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Cantilever-Type Local Deformation Transducer for Local Axial Strain Measurement in Triaxial Test

机译:三轴测试中用于轴向应变测量的悬臂式局部变形传感器

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摘要

The cantilever-type local deformation transducer (cantilever-LDT) was developed as an alternative local axial strain measurement device for triaxial testing. The transducer behaves as a cantilever beam and the deflection at its free-end is measured by the output from the strain gages attached near the fixed-end. By placing two cantilever-LDTs along the same vertical alignment but at different levels of a specimen, the local axial strain is obtained from the relative movements of two cantilever-LDTs. The advantages over the original-LDT proposed by Goto et al. (1991) are: (ⅰ) a linear calibration curve, (ⅱ) capability to release itself at large strains, and (ⅲ) larger working range. With a gage length of 50 mm, the resolution, accuracy, and working range are 0.0012 %, 0.003 %, and 6 %, respectively. The triaxial test results on heavily overconsolidatcd clay specimens show that the cantilever-LDT can be used satisfactorily to measure the local axial strain accurately, but the reliability depends very much on the quality of specimen preparation and setup.
机译:悬臂式局部变形传感器(cantilever-LDT)是作为三轴测试的替代局部轴向应变测量设备而开发的。换能器表现为悬臂梁,其自由端的挠度由固定端附近的应变计的输出测量。通过沿相同的垂直方向但在样品的不同位置放置两个悬臂式LDT,可以从两个悬臂式LDT的相对运动中获得局部轴向应变。相对于Goto等人提出的原始LDT的优势。 (1991)是:(ⅰ)线性校准曲线,(ⅱ)在大应变下释放自身的能力,以及(ⅲ)较大的工作范围。量规长度为50 mm时,分辨率,精度和工作范围分别为0.0012%,0.003%和6%。在严重超固结的黏土样品上进行的三轴试验结果表明,悬臂LDT可以令人满意地准确地测量局部轴向应变,但是其可靠性在很大程度上取决于样品制备和设置的质量。

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