Train hub steering self-correcting assembly

A train wheel and self-calibration technology, applied in the field of rail transit, can solve the problems of affecting the normal steering of the train, affecting the ride experience, and aggravating the train bumps, etc., to improve the ride experience, improve the squeeze effect, and extend the maintenance cycle Effect

Active Publication Date: 2019-05-31
亚太空列(河南)轨道交通有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] When the inner rim of the train wheel hub transitions from the inner curved rail 3 to the straight point rail 5, there will be a short suspension time, and it will overlap the forged end of the straight point rail 5 from top to bottom. This phenomenon will bring bumps to the train and affect the experience of riding. At the same time, the end of the straight point rail 5 itself is formed by forging. The depth becomes deeper, which will further aggravate the bumps of the train
[0005] Simultaneously because there is a certain centrifugal force when the train turns, the outer rim of

Method used

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  • Train hub steering self-correcting assembly

Examples

Experimental program
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Effect test

Embodiment 1

[0033] see Figure 4-8 , a train hub steering self-correcting assembly, including a sleeper 1 pre-installed on the ground and a basic rail 2 conventionally arranged on the upper surface of the sleeper 1, an inner curved rail 3, an outer curved rail 4 and a straight point rail 5, the inner guide The intersection of the curved rail 3 and the straight point rail 5 is fixedly provided with an energy dissipation gasket 6 on the surface of the sleeper 1, and the sleeper 1 is fixed with a limit steel frame 7 located at the ends of both sides of the energy dissipation gasket 6, and The limit steel frame 7 is close to the outer wall of the straight tip rail 5;

[0034] The junction end of the inner curved rail 3 and the straight point rail 5 is solid, and the end surface of the inner curved rail 3 near the straight point rail 5 is provided with a rectangular placement groove 301, and the bottom of the inner curved rail 3 is provided with three A limiting groove 302 connected with the ...

Embodiment 2

[0043] see Figure 9 and Figure 10 , different from Embodiment 1, the material of the coil 10 can also be a copper annular ring, and the length value of the effective cutting magnetic field of the coil 10 is equal to the length value of the permanent magnet 14, which can be selectively used according to the speed and quality of the train This kind of setting reduces the overall impedance of the loop and at the same time enhances the induced current generated by the loop (the conductivity of copper is relatively stronger than that of iron, and the size of the induced current increases with the increase in the number of cutting magnetic induction lines. This is current technology).

[0044] Working principle of embodiment one and embodiment two:

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Abstract

The invention relates to the technical field of rail traffic, and discloses a train hub steering self-correcting assembly. The train hub steering self-correcting assembly comprises a sleeper which ispreinstalled on the ground surface, and a basic rail, an inner guide bent rail, an outer guide bent rail and a straight sharp rail which are conventionally arranged on the upper surface of the sleeper. An energy-dissipating gasket located on the surface of the sleeper is fixedly arranged at the joint of the inner guide bent rail and the straight sharp rail. By installing the energy-dissipating gasket at the joint of the straight sharp rail and the inner guide bent rail, an outer side rim of a train hub can be erected on the energy-dissipating gasket in advance during steering rail changing, the longitudinal pressure (energy-dissipating process) of the hub is counteracted through the elastic deformation of the energy-dissipating gasket, the longitudinal load of the hub is small when an inner side rim of the hub abuts against a forged section of the straight sharp rail, the abrasion to the forged section of the straight sharp rail is reduced, the service life of the forged section of thestraight sharp rail is prolonged on one hand, it can be ensured that the train hub can be prevented all the time from suspending and jolting on the other hand, the train taking experience of passengers is improved.

Description

technical field [0001] The invention relates to the technical field of rail transit, in particular to a train hub steering self-correcting assembly. Background technique [0002] For the structure of the train track at the turnout, please refer to figure 1 , the principle of train lane change: wherein the end of the inner curved rail 3 is connected with the switch, and the wheel hub of the train is changed through the hidden tip-type switch rail on the switch to make it drive on the inner curved rail 3 , and then through the guidance of the inner curved rail 3 and the outer curved rail 4, the train hub is redirected to the process on the basic rail. [0003] The structure of the straight point rail 5 is that the ends of two straight rails are welded together and forged. On the switch rail 5, in order to ensure that both sides of the train turn to normal, a certain gap needs to be left in design between the end of the straight switch rail 5 and the inner guide curved rails ...

Claims

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Application Information

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IPC IPC(8): E01B7/00E01B7/02E01B7/10E01B7/20B61F9/00
Inventor 不公告发明人
Owner 亚太空列(河南)轨道交通有限公司
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