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Floating slab ballast bed with weak correlation between frequency and load

A floating plate, weak correlation technology, applied in the directions of roads, tracks, ballast layers, etc., can solve the problems of limited vibration isolation effect, limited overall vibration isolation effect, large vertical stiffness, etc., and achieve convenient height adjustment and leveling operation. , Improve the overall vibration isolation effect, improve the overall vibration reduction and noise reduction effect

Pending Publication Date: 2018-12-21
GUANGZHOU METRO DESIGN & RES INST +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the existing steel spring vibration isolation devices are all designed to provide linear elastic bearing capacity. For safety considerations, their vertical stiffness is relatively large, and the amount of compression during work is small. According to "CJJ-T191-2012 Floating Plate Track "Technical Specifications" requires that "the maximum vertical displacement of the floating plate under the rated load of the train should not exceed 3mm", therefore, the compression of the steel spring vibration isolation device under working conditions generally does not exceed 3mm
The problems caused by this include: (1) The spring stiffness is large, the compression amount is small during operation, and the natural frequency of the system is high, which cannot cope with the system caused by the huge change in the load of the local floating plate when the rail vehicle enters and leaves. The natural frequency changes, and it is difficult to fully adapt to the vibration control requirements under the changing dynamic load conditions when the rail vehicle passes by. The spring must be compressed to achieve a good vibration and noise reduction function when the dynamic load reaches a certain value. The section can achieve a good vibration isolation effect, the vibration isolation effect of the insufficiently loaded section is limited, and the overall vibration isolation effect is limited; (2) Under non-working conditions, when only the floating plate is supported, due to the small load, the steel spring vibration isolation The static compression of the device is too small, sometimes even less than 1mm, which makes it difficult to adjust the height and level of the floating ballast bed, and the construction efficiency is low

Method used

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  • Floating slab ballast bed with weak correlation between frequency and load
  • Floating slab ballast bed with weak correlation between frequency and load
  • Floating slab ballast bed with weak correlation between frequency and load

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] like figure 1 The floating slab ballast bed of the present invention with a weak correlation between frequency and load includes a floating slab 16 and an elastic vibration isolation device 18, and the elastic vibration isolation device 18 is placed in the reserved space 17 for installation on the floating slab 16, And elastically supports the floating plate 16 to make the floating plate break away from the surface of the foundation 20, and the track structure 19 is arranged on the floating plate; as figure 2 As shown, the elastic vibration isolation device 18 includes an upper shell 1, a lower shell 2 and an elastic element, the elastic element is placed between the lower shell 1 and the lower shell 2, and the elastic element includes a static load supporting spring 4 And joint support spring 3, wherein, static load support spring 4 and joint support spring 3 are helical steel springs, the stiffness of static load support spring 4 is less than the stiffness of joint s...

Embodiment 2

[0033] like image 3 The difference between the floating slab ballast bed of the present invention with a weak correlation between frequency and load as shown in Embodiment 1 is that it also includes a height-adjusting gasket 21, which is arranged between the floating slab 16 and the elastic vibration isolation device 18 ; In addition, if Figure 4 As shown in this example, in the elastic vibration isolation device of the floating slab ballast bed with weak correlation between frequency and load described in this example, a solid damping structure is provided on the partial surface of the static load support spring 4 of the ballast bed, and the solid damping structure is specifically set in the static load The rubber sleeve 9 on the partial outer surface of the support spring 4; in addition, the support 6 for height compensation is arranged under the static load support spring 4, and the support 6 is fixedly connected with the lower housing 2 as a whole. At this time, the stat...

Embodiment 3

[0036] like Figure 5 The difference between the floating slab ballast bed of the present invention with a weak correlation between frequency and load as shown in Embodiment 2 is that a coupling sleeve 22 is fixedly arranged on the floating slab 16, and the elastic vibration isolation device 18 is placed in the coupling sleeve 22. The elastic vibration isolation device 18 is supported on the support block 23 of the connecting sleeve 22 through the height-adjusting spacer 21, so that the floating plate 16 is separated from the surface of the foundation 20. In addition, in order to prevent foreign matter from falling into the connecting sleeve, the top of the connecting sleeve An end cover 24 is provided; in addition, the arrangement of the solid damping structure on the surface of the static load bearing spring can be various, such as Image 6 As shown, in the elastic vibration isolation device adopted in this example, a rubber layer 10 is integrally provided on the surface of ...

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Abstract

The invention belongs to the technical field of vibration and noise reduction of rail transit, A floating slab ballast bed for isolating vibrations generated during operation of a rail vehicle is disclosed, comprising a floating plate and an elastic vibration isolation device, the elastic vibration isolation device is placed in an installation reserved space or a coupling sleeve arranged on the floating plate, The elastic vibration isolation device includes an upper housing, a lower housing, and an elastic element disposed between the upper housing and the lower housing, the elastic element including a static support spring and a combined support spring. As that system frequency of the float slab ballast bed with weak correlation between the frequency and the load does not change obviouslywith the change of the load, the correlation between the system frequency and the load is weak, and the float slab ballast bed has the characteristics of simple structure, strong adaptability to dynamic load variation, good vibration isolation performance and the like, and can be widely applied to vibration isolation engineering of various rail transit.

Description

technical field [0001] The invention belongs to the technical field of vibration reduction and noise reduction for rail transit, and relates to a track bed, in particular to a floating slab track bed used for isolating vibration generated during the operation of rail vehicles. Background technique [0002] Vibration isolation and damping have always been the core issues of urban rail transit and construction. Floating ballast bed technology is widely used to solve vibration isolation and damping problems. Among them, the floating ballast bed system based on the steel spring vibration isolation device has been recognized in the industry due to its good vibration isolation effect, long service life, and stable vibration isolation effect, and has been widely used in rail transit lines in many countries and cities middle. However, the existing steel spring vibration isolation devices are all designed to provide linear elastic bearing capacity. For safety considerations, their ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E01B1/00E01B19/00
CPCE01B1/00E01B19/003
Inventor 农兴中尹学军林志元邹东史海欧王迪军金辉王建立贺利工吴嘉曹明华李平罗信伟朱文海党红玲王建周国鹏尹华拓
Owner GUANGZHOU METRO DESIGN & RES INST
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