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Experimental investigation on the effects of thermal treatment on the physical and mechanical properties of shale

机译:热处理对页岩物理和力学性能影响的实验研究

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Shale is affected by high temperature and loads in deep mining, shale gas extraction, underground disposal of nuclear waste, and other shale projects. This paper aims to investigate the effects of thermal treatment on the physical and mechanical properties of shale. The uniaxial compression test and acoustic emission (AE) monitoring were conducted on shale specimens with different bedding plane inclinations (0 degrees, 30 degrees, 45 degrees, 60 degrees, and 90 degrees) after thermal treatment of different temperatures. The results show that the P-wave velocity decreases with the increase in bedding plane inclination at each thermal treatment temperature showing anisotropy. A thermal explosion occurs when the specimen reaches the macroscopic thermal damage threshold temperature, and the threshold temperature and intensity of the thermal explosion are linked to the bedding plane inclination. The peak stress of specimens with the bedding plane inclinations of 0 degrees, 45 degrees, and 90 degrees increases with the rise in thermal treatment temperature. After thermal treatment, the relationship curve between the cumulative AE counts of specimens with different bedding plane inclinations and time presents a step jump trend. The thermal treatment has no significant effect on the failure modes of specimens with bedding plane inclinations of 30 degrees, 60 degrees, and 90 degrees, while specimens with bedding plane inclinations of 0 degrees and 45 degrees begin to splitting failure with a rise in the thermal treatment temperature. The rockburst failure occurs in the shale specimens, and the main phenomena are spalling, particle ejection, and block collapse. The thermal treatment has a significant influence on the rockburst intensity of specimens with different bedding plane inclinations.
机译:页岩受到深度矿山,页岩气提取,核废料的地下处理等高温和负荷的影响。本文旨在探讨热处理对页岩的物理和力学性能的影响。在不同温度的热处理后,在具有不同床上用品平面倾斜(0度,30度,45度,60度,60度,60度)的页岩样本上进行了单轴压缩试验和声学发射(AE)监测。结果表明,P波速度随着每个热处理温度的床上用水平面倾斜度的增加而降低。显示各向异性。当样品达到宏观热损伤阈值温度时,发生热爆炸,并且热爆炸的阈值温度和强度与床上用品倾斜有关。随着热处理温度的增加,具有0度,45度和90度的床上用品平面倾斜度的峰值应力。热处理后,具有不同床上用品倾斜和时间的标本累积AE计数与时间的关系曲线呈现了一步的跳跃趋势。热处理对具有30度,60度和90度的床上用品倾斜度的试样的失效模式没有显着影响,而具有0度的床上用品平面倾斜的标本开始以热量升高分裂失败治疗温度。岩石故障发生在页岩样本中,主要现象是剥落,颗粒喷射和阻挡塌陷。热处理对具有不同床上用品倾斜的标本的岩爆强度有显着影响。

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