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Evaluation of Compressive Strength and Stiffness of Grouted Soils by Using Elastic Waves

机译:用弹性波评估灌浆土的抗压强度和刚度

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摘要

Cement grouted soils, which consist of particulate soil media and cementation agents, have been widely used for the improvement of the strength and stiffness of weak ground and for the prevention of the leakage of ground water. The strength, elastic modulus, and Poisson's ratio of grouted soils have been determined by classical destructive methods. However, the performance of grouted soils depends on several parameters such as the distribution of particle size of the particulate soil media, grouting pressure, curing time, curing method, and ground water flow. In this study, elastic wave velocities are used to estimate the strength and elastic modulus, which are generally obtained by classical strength tests. Nondestructive tests by using elastic waves at small strain are conducted before and during classical strength tests at large strain. The test results are compared to identify correlations between the elastic wave velocity measured at small strain and strength and stiffness measured at large strain. The test results show that the strength and stiffness have exponential relationship with elastic wave velocities. This study demonstrates that nondestructive methods by using elastic waves may significantly improve the strength and stiffness evaluation processes of grouted soils.
机译:由颗粒状土壤介质和胶结剂组成的水泥灌浆土壤,已被广泛用于改善弱土的强度和刚度以及防止地下水渗漏。灌浆土的强度,弹性模量和泊松比已通过经典破坏性方法确定。但是,灌浆土壤的性能取决于几个参数,例如颗粒土壤介质的粒径分布,灌浆压力,固化时间,固化方法和地下水流量。在这项研究中,弹性波速度被用来估计强度和弹性模量,这通常是通过经典的强度测试获得的。在大应变的经典强度试验之前和之中,通过使用小应变的弹性波进行无损检测。比较测试结果以确定在小应变下测得的弹性波速度与大应变下测得的强度和刚度之间的相关性。试验结果表明,强度和刚度与弹性波速度呈指数关系。这项研究表明,利用弹性波的无损检测方法可以显着改善灌浆土的强度和刚度评估过程。

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