Assessing structural integrity of non-homogeneous systems by means of Acoustic Emissions and Non-Extensive Statistical Mechanics

S. Kourkoulis, E. Pasiou, Ilias Stavrakas, D. Triantis
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Abstract

Taking advantage of the interevent time intervals, namely the time intervals between two successive acoustic events recorded during mechanical loading of structural elements, it is attempted to detect indices warning about upcoming failure. The innovative aspect of the study is that the analysis is implemented in the frame of Non-Extensive Statistical Mechanics, a discipline founded on a class of entropies violating the additivity principle, which is the cornerstone of the Boltzmann-Gibbs Statistical Mechanics. The specimens used for the experiments were marble blocks simulating either fragmented and restored epistyles or mutually interconnected intact epistyles of the Parthenon Temple on the Acropolis of Athens. The specimens consisted of three mate­rials (marble, metallic connectors and cementitious pastes) exhibiting, thus, a strongly non-homogeneous nature. The entropic index, i.e., the parameter quantifying the degree of non-additivity, was used for the analysis of the ex­pe­rimental data. The results were considered in juxtaposition to the re­spective ones from experimental protocols with specimens of macroscopically homo­geneous nature. It was concluded that the temporal evolution of the entropic index provides very good insight into the level of damage ac­cumu­lated in the loaded structure, independently of whether the structure is homogeneous or not, providing an interesting pre-failure indicator.
利用声发射和非广延性统计力学评估非均质系统的结构完整性
利用事件间时间间隔,即在对结构元件进行机械加载时记录到的两个连续声学事件之间的时间间隔,尝试检测即将发生故障的预警指数。这项研究的创新之处在于,分析是在非广延性统计力学的框架内实施的,而非广延性统计力学是一门建立在违反加性原理的熵类基础上的学科,加性原理是玻尔兹曼-吉布斯统计力学的基石。实验中使用的标本是大理石块,模拟雅典卫城帕台农神庙的残缺和修复的表层结构或相互连接的完整表层结构。试样由三种材料(大理石、金属连接件和水泥浆)组成,因此具有强烈的非均质性。在分析实验数据时使用了熵指数,即量化非相加程度的参数。实验结果与使用宏观均质试样的实验方案得出的结果并列考虑。得出的结论是,无论结构是否均匀,熵指数的时间演变都能很好地揭示加载结构中累积的损伤程度,提供了一个有趣的失效前指标。
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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