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Cone penetrometer incorporated with dynamic cone penetration method for investigation of track substructures

机译:结合动态锥入法的锥形渗透仪用于研究轨道下部结构

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摘要

The increased speed of a train causes increased loads that act on the track substructures. To ensure the safety of the track substructures, proper maintenance and repair are necessary based on an accurate characterization of strength and stiffness. The objective of this study is to develop and apply a cone penetrometer incorporated with the dynamic cone penetration method (CPD) for investigating track substructures. The CPD consists of an outer rod for dynamic penetration in the ballast layer and an inner rod with load cells for static penetration in the subgrade. Additionally, an energy-monitoring module composed of strain gauges and an accelerometer is connected to the head of the outer rod to measure the dynamic responses during the dynamic penetration. Moreover, eight strain gauges are installed in the load cells for static penetration to measure the cone tip resistance and the friction resistance during static penetration. To investigate the applicability of the developed CPD, laboratory and field tests are performed. The results of the CPD tests, i.e., profiles of the corrected dynamic cone penetration index (CDI), profiles of the cone tip and friction resistances, and the friction ratio are obtained at high resolution. Moreover, the maximum shear modulus of the subgrade is estimated using the relationships between the static penetration resistances and the maximum shear modulus obtained from the laboratory tests. This study suggests that the CPD test may be a useful method for the characterization of track substructures.
机译:火车速度的提高导致作用在轨道子结构上的载荷增加。为了确保轨道子结构的安全,必须基于强度和刚度的准确表征进行适当的维护和维修。这项研究的目的是开发和应用结合动态锥体穿透方法(CPD)的锥体渗透仪来研究轨道的子结构。 CPD包括一个用于在压载层中动态渗透的外杆和一个用于在路基中静态渗透的带有测力传感器的内杆。另外,由应变仪和加速度计组成的能量监控模块连接到外杆的头部,以测量动态穿透过程中的动态响应。此外,在称重传感器中安装了八个应变仪,用于静态穿透,以测量静态穿透过程中的锥头阻力和摩擦阻力。为了调查开发的CPD的适用性,进行了实验室和现场测试。 CPD测试的结果,即校正后的动态锥面渗透指数(CDI)的轮廓,锥头和摩擦阻力的轮廓以及摩擦比,都是在高分辨率下获得的。此外,路基的最大剪切模量是使用静态渗透阻力与实验室测试获得的最大剪切模量之间的关系估算的。这项研究表明,CPD测试可能是表征轨道子结构的有用方法。

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