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Prediction of Building Limestone Physical and Mechanical Properties by Means of Ultrasonic P-Wave Velocity

机译:通过超声波波速度预测建筑石灰岩物理和力学性能

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摘要

The aim of this study was to evaluate ultrasonic P-wave velocity as a feature for predicting some physical and mechanical properties that describe the behavior of local building limestone. To this end, both ultrasonic testing and compressive tests were carried out on several limestone specimens and statistical correlation between ultrasonic velocity and density, compressive strength, and modulus of elasticity was studied. The effectiveness of ultrasonic velocity was evaluated by regression, with the aim of observing the coefficient of determinationr2between ultrasonic velocity and the aforementioned parameters, and the mathematical expressions of the correlations were found and discussed. The strong relations that were established between ultrasonic velocity and limestone properties indicate that these parameters can be reasonably estimated by means of this nondestructive parameter. This may be of great value in a preliminary phase of the diagnosis and inspection of stone masonry conditions, especially when the possibility of sampling material cores is reduced.
机译:本研究的目的是评估超声波的P波速度作为预测描述局部建筑物石灰石行为的一些物理和机械性能的特征。为此,对几种石灰石试样进行超声波检测和压缩试验,研究了超声波速度和密度之间的统计相关性,抗压强度和弹性模量之间的统计相关性。通过回归评估超声速度的有效性,目的是观察确定的超声波速度和上述参数的系数,并且发现并讨论了相关的数学表达式。在超声速度和石灰石属性之间建立的强大关系表明这些参数可以通过这种非破坏性参数合理地估计。这可能是石头砌体条件的诊断和检查的初步阶段的巨大价值,尤其是当减少采样材料芯的可能性时。

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