Stress- and Time-dependent Variations of Elastic Properties for Integrity Assessment in a Reinforced Concrete Test Bridge

IF 2.4 3区 材料科学 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Marco Dominguez-Bureos, Christoph Sens-Schönfelder, Ernst Niederleithinger, Céline Hadziioannou
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Abstract

In lab experiments, it has been observed that the stress–and time-dependent elastic properties of a complex material at a structural scale perform accordingly to its composition at a microstructural level. We seek complementary practices to the current wavefield-based non-destructive testing techniques to assess not only the integrity level of civil structures but also the microstructural elements that contribute to it. In this paper, we study the systematic evolution of elastic properties of concrete as an alternative to investigate the density of micro imperfections in an outdoor-conditioned concrete structure. We estimate 5-second relative velocity changes in four locations on a Test bridge subjected to the action of vertical impulsive sources, at different prestressing levels (dynamic effects at different static conditions). We describe the structure’s stress- and time-dependent elastic response by means of acoustoelastic effect and Slow-dynamic processes, respectively. We also estimate the conventional ultrasound pulse velocity and perform a cooperative integrity analysis of the structure using the three elastic phenomena. Our findings reveal: 1) The presence of soft microstructures and their orientation’s influence on the acoustoelastic effect and Slow-dynamics in field-conditioned concrete structures. 2) The relation of low ultrasound pulse velocities with high acoustoelastic effect and high magnitudes and variability of Slow-dynamics. 3) Different elastic behaviours on the north and south spans of the bridge, suggesting different heterogeneity levels on the analysed locations of the concrete beam.

钢筋混凝土试验桥完整性评估弹性特性的应力和时间相关变化
在实验室实验中,已经观察到复杂材料在结构尺度上的应力和时间依赖的弹性特性与其在微观结构水平上的组成相对应。我们寻求对当前基于波场的无损检测技术的补充实践,不仅评估土木结构的完整性水平,而且评估促成它的微观结构元素。在本文中,我们研究了混凝土弹性性能的系统演变,作为研究室外条件下混凝土结构中微缺陷密度的替代方法。我们估计了在不同预应力水平(不同静态条件下的动态影响)下,在垂直脉冲源作用下,测试桥上四个位置的5秒相对速度变化。我们分别用声弹性效应和慢动力过程来描述结构的应力和时间相关的弹性响应。我们还估计了常规超声脉冲速度,并利用三种弹性现象对结构进行了协同完整性分析。研究结果表明:1)软结构的存在及其取向对现场条件下混凝土结构的声弹性效应和慢动力学的影响。2)低超声脉冲速度与高声弹性效应和高慢动力学振幅和变异性的关系。3)桥梁南北跨的弹性性能不同,表明混凝土梁分析位置的非均质性不同。
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来源期刊
Journal of Nondestructive Evaluation
Journal of Nondestructive Evaluation 工程技术-材料科学:表征与测试
CiteScore
4.90
自引率
7.10%
发文量
67
审稿时长
9 months
期刊介绍: Journal of Nondestructive Evaluation provides a forum for the broad range of scientific and engineering activities involved in developing a quantitative nondestructive evaluation (NDE) capability. This interdisciplinary journal publishes papers on the development of new equipment, analyses, and approaches to nondestructive measurements.
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