Feasibility Study of Material Deformation and Similarity of Spatial Characteristics of Standard Coal Rocks

Author:

Liu Gang12ORCID,Wang Dongwei12ORCID,Zan Yonglong12,Wang Shengxuan12,Zhang Qiqi12

Affiliation:

1. Heilongjiang Ground Pressure and Gas Control in Deep Mining Key Laboratory, Heilongjiang University of Science and Technology, Harbin 150022, China

2. College of Mining Engineering of Hust, Heilongjiang University of Science and Technology, Harbin 150022, China

Abstract

The comparison between similar materials and original coal rock is the basis for similar simulation experiments in coal mines. The differences in mechanical properties, acoustic characteristics, and damage laws between similar materials and the original coal rock are of great significance for similar simulation research, to reveal objective laws. First, materials similar to coal rock with similar theoretical ratios were taken as the object of research, and the sand–cement ratio, the carbon paste ratio, and the water content were determined by multivariate linear regression to accurately match the ratios. Second, by using acoustic emission and digital scattering technology to explore the acoustic law, deformation characteristics, and spatial feature similarities of the materials similar to coal rock, the acoustic emission evolution law of the original rock was found to be the same as that of the similar materials. Digital scattering was able to describe the localization of strain in the similar materials, and the correlation between the overall deformation and the local deformation was explored. This indicates that materials similar to coal rock can effectively simulate the deformation of actual coal rocks. Lastly, these materials were found to allow effectively simulating the deformation characteristics and spatial properties of actual coal rock, which provides an important experimental means and method for similar research in the field of coal rock engineering.

Funder

University Nursing Program for Young Scholars with Creative Talents in Heilongjiang Province

Natural Science Foundation of Heilongjiang Province

Basic Scientific Research Operating Expenses of Heilongjiang Provincial Universities and Colleges of China

Scientific and Technological Key Project of “Revealing the List and Taking Command” in Heilongjiang Province

Publisher

MDPI AG

Reference32 articles.

1. Research on deformation and damage law of similar model based on digital scattering technology;Yang;Min. Technol.,2020

2. Yang, Y. (2017). Study and Application of Digital Speckle Technique in Physical Similar Simulation Experiment of Protective Layer Mining. [Master’s Thesis, Chongqing University].

3. Experimental study of deep tunnel surrounding rock rockburst proneness with similarity material simulating method based on digital speckle correlation technique;Chen;Geotechnics,2011

4. Experimental study on the tensile strength of rock-like materials containing two pre-existing coplanar flissures;Dong;Eng. Mech.,2020

5. Bearing characteristics and fatigue damage mechanism of multi-pillar system subjected to different cyclic loads;Zhou;J. Cent. South Univ. Sci. Technol. Min. Metall.,2020

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