Fence device for preventing small animals from climbing transformer
By designing a fence device for anti-climbing transformer for small animals, and using components such as positioning chutes, locking parts and solar power supply, the short circuit hazards caused by small animals are solved, the safe and stable operation of the transformer and timely alarm are achieved, and the maintenance difficulty and cost are reduced.
Patent Information
- Application Number
- CN202510567987.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-07-11
AI Technical Summary
In the prior art, it is difficult to effectively prevent short circuit hazards caused by the high and low voltage wiring posts of small animals climbing transformers, and the insulated protective sleeve is not conducive to the heat dissipation and defect discovery of terminals.
A fence device for anti-climbing transformer for small animals is designed, including telephone poles, carrier frames, connection mechanisms, acousto-optical alarm mechanisms, solar energy collection components and grid parts. By positioning chutes, locking parts, connecting sleeves and micro motors, fixing and shock protection of transformer devices is achieved, and solar power supply and ultrasonic waves are used to drive away small animals.
Effectively prevent small animals from climbing, reduce short circuit risks, ensure heat dissipation of terminals, prompt alarms, reduce manpower maintenance needs, and reduce maintenance costs.
Smart Images

Figure CN120283744A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of transformers, and particularly relates to a fence device for preventing small animals from climbing on transformers. Background Art
[0002] A substation is an important link in the power system, undertaking the heavy tasks of electric energy conversion and redistribution, and playing a crucial role in the safe and economic operation of the power grid. Whether the substation operates safely directly affects the stability of industrial and agricultural production and the well-being of urban and rural people. Therefore, ensuring the safe operation of the substation is an important task for power departments at all levels. Small animals, although small, are a major enemy to the safe operation of electrical equipment. Due to the small size of small animals, they are easy to penetrate holes and gaps. In addition, when the electrical equipment conducts current, it will generate a thermal effect. When winter comes every year, small animals will invade the electrical equipment area in the substation to keep warm, thus increasing the short-circuit hidden danger of the electrical equipment.
[0003] In view of the phenomenon that small animals climb onto the high-voltage and low-voltage terminal posts of the transformer and cause the transformer to short-circuit, the current main preventive measure is to install insulating protective sleeves on the high-voltage and low-voltage terminal posts of the transformer. The insulating protective sleeves for high-voltage and low-voltage terminal posts can reduce the influence of the outgoing line terminals on dirt, rainwater, and small animals. However, during operation, since the protective sleeves seal the terminal posts, when the contact resistance of the wire ears of the high-voltage and low-voltage terminal posts becomes too large and causes heating during the operation of the transformer, the insulating protective sleeves are not conducive to the heat dissipation of the terminal posts, and prevent the maintenance personnel from discovering defects in time. The heating phenomenon of the wire ears cannot be effectively observed, which is instead not conducive to the safe and stable operation of the transformer. Summary of the Invention
[0004] In view of the above-mentioned shortcomings of the prior art, the present invention provides a fence device for preventing small animals from climbing on transformers, which can effectively solve the problems of the prior art.
[0005] To solve the above technical problems, the present invention is realized through the following technical solutions: The present invention is a fence device for preventing small animals from climbing on transformers, including wire rods, a carrier frame arranged at the upper end of the wire rods, and a transformer component clamped on the upper end surface of the carrier frame. It further includes: A connecting mechanism, arranged at the upper end of the carrier frame, for fixedly connecting the carrier frame and the transformer component. A sound and light alarm mechanism is arranged on one side of the upper end surface of the carrier frame; A locking member, sleeved on the outer surface of the wire rod. The upper end surface of the locking member is connected with a connecting frame, and the upper end of the connecting frame is connected with a solar energy collection component; A control bin, arranged at the bottom of the lower end of the carrier frame and located below the transformer component. A storage battery and a control mechanism are arranged inside the control bin; The connecting sleeve is sleeved on the outer surface of the wire rod member and is connected to the bearing frame. Driving bins are symmetrically arranged on the sides of the connecting sleeve, and connecting plates are connected to the outsides of the driving bins. Further, the bearing frame includes positioning sliding grooves and locking screw grooves. The positioning sliding grooves are symmetrically opened on the upper end surface of the bearing frame, and the cross-section of the positioning sliding grooves is a "T"-shaped structure. The locking screw grooves are opened inside the positioning sliding grooves, and bolts pass through the locking screw grooves and are connected to the bottom of the transformer member.
[0006] Further, a connecting sliding groove is opened at the central position on one side of the transformer member, and the cross-section of the connecting sliding groove is a quadrilateral structure.
[0007] Further, the locking member includes a connecting slider and a positioning screw rod. The cross-section of the locking member is an annular structure. The connecting slider is fixed at the lower end of the locking member, and the connecting slider extends into the connecting sliding groove. The positioning screw rod passes through the connecting slider and is connected to the bearing frame.
[0008] Further, the connecting frame includes limiting hole grooves, connecting screw rods, connecting nuts, extension plates and solar collection components. The limiting hole grooves are uniformly opened inside the locking member. The connecting screw rods are fixed at the lower ends of the connecting frame. The connecting nuts are threadedly connected to the outer surfaces of the connecting screw rods and are located at the lower ends of the locking member. The extension plates are fixed on the upper end surfaces of the connecting frame, and the solar collection components are fixed on the upper ends of the extension plates.
[0009] Further, the connecting sleeve includes a connecting clamping plate one, a connecting clamping plate two, a positioning groove, a positioning convex block and a positioning bolt. The connecting clamping plate one and the connecting clamping plate two are slidably clamped on the outside of the bearing frame, and the connecting clamping plate one and the connecting clamping plate two are arc-shaped structures and are clamped with the bearing frame. The positioning groove is opened on the inner sides of the connecting clamping plate one and the connecting clamping plate two. The positioning convex block is fixed on the outside of the bearing frame and is clamped with the positioning groove. The positioning bolt passes through the connecting clamping plate one and the connecting clamping plate two and is connected to the bearing frame.
[0010] Further, anti-slip pads are fixed on the inner walls of the connecting clamping plate one and the connecting clamping plate two, and the inner walls of the anti-slip pads are in contact with the wire rod member. The cross-section of the anti-slip pad is a trapezoidal structure.
[0011] Further, the driving bin includes a micro motor, a worm member, a linkage gear one, a linkage gear two, a connecting rod one and a connecting rod two. The micro motor is arranged inside the driving bin. The worm member is fixed at the output end of the micro motor. The linkage gear one is meshed and connected to the outside of the worm member. The linkage gear two is meshed and connected to one side of the worm member. The connecting rod one is rotatably connected to the outside of the linkage gear one. The connecting rod two is rotatably connected to the other side of the linkage gear two, and the length of the connecting rod two is less than that of the connecting rod one. The other ends of the connecting rod one and the connecting rod two are rotatably connected to a connecting plate.
[0012] Further, the connecting plate includes a connecting hole and a power grid member. The connecting hole is opened at the central position of the connecting plate. When the two groups of connecting plates are combined, the connecting hole is clamped with the outer surface of the wire rod member. The power grid member is arranged at the lower end of the connecting plate.
[0013] Further, the two groups of connecting plates can be combined and are arranged in a fan-shaped cross-sectional structure.
[0014] The present invention has the following beneficial effects: In the present invention, by providing the positioning chute to limit the connection of the transformer member, the offset of the transformer member can be avoided. Then, the connection slider at the lower end of the locking member slides and is clamped inside the connection chute, so as to be able to limit the transformer member. At the same time, the connection frame can be connected by the connection screw rod and the connection nut to avoid the offset and shaking of the solar energy collection assembly. And a storage battery and a controller are arranged inside the control bin; In the present invention, the provided connecting sleeve can be divided into a connecting card plate one and a connecting card plate two. The two can be combined and spliced on the outside of the carrier frame. And through the cooperation of the positioning groove and the positioning convex block, the connecting sleeve can be limited to avoid the offset of the connecting sleeve. Then, the provided anti-slip pad can be in contact with the inner wall of the wire rod member, so as to ensure the stability of the connecting sleeve. Then, by passing the positioning bolt through the connecting sleeve and connecting it with the carrier frame, the offset and shaking of the connecting sleeve can be avoided; In the present invention, the provided micro-motor can drive the worm rod member to rotate. When the worm rod member rotates, the driving gear one and the driving gear two can be cooperated, and then the connecting plate can be opened through the connecting rod one and the connecting rod two, so as to be able to open and combine the two groups of connecting plates, so as to be able to make the two groups of connecting plates butt. And the provided connecting hole can be adapted to the outer surface of the wire rod member, so as to be able to make the connecting plate be arranged in a fan shape on the outside of the wire rod member, and the outside is an arc-shaped structure, which can prevent rats and the like from climbing. And the provided power grid member generates current. And because the solar energy collection assembly uses sunlight to charge the storage battery, and the transformer raises the voltage of the battery to V. And when small animals touch the connecting plate, the power grid member can output high voltage and low current to the small animals, giving the small animals a feeling of electric shock, repelling the small animals without harming them. Finally, the provided ultrasonic mechanism is used to emit ultrasonic waves that can be sensed by some small animals to prevent some birds from approaching. Description of the Drawings
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to these drawings.
[0016] Figure 1Schematic diagram of the fence device for preventing small animals from climbing on the transformer of the present invention; Figure 2 Top view schematic diagram of the wire rod member of the present invention; Figure 3 Bottom view schematic diagram of the wire rod member of the present invention; Figure 4 Top view schematic diagram of the transformer member of the present invention; Figure 5 Top view schematic diagram of the locking member and the connecting frame of the present invention; Figure 6 Top view schematic diagram of the connecting sleeve of the present invention; Figure 7 Cross-sectional schematic diagram of the wire rod member and the connecting sleeve of the present invention; Figure 8 Cross-sectional schematic diagram of the connecting sleeve of the present invention; Figure 9 Internal schematic diagram of the driving chamber of the present invention.
[0017] In the drawings, the list of components represented by each reference numeral is as follows: 1. Wire rod member; 2. Bearing frame; 201. Positioning chute; 202. Locking screw groove; 3. Transformer member; 301. Connecting chute; 4. Locking member; 401. Connecting slider; 402. Positioning screw rod; 403. Limiting hole groove; 5. Connecting frame; 501. Connecting screw rod; 502. Connecting nut; 503. Extension plate; 504. Solar energy collection assembly; 6. Control chamber; 7. Connecting sleeve; 701. First connecting clamping plate; 702. Second connecting clamping plate; 703. Positioning groove; 704. Positioning convex block; 705. Anti-slip pad; 706. Positioning bolt; 8. Driving chamber; 801. Micro motor; 802. Worm rod member; 803. First linkage gear; 804. Second linkage gear; 805. First connecting rod; 806. Second connecting rod; 9. Connecting plate; 901. Connecting hole; 902. Electric grid member; 10. Acousto-optic alarm mechanism. Detailed implementation manners
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.
[0019] Please refer to Figures 1-9 As shown, the present invention is a fence device for preventing small animals from climbing on a transformer, including a wire rod member 1, a bearing frame 2 provided at the upper end of the wire rod member 1, and a transformer member 3 clamped on the upper end surface of the bearing frame 2, and further includes: The connecting mechanism is arranged at the upper end of the carrier 2 and is used for fixedly connecting the carrier 2 with the transformer component 3. On one side of the upper end surface of the carrier 2, there is an acoustic-optic alarm mechanism 10; the carrier 2 includes a positioning chute 201 and a locking screw groove 202. The positioning chute 201 is symmetrically opened on the upper end surface of the carrier 2, and the cross-section of the positioning chute 201 is a "T" - shaped structure. The locking screw groove 202 is opened inside the positioning chute 201, and a bolt passes through the locking screw groove 202 and is connected to the bottom of the transformer component 3. By setting, the transformer component 3 can be slidably clamped inside the positioning chute 201, and the positioning chute 201 is a "T" - shaped structure, which can be adapted to the transformer component 3 to prevent the transformer component 3 from shifting. Moreover, the set bolt passes through the locking screw groove 202 and is connected to the bottom of the transformer component 3, so as to be able to limit the position of the transformer component 3; at the central position on one side of the transformer component 3, there is a connecting chute 301, and the cross-section of the connecting chute 301 is a quadrilateral structure; the locking member 4 includes a connecting slider 401 and a positioning screw rod 402. The cross-section of the locking member 4 is an annular structure. The connecting slider 401 is fixed at the lower end of the locking member 4, and the connecting slider 401 extends into the connecting chute 301. The positioning screw rod 402 passes through the connecting slider 401 and is connected to the carrier 2; by setting, the connecting chute 301 is a quadrilateral structure, and the connecting slider 401 at the lower end of the locking member 4 can be slidably clamped inside the connecting chute 301, so as to be able to limit the transformer component 3 and prevent the transformer component 3 from shifting and shaking. Then, the set positioning screw rod 402 passes through the locking member 4 and is connected to the carrier 2, which can prevent the carrier 2 from shifting and shaking; The locking member 4 is sleeved on the outer surface of the wire rod member 1. A connecting frame 5 is connected to the upper end surface of the locking member 4, and a solar collection component 504 is connected to the upper end of the connecting frame 5; the connecting frame 5 includes a limiting hole groove 403, a connecting screw rod 501, a connecting nut 502, an extension plate 503 and a solar collection component 504. The limiting hole grooves 403 are evenly opened inside the locking member 4. The connecting screw rod 501 is fixed at the lower end of the connecting frame 5. The connecting nut 502 is threadedly connected to the outer surface of the connecting screw rod 501 and is located at the lower end of the locking member 4. The extension plate 503 is fixed on the upper end surface of the connecting frame 5, and the solar collection component 504 is fixed on the upper end of the extension plate 503. By setting, the limiting hole grooves 403 are opened at the upper end of the locking member 4, and the connecting frame 5 can be sleeved on the outer surface of the wire rod member 1 and slidably clamped on the upper end surface of the locking member 4, so as to be able to limit the position of the connecting frame 5 and prevent the connecting frame 5 from shaking. Then, the set extension plate 503 can support the solar collection component 504, and the set solar collection component 504 can use sunlight to charge the battery; The control bin 6 is provided at the lower bottom of the carrier 2 and is located at the lower end of the transformer component 3. A storage battery and a control mechanism are provided inside the control bin 6; The connecting sleeve 7 includes a first connecting clamping plate 701, a second connecting clamping plate 702, a positioning groove 703, a positioning convex block 704, and a positioning bolt 706. The first connecting clamping plate 701 and the second connecting clamping plate 702 are slidably clamped on the outer side of the carrier 2, and the first connecting clamping plate 701 and the second connecting clamping plate 702 are arc-shaped structures and are clamped with the carrier 2. The positioning groove 703 is opened on the inner sides of the first connecting clamping plate 701 and the second connecting clamping plate 702. The positioning convex block 704 is fixed on the outer side of the carrier 2 and is clamped with the positioning groove 703. The positioning bolt 706 passes through the first connecting clamping plate 701 and the second connecting clamping plate 702 and is connected to the carrier 2. The connecting sleeve 7 can be divided into the first connecting clamping plate 701 and the second connecting clamping plate 702. The two can be combined and spliced on the outer side of the carrier 2. Through the cooperation of the positioning groove 703 and the positioning convex block 704, the connecting sleeve 7 can be limited to prevent the connecting sleeve 7 from shifting; Anti-slip pads 705 are fixed on the inner walls of the first connecting clamping plate 701 and the second connecting clamping plate 702, and the inner walls of the anti-slip pads 705 are in contact with the wire rod member 1. The cross-section of the anti-slip pad 705 is a trapezoidal structure; The provided anti-slip pad 705 can be in contact with the inner wall of the wire rod member 1, so as to ensure the stability of the connecting sleeve 7. Then, by passing the positioning bolt 706 through the connecting sleeve 7 and connecting it to the carrier 2, the connecting sleeve 7 can be prevented from shifting and shaking; During use, the first connecting clamping plate 701 and the second connecting clamping plate 702 can be combined and sleeved on the outer side of the carrier 2. Then, the positioning groove 703 on the inner sides of the first connecting clamping plate 701 and the second connecting clamping plate 702 can be clamped with the positioning convex block 704 on the outer side of the carrier 2. Then, the positioning bolt 706 is passed through the first connecting clamping plate 701 and the second connecting clamping plate 702 and connected to the carrier 2, which can prevent the carrier 2 from shifting. And the provided anti-slip pad 705 can be in contact with the outer surface of the wire rod member 1, so as to ensure the stability of the first connecting clamping plate 701 and the second connecting clamping plate 702; The connecting sleeve 7 is sleeved on the outer surface of the wire rod member 1 and is connected to the bearing frame 2. The sides of the connecting sleeve 7 are symmetrically provided with driving bins 8, and the outer sides of the driving bins 8 are connected with connecting plates 9; the driving bin 8 includes a micro motor 801, a worm rod member 802, a first linkage gear 803, a second linkage gear 804, a first connecting rod 805 and a second connecting rod 806. The micro motor 801 is arranged inside the driving bin 8, the worm rod member 802 is fixed to the output end of the micro motor 801, the first linkage gear 803 is meshed and connected to the outside of the worm rod member 802, the second linkage gear 804 is meshed and connected to one side of the worm rod member 802, the first connecting rod 805 is rotatably connected to the outside of the first linkage gear 803, the second connecting rod 806 is rotatably connected to the other side of the second linkage gear 804, and the length of the second connecting rod 806 is less than that of the first connecting rod 805. The other ends of the first connecting rod 805 and the second connecting rod 806 are rotatably connected to the connecting plate 9. By setting the micro motor 801 to be turned on, the set micro motor 801 can drive the worm rod member 802 to rotate. When the worm rod member 802 rotates, it can drive the first linkage gear 803 and the second linkage gear 804 to rotate accordingly, so as to rotate through the first connecting rod 805 and the second connecting rod 806. Since the other ends of the first connecting rod 805 and the second connecting rod 806 are connected to the connecting plate 9, the two groups of connecting plates 9 can be flipped; the connecting plate 9 includes a connecting hole 901 and a power grid member 902. The connecting hole 901 is opened at the central position of the connecting plate 9, and when the two groups of connecting plates 9 are combined, the connecting hole 901 is clamped with the outer surface of the wire rod member 1. The power grid member 902 is arranged at the lower end of the connecting plate 9. By setting the connecting hole 901, the connecting hole 901 can be clamped with the outer surface of the wire rod member 1 when the connecting plates 9 are combined; the two groups of connecting plates 9 can be combined and the cross section is arranged in a fan-shaped structure. Since the outside of the connecting plate 9 is an arc-shaped structure, it can prevent rats and the like from climbing. Because the solar energy collection component 504 uses sunlight to charge the storage battery, and the transformer boosts the voltage of the battery to 1800V, and the power grid member 902 can output a high voltage and low current to small animals when the small animals touch the connecting plate 9, giving the small animals a feeling of electric shock, repelling the small animals without harming them. Finally, the set sound and light alarm mechanism 10 is used to emit ultrasonic waves that can be sensed by some small animals to prevent some birds from approaching; Meanwhile, a resistor is also provided in the control mechanism inside the control bin 6 in this application document and is connected to the power grid component 902. When an animal touches the power grid component 902, the value of the resistor will change, and an alarm will be triggered through the alarm device, and a pulse signal will be generated to give an audible and visual alarm, driving small animals away and prompting the operation and maintenance personnel to check the site in a timely manner. Thus, the threat of climbing small animals to the main transformer can be solved at the root. When small animals climb, an audible and visual alarm signal will be emitted to drive small animals away and prompt the operation and maintenance personnel to check the site immediately, effectively preventing small animals from climbing, greatly reducing or even no longer occurring the main transformer short-circuit tripping accident caused by small animals climbing the main transformer, improving the power supply reliability of the power system; at the same time, saving the cost of anti-small animal equipment, reducing the manual maintenance time and the maintenance difficulty.
[0020] Working principle: First, fix the carrier 2 on the outside of the wire rod member 1 through bolts. Then, slide and snap the transformer component 3 inside the positioning chute 201, and pass the bolts through the locking screw groove 202 and connect them to the bottom of the transformer component 3, so as to be able to limit the position of the transformer component 3. Then, the connecting slider 401 at the lower end of the locking member 4 can be slidably snapped inside the connecting chute 301, so as to be able to limit the transformer component 3 and prevent the transformer component 3 from shifting and shaking. At the same time, the set positioning screw rod 402 passes through the locking member 4 and is connected to the carrier 2 to prevent the carrier 2 from shifting and shaking. Then, the connecting slider 401 at the lower end of the locking member 4 can be slidably snapped inside the connecting chute 301, so as to be able to limit the transformer component 3 and prevent the transformer component 3 from shifting and shaking. Then, the set positioning screw rod 402 passes through the locking member 4 and is connected to the carrier 2 to prevent the carrier 2 from shifting and shaking; and the set extension plate 503 can strengthen the solar collection assembly 504 to prevent the solar collection assembly 504 from shifting and shaking; Secondly, since the solar collection assembly 504 uses sunlight to charge the battery in the control bin 6, and the transformer raises the voltage of the battery to 1800V, and the power grid component 902 can output a high voltage and low current to small animals when they touch the connecting plate 9, giving small animals a feeling of electric shock to repel small animals without harming them. Finally, the set audible and visual alarm mechanism 10 is used to emit ultrasonic waves that can be sensed by some small animals to prevent some birds from approaching Finally, the first connecting card plate 701 and the second connecting card plate 702 can be combined and sleeved on the outside of the bearing frame 2. Then, the positioning grooves 703 on the inner sides of the first connecting card plate 701 and the second connecting card plate 702 can be clamped with the positioning bumps 704 on the outside of the bearing frame 2. Then, the positioning bolts 706 are passed through the first connecting card plate 701 and the second connecting card plate 702 and connected to the bearing frame 2, which can prevent the bearing frame 2 from shifting. And the provided anti-slip pads 705 can contact the outer surface of the wire rod member 1, so as to ensure the stability of the first connecting card plate 701 and the second connecting card plate 702. At night, the provided micro motor 801 can be turned on. The provided micro motor 801 can drive the worm rod member 802 to rotate. When the worm rod member 802 rotates, the first linkage gear 803 and the second linkage gear 804 can be driven to rotate accordingly. Thus, the rotation can be carried out through the first connecting rod 805 and the second connecting rod 806. Since the other ends of the first connecting rod 805 and the second connecting rod 806 are connected to the connecting plate 9, the two groups of connecting plates 9 can be turned over. And through the provided connecting holes 901, when the connecting plates 9 are combined, the connecting holes 901 can be clamped with the outer surface of the wire rod member 1; the two groups of connecting plates 9 can be combined and the cross-section is arranged in a fan-shaped structure. Since the outer side of the connecting plate 9 is an arc-shaped structure, it can prevent rats and the like from climbing. Because the solar energy collecting component 504 uses sunlight to charge the storage battery, and the transformer boosts the voltage of the battery to 1800V, and the power grid member 902 can output a high voltage and low current to small animals when the small animals touch the connecting plate 9, giving the small animals a feeling of electric shock, repelling the small animals without hurting them. Finally, during the day, small animals that are good at climbing, such as snakes, are not very active. At this time, the micro motor 801 can be turned on again. The provided micro motor 801 can drive the worm rod member 802 to rotate. When the worm rod member 802 rotates, the first linkage gear 803 and the second linkage gear 804 can be driven to rotate accordingly. Thus, the rotation can be carried out through the first connecting rod 805 and the second connecting rod 806. Since the other ends of the first connecting rod 805 and the second connecting rod 806 are connected to the connecting plate 9, the connecting plate 9 can be retracted and covered on the outside of the connecting sleeve, and the retraction and release of the two groups of connecting plates 9 can be completed, so as to prevent this application from affecting people's passage, and further improve the application range of this application document.
[0021] The above are only the preferred embodiments of the present invention, which do not limit the present invention. Any modification of the technical solutions recorded in the foregoing embodiments, any equivalent replacement of some technical features, and any modification, equivalent replacement, and improvement made all belong to the protection scope of the present invention.
Claims
1. A fence device for preventing small animals from climbing on a transformer, comprising a wire rod member (1), a carrier frame (2) arranged at the upper end of the wire rod member (1), and a transformer member (3) clamped on the upper end surface of the carrier frame (2), characterized in that, It further includes: A connecting mechanism, arranged at the upper end of the carrier (2), for fixedly connecting the carrier (2) with the transformer component (3). An acoustic-optic alarm mechanism (10) is arranged on one side of the upper end surface of the carrier (2); A locking member (4), sleeved on the outer surface of the wire rod member (1). A connecting frame (5) is connected to the upper end surface of the locking member (4), and a solar collection assembly (504) is connected to the upper end of the connecting frame (5); A control chamber (6), arranged at the bottom of the lower end of the carrier (2) and located below the transformer component (3). A storage battery and a control mechanism are arranged inside the control chamber (6); A connecting sleeve (7), sleeved on the outer surface of the wire rod member (1) and connected to the carrier (2). Driving chambers (8) are symmetrically arranged on the side of the connecting sleeve (7), and a connecting plate (9) is connected to the outside of the driving chamber (8).
2. The fence device for preventing small animals from climbing on a transformer according to claim 1, characterized in that, The carrier (2) includes a positioning sliding groove (201) and a locking screw groove (202). The positioning sliding grooves (201) are symmetrically opened on the upper end surface of the carrier (2), and the cross-section of the positioning sliding groove (201) is a "T"-shaped structure. The locking screw groove (202) is opened inside the positioning sliding groove (201), and a bolt passes through the locking screw groove (202) and is connected to the bottom of the transformer component (3).
3. A fence device for preventing small animals from climbing on a transformer according to claim 1, characterized in that, A connecting sliding groove (301) is opened at the central position on one side of the transformer component (3), and the cross-section of the connecting sliding groove (301) is a quadrilateral structure.
4. The fence device for preventing small animals from climbing on a transformer according to claim 1, characterized in that, The locking member (4) includes a connecting slider (401) and a positioning screw rod (402). The cross-section of the locking member (4) is an annular structure. The connecting slider (401) is fixed to the lower end of the locking member (4), and the connecting slider (401) extends into the connecting sliding groove (301). The positioning screw rod (402) passes through the connecting slider (401) and is connected to the carrier (2).
5. The fence device for preventing small animals from climbing on a transformer according to claim 4, characterized in that, The connecting frame (5) includes a limiting hole groove (403), a connecting screw rod (501), a connecting nut (502), an extension plate (503) and a solar collection assembly (504). The limiting hole grooves (403) are uniformly opened inside the locking member (4). The connecting screw rod (501) is fixed to the lower end of the connecting frame (5). The connecting nut (502) is threadedly connected to the outer surface of the connecting screw rod (501) and is located at the lower end of the locking member (4). The extension plate (503) is fixed to the upper end surface of the connecting frame (5), and the solar collection assembly (504) is fixed to the upper end of the extension plate (503).
6. The fence device for preventing small animals from climbing on a transformer according to claim 1, wherein, The connecting sleeve (7) includes a first connecting clamping plate (701), a second connecting clamping plate (702), a positioning groove (703), a positioning convex block (704) and a positioning bolt (706). The first connecting clamping plate (701) and the second connecting clamping plate (702) are slidably clamped on the outer side of the carrier (2), and the first connecting clamping plate (701) and the second connecting clamping plate (702) are of an arc-shaped structure and are clamped with the carrier (2). The positioning groove (703) is opened on the inner sides of the first connecting clamping plate (701) and the second connecting clamping plate (702). The positioning convex block (704) is fixed on the outer side of the carrier (2) and is clamped with the positioning groove (703). The positioning bolt (706) passes through the first connecting clamping plate (701) and the second connecting clamping plate (702) and is connected with the carrier (2).
7. The fence device for preventing small animals from climbing on a transformer according to claim 6, characterized in that, Anti-slip pads (705) are fixed on the inner walls of the first connecting clamping plate (701) and the second connecting clamping plate (702), and the inner walls of the anti-slip pads (705) are in contact with the wire rod member (1). The cross-section of the anti-slip pad (705) is of a trapezoidal structure.
8. A fence device for preventing small animals from climbing on a transformer according to claim 7, characterized in that, The driving chamber (8) includes a micro motor (801), a worm member (802), a first linkage gear (803), a second linkage gear (804), a first connecting rod (805) and a second connecting rod (806). The micro motor (801) is arranged inside the driving chamber (8). The worm member (802) is fixed to the output end of the micro motor (801). The first linkage gear (803) is meshed and connected to the outer side of the worm member (802). The second linkage gear (804) is meshed and connected to one side of the worm member (802). The first connecting rod (805) is rotatably connected to the outer side of the first linkage gear (803). The second connecting rod (806) is rotatably connected to the other side of the second linkage gear (804), and the length of the second connecting rod (806) is less than that of the first connecting rod (805). The other ends of the first connecting rod (805) and the second connecting rod (806) are rotatably connected to a connecting plate (9).
9. The fence device for preventing small animals from climbing on a transformer according to claim 8, characterized in that, The connecting plate (9) includes a connecting hole (901) and a power grid member (902). The connecting hole (901) is opened at the central position of the connecting plate (9). When the two groups of connecting plates (9) are combined, the connecting hole (901) is clamped with the outer surface of the wire rod member (1). The power grid member (902) is arranged at the lower end of the connecting plate (9).
10. A fence device for preventing small animals from climbing on a transformer according to claim 9, characterized in that, The two groups of connecting plates (9) can be combined and are arranged with a fan-shaped cross-section.
Citation Information
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