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Application of Ultrasonic Technology for Measuring Physical and Mechanical Properties of Frozen Silty Clay

机译:超声波技术在冻结粉质黏土物理力学性能测试中的应用

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To investigate the influence of temperature, water content, and dry density on ultrasonic wave velocity, a serial of ultrasonic tests were conducted on frozen silty clay by using the supersonic test meter. In the mean time, compressive strength of frozen silty clay was measured under various temperature conditions. Results indicate that the ultrasonic wave velocity rapidly changed in the range of-1°C to -7°C, due to the frozen pore water, and that their relations can be described by the same formula. The ultrasonic wave velocity increased with an increase in dry density and showed a good linear relationship with dry density. Ultrasonic wave velocity increased with an increase in water content until the water content reached the critical water content. In terms of the ultrasonic wave velocities versus unfrozen water content, it was found that they have linear relationships. Based on the ultrasonic tests and strength tests results, it is found that, as the compressive strength increased, ultrasonic wave velocity increased and both of them increased with the temperature. In terms of the ultrasonic wave velocities versus temperature and compressive strength versus temperature, the relationship can be set up between ultrasonic wave velocities and compressive strength. Based on the previous research and experimental data, the relationship between ultrasonic wave velocity and frozen silty clay strength was obtained through analysis. The fitting curves show that good correlations exist between them.
机译:为了研究温度,含水量和干密度对超声波速度的影响,使用超音波测试仪对冷冻粉质黏土进行了一系列的超声波测试。同时,在各种温度条件下测量了冷冻粉质粘土的抗压强度。结果表明,由于冻结的孔隙水,超声波速度在-1°C到-7°C范围内迅速变化,并且它们的关系可以用相同的公式来描述。超声波速度随着干密度的增加而增加,并且与干密度表现出良好的线性关系。超声波速度随着水含量的增加而增加,直到水含量达到临界水含量。根据超声波速度与未冻结水含量的关系,发现它们具有线性关系。根据超声测试和强度测试结果,发现随着抗压强度的增加,超声波速度增加,并且两者都随着温度的升高而增加。根据超声波速度与温度的关系以及抗压强度与温度的关系,可以在超声波速度与抗压强度之间建立关系。根据以往的研究和实验数据,通过分析得出了超声波速度与冻结粉质黏土强度之间的关系。拟合曲线表明它们之间存在良好的相关性。

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