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Mechanical properties and energy characteristics of single-fractured composite rock mass with different dip angles under impact load
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作者 XIA Zhiguo MA Chenglong +3 位作者 LUAN Lihua WU Quansen WANG Changxiang CHEN Bing 《Journal of Mountain Science》 2025年第8期3109-3122,共14页
In rock mass and mining engineering,shock waves induced by engineering disturbances significantly affect rock mass stability.To explore the dynamic mechanical behavior and energy dissipation mechanisms of single-fract... In rock mass and mining engineering,shock waves induced by engineering disturbances significantly affect rock mass stability.To explore the dynamic mechanical behavior and energy dissipation mechanisms of single-fractured composite rock masses under impact loading,a series of tests were conducted using a split Hopkinson pressure bar(SHPB)system with a 50 mm rod diameter.Specimens containing a single inclined fracture with seven different dip angles and located in different lithological layers were tested.The results show that both peak stress and peak strain exhibit a non-monotonic trend with increasing dip angleα-first decreasing,then increasing,reaching a minimum atα=45°.This behavior is attributed to enhanced energy concentration and dissipation in the fracture zone,where shear-dominated failure leads to more effective crack propagation and stress redistribution.Moreover,the proportion of crushing energy dissipation is significantly affected by the fracture dip angle,reaching a minimum atα=45°and a maximum atα=90°,indicating a transition from shear to tensile failure modes with increasing angle.Lithology also plays a crucial role:grey sandstone specimens absorbed more energy compared to yellow sandstone,implying higher impact resistance due to differences in microstructural cohesion.The evolution of fragment fractal dimension with increasing dip angle follows an"M-shaped"trend,reflecting changes in fragmentation intensity and failure mode.Notably,yellow sandstone tends to produce higher fractal dimensions,with larger mass but smaller volume of powdered debris,indicating more intense fragmentation.This study reveals the coupling effect of fracture dip angle and lithology on dynamic mechanical response and energy evolution,providing new insights into the failure mechanisms of layered composite rock masses under impact loading. 展开更多
关键词 shbp Composite rock mass Fractures with different dip angles Energy dissipation Fractal dimension
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岩石动力特性的SHPB实验方法探究 被引量:1
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作者 王志亮 卢志堂 《实验室研究与探索》 CAS 北大核心 2014年第1期214-216,258,共4页
为培养卓越人才,在岩石力学实验教学中,需加强学生对岩石动力学特性的理解与认识。分离式霍普金森压杆(SHPB)是岩石中高应变率行为测试设备之一,在岩石力学教学中引入SHPB实验可以让学生深入了解岩石的动力学性质,并为以后的科研与工作... 为培养卓越人才,在岩石力学实验教学中,需加强学生对岩石动力学特性的理解与认识。分离式霍普金森压杆(SHPB)是岩石中高应变率行为测试设备之一,在岩石力学教学中引入SHPB实验可以让学生深入了解岩石的动力学性质,并为以后的科研与工作打下基础。SHPB实验的开展,加深了学生对岩石动态压缩和动态拉伸性质的了解,激发了他们的学习兴趣。论文首先详细介绍了SHPB装置的构成与实验原理,接着分析教学过程面临的问题,提出了解决措施。结合教学实践与改革,逐渐探索并发展出了成熟的实验教学方法和学生创新能力培养模式。从理论知识储备,到实验教学探索与实践,逐步深入推进,在培养学生思考能力、动手能力和解决问题的能力上取得了明显的效果。 展开更多
关键词 岩石动力学 SHPB 动态压缩 动态拉伸
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