Unmanned aerial vehicle installation tool for temperature measurement sensor of power transmission line clamp

By using drones to install fixtures and leveraging the design of clamps and elastic components, the installation of wire clamp temperature sensors can be achieved without high-altitude operations. This solves the problems of installation safety and location limitations, and improves the monitoring range and installation convenience.

CN224045456UActive Publication Date: 2026-03-27YANTAI STATE GRID ZHONGDIAN ELECTRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In the existing technology, the installation of wire clamp temperature sensors requires workers to work at height, which poses safety hazards. Furthermore, there is a risk of electric shock when installing them while they are energized, and the installation location is limited by the availability of workers at height.

Method used

Using drone installation fixtures, the design of clamps and elastic components allows the drone to lift the wire clamp temperature sensor to the detection position and automatically clamp the power transmission line, achieving installation without the need for high-altitude operations.

Benefits of technology

It improves the monitoring range and installation safety of the wire clamp temperature sensor, reduces the risk of working at heights, and the installation process is not affected by the power company's power outage plan, making it suitable for various installation locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a power transmission line clamp temperature measurement sensor unmanned aerial vehicle installation tool which comprises a clamp temperature measurement sensor and at least two sets of clamps used for holding a power transmission line, and further comprises an unmanned aerial vehicle, an installation frame is arranged above the unmanned aerial vehicle, the upper end portion of the installation frame is provided with a containing cavity used for containing the clamp temperature measurement sensor, and the number of the clamps is at least two. The two clamps have the opening posture of being away from each other and the holding posture of being close to each other, in the natural state, the clamps are in the holding posture, at the moment, the wire clamp temperature measuring sensor is in the installation state, limiting pieces in one-to-one correspondence with the clamps are arranged at the upper end of the installation frame, and when the wire clamp temperature measuring sensor is placed in the containing cavity, the limiting pieces are used for limiting the clamps. The installation frame is further provided with a first elastic piece, and the first elastic piece is used for counteracting the gravity borne by the wire clamp temperature measuring sensor, so that the clamp is kept connected with the limiting piece. The installation convenience is improved, and meanwhile the operation safety of operators is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of transmission line temperature detection, especially transmission line clamp temperature measurement sensor unmanned aerial vehicle installation tool. BACKGROUND

[0002] The transmission line generates heat in the working process, and in the power peak period, such as the hot summer period, the power consumption is easy to be too large to cause the transmission line overload and heat and failure, thereby causing the range power outage. In order to find the fault on the transmission line in time, the transmission line needs to be monitored by a special temperature detection device.

[0003] The related technology can refer to the Chinese patent with the publication number CN115541050A, which discloses a high-voltage transmission line strain clamp overheating alarm device, which comprises a clamp temperature measurement device, a signal receiver, a temperature measurement monitoring host and a background server. The upper surface of the clamp temperature measurement device is provided with a plurality of solar panels. A micro-meteorological sensor is arranged above the clamp temperature measurement device. Temperature collection sensors are arranged on the left and right sides of the front of the clamp temperature measurement device. Arc-shaped grooves are arranged below the temperature collection sensors. Slide rods are arranged inside the grooves. Lock nuts are arranged at the rear of the grooves corresponding to the slide rods. First connecting rods are arranged below the slide rods. Extension rods are arranged below the first connecting rods. Wire temperature measurement mechanisms are arranged below the extension rods. Clamp temperature measurement mechanisms are arranged inside the wire temperature measurement mechanisms.

[0004] For the related technology in the above, when installing the clamp temperature measurement sensor, the operator needs to climb to the position of the corresponding transmission line along the electric tower, and then the installation operation can be performed. The operator's climbing position and installation tools are limited, so that the monitoring position of the clamp temperature measurement sensor is relatively single. If live installation is required during installation, the operator needs to wear an insulating garment. The insulating garment is easy to be damaged or there is an unshielded place during installation, which has the risk of electric shock. UTILITY MODEL CONTENTS

[0005] In order to solve the problems in the above, the application provides a transmission line clamp temperature measurement sensor unmanned aerial vehicle installation tool.

[0006] The application provides a transmission line clamp temperature measurement sensor unmanned aerial vehicle installation tool, which adopts the following technical scheme:

[0007] The utility model provides a transmission line clamp temperature measuring sensor unmanned plane installation tool, including line clamp temperature measuring sensor, the upper end of line clamp temperature measuring sensor is equipped with the clamp for holding transmission line, still include: unmanned plane, the upper portion of unmanned plane is provided with mounting bracket, when unmanned plane is in flight state, mounting bracket is in the upper portion of unmanned plane, the upper end of mounting bracket is equipped with the cavity for placing line clamp temperature measuring sensor, the clamp is equipped with at least two groups, and the clamp all is located the upper end of line clamp temperature measuring sensor, the clamp has the open attitude of mutually far away and the holding attitude of mutually close, in natural state, the clamp is in holding attitude, when line clamp temperature measuring sensor is in installation state, the upper end of mounting bracket is equipped with the limit piece corresponding with the clamp, when line clamp temperature measuring sensor is placed in the cavity, the limit piece is used for limiting the clamp, makes the clamp keep open attitude, and mounting bracket still is provided with elastic piece no.

[0008] Through the above technical scheme, in the initial state, the line clamp temperature measuring sensor is placed in the cavity on the mounting bracket, the clamp is adjusted to keep the open attitude, and the clamp is limited by the limit piece on the mounting bracket to keep the open attitude. The mounting bracket is lifted by the unmanned plane, and then the line clamp temperature measuring sensor is lifted to the position to be detected of the transmission line. During the lifting process, the elastic piece one supports the line clamp temperature measuring sensor, so that the clamp keeps in contact with the limit piece. When the line clamp temperature measuring sensor moves to the position directly below the transmission line to be detected, the line clamp temperature measuring sensor is further lifted by the unmanned plane, and the transmission line blocks the further movement of the line clamp temperature measuring sensor. At this time, the line clamp temperature measuring sensor compresses the elastic piece one, and the clamp gradually moves away from the limit piece. When the clamp is completely separated from the limit piece, it is in the natural state. At this time, the clamp holds the transmission line, so that the line clamp temperature measuring sensor detects the temperature of the transmission line. The line clamp temperature measuring sensor can be installed on the position that the worker cannot reach by the unmanned plane, so that the monitoring range of the line clamp temperature measuring sensor is improved. During the installation process, the worker does not need to climb and contact the transmission line, which is beneficial to improve the safety of the installation work.

[0009] Optionally, the line clamp temperature measuring sensor further comprises a support for connecting the clamp, the support is fixedly arranged on the upper end of the line clamp temperature measuring sensor, the clamps are arranged on both sides of the support along the length direction and are vertically hinged to the support, and the elastic piece two is arranged between the support and the clamps. In the natural state, the elastic piece two pushes the clamps to move close to each other, so that the clamps keep in the holding attitude.

[0010] Through the above technical scheme, the line clamp temperature measuring sensor supports the clamps by the support, so that the two clamps can hold the transmission line under the action of the elastic piece two.

[0011] Optionally, the clamps are provided with an arc-shaped slot one on the side close to each other, and the support is provided with an arc-shaped slot two on the upper end, when the clamps are in the embracing posture, the arc-shaped slot one is coaxial with the arc-shaped slot two, and the inner diameters of the arc-shaped slot one and the arc-shaped slot two are matched with the outer diameter of the power transmission line.

[0012] By adopting the above technical scheme, the arc-shaped slot one and the arc-shaped slot two can improve the contact area of the clamps and the support with the power transmission line, thereby improving the installation stability when the clamps embrace the power transmission line.

[0013] Optionally, the mounting frame comprises a connecting frame for connecting the unmanned aerial vehicle and a supporting frame for placing the line clamp temperature measurement sensor, the connecting frame comprises a support rod, a buckle and a fastening screw, the support rod is located on the upper end of the unmanned aerial vehicle, and the two ends of the support rod are both inclined downward and fixed with a fixed rod, the buckle is located on the end of the fixed rod away from the support rod and is clamped with the supporting leg of the unmanned aerial vehicle, the fastening screw passes through the buckle and locks the supporting leg, the supporting frame is fixedly arranged on the upper end of the support rod, and the unmanned aerial vehicle supports the supporting frame through the support rod.

[0014] By adopting the above technical scheme, the fastening screw cooperates with the buckle to connect the fixed rod with the supporting leg of the unmanned aerial vehicle, so that the unmanned aerial vehicle moves the supporting frame through the support rod when flying. The fixed rod and the supporting leg of the unmanned aerial vehicle are detachably arranged, thereby facilitating storage and transportation.

[0015] Optionally, the supporting frame comprises a vertical rod and a placing frame, the vertical rod is fixedly connected to the upper end of the support rod, the placing frame is fixedly connected to the upper end of the vertical rod, a placing cavity is located on the upper end surface of the placing frame, the inner diameter of the placing cavity is matched with the outer diameter of the line clamp temperature measurement sensor, an elastic member one is located in the placing cavity and fixedly connected with the placing frame, the elastic member one is arranged along the length direction of the vertical rod, and the lower end of the placing frame is provided with a ventilation opening in communication with the outside.

[0016] By adopting the above technical scheme, the support rod lifts the placing frame through the vertical rod, when the line clamp temperature measurement sensor is placed into the placing cavity, the lower end of the line clamp temperature measurement sensor contacts with the elastic member one and compresses the elastic member one. The placing frame limits the line clamp temperature measurement sensor through the placing cavity, thereby improving the stability during installation. When the line clamp temperature measurement sensor is installed into or removed from the placing cavity, the placing frame realizes air pressure balance with the outside through the ventilation opening, thereby reducing the probability that the line clamp temperature measurement sensor is difficult to take out due to close contact between the line clamp temperature measurement sensor and the inner wall of the placing cavity.

[0017] Optionally, the limiting piece comprises two mounting rods and a plurality of limiting plates corresponding to the clamps one by one, the two mounting rods are fixedly connected to the two sides of the placing rack along the width direction, and the mounting rods are inclinedly arranged from bottom to top to the direction away from the placing rack, the wire clamp temperature measurement sensor is located between the two mounting rods when being located in the placing cavity, all the limiting plates are located on the side where the two mounting rods are close to each other, and the limiting plates are fixedly connected with the mounting rods, a limiting groove adapted to the clamp is formed on the lower end surface of the limiting plate, and the clamp is in abutment with the inner wall of the limiting groove when being located in the limiting groove, at this time, the clamp is in the open posture.

[0018] By adopting the above technical scheme, the placing rack supports and fixes the limiting plate through the mounting rod, the clamp is adjusted to the open state, and when the clamp is placed into the limiting groove, the limiting plate limits the clamp through the inner wall of the limiting groove, so that the limiting plate remains in the open state, when the wire clamp temperature measurement sensor compresses the elastic element one, the clamp gradually separates from the limiting groove, and after the clamp is separated from the limiting plate, the clamp is automatically adjusted to the holding posture under the action of the elastic element two.

[0019] Optionally, the end of the mounting rod away from the placing rack is fixedly connected with a guide rod, and the guide rod extends along the length direction of the mounting rod.

[0020] By adopting the above technical scheme, in the process of aligning the clamp with the power transmission line, the guide rod is convenient for the operator to identify and correct the position of the unmanned aerial vehicle, which is beneficial to improve the installation convenience of the wire clamp temperature measurement sensor.

[0021] Optionally, the outer side of the guide rod is coated with a color developing layer facilitating identification.

[0022] By adopting the above technical scheme, the color developing layer is beneficial to further improve the identifiability of the guide rod.

[0023] In summary, the present application has the following beneficial technical effects:

[0024] 1. The installation personnel do not need to work at high altitude, which ensures the safety of the operation personnel, the installation steps are simple, the original fitting connection state does not need to be changed, the safety hidden danger and disputes are reduced, and the waste of installation time is also reduced;

[0025] 2. The installation can be carried out in the live line state and the power-off state, and the installation plan is not affected by the power-off plan of the power company;

[0026] 3. The installation position is various, the installation can be carried out to the position such as the conductor jointing pipe and the strain clamp which is limited by the high-altitude operation personnel, and the overall monitoring of the hidden danger point of the line can be realized. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is the overall structure schematic diagram of the unmanned aerial vehicle installation tool for the wire clamp temperature measurement sensor of the power transmission line.

[0028] Figure 2 is a schematic view highlighting the limiting plate structure.

[0029] Reference signs: 1, line clamp temperature measurement sensor; 11, clamp; 111, arc-shaped groove one; 12, support; 121, arc-shaped groove two; 13, elastic member two; 2, unmanned aerial vehicle; 311, support rod; 312, buckle; 313, fastening screw; 314, fixed rod; 32, elastic member one; 33, support frame; 331, vertical rod; 332, placement frame; 333, placement cavity; 334, air vent; 341, mounting rod; 342, limiting plate; 343, limiting groove; 35, guide rod. DETAILED DESCRIPTION

[0030] The application will be further described in detail below with reference to all the accompanying drawings.

[0031] The application discloses a power transmission line clamp temperature measurement sensor unmanned aerial vehicle mounting tool. EMBODIMENT

[0032] WITH REFERENCE Figure 1 AND Figure 2 The power transmission line clamp temperature measurement sensor unmanned aerial vehicle mounting tool comprises a line clamp temperature measurement sensor 1, an unmanned aerial vehicle 2 and a mounting bracket mounted on the unmanned aerial vehicle 2, the upper end of the line clamp temperature measurement sensor 1 is provided with a clamp 11, and two clamps 11 are taken as examples for description in the embodiment. The upper end of the line clamp temperature measurement sensor 1 is fixedly connected with a support 12, the two ends of the support 12 along the length direction are provided with mounting grooves along the vertical direction, the mounting grooves correspond to the clamps 11 one by one, one end of the clamp 11 is located in the mounting groove, and the clamp 11 is hingedly connected with the support 12 along the vertical direction, and the support 12 is fixedly provided with a pin shaft for supporting the clamp 11.

[0033] WITH REFERENCE Figure 1 AND Figure 2 The clamp 11 and the support 12 are provided with an elastic member two 13, the elastic member two 13 is a torsion spring, one end of the torsion spring is fixedly connected with the support 12, and the other end is fixedly connected with the clamp 11. When the elastic member two 13 is in a natural state, the two clamps 11 are close to each other. The side, where the two clamps 11 are close to each other, of each clamp 11 is provided with an arc-shaped groove one 111, the upper end of the support 12 is provided with an arc-shaped groove two 121, and the inner diameters of the arc-shaped groove one 111 and the arc-shaped groove two 121 are adapted to the outer diameter of the power transmission line.

[0034] WITH REFERENCE Figure 1 AND Figure 2The mounting frame comprises a connecting frame and a supporting frame 33. The connecting frame comprises a support rod 311, a buckle 312 and a fastening screw 313. The support rod 311 is located at the upper end of the unmanned aerial vehicle 2, and both ends of the support rod 311 in the length direction are fixedly connected with a fixing rod 314. The lower end of the unmanned aerial vehicle 2 is provided with a supporting leg. The fixing rod 314 corresponds to the supporting leg one by one and extends along the length direction of the supporting leg. The buckle 312 corresponds to the fixing rod 314 one by one, and the buckle 312 is fixedly arranged at one end of the fixing rod 314 away from the support rod 311.

[0035] With reference to Figure 1 and Figure 2 The buckle 312 is provided with a clamping groove matched with the supporting leg. The supporting leg is located in the corresponding clamping groove and is attached to the inner wall of the clamping groove. The fastening screw 313 on the same buckle 312 is provided with a plurality of fastening screws 313, and the fastening screw 313 is threadedly connected with the buckle 312. The fastening screw 313 penetrates through the buckle 312 and abuts against the supporting leg, thereby achieving the locking of the supporting leg and the buckle 312. When the mounting tool needs to be stored or transported, the fastening screw is removed to achieve the disassembly of the buckle 312 and the supporting leg.

[0036] With reference to Figure 1 and Figure 2 The supporting frame 33 comprises a vertical rod 331 and a placing frame 332. The vertical rod 331 is fixedly arranged at the upper end of the support rod 311. The placing frame 332 is fixedly connected to the upper end of the vertical rod 331. The vertical rod 331 separates the supporting frame 33 from the fuselage of the unmanned aerial vehicle 2, so that there is enough space for the unmanned aerial vehicle 2 and the supporting frame 33 to move. The upper end surface of the supporting frame 33 is provided with a placing cavity 333. The inner diameter of the placing cavity 333 is matched with the outer diameter of the wire clamp temperature sensor 1. After the wire clamp temperature sensor 1 is placed in the placing cavity 333, the placing frame 332 limits the wire clamp temperature sensor 1 through the placing cavity 333.

[0037] With reference to Figure 1 and Figure 2 An elastic member one 32 is arranged in the placing cavity 333. The elastic member one 32 is a spring. The spring is arranged along the length direction of the vertical rod 331, and one end of the spring is fixedly connected with the placing frame 332. After the wire clamp temperature sensor 1 is placed in the placing cavity 333, the lower end of the wire clamp temperature sensor 1 contacts the elastic member one 32 and deforms the elastic member one 32 through its own gravity. The elastic member one 32 is used to offset the gravity suffered by the wire clamp temperature sensor 1. The lower end of the placing frame 332 is provided with an air vent 334. The placing cavity 333 is communicated with the outside through the air vent 334. When the wire clamp temperature sensor 1 is put into or taken out of the placing cavity 333, the air vent 334 is used to balance the air pressure in the placing cavity 333, so as to reduce the probability that the wire clamp temperature sensor 1 is difficult to take out due to air pressure.

[0038] With reference to Figure 1 and Figure 2The limiting piece is arranged above the placing rack 332, and the limiting piece corresponds to the clamp 11 one by one, and the limiting piece comprises a limiting plate 342 and a mounting rod 341. The mounting rod 341 is fixedly arranged at the lateral side of the placing rack 332 along the transverse direction, and the mounting rod 341 is arranged in a slanting manner from bottom to top and away from the placing rack 332. Two mounting rods 341 are symmetrically arranged with the vertical rod 331 as the center. The limiting plate 342 corresponds to the mounting rod 341 one by one, and the limiting plate 342 is fixedly connected to one side of the two mounting rods 341 that are close to each other.

[0039] With reference to Figure 1 And Figure 2 The placing rack 332 supports the limiting plate 342 through the mounting rod 341. A limiting groove 343 is arranged at the lower end surface of the limiting plate 342. After the wire clamp temperature measurement sensor 1 is placed into the placing cavity 333, the clamp 11 is adjusted to an open posture, and the clamp 11 is arranged in the limiting groove 343. The limiting plate 342 limits the clamp 11 through the limiting groove 343, so that the clamp 11 remains in the open posture. The end of the mounting rod 341 away from the placing rack 332 is fixedly connected with a guide rod 35, and the guide rod 35 extends along the length direction of the mounting rod 341. The outer side of the guide rod 35 is coated with a color developing layer, and the color developing layer is in a color that is easy to identify, such as red, bright yellow, and the like.

[0040] The implementation principle of the power transmission line wire clamp temperature measurement sensor unmanned aerial vehicle installation tool is as follows: an operator places the wire clamp temperature measurement sensor 1 into the placing cavity 333, adjusts the clamp 11 to an open posture, and arranges the clamp 11 in the corresponding limiting groove 343, so that the clamp 11 remains in the open posture. In this process, the elastic member one 32 supports the wire clamp temperature measurement sensor 1. The unmanned aerial vehicle 2 drives the wire clamp temperature measurement sensor 1 to ascend to the position to be detected of the power transmission line. At this time, the power transmission line is arranged between the two clamps 11 with the guide rod 35 as the reference. The unmanned aerial vehicle 2 drives the wire clamp temperature measurement sensor 1 to continue to ascend, so that the wire clamp temperature measurement sensor 1 comes into contact with the power transmission line. Under the blocking action of the power transmission line, the wire clamp temperature measurement sensor 1 compresses the elastic member one 32, and the clamp 11 gradually separates from the limiting groove 343. When the clamp 11 completely separates from the limiting plate 342, the clamp 11 is in a natural state. Under the action of the elastic member one 32, the two clamps 11 tightly hold the power transmission line, so that the wire clamp temperature measurement sensor 1 detects the temperature of the power transmission line. In the installation process, the unmanned aerial vehicle 2 is convenient to reach the position that is difficult for the operator to reach, which is conducive to improving the monitoring range of the wire clamp temperature measurement sensor 1, and the operator does not need to climb and contact the power transmission line, which is conducive to improving the safety of the installation operation.

[0041] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application. Therefore, equivalent changes made on the basis of the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A power line clamp temperature measurement sensor unmanned aerial vehicle installation tool, comprising a line clamp temperature measurement sensor (1), the upper end of the line clamp temperature measurement sensor (1) is provided with a clamp (11) for holding the power line, characterized in that, Also include: The unmanned aerial vehicle (2) is provided with a mounting rack above the unmanned aerial vehicle (2), when the unmanned aerial vehicle (2) is in flight state, the mounting rack is above the unmanned aerial vehicle (2), the upper end of the mounting rack is provided with a placing cavity (333) for placing the wire clamp temperature sensor (1), the clamp (11) is provided with at least two groups, and the clamp (11) is located on the upper end of the wire clamp temperature sensor (1), the clamp (11) has a mutual away open posture and a mutual close posture, in natural state, the clamp (11) is in the close posture, at this time, the wire clamp temperature sensor (1) is in the installation state, the upper end of the mounting rack is provided with a limiting piece corresponding to the clamp (11), when the wire clamp temperature sensor (1) is placed in the placing cavity (333), the limiting piece is used for limiting the clamp (11), so that the clamp (11) keeps the open posture, the mounting rack is further provided with a first elastic piece (32), the first elastic piece (32) is used for offsetting the gravity received by the wire clamp temperature sensor (1), so that the clamp (11) keeps connected with the limiting piece.

2. The power transmission line clamp temperature sensor drone installation tool of claim 1, wherein: The wire clamp temperature sensor (1) further comprises a bracket (12) for connecting the clamp (11), the bracket (12) is fixedly arranged on the upper end of the wire clamp temperature sensor (1), the clamp (11) is arranged on both sides of the bracket (12) along the length direction and is vertically hinged with the bracket (12), a second elastic piece (13) is arranged between the bracket (12) and the clamp (11), in the natural state, the second elastic piece (13) pushes the clamp (11) to be close to each other, so that the clamp (11) keeps the close posture.

3. The power transmission line clamp temperature sensor drone installation tool of claim 2, wherein: An arc-shaped groove one (111) is arranged on the side of the clamp (11) close to each other, an arc-shaped groove two (121) is arranged on the upper end of the bracket (12), when the clamp (11) is in the close posture, the arc-shaped groove one (111) is coaxial with the arc-shaped groove two (121), the inner diameters of the arc-shaped groove one (111) and the arc-shaped groove two (121) are matched with the outer diameter of the power transmission line.

4. The power line clamp temperature sensor drone installation tool of claim 1, wherein: The mounting rack comprises a connecting rack for connecting the unmanned aerial vehicle (2) and a supporting rack (33) for placing the wire clamp temperature sensor (1), the connecting rack comprises a support rod (311), a buckle (312) and a fastening screw (313), the support rod (311) is arranged on the upper end of the unmanned aerial vehicle (2), and the two ends of the support rod (311) are both inclined downward and fixed with a fixed rod (314), the buckle (312) is arranged on the end of the fixed rod (314) away from the support rod (311) and is clamped with the supporting leg of the unmanned aerial vehicle (2), the fastening screw (313) penetrates through the buckle (312) and locks the supporting leg, the supporting rack (33) is fixedly arranged on the upper end of the support rod (311), and the unmanned aerial vehicle (2) supports the supporting rack (33) through the support rod (311).

5. The power line clamp temperature sensor drone installation tool of claim 4, wherein: The supporting frame (33) comprises a vertical rod (331) and a placing frame (332), the vertical rod (331) is fixedly connected to the upper end of the supporting rod (311), the placing frame (332) is fixedly connected to the upper end of the vertical rod (331), a placing cavity (333) is located on the upper end surface of the placing frame (332), the inner diameter of the placing cavity (333) is matched with the outer diameter of the wire clamp temperature measuring sensor (1), an elastic member (32) is located in the placing cavity (333) and is fixedly connected with the placing frame (332), the elastic member (32) is arranged along the length direction of the vertical rod (331), and the lower end of the placing frame (332) is provided with a ventilation opening (334) in communication with the outside.

6. The power line clamp temperature sensor drone installation tool of claim 5, wherein: The limiting piece comprises two mounting rods (341) and a plurality of limiting plates (342) corresponding to the clamps (11) in one-to-one mode, the two mounting rods (341) are respectively fixedly connected to the two sides of the placing frame (332) along the width direction, the mounting rod (341) is arranged in an inclined mode from the lower end to the upper end and away from the placing frame (332), the wire clamp temperature measuring sensor (1) is located between the two mounting rods (341) when being located in the placing cavity (333), all the limiting plates (342) are located on the side, where the two mounting rods (341) are close to each other, of the placing frame (332), the limiting plate (342) is fixedly connected with the mounting rod (341), the lower end surface of the limiting plate (342) is provided with a limiting groove (343) matched with the clamp (11), and the clamp (11) is in abutment with the inner wall of the limiting groove (343) when being located in the limiting groove (343), so that the clamp (11) is in an open posture.

7. The power line clamp temperature sensor drone installation tool of claim 6, wherein: One end of the mounting rod (341) away from the placing frame (332) is fixedly connected with a guide rod (35), and the guide rod (35) extends along the length direction of the mounting rod (341).

8. The power line clamp temperature sensor drone installation tool of claim 7, wherein: The outer side of the guide rod (35) is coated with a color-developing layer facilitating identification.

Citation Information

Patent Citations

  • Overheat alarm device for strain clamp of high-voltage transmission line

    CN115541050A