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From rock microstructure to macromechanical properties based on fractal dimensions:

机译:基于分形尺寸的岩体微观结构从岩体微观结构:

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Basic rock mechanical parameters, that is, the uniaxial compressive strength σc and elastic modulus E, have close relationships with the fractal dimension and inhomogeneity. Scanning electronic microscopy and fractal dimension calculations are applied to four different rock types (mudstone, sandstone, limestone, and basalt) in order to investigate the relationships between the rock mechanical properties, fractal dimensions, and homogeneity. The results show that the fractal dimension of each rock type fluctuates as the scanning electronic microscopy magnification increases. Rocks with different uniaxial compressive strength and elastic modulus values possess different self-similarity properties, and when the uniaxial compressive strength or elastic modulus increases, the fractal dimension of the rock microstructure decreases. The rock homogeneity is consistent with the fractal dimension, that is, the higher the homogeneity is, the larger the fractal dimension. Generally, homogeneity refers to the macrosca...
机译:基本岩石力学参数,即单轴压缩强度σc和弹性模量e,与分形尺寸和不均匀性具有密切的关系。扫描电子显微镜和分形尺寸计算适用于四种不同的岩石类型(泥岩,砂岩,石灰石和玄武岩),以研究岩石机械性能,分形尺寸和均匀性之间的关系。结果表明,随着扫描电子显微镜放大率的增加,每个岩型的分形尺寸波动。具有不同单轴抗压强度和弹性模量值的岩石具有不同的自相似性,并且当单轴抗压强度或弹性模量增加时,岩石微观结构的分形尺寸减小。岩石均匀性与分形尺寸一致,即均匀性越高,分形尺寸越大。通常,均匀性是指Macroca ......

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