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An anti-icing multi-roller rigid contact current receiving device

A technology of rigid contact and current receiving devices, which is applied in transportation and packaging, vehicle parts, electric vehicles, etc., can solve problems such as difficult to ensure reliable current receiving of EMUs, and achieve the effect of reducing energy consumption and saving costs

Active Publication Date: 2020-12-18
SOUTHWEST JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] At present, the construction of high-speed railways in various regions is on the rise. Some high-speed railway lines will inevitably pass through low-temperature, high-humidity, high-altitude and other areas. In these low-temperature and ice-covered tunnels, if the traditional rigid catenary flow collection method is still used, it will be difficult to ensure the reliable flow collection of the EMU

Method used

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  • An anti-icing multi-roller rigid contact current receiving device
  • An anti-icing multi-roller rigid contact current receiving device
  • An anti-icing multi-roller rigid contact current receiving device

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Embodiment Construction

[0024] 1, figure 1 Figure 4 Shown is an anti-icing multi-roller rigid contact current receiving device, which is characterized in that it is composed of a "T" shaped rigid catenary and a deicing current receiving mechanism. The rails 1 are respectively fixed on several U-shaped overall supports 3 through insulators 2; the top surface of the current receiving rail 1 is arc-shaped; the deicing and current receiving mechanism is: the top surface of the lower deicing blade 7 is a horizontal plane, and the cross section is The lower bottom is smaller than the upper bottom isosceles trapezoid, and the lower deicing blade 7 is respectively provided with front and rear side deicing blades 8 and two side deicing blades 8 located between the left and right sides of the flow rail 1. More than two flow-receiving drums 5, wherein the front and rear side deicing blades 8 are symmetrical in shape, and the cross-sectional shape of the front side deicing blades is surrounded by a horizontal ...

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Abstract

An anti-icing multi-roller rigid contact current receiving device is composed of a "T"-shaped rigid contact net and a deicing current receiving mechanism. It is formed on a U-shaped integral bracket; the deicing and current-receiving mechanism is: the left and right sides of the upper surface of the lower deicing blade are respectively provided with front and rear deicing blades with the same shape and structure, and two or more current-receiving rollers, each receiving current. The drum of the drum is fixed on the main shaft through two bearings. The bottom of the main shaft is movably inserted into the limit ring, the limit shaft fixed on the bottom surface of the main shaft forms a rolling fit with the bottom surface of the blind hole of the limit ring, elastic mechanisms are respectively provided on both sides of the drum main shaft, the invention can effectively remove ice on the contact net in real time, It has the advantage of ensuring that the electrician can receive the current stably.

Description

technical field [0001] The invention relates to the technical field of electrified railways, in particular to a novel anti-icing multi-roller rigid contact current receiving device. Background technique [0002] Catenary, as a unique structure of electrified railway, provides traction current for electric locomotives and ensures the reliable operation of electric locomotives. The overhead catenary is divided into rigid catenary and flexible catenary. In special working conditions such as tunnels, a rigid catenary structure is often used. If the air humidity in the tunnel is high and the temperature in the tunnel is low, the rigid catenary will form. icing. If there is water seepage in the tunnel, the water will flow through the rigid catenary, and ice will also form in low temperature climates, and the traditional "I" structure will make the rigid catenary form larger ice cubes when the ice is severe, and the rigid contact The icing of the grid will cause poor contact with...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B60L5/39B60L5/02
CPCB60L5/02B60L5/39
Inventor 肖嵩叶智宗赖新安李玉航孟举童梦园张灿张昆仑刘国清王滢靖永志董金文
Owner SOUTHWEST JIAOTONG UNIV
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