Influence of High-Temperature Treatment on Strength and Failure Behaviors of a Quartz-Rich Sandstone under True Triaxial Condition

Author:

Li Xiaoshuang123ORCID,Peng Jun34ORCID,Xie Yulin5ORCID,Li Qihang5ORCID,Zhou Tao5,Wang Jiawen5,Zheng Wenbo6

Affiliation:

1. School of Civil Engineering Shaoxing University Shaoxing Zhejiang 312000 China usx.edu.cn

2. Key Laboratory of Rock Mechanics and Geohazards of Zhejiang Province Zhejiang 312000 China

3. College of Civil Engineering Qilu Institute of Technology Jinan Shandong 250200 China qlit.edu.cn

4. State Key Laboratory of Safety and Health for Metal Mines Sinosteel Maanshan General Institute of Mining Research Co. Ltd. Maanshan 243000 China developmentaid.org

5. School of Resources and Environmental Engineering Jiangxi University of Science and Technology Ganzhou 341000 China jxust.edu.cn

6. School of Engineering University of Northern British Columbia 3333 University Way Prince George BC Canada unbc.ca

Abstract

Abstract In this paper, the effect of high temperature on the mechanical properties of quartz-rich sandstone was studied by true triaxial pressure experiment. The density, P-wave velocity, elastic modulus, peak stress, peak strain, and failure mode of quartz-rich sandstone before and after heat treatment were analyzed and compared. It was found that the color of quartz-rich sandstone changes greatly when heated to 500°C. In detail, the brittleness of quartz-rich sandstone gradually decreased and the ductility increased at high temperature. Although the density, P-wave velocity, and elastic modulus fluctuate, they showed a decreasing trend as a whole. In addition, the peak stress and peak strain showed an overall upward trend with the increase of temperature, and 500°C was the high-temperature failure threshold of quartz-rich sandstone. The failure mode of quartz-rich sandstone at high temperature changes from shear failure to shear-tension combined failure, and the number of cracks increases. Therefore, these research results can provide a certain reference for high-temperature underground operation.

Funder

State Key Laboratory of Safety and Health for Metal Mines

China Postdoctoral Science Foundation

Open Fund of China State Key Laboratory of Coal Resources and Safe Mining

National Engineering and Technology Research Center for Development and Utilization of Phosphate Resources of China

National Natural Science Foundation of China

Publisher

GeoScienceWorld

Subject

Geology

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