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Experimental Study on the Mechanical Parameters Relating to the Impact Tendency of Coal Sample
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作者 Diaka Cisse Hao Wang +1 位作者 Mingyang Wen Zhanghao Liu 《World Journal of Engineering and Technology》 2023年第3期569-585,共17页
Coal burst remains one of the gravest safety risks that will be encountered in mining in the future, because the stress conditions will become more complex as mining depths increase. Various influencing elements exist... Coal burst remains one of the gravest safety risks that will be encountered in mining in the future, because the stress conditions will become more complex as mining depths increase. Various influencing elements exist, and varied geological and mining circumstances might result in diverse coal burst phenomena. The impact propensity of coal has variations as a result of the distinct physical and mechanical qualities of each. To identify the impact propensity of coal and then understand the rules of coal burst occurrence, laboratory tests can be conducted to identify the physical and mechanical parameters affecting coal samples. The mechanical properties, energy absorption, and energy dissipation characteristics of coal samples were examined experimentally in this paper using coal samples that were taken from the mine. On the basis of the evaluation of the impact inclination parameters for four fundamental coal samples, novel impact inclination indicators and the relationship between the fractures in the coal sample and the impact inclination parameters were discussed. The following are the key conclusions: 1) On-site samples of No. 15 coal from the Qi yuan Coal Mine were taken (15 s) and processed in accordance with the guidelines for the coal specimen impact inclination test. The accuracy of the specimen was sufficient for the test. 2) Analysis is done on the mechanical relevance and calculation techniques of the four fundamental coal sample impact tendency characteristics, dynamic failure time (DT), elastic strain energy index (W<sub>ET</sub>), impact energy index (K<sub>E</sub>), as well as uniaxial compressive strength (R<sub>C</sub>). 3) Regarding the rock burst danger of rock samples, the potential use of the ratio of pre-peak and post- peak deformation modulus to Kλ and the residual elastic strain energy index C<sub>EF</sub> as the impact propensity indices of coal samples are discussed. It is possible to utilize two new impact propensity indices to evaluate the impact propensity of coal samples, according to test results that reveal a linear correlation between two new impact inclination indexes and four fundamental impact tendency indexes. 4) The statistical analysis of the crack ratio with the four impact propensity indicators after coal specimen failure, and the correlation among the crack ratio with the indicators, are both done. The findings indicate that the four impact propensity indicators have a linear relationship with the crack ratio of the coal sample surface cracks. 展开更多
关键词 coal Burst coal impact trend Parameter Elastic Modulus Index Residual Elastic Strain Energy Index
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冲击倾向煤破坏断口微观特征及其机理研究 被引量:6
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作者 宋晓艳 王恩元 +2 位作者 刘贞堂 李忠辉 贾慧霖 《中国矿业大学学报》 EI CAS CSCD 北大核心 2008年第6期775-779,共5页
运用扫描电镜观测了冲击倾向煤破坏断口的微观形貌,分析了煤体受载破坏断面的裂纹、孔隙等缺陷特征及裂纹扩展特征,探讨了煤样破坏裂纹扩展途径及其微观断裂机理.结果表明,冲击倾向煤内部含有大量的孔隙裂隙,在其受载破坏过程中,这些孔... 运用扫描电镜观测了冲击倾向煤破坏断口的微观形貌,分析了煤体受载破坏断面的裂纹、孔隙等缺陷特征及裂纹扩展特征,探讨了煤样破坏裂纹扩展途径及其微观断裂机理.结果表明,冲击倾向煤内部含有大量的孔隙裂隙,在其受载破坏过程中,这些孔隙裂隙均充当了Griffith缺陷,促使大量新裂纹生成和煤样发生破坏.煤样中大量的尖锐孔隙及张性裂隙的微观断面特征表现出冲击倾向煤的脆性特征.由于煤的非均质性及煤样内部应力分布的非均衡性,其裂纹扩展也是不均匀、间歇式的,且裂纹的扩展路线也是曲折的,扩展过程中往往产生分岔、拐折等现象.孔隙、裂纹在应力作用下分岔、扩展、汇合贯通是导致煤体宏观断裂的直接原因. 展开更多
关键词 冲击倾向煤 微观特征 机理 扫描电镜 裂纹扩展
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房山矿无冲击倾向煤层冲击地压的成因分析 被引量:1
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作者 宋维源 章梦涛 张芳 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2001年第4期448-449,共2页
针对北京矿务局大安山矿房山采区四槽煤发生冲击地压的特殊性进行了分析,指明了该煤层发生冲击地压的主原因是其特殊的地质特点和应力特点。并得出房山矿煤层是属于无冲击倾向的软弱煤层,而冲击地压发生是由于层间滑动失稳破坏引起。
关键词 无冲击倾向 冲击地压 软弱煤层 房山矿 原因分析 防治措施
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