Rainproof insulating operating rod structure
By designing a spliced rainproof insulated operating rod, the safety problem of traditional insulated operating rods in bad weather is solved, efficient power maintenance on rainy days is achieved, and the practicality and safety of the operating rods are improved.
Patent Information
- Application Number
- CN202510584217.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2025-07-25
AI Technical Summary
The traditional insulated operating rod is wet with rain in heavy rain and windy weather, causing the leakage current to increase, endangering the safety of the operator and affecting the stable power supply of the power system.
A spliced operating rod is designed, including a rainproof grip structure, a telescopic rod body structure and an adjustable working end structure. The length and angle of the rod body are adjusted through movable clamping and hinging, and is equipped with a water collecting groove and positioning clip to prevent rainwater from accumulation, improving the practicality and safety of the operating rod.
Ensure the safety of operators on rainy days, improve the efficiency and safety of power maintenance work, prevent the impact of rainwater on the operating rod, and extend the service life.
Smart Images

Figure CN120376353A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of joysticks, and specifically to a rainproof and insulating joystick structure. Background Art
[0002] An insulating joystick is a unified name for insulating tools dedicated to the power system. It can be used for live working, live maintenance, and live maintenance work appliances. An insulating joystick is an insulating tool used to operate live equipment for a short time. When a staff member uses an insulating joystick to repair a voltage transformer, the insulating joystick needs to be taken to the site for use, such as connecting or disconnecting a high-voltage disconnector, a drop fuse, etc.
[0003] In the prior art, when there is a line grounding trip during thunderstorm weather or humid weather, an operating rod needs to be used for power transmission. The longer the power outage time, the more inconvenient it is for residents' lives. Therefore, operators need to repair line faults in the rain and cannot wait until the rain stops completely to conduct line inspections. They must quickly restore power under the premise of ensuring safety to ensure reliable power supply for residents. To shorten the power outage time and area, line section trial power transmission is often carried out. At this time, operators need to use an insulating joystick to pull and close pole-mounted switches, disconnect switches, and other operations. However, traditional insulating joysticks can be used for a short time. When encountering heavy rain and strong wind weather, the rainproof skirts on the insulating joystick will gradually be wetted by rain. When operating outdoors in rainy weather, due to the tilt of rain under the action of wind, or even the rain flowing down the rod and forming a continuous water column, it is extremely easy to cause the rainproof skirts of the insulating joystick to be short-circuited by rain, resulting in an increase in leakage current, which in turn endangers the personal safety of operators and poses a great threat to the safe and stable power supply of the power system. Summary of the Invention
[0004] The present invention provides a rainproof and insulating joystick structure to solve the problems in the background art.
[0005] To achieve the above object, the present invention provides the following technical solution: A rainproof and insulating joystick structure includes a spliced joystick and a protection structure. The spliced joystick is composed of a rainproof grip structure, a telescopic rod body structure, and an adjustable working end structure spliced with each other. The rainproof grip structure, the telescopic rod body structure, and the adjustable working end structure are all located inside the protection structure when not assembled. The top end of the rainproof grip structure is movably clamped with the bottom end of the telescopic rod body structure, and the top end of the telescopic rod body structure is hinged with the bottom end of the adjustable working end structure.
[0006] Further, the protection structure includes a placement box, the top of the placement box is hinged with a closing cover, locking buckles are respectively arranged on the front sides of the closing cover and the placement box, and the closing cover and the placement box are movably clamped through the locking buckles. A handle is hinged on the front side of the placement box.
[0007] Further, a first storage groove and a second storage groove are placed inside the placement box, and the unassembled state of the rainproof grip structure is located inside the first storage groove.
[0008] Further, a positioning clip is fixedly installed inside the second storage groove, and the unassembled states of the telescopic rod structure and the adjustable working end structure are movably clamped inside the second storage groove through the positioning clip.
[0009] Further, the rainproof grip structure includes a shielding cover. An insertion interface is opened at the top of the shielding cover. A socket is fixedly installed inside the insertion interface. A grip rod is fixedly installed at the bottom end of the socket. The grip rod is located inside the shielding cover. An insertion block is movably inserted at the top end of the socket.
[0010] Further, a socket frame is fixedly sleeved outside the shielding cover. A water collection sleeve box is fixedly installed outside the socket frame. The empty groove between the water collection sleeve box and the socket frame is a water collection groove. A water outlet notch is opened in the water collection groove, and the water outlet notch is arranged in a direction opposite to the grip opening on the back side of the shielding cover.
[0011] Further, the telescopic rod structure includes a first connecting rod and a second connecting rod. The bottom end of the first connecting rod is movably inserted into the top end of the insertion block. Connecting seats are fixedly installed at the top ends of the first connecting rod and the second connecting rod. A connecting bolt is installed at the bottom end of the second connecting rod. The first connecting rod and the second connecting rod are movably clamped through the connecting seats, the connecting bolt and a connecting pin.
[0012] Further, the first connecting rod and the second connecting rod have the same structure. The first connecting rod includes a sleeve. A movable rod is slidably connected inside the sleeve. Positioning holes are opened on the surface of the movable rod. The total length between the movable rod and the sleeve is movably clamped through the positioning holes and a positioning pin.
[0013] Further, the adjustable working end structure includes an external frame. A hinge seat is fixedly installed at the bottom end of the external frame. The external frame is movably clamped with the connecting bolts and the connecting pins at the top ends of the first connecting rod and the second connecting rod respectively through the hinge seat.
[0014] Further, an embedded rod is hinged inside the external frame through a locking pin. A first contact end and a second contact end are respectively fixedly installed at the top end and the bottom end of the embedded rod.
[0015] Compared with the prior art, the present invention provides a rainproof and insulating operating rod structure, which has the following beneficial effects: For this rainproof and insulating operating rod structure, by setting up a spliced operating rod and using the rainproof grip structure, it can ensure the personal safety of the user when performing power transmission work through this operating rod in rainy days. In addition, with the telescopic rod body structure, the total length and working angle of the operating rod can be adjusted. At the same time, an adjustable working end structure is introduced to switch the contact end. These improvement measures significantly enhance the practicability and versatility of the operating rod, and greatly facilitate the operation efficiency and safety of power maintenance personnel during power maintenance work. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a structural schematic diagram of a rainproof and insulating operating rod structure of the present invention; Figure 2 is an assembly diagram of the spliced operating rod of a rainproof and insulating operating rod structure of the present invention; Figure 3 is a schematic diagram of the protection structure of a rainproof and insulating operating rod structure of the present invention; Figure 4 is a schematic diagram of the rainproof grip structure of a rainproof and insulating operating rod structure of the present invention; Figure 5 is a schematic diagram of the telescopic rod body structure of a rainproof and insulating operating rod structure of the present invention; Figure 6 is a schematic diagram of the adjustable working end structure of a rainproof and insulating operating rod structure of the present invention.
[0017] In the figure: 1, spliced operating rod; 2, protection structure; 201, placement box; 202, closing cover; 203, lock; 204, handle; 205, first storage groove; 206, second storage groove; 207, positioning clip; 3, rainproof grip structure; 301, shielding cover; 302, socket; 303, holding rod; 304, plug-in block; 305, socket frame; 306, water collecting sleeve box; 307, water collecting groove; 4, telescopic rod body structure; 401, first connecting rod; 402, second connecting rod; 403, connecting bolt; 404, connecting seat; 405, sleeve; 406, movable rod; 407, positioning hole; 5, adjustable working end structure; 501, external frame; 502, hinge seat; 503, embedded rod; 504, locking pin; 505, first contact end; 506, second contact end. DETAILED DESCRIPTION OF THE INVENTION
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0019] Please refer to Figures 1-6 , the present invention discloses a rainproof and insulating operating rod structure, which includes a spliced operating rod 1 and a protection structure 2. The spliced operating rod 1 is composed of a rainproof grip structure 3, a telescopic rod body structure 4, and an adjustable working end structure 5 spliced with each other. The rainproof grip structure 3, the telescopic rod body structure 4, and the adjustable working end structure 5 are all located inside the protection structure 2 when not assembled.
[0020] The top end of the rainproof grip structure 3 is movably clamped with the bottom end of the telescopic rod body structure 4, and the top end of the telescopic rod body structure 4 is hinged with the bottom end of the adjustable working end structure 5.
[0021] Through the ingenious spliced design and the movable clamping between components, the total length, working angle, and quick switching of the contact end of the operating rod are realized, significantly improving the practicability and versatility of the operating rod. At the same time, the design of the water collecting groove 3 effectively prevents the influence of rain on the operating rod, ensuring safety and comfort during the operation process. These improvement measures greatly facilitate the operation of electric power maintenance personnel during electric power maintenance work, improving work efficiency and safety.
[0022] The protection structure 2 includes a placement box 201. The top end of the placement box 201 is hinged with a closing cover 202. Lock catches 203 are respectively arranged on the front sides of the closing cover 202 and the placement box 201. The closing cover 202 and the placement box 201 are movably clamped through the lock catches 203. A handle 204 is hinged on the front side of the placement box 201. A first storage groove 205 and a second storage groove 206 are placed inside the placement box 201. The unassembled state of the rainproof grip structure 3 is located inside the first storage groove 205. A positioning clip 207 is fixedly installed inside the second storage groove 206. The unassembled states of the telescopic rod body structure 4 and the adjustable working end structure 5 are movably clamped with the inside of the second storage groove 206 through the positioning clip 207.
[0023] The protective structure 2 can be used to uniformly store the rainproof grip structure 3, the telescopic rod structure 4, and the adjustable working end structure 5, avoiding the loss of each component when not in use. At the same time, it is also convenient for the staff to carry, keeping it dry and avoiding insulation damage caused by the collision of the insulating rod with the vehicle during transportation, improving the service life of the insulating operating rod, and ensuring the safety of the operator during rain maintenance and repair.
[0024] Specifically, the rainproof grip structure 3 includes a shielding cover 301. An insertion interface is opened at the top end of the shielding cover 301. An insertion socket 302 is fixedly installed inside the insertion interface. A holding rod 303 is fixedly installed at the bottom end of the insertion socket 302. The holding rod 303 is located inside the shielding cover 301. An insertion block 304 is movably inserted at the top end of the insertion socket 302.
[0025] In this implementation scheme, the design of the shielding cover 301 can effectively prevent rainwater from directly dripping onto the holding rod 303, ensuring the dryness and comfort of the operator when using it in rainy days. The movable insertion method of the insertion block 304 and the insertion socket 302 makes the assembly and disassembly of the rainproof grip structure 3 more convenient, and is also convenient for subsequent maintenance and replacement.
[0026] Specifically, a socket frame 305 is fixedly sleeved on the outer side of the shielding cover 301. A water collecting sleeve box 306 is fixedly installed on the outer side of the socket frame 305. The empty slot between the water collecting sleeve box 306 and the socket frame 305 is a water collecting groove 307. The water collecting groove 307 is provided with a water outlet notch, and this water outlet notch is arranged in the opposite direction to the holding port on the back side of the shielding cover 301.
[0027] In this implementation scheme, the combination of the socket frame 305 and the water collecting sleeve box 306 forms an efficient rainwater collection system. The design of the water collecting groove 307 can quickly drain the rainwater flowing on the outer side of the shielding cover 301 to the water outlet notch, avoiding the possibility of rainwater accumulation and dripping onto the holding rod 303, and further improving the rainproof effect. The ingenious idea that the water outlet notch is arranged in the opposite direction to the holding port effectively prevents rainwater from flowing back to the operator's hand, ensuring safety and comfort during the operation process.
[0028] Specifically, the telescopic rod structure 4 includes a first connecting rod 401 and a second connecting rod 402. The bottom end of the first connecting rod 401 is movably inserted into the top end of the insertion block 304. Connecting seats 404 are fixedly installed at the top ends of both the first connecting rod 401 and the second connecting rod 402. A connecting bolt 403 is installed at the bottom end of the second connecting rod 402. The first connecting rod 401 and the second connecting rod 402 are movably clamped through the connecting seats 404, the connecting bolt 403, and a connecting pin.
[0029] In this implementation scheme, the use of the connecting seat 404, the connecting bolt 403 and the connecting pin can effectively promote the angle adjustment between the first connecting rod 401 and the second connecting rod 402, and then adjust the included angle between the operating rod and the electrical equipment. Based on this, without changing the standing position of the operator, the included angle between the operating rod and the electrical equipment can be adjusted to ensure that the operating rod can normally handle the electrical equipment, thus ensuring the normal progress of the work; This movable clamping design of the first connecting rod 401 and the second connecting rod 402 makes the telescopic rod structure 4 more flexible during length adjustment, and at the same time ensures the stability of the connection. As a key connecting component, the connecting seat 404 is reasonably designed and can withstand various stresses during the operation process to ensure the overall stability of the operating rod. The combined use of the connecting bolt 403 and the connecting pin further realizes the tight connection between the rod bodies and avoids potential safety hazards caused by loosening.
[0030] Specifically, the structures of the first connecting rod 401 and the second connecting rod 402 are the same. The first connecting rod 401 includes a sleeve 405, an activity rod 406 is slidably connected inside the sleeve 405, positioning holes 407 are opened on the surface of the activity rod 406, and the total length between the activity rod 406 and the sleeve 405 is movably clamped through the positioning holes 407 and positioning pins.
[0031] In this implementation scheme, the first connecting rod 401 includes a sleeve 405 and an activity rod 406. This sliding connection design, combined with the positioning holes 407 and the positioning pins, realizes the precise locking of the length, avoids the situation of length change during the operation process, and ensures the accuracy and safety of the operation.
[0032] Specifically, the adjustable working end structure 5 includes an external connection frame 501. A hinge seat 502 is fixedly installed at the bottom end of the external connection frame 501. The external connection frame 501 is movably clamped with the connecting bolts 403 and the connecting pins at the tops of the first connecting rod 401 and the second connecting rod 402 respectively through the hinge seat 502.
[0033] In this implementation scheme, the design of the external connection frame 501 not only realizes the effective connection with the telescopic rod structure 4, but also enables the working end to flexibly adjust the angle through the rotation function of the hinge seat 502 to adapt to different working environments and requirements.
[0034] The design of the adjustable working end structure 5 further improves the practicability and versatility of the operating rod. The external connection frame 501 is movably clamped with the top end of the telescopic rod structure 4 through the hinge seat 502, enabling the working end to rotate and tilt as needed to adapt to different operating angles.
[0035] Specifically, an embedded rod 503 is hinged to the inner side of the external frame 501 through a locking pin 504. A first contact end 505 and a second contact end 506 are respectively and fixedly installed at the top and bottom of the embedded rod 503.
[0036] In this implementation scheme, the design of the embedded rod 503 enables the first contact end 505 and the second contact end 506 to be stably installed thereon. At the same time, the hinged manner of the locking pin 504 ensures the stability and reliability of the contact end during switching. The first contact end 505 and the second contact end 506 can be selectively used according to different operation requirements, greatly improving the flexibility and adaptability of the operating rod.
[0037] In addition, the hinged design between the embedded rod 503 and the external frame 501 also allows the working end to make small angle adjustments during the operation process to adapt to complex working environments. This design not only improves the operation accuracy but also reduces the damage to the equipment caused by improper operation, extending the service life of the operating rod.
[0038] During use, when assembling the rainproof grip structure 3, the telescopic rod body structure 4, and the adjustable working end structure 5, first take out the rainproof grip structure 3, the telescopic rod body structure 4, and the adjustable working end structure 5 from the first storage groove 205 and the second storage groove 206; Insert the insertion block 304 into the insertion socket 302 movably to ensure a firm insertion. Subsequently, insert the bottom end of the first connecting rod 401 into the top end of the insertion block 304 movably to achieve an effective connection between the rainproof grip structure 3 and the telescopic rod body structure 4; Then, movably snap the second connecting rod 402 to the first connecting rod 401 through the connecting seat 404, the connecting bolt 403, and the connecting pin to complete the assembly of the telescopic rod body structure 4; At this time, the angle between the first connecting rod 401 and the second connecting rod 402 can be adjusted according to needs to meet the operation requirements; When the length of the first connecting rod 401 needs to be adjusted, just pull the movable rod 406 to slide it inside the sleeve 405 to the required position, and then precisely lock the total length between the movable rod 406 and the sleeve 405 through the cooperation of the positioning pin and the positioning hole 407; Finally, movably snap the external frame 501 of the adjustable working end structure 5 to the connecting bolt 403 and the connecting pin at the top end of the telescopic rod body structure 4 through the hinge seat 502 to ensure that the working end can flexibly adjust the angle; After the assembly is completed, an appropriate contact end can be selected according to the operation requirements, namely the first contact end 505 or the second contact end 506. After removing the locking pin 504, the embedded rod 503 is flipped to enable the switching between the first contact end 505 and the second contact end 506 on the embedded rod 503.
[0039] In summary, for the rainproof and insulating operating rod structure, by setting the spliced operating rod 1 and using the rainproof grip structure 3, it can ensure the personal safety of the user when performing power transmission work in rainy days through this operating rod. Combining with the telescopic rod body structure 4 can adjust the total length and working angle of the operating rod. At the same time, the adjustable working end structure 5 is introduced to enable the switching of the contact end. The above improvement measures significantly improve the practicability and versatility of the operating rod, and greatly facilitate the operation efficiency and safety of power maintenance personnel during power maintenance work.
[0040] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A rainproof and insulating operating rod structure, comprising a spliced operating rod (1) and a protection structure (2), characterized in that: The spliced operating rod (1) is composed of a rainproof grip structure (3), a telescopic rod body structure (4), and an adjustable working end structure (5) spliced together. The rainproof grip structure (3), the telescopic rod body structure (4), and the adjustable working end structure (5) are all located inside the protective structure (2) when not assembled; The top end of the rainproof grip structure (3) is movably clamped with the bottom end of the telescopic rod body structure (4), and the top end of the telescopic rod body structure (4) is hinged to the bottom end of the adjustable working end structure (5).
2. The rainproof and insulating operating rod structure according to claim 1, wherein: The protective structure (2) includes a placement box (201). A closing cover (202) is hinged to the top end of the placement box (201). Lock catches (203) are respectively arranged on the front sides of the closing cover (202) and the placement box (201). The closing cover (202) and the placement box (201) are movably clamped through the lock catches (203). A handle (204) is hinged to the front side of the placement box (201).
3. The structure of a rainproof and insulating operating rod according to claim 2, characterized in that: A first storage groove (205) and a second storage groove (206) are placed inside the placement box (201). The unassembled state of the rainproof grip structure (3) is located inside the first storage groove (205).
4. The structure of a rainproof and insulating operating rod according to claim 3, characterized in that: A positioning clip (207) is fixedly installed inside the second storage groove (206). The unassembled states of the telescopic rod body structure (4) and the adjustable working end structure (5) are movably clamped with the inside of the second storage groove (206) through the positioning clip (207).
5. A rainproof and insulating operating rod structure according to claim 1, characterized in that: The rainproof grip structure (3) includes a shielding cover (301). An insertion opening is provided at the top end of the shielding cover (301). An insertion socket (302) is fixedly installed inside the insertion opening. A holding rod (303) is fixedly installed at the bottom end of the insertion socket (302). The holding rod (303) is located inside the shielding cover (301). An insertion block (304) is movably inserted at the top end of the insertion socket (302).
6. The rainproof insulation operating rod structure according to claim 5, characterized in that: A socket frame (305) is fixedly sleeved on the outside of the shielding cover (301). A water collecting sleeve box (306) is fixedly installed on the outside of the socket frame (305). The empty groove between the water collecting sleeve box (306) and the socket frame (305) is a water collecting groove (307). The water collecting groove (307) is provided with a water outlet notch, and this water outlet notch is arranged in the opposite direction to the holding opening on the back side of the shielding cover (301).
7. The rainproof insulation operating rod structure according to claim 1, wherein: The telescopic rod body structure (4) includes a first connecting rod (401) and a second connecting rod (402). The bottom end of the first connecting rod (401) is movably inserted with the top end of the insertion block (304). Connecting seats (404) are fixedly installed at the top ends of both the first connecting rod (401) and the second connecting rod (402). A connecting bolt (403) is installed at the bottom end of the second connecting rod (402). The first connecting rod (401) and the second connecting rod (402) are movably clamped through the connecting seats (404), the connecting bolt (403), and a connecting pin.
8. A rainproof insulation operating rod structure according to claim 7, characterized in that: The first link (401) and the second link (402) have the same structure. The first link (401) includes a sleeve (405). A movable rod (406) is slidably connected inside the sleeve (405). A positioning hole (407) is formed on the surface of the movable rod (406). The total length between the movable rod (406) and the sleeve (405) is movably clamped through the positioning hole (407) and a positioning pin.
9. The rainproof and insulating operating rod structure according to claim 1, characterized in that: The adjustable working end structure (5) includes an external frame (501). A hinge seat (502) is fixedly installed at the bottom end of the external frame (501). The external frame (501) is movably clamped through the hinge seat (502) with a connecting bolt (403) and a connecting pin at the top ends of the first link (401) and the second link (402) respectively.
10. The structure of a rainproof and insulating operating rod according to claim 9, characterized in that: An inner embedded rod (503) is hinged inside the external frame (501) through a locking pin (504). A first contact end (505) and a second contact end (506) are fixedly installed at the top end and the bottom end of the inner embedded rod (503) respectively.