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Acoustic emission characteristics and stress release rate of coal samples in different dynamic destruction time 被引量:3

Acoustic emission characteristics and stress release rate of coal samples in different dynamic destruction time
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摘要 Considering the importance of the prediction of rock burst disasters, and in order to grasp the law of acoustic emission(AE) of coal samples in different dynamic destruction time, the SH-II AE monitoring system was adopted to monitor the failure process of coal samples. The study of the change rule of the AE numbers, energy, ‘b' value and spectrum in the micro crack propagation process of the coal samples shows that as dynamic damage time went by, AE presented high-energy counts and the accumulated counts increased during the compression phase. The AE energy and cumulative counts increased during the elastic stage. The AE blank area increased gradually and the blank lines were more and more obvious in the molding stage. The AE counts and energy showed a trend of decrease in the residual damage phase.AE ‘b' values gradually became sparse, and the large scale cracks percentage compared with micro cracks decreased and the degree of damage decreased. The AE frequency spectrum peak went from the residual damage phase to the molding phase, and finally it was nearly stable, besides the bandwidth of the main frequency is gradually narrowed. Also, the frequency peak changed from single peak frequency to bi-peak frequency and to the single peak frequency. Uniaxial compressive strength is more sensitive than the elastic modulus to dynamic damage time. Considering the importance of the prediction of rock burst disasters, and in order to grasp the law of acoustic emission (AE) of coal samples in different dynamic destruction time, the SH-II AE monitoring system was adopted to monitor the failure process of coal samples. The study of the change rule of the AE numbers, energy, 'b' value and spectrum in the micro crack propagation process of the coal samples shows that as dynamic damage time went by, AE presented high-energy counts and the accumulated counts increased during the compression phase. The AE energy and cumulative counts increased during the elastic stage. The AE blank area increased gradually and the blank lines were more and more obvious in the molding stage. The AE counts and energy showed a trend of decrease in the residual damage phase. AE 'b' values gradually became sparse, and the large scale cracks percentage compared with micro cracks decreased and the degree of damage decreased. The AE frequency spectrum peak went from the residual damage phase to the molding phase, and finally it was nearly stable, besides the bandwidth of the main frequency is gradually narrowed. Also, the frequency peak changed from single peak frequency to bi-peak frequency and to the single peak frequency. Uniaxial compressive strength is more sensitive than the elastic modulus to dynamic damage time.
作者 Xiao Fukun Liu Gang Zhang Ze Shen Zhiliang Zhang Fengrui Wang Yifei Xiao Fukun;Liu Gang;Zhang Ze;Shen Zhiliang;Zhang Fengrui;Wang Yifei(Key Laboratory for Ground Pressure and Gas Control in Deep Mining of Heilongjiang Province,Heilongjiang University of Science and Technology)
出处 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期981-988,共8页 矿业科学技术学报(英文版)
基金 provided by the National Natural Science Foundation of China (No.51374097) the Science Foundation General Projects of Chinese Postgraduate (No.2014M561384) Key Project of Science and Technology Research of Department of Education in Heilongjiang Province (No.12541z009)
关键词 Dynamic destruction time Acoustic emission Outburst-proneness Stress release rate 动态破坏时间 声发射特性 煤样 释放率 动态损伤 频率变化 应力 监测系统
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