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In situ and nondestructive characterization of mechanical properties of heritage stone masonry

机译:遗产砌石的力学性能的原位和非破坏性表征

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摘要

The necessity of conserving and preserving the heritage is nowadays a developing study line for several researchers. From a civil engineering perspective, one of the most important issues for the conservation of historical buildings is to ensure the structural stability. For this purpose, it is necessary to determine the mechanical properties of the ancient construction materials. However, these structures cannot be evaluated by destructive tests due to politics and restrictions for preserving the heritage built. As a consequence, new methods that do not put in risk the integrity of the materials and the structure are becoming useful tools for researchers who work on structural engineering of heritage buildings. This paper presents a nondestructive method (NDM) that has been used to characterize the mechanical properties of different constructive systems of the San Antonio de Padua Temple, which is a religious icon in Aguascalientes, Mexico. This method includes the measuring of seismic waves' travel time in order to obtain shear and compressional velocity waves. Results show that with this method mechanical properties of masonry can be obtained such as Young's modulus, Poisson ratio and bulk density, which are needed for the structural analysis using numerical simulation models.
机译:如今,保护和保存遗产的必要性是一些研究人员不断发展的研究方向。从土木工程的角度来看,保护历史建筑最重要的问题之一就是确保结构的稳定性。为此,有必要确定古代建筑材料的机械性能。但是,由于政治和保存遗产的限制,无法通过破坏性测试来评估这些结构。结果,不会冒着材料和结构完整性风险的新方法正成为从事文物建筑结构工程研究的有用工具。本文介绍了一种非破坏性方法(NDM),该方法已用于表征圣安东尼奥·帕多瓦神庙(在墨西哥阿瓜斯卡连特斯的一个宗教标志)的不同构造系统的机械性能。该方法包括测量地震波的传播时间,以获得剪切和压缩速度波。结果表明,利用该方法可以获得砌体的力学性能,例如杨氏模量,泊松比和堆积密度,这是使用数值模拟模型进行结构分析所必需的。

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