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LVDTs-based radial strain measurement system for static and cyclic behavior of geomaterials

机译:基于LVDTS的径向应变测量系统,用于静态和循环行为的岩土

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摘要

The importance of local strain measurement on triaxial specimens has been widely recognized. The design of the radial strain measurement system has been relatively less advanced as compared to the axial strain measurement system. In this study, a new linear variable differential transformers (LVDTs)-based radial strain measurement system is developed. Firstly, the setup and methodology of the new radial strain measurement system along with the advantages are described in detail. The detailed calibration process of the measuring system is introduced, together with the error analysis. Also, the long-term performance of this new system under different levels of cell pressure and the varying temperature is examined. The paper also presents the radial strain measurement results of triaxial tests performed on natural rubber, quartz sand specimen, and cement-stabilized marine deposit column. In particular, the performance of the new measurement system under cyclic loading condition is evaluated, which is rarely reported in the existing literature. The calibration and test results confirm that the new measurement system can provide reliable and accurate radial strain results and minimize any associated measurement bias as the specimens are subjected to both static and cyclic loadings. (C) 2020 Elsevier Ltd. All rights reserved.
机译:局部应变测量对三轴标本的重要性得到了广泛认可。与轴向应变测量系统相比,径向应变测量系统的设计已经相对较低。在该研究中,开发了一种新的线性可变差压变压器(LVDT)基础的径向应变测量系统。首先,详细描述了新的径向应变测量系统的设置和方法以及优点。将测量系统的详细校准过程与误差分析一起引入。此外,检查了这种新系统在不同水平的细胞压力和变化温度下的长期性能。本文还介绍了在天然橡胶,石英砂试样和水泥稳定的海洋沉积柱上进行三轴试验的径向菌株测量结果。特别地,评估新测量系统在循环负载条件下的性能,在现有文献中很少报道。校准和测试结果证实,新的测量系统可以提供可靠且精确的径向应变结果,并最大限度地减少任何相关的测量偏压,因为样品经受静态和循环负载。 (c)2020 elestvier有限公司保留所有权利。

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