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Study on Shear Behavior of Interbedded Sandstone and Mudstone Slope Using Ring Shear Test

机译:用环形剪切试验研究夹层砂岩和泥岩斜率的剪切行为

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As slopes in the interbedded sandstone and mudstone formation are geologically characterized by proneness to landslides, past elaborations on the failure mechanism of such slopes were mostly confined to the fact that slope slides often occur after rainfalls when rainwater permeates through sandstone formation. Due to sharp difference in water permeability between sandstone and mudstone, the groundwater will accumulate on the interface of the interbedded formation, resulting in increased pore water pressures and reduced safety coefficients. In the process of slides with large displacement, however, change of mechanical properties on the sliding surface is a major factor that affects slope slides. For this purpose, the study aims to develop a ring shear test apparatus that can be applicable to weak rock materials to obtain their residual strength values under the condition of large displacement. The results show that ring shear tests are more effective in obtaining the actual residual strength of weak rock materials and complete post peak shear behaviors than direct shear tests. The results of this study also demonstrate that abrasion between grains of rock materials still continues till their residual strength values reach a stable condition, even though these rock materials are affected by the action of shear strength, and that the content of fine grained materials increases with the normal force in the shear zone.
机译:由于冰砂石和泥岩地层中的斜率是通过对山体滑坡的倾向的地质学,过去阐述了这种斜坡的失效机理主要被限制在雨水通过砂岩形成渗透后坡道载玻片经常发生的事实。由于砂岩和泥岩之间的渗透率差异,地下水将积聚在互粘土的形成界面上,导致孔隙水压力增加和安全系数减小。然而,在具有大移位的滑动过程中,滑动表面上的机械性能的变化是影响斜率载玻片的主要因素。为此目的,该研究旨在开发一种环形剪切试验装置,可适用于弱岩材料,以在大移位的条件下获得其残余强度值。结果表明,环形剪切试验在获得弱岩材料的实际残留强度方面更有效,并且完全抗剪切抗剪切行为而不是直接剪切试验。本研究的结果还表明,即使这些岩石材料受剪切强度的作用影响,岩石材料谷物之间的磨损仍然仍然持续到稳定的条件,并且细粒材料的含量增加剪切区中的正常力。

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