Diagnostics of Bridge Bed Sections and Approaches in Zones of Expansion Joints on Road Bridges

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY
V. A. Hodyakov, A. Kulan, E. N. Savina, I. Boiko, V. A. Grechuhin
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Abstract

The object of the study is durability of expansion joints in bridge structures; the subject of the research is the vibration response of a structure obtained under conditions of natural operation. Diagnostics of the road bridge expansion joints has been carried out in order to identify characteristic dependences  between the value of structure vibration response and types of expansion joint designs during the period of their operation while taking into account the features of the bridge structure. For this purpose, we have tested the methodology for collecting and processing data on the vibration response of the structure under natural conditions of its operation. The paper presents results of data collection on the coverage topology which have been obtained while using three-dimensional scanning method. Data collection on the vibration response of the structure has been carried out by measuring the vibration velocity and deformation of the structure. The data obtained are analyzed. As a result of testing and analysis of the obtained data, the main characteristics have been revealed: the value of base unevenness, the amplitude of vibration velocity and vibration displacement of the structure elements. Two main parameters of the dynamic impact have been assigned, adjusted for the mass of a moving vehicle, which can be used as main parameter for assessing the magnitude of the dynamic impact. A comprehensive method for assessing the dynamic impact on bridge structures has been developed and proposed in the paper, and its use will make it possible to differentiate various designs of expansion joints according to the magnitude of the dynamic impact of vehicles. This, in its turn, will contribute to formulate new recommendations on the use of specific types of expansion joints for various categories of highway, which will increase operational durability of  expansion joints and the structure as a whole.
公路桥梁伸缩缝区桥面断面诊断及处理方法
本文的研究对象是桥梁结构伸缩缝的耐久性;本课题研究的是结构在自然运行条件下的振动响应。为了在考虑桥梁结构特点的情况下,确定结构振动响应值与伸缩缝设计类型之间的特征依赖关系,对公路桥梁伸缩缝进行了诊断。为此,我们测试了收集和处理结构在自然运行条件下振动响应数据的方法。本文介绍了利用三维扫描方法对覆盖拓扑进行数据采集的结果。通过测量结构的振动速度和变形对结构的振动响应进行了数据采集。对得到的数据进行分析。通过对实测数据的测试和分析,揭示了结构单元的基本不均匀度值、振动速度幅值和振动位移的主要特征。给出了动态冲击的两个主要参数,并根据运动车辆的质量进行了调整,这两个参数可以作为评估动态冲击大小的主要参数。本文开发并提出了一种评估桥梁结构动力冲击的综合方法,它的使用将使根据车辆动力冲击的大小区分各种伸缩缝设计成为可能。反过来,这将有助于制定关于为各类公路使用特定类型的伸缩缝的新建议,这将增加伸缩缝和整个结构的使用耐久性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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