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循环应力损伤对煤体冲击倾向性影响研究
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作者 杨永亮 任建慧 +1 位作者 李宣良 杜涛涛 《工矿自动化》 CSCD 北大核心 2023年第10期142-150,共9页
目前对煤岩体动力学行为特征的研究仅考虑了温度、围压等原始地质作用影响,并未考虑煤炭开采过程中产生的循环应力作用对煤体动力学特性的影响;且对煤体动力学显现特征的判定是以煤体冲击倾向性指标为基本依据,而循环应力损伤作用对煤... 目前对煤岩体动力学行为特征的研究仅考虑了温度、围压等原始地质作用影响,并未考虑煤炭开采过程中产生的循环应力作用对煤体动力学特性的影响;且对煤体动力学显现特征的判定是以煤体冲击倾向性指标为基本依据,而循环应力损伤作用对煤体冲击倾向性及其动力学特性的影响尚未进行深入研究。针对上述问题,对煤样开展了循环应力损伤试验,分析了恒上下限及变上限2种循环应力损伤条件下的煤体冲击倾向性变化特征。试验结果表明:①煤体经恒上下限循环应力作用及变上限循环应力作用后静态抗压强度分别降低了13.86%与16.00%,循环应力会对煤体力学强度产生劣化。②原始煤体剩余弹性能指数为27.34kJ·m^(-3),表示该煤体具有弱冲击倾向性,经过恒上下限循环应力损伤及变上限循环应力损伤后煤体剩余弹性能指数分别降低了约26.30%及36.14%,表明循环应力对煤体的冲击倾向性有显著的弱化作用。③随着煤体剩余弹性能指数的降低,煤体动态抗压强度与动态弹性模量均减小,而动态破坏变形不断增大,表明煤体冲击倾向性将直接影响其动力学特征,煤体冲击倾向性越大,其冲击动力学相关参数劣化程度越高。④随着煤体剩余弹性能指数不断降低,冲击后煤体破碎分形维数降低,表明循环应力使得煤体受冲击后崩解不充分,动力学响应减弱。 展开更多
关键词 煤体 煤体动力学 冲击倾向性 剩余弹性能指数 冲击载荷 循环应力损伤
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Research on damage characteristics and constitutive model of rock mass under true triaxial cyclic loading based on acoustic emission
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作者 LI Ying-ming FAN Chao-tao +6 位作者 DONG Chun-liang ZHAO Guang-ming MENG Xiang-rui WANG Xiang-jun SHI Wen-qiu WU Xin-wen GAO Jiang-huai 《Journal of Central South University》 2025年第5期1938-1954,共17页
Aiming at the problem of deep surrounding rock instability induced by roadway excavation or mining disturbance,the true triaxial loading system was used to conduct graded cyclic maximum principal stress σ_(1) and int... Aiming at the problem of deep surrounding rock instability induced by roadway excavation or mining disturbance,the true triaxial loading system was used to conduct graded cyclic maximum principal stress σ_(1) and intermediate principal stress σ_(2) tests on sandstone to simulate the effect of mining stress in actual underground engineering.The influences of each principal stress cycle on the mechanical properties,acoustic emission(AE)characteristics,and fracture characteristics of sandstone were analyzed.The damage characteristics of sandstone under true triaxial cyclic loading were studied.Furthermore,the damage constitutive model of rock mass under true triaxial cyclic loading was established based on AE cumulative ringing count.The quantitative investigation was conducted on cumulative-damage changes in circulating sandstone,which elucidated the mechanism of damage deterioration in sandstone subjected to true triaxial cyclic loading.The results show that the influence of the graded cycleσ_(1) on limit maximum principal strain ɛ_(1max) and limit minimum principal strainɛ_(3max) was significantly greater than that of the limit intermediate principal strain ɛ_(2max).Graded cycleσ_(2) had a greater impact onɛ_(2max) and a smaller impact onɛ_(3max).The elasticity modulus of sandstone decreased exponentially with the increased cyclic load amplitude,while the Poisson ratio increased linearly.b of AE showed a trend of increasing,decreasing,slightly fluctuating,and finally decreasing during cyclingσ_(1).b showed a trend of slight fluctuation,large fluctuation,and finally increase during cyclingσ_(2).Sandstone specimens experienced mainly tensile failure,tensile-shear composite failure,and mainly shear failure with increased initialσ_(2) orσ_(3).This was determined by analyzing the rise angle-average frequency of the AE parameter,corresponding to the rock specimens from splitting failure to shear failure.Besides,the mechanical damage behavior of sandstone under true triaxial cyclic loading could be well described by the established constitutive model.At the same time,it was found that the sandstone damage variable decreased with increasedσ_(2) during cyclingσ_(1).The damage variable decreased first and then increased with increasedσ_(3) during cyclingσ_(2). 展开更多
关键词 rock mechanics true triaxial cyclic principal stress acoustic emission constitutive model damage variable
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