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Assessment of mechanical properties of full-scale masonry panels through sonic methods. Comparison with mechanical destructive tests

机译:通过声波法评估全尺寸砖石板的机械性能。与机械破坏性测试的比较

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摘要

Sonic tests are a valid and useful non-destructive method for qualitative characterization of masonry elements. If sonic tests are applied with the right configuration, the results can identify discontinuities in masonry sections and provide the morphology of a construction typology, contributing to the assessment of built heritage as demanded by the international recommendations on this domain. The elaboration of data from sonic tests applied to masonry structures has been essentially based on the evaluation of the P waves' propagation through the masonry thickness, that is, by using the direct sonic method, a procedure that has been calibrated for many years by different authors. However, recent studies have shown that indirect configurations through the indirect sonic impact method may be used to estimate the mechanical properties of stones masonry samples. This procedure allows assessing not only P but also R wave propagation, permitting to estimate the deformability characteristics of masonry panels. Under this research, a set of stone masonry specimens was tested using both direct and indirect sonic impact methods and later assessed through laboratory mechanical compression tests, a procedure's sequence that allow validating the sonic tests capabilities. Copyright © 2015 John Wiley & Sons, Ltd.
机译:声波测试是对砖石元素进行定性表征的一种有效且有用的非破坏性方法。如果以正确的配置应用声波测试,结果可以识别出砖石断面中的不连续性,并提供建筑类型的形态,从而有助于按此领域的国际建议对建筑遗产进行评估。应用于砌体结构的声波测试数据的详细说明,基本上是基于对P波在砌体厚度中传播的评估,即通过使用直接声波方法,该方法已通过不同方法进行了多年校准。作者。然而,最近的研究表明,通过间接声波冲击法的间接构型可用于估算砌石样品的机械性能。该程序不仅可以评估P波,还可以评估R波的传播,从而可以估计砌体面板的变形特性。根据这项研究,使用直接和间接的声波冲击方法测试了一组砌石标本,随后通过实验室机械压缩测试进行了评估,该程序的顺序可以验证声波测试的能力。版权所有©2015 John Wiley&Sons,Ltd.

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