Wang Shuai, Wang Lianguo, Ren Bo, Ding Ke, Jiang Chongyang, Guo Jiaxing
State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou, 221116, China.
Sci Rep. 2023 Aug 10;13(1):13036. doi: 10.1038/s41598-023-40314-2.
In this study, a series of true triaxial loading tests were carried out on coal-measure sandstone after high temperature treatment by using a self-developed true triaxial test system combined with acoustic emission (AE) monitoring, and the mass loss, deformation characteristics and loss failure mode of sandstone before and after heat treatment were systematically studied. It is found that the true triaxial mechanical properties of sandstone after high temperature treatment are closely related to temperature, and the peak strength, maximum principal strain, volume strain, minimum fracture angle and elastic modulus, which all showed bimodal changes, and 800 °C is the threshold temperature of the first four parameters. The transition temperature of the elastic modulus is 400 °C. It is found that the test results of true triaxial high temperature sandstone are in good agreement with the existing true triaxial theory and test results. The failure forms of the samples at different temperatures show inverted "Y" or inverted "N" shapes. Shear failure occurs when the temperature is below 400 °C, and shear-tension failure occurs when the temperature is above 600 °C. At the same time, it is found that the AE signal has four periods, namely the quiet period, growth period, explosion period and decline period. The number of AE events corresponds to the deviatoric stress interval well. Experimental study of the mechanical properties of sandstone under the coupling effect of high temperature and true triaxial stress has guiding significance for the parameter selection and safety evaluation of roof sandstone in underground coal gasification.
本研究采用自行研制的真三轴试验系统结合声发射(AE)监测,对高温处理后的煤系砂岩进行了一系列真三轴加载试验,系统研究了热处理前后砂岩的质量损失、变形特性及失稳破坏模式。研究发现,高温处理后砂岩的真三轴力学性能与温度密切相关,峰值强度、最大主应变、体积应变、最小破裂角和弹性模量均呈现双峰变化,800℃是前四个参数的阈值温度,弹性模量的转变温度为400℃。研究发现,真三轴高温砂岩的试验结果与现有的真三轴理论及试验结果吻合良好。不同温度下试样的破坏形式呈倒“Y”形或倒“N”形,温度低于400℃时发生剪切破坏,温度高于600℃时发生拉剪破坏。同时发现,AE信号有平静期、增长期、爆发期和衰减期四个阶段,AE事件数与偏应力区间对应良好。高温与真三轴应力耦合作用下砂岩力学特性的试验研究,对地下煤气化顶板砂岩的参数选取及安全评价具有指导意义。