一种电力检测装置用支撑装置
By designing an insulating rod with a quick-assembly assembly, the problems of slow operation of assembled insulating operating rods and easy bending of telescopic rods are solved, realizing the rapid connection and disassembly of insulating rods, which is suitable for supporting power detection devices.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG SHENGBOLAI POWER ENG CO LTD
- Filing Date
- 2025-08-11
- Publication Date
- 2026-07-17
AI Technical Summary
The existing assembled insulating operating rods are slow to assemble, and the telescopic rods are prone to bending, making it difficult to achieve convenient support devices.
An insulating rod with a quick-connect assembly was designed. The quick-connect assembly consists of a docking unit, a locking unit, and an unlocking unit. The quick-connect assembly enables the rapid connection and disassembly of the insulating rod. It includes structures such as a connecting post, a limiting gasket, a docking cylinder, a fixing ring block, a snap-fit groove, a knob ring, and a telescopic locking block, so as to realize the rapid docking and fixing of two sections of insulating rod.
It enables convenient assembly and disassembly of insulating rods, is simple and efficient to operate, and is faster than traditional threaded connections, making it suitable for supporting power detection devices.
Smart Images

Figure CN224518796U_ABST
Abstract
Claims
1. A support device for power detection devices, comprising an insulating rod (1), characterized in that, The upper and lower ends of the insulating rod (1) are provided with quick-connect assembly (2), which is used to realize the quick connection of the two sections of the insulating rod (1); The quick-installation component (2) includes a docking unit, a locking unit, and an unlocking unit; The docking unit is used to connect and splice two insulating rods (1); The locking unit is used to lock the docking unit, thereby achieving the connection and fixation of the two insulating rods (1); The unlocking unit is used to release the locking state of the locking unit, thereby realizing the disassembly operation of the insulating rod (1).
2. The support device for a power detection device according to claim 1, characterized by The docking unit includes a connecting post (201), a limiting gasket (202), a docking post (203), a docking cylinder (205), and a fixing ring block (206); The connecting post (201), the limiting gasket (202), and the docking post (203) are connected and fixed in sequence from top to bottom. The connecting post (201) is inserted into the bottom end of the insulating rod (1) and is bonded and fixed to the insulating rod (1) with glue. The limiting gasket (202) is attached to the bottom end of the insulating rod (1). The fixing ring block (206) is fixed to the outside of the docking cylinder (205). The bottom end of the docking cylinder (205) is inserted into the top end of the insulating rod (1) and is glued to the insulating rod (1). The fixing ring block (206) is attached to the top end of the insulating rod (1). The docking operation is achieved by inserting the docking post (203) on one insulating rod (1) into the docking cylinder (205) on another insulating rod (1).
3. The support device for a power detection device according to claim 2, characterized by The locking unit includes a snap-fit groove (204), a knob ring (207), a straight slot (210), a telescopic snap block (211), a pressure-bearing horizontal block (212), a mounting hole (213), and a spring (214). The snap-fit groove (204) is located on the outside of the docking post (203); There are two fixed ring blocks (206), which are vertically distributed on the outside of the docking cylinder (205). The knob ring (207) is distributed between the two fixed ring blocks (206) and sleeved on the outside of the docking cylinder (205). The straight slot (210) is opened on the outside of the docking cylinder (205) and located in the middle of the two fixed ring blocks (206). The telescopic block (211) is horizontally slidably connected to the inside of the straight slot (210) and protrudes to the inside of the docking cylinder (205). When the docking post (203) is inserted into the docking cylinder (205), it is engaged with the inside of the engagement groove (204) by the telescopic block (211) to realize the connection and fixation between the docking post (203) and the docking cylinder (205). The pressure block (212) is fixed to the other side of the telescopic block (211) and located between the docking cylinder (205) and the knob ring (207), and is used to limit the movement of the telescopic block (211); The mounting hole (213) is opened on one side of the pressure block (212) and extends into the telescopic block (211). The spring (214) is distributed inside the mounting hole (213) and extends out to the outside of the pressure block (212). The spring (214) continuously provides the telescopic block (211) and the pressure block (212) with a pressing force toward the inside of the docking cylinder (205).
4. The support device for a power detection device according to claim 3, characterized by The snap-fit groove (204), straight slot (210), telescopic snap-fit block (211), pressure-bearing horizontal block (212), and spring (214) are evenly arranged in four sets along the circumferential direction. The top of the telescopic snap-fit block (211) has an arc surface structure, and the bottom of the telescopic snap-fit block (211) has a straight surface structure.
5. The support device for a power detection device according to claim 4, characterized by The unlocking unit includes a trapezoidal pressing block (208) and a positioning block (209); The trapezoidal pressure block (208) is fixed inside the knob ring (207) and distributed in the middle of the two pressure blocks (212). The inclined end of the trapezoidal pressure block (208) is in contact with the inclined surface of the pressure block (212). When the knob ring (207) rotates, the trapezoidal pressure block (208) squeezes the inclined surface of the pressure block (212) to realize the overall retraction of the pressure block (212) and the telescopic block (211). The positioning block (209) is fixed to the inside of the trapezoidal pressure block (208) and fits against the outside of the snap-fit groove (204) to provide positioning for the rotation of the knob ring (207).
6. The support device for a power detection device according to claim 3, characterized by A concave fitting (215) is sleeved on the outside of the spring (214). One side of the concave fitting (215) is adjacent to the inner wall of the knob ring (207), and the other side of the concave fitting (215) extends into the mounting hole (213) to provide guidance and support for the spring (214).