Visual insulation operation device integrated with electricity testing and lighting functions
The visual insulation operation device with integrated voltage detection and lighting functions solves the problem of difficult inspection of pole-mounted switch faults, realizes precise operation and improves safety in high-altitude operations, and reduces labor intensity and operation difficulty.
Patent Information
- Application Number
- CN202511927239.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-19
- Publication Date
- 2026-01-30
AI Technical Summary
Existing pole-mounted switches are difficult to inspect for faults, traditional insulated operating rods have limited functionality, low operational accuracy, and pose safety risks.
The integrated visual insulation operation device with voltage detection and lighting functions includes a multi-section insulating rod, voltage detector, video probe and wireless display. It is equipped with various types of hooks and combined with a trolley and lifting mechanism to achieve precise operation and improve safety in high-altitude operations.
It improves the accuracy and safety of pole-mounted switch fault inspection, reduces the labor intensity and operational difficulty of high-altitude operations, and enhances the reliability and stability of operations.
Smart Images

Figure CN121439601A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the field of power equipment, and particularly relates to a visual insulation operating device integrated with an electric testing and lighting function. BACKGROUND
[0002] In the operation process of a 10-kilovolt distribution network, as a key control and protection device, the operation state of a pole-mounted switch directly relates to the power supply reliability of the distribution network. However, due to various factors such as line aging, environmental corrosion, overvoltage impact and the like, the 10-kilovolt pole-mounted switch is prone to insulation breakdown failure. When such a failure occurs, the closed iron sheet above the switch will be deformed due to the internal arc effect, accompanied by obvious burn marks, and these physical characteristics are the direct basis for judging the occurrence of the failure.
[0003] However, in actual operation and maintenance scenarios, the installation height of the 10-kilovolt pole-mounted switch is usually about 9 meters, far exceeding the effective observation range of manual ground patrol. It is difficult for the operation and maintenance personnel to clearly identify the deformation and burn marks of the closed iron sheet with the naked eye or ordinary observation tools, resulting in that the failure point cannot be discovered in time, and the failure processing progress is delayed.
[0004] In order to solve the problem of high-altitude observation, the industry attempts to use unmanned aerial vehicle patrol means, but this method has significant limitations: on the one hand, the pole-mounted switches are mostly distributed in complex outdoor environments, and there are trees near the area, which easily causes scratches and collisions when the unmanned aerial vehicle flies, seriously threatening flight safety; on the other hand, the endurance of the unmanned aerial vehicle is limited, the single operation time is short, and it is greatly affected by weather, signal and other factors, making it difficult to accurately locate the failure point in a short time after the failure occurs, and unable to meet the operation and maintenance needs of quickly isolating the failure and repairing power.
[0005] In the prior art, the core tool for operating the pole-mounted switch is an insulation operating rod, and its main function is limited to realizing the opening and closing operation of the pole-mounted switch, and the function is relatively single, which cannot meet the comprehensive needs of failure troubleshooting and accurate operation. Specifically, first, there is no electric testing function, and the operation and maintenance personnel need to carry additional electric testing equipment for electric testing operation before operation, which is cumbersome and inefficient, and there is a safety risk caused by untimely electric testing or improper operation; second, there is no video transmission function, and the operator cannot directly observe the docking of the end of the insulation operating rod and the opening and closing mechanism of the switch on the ground. Due to the long operation distance and the easy obstruction of the line of sight, it is difficult to accurately dock the parts such as the draw hook and the opening and closing mechanism, which not only increases the operation difficulty, but also may cause damage to the equipment or operation failure due to the docking deviation, further affecting the timeliness and reliability of failure processing. SUMMARY
[0006] The purpose of the present application is to overcome the deficiencies in the prior art, provide a visual insulation operating device integrated with electricity testing and lighting functions, to solve the problems of difficult fault inspection of existing pole switches, single function of traditional insulation operating rods, and low operation precision.
[0007] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is: A visual insulation operating device integrated with electricity testing and lighting functions, comprising: A plurality of insulation rods, the upper end of the insulation rod is provided with a threaded sleeve, the lower end of the insulation rod is provided with an external thread threadedly connected with the threaded sleeve, and the plurality of insulation rods are threadedly connected to form an insulation operating rod main body; An electricity tester is connected with the threaded sleeve of the uppermost insulation rod, used for verifying whether the equipment is live, and the electricity tester is integrated with an audible and visual alarm; a disc is arranged outside the electricity tester, a draw hook is arranged on the side wall of the disc; a mounting plate is connected to the upper part of the disc through a plurality of supporting rods, a video probe is mounted on the mounting plate; at least one annular lamp groove is arranged on the side wall of the disc, and a lighting lamp is mounted in the lamp groove; A bottom rod, the upper end of the bottom rod is also provided with a threaded sleeve, the lowermost insulation rod is mounted in the threaded sleeve of the bottom rod, and a display is arranged on one side of the bottom rod, the display is wirelessly connected with the video probe through WiFi or Bluetooth, and is used for real-time transmission of image data of the video probe.
[0008] Further, the draw hook is provided with three groups, the three groups of draw hooks are uniformly distributed in the circumferential direction of the disc, the three groups of draw hooks comprise a first draw hook, a second draw hook and a third draw hook, the first draw hook is a "up" character-shaped structure, suitable for automatic switching of on-off, double isolation switch linkage; the second draw hook is a T-shaped draw hook, suitable for isolation switch, grounding switch linkage and turning transmission; and the third draw hook is a U-shaped draw hook, suitable for switch cabinet circuit breaker, pole isolation switch, single-point grounding.
[0009] Still further, three groups of first hinge supports are circumferentially and uniformly arranged on the outer wall of the disc, one end of the draw hook is movably connected with the first hinge support, a first locking lug is arranged on the upper part of the first hinge support, a bolt is arranged on the first locking lug, and a through hole matched with the bolt is arranged on the draw hook.
[0010] Still further, a second locking lug is arranged on the lower part of the first hinge support, and the distance between the first hinge support and the first locking lug is equal to the distance between the first hinge support and the second locking lug, after the idle draw hook is turned down, the bolt is connected with the second locking lug.
[0011] Furthermore, it also includes a handcart, which is equipped with a support frame and a positioning post inside the support frame. The positioning post is inserted into the bottom rod, and the display is mounted on the support frame. The bottom of the support frame is equipped with several studs, which cooperate with the threaded sleeve of the insulating rod. After the insulating rod is disassembled, it is tightened onto the studs.
[0012] Furthermore, a lifting mechanism is provided on one side of the support frame. The lifting mechanism includes a base, a scissor-type telescopic frame, and a top seat. A first sliding groove is provided on one side of the base, and a slide block is slidably connected in the first sliding groove. A lifting cylinder is connected to the other side of the base, and the piston rod of the lifting cylinder is connected to the slide block. One end of the bottom of the scissor-type telescopic frame is hinged to the base, and the other end is hinged to the slide block. A second sliding groove is provided on the top seat, and the top of the scissor-type telescopic frame is installed in the second sliding groove. A connecting seat is provided on the upper part of the top seat, and at least one clamping mechanism is provided on one side of the connecting seat for clamping the insulating rod. The clamping mechanism is a finger cylinder or a clamp.
[0013] Furthermore, a guide sleeve is provided on one side of the support frame, and a guide rod is provided on one side of the connecting seat, which is inserted into the guide sleeve and fits the guide sleeve with a gap.
[0014] Furthermore, the base rod includes a base rod and a connecting rod disposed on the upper part of the base rod. The base rod and the connecting rod are compressibly connected by a spring, and the total height of the base rod and the spring is less than the height of the positioning post.
[0015] Furthermore, the handcart is provided with a second hinge support on its upper part, and the bottom of the support frame is hinged to the second hinge support. The handcart is also provided with an angle adjustment cylinder, and the piston rod of the angle adjustment cylinder is hinged to one side of the support frame to adjust the tilt angle of the support frame on the handcart.
[0016] Furthermore, a support rod is provided on one side of the support frame, a fixed joint is provided on the upper side of the support frame, and a movable joint is provided at the upper end of the support rod. Both the fixed joint and the movable joint are provided with interlocking teeth. A screw is fixedly connected to one side of the fixed joint, and one end of the screw passes through the movable joint and is threadedly connected to a locking nut for locking after the angle of the support rod is adjusted. A lead screw is threaded inside the support rod, and a ground plug is provided at the lower end of the lead screw.
[0017] The beneficial effects of this invention are: (1) This invention integrates the voltage detection function, the visual observation function and the opening and closing operation function of the traditional insulating operating rod into one, which solves the problem of the single function of the existing insulating operating rod. In addition, by setting a video probe on the mounting plate and cooperating with the wireless connection display on the bottom rod, the problem of inaccurate hook docking caused by the high height and obstructed view of the traditional insulating operating rod is solved, which improves the accuracy and reliability of the opening and closing operation.
[0018] (2) Three sets of hooks are set up, namely "up" shaped hooks, T-shaped hooks and U-shaped hooks, which are designed for different types of switch equipment. This solves the problem of poor adaptability of traditional single-structure hooks and the need for frequent tool changes, thus improving work efficiency.
[0019] (3) Select the appropriate hook according to the type of switchgear, fold the unused hook downwards and fix it to the side wall of the disc to avoid interference with the equipment, wires or surrounding environment caused by the protrusion of the idle hook.
[0020] (4) By setting up a handcart and support frame, the bottom rod is placed inside the support frame. During operation, the bottom rod no longer relies on manual hand support, which reduces the labor intensity of the operators. After the insulating operating rod is disassembled, the insulating rod is placed inside the support frame to facilitate the transfer of the insulating operating rod. After the insulating rod is disassembled, it is tightened on the stud inside the support frame to ensure the stability of the threaded sleeve transfer.
[0021] (5) By setting up a lifting mechanism, when adding sections of the insulating rod, the clamping mechanism is used to hold the lowest insulating rod, and then the connection between the lowest insulating rod and the bottom rod is released. The lifting mechanism achieves stable lifting of the insulating rod through the coordinated drive of the scissor telescopic frame and the lifting cylinder. The lifting distance is greater than the length of a single insulating rod, leaving sufficient operating space for the new insulating rod. Then, an insulating rod is screwed on the lower part of the lowest insulating rod, and the lower part of the new insulating rod is connected to the bottom rod. This avoids the manual lifting of the insulating rod for adding sections and reduces the labor intensity of the operators.
[0022] (6) A guide sleeve is provided on one side of the support frame and a guide rod with clearance fit is provided on the side of the connecting seat. This restricts the lateral offset and rotation of the connecting seat during the lifting process of the lifting mechanism, so that the lifting and lowering movement of the scissor telescopic frame always proceeds along a straight trajectory, thereby enhancing the stability of the lifting mechanism during lifting.
[0023] (7) The base rod and the connecting rod of the bottom rod are connected by a spring in a compressible manner. When performing the opening and closing operation, there is no need for the operator to hold the insulating operating rod continuously. The opening and closing action can be completed by simply moving the insulating operating rod up and down through the lifting mechanism. This eliminates the physical exertion of manually holding the heavy insulating rod for a long time in traditional operations. Especially for high-altitude operations, it effectively avoids operational deviations caused by arm fatigue and shaking, reduces the labor intensity of operators, and improves the reliability and safety of long-term continuous operations.
[0024] (8) An angle adjustment device is installed between the support frame and the handcart to adjust the tilt angle of the support frame on the handcart, thereby adjusting the tilt angle of the insulating operating rod, so that the operator does not need to work directly under the switch equipment, avoiding safety hazards such as falling objects from height, electric arc splash, and discharge damage during insulation breakdown.
[0025] (9) A support rod is installed on one side of the support frame to effectively resist external forces such as outdoor wind and operational reaction force, and to prevent the support frame from shaking, shifting or even falling due to tilting. This provides rigid support for the tilting operation of the insulated operating rod and further enhances the stability and safety of high-altitude complex angle operations. Attached Figure Description
[0026] Figure 1 This is a usage status diagram of a visual insulation operation device integrating voltage detection and lighting functions according to the present invention.
[0027] Figure 2 This is a schematic diagram of the assembly of the insulating rod and the voltage detector.
[0028] Figure 3 This is a schematic diagram of the assembly of the electroscope and the disc.
[0029] Figure 4 This is a schematic diagram of the assembly of the handcart and support frame.
[0030] Figure 5 This is a schematic diagram of the lifting mechanism.
[0031] Figure 6 This is a schematic diagram of the base rod structure.
[0032] Figure 7 This is a partial schematic diagram of the support rod.
[0033] In the diagram, 1. Insulating rod; 11. Threaded sleeve; 2. Voltage detector; 3. Disc; 31. First hinge support; 32. First locking lug; 33. Hook; 34. Support rod; 35. Mounting plate; 36. Video probe; 37. Second locking lug; 38. Lamp trough; 4. Handcart; 41. Second hinge support; 42. Angle adjustment cylinder; 5. Support frame; 51. Positioning pin; 52. Guide sleeve; 53. Stud; 54. Support rod; 55. Lead screw; 56. Ground plug; 57. Fixed connector; 58. Movable connector; 59. Clamping tooth; 510. Screw; 511. Locking nut; 6. Display; 7. Lifting mechanism; 71. Base; 72. Lifting cylinder; 73. First slide rail; 74. Slide seat; 75. Scissor telescopic frame; 76. Top seat; 77. Second slide rail; 78. Guide rod; 79. Connecting seat; 710. Clamping mechanism; 8. Base rod; 81. Base rod; 82. Connecting rod; 83. Spring. Detailed Implementation
[0034] The following will be combined with the appendix Figures 1-7The technical solutions in the embodiments of the present invention are clearly and completely described herein. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0035] In the description of this invention, it should be understood that the terms "longitudinal", "lateral", "up", "down", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this invention, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.
[0036] like Figure 1 As shown, a visual insulation operating device integrating voltage detection and lighting functions includes at least one insulating rod 1, an voltage detector 2, and a base rod 8, as shown. Figure 2 As shown, the upper end of the insulating rod 1 is provided with a threaded sleeve 11, and the lower end of the insulating rod 1 is provided with an external thread that is threadedly connected to the threaded sleeve 11. Multiple sections of the insulating rod 1 are threadedly connected to form the main body of the insulating operating rod. The voltage detector 2 is connected to the threaded sleeve 11 of the uppermost insulating rod 1 and is used to verify whether the equipment is energized. The voltage detector 2 integrates an audible and visual alarm. The voltage detector 2 uses a commercially available mature product, such as the GDY-10KV voltage detector, the structure of which will not be described in detail. Figure 3 As shown, the electroscope 2 is provided with a disc 3 on the outside, and a hook 33 is provided on the side wall of the disc 3; the upper part of the disc 3 is connected to a mounting plate 35 by several support rods 34, and a video probe 36 is installed on the mounting plate 35; at least one annular light groove 38 is provided on the side wall of the disc 3, and a lighting lamp is installed in the light groove 38. The bottom rod 8 is also provided with a threaded sleeve 11 at its upper end. The bottom insulating rod 1 is installed in the threaded sleeve 11 of the bottom rod 8. A display 6 is provided on one side of the bottom rod 8. The display 6 is wirelessly connected to the video probe 36 via WiFi or Bluetooth for real-time transmission of image data from the video probe 36.
[0037] This technical solution integrates voltage detection, visualization, and the traditional opening and closing operation of an insulating operating rod, solving the problem of the single function of existing insulating operating rods. The voltage detector 2 is directly connected to the main body of the insulating rod 1 via a threaded sleeve 11, and integrates an audible and visual alarm function. Maintenance personnel do not need to carry separate voltage detection equipment, simplifying the work preparation process and avoiding the inefficiency caused by carrying and operating separate voltage detection equipment. At the same time, the audible and visual alarm can provide real-time feedback on the energized status of the equipment, effectively avoiding safety risks caused by untimely voltage detection or improper operation, and significantly improving the safety of high-altitude operations.
[0038] By installing a video probe 36 on the mounting plate 35 and connecting it wirelessly to the display 6 on the base pole 8, real-time transmission of images from the operating end is achieved. Operators can directly observe the docking status of the hook 33 at the end of the insulated operating rod with the pole-mounted switch's opening and closing mechanism from the ground, solving the problem of inaccurate hook docking caused by the high height and obstructed view of traditional insulated operating rods. This solution not only reduces operational difficulty and reliance on the experience of maintenance personnel, but also effectively avoids equipment damage or operational failures caused by docking deviations, improving the accuracy and reliability of opening and closing operations and increasing the efficiency of single operations.
[0039] By installing a light fixture in the light trough 38 of the disc 3, it is easier to use in dimly lit environments, further improving the accuracy and convenience of the device operation.
[0040] like Figure 3 As shown, the hooks 33 are provided in three sets, evenly distributed around the circumference of the disc 3. Each set includes a first hook, a second hook, and a third hook. The first hook is an "U"-shaped structure, which provides balanced force, smooth reciprocating motion, and unidirectional transmission, suitable for automated switchgear opening and closing, and double disconnector switch linkage. The second hook is a T-shaped hook, which provides multi-directional force distribution, one-to-many operation, variable direction, corner transmission, and multi-component linkage in a single-axis linear motion, suitable for disconnector switches, grounding switch linkage, and corner transmission. The third hook is a U-shaped hook, which provides stable unidirectional force and small gaps, suitable for switchgear circuit breakers, pole-mounted disconnectors, and single-point grounding. In this solution, by setting three sets of structurally differentiated hooks, each targeting different types of switchgear, the problem of poor adaptability and frequent tool changes associated with traditional single-structure hooks is solved, thus improving operational efficiency.
[0041] like Figure 3As shown, three sets of first hinge supports 31 are evenly arranged on the outer circumference of the disk 3. One end of the hook 33 is movably connected to the first hinge support 31. The upper part of the first hinge support 31 is provided with a first locking lug 32. The first locking lug 32 is provided with a bolt. The hook 33 is provided with a through hole that matches the bolt. According to the type of switching equipment, a suitable hook 33 is selected. After the hook 33 is folded upward, the hook 33 is connected to the first locking lug 32 with a bolt. The unused hook 33 is folded downward and stored against the side wall of the disk 3, avoiding interference problems with equipment, wires or the surrounding environment caused by the protrusion of the idle hook 33.
[0042] like Figure 3 As shown, the first hinge support 31 is provided with a second locking lug 37 at its lower part, and the distance between the first hinge support 31 and the first locking lug 32 is equal to the distance between the first hinge support 31 and the second locking lug 37. After the unused hook 33 is flipped downward, it is connected to the second locking lug 37 by bolts. This prevents the idle hook 33 from falling off the disc 3 due to gravity, vibration or operating inertia when the insulated operating rod is tilted. This avoids the safety hazards of the idle hook 33 scraping the equipment, getting tangled in the wires or interfering with the operation, and further improves the safety of high-altitude complex angle operations.
[0043] like Figure 1 , Figure 4 As shown, it also includes a handcart 4, which is equipped with a support frame 5. The support frame 5 has a positioning post 51 inside, which is inserted into the bottom rod 8. The display 6 is installed on the support frame 5. During operation, the bottom rod 8 no longer relies on manual hand support, reducing the labor intensity of the operators. After the insulating operating rod is disassembled, the insulating rod 1 is placed inside the support frame 5 to facilitate the transfer of the insulating operating rod. The bottom of the support frame 5 is equipped with several studs 53. The studs 53 cooperate with the threaded sleeve 11 of the insulating rod 1. After the insulating rod 1 is disassembled, it is tightened on the studs 53 to ensure the stability of the transfer of the threaded sleeve 11.
[0044] like Figure 1 As shown, a lifting mechanism 7 is provided on one side of the support frame 5, such as... Figure 5As shown, the lifting mechanism 7 includes a base 71, a scissor-type telescopic frame 75, and a top seat 76. The base 71 has a first sliding groove 73 on one side, within which a sliding block 74 is slidably connected. A lifting cylinder 72 is connected to the other side of the base 71, and the piston rod of the lifting cylinder 72 is connected to the sliding block 74. One end of the bottom of the scissor-type telescopic frame 75 is hinged to the base 71, and the other end is hinged to the sliding block 74. The top seat 76 has a second sliding groove 77, within which the top of the scissor-type telescopic frame 75 is installed. A connecting seat 79 is provided on the upper part of the top seat 76, and at least one clamping mechanism 710 is provided on one side of the connecting seat 79 for clamping the insulating rod 1. The clamping mechanism 710 is either a finger cylinder or a clamp; in this embodiment, the clamping mechanism 710 is a clamp.
[0045] When adding a section of insulating rod 1, first use clamping mechanism 710 to hold the lowest insulating rod 1 tightly, then disconnect the lowest insulating rod 1 from the bottom rod 8. Lifting mechanism 7 achieves stable lifting of insulating rod 1 through the coordinated drive of scissor telescopic frame 75 and lifting cylinder 72, and the lifting distance is greater than the length of a single insulating rod 1, leaving sufficient operating space for the new insulating rod 1. Then screw another insulating rod 1 on the lower part of the lowest insulating rod 1 and connect the lower part of the new insulating rod 1 to the bottom rod 8. This avoids the need for manual lifting of insulating rod 1 for adding sections, reducing the labor intensity of operators.
[0046] like Figure 4 As shown, a guide sleeve 52 is provided on one side of the support frame 5, such as... Figure 5 As shown, a guide rod 78 is provided on one side of the connecting seat 79, which is inserted into the guide sleeve 52 and has a clearance fit with the guide sleeve 52. This restricts the lateral offset and rotation of the connecting seat 79 during the lifting process of the lifting mechanism 7, so that the lifting and lowering movement of the scissor telescopic frame 75 always proceeds along a straight trajectory, thereby enhancing the stability of the lifting mechanism during lifting.
[0047] like Figure 6 As shown, the base rod 8 includes a base rod 81 and a connecting rod 82 disposed on the upper part of the base rod 81. The base rod 81 and the connecting rod 82 are compressibly connected by a spring 83, and the total height of the base rod 81 and the spring 83 is less than the height of the positioning column 51. When performing the opening and closing operation, there is no need for manual continuous holding of the insulating operating rod. The opening and closing action can be completed by simply moving the insulating operating rod up and down as a whole through the lifting mechanism 7. This eliminates the physical exertion of manually holding the heavy insulating rod 1 for a long time in traditional operations. Especially for high-altitude operation scenarios, it effectively avoids operation deviations caused by arm fatigue and shaking, reduces the labor intensity of operators, and improves the reliability and safety of long-term continuous operation.
[0048] like Figure 4As shown, the handcart 4 is provided with a second hinge support 41 on its upper part, and the bottom of the support frame 5 is hinged to the second hinge support 41. The handcart 4 is also provided with an angle adjustment cylinder 42. The piston rod of the angle adjustment cylinder 42 is hinged to one side of the support frame 5 and is used to adjust the tilt angle of the support frame 5 on the handcart 4, thereby adjusting the tilt angle of the insulating operating rod. This allows the operator to work without having to be directly below the switchgear, avoiding safety hazards such as falling objects (such as equipment parts and debris), arcing, and discharge damage during insulation breakdown.
[0049] like Figure 4 , Figure 7 As shown, a support rod 54 is provided on one side of the support frame 5, a fixed joint 57 is provided on the upper side of the support frame 5, and a movable joint 58 is provided at the upper end of the support rod 54. Both the fixed joint 57 and the movable joint 58 are provided with interlocking teeth 59. A screw 510 is fixedly connected to one side of the fixed joint 57. One end of the screw 510 passes through the movable joint 58 and is threadedly connected to a locking nut 511 for locking after the angle of the support rod 54 is adjusted. A lead screw 55 is threadedly connected inside the support rod 54, and a ground plug 56 is provided at the lower end of the lead screw 55.
[0050] The support rod 54 engages with the locking teeth 59 of the fixed joint 57 and the movable joint 58, and is locked in place by the locking nut 511. Together with the ground insert 56 at the lower end of the lead screw 55, it inserts into the ground, forming a stable triangular support structure with the support frame 5 and the ground. This solves the problem of poor stability caused by the shift of the center of gravity after the support frame 5 tilts. By setting up the support rod 54, it effectively resists external forces such as outdoor wind and operational reaction forces, preventing the support frame 5 from swaying, shifting, or even tipping over due to tilting. It provides rigid support for tilting operations of the insulated operating rod, further enhancing the stability and safety of high-altitude complex angle operations.
[0051] The above description is merely an example and illustration of the structure of the present invention. Those skilled in the art can make various modifications or additions to the specific embodiments described or use similar methods to replace them, as long as they do not deviate from the scope defined by the structure of the present invention, they should all fall within the protection scope of the present invention.
Claims
1. A visual insulation operating device integrated with an electric test lighting function, comprising: a plurality of insulation rods, the upper end of the insulation rod is provided with a threaded sleeve, the lower end of the insulation rod is provided with an external thread which is threadedly connected with the threaded sleeve, and the plurality of insulation rods are threadedly connected to form an insulation operating rod body; characterized in that it further comprises an electric tester connected with the threaded sleeve of the uppermost insulation rod, for verifying whether the equipment is electrified, the electric tester is integrated with an audible and visual alarm; the electric tester is externally provided with a disc, the disc side wall is provided with a draw hook; the disc upper portion is connected with a mounting plate through a plurality of supporting rods, the mounting plate is mounted with a video probe; the disc side wall is provided with at least one annular lamp groove, the lamp groove is mounted with a lighting lamp; a bottom rod, the upper end of the bottom rod is also provided with a threaded sleeve, the lowermost insulation rod is mounted in the threaded sleeve of the bottom rod, and the bottom rod is provided with a display on one side, the display is wirelessly connected with the video probe through WiFi or Bluetooth, for real-time transmission of video probe image data.
2. A visualized insulation testing device integrated with electric charge detection and illumination function according to claim 1, characterized in that, The draw hook is provided with three groups, which are uniformly distributed in the circumferential direction of the disc, and the three groups of draw hooks comprise a first draw hook, a second draw hook and a third draw hook, the first draw hook is a "shang" character-shaped structure, which is suitable for automatic switching of on-off, double isolation switch linkage; the second draw hook is a T-shaped draw hook, which is suitable for isolation switch, grounding switch linkage and bending transmission; the third draw hook is a U-shaped draw hook, which is suitable for switch cabinet circuit breaker, pole isolation switch, single-point grounding.
3. A visualized insulation tester with integrated electric field illumination function according to claim 2, characterized in that, The disc outer wall is circumferentially and uniformly provided with three groups of first hinge supports, one end of the draw hook is movably connected with the first hinge support, the upper portion of the first hinge support is provided with a first locking lug, the first locking lug is provided with a bolt, and the draw hook is provided with a through hole matched with the bolt.
4. A visualized insulation tester with integrated electric field illumination function according to claim 3, characterized in that, The lower portion of the first hinge support is provided with a second locking lug, and the distance between the first hinge support and the first locking lug is equal to the distance between the first hinge support and the second locking lug, and the idle draw hook is turned down and connected with the second locking lug by using the bolt.
5. A visualized insulating glove according to any one of claims 1 to 4, characterized in that, It further comprises a trolley, the trolley is provided with a support frame, the support frame is internally provided with a positioning column, the positioning column is inserted into the bottom rod, and the display is mounted on the support frame; the bottom of the support frame is provided with a plurality of studs, the studs are matched with the threaded sleeves of the insulation rods, and the insulation rods are screwed on the studs after being disassembled.
6. A visualized insulation tester with integrated electric field illumination function according to claim 5, characterized in that, One side of the support frame is provided with a lifting mechanism, the lifting mechanism comprises a base, a scissor-type telescopic frame and a top seat, one side of the base is provided with a first sliding groove, a sliding seat is slidably connected in the first sliding groove, the other side of the base is connected with a lifting oil cylinder, and the piston rod of the lifting oil cylinder is connected with the sliding seat; one end of the bottom of the scissor-type telescopic frame is hingedly connected with the base, and the other end is hingedly connected with the sliding seat; the top seat is provided with a second sliding groove, and the top of the scissor-type telescopic frame is mounted in the second sliding groove; the upper portion of the top seat is provided with a connecting seat, at least one clamping mechanism is arranged on one side of the connecting seat, for clamping the insulation rod, and the clamping mechanism adopts a finger air cylinder or a clamp.
7. A visualized insulation tester with integrated electric field illumination function as defined in claim 6, characterized in that, One side of the support frame is provided with a guide sleeve, and the connecting seat is provided with a guide rod which is inserted into the guide sleeve and gap-fitted with the guide sleeve.
8. A visualized insulation tester with integrated electric field illumination function as defined in claim 6, wherein, The bottom rod comprises a base rod and a connecting rod arranged on the upper part of the base rod, the base rod and the connecting rod are compressibly connected through a spring, and the total height of the base rod and the spring is less than the height of the positioning column.
9. A visualized insulating glove apparatus integrated with an electric detection lighting function according to claim 6, characterized in that, The upper part of the trolley is provided with a second hinge support, the bottom of the support frame is hingedly connected with the second hinge support, and the upper part of the trolley is further provided with an angle adjusting oil cylinder, the piston rod of the angle adjusting oil cylinder is hingedly connected with one side of the support frame, and the angle adjusting oil cylinder is used for adjusting the inclination angle of the support frame on the trolley.
10. A visualized insulation tester with integrated electric field illumination function as defined in claim 9, characterized in that, One side of the support frame is provided with a support rod, one side of the upper part of the support frame is provided with a fixed joint, the upper end of the support rod is provided with a movable joint, the fixed joint and the movable joint are both provided with clamping teeth that are mutually clamped, one side of the fixed joint is fixedly connected with a screw rod, one end of the screw rod penetrates through the movable joint and is threadedly connected with a locking nut, and the locking nut is used for locking the support rod after the angle adjustment; a lead screw is threadedly connected in the support rod, and the lower end of the lead screw is provided with a ground plug.