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Monitoring and Evaluation of Sandstone Decay Adopting Non-Destructive Techniques: On-Site Application on Building Stones

机译:采用非破坏性技术的砂岩衰减监测与评估:在建筑石头上的现场申请

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This paper focuses on the characterization approach to evaluate the decay state of Pietra Serena of historic buildings in Florence (Italy). Pietra Serena is a Florentine sandstone largely used in the city especially during the Renaissance; it is a symbol of cultural heritage of Florence and constitutes a large part of the city center, which was named a World Heritage Site by UNESCO in 1982. Unfortunately, many environmental factors negatively affect the stone, increasing damage and the danger of falling material. Any detachment of stone fragments, in addition to constitute a loss in cultural heritage, can be dangerous for citizens and the many tourists that visit the city. The use of non-destructive techniques (NDTs) as ultrasonic and Schmidt hammer tests can quantitatively define some mechanical properties and help to monitor the decay degree of building stone. In this study, the NDTs were combined with mineralogical, petrographical, chemical and physical analyses to investigate the stone materials, in order to correlate their features with the characteristics of the different artefacts in Pietra Serena. Correlations between the NDTs results and the compositional characteristics of the on-site stone were carried out; such discussion allows to identify zones of weakness and dangerous unstable elements.
机译:本文侧重于评估佛罗伦萨(意大利)历史建筑腐烂状态的表征方法。 Pietra Serena是一个大部分用于城市的佛罗伦萨砂岩,特别是在文艺复兴时期;这是佛罗伦萨文化遗产的象征,构成了城市中心的一大部分,由教科文组织于1982年被评为世界遗产。不幸的是,许多环境因素对石材产生了负面影响,造成损害和落实物质的危险。除了构成文化遗产的损失之外,石头碎片的任何脱离都可能对公民和访问城市的许多游客来说是危险的。使用非破坏性技术(NDT)作为超声波和施密锤试验可以定量地定义一些机械性能并有助于监测建筑石的衰减程度。在这项研究中,NDTS与矿物学,岩化,化学和物理分析结合,以研究石材材料,以便将其特征与Pietra Serena的不同人工的特征相关联。进行NDTS结果与现场石头的组成特征之间的相关性;这种讨论允许识别弱点和危险不稳定元素的区域。

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