All-weather self-adaptive live working machine with rainproof structure

A live working, all-weather technology, used in climate change adaptation, manipulators, electrical components, etc., can solve the problem that live working robots cannot be practical in rainy days, increase the insulation protection of the working position, etc., to ensure reliability, increase insulation protection, increase The effect of reliability

Pending Publication Date: 2022-05-27
慈溪市输变电工程有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to overcome the problem that the live working robot in the prior art cannot be used in rainy days, the present invention provides an all-weather self-adaptive live working machine with a rainproof structure, which reduces or prevents rainwater from entering the working position in rainy days and increases the insulation of the working position Protection, so that live working robots can operate in rainy days

Method used

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  • All-weather self-adaptive live working machine with rainproof structure
  • All-weather self-adaptive live working machine with rainproof structure
  • All-weather self-adaptive live working machine with rainproof structure

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] like figure 1 and figure 2 As shown, an all-weather self-adaptive live working machine with a rainproof structure includes a machine body 1, a lifting platform 2 and an insulating frame 3, the machine body 1 is fixed with the insulating frame 3, and the insulating frame 3 is fixed with the lifting platform 2 , the insulating frame 3 includes several insulating rods 4 arranged side by side, such as image 3 and Figure 4 As shown, the outer side wall of the insulating rod 4 is provided with a plurality of water-breaking guide bars 4.1 inclined relative to the axis of the insulating rod 4 . A plurality of water-breaking guide bars 4.1 are arranged along the axial direction of the insulating rod 4 , and adjacent water-breaking guide bars 4.1 are arranged staggered on the axial projection plane of the insulating rod 4 . The lower ends of the plurality of water-breaking guide bars 4.1 are suspended from the insulating rod 4. The height of the water-breaking guide bar 4....

Embodiment 2

[0031] like figure 2 As shown, on the basis of Embodiment 1, the turning mechanism 5.4 includes a turning worm gear 5.4.1, a turning worm 5.4.2, a first rotating drive member 5.4.3, and the awning 5.1 rotates with the horizontal turret 5.3 through the turning shaft Connected, the overturning worm gear 5.4.1 is coaxially fixed with the overturning shaft, the overturning worm 5.4.2 is rotatably connected with the horizontal turret 5.3, the overturning worm wheel 5.4.1 is engaged with the overturning worm 5.4.2, and the first rotating drive member 5.4.3 drives the overturning The worm 5.4.2 rotates; the rotating mechanism 5.5 includes a rotating worm wheel 5.5.1, a rotating worm 5.5.2 and a second rotating drive member 5.5.3, the rotating worm wheel 5.5.1 is coaxially fixed with the horizontal turret 5.3, and the rotating worm 5.5 .2 is rotatably connected with the fixed frame 5.2, the rotating worm gear 5.5.1 is engaged with the rotating worm 5.5.2, and the second rotating driv...

Embodiment 3

[0035] On the basis of Embodiment 1, the machine body 1 includes a casing, the casing is provided with a cooling ventilation inlet and a cooling ventilation outlet, a dehumidification pipe is arranged outside the cooling ventilation inlet, a desiccant is arranged in the dehumidifying pipe, and a fan is arranged inside the cooling ventilation inlet . The dehumidification pipe is provided with a semiconductor dehumidification device, and the semiconductor dehumidification device is arranged outside the desiccant. In the above technical solution, the desiccant can absorb water vapor in the air, reduce the air humidity blown into the robot, effectively dissipate heat to the machine body 1 in a high temperature and high humidity environment, and reduce the impact of high humidity air on the inside of the machine.

[0036] The beneficial effects of the present invention are: (1) reduce or prevent rainwater from entering the working position on rainy days, increase the insulation pro...

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PUM

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Abstract

The invention discloses an all-weather self-adaptive live working machine with a rainproof structure, which comprises a machine body, a shielding mechanism is arranged on the machine body, the shielding mechanism comprises a shielding tent, a fixing frame, a horizontal rotating frame, an overturning mechanism and a rotating mechanism, and the shielding tent is rotatably connected with the horizontal rotating frame in a vertical plane. The turnover mechanism drives the shielding tent to rotate relative to the horizontal rotating frame, the horizontal rotating frame is rotationally connected with the fixing frame, a rotating shaft of the horizontal rotating frame is vertical, the rotating mechanism drives the horizontal rotating frame to rotate relative to the fixing frame, and the shielding tent is arranged above the machine body. According to the all-weather self-adaptive hot-line working machine provided with the rainproof structure, rainwater is reduced or prevented from entering the working position in rainy days, insulation protection of the working position is improved, and the hot-line working robot can operate in the rainy days.

Description

technical field [0001] The present invention relates to the technical field of electrical equipment, in particular to an all-weather self-adaptive live working machine provided with a rain-proof structure. Background technique [0002] Live work refers to the testing and maintenance of high-voltage transmission cables and their ancillary equipment without interruption of power. It is an effective operation method to avoid power failure during maintenance and ensure normal power supply. With the rapid development of the power grid, the live operation of ultra-high voltage and ultra-high voltage transmission lines is an important guarantee for the reliability of power supply of the power grid, and its importance has become increasingly prominent. [0003] At present, domestic live working robots cannot operate in rainy days due to the limitation of the insulating protective structure, which limits the adaptability of live working robots. Therefore, it is necessary to design a...

Claims

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Application Information

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IPC IPC(8): B25J11/00B25J19/00H02G1/00H02G1/02
CPCB25J11/00B25J19/0083H02G1/00H02G1/02Y02A30/14
Inventor 应永灵陈杰辉高栋寅谢望晨周胜边疆张亚孙学逊
Owner 慈溪市输变电工程有限公司
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