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张慧梅, 陈世官, 王磊, 程树范, 杨更社, 申艳军. 扰动冲击下弱胶结红砂岩的能量耗散与分形特征[J]. 岩土工程学报, 2022, 44(4): 622-631. DOI: 10.11779/CJGE202204004
引用本文: 张慧梅, 陈世官, 王磊, 程树范, 杨更社, 申艳军. 扰动冲击下弱胶结红砂岩的能量耗散与分形特征[J]. 岩土工程学报, 2022, 44(4): 622-631. DOI: 10.11779/CJGE202204004
ZHANG Hui-mei, CHEN Shi-guan, WANG Lei, CHENG Shu-fan, YANG Geng-she, SHEN Yan-jun. Energy dissipation and fractal characteristics of weakly cemented red sandstone under disturbance impact[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(4): 622-631. DOI: 10.11779/CJGE202204004
Citation: ZHANG Hui-mei, CHEN Shi-guan, WANG Lei, CHENG Shu-fan, YANG Geng-she, SHEN Yan-jun. Energy dissipation and fractal characteristics of weakly cemented red sandstone under disturbance impact[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(4): 622-631. DOI: 10.11779/CJGE202204004

扰动冲击下弱胶结红砂岩的能量耗散与分形特征

Energy dissipation and fractal characteristics of weakly cemented red sandstone under disturbance impact

  • 摘要: 为探索动态扰动后西部矿区软岩夹层的能量耗散规律和破坏模式,利用分离式霍普金森压杆装置对弱胶结红砂岩进行动态冲击破坏试验,分析该类红砂岩在受到不同加载速率、不同次数扰动冲击以及是否扰动的条件下,试样在相同加载速率破坏性冲击过程中的能量耗散与分形特征。试验结果表明:在不同速率扰动冲击作用下,随着扰动冲击次数的增加反射能递增而透射能和耗散能呈减小趋势,其中较高速率扰动冲击下试样的反射能高于低速率扰动冲击,耗散能则相反,且低速率扰动冲击下试样的耗散能、能量耗散率和能量耗散密度高于较高速率扰动冲击,表明低速率扰动冲击下试样的能量利用率更高;在破坏性冲击试验中,随着扰动冲击次数的增加,低速率扰动后试样的破碎程度相较于未扰动与高速率扰动更为严重,对应分形维数Db低速率扰动 > 未扰动 > 高速率扰动,表明分形维数与扰动冲击次数呈正相关,与扰动冲击速率呈负相关;在相同扰动冲击次数下,低速率扰动试样的Db所对应累积耗散能和耗散能密度高于较高速率扰动试样,而对应的累积反射能则相反。

     

    Abstract: To explore the energy dissipation law and failure mode of soft rock interlayer in western mining areas of China after dynamic disturbance, the dynamic impact failure tests on weakly cemented red sandstone are carried out by using the separated Hopkinson compression bar device. Under the impact of this red sandstone under different loading rates, different times of disturbance and whether there is the disturbance or not, the energy dissipation and fractal characteristics of the samples during the same loading rate impact failure are analyzed. The experimental results show that under different disturbance impact rates, with the increase of disturbance impact times, the reflection energy increases, while the transmission energy and dissipation energy decrease. The reflection energy of the samples under the impact of high-speed disturbance is higher than that of the low-speed disturbance impact, while the dissipative energy is the opposite. Moreover, the dissipative energy of the samples under the impact of low-speed rate disturbance is opposite. The energy dissipation rate and energy dissipation density are higher than those of the high-speed disturbance impact, which indicates that the energy utilization rate of the samples is higher under the impact of low-speed disturbance. In the impact failure tests, with the increase of the number of disturbance impact, the fragmentation degree of the sample after the low-speed rate disturbance is more serious than that of the undisturbed and high-speed rate disturbance. The low-speed rate disturbance of fractal dimension Db > undisturbed > high-speed rate disturbance shows that the fractal dimension is positively correlated with the number of disturbance shocks. The results show that the impact rate is negatively correlated with the disturbance. Under the same number of disturbance impact, the cumulative dissipation energy and energy density of Db of the low-speed rate-disturbed samples are higher than those of the high-speed disturbed samples, while the cumulative reflection energy is opposite.

     

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