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长时高压K_0固结再冻结黏土的卸围压强度特性 被引量:3
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作者 王衍森 贾锦波 冷阳光 《岩土工程学报》 EI CAS CSCD 北大核心 2017年第9期1636-1644,共9页
深厚表土层中立井井筒建设普遍采用冻结法,而深部冻土的原位力学特性是影响冻结壁力学特性及其安全稳定性的关键;现有的浅部冻土的试验方法,由于忽略了深、浅部土体固结、应力环境及形成工况的差异,已难以可靠地获得深部土的力学参数。... 深厚表土层中立井井筒建设普遍采用冻结法,而深部冻土的原位力学特性是影响冻结壁力学特性及其安全稳定性的关键;现有的浅部冻土的试验方法,由于忽略了深、浅部土体固结、应力环境及形成工况的差异,已难以可靠地获得深部土的力学参数。基于"长时高压K_0固结—冻结—恒轴压卸围压"试验模式,通过三轴试验,研究了深部土重塑人工冻结黏土的强度与变形特征,以及固结时间、固结应力的影响规律。结果表明:卸围压路径下冻土试样呈现为黏–弹塑性破坏,固结时间为1~7 d时,其卸围压强度随固结时间的延长增长显著,而单位降温引起的强度增长速率受固结时间的影响不明显;随着固结时间延长至28 d,其卸围压强度受固结时间的影响不明显,但单位降温引起的强度增长速率增加显著;单位降温引起的冻土卸围压强度增长速率不受固结应力影响。 展开更多
关键词 长时K0固结 深部黏土 有载冻结 卸围压强度
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加卸载花岗岩强度与岩爆倾向性试验研究 被引量:2
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作者 王云飞 宋梦怡 +3 位作者 焦华喆 王立平 郑晓娟 李志超 《采矿与岩层控制工程学报》 EI 北大核心 2024年第3期43-52,共10页
为了进一步提高硬性花岗岩岩爆倾向性预测水平,系统开展了花岗岩巴西劈裂、单/三轴和不同卸围压速率应力路径下的岩石力学试验,详细分析了花岗岩强度和岩爆倾向性特征。研究结果表明:花岗岩在主应力σ_(3)–σ_(1)平面内,不同应力路径... 为了进一步提高硬性花岗岩岩爆倾向性预测水平,系统开展了花岗岩巴西劈裂、单/三轴和不同卸围压速率应力路径下的岩石力学试验,详细分析了花岗岩强度和岩爆倾向性特征。研究结果表明:花岗岩在主应力σ_(3)–σ_(1)平面内,不同应力路径下的强度受围压和卸围压速率影响显著,呈带状分布;在τ_(oct)–(σ_(1)+σ_(3))/2平面内,不同加卸载应力路径下的强度都呈良好的线性特征。据此建立了花岗岩八面体强度计算通式,可统一表达不同加卸载应力路径;针对花岗岩硬岩的压密和屈服特性不明显,弹性特性显著的特征,提出了简化剩余弹性能指数岩爆分级法;并依据花岗岩试验岩样破坏形态和破坏声学特征,对已有花岗岩岩爆等级进行了细分。揭示了在相同初始围压下,卸围压速率越大,简化剩余弹性能指数越大,岩爆倾向性越强;相同卸围压速率下,初始围压越大,简化剩余弹性能指数也越大,岩爆倾向性也越强。研究成果可为更科学合理的评估花岗岩岩爆倾向性提供理论参考。 展开更多
关键词 花岗岩 应力路径 岩爆 破坏特征 卸围压强度
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Dynamic characteristics of high stressed red sandstone subjected to unloading and impact loads 被引量:14
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作者 GONG Feng-qiang ZHONG Wen-hui +2 位作者 GAO Ming-zhong SI Xue-feng WU Wu-xing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期596-610,共15页
In the process of deep projects excavation,deep rock often experiences a full stress process from high stress to unloading and then to impact disturbance failure.To study the dynamic characteristics of three-dimension... In the process of deep projects excavation,deep rock often experiences a full stress process from high stress to unloading and then to impact disturbance failure.To study the dynamic characteristics of three-dimensional high stressed red sandstone subjected to unloading and impact loads,impact compression tests were conducted on red sandstone under confining pressure unloading conditions using a modified split Hopkinson pressure bar.Impact disturbance tests of uniaxial pre-stressed rock were also conducted(without considering confining pressure unloading effect).The results demonstrate that the impact compression strength of red sandstone shows an obvious strain rate effect.With an approximately equal strain rate,the dynamic strength of red sandstone under confining unloading conditions is less than that in the uniaxial pre-stressed impact compression test.Confining pressure unloading produces a strength-weakening effect,and the dynamic strength weakening factor(DSWF)is also defined.The results also indicate that the strain rate of the rock and the incident energy change in a logarithmic relation.With similar incident energies,unloading results in a higher strain rate in pre-stressed rock.According to the experimental analysis,unloading does not affect the failure mode,but reduces the dynamic strength of pre-stressed rock.The influence of confining pressure unloading on the shear strength parameters(cohesion and friction angle)is discussed.Under the same external energy impact compression,prestressed rock subjected to unloading is more likely to be destroyed.Thus,the effect of unloading on the rock mechanical characteristics should be considered in deep rock project excavation design. 展开更多
关键词 deep rock excavation unloading unloading confining pressure three-dimensional high stress strengthweakening effect impact disturbance
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