A bird repellent quick loading tool

By designing a quick loading tool for bird scarers and utilizing a movable base and automated lifting components, the problem of bird scarer installation requiring high-altitude and long-distance operation is solved, achieving a safe and efficient installation process.

CN118790911BActive Publication Date: 2025-09-12MAANSHAN POWER SUPPLY COMPANY STATE GRID ANHUI ELECTRIC POWER
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Patent Information

Application Number
CN202410982818.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-09-12
Estimated Expiration
2044-07-22

AI Technical Summary

Technical Problem

Existing bird scarer installation equipment requires high-altitude operation and is difficult to achieve by manual operation from a distance, posing safety risks and low operating efficiency.

Method used

A quick loading tool for bird scarers has been designed, which includes a movable base, a lifting assembly, a U-shaped block, a pushing body, a locking wire and a twisting device. The stable installation of the bird scarer is achieved through the lifting of the entire machine and automated operation, avoiding manual climbing.

Benefits of technology

The bird repeller can be installed quickly and stably, thus avoiding potential safety hazards during high-altitude operations and improving operational efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a bird repeller quick loading tool, which relates to the technical field of bird repeller installation. The bird repeller quick loading tool comprises a movable base, a first lifting assembly, a second lifting assembly, a pushing platform, an action platform, a U-shaped block, a pushing body, a locking steel wire, a twisting device and a lifting assembly. The bird repeller quick loading tool locks a receiving box of the bird repeller on a channel steel by raising the entire machine, and does not require manual climbing for installation, thereby avoiding the tediousness caused by the need to cut off power to the power grid to install the bird repeller, effectively speeding up the loading speed. Moreover, after the entire machine is raised, the installation operation can be automatically carried out, avoiding the inconvenience of remote operation by workers, and has strong practicality.
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Description

Technical Field

[0001] The invention relates to the technical field of bird repeller installation, and in particular to a bird repeller quick loading tool. Background Art

[0002] With the improvement of the ecological environment, birds are increasingly active around transmission lines, and the frequency of overhead line faults caused by bird activities has increased significantly. Bird-related faults on substation lines can be further divided into bird nests, bird droppings, bird body short circuits, and bird pecking. The most common of these is bird droppings, which are mainly caused by large birds defecating while staying above insulators, causing flashover on the insulator surface and short circuiting of the line, which has brought many inconveniences to the majority of users. In order to improve the protection effect, bird prevention measures are needed.

[0003] In the existing technology, photoelectric, sound wave, radar and other methods are generally used to repel birds. Such bird repellent equipment is generally installed on the power channel steel that arranges the insulators of the transmission line. The channel steel is located at a high position and is conductive. Therefore, when installing the bird repellent equipment, it is generally necessary to turn off the power first and then the workers climb up to load it.

[0004] A search revealed that patent publication number CN207542675U proposes a high-voltage bird repellent installation device. This device welds the steel head of a zero-gram rod (insulating rod) to a socket wrench, creating an insulating rod that serves as the handle for the operating tool. This allows the operator to install the bird repellent remotely without having to physically approach the repellent's fixing screws. Using this tool, the installer simply needs to climb the zero-gram rod to a position where it can reach the crossarm to install the bird repellent without power outages. The high-voltage bird repellent installation device also includes a screw hole arrangement at the bottom of the U-shaped slot of the bird repellent. The two screw holes at the bottom of the U-shaped slot rotate in opposite directions. Using these opposite screw holes, combined with the arrangement of two socket wrenches, it is convenient to simultaneously tighten the bolts in these two screw holes. However, this device requires constant climbing, and even after climbing, the high voltage can still suddenly pose a hazard to the operator. Furthermore, manually tightening the bolts from a distance is ineffective for the operator. Summary of the Invention

[0005] In view of the technical defects existing in the above-mentioned background technology, the present invention provides a bird scarer quick loading tool, which solves the problem that the installation of the bird scarer always requires high-altitude operation and the long-distance manual operation is difficult to achieve.

[0006] In order to achieve the above-mentioned object of the invention, the present invention provides the following technical solutions:

[0007] The present invention provides a bird repeller quick loading tool, which is used to install the bird repeller on a channel steel on which insulators are arranged on a transmission line. The tool comprises:

[0008] Removable base;

[0009] A first lifting assembly and a second lifting assembly are respectively arranged on both sides above the movable base, wherein a pushing platform is fixed on the top surface of the first lifting assembly, and an action platform is fixed on the top surface of the second lifting assembly;

[0010] A U-shaped card block is placed on the pushing platform, and a receiving box for receiving the bird repellent is installed above the U-shaped card block;

[0011] A pushing body, which is mounted on the pushing platform and is used to push the U-shaped clamping block to be clamped on the outside of the channel steel;

[0012] Locking wires, at least two pairs of which are fixed to the upper and lower ends of the U-shaped block respectively;

[0013] The twisting device is installed on the top surface of the action platform and is used to twist the corresponding pairs of locking steel wires into one.

[0014] Furthermore, the U-shaped card block includes a U-shaped card block plate a located on the top surface of the pushing platform and a U-shaped card block plate b located above the U-shaped card block plate a. The top surface of the U-shaped card block plate a away from the locking wire is respectively fixed with columns passing through the U-shaped card block plate b. The columns are provided with positioning pads on the top, and the receiving box is fixed on the positioning pads.

[0015] A slot for the slot steel to be inserted into the middle of the lower surface of the U-shaped card block plate b is provided, and a hollow portion is provided in the position corresponding to the column in the U-shaped card block plate b. A pin is fixed to the column, and the U-shaped card block plate b is rotatably arranged on the pin;

[0016] The outer sleeve of the column is provided with a reset spring, and the reset spring is located between the U-shaped block plate b and the U-shaped block plate a, and is used to reset the rotation of the U-shaped block plate b. A support spring is installed between the top surface of the U-shaped block plate b and the positioning pad.

[0017] Furthermore, the pushing body includes a guide groove a opened in the middle of the top surface of the pushing platform, a pushing screw installed inside the guide groove a through a bearing, a pushing plate threadedly connected to the pushing screw, and a pushing motor installed at one end of the pushing platform for driving the pushing screw to rotate, and the pushing plate is used to push the U-shaped block plate a.

[0018] Furthermore, limiting side plates are respectively provided on both sides of the upper surface of the pushing platform, and the U-shaped block limit is provided between the two limiting side plates; an interlocking groove a is provided on the lower surface of the pushing platform close to the action platform, and an interlocking groove b is provided on the top surface of the action platform close to the pushing platform to match the interlocking groove a.

[0019] Furthermore, the twisting device comprises:

[0020] A twisting assembly, located above the action platform, for rotating and twisting corresponding pairs of locking wires above and below;

[0021] A clamping assembly is mounted on a side of the upper surface of the action platform away from the pushing platform, and a twisting assembly is mounted on the action end of the clamping assembly. The clamping assembly is used to drive the twisting assembly to clamp a pair of locking wires corresponding to the upper and lower parts;

[0022] The moving assembly can drive the clamping assembly to move on the action platform to twist each pair of locking wires.

[0023] Furthermore, the twisting assembly includes arc-shaped pressing blocks correspondingly arranged above and below, external teeth located on the arc surface of each pressing block, pinions engaged with both sides of each external teeth, a minor arc shell arranged outside the pressing block, and an arc-shaped slider fixed to one side of the pressing block, the inner surface of the minor arc shell is provided with an arc-shaped slide groove for the arc-shaped slider to rotate, the arc-shaped slider is arranged in the arc-shaped slide groove, and the clamping assembly is equipped with a driving structure for driving the pinions to rotate;

[0024] The clamping assembly drives the two inferior arc shells to move relative to or towards each other;

[0025] The pinion is rotatably mounted on the inferior arc housing via a positioning shaft;

[0026] The driving structure includes a turbine fixed to one end of the positioning shaft, a cavity worm engaged with one side of the turbine, a limiting rotating shaft passing through two vertically corresponding cavity worms, and a pulley structure for driving the two limiting rotating shafts to rotate;

[0027] The limiting shaft passes through the inferior arc shell, and a guide cylinder capable of guiding the limiting shaft is provided at a position corresponding to the limiting shaft on the inner surface of the inferior arc shell, and the limiting shaft and the guide cylinder are clearance-matched, and one end of the cavity worm gear close to the guide cylinder is connected to the guide cylinder bearing through a positioning ring, so that the guide cylinder drives the cavity worm gear to move, and the cavity worm gear can rotate on the guide cylinder.

[0028] Furthermore, the clamping assembly includes a mounting housing located above the action platform, a bidirectional screw mounted vertically inside the mounting housing, a clamping nut symmetrically threadedly connected to the bidirectional screw, a mounting handle fixed to one side of the clamping nut, and a clamping motor mounted on the top of the mounting housing for driving the bidirectional screw to rotate;

[0029] The inferior arc housing is fixed to the corresponding mounting handle;

[0030] The moving assembly includes a slideway b provided on the top surface of the action platform, a moving screw rotatably installed in the slideway b, a moving motor installed at one end of the action platform for driving the moving screw to rotate, and a moving nut threadedly connected to the moving screw;

[0031] The mounting shell is fixedly connected to the top of the moving nut.

[0032] Furthermore, it also includes a lifting assembly installed on one side of the action platform, which is used to lift the bird repeller into the storage box. The lifting assembly includes a lifting motor installed on the side of the action platform away from the pushing platform, a lifting wire wrapped around the power output end of the lifting motor, and a hook installed at the lower end of the lifting wire.

[0033] Furthermore, the first lifting assembly includes at least two lifting columns arranged side by side, and the two adjacent lifting columns are slidably connected, and the upper and lower ends of the lifting columns are rotatably installed with guide wheels, and a pull rope is wrapped in a wave shape between the guide wheels, and a pull rope winding motor for retracting and unwinding the pull rope is fixed inside the movable base.

[0034] Furthermore, a limiting slider is provided on one side of the lifting column, and a limiting sliding groove is provided on the other side, and two adjacent lifting columns are slidably connected via the limiting slider and the limiting sliding groove.

[0035] Compared with the prior art, the bird repellent quick loading tool of the present invention has the following beneficial effects:

[0036] (1) The bird repeller quick loading tool of the present invention can lock the bird repeller container box on the channel steel by raising the whole machine, without the need for manual climbing for installation, thus avoiding the tediousness caused by the need to cut off the power grid to install the bird repeller, speeding up the loading speed, and the tool can automatically perform the installation operation after the whole machine is raised, avoiding the inconvenience of remote operation by the staff.

[0037] (2) The bird repellent quick loading tool of the present invention performs primary positioning by setting a U-shaped card block to be clamped on the channel steel, and locks the U-shaped card block for a second time by twisting the locking wire, thereby meeting the installation stability of the U-shaped card block and ensuring the stability of the bird repellent.

[0038] (3) The bird repellent quick loading tool of the present invention pushes the U-shaped block through the pushing platform and the pushing structure above the pushing platform, so that the U-shaped block can be conveniently initially stuck on the channel steel.

[0039] (4) The bird repeller quick loading tool of the present invention can twist the locking wire by setting a twisting device, which can meet the automatic twisting of the locking wire by the equipment and make retraction convenient.

[0040] (5) The bird-repellent quick loading tool of the present invention is provided with a slot on the U-shaped block and a reset spring is sleeved on the outside of the column, so that after the U-shaped block plate b rotates, the reset spring is deformed. After the U-shaped block plate b loses the upward force of the channel steel, the reset spring can drive the U-shaped block plate b to reset and restore it to a horizontal state, thereby satisfying another locking of the U-shaped block in the horizontal direction.

[0041] It should be noted that the implementation of any solution of the present invention does not necessarily require all the advantages described above to be achieved at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] Figure 1 It is a schematic diagram of the structure of the present invention;

[0043] Figure 2 This is a schematic diagram of the structure of the present invention in which both lifting assemblies are raised;

[0044] Figure 3 This is a schematic diagram of the internal structure of the push platform of the present invention;

[0045] Figure 4 This is a schematic diagram of the U-shaped card block of the present invention being located on the pushing platform;

[0046] Figure 5 This is a structural diagram of the push subject of the present invention;

[0047] Figure 6 This is a structural diagram of a U-shaped block position of the present invention;

[0048] Figure 7 Schematic diagram of the internal structure of the lifting assembly of the present invention;

[0049] Figure 8 A partial view of the lifting column of the present invention;

[0050] Figure 9 Schematic diagram of the structure of the action platform of the present invention;

[0051] Figure 10 This is a diagram showing a state in which the locking wire of the twisted assembly of the present invention is released;

[0052] Figure 11 This is a diagram showing the state of the twisted assembly of the present invention compressing and locking the steel wire;

[0053] Figure 12 for Figure 11 A partial diagram of .

[0054] Figure 13 This is a schematic diagram of the structure of the housing without the clamping assembly being assembled;

[0055] Figure 14 It is a structural diagram of the mobile component;

[0056] Figure 15 This is the main view of the first state when the U-shaped block is initially close to the channel steel;

[0057] Figure 16 This is the main view of the second state where the U-shaped block is initially close to the channel steel;

[0058] Figure 17 This is the main view of the U-shaped clamping block in the third state of initial approach to the channel steel;

[0059] Figure 18 This is the main view of the U-shaped block in the fourth state of initial approach to the channel steel.

[0060] In the figure: 1. movable base; 2. first lifting assembly; 201. lifting column; 202. guide wheel; 203. pull rope; 204. limit slider; 205. limit slide; 3. second lifting assembly; 4. action platform; 41. fitting groove b; 5. clamping assembly; 51. mounting shell; 52. clamping motor; 53. mounting handle; 54. clamping nut; 55. bidirectional screw rod; 6. lifting assembly; 61. lifting motor; 62. lifting wire; 63. hook; 7. pushing platform; 71. limit side plate; 72. fitting groove a; 8. locking wire; 10. receiving box; 101. positioning pad; 11. U-shaped block plate b; 111. card slot; 112. hollow part; 12. U-shaped Block plate a; 13. Pushing body; 131. Pushing motor; 132. Pushing plate; 133. Pushing screw; 134. Guide groove a; 14. Support spring; 15. Column; 16. Return spring; 17. Pin shaft; 18. Pull rope winding motor; 19. Twisted component; 191. Inferior arc housing; 1911. Guide cylinder; 192. Pressing block; 1921. External tooth portion; 193. Pinion; 194. Arc slider; 195. Turbine; 196. Positioning ring; 197. Positioning shaft; 198. Limiting shaft; 199. Cavity worm; 21. Moving component; 211. Moving motor; 212. Moving nut; 213. Moving screw; 214. Slide groove b; 22. Channel steel. DETAILED DESCRIPTION

[0061] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Unless otherwise defined, the technical terms or scientific terms used herein should be the common meanings understood by people with ordinary skills in the field to which the present disclosure belongs. The terms "upper", "lower", "left", "right", "front", "back", etc. used in the patent application specification and claims of this disclosure are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship also changes accordingly; "connected" or "connected" and similar words are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. The parts not described in detail in the present invention are all common knowledge to those skilled in the art.

[0062] Please refer to Figure 1-3 , this invention please refer to Figure 1 and Figure 2 As shown, an embodiment of the present invention provides a technical solution: a bird repeller quick loading tool, comprising a movable base 1, which serves as a carrier of the entire device. Preferably, walking wheels are provided at the bottom of the movable base 1 to improve the portability of the device. The movable base 1 is preferably made of an insulating material, such as a stone notice, so that it can be both insulated and counterweighted.

[0063] Reference Figure 1 and Figure 2 As shown, the bird repeller quick loading tool further includes: a first lifting assembly 2, a second lifting assembly 3, a U-shaped block, a pushing body 13, a locking wire 8, a twisting device and a lifting assembly 6, etc.

[0064] The first lifting assembly 2 and the second lifting assembly 3 are respectively arranged on both sides above the movable base 1. The movement of the movable base 1 drives the first lifting assembly 2 and the second lifting assembly 3 to move. A pushing platform 7 is fixed on the top surface of the first lifting assembly 2, and an action platform 4 is fixed on the top surface of the second lifting assembly 3. That is, the first lifting assembly 2 here can realize the lifting of the pushing platform 7, and the second lifting assembly 3 can drive the action platform 4 to rise, so that the pushing platform 7 and the action platform 4 can both reach the height corresponding to the channel steel 22 to facilitate the loading operation of the bird repeller on the channel steel. The pushing platform 7 and the action platform 4 are preferably made of insulating materials, such as plastic materials.

[0065] like Figure 4As shown, the U-shaped block is directly placed on the pushing platform 7, so that when the pushing platform 7 is lifted and lowered with the first lifting assembly 2, the U-shaped block can also be raised to the position corresponding to the channel steel. In order to facilitate the direct installation of the bird repeller, a receiving box 10 is installed above the U-shaped block. The receiving box 10 can accommodate the bird repeller, and the bird repeller is directly limited by the receiving box 10, avoiding the rigid connection of the bird repeller.

[0066] like Figure 3 and Figure 4 As shown, the pushing body 13 is installed on the pushing platform 7. The pushing body 13 can push the U-shaped block to be stuck outside the channel steel, so that the U-shaped block can be initially positioned outside the channel steel to achieve initial locking of the U-shaped block.

[0067] In this embodiment, it is preferred that an integrated limiting side plate 71 is provided on both sides of the moving direction of the U-shaped block on the upper surface of the pushing platform 7, so that the limiting side plate 71 can limit the moving direction of the U-shaped block so that it can only move along the pushing direction of the pushing body 13.

[0068] Combine Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The locking wire 8 is fixed at least twice, respectively, at both ends of the U-shaped block near the corners, and is preferably preset on the U-shaped block by welding.

[0069] The twisting device is installed on the top surface of the action platform 4. When the twisting device is working, it can twist the corresponding pairs of locking wires 8 into one, thereby realizing the secondary locking of the U-shaped block on the outside of the channel steel, and the locking effect is good.

[0070] In order to ensure that the twisting height of the twisting device corresponds to the pushing height of the pushing platform 7, an interlocking groove a72 is preset on the side of the lower surface of the pushing platform 7 close to the action platform 4, and an interlocking groove b41 that cooperates with the interlocking groove a72 is preset on the side of the top surface of the action platform 4 close to the pushing platform 7. When the action platform 4 is raised to the point where the interlocking groove a72 corresponds to the interlocking groove b41, the action platform 4 is in the raised height state, and the twisting height is the set height.

[0071] like Figure 1 、 Figure 2 and Figure 9 As shown, the lifting assembly 6 is installed on one side of the action platform 4. The lifting assembly 6 is used to lift the bird repeller into the storage box 10, so that the bird repeller is lifted by the lifting assembly 6, and then the lifting assembly 6 is driven by the movable base 1 to move the bird repeller to the corresponding position of the storage box 10, and then the bird repeller is placed inside the storage box 10 to achieve the installation of the bird repeller.

[0072] Combine Figure 4 and Figure 6 As shown, specifically, the U-shaped card block here includes a U-shaped card block plate a12 located on the top surface of the pushing platform 7 and a U-shaped card block plate b11 located above the U-shaped card block plate a12. The U-shaped card block plate a12 and the U-shaped card block plate b11 form two sides of the U-shaped card. A column 15 that can pass through the U-shaped card block plate b11 is fixed on the top surface of the U-shaped card block plate a12 away from the locking wire 8. The column 15 serves as one end of the arc of the U, so that the U-shaped card block plate a12, the U-shaped card block plate b11 and the column 15 are connected. A U-shape is formed; a positioning plate 101 is fixed between the column 15 and the accommodating box 10, where the positioning plate 101 can be integrally formed with the column 15, and the positioning plate 101 and the accommodating box 10 are locked with bolts, thereby facilitating the position locking of the accommodating box 10, and when the pushing body 13 pushes the U-shaped block, the U-shaped block can gradually approach the channel steel, and thus the channel steel can reach between the U-shaped block plate a12 and the U-shaped block plate b11, so that the U-shaped block can be initially stuck on the channel steel.

[0073] Combine Figures 15-18 As shown, in this embodiment, a slot 111 for inserting the channel steel is provided in the middle of the lower surface of the U-shaped block plate b11, and a hollow portion 112 is provided in the position corresponding to the column 15 in the U-shaped block plate b11. A pin shaft 17 is fixed to the column 15, and the U-shaped block plate b11 can rotate on the pin shaft 17. As a result, when the U-shaped block plate a12 and the U-shaped block plate b11 gradually approach the channel steel, the channel steel can push the U-shaped block plate b11 to rotate along the pin shaft 17, that is, the U-shaped block plate b11 opens until the channel steel reaches the inside of the slot 111, thereby realizing that the channel steel is limited in the horizontal direction of the U-shaped block plate b11 and the U-shaped block plate a12.

[0074] Continue to refer to Figures 15-18 In order to ensure that the U-shaped block plate b11 can automatically restore to a horizontal state after the channel steel is inserted into the slot 111, a return spring 16 is provided on the outside of the column 15, and the return spring 16 is located between the U-shaped block plate b11 and the U-shaped block plate a12 to reset the rotation of the U-shaped block plate b11. Therefore, after the U-shaped block plate b11 rotates, the return spring 16 is deformed, and after the U-shaped block plate b11 loses the upper force of the channel steel, the return spring 16 can drive the U-shaped block plate b11 to reset and restore it to a horizontal state. A support spring 14 is installed between the top surface of the U-shaped block plate b11 and the positioning pad 101 to support the accommodating box 10 and make it more stable.

[0075] Reference Figure 3 、 Figure 4 and Figure 5As shown, specifically, the pushing body 13 includes a guide groove a134 opened in the middle of the top surface of the pushing platform 7, a pushing screw 133 installed in the guide groove a134 through a bearing, a pushing plate 132 threadedly connected to the pushing screw 133, and a pushing motor 131 installed at one end of the pushing platform 7 for driving the pushing screw 133 to rotate. The pushing plate 132 can push the U-shaped block plate a12, so that when the pushing motor 131 is working, it can drive the pushing screw 133 to rotate, and then push the screw 133 and the pushing plate 132 to generate a threaded force, so that the pushing plate 132 is displaced. When the pushing plate 132 is close to the U-shaped block, it can push the U-shaped block to meet the engagement between the U-shaped block and the channel steel.

[0076] like Figure 9 Specifically, the twisting device in this embodiment includes: a twisting assembly 19, a clamping assembly 5 and a moving assembly 21; the twisting assembly 19 is located above the action platform 4, and the twisting assembly 19 can rotate to twist a pair of corresponding locking steel wires 8 above and below; the clamping assembly 5 is installed on the upper surface of the action platform 4 away from the pushing platform 7, and the twisting assembly 19 is installed at the action end of the clamping assembly 5. The clamping assembly 5 can drive the twisting assembly 19 to clamp the pair of corresponding locking steel wires 8 above and below; the moving assembly 21 can drive the clamping assembly 5 to move on the action platform 4 to twist another pair of locking steel wires 8.

[0077] In this embodiment, the twisting assembly 19 should be used to clamp a pair of locking steel wires 8 through the clamping assembly 5, and then the twisting assembly 19 is rotated to twist the pair of locking steel wires 8. After the twisting is completed, the moving assembly 21 drives the twisting assembly 19 and the clamping assembly 5 to move to the position of another pair of locking steel wires 8, thereby twisting another pair of locking steel wires 8. The two sides are twisted to achieve a stronger locking force.

[0078] like Figure 2 as well as Figures 9-12As shown, specifically, the twisting assembly 19 includes an arc-shaped pressing block 192 corresponding to each other and capable of pressing a group of locking wires 8 when closed, an outer tooth portion 1921 located on the arc surface of each pressing block 192, a small gear 193 engaged on both sides of the outer tooth portion 1921 and used to drive the pressing block 192 to rotate through the outer tooth portion 1921, a minor arc housing 191 provided on the outside of the pressing block 192 for mounting the pressing block 192 and the small gear 193, and an arc-shaped slider 194 fixed to one side of the pressing block 192, and an arc-shaped slider 194 is fixed on the inner surface of the minor arc housing 191. shaped slot, so that when the arc pressing block 192 rotates, the arc slider 194 can rotate inside the arc slot to play a role of limiting guidance. Here, the upper arc pressing block 192 and the arc slider 194 can rotate to the lower side along the arc slot, and conversely, the lower arc pressing block 192 and the arc slider 194 can rotate to the upper side along the arc slot, thereby realizing the twisting of the locking wire 8; a driving structure that can drive each pinion 193 to rotate is installed on the clamping assembly 5, so that the pinion 193 drives the pressing block 192 to rotate through the external tooth portion 1921.

[0079] The clamping assembly 5 in this embodiment drives the two inferior arc housings 191 to move relative to or toward each other, so as to tighten a pair of locking wires 8 or loosen a pair of locking wires 8 that have been twisted when the two inferior arc housings 191 approach each other.

[0080] Combine Figure 11 Specifically, the pinion 193 is rotatably mounted on the inferior arc housing 191 through the positioning shaft 197, so that when the clamping assembly 5 drives the inferior arc housing 191 to move, the pinion 193 can move together with the inferior arc housing 191, thereby satisfying the purpose of the pinion 193 always being engaged with the external tooth portion 1921; the driving structure here includes a turbine 195 fixed to one end of the positioning shaft 197, a cavity worm 199 engaged on one side of the turbine 195, a limiting shaft 198 passing through two corresponding cavity worms 199 vertically, and a pulley structure for driving the two limiting shafts 198 to rotate. The pulley structure can make the two limiting shafts 198 drive the corresponding cavity worms 199 to rotate at the same time, thereby realizing the rotation of each turbine 195, and the turbine 195 can realize the rotation of each pinion 193 by means of the positioning shaft 197.

[0081] In order to meet the requirement that the cavity worm 199 can also drive the corresponding turbine 195 to rotate when the pinion 193 is lifted and lowered, the limiting shaft 198 is preferably a polygonal structure, preferably a hexagonal structure, and its upper and lower ends pass through the corresponding inferior arc shell 191. The inner surface of the inferior arc shell 191 and the position corresponding to the limiting shaft 198 are provided with a guide cylinder 1911 that can guide the limiting shaft 198, so that when the inferior arc shell 191 is displaced, the guide cylinder 1911 is displaced along with it, and the limiting shaft 198 here is in a relatively immovable state, so the inferior arc shell 191 can move along the limiting shaft 198. The limiting shaft 198 moves in the direction of the limiting rotation shaft 198. It is preferred that the limiting rotation shaft 198 here is clearance-matched with the guide cylinder 1911, so as to avoid excessive wear between the limiting rotation shaft 198 and the guide cylinder 1911 when the cavity worm 199 is driven to rotate together. In order to enable the cavity worm 199 to move together with the inferior arc housing 191, the end of the cavity worm 199 close to the guide cylinder 1911 is connected to the guide cylinder 1911 bearing through a positioning ring 196, so that the guide cylinder 1911 drives the cavity worm 199 to move, and the cavity worm 199 can rotate on the guide cylinder 1911.

[0082] Combine Figure 9 、 Figure 10 、 Figure 11 and Figure 13 Specifically, in this embodiment, the clamping assembly 5 includes a mounting shell 51 located above the action platform 4, a bidirectional screw rod 55 mounted inside the mounting shell 51 and rotating in a vertical direction, a clamping nut 54 symmetrically threaded on the bidirectional screw rod 55, a mounting handle 53 fixed on one side of the clamping nut 54, and a clamping motor 52 mounted on the top of the mounting shell 51 for driving the bidirectional screw rod 55 to rotate. Preferably, the inferior arc shell 191 is fixed on the corresponding mounting handle 53, so that when the clamping motor 52 is working, the bidirectional screw rod 55 can generate threaded force with the corresponding clamping nut 54, and then the two clamping nuts 54 can approach or move away from each other. When the two are close to each other, the two mounting handles 53 can enable the two inferior arc shells 191 to clamp the locking wire 8, and when the two are away from each other, the two mounting handles 53 can enable the two inferior arc shells 191 to loosen the locking wire 8.

[0083] like Figure 9 and Figure 14 As shown, specifically, the moving component 21 includes a slide groove b214 opened on the top surface of the action platform 4, a moving screw rod 213 rotatably installed inside the slide groove b214, a moving motor 211 installed at one end of the action platform 4 for driving the moving screw rod 213 to rotate, and a moving nut 212 threadedly connected to the moving screw rod 213, and the mounting shell 51 is fixed to the top of the moving nut 212.

[0084] In this embodiment, the rotating force of the moving motor 211 is used to make the moving screw 213 drive the moving nut 212 to move, thereby achieving the displacement of the installation housing 51, and meeting the purpose of the installation housing 51 driving the twisting assembly 19 to move.

[0085] Reference Figure 9 Specifically, the lifting assembly 6 includes a lifting motor 61 installed on the side of the action platform 4 away from the pushing platform 7, a lifting wire 62 wound around the power output end of the lifting motor 61, and a hook 63 installed at the lower end of the lifting wire 62; in this embodiment, the bird repeller can be hung on the hook 63, and the bird repeller on the hook 63 can be lifted by winding the lifting wire 62 by the lifting motor 61, and then the bird repeller can be placed inside the storage box 10.

[0086] like Figure 1 、 Figure 2 and Figure 7 As shown, specifically, the first lifting assembly 2 here includes at least two lifting columns 201 arranged side by side, and the two adjacent lifting columns 201 are slidably connected, and the upper and lower ends of the internal parts of the lifting columns 201 are rotatably installed with guide wheels 202, and a pull rope 203 is wound in a wave shape between the guide wheels 202, and a pull rope winding motor 18 for winding and unwinding the pull rope 203 is fixed inside the movable base 1; in this embodiment, when the pull rope winding motor 18 winds the pull rope 203, the pull rope 203 can lift each lifting column 201, so that each lifting column 201 is gradually raised until it reaches the required height, on the contrary, when the pull rope winding motor 18 unwinds the pull rope 203, each lifting column 201 loses the pulling force of the pull rope 203, and it falls automatically.

[0087] like Figure 7 and Figure 8 As shown, in order to meet the vertical lifting of the lifting column 201, a limit slider 204 is set on one side of the lifting column 201, and a limit slot 205 is set on the other side, so that the adjacent limit sliders 204 can slide inside the corresponding limit slot 205 to meet the lifting of the lifting column 201 (the structure of the second lifting component 3 is the same as that of the first lifting component 2, which will not be repeated here).

[0088] Each motor that needs to be controlled in the above structure can be driven by wireless remote control, which makes it convenient for workers to operate.

[0089] When in use (working):

[0090] Initial locking: First, move the device to the bottom of the channel steel 22, place the U-shaped block and the storage box 10 above it on the upper surface of the pushing platform 7, and use the rope winding motor 18 in the first lifting assembly 2 to wind the rope 203. The rope 203 can lift each lifting column 201, so that each lifting column 201 is gradually raised until the pushing platform 7 reaches the height of the channel steel. At this time, the pushing motor 131 can drive the pushing screw 133 to rotate, and then push the screw 133 and the pushing plate 132 to generate a threaded force, so that the pushing plate 132 is displaced. When the pushing plate 132 pushes the U-shaped block, the U-shaped block gradually approaches the channel steel. When the U-shaped block plate a12 and the U-shaped block plate b11 gradually approach the channel steel, the channel steel can push the U-shaped block plate b11 to rotate along the pin shaft 17, and the return spring 16 is deformed, that is, the U-shaped block plate b11 opens until the channel steel reaches the inside of the card slot 111, thereby realizing that the channel steel is limited in the horizontal direction of the U-shaped block plate b11 and the U-shaped block plate a12, and then the U-shaped block plate b11 loses the upward lifting force of the channel steel, and the return spring 16 can drive the U-shaped block plate b11 to reset and restore it to a horizontal state. A support spring 14 is installed between the top surface of the U-shaped block plate b11 and the positioning pad 101 to support the accommodating box 10 to make it more stable.

[0091] Secondary locking: The pull rope 203 is wound by the pull rope winding motor 18 in the second lifting component 3, and the pull rope 203 can lift each lifting column 201, so that each lifting column 201 is gradually raised until the action platform 4 is raised to the corresponding fitting groove a72 and the fitting groove b41, that is, the action platform 4 is in the raised height position. At this time, the clamping component 5 is driven to work, and when the clamping motor 52 is working, the bidirectional screw rod 55 can generate thread force with the corresponding clamping nut 54, so that the two clamping nuts 54 can approach each other. When the two are close to each other, the two mounting handles 53 can make the two inferior arc shells 191 approach each other, so that the two pressing blocks 192 can press a stack of locking wires 8 , by driving the two limiting rotating shafts 198 to rotate, the corresponding cavity worm 199 is driven to rotate, and when the cavity worm 199 rotates, the turbine 195 is driven to rotate, and then the rotation of the pinion 193 is realized by the action of the positioning shaft 197, so that the pinion 193 can drive the pressing block 192 to rotate through the external tooth portion 1921. When the two pressing blocks 192 rotate, the locking wire 8 between the two can be twisted. After the twisting is completed, the clamping assembly 5 drives the two mounting handles 53 away from each other, so that the inferior arc housing 191 drives the corresponding pressing block 192, the pinion 193, the turbine 195 and the cavity worm 199 to move along the limiting rotating shaft 198 (that is, from Figure 11 Status to Figure 10At this time, the rotating force of the moving motor 211 causes the moving screw 213 to drive the moving nut 212 to move, thereby realizing the displacement of the mounting housing 51, so that the mounting housing 51 drives the twisting assembly 19 to move to the position of another set of locking wires 8 to perform the next twisting operation.

[0092] The above process can lock the U-shaped block and the accommodating box 10 on the channel steel, and then hang the bird repellent on the hook 63. The lifting wire 62 is wound by the lifting motor 61 to lift the bird repellent on the hook 63. Then, the movable base 1 drives the lifting assembly 6 to move the bird repellent to the corresponding position of the accommodating box 10. The bird repellent is then placed inside the accommodating box 10 to complete the installation of the bird repellent.

Claims

1. A bird repeller quick loading tool for installing the bird repeller on the channel steel where the insulators are arranged on the transmission line, characterized in that: include: Removable base (1); A first lifting assembly (2) and a second lifting assembly (3) are respectively arranged on both sides above the movable base (1), a pushing platform (7) is fixed on the top surface of the first lifting assembly (2), and an action platform (4) is fixed on the top surface of the second lifting assembly (3); A U-shaped card block, the U-shaped card block being placed on the pushing platform (7), and a receiving box (10) for receiving the bird repellent being installed above the U-shaped card block; A pushing body (13), the pushing body (13) being mounted on the pushing platform (7) and used to push the U-shaped clamping block to be clamped on the outside of the channel steel; Locking steel wires (8), at least two pairs of locking steel wires (8), fixed to the upper and lower ends of the U-shaped block respectively; A twisting device, the twisting device being mounted on the top surface of the action platform (4) and being used to twist the corresponding pairs of locking steel wires (8) into one piece; The U-shaped card block comprises a U-shaped card block plate a (12) located on the top surface of the pushing platform (7) and a U-shaped card block plate b (11) located above the U-shaped card block plate a (12), and columns (15) passing through the U-shaped card block plate b (11) are fixed on both sides of the top surface of the U-shaped card block plate a (12) away from the locking wire (8), and the columns (15) are provided with a positioning pad (101) on the top, and the accommodating box (10) is fixed on the positioning pad (101); A slot (111) for receiving the slot steel is provided in the middle of the lower surface of the U-shaped block plate b (11), a hollow portion (112) is provided in the U-shaped block plate b (11) at a position corresponding to the column (15), a pin shaft (17) is fixed to the column (15), and the U-shaped block plate b (11) is rotatably mounted on the pin shaft (17); The column (15) is provided with a reset spring (16) on the outside, and the reset spring (16) is located between the U-shaped block plate b (11) and the U-shaped block plate a (12), and is used for rotating and resetting the U-shaped block plate b (11). A support spring (14) is installed between the top surface of the U-shaped block plate b (11) and the positioning pad (101); The twisting device comprises: A twisting assembly (19), the twisting assembly (19) being located above the action platform (4) and being used to rotationally twist the corresponding pairs of locking wires (8) above and below; A clamping assembly (5), wherein the clamping assembly (5) is mounted on a side of the upper surface of the action platform (4) away from the pushing platform (7), and a twisting assembly (19) is mounted on the action end of the clamping assembly (5), and the clamping assembly (5) is used to drive the twisting assembly (19) to clamp a pair of corresponding locking wires (8) above and below; A moving assembly (21) is capable of driving the clamping assembly (5) to move on the action platform (4) to twist each pair of locking wires (8).

2. The bird repellent quick loading tool according to claim 1, characterized in that: The pushing body (13) includes a guide groove a (134) provided in the middle of the top surface of the pushing platform (7), a pushing screw (133) installed in the guide groove a (134) via a bearing, a pushing plate (132) threadedly connected to the pushing screw (133), and a pushing motor (131) installed at one end of the pushing platform (7) for driving the pushing screw (133) to rotate, wherein the pushing plate (132) is used to push the U-shaped block plate a (12).

3. The bird repellent quick loading tool according to claim 2, characterized in that: Limiting side plates (71) are respectively provided on both sides of the upper surface of the pushing platform (7), and the U-shaped clamping block is limitedly provided between the two limiting side plates (71); an engaging groove a (72) is provided on the lower surface of the pushing platform (7) on the side close to the action platform (4), and an engaging groove b (41) adapted to the engaging groove a (72) is provided on the top surface of the action platform (4) on the side close to the pushing platform (7).

4. A bird repellent quick loading tool according to claim 3, characterized in that: The twisting assembly (19) includes arc-shaped pressing blocks (192) correspondingly arranged above and below, external teeth (1921) located on the arc surface of each pressing block (192), small gears (193) engaged on both sides of each external teeth (1921), a minor arc shell (191) arranged outside the pressing block (192), and an arc-shaped slider (194) fixed to one side of the pressing block (192), the inner surface of the minor arc shell (191) is provided with an arc-shaped slide groove for the arc-shaped slider (194) to rotate, the arc-shaped slider (194) is arranged in the arc-shaped slide groove, and the clamping assembly (5) is equipped with a driving structure for driving each small gear (193) to rotate; The clamping assembly (5) drives the two inferior arc housings (191) to move relative to or towards each other; The pinion (193) is rotatably mounted on the inferior arc housing (191) via a positioning shaft (197); The driving structure includes a turbine (195) fixed to one end of a positioning shaft (197), a cavity worm (199) engaged with one side of the turbine (195), a limiting rotating shaft (198) passing through two vertically corresponding cavity worms (199), and a pulley structure for driving the two limiting rotating shafts (198) to rotate; The limiting rotating shaft (198) passes through the inferior arc shell (191), and a guide cylinder (1911) capable of guiding the limiting rotating shaft (198) is provided at a position on the inner surface of the inferior arc shell (191) corresponding to the limiting rotating shaft (198), and the limiting rotating shaft (198) and the guide cylinder (1911) are clearance-matched, and one end of the cavity worm (199) close to the guide cylinder (1911) is connected to the bearing of the guide cylinder (1911) through a positioning ring (196), so that the guide cylinder (1911) drives the cavity worm (199) to move, and the cavity worm (199) can rotate on the guide cylinder (1911).

5. The bird repellent quick loading tool according to claim 4, characterized in that: The clamping assembly (5) includes a mounting housing (51) located above the action platform (4), a bidirectional screw (55) mounted inside the mounting housing (51) and rotatable in a vertical direction, a clamping nut (54) symmetrically threadedly connected to the bidirectional screw (55), a mounting handle (53) fixed to one side of the clamping nut (54), and a clamping motor (52) mounted on the top of the mounting housing (51) for driving the bidirectional screw (55) to rotate; The inferior arc housing (191) is fixed on a corresponding mounting handle (53); The moving assembly (21) includes a chute b (214) provided on the top surface of the action platform (4), a moving screw (213) rotatably mounted inside the chute b (214), a moving motor (211) mounted at one end of the action platform (4) for driving the moving screw (213) to rotate, and a moving nut (212) threadedly connected to the moving screw (213); The mounting housing (51) is fixedly connected to the top of the moving nut (212).

6. The bird repellent quick loading tool according to claim 1, characterized in that: The invention also includes a lifting assembly (6) installed on one side of the action platform (4) for lifting the bird repeller into the accommodating box (10), wherein the lifting assembly (6) includes a lifting motor (61) installed on the side of the action platform (4) away from the pushing platform (7), a lifting wire (62) wound around the power output end of the lifting motor (61), and a hook (63) installed at the lower end of the lifting wire (62).

7. The bird repellent quick loading tool according to claim 1, characterized in that: The first lifting assembly (2) comprises at least two lifting columns (201) arranged side by side, two adjacent lifting columns (201) are slidably connected to each other, and guide wheels (202) are rotatably mounted on the upper and lower ends of the lifting columns (201), a pull rope (203) is wound in a wavy shape between the guide wheels (202), and a pull rope reeling motor (18) for reeling and unreeling the pull rope (203) is fixed inside the movable base (1).

8. The bird repellent quick loading tool according to claim 7, characterized in that: A limiting slider (204) is provided on one side of the lifting column (201), and a limiting chute (205) is provided on the other side. Two adjacent lifting columns (201) are slidably connected via the limiting slider (204) and the limiting chute (205).

Citation Information

Patent Citations

  • High -tension electricity tower drives bird ware installation device

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