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Imaging strain localization by X-ray computed tomography: discrete compaction bands in Diemelstadt sandstone

机译:X射线计算机断层扫描成像应变本地化:迪梅尔施塔特砂岩中的离散压实带

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摘要

Compaction localization was observed in Diemelstadt sandstone during triaxial experiments over a broad range of effective pressures (60-165 MPa). High resolution X-ray CT imaging was used to resolve the 3D the geometry of the localization features developed as tabular bands subperpendicular to the maximum compressive stress. While the raw X-ray attenuation data provide very low contrast between relatively intact and deformed areas as opposed to similar studies involving dilatancy, skewness (asymmetry of the distribution of attenuation values) and local standard deviation were demonstrated to be useful in locating and delineating the complex geometry of the compacted zones. Complementary microstructural study including damage mapping confirmed the observed features as compaction bands. Geometric attributes such as average thickness, tortuosity and orientation were evaluated from the CT data. Our study underscores the advantage of working with an image resolution of about 0.1 mm in granular media, which is intermediary to synchrotron (~1 μm) and conventional medical CT (1 mm) resolutions. Our methodology can be used for imaging other compactant localization features, such as compactive shear bands and diffuse compaction bands in naturally deformed samples, provided that the undeformed rock does not possess preexisting heterogeneities comparable with those expected from compaction localization.
机译:在广泛的有效压力范围(60-165 MPa)的三轴实验中,在Diemelstadt砂岩中观察到压实局部化。高分辨率X射线CT成像用于解析3D定位特征的几何形状,这些特征被开发为垂直于最大压缩应力的表格带。尽管原始X射线衰减数据在相对完整和变形的区域之间提供了非常低的对比度,而与涉及膨胀的类似研究相反,但是偏斜度(衰减值分布的不对称性)和局部标准偏差被证明可用于定位和勾画压实区的复杂几何形状。包括损伤图谱在内的补充微结构研究证实了观察到的特征为压实带。从CT数据评估几何属性,例如平均厚度,曲折度和方向。我们的研究强调在粒状介质中以约0.1 mm的图像分辨率工作的优势,这是同步加速器(〜1μm)和常规医学CT(1 mm)分辨率的中介。我们的方法可用于对其他压实度定位特征进行成像,例如自然变形样本中的压实剪切带和弥散压实带,但前提是未变形的岩石不具有与压实定位所期望的异质性。

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