26. Worm gear; 27. Turbine; 28. Motor 29. First wireless signal receiver; 30. Second controller; 31. Counterweight chamber; 32. Partition plate; 33. Guide plate; 34. Offset chamber; 35. Counterweight liquid; 36. Second wind force detector; 37. Third controller; 38. Second wireless signal transmitter; 39. Receiving chamber; 40. Tactile switch; 41. Abutment block; 42. Abutment rod; 43. Clearance hole; 44. Connecting hole; 45. Moving rod; 46. Baffle cover; 47. Baffle plate; 48. Telescopic spring; 49. Second wireless signal receiver; 50. Water pump; 51. Protective cover; 52. Drainage plate. Detailed Implementation

[0042] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0043] The following is in conjunction with the appendix Figures 1-11 This application will be described in further detail.

[0044] Reference Figures 1-3 A windproof outdoor solar light box includes a box body 1, a solar panel 2 mounted on the box body 1, advertising panels 3 mounted on the two larger side walls of the box body 1, and solar panels 2 mounted on the two smaller side walls of the box body 1. A counterweight plate 4 is fixedly mounted in the box body 1, and light strips 5 are fixedly mounted on the counterweight plate 4. A storage battery 6 and a solar converter (not shown in the figure) are fixedly mounted in the box body 1. The solar converter converts solar energy into electrical energy and stores it in the storage battery 6. The storage battery 6 supplies power to the light strips 5.

[0045] Reference Figures 1-3The housing 1 is equipped with a windproof protection device, which includes a first wind detector 7, a first controller 8, a support base 9, and a placement base 10. The light box is located between the support base 9 and the placement base 10. A telescopic rod 11 connects the placement base 10 and the support base 9. The support base 9 is equipped with multiple pulleys 12, which support the support base 9 and facilitate its movement.

[0046] Reference Figures 1-4 The first wind detector 7 and the first controller 8 are respectively fixedly mounted on the housing 1. The first wind detector 7 is a common three-cup anemometer. The first wind detector 7 is electrically connected to the first controller 8. The light box is equipped with a first wireless signal transmitter 13, which is electrically connected to the first controller 8. The battery 6 powers the first wind detector 7, the first controller 8, and the first wireless signal transmitter 13. A fixing plate 14 is fixedly mounted on the placement base 10. A rotating shaft 15 is rotatably mounted on the fixing plate 14. The light box is fixedly connected to the rotating shaft 15. The rotating shaft 15 is close to the placement base 10, so that the center of gravity of the light box is close to the support base 9. A support plate 16 is fixedly mounted on the fixing plate 14 and abuts against the lower surface of the light box.

[0047] Reference Figures 5-7 The support base 9 has a vertically opening lifting hole 17, a lifting plate 18 is provided in the lifting hole 17, a rotating wheel 19 is rotatably provided on the lifting plate 18, and a vertically opening connecting hole 20 is provided on the lifting plate 18. The connecting hole 20 is a threaded hole. An mounting plate 21 is fixedly provided on the lower side of the support base 9. A rotating rod 22 is rotatably provided on the mounting plate 21. The rotating rod 22 is threadedly connected to the connecting hole 20, and the part of the rotating rod 22 located in the connecting hole 20 is provided with a thread. A vertical plate 23 is fixedly provided on the support base 9. A drive shaft 24 is rotatably provided on the vertical plate 23. A movable wheel 25 is coaxially fixedly provided on the drive shaft 24. Two movable wheels 25 are provided. A worm gear 26 is coaxially fixedly connected to the drive shaft 24. A turbine 27 that meshes with the worm gear 26 is coaxially fixedly provided on the rotating rod 22.

[0048] Reference Figures 3-7The support base 9 is equipped with a motor 28 that drives the drive shaft 24 to rotate. The motor 28 is a servo motor 28. The support base 9 is also equipped with a first wireless signal receiver 29 that is compatible with the first wireless signal transmitter 13. The support base 9 is also equipped with a second controller 30, which is electrically connected to the first wireless signal receiver 29 and the motor 28. The support base 9 is also equipped with a battery 6, which supplies power to the servo motor 28, the first wireless signal receiver 29, and the controller. The support base 9 has a placement slot in which the first wireless signal receiver, the second controller 30, and the battery 6 are placed.

[0049] Reference Figures 6-9 The counterweight plate 4 has a counterweight cavity 31, and a partition plate 32 and a guide plate 33 are fixedly installed in the counterweight cavity 31. The guide plate 33, the partition plate 32, and the side wall of the counterweight plate 4 form an eccentric cavity 34, which is filled with counterweight liquid 35. In this embodiment, the counterweight liquid 35 is water, so that the center of gravity of the entire counterweight plate 4 is close to the support base 9.

[0050] Reference Figures 1-9 The first wind detector 7 detects the wind force in the outside in real time. Under normal circumstances, when no excessive wind force is detected, the light box is in a vertical position. At the same time, the support plate 16 supports the bottom of the light box, and the rotating wheel 19 abuts against the side wall of the light box near the support base 9. The light box is fixed by the support plate 16 and the rotating wheel 19, so that the light box remains in a vertical position.

[0051] Reference Figures 1-9 When the detected wind force is too strong, the controller controls the first wireless signal transmitter 13 to transmit a signal to the first wireless signal receiver 29. After the first wireless signal receiver 29 receives the signal, the second controller 30 controls the motor 28 to work, causing the drive shaft 24 to rotate, thereby driving the moving wheel 25 to move away from the light box. At the same time, when the drive shaft 24 rotates, it drives the worm gear 26 to rotate, which in turn drives the turbine 27 to rotate synchronously, causing the lifting plate 18 to move downward. The rotating wheel 19 moves slowly downward while moving away from the light box. Since the center of gravity of the counterweight plate 4 is close to the support base 9, and the rotating shaft 15 is close to the placement base 10, the light box rotates towards the support base 9 when the rotating wheel 19 moves.

[0052] Reference Figures 1-9As the support base 9 moves continuously, the light box slowly descends. The second controller 30 controls the motor 28, causing the drive shaft 24 to rotate a specified number of times. At this point, the support base 9 moves to its maximum distance, and the rotating wheel 19 is located below the light box. The light box is lower than the horizontal level and is in an inclined state. When in contact with strong winds, the box 1 placed on the rotating wheel 19 can reduce the area in contact with the wind, thereby avoiding the impact of strong winds on a large area of ​​the box 1 when the light box is upright. This greatly improves the stability of the box 1, greatly reduces the risk of being blown over by the wind, and effectively reduces property damage.

[0053] Reference Figures 1-10 The placement base 10 is equipped with a second wireless signal receiver 49, a second wind detector 36, a third controller 37, and a second wireless signal transmitter 38 adapted to the first wireless signal receiver 29. The second wind detector 36 is electrically connected to the controller, and the second wireless signal transmitter 38 and the second wireless signal receiver 49 are respectively electrically connected to the controller. The placement base 10 is also equipped with a storage battery 6, which powers the above electronic components. When the second wind detector 36 detects that the wind force is lower than the set value, the third controller 37 controls the second wireless signal transmitter 38 to transmit a signal. After the first wireless signal receiver 29 receives the signal transmitted by the second wireless signal transmitter 38, the second controller 30 controls the motor 28 to work, causing the drive shaft 24 to reverse. At this time, the moving wheel 25 moves toward the side of the placement base 10, and the rotating rod 22 rotates under the drive of the worm gear 26 of the turbine 27, causing the lifting plate 18 to rise. The rotating wheel 19 pushes the box 1 upward and moves toward the side of the placement base 10.

[0054] Reference Figures 1-10 As the support base 9 moves continuously, the light box slowly stands up. The second controller 30 controls the motor 28, causing the drive shaft 24 to rotate a specified number of times. Then, the support base 9 resets. At this time, the lower side of the housing 1 contacts the support plate 16, and the rotating wheel 19 presses against the side wall of the housing 1 again, making the housing 1 stand upright and start working again. The process is quick and simple, and there is no need for staff to lift the light box, achieving the effect of convenient light box reset.

[0055] Reference Figures 1-10 It should be noted that the housing 1 in this embodiment is hollow and lightweight. In addition, according to actual needs, multiple motors 28 can be set on the support base 9 to provide more powerful power to the drive shaft 24 to ensure the movement of the support base 9 and the lifting plate 18.

[0056] Reference Figures 3-9A diversion plate 52 is fixedly installed in the counterweight cavity 31. The diversion plate 52 is fixedly connected to the partition plate 32. The diversion plate 52, the partition plate 32, and the side walls of the counterweight plate 4 form a receiving cavity 39. A water pump 50 is fixedly installed in the counterweight cavity 31. One end of the water pump 50 is located in the offset cavity 34, and the outlet end is located in the receiving cavity 39. A tactile switch 40 is installed on the side wall of the box body 1. The first controller 8 is electrically connected to the water pump 50. The battery 6 supplies power to the tactile switch 40 and the water pump 50. When the box body 1 is tilted due to excessive wind, the rotating wheel 19 abuts against the tactile switch 40. At this time, the first controller 8 detects the signal on the tactile switch 40 and controls the water pump 50 to work for a certain period of time, so that the water pump 50 delivers water from the offset cavity 34 to the receiving cavity 39.

[0057] Reference Figures 2-9 When the box 1 rotates toward the placement seat 10, the receiving cavity 39 is provided with counterweight liquid 35, which makes the center of gravity of the light box constantly change. When the box 1 is about to contact the support plate 16, the center of the box 1 is brought closer to the rotating shaft 15, so that the box 1 returns to its original position more fully and avoids the center of gravity of the box 1 from being excessively biased toward the support seat 9, thus reducing the burden on the motor 28.

[0058] Reference Figures 3-9 A contact block 41 is fixedly installed on the support plate 16, and a contact rod 42 is movably installed on the guide plate 33. A clearance hole 43 is provided on the housing 1, and one end of the contact rod 42 is located in the clearance hole 43. A connecting hole 44 is provided on the partition plate 32, and a moving rod 45 is inserted into the connecting hole 44. The moving rod 45 is smaller than the connecting hole 44, and a baffle 46 is fixedly installed on the moving rod 45. The contact rod 42 is fixedly connected to the moving rod 45, and a baffle 47 is fixedly installed on the contact rod 42. The baffle 47 is inclined, and a telescopic spring 48 is sleeved on the contact rod 42. The telescopic spring 48 is located between the baffle 47 and the partition plate 32, and the telescopic spring 48 abuts against the baffle 47 so that the baffle 46 covers the connecting hole 20.

[0059] Reference Figures 3-9 When the support plate 16 supports the box 1, the contact block 41 abuts against the contact rod 42. The contact rod 42 moves upward, causing the moving rod 45 to move upward, so that the baffle cover 46 is no longer in contact with the partition plate 32 and the baffle cover 46 is no longer covering the connection hole 20. At this time, the counterweight liquid 35 in the receiving cavity 39 flows from the connection hole 20 to the bias cavity 34, so that the box 1 returns to the state where the center of gravity is closer to the support base 9, thus achieving the effect of automatically adjusting the center of gravity of the box 1.

[0060] Reference Figures 3-9A telescopic rod 11 is provided between the placement base 10 and the support base 9. The placement base 10 has a clearance groove, and the telescopic rod 11 is positioned within the clearance groove, providing sufficient extension and retraction space. This reduces the offset trajectory of the support base 9 when it moves, allowing for more stable movement. Solar panels 2 are also installed on both the support base 9 and the placement base 10, operating on the same principle as the solar panels on the light box, which will not be elaborated upon here. A protective cover 51 is provided on the support base 9, which covers the placement groove to protect the internal electronic components.

[0061] Reference Figures 1-11 When the wind force is too strong, both the first wind force detector 7 and the second wind force detector 36 will detect the wind force. The second wind force detector 36 will detect the excessive wind force and will not send a signal to the third controller 37. After the box 1 is laid down, both the first wind force detector 7 and the second wind force detector 36 will detect the wind force. When the wind force decreases, the first wind force detector 7 will not detect the excessive wind force and will not send a signal to the first controller 8.

[0062] Reference Figures 1-11 When the first controller 8 receives the signal from the touch switch 40, the first controller 8 controls the first wireless signal transmitter 13 to transmit a signal to the first wireless signal receiver 29, so that the second controller 30 controls the motor 28 again, so that the motor 28 stops working for half an hour. At the same time, the first controller 8 also controls the first wireless signal transmitter to transmit a signal to the second wireless signal receiver 49, so that the third controller 37 controls the second wind detector 36 to detect the wind force again after half an hour.

[0063] Reference Figures 1-11 Half an hour later, the second wind detector 36 detects the wind force. If the wind force detected by the second wind detector 36 is too strong, the second wind detector 36 will detect the wind force again after half an hour until the wind force detected by the second wind detector is normal. After the normal wind force is detected, the third controller 37 controls the second wireless signal transmitter 38 to transmit a signal to the first wireless signal receiver, so that the second controller 30 controls the motor 28 to work.

[0064] Reference Figures 1-11 Figures 1-11 At the same time, when the first controller 8 receives the signal from the tactile switch 40, the first controller 8 also controls the battery 6 to stop supplying power to the light strip 5, so as to save the energy in the battery 6.

[0065] The implementation principle of this embodiment is as follows: When the detected wind force is too strong, the controller controls the first wireless signal transmitter 13 to transmit a signal to the first wireless signal receiver 29. After the first wireless signal receiver 29 receives the signal, the second controller 30 controls the motor 28 to work, causing the drive shaft 24 to rotate, and the rotating wheel 19 to move slowly downwards while moving away from the light box. Since the center of gravity of the counterweight plate 4 is close to the support base 9, and the rotating shaft 15 is close to the placement base 10, when the rotating wheel 19 moves, the light box rotates towards the support base 9. The light box slowly moves downwards. After the support base 9 moves to the maximum distance, the rotating wheel 19 is located below the light box. The light box is lower than the horizontal level and is in an inclined state. When in contact with strong winds, the box 1 placed on the rotating wheel 19 can reduce the area in contact with the strong winds, thereby avoiding the impact of strong winds on a large area of ​​the box 1 when the light box is upright. This greatly improves the stability of the box 1, greatly reduces the risk of being blown over by the wind, and effectively reduces property damage.

[0066] During reset, the second controller 30 controls the motor 28 to work, causing the support base 9 to move continuously toward the placement base 10. At this time, the light box slowly stands up until the lower side of the box body 1 contacts the support plate 16. At the same time, the rotating wheel 19 presses against the side wall of the box body 1 again, making the box body 1 stand upright and start working again. The process is quick and simple, and there is no need for staff to lift the light box, which achieves the effect of convenient light box reset.

[0067] In the description of this invention, it should be understood that the terms "coaxial," "bottom," "one end," "top," "middle," "other end," "upper," "side," "top," "inner," "front," "center," "both ends," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this invention.

[0068] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "setting," "connection," "fixing," "screw connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0069] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A windproof outdoor solar light box, comprising a box body and a solar panel mounted on the box body, characterized in that: The enclosure is equipped with a windproof protection device, which includes a first wind detector, a first controller, a support base, and a placement base. A fixing plate is fixedly mounted on the placement base, and the enclosure is rotatably mounted on the fixing plate. The center of gravity of the enclosure is closer to the support base. A support plate is fixedly mounted on the fixing plate, and the support plate supports the enclosure. A first wireless signal transmitter is installed inside the light box. The first wind detector and the first wireless signal transmitter are electrically connected to the first controller. A rotating wheel is installed on the support base, and the rotating wheel abuts against the enclosure. A drive shaft is rotatably mounted on the support base, and a movable wheel is coaxially fixed on the drive shaft. A drive mechanism is installed on the support base. A motor rotates on the shaft. A first wireless signal receiver, adapted to a first wireless signal transmitter, is mounted on the support base. A second controller is mounted on the support base, electrically connected to both the first wireless signal receiver and the motor. When the first wind detector detects a strong wind, the first controller controls the first wireless signal transmitter to transmit a signal to the first wireless signal receiver. The second controller controls the motor to move the support base away from the placement seat. Simultaneously, the rotating wheel slowly moves downwards and away from the light box, causing the light box to rotate towards the support base and slowly descend. At this time, the rotating wheel is located on the lower side of the light box. A lifting mechanism is vertically provided on the support base. A lifting plate is provided in the lifting hole, and a rotating wheel is mounted on the lifting plate. A threaded connection hole is vertically formed on the lifting plate. A mounting plate is fixedly mounted on the lower side of the support base, and a rotating rod is rotatably mounted on the mounting plate, threaded into the connection hole. A worm gear is coaxially fixedly connected to the drive shaft, and a turbine gear meshing with the worm gear is coaxially fixedly mounted on the rotating rod. When the support base moves away from the placement seat, the lifting plate descends. A counterweight plate is fixedly mounted in the housing, and a counterweight cavity is formed in the counterweight cavity. A partition and a guide plate are fixedly mounted in the counterweight cavity. The guide plate, partition, and sidewalls of the counterweight plate form an eccentric cavity. The box is filled with counterweight liquid. When the box is upright, the center of gravity of the counterweight plate is close to the support base. A diversion plate is fixedly installed in the counterweight cavity and is fixedly connected to the partition. The diversion plate, the partition, and the side wall of the counterweight plate form a receiving cavity. A water pump is fixedly installed in the counterweight cavity. The water pump's suction end is located in the offset cavity, and the water outlet end is located in the receiving cavity. A tactile switch is installed on the side wall of the box. The first controller is electrically connected to the water pump and the tactile switch. When the box is laid down, the rotating wheel abuts against the tactile switch. At this time, the first controller detects the signal on the tactile switch and controls the water pump to work, so that the water pump delivers water from the offset cavity to the receiving cavity.

2. The windproof outdoor solar light box according to claim 1, characterized in that: The placement base is equipped with a second wireless signal receiver, a second wind force detector, a third controller, and a second wireless signal transmitter adapted to the first wireless signal receiver. The second wind force detector is electrically connected to the controller, and the second wireless signal transmitter and the second wireless signal receiver are respectively electrically connected to the third controller. When the second wind force detector detects that the wind force is lower than the set value, the third controller controls the second wireless signal transmitter to transmit a signal. After the first wireless signal receiver receives the signal transmitted by the second wireless signal transmitter, the second controller controls the motor to work, and at this time the moving wheel moves towards one side of the placement base.

3. The windproof outdoor solar light box according to claim 1, characterized in that: A telescopic rod is provided between the placement seat and the support seat.

4. The windproof outdoor solar light box according to claim 1, characterized in that: When the rotating wheel contacts the tactile switch, the first controller controls the battery to stop supplying power to the light strip.

5. A windproof outdoor solar light box according to claim 1, characterized in that: When the rotating wheel contacts the tactile switch, the first controller controls the first wireless signal transmitter to transmit a signal to the first wireless signal receiver, causing the second controller to control the motor to stop working for half an hour; at the same time, the first controller controls the first wireless signal transmitter to transmit a signal to the second wireless signal receiver, causing the third controller to control the second wind detector to detect wind force again after half an hour.

6. A windproof outdoor solar light box according to claim 5, characterized in that: If the second wind detector detects excessive wind force after half an hour, the third controller controls the second wind detector to detect wind force again after half an hour, and so on in a cycle; when the wind force is normal, the third controller sends a signal to the wireless signal receiver through the second wireless signal transmitter, so that the second controller controls the motor to work.

Citation Information

Patent Citations

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