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爆破振动对岩质边坡累积损伤影响实验研究 被引量:9
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作者 费鸿禄 赵昕普 《爆破》 CSCD 北大核心 2009年第4期1-3,21,共4页
通过观测同一地点岩体多次爆破前、后岩体的声速以及爆破振动速度峰值变化规律,由声速测试结合爆破振动测试数据结果计算出岩体损伤系数,实测数据的对比和计算结果表明:在多次爆破振动损伤累积的条件下,爆破振速随岩体的声速呈指数关系... 通过观测同一地点岩体多次爆破前、后岩体的声速以及爆破振动速度峰值变化规律,由声速测试结合爆破振动测试数据结果计算出岩体损伤系数,实测数据的对比和计算结果表明:在多次爆破振动损伤累积的条件下,爆破振速随岩体的声速呈指数关系衰减。并由声速测试结果确定了边坡在爆破振动作用下的损伤阈值。 展开更多
关键词 爆破振动 损伤积累 损伤阈值 岩体声速
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Experimental and numerical simulation of loading rate effects on failure and strain energy characteristics of coal-rock composite samples 被引量:17
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作者 MAQing TAN Yun-liang +3 位作者 LIU Xue-sheng ZHAO Zeng-hui FAN De-yuan PUREV Lkhamsuren 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期3207-3222,共16页
The deformation and failure of coal and rock is energy-driving results according to thermodynamics.It is important to study the strain energy characteristics of coal-rock composite samples to better understand the def... The deformation and failure of coal and rock is energy-driving results according to thermodynamics.It is important to study the strain energy characteristics of coal-rock composite samples to better understand the deformation and failure mechanism of of coal-rock composite structures.In this research,laboratory tests and numerical simulation of uniaxial compressions of coal-rock composite samples were carried out with five different loading rates.The test results show that strength,deformation,acoustic emission(AE)and energy evolution of coal-rock composite sample all have obvious loading rate effects.The uniaxial compressive strength and elastic modulus increase with the increase of loading rate.And with the increase of loading rate,the AE energy at the peak strength of coal-rock composites increases first,then decreases,and then increases.With the increase of loading rate,the AE cumulative count first decreases and then increases.And the total absorption energy and dissipation energy of coal-rock composite samples show non-linear increasing trends,while release elastic strain energy increases first and then decreases.The laboratory experiments conducted on coal-rock composite samples were simulated numerically using the particle flow code(PFC).With careful selection of suitable material constitutive models for coal and rock,and accurate estimation and calibration of mechanical parameters of coal-rock composite sample,it was possible to obtain a good agreement between the laboratory experimental and numerical results.This research can provide references for understanding failure of underground coalrock composite structure by using energy related measuring methods. 展开更多
关键词 coal-rock composite samples uniaxial compression loading rate acoustic emission energy evolution
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