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首页> 外文期刊>Advances in civil engineering >Microscopic Characteristics of Fractured Sandstone after Cyclic Freezing-Thawing and Triaxial Unloading Tests
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Microscopic Characteristics of Fractured Sandstone after Cyclic Freezing-Thawing and Triaxial Unloading Tests

机译:循环冻融后裂缝砂岩的微观特征及三轴卸载试验

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The understanding of tunneling rock failure characteristics under unloading conditions in the cold region is critical for the proper design of rock tunneling support and mining safety operation. Given this understanding is currently limited, this study aimed to investigate the characteristics of fractured sandstone samples in the microscale after cyclic freezing-thawing and triaxial unloading tests. The samples were first subjected to different cycles of freezing and thawing, followed by the triaxial unloading test and scanning electron microscopy imaging. The peak strength and damage dilatancy stress were measured from the stress-strain curves. The microcrack characteristics (number, length, and width) were obtained through the image analysis. The results show that the decrease in peak strength and damage dilatancy stress was more significant by the first 20 freezing-thawing cycles when the pore pressure gradient is maximum compared to the later freezing-thawing cycles. The mechanical properties also significantly deteriorated when the severe freezing-thawing treatments were performed. The fracture section mainly had the morphology of honeycomb-like microstructure, stripped microstructure, and flocculent microstructure. The cracking extent was mainly influenced by the freezing-thawing rather than the triaxial unloading test, but the azimuthal angle of microcracks was significantly altered by the triaxial unloading. To properly design rock tunneling support and safe operation of mining in the cold region, both impact of cyclic freezing-thawing and the excavation operation direction should be considered.
机译:在寒冷地区卸载条件下对隧道摇滚失效特性的理解对于岩石隧道支撑和采矿安全操作的适当设计至关重要。鉴于这种理解目前有限,这项研究旨在探讨循环冻融和三轴卸载试验后微尺寸裂缝砂岩样品的特点。首先将样品进行不同的冷冻和解冻循环,然后是三轴卸载试验和扫描电子显微镜成像。从应力 - 应变曲线测量峰强度和损坏膨胀应力。通过图像分析获得微裂纹特性(数量,长度和宽度)。结果表明,当孔隙压力梯度最大值与后续冷冻解冻循环相比,当孔隙压梯度最大时,峰强度和损伤膨胀应激的降低更为显着。当进行严重的冷冻解冻处理时,机械性能也显着恶化。裂缝部分主要具有蜂窝状微观结构,剥离的微观结构和絮凝微结构的形貌。裂化程度主要受到冻融的影响而不是三轴卸载试验,但是三轴卸载显着改变了微裂纹的方位角。为了适当地设计岩石隧道支撑和在寒冷地区开采的安全操作,应考虑循环冻融和挖掘操作方向的两种影响。

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