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Mechanical properties and acoustic emission characteristics of thick hard roof sandstone in Shendong coal field

机译:神东煤田厚硬顶板砂岩力学性质和声发射特征。

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The mechanical properties and acoustic emission characteristics of thick hard roof sandstone were investigated. Samples were taken from the 30.87-m thick sandstone roof in a mine in the Shengdong coal field, China. Firstly, the composition and microscopic characteristics were analyzed by XRD and FE-SEM, respectively. Moreover, the indirect tensile test, uniaxial compression test, three axis compression experiment and AE test are carried out by using RMT-150C mechanics experiment system with DS5-8B AE test system. The experiment results indicate that the main framework particles of sandstone are quartz and feldspar, and mainly quartz. Cements are mainly pyrite, kaolinite, chlorite and zeolite cross needle, clinochlore, and clay minerals. The microstructure of sandstone is very dense, with few pores and high cementation degree. The tensile strength, compressive strength and elastic modulus of sandstone are 4.825, 85.313?MPa, 13.814?GPa, respectively, so the sandstone belongs to hard rock. The AE cumulative counts of sandstone can be divided into three phases: relatively flat growth period, rapid growth period and spurt period. The signal strength of AE waveform can be used as a warning signal. In the tensile fracture zone, the warning value is 0.4?mV, and in the compression shear failure zone, it is 4?mV. The numbers of cumulative counts of AE under different stress conditions have obvious difference. Moreover, the growth of cumulative counts of acoustic emission is more obvious when the stress is more than 60% of the peak stress.
机译:研究了厚硬顶板砂岩的力学性能和声发射特性。样品是从中国胜东煤田一处矿井中厚30.87米的砂岩屋顶上采集的。首先,分别通过XRD和FE-SEM分析其组成和显微特性。此外,采用RMT-150C力学实验系统和DS5-8B AE测试系统进行间接拉伸试验,单轴压缩试验,三轴压缩试验和AE试验。实验结果表明,砂岩的主要骨架颗粒为石英和长石,主要为石英。水泥主要是黄铁矿,高岭石,绿泥石和沸石十字针,斜绿石和粘土矿物。砂岩的微观结构非常致密,孔隙少,胶结度高。砂岩的抗张强度,抗压强度和弹性模量分别为4.825、85.313?MPa,13.814?GPa,因此属于硬岩。砂岩的声发射累积数可分为三个阶段:相对平坦的生长期,快速生长期和喷涌期。 AE波形的信号强度可以用作警告信号。在拉伸断裂区域中,警告值为0.4?mV,在压缩剪切破坏区域中,警告值为4?mV。不同胁迫条件下AE的累积计数数量存在明显差异。此外,当应力超过峰值应力的60%时,声发射累积计数的增长更加明显。

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