Abstract

Geotechnical engineering problems will cause asymmetric deformation of surrounding rock, which is not conducive to the stability of rock mass. In order to study the meso-damage mechanism of rock strength and deformation characteristics, taking three kinds of typical sandstone as examples, the meso structure images of sandstone were obtained by JSM-6510LV scanning electron microscope (SEM). According to the meso-structure images and fractal theory, MATLAB was compiled to calculate the fractal dimension of the meso-structure images of the three types of sandstone. The uniaxial compression test of sandstone is carried out by using the Shimadzu electronic universal testing machine. The mechanical parameters of three types of sandstone are obtained. By comparing the relationship between fractal dimension and mechanical parameters, the correlation between strength and deformation characteristics of sandstone and mesostructure is analyzed. The results show that sandstone has the characteristic of self-similarity. The fractal dimension of sandstone decreases with the increase in magnification. The macro-mechanical properties of sandstone are closely related to the meso-structure. The strength characteristics of sandstone are inversely proportional to the fractal dimension. The greater the uniaxial compressive strength and elastic modulus, the smaller the fractal dimension. The damage problem of sandstone can be characterized by critical damage value, which is proportional to the fractal dimension; the larger the fractal dimension, the more serious the internal damage of sandstone.

Highlights

  • In the process of tunnel construction and coal mining, the stability of surrounding rock is very important

  • Based on the damage mechanics theory [42,43,44], fractal dimension is fitted with the mechanical parameters, and the influence of meso-parameters on the strength characteristics and damage to sandstone is analyzed according to the results

  • The macroscopic mechanical properties of sandstone can be analyzed according to its meso-structure; Matlab is used to calculate the fractal dimension

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Summary

Introduction

In the process of tunnel construction and coal mining, the stability of surrounding rock is very important. The research on the evolution law and strength model of rock mass meso-structure can enhance safe mining. It can improve the stability of surrounding rock support and underground engineering and make it more conducive for safe mining. Liu et al [14] proposed a dynamic damage constitutive model for rock mass with intermittent joints, and studied the variation in rock macroscopic mechanical parameters with failure. In the field of rock mechanics, fractal theory can be used to analyze some parameters of rock failure process, such as rock deformation state, pore and fissure development [24]. By the uniaxial compression test, the relationship between the micro-structure and the macro-damage is analyzed

Typical Sandstone and Sample Preparation
Typical
Rock Sample Preparation
Meso Structural Characteristics of Rock Mass
Micropores and Distribution Characteristics of Sandstone
Micropores and Distribution of Sandstone
Microfractures Characteristics of Sandstone
Fractal
Relationship between Fractal Dimension and Mechanical Properties of Sandstone
Strength Characteristics of Sandstone
Damage Mechanics Analysis of Sandstone
Findings
Conclusions
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