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首页> 外文期刊>KSCE journal of civil engineering >Energy Evolution Principles of Shock-Wave in Sandstone under Unloading Stress
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Energy Evolution Principles of Shock-Wave in Sandstone under Unloading Stress

机译:卸载应力下砂岩中冲击波的能量演化原理

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摘要

Excavation process often induces the unloading rock mass to be in different damage stages, thus changing the propagation and attenuation characteristics of shock-wave energy in rock mass. This paper involved an investigation on the energy dissipation principles during unloading stress process. First, the paper presented small disturbance impact tests to acquire shock-wave data using the modified split Hopkinson pressure bar device. Then we discussed the shock-wave characteristics under different unloading stresses, attenuation characteristics of shock-wave energy at distance and its effects on unloading stress on the attenuation characteristics of shock-wave energy. Results showed that the presence or absence of unloading stress in sandstone had significant effect on shock-waveform. The shock-wave energy showed a spatial exponential attenuation characteristic, and the decay coefficient indicated that the variation degree in low unloading stress region was significantly greater than that in high unloading stress region. The unloading stress cut-off point was σ/σ_c = 23.88%. The shock-wave energy at different locations declined with a trend of slight decrease and rapid attenuation, illustrated that the closer the incident end of the sandstone was, the greater the attenuation degree of the shock-wave energy would be. This paper also analyzed the attenuation rate of shock-wave energy and corresponding different sensitivity to unloading stress, showed that the relationship between attenuation rate and unloading stress could be exposed by a composite linear exponential equation. Therefore, the conclusions can provide reference for the attenuation evolution analysis of shock-wave energy in the excavated rock mass.
机译:挖掘过程经常诱导卸载岩体在不同的损伤阶段,从而改变了岩体中冲击波能量的传播和衰减特性。本文涉及在卸载压力过程中对能量耗散原理的调查。首先,纸张呈现了小扰动冲击试验,以使用改进的拆分霍普金森压力条装置获取冲击波数据。然后,我们在不同卸载应力下讨论了冲击波特性,处于距离处的冲击波能量的衰减特性及其对冲击能量衰减特性的造成应力的影响。结果表明,砂岩中卸载应力的存在与否对冲击波形有显着影响。冲击波能量显示出空间指数衰减特性,并且衰减系数表明低卸载应力区域的变化程度明显大于高卸载应力区域中的变化程度。卸载应力截止点为σ/σ_c= 23.88%。不同地点的冲击波能量下降,略有下降和快速衰减,所示的情况越近,砂岩的入射末端越越大,冲击波能量的衰减程度就越大。本文还分析了冲击波能量的衰减率,以及对卸载应力的相应不同的敏感性,表明衰减率和卸载应力之间的关系可以通过复合线性指数方程暴露。因此,结论可以为挖掘岩体中的冲击波能量的衰减演化分析提供参考。

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  • 来源
    《KSCE journal of civil engineering 》 |2020年第10期| 2912-2922| 共11页
  • 作者单位

    School of Civil Engineering Xi'an University of Architecture and Technology Xi'an 710055 China Shaanxi Key Laboratory of Geotechnical and Underground Space Engineering Xi'an 710055 China;

    School of Civil Engineering Xi'an University of Architecture and Technology Xi'an 710055 China Shaanxi Key Laboratory of Geotechnical and Underground Space Engineering Xi'an 710055 China;

    Henan Zhidi Group Co. Ltd. Zhumadian 463000 China School of Architectural and Surveying Engineering Jiangxi University of Science and Technology Ganzhou 341000 China;

    School of Civil Engineering Xi'an University of Architecture and Technology Xi'an 710055 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Unloading stress; Shock-wave energy; Modified split-Hopkinson pressure bar; Decay coefficient; Response intensity; Attenuation rate;

    机译:卸压力;冲击波能量;改进的分体式霍普金森压力杆;衰变系数;反应强度;衰减率;

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