A strong light and sound bird repeller

Through the combination of structures such as protective cover, rotating rope and spike block, the problem of damage to the bird repellent by large birds is solved, effective driving and life extension is achieved, and solar energy absorption efficiency is improved.

CN117256599BActive Publication Date: 2025-07-25SHANGHE COUNTY POWER SUPPLY CO STATE GRID SHANDONG ELECTRIC POWER CO
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Patent Information

Application Number
CN202311471286.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-07
Publication Date
2025-07-25
Estimated Expiration
2043-11-07

AI Technical Summary

Technical Problem

The existing bird repellers have no significant effect on large birds, and are susceptible to harsh climates and bird damage, resulting in damage to the device and short service life.

Method used

The strong-photoacoustic bird repeller is adopted, combined with protective cover, rope, spike block and No. 1 drive assembly, and uses LED lights and microwave sensors to drive away birds, and prevent bird damage through rope and spike blocks, optimizing the structure of the bird repeller to extend the service life.

Benefits of technology

Effectively drive away large birds, avoiding the device from being affected by wind, rain and strong photoacoustic waves, extending its service life and improving the efficiency of light absorption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of bird repellers, and specifically relates to a strong light and sound wave bird repeller, which includes a body. An acoustic wave device is installed inside the body, and further includes: a solar panel fixedly installed on the upper surface of the body; a plurality of lighting devices fixedly installed on the surface of the body; a protection part, the protection part includes a plurality of support frames, a protective cover and two fixed seats. The two fixed seats are symmetrically installed on both sides of the body. Both ends of the plurality of support frames are rotatably connected to the two fixed seats respectively, and the protective cover is fixedly installed on the support frames. By setting the protective cover, the problem that the bird repeller is affected by wind and rain is avoided, and at the same time, the problem that large birds not affected by strong light and sound waves damage the bird repeller is also avoided, thereby prolonging the service life of the device.
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Description

Technical Field

[0001] The present invention belongs to the field of bird repellers, and specifically relates to a strong light and sound wave bird repeller. Background Art

[0002] Currently, the transmission ranges of many power equipment lines are extremely wide. Many power equipment lines are usually installed in remote mountains and forests where few people go. Many birds rest on power equipment lines, which can easily cause damage to electrical equipment lines and lead to serious power accidents. By installing bird repeller products, it is possible to effectively prevent birds from damaging power equipment lines and at the same time protect birds from being harmed by strong electricity.

[0003] A patent application with the publication number CN105815306A discloses a bird repeller, which includes a bird repeller component, a conductor cross arm, and a solar panel. The solar panel and the bird repeller component are installed on the conductor cross arm, and the bird repeller component is connected to the solar panel. The bird repeller component includes an ultrasonic bird repelling module to achieve ultrasonic bird repelling, and also includes a swinging mechanism and a rotating mechanism. Both the swinging mechanism and the rotating mechanism use eccentric wheel mechanisms to achieve 360-degree rotation of the bird repeller component.

[0004] In the actual use process, some birds, especially large birds, have strong adaptability to bird repellers. Ordinary bird repellers have little effect on these large birds. Factors such as bad weather and bird beak tearing can also cause damage to the bird repeller. The above solution does not take measures to solve such problems.

[0005] Therefore, the present invention provides a strong light and sound wave bird repeller. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art and solve at least one technical problem mentioned in the background art.

[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: A strong light and sound wave bird repeller of the present invention includes a body, and a sound wave device is installed inside the body. It further includes:

[0008] A solar panel fixedly installed on the upper surface of the body;

[0009] A light-emitting device fixedly installed on the surface of the body;

[0010] A protection part, the protection part includes several support frames, a protective cover, and two fixed seats. The two fixed seats are symmetrically installed on both sides of the body. The two ends of several support frames are respectively rotatably connected to the two fixed seats, and the protective cover is fixedly installed on the support frames.

[0011] Specifically, the lighting device uses an LED lamp. A microwave sensor is installed on the bird repeller. The protective cover is made of a light-transmitting film material. In the initial state, the support frame is in a retracted state. After installing the bird repeller at the designated position, the protective cover is activated, and the support frame rotates until the protective cover completely covers the main body of the bird repeller. When the bird repeller senses that there are birds approaching nearby, the bird repeller emits sound waves and strong light to drive away the birds. By setting the protective cover, the problem of the bird repeller being exposed to wind, rain, etc. is avoided, and at the same time, the problem of large birds that are not affected by strong light and sound waves damaging the bird repeller is also avoided, extending the service life of the device.

[0012] Preferably, the protection part further includes:

[0013] A cylinder rotatably connected to the topmost support frame, and the cylinder is located outside the protective cover;

[0014] A rotating rope for driving away birds, and the rotating rope is installed on the cylinder.

[0015] Specifically, when the microwave sensor senses that the birds are approaching further, the cylinder is rotated to drive the rotating rope to rotate, so as to drive away the large birds, improving the problem that the large birds tear the protective cover and damage the protective cover, and extending the service life of the device.

[0016] Preferably, the protection part further includes:

[0017] A plurality of grooves formed in the rotating rope;

[0018] A plurality of spiked blocks installed in the grooves.

[0019] Specifically, the spiked blocks are made of metal. By setting the spiked blocks, the effect of the rotating rope in driving away large birds is further improved.

[0020] Preferably, the spiked blocks are slidably connected to the grooves, and a first spring is provided between the spiked blocks and the grooves.

[0021] Specifically, in the initial state, all the spiked blocks are located inside the grooves. When the rotating rope rotates, the spiked blocks are affected by the centrifugal force and slide out of the grooves. At this time, the first spring is in an extended state. When the rotating rope stops rotating, the spiked blocks are affected by the elastic force of the first spring and retract into the grooves, avoiding the problem that the spiked blocks damage the protective cover when the pulling rope contacts the protective cover.

[0022] Preferably, the protection part further includes:

[0023] A round rod for driving the cylinder to rotate, the round rod is fixedly connected to the cylinder, and the round rod is located inside the protective cover;

[0024] A first groove and a second groove formed in the round rod;

[0025] A first driving assembly fixedly installed on both sides of the body. The first driving assembly includes a first rod, a circular shell, and a winding cylinder. The first rod is fixedly connected to the body. The circular shell is fixedly installed at the upper end of the first rod. The winding cylinder is rotatably installed inside the circular shell;

[0026] A first winding rope wound on the first groove. One end of the first winding rope is fixedly connected to the round rod. The other end of the first winding rope is wound on the winding cylinder and fixedly connected to the winding cylinder;

[0027] A second winding rope wound on the second groove. One end of the second winding rope is fixedly connected to the round rod. The other end of the second winding rope is wound on the winding cylinder far from the first winding rope and fixedly connected to the winding cylinder.

[0028] Specifically, in the initial state, most of the first winding rope is wound in the first groove, and most of the second winding rope is wound in the winding cylinder. When the microwave sensor senses that the bird is approaching further, the winding cylinder connected to the first winding rope rotates, driving the round rod to rotate, so that the rotating rope rotates. At this time, the first winding rope falls off from the first groove and winds around the winding cylinder, and the second winding rope falls off from the winding cylinder and winds around the second groove. When most of the first winding rope is wound around the winding cylinder, the winding cylinder connected to the second winding rope rotates, driving the round rod to rotate reversely, so that the rotating rope rotates reversely. At this time, the second winding rope falls off from the second groove and winds around the winding cylinder, and the first winding rope falls off from the winding cylinder and winds around the first groove, and so on, until it is detected that the bird has left and then stops. By setting the first winding rope and the second winding rope to drive the round rod, there is no blockage of light, ensuring that the solar energy can absorb light energy normally.

[0029] Preferably, the first driving assembly further includes:

[0030] A special-shaped groove opened at the lower end of the winding cylinder;

[0031] A special-shaped block fixedly installed on the upper surface of the first rod. The special-shaped block is located in the special-shaped groove;

[0032] A number of pointed blocks slidably installed on the special-shaped block. A second spring is provided between the pointed block and the special-shaped block.

[0033] Specifically, in the normal state, the special-shaped block rotates, driving the pointed block to rotate, so that the winding cylinder rotates. When the first winding rope or the second winding rope is in a taut state, the special-shaped block continues to rotate, driving the pointed block to rotate. When the pointed block rotates, it slides into the special-shaped block under the reaction force of the special-shaped groove. At this time, the winding cylinder does not rotate, avoiding the problem of the first winding rope and the second winding rope being broken.

[0034] Preferably, the protection part further includes:

[0035] A cavity opened in the cylinder for containing bird repellent;

[0036] A pressure valve installed on the cylinder;

[0037] A circular plate slidably installed in the cavity;

[0038] A second driving assembly for driving the circular plate to move, the second driving assembly includes a threaded rod, the threaded rod is rotatably connected to the cylinder, and the threaded rod is threadedly connected to the circular plate.

[0039] Specifically, when it is detected that a large bird is approaching, the threaded rod rotates, driving the circular plate to move upward. At this time, the space for containing the bird repellent decreases, the pressure increases, and the bird repellent flows out from the pressure valve to further drive away the birds.

[0040] Preferably, the second driving assembly further includes:

[0041] A one-way rotation structure installed on the threaded rod;

[0042] A first gear for driving the one-way rotation structure to rotate, the first gear is rotatably installed in the cylinder, the first gear is meshed with the one-way rotation structure, and a torsion spring is provided between the first gear and the cylinder;

[0043] A third winding rope wound around the first gear, one end of the third winding rope is fixedly connected to the first gear, and the other end of the third winding rope is fixedly connected to the winding rope.

[0044] Specifically, when the cylinder rotates, the winding rope rotates accordingly. At the same time, the winding rope drives the third winding rope to move. At this time, the winding rope does not contact the cylinder. The third winding rope moves, driving the first gear to rotate by a specified angle. The first gear rotates, driving the one-way rotation structure and the threaded rod to rotate, and a small amount of bird repellent flows out from the pressure valve. There is no need to set an additional power source. When the cylinder stops rotating, the first gear rotates back to the initial state under the action of the torsion spring, and at this time the threaded rod does not rotate.

[0045] Preferably, a plurality of groups of the winding ropes, the first gears and the third winding ropes are installed on the cylinder.

[0046] Specifically, by setting multiple groups of winding ropes, first gears and third winding ropes, the bird repelling effect of the device is improved.

[0047] Preferably, the protection part further includes a plurality of reflection assemblies installed on the cylinder. The reflection assemblies are located above the winding ropes. The reflection assemblies include a housing and a reflector. The housing is fixedly connected to the cylinder, and the reflector is fixedly installed on the housing.

[0048] Specifically, by setting a rotating reflection component, strong light is reflected by the rotating reflector, making the range of light irradiation wider and the bird repelling effect better.

[0049] The beneficial effects of the present invention are as follows:

[0050] 1. For the strong light and sound wave bird repeller of the present invention, by setting a protective cover, the problem of the bird repeller being affected by wind, rain, and sunlight is avoided, and at the same time, the problem of large birds that are not affected by strong light and sound waves damaging the bird repeller is improved, extending the service life of the device.

[0051] 2. For the strong light and sound wave bird repeller of the present invention, by setting a rotating rope and spiked blocks to drive large birds away, the problem of large birds tearing the protective cover and damaging it is improved, extending the service life of the device. In cooperation with the groove and the first spring, the problem of the spiked blocks damaging the protective cover when the pulling rope contacts the protective cover is avoided.

[0052] 3. For the strong light and sound wave bird repeller of the present invention, by setting a first driving component, in the initial state, most of the first winding rope is wound in the first groove, and most of the second winding rope is wound in the winding cylinder. When the microwave sensor senses that the birds are approaching further, the winding cylinder connected to the first winding rope rotates, driving the round rod to rotate, so that the rotating rope rotates. At this time, the first winding rope falls off the first groove and winds around the winding cylinder, and the second winding rope falls off the winding cylinder and winds around the second groove. When most of the first winding rope is wound around the winding cylinder, the winding cylinder connected to the second winding rope rotates, driving the round rod to rotate reversely, so that the rotating rope rotates reversely. At this time, the second winding rope falls off the second groove and winds around the winding cylinder, and the first winding rope falls off the winding cylinder and winds around the first groove, and so on, until it is detected that the birds have left and then stops. Compared with setting a motor below the cylinder to drive the cylinder, the volume of the first driving component is smaller, the shielding of light is less, and the absorption effect of the solar panel on light is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0053] The present invention will be further described below with reference to the drawings.

[0054] Figure 1 is a perspective view of Embodiment 1 of the present invention;

[0055] Figure 2 is a schematic internal structure diagram of Embodiment 1 of the present invention;

[0056] Figure 3 is Figure 2 a partial enlarged view of A in

[0057] Figure 4 is a schematic structure diagram of the rotating rope of the present invention;

[0058] Figure 5It is a partial sectional view of the cylinder of the present invention;

[0059] Figure 6 It is a schematic structural diagram of the first driving component of the present invention;

[0060] In the figure: 1, the body; 2, the solar panel; 3, the protection part; 31, the support frame; 32, the protective cover; 33, the fixed seat; 34, the cylinder; 35, the rotating rope; 36, the groove; 37, the spiked block; 38, the first spring; 39, the round rod; 310, the first groove; 311, the second groove; 312, the first driving component; 3121, the first rod; 3122, the round shell; 3123, the winding cylinder; 3124, the special-shaped groove; 3125, the special-shaped block; 3126, the pointed block; 3127, the second spring; 313, the first winding rope; 314, the second winding rope; 315, the cavity; 316, the pressure valve; 317, the round plate; 318, the second driving component; 3181, the threaded rod; 3182, the one-way rotation structure; 3183, the first gear; 3184, the third winding rope; 319, the reflection component; 3191, the outer shell; 3192, the reflector; 4, the light-emitting device. Specific embodiments

[0061] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0062] Embodiment 1

[0063] As Figures 1-6 shown, a strong light and sound wave bird repeller according to an embodiment of the present invention includes a body 1, a sound wave device is installed in the body 1, and further includes:

[0064] The solar panel 2 fixedly installed on the upper surface of the body 1;

[0065] A plurality of light-emitting devices 4 fixedly installed on the surface of the body 1;

[0066] The protection part 3, the protection part 3 includes a plurality of support frames 31, a protective cover 32 and two fixed seats 33, the two fixed seats 33 are symmetrically installed on both sides of the body 1, both ends of the support frame 31 are respectively rotatably connected to the two fixed seats 33, and the protective cover 32 is fixedly installed between the plurality of support frames 31.

[0067] Specifically, the light-emitting device 4 uses an LED lamp. A microwave sensor is installed on the bird repeller. The solar panel 2 provides power for the electrical equipment in the bird repeller. The protective cover 32 is made of a light-transmitting film material. In the initial state, the support frame 31 is in a retracted state, that is, all the support frames 31 are located below the body 1. After installing the bird repeller at the designated position, the support frame 31 rotates until the protective cover 32 completely covers the main body of the bird repeller. The support frame 31 is fixed and kept immobile. At this time, the middlemost support frame 31 is located directly above the body 1. When the bird repeller senses that there are birds approaching nearby, the bird repeller emits sound waves and strong light to drive away the birds. By setting the protective cover 32, the problem of the bird repeller being exposed to wind and rain is avoided. At the same time, the problem of large birds that are not affected by the bird repeller damaging the bird repeller is also avoided, extending the service life of the device.

[0068] As Figure 2 shown, the protection part 3 further includes:

[0069] A cylinder 34 rotatably connected to the topmost support frame 31 after deployment. The cylinder 34 is located on the outer layer of the protective cover 32;

[0070] A rotating rope 35 for driving away birds. The rotating rope 35 is installed on the cylinder 34.

[0071] Specifically, for some birds that are not affected by the bird repeller, they will continue to approach the bird repeller after the sound wave of the bird repeller is activated. When the microwave sensor senses that the birds are approaching further, the cylinder 34 is rotated to drive the rotating rope 35 to rotate, driving away the birds, improving the problem that birds tear the protective cover 32 and thus damaging the protective cover 32, and extending the service life of the device.

[0072] As Figure 4 shown, the protection part 3 further includes:

[0073] A plurality of grooves 36 opened on the rotating rope 35;

[0074] A plurality of spiked blocks 37 installed in the grooves 36.

[0075] Specifically, the spiked blocks 37 are made of metal. By setting the spiked blocks 37, the effect of the rotating rope 35 in driving away large birds is further improved.

[0076] As Figure 5 shown, the spiked block 37 is slidably connected to the groove 36, and a first spring 38 is provided between the spiked block 37 and the groove 36.

[0077] Specifically, in the initial state, all the spike blocks 37 are located within the grooves 36. When the rotating rope 35 rotates, the spike blocks 37 are subjected to the action of centrifugal force and slide out of the grooves 36. At this time, the first spring 38 is in a stretched state. When the rotating rope 35 stops rotating, the spike blocks 37 are subjected to the elastic force of the first spring 38 and retract into the grooves 36, avoiding the problem that the spike blocks 37 damage the protective cover 32 when the pulling rope contacts the protective cover 32.

[0078] As Figure 2 , 3 and shown in 6, the protection part 3 further includes:

[0079] A round rod 39 for driving the cylinder 34 to rotate. The round rod 39 is fixedly connected to the cylinder 34, and the round rod 39 is located inside the protective cover 32;

[0080] A first groove 310 and a second groove 311 opened on the round rod 39;

[0081] A first driving assembly 312 fixedly installed on both sides of the machine body 1. The first driving assembly 312 includes a first rod 3121, a round shell 3122, and a winding cylinder 3123. The first rod 3121 is fixedly connected to the machine body 1, the round shell 3122 is fixedly installed at the upper end of the first rod 3121, and the winding cylinder 3123 is rotatably installed inside the round shell 3122;

[0082] A first winding rope 313 wound on the first groove 310. One end of the first winding rope 313 is fixedly connected to the round rod 39, and the other end of the first winding rope 313 is wound on the winding cylinder 3123 and fixedly connected to the winding cylinder 3123;

[0083] A second winding rope 314 wound on the second groove 311. One end of the second winding rope 314 is fixedly connected to the round rod 39, and the other end of the second winding rope 314 is wound on the winding cylinder 3123 away from the first winding rope 313 and fixedly connected to the winding cylinder 3123.

[0084] Specifically, in the initial state, most of the first winding rope 313 is wound in the first groove 310, and most of the second winding rope 314 is wound in the winding cylinder 3123. When the microwave sensor senses that the bird is approaching further, the winding cylinder 3123 connected to the first winding rope 313 rotates, driving the round rod 39 to rotate, so that the rotating rope 35 rotates. At this time, the first winding rope 313 falls off from the first groove 310 and winds around the winding cylinder 3123, and the second winding rope 314 falls off from the winding cylinder 3123 and winds around the second groove 311. When most of the first winding rope 313 is wound around the winding cylinder 3123, the winding cylinder 3123 connected to the second winding rope 314 rotates, driving the round rod 39 to rotate reversely, so that the rotating rope 35 rotates reversely. At this time, the second winding rope 314 falls off from the second groove 311 and winds around the winding cylinder 3123, and the first winding rope 313 falls off from the winding cylinder 3123 and winds around the first groove 310, and so on, until it is detected that the bird has left and then stops. By setting the first winding rope 313 and the second winding rope 314 to drive the round rod 39, compared with setting a motor below the cylinder 34 to drive the cylinder 34, the volume of the first driving component 312 is smaller, the light shielding is less, and the light absorption effect of the solar panel 2 is better.

[0085] As Figure 6 shown, the first driving component 312 further includes:

[0086] The special-shaped groove 3124 opened at the lower end of the winding cylinder 3123;

[0087] The special-shaped block 3125 fixedly installed on the upper surface of the first rod 3121, and the special-shaped block 3125 is located in the special-shaped groove 3124;

[0088] A plurality of pointed blocks 3126 slidably installed on the special-shaped block 3125, and a second spring 3127 is provided between the pointed blocks 3126 and the special-shaped block 3125.

[0089] Specifically, in the normal state, the special-shaped block 3125 rotates, driving the pointed block 3126 to rotate, so that the winding cylinder 3123 rotates. When the first winding rope 313 or the second winding rope 314 is in a taut state, the special-shaped block 3125 continues to rotate, driving the pointed block 3126 to rotate. When the pointed block 3126 rotates, it slides into the special-shaped block 3125 under the reaction force of the special-shaped groove 3124. At this time, the winding cylinder 3123 does not rotate, avoiding the problem of the first winding rope 313 and the second winding rope 314 being broken.

[0090] As Figure 5 shown, the protection part 3 further includes:

[0091] The cavity 315 opened in the cylinder 34, and the cavity 315 is used to contain the bird repellent;

[0092] The pressure valve 316 installed on the cylinder 34;

[0093] The circular plate 317 slidably installed in the cavity 315;

[0094] The second driving component 318 for driving the circular plate 317 to move, the second driving component 318 includes a threaded rod 3181, the threaded rod 3181 is rotatably connected to the cylinder 34, and the threaded rod 3181 is threadedly connected to the circular plate 317.

[0095] Specifically, the bird repellent is an aqueous solution prepared from purebred camphor leaf oil, tsaoko fruit oil, cinnamon oil, benzyl acetate, Chinese prickly ash oil, etc. When it is detected that large birds are approaching, the threaded rod 3181 rotates, driving the circular plate 317 to move upward. At this time, the space for accommodating the bird repellent decreases, the pressure increases, and the bird repellent flows out from the pressure valve 316 to further drive away the birds.

[0096] Such as Figure 5 As shown, the second driving component 318 further includes:

[0097] The one-way rotation structure 3182 installed on the threaded rod 3181;

[0098] The first gear 3183 for driving the one-way rotation structure 3182 to rotate, the first gear 3183 is rotatably installed in the cylinder 34, the first gear 3183 is meshed with the one-way rotation structure 3182, and a torsion spring is provided between the first gear 3183 and the cylinder 34.

[0099] The third winding rope 3184 wound around the first gear 3183, one end of the third winding rope 3184 is fixedly connected to the first gear 3183, and the other end of the third winding rope 3184 is fixedly connected to the winding rope 35.

[0100] Specifically, when the cylinder 34 rotates, the winding rope 35 rotates accordingly. At the same time, the winding rope 35 drives the third winding rope 3184 to move. At this time, the winding rope 35 does not contact the cylinder 34. The third winding rope 3184 moves, driving the first gear 3183 to rotate a specified angle. The first gear 3183 rotates, driving the one-way rotation structure 3182 and the threaded rod 3181 to rotate. A small amount of bird repellent flows out from the pressure valve 316. No additional power source is required for the process of the bird repellent flowing out from the pressure valve 316. When the cylinder 34 stops rotating, the first gear 3183 rotates to the initial state under the action of the torsion spring, and at this time the threaded rod 3181 does not rotate.

[0101] Such as Figure 2 And 5 As shown, a plurality of groups of the winding ropes 35, the first gears 3183 and the third winding ropes 3184 are installed on the cylinder 34.

[0102] Specifically, by setting multiple sets of rotating ropes 35, first-stage gears 3183 and third-stage winding ropes 3184, the bird repelling effect of the device is improved.

[0103] Embodiment 2

[0104] As Figure 2 and 5 shown, compared with Embodiment 1, another implementation of the present invention is: the protection part 3 further includes a plurality of reflection components 319 installed on the cylinder 34. The reflection components 319 are located above the rotating ropes 35. The reflection components 319 include a housing 3191 and a reflector 3192. The housing 3191 is fixedly connected to the cylinder 34, and the reflector 3192 is fixedly installed on the housing 3191.

[0105] Specifically, by setting the rotating reflection components 319, on rainy and cloudy days, the reflection components can still rotate under the influence of wind to repel birds.

[0106] Working steps:

[0107] Step 1: In the initial state, the support frame 31 is in the retracted state, that is, all the support frames 31 are located below the machine body 1. After installing the bird repeller at the designated position, the support frame 31 rotates until the protective cover 32 completely covers the main body of the bird repeller. Fix the support frame 31 and keep it stationary. At this time, the middle support frame 31 is directly above the machine body 1. When the bird repeller senses that there are birds approaching nearby, the bird repeller emits sound waves and strong light to drive away the birds;

[0108] Step 2: When the microwave sensor senses that the birds are approaching further, the winding cylinder 3123 connected to the first-stage winding rope 313 rotates, driving the round rod 39 to rotate, so that the rotating rope 35 rotates. At this time, the first-stage winding rope 313 falls off from the first groove 310 and winds around the winding cylinder 3123, and the second-stage winding rope 314 falls off from the winding cylinder 3123 and winds around the second groove 311. When most of the first-stage winding rope 313 is wound around the winding cylinder 3123, the winding cylinder 3123 connected to the second-stage winding rope 314 rotates, driving the round rod 39 to rotate reversely, so that the rotating rope 35 rotates reversely. At this time, the second-stage winding rope 314 falls off from the second groove 311 and winds around the winding cylinder 3123, and the first-stage winding rope 313 falls off from the winding cylinder 3123 and winds around the first groove 310, and so on, until it is detected that the birds have left and then stops;

[0109] Step 3: When the cylinder 34 rotates, it drives the rotating rope 35 to rotate. The spiked blocks 37 inside the rotating rope 35 are affected by centrifugal force and slide out of the grooves 36 to drive away large birds, avoiding the problem that large birds not affected by strong light and sound waves damage the bird repeller, and extending the service life of the device;

[0110] Step Four: When the cylinder 34 rotates, the rotating rope 35 rotates accordingly. At the same time, the rotating rope 35 drives the third winding rope 3184 to move. At this time, the rotating rope 35 does not contact the cylinder 34. The movement of the third winding rope 3184 drives the first gear 3183 to rotate by a specified angle. The rotation of the first gear 3183 drives the one-way rotation structure 3182 and the threaded rod 3181 to rotate, and a small amount of bird repellent flows out of the pressure valve 316 to further drive away the birds.

[0111] Step Five: When it is detected that the birds have left, the winding cylinder 3123 stops rotating, the rotating rope 35 stops rotating, and the spike block 37 returns to the groove 36 under the pulling of the first spring 38.

[0112] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A strong light and sound wave bird repeller, comprising a body (1), with a sound wave device installed inside the body (1), further comprising: A solar panel (2) fixedly installed on the upper surface of the body (1); A plurality of light emitting devices (4) fixedly installed on the body (1); A protection part (3), the protection part (3) includes a plurality of support frames (31), a protective cover (32) and two fixed seats (33), the two fixed seats (33) are symmetrically installed on both sides of the body (1), both ends of the plurality of support frames (31) are respectively rotatably connected to the two fixed seats (33), and the protective cover (32) is fixedly installed between the plurality of support frames (31); The protection part (3) further includes: A cylinder (34) rotatably connected to the top of the support frame (31), the cylinder (34) is located outside the protective cover (32); A rotating rope (35) for driving away birds, the rotating rope (35) is installed on the cylinder (34); The protection part (3) further includes: A plurality of grooves (36) opened on the rotating rope (35); A plurality of spike blocks (37) installed in the grooves (36); The spike block (37) is slidably connected to the groove (36), and a first spring (38) is provided between the spike block (37) and the groove (36); The protection part (3) further includes: A round rod (39) for driving the cylinder (34) to rotate, the round rod (39) is fixedly connected to the cylinder (34), and the round rod (39) is located inside the protective cover (32); A first groove (310) and a second groove (311) opened on the round rod (39); A first driving assembly (312) fixedly installed on both sides of the body (1), the first driving assembly (312) includes a first rod (3121), a round shell (3122) and a winding cylinder (3123), the first rod (3121) is fixedly connected to the body (1), the round shell (3122) is fixedly installed at the upper end of the first rod (3121), and the winding cylinder (3123) is rotatably installed inside the round shell (3122); A first winding rope (313) wound on the first groove (310), one end of the first winding rope (313) is fixedly connected to the round rod (39), and the other end of the first winding rope (313) is wound on the winding cylinder (3123) and fixedly connected to the winding cylinder (3123); A second winding rope (314) wound on the second groove (311), one end of the second winding rope (314) is fixedly connected to the round rod (39), and the other end of the second winding rope (314) is wound on the end of the winding cylinder (3123) away from the first winding rope (313) and fixedly connected to the winding cylinder (3123).

2. The strong light and acoustic wave bird repeller according to claim 1, characterized in that: The first driving assembly (312) further includes: A special-shaped groove (3124) opened at the lower end of the winding cylinder (3123); The special-shaped block (3125) fixedly installed on the upper surface of the first rod (3121), and the special-shaped block (3125) is located in the special-shaped groove (3124); A number of pointed blocks (3126) slidably installed on the special-shaped block (3125), and a second spring (3127) is provided between the pointed block (3126) and the special-shaped block (3125).

3. The strong light and acoustic wave bird repeller according to claim 1, characterized in that: The protection part (3) further includes: A cavity (315) opened in the cylinder (34), and the cavity (315) is used to contain the bird repellent; A pressure valve (316) installed on the cylinder (34); A circular plate (317) slidably installed in the cavity (315); A second driving component (318) for driving the circular plate (317) to move. The second driving component (318) includes a threaded rod (3181), the threaded rod (3181) is rotatably connected to the cylinder (34), and the threaded rod (3181) is threadedly connected to the circular plate (317).

4. The strong light and sonic bird repellent according to claim 3, wherein: The second driving component (318) further includes: A one-way rotation structure (3182) installed on the threaded rod (3181); A first gear (3183) for driving the one-way rotation structure (3182) to rotate. The first gear (3183) is rotatably installed in the cylinder (34), the first gear (3183) is meshed with the one-way rotation structure (3182), and a torsion spring is provided between the first gear (3183) and the cylinder (34); A third winding rope (3184) wound around the first gear (3183), one end of the third winding rope (3184) is fixedly connected to the first gear (3183), and the other end of the third winding rope (3184) is fixedly connected to the winding rope (35).

5. The strong light and acoustic wave bird repeller according to claim 4, characterized in that: A number of groups of the winding ropes (35), first gears (3183) and third winding ropes (3184) are installed on the cylinder (34).

6. The strong light and acoustic wave bird repeller according to claim 1, wherein: The protection part (3) further includes a number of reflection components (319) installed on the cylinder (34). The reflection components (319) are located above the winding ropes (35). The reflection components (319) include a housing (3191) and a reflector (3192). The housing (3191) is fixedly connected to the cylinder (34), and the reflector (3192) is fixedly installed on the housing (3191).

Citation Information

Patent Citations

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