甘肃科学学报2024,Vol.36Issue(3) :137-145.DOI:10.16468/j.cnki.issn1004-0366.2024.03.019

新型多层连续钢便梁设计与车桥耦合振动分析

Design and vehicle-bridge coupling vibration analysis of new multi-layer composite continuous steel auxiliary beam

郭铮
甘肃科学学报2024,Vol.36Issue(3) :137-145.DOI:10.16468/j.cnki.issn1004-0366.2024.03.019

新型多层连续钢便梁设计与车桥耦合振动分析

Design and vehicle-bridge coupling vibration analysis of new multi-layer composite continuous steel auxiliary beam

郭铮1
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作者信息

  • 1. 兰州铁道设计院有限公司,甘肃兰州 730030
  • 折叠

摘要

随着下穿铁路顶进框架桥跨度增大、孔数增多,采用传统的加固方法进行铁路线路加固时,存在施工周期长、施工安全风险高、对铁路行车干扰大等问题,为保证线路加固措施的安全、可靠,提出一种新型多层连续钢便梁体系.通过建立有限元计算模型,对不同跨度和线路下新型多层连续钢便梁的受力性能、挠度进行了分析研究,结果表明,该钢便梁体系可满足不同跨度和线路的加固需求.随后建立车桥耦合动力学计算模型,对车辆的安全性、平稳性以及新型多层连续钢便梁-轨道结构的稳定性进行了分析研究,结果表明车辆可以安全平稳地运行,钢便梁-轨道结构的稳定性具有一定的安全储备.该体系可在实际工作中推广使用.

Abstract

As the span and number of holes of the underpass railway jacking frame bridge increase,tradi-tional reinforcement methods for railway line reinforcement face problems such as long construction peri-od,high construction safety risk,and significant interference with railway operation.To ensure the safety and reliability of line reinforcement measures,a new type of multi-layer continuous steel beam system is proposed.In this paper,a finite element calculation model is established to analyze the mechanical perform-ance and deflection of a new type of multi-storey continuous steel temporary beam under different spans and lines.The results show that the steel temporary beam system can meet the reinforcement requirements of different spans and lines.Subsequently,a vehicle bridge coupling dynamics calculation model was estab-lished to analyze and study the safety and stability of the vehicle,as well as the stability of the new multi-layer continuous steel beam track structure.The results showed that the vehicle can operate safely and smoothly,and the stability of the steel beam track structure has a certain safety reserve.This system can be further promoted and used.

关键词

新型多层连续钢便梁/有限元分析/受力性能/车桥耦合/安全性

Key words

New multi-layer composite continuous steel auxiliary beam/Finite element analysis/Stress per-formance/Vehicle axle coupling/Security

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基金项目

兰州铁道设计院有限公司科研项目(兰院科2022-01号)

出版年

2024
甘肃科学学报
甘肃省科学院 中国科学院资源环境科学信息中心

甘肃科学学报

CSTPCD
影响因子:0.414
ISSN:1004-0366
参考文献量5
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