Pile foundation joist split-frame rail-bearing beam structure in the middle and low speed maglev double-line excavation section

A technology for rail-bearing beams and bearing structures, which is applied in infrastructure engineering, tracks, roads, etc., can solve the problems of poor overall stability of the structure, uneven settlement, and poor longitudinal and lateral stability of the foundation bed under the rail-bearing beams. Achieve excellent longitudinal and lateral stiffness of the structure, increase lateral stability, and control settlement.

Active Publication Date: 2017-11-10
CHINA RAILWAY SIYUAN SURVEY & DESIGN GRP
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

[0005] (1) The existing low-lying track-bearing beam structure is set on the subgrade geotechnical structure, which is compacted by filler filling, the compaction quality is not easy to control, and it is prone to deformation in the later stage, which affects the overall structure Rigidity, and post-construction settlement is difficult to control
[0006] (2) The rail-bearing beam structure of the low-lying line has high requirements for post-construction settlement of the subgrade and foundation, and the geological conditions in the area where the line passes are generally complex and changeable, and it is difficult to control the construction quality of the conventional rail-bearing beam structure
[0007] (3) The geotechnical structure of the low-lying line due to the filling and compaction of the filler is vulnerable, and the construction quality is not easy to control, and it is relatively easy to produce uneven settlement, which causes the longitudinal and lateral stability of the subgrade under the rail beam to deteriorate , so that the overall stability of the rail beam structure is impaired
[0008] The rail-bearing beam of the low-mounted magnetic levitation line has higher requirements for post-construction settlement, long-term stability and durability of the subgrade bed. When the line is located in the ground reinforcement area, the construction period is long and the construction quality is difficult to control if the traditional rail-bearing beam structure is adopted. , Poor overall structural stability and poor economy

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  • Pile foundation joist split-frame rail-bearing beam structure in the middle and low speed maglev double-line excavation section
  • Pile foundation joist split-frame rail-bearing beam structure in the middle and low speed maglev double-line excavation section
  • Pile foundation joist split-frame rail-bearing beam structure in the middle and low speed maglev double-line excavation section

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Embodiment Construction

[0040] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention. In addition, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not constitute a conflict with each other.

[0041] refer to Figure 1 to Figure 4 , Pile foundation joist framing rail beam structure in the middle and low speed maglev double-line excavation section, including pile foundation bearing structure 3, reinforced concrete joist 90, two rows of reinforced concrete rail bearing beam bottom plate 2, two rows of reinforced concrete beam structure 1 and backfill filler 4 on both sides of the rail ...

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Abstract

The invention belongs to the technical field of medium-low speed maglev traffic engineering low arrangement lines and discloses a medium-low speed maglev double-line excavation section pile foundation support beam separate width type rail bearing beam structure. The medium-low speed maglev double-line excavation section pile foundation support beam separate width type rail bearing beam structure comprises a plurality of pile foundation bearing structures, a reinforced concrete support beam, two rows of reinforced concrete rail bearing beam base plates, two rows of reinforced concrete beam type structures and rail bearing beam two-side backfill filler. The tops of the reinforced concrete rail bearing beam base plates are connected with the reinforced concrete beam type structures in a bearing mode. The rail bearing beam two-side backfill filler achieves bearing connection through rail bearing beam lower roadbed filler. According to the medium-low speed maglev double-line excavation section pile foundation support beam separate width type rail bearing beam structure, the defects of a traditional low arrangement line rail bearing beam structure can be avoided, the long-term stability is better, the high requirements of a medium-low speed maglev traffic engineering rail structure for deformation of the rail bearing beam structure and post-construction settlement are met, the requirements of long-term stability, durability and construction quality controllability of a foundation bed are also met, and the economy is better.

Description

technical field [0001] The invention belongs to the technical field of low-set lines of medium and low-speed maglev traffic engineering, and more specifically relates to a structure type of a transition section of a rail-bearing beam in an excavation section of a medium-low speed maglev double-track excavation section. Background technique [0002] Medium and low-speed maglev rail transit is a new type of transportation. There are few research results at home and abroad, and there are even fewer lines in operation around the world. At present, there are only the commercial operation line of the medium and low speed maglev railway in Japan in March 2005-Eastern Hills Line and the commercial operation line of the medium and low speed maglev railway in South Korea in June 2014. At present, China's medium and low-speed maglev transportation only has the National University of Defense Technology test line, the Qingchengshan test line, and the Tangshan test line, but there are no ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E01B2/00E01B1/00E01B25/30E02D27/14E02D27/34
CPCE01B1/00E01B1/008E01B2/006E01B25/305E01B2204/07E01B2204/08E01B2204/09E02D27/14E02D27/34
Inventor 郭建湖李小和赵新益姜鹰姚洪锡李巍王勇刚杨辉建
Owner CHINA RAILWAY SIYUAN SURVEY & DESIGN GRP
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