Energy characteristics and damage constitutive model of pre‐cracked granite with or without filling materials

Author:

Tan Tao1,Zhang Chunyang123ORCID,Dai Bibo23,Wang Yixian4

Affiliation:

1. School of Resources and Environmental Engineering Wuhan University of Technology Wuhan Hubei China

2. State Key Laboratory of Safety and Health in Metal Mines Maanshan Anhui China

3. Sinosteel Maanshan General Institute of Mining Research Co Ltd Maanshan Anhui China

4. School of Civil Engineering Hefei University of Technology Hefei Anhui China

Abstract

AbstractIn order to study the effects of pre‐crack inclination angle and filling material on granite, uniaxial compression tests were performed on pre‐cracked granite specimens without filling material and specimens filled with epoxy resin, gypsum, and organosilicon. Results indicate that the peak strength and apparent stiffness of pre‐cracked granite without filling materials increase with increasing pre‐crack inclination angle. The strain energy absorbed by the filling material improves the energy storage limit, inhibits the energy release effect when microcracks are connected to each other, and ultimately improves the compressive resistance and energy storage capacity. The strengthening effect of gypsum and epoxy resin is relatively better, which is more significant when the pre‐crack inclination angle equals 0°–60°. Finally, a damage constitutive model is established, which is in good agreement with the test and numerical simulation data. The results can provide reference for the research of grouting reinforcement of rock masses.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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