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含水岩石动态抗压强度与微观机制
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TU458

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国家自然科学基金(51378497)


A Study of Dynamic Compressive Strength and Microscopic Mechanism on WaterBearing Rock
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    摘要:

    通过选取云南迪庆某地区红砂岩进行不同含水状态和不同脉冲强度下的SHPB试验和SEM试验,分别从宏观和微观角度研究含水岩石的动态强度特性及其破坏机制。结果表明:静态或动态单轴压缩时,随着含水率的升高,岩石的强度均降低;根据SHPB试验中的应力应变全过程曲线,含水试样体积压缩变形明显,具有较高的峰值应变,峰后有应变软化特征,而干燥试样具有较高的峰值强度,峰后应力迅速跌落;根据各试样的动态抗压强度变化曲线,相同脉冲强度下试样的抗压强度随含水率的增加而降低,而相同含水状态时的抗压强度随脉冲强度的增加而增大;根据SEM图像,饱水试样颗粒结构疏松而干燥试样颗粒结构致密,冲击破坏机制饱水试样以初始微裂纹破裂和矿物边界或物相边界破裂为主,破坏时的动态抗压强度较低,而干燥试样还包括矿物颗粒直接剪断破裂,因此破坏强度较高。

    Abstract:

    Selecting the red sandstone from a project of the Yunnan Diqing region to do the split Hopkinson pressure bar (SHPB) experiment and the scanning electronic microscopy (SEM) experiment under different moisture state and different pulse intensity, the paper studies the dynamic strength characteristics and the failure mechanism of waterbearing rock from macroscopic and microscopic point of view. The results show that: The strength of rock decreases with the increase of the moisture content in the static or dynamic uniaxial compression; According to the stressstrain whole process curves of the SHPB experiment, the waterbearing specimen has obvious volume compression deformation, higher peak strain and strain softening characteristics after peak, while dry specimen has higher peak intensity and its post peak stress drop rapidly. The compressive strength decreases with the increase of water content when pulse strength is the same, but increases with the increase of pulse intensity under the same water condition based on the dynamic compressive strength curve for each specimen. The SEM images show that the particle structure of watersaturated rock is loose and swelling, and the impact failure mechanism is dominated by the fracture of initial microcracks and mineral particle or phase boundary, performance as dynamic compressive strength reduction, while the particle structure of dry rock is compact and the impact failure mechanism also include the fracture of mineral particles cut directly, and this shows that the strength increases.

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王浩宇,许金余,王鹏,刘石,刘少赫.含水岩石动态抗压强度与微观机制[J].空军工程大学学报,2016,17(4):107-111

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  • 在线发布日期: 2016-07-30
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