Method for Measuring Three-Dimensional Strain Tensor of Rock Specimen Using Strain Gauges

Rock Mechanics and Rock Engineering(2022)

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Abstract
We propose a method for identifying a three-dimensional strain tensor using six or more strain gauges. This purely theoretical method assumes elementary deformation of the target object. To derive the strain tensor, six independent strain components must be measured using six or more strain gauges. The effect of measurement errors of the strain gauges on the strain tensor varies with the arrangement and orientations of the strain gauges. Thus, we also propose a method for evaluating the quality of the arrangement and orientations of the strain gauges. In this evaluation method, the determinant and condition number κ of the matrix obtained from the unit direction vector in the attachment direction of the strain gauge are analyzed. The quality of each strain gauge arrangement is evaluated based on an assumption of 2–4 rosette gauges attached to a cylindrical specimen. The results of the proposed numerical analysis demonstrated that it is disadvantageous to install strain gauges at axisymmetric positions, and that it is better to have strain gauges attached to the sides in different directions. Furthermore, to evaluate one of the methods verified in this analysis, a triaxial compression test of Neogene-period tuff was conducted for comparison. It was determined that the strain tensor can be specified with high accuracy even though the three-rosette-gauge method had a medium accuracy. The accuracy improved as the number of strain gauges increased, and it was demonstrated that the strain tensor could be identified with sufficient accuracy even when only three rosette gauges are used.
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Key words
Strain tensor,Strain gauge,Rosette gauge,Cylindrical specimen
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