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首页> 外文期刊>International Journal of Applied Engineering Research >The Effect of Cracks Propagation on Cohesion and Internal Friction Angle for High Plasticity Clay
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The Effect of Cracks Propagation on Cohesion and Internal Friction Angle for High Plasticity Clay

机译:裂缝繁殖对高塑性粘土凝聚力和内部摩擦角的影响

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Slope events usually precede the occurrence of small cracks in soil on the slopes. The small cracks become deep crack and will be a potential landslide. If the potential landslide plane is getting longer, the slope will occur sliding. The small cracks in the soil are usually not visible so the soil is still considered to be intact, not cracked. At the time of soil sampling in the field and testing in the laboratory, the soil is regarded as intact soil and not cracked. This research aims to determine the effect of crack propagation in the soil against changes in cohesion values and internal shear angle in laboratory testing. A series of laboratory tests using a modified shear test apparatus was performed. Direct shear testing using a modified shear test apparatus was carried out on a high plasticity clay soil. The crack propagation given is 25%, 50%, 75% against the diameter of the specimen. The results showed that crack propagation occurring in the soil is very influential on cohesion. In a crack condition of 100% then the value of soil cohesion becomes zero. Other results showed that crack propagation did not affect the internal shear friction angle. Regardless of the length of the crack that occurs, the internal friction angle remains as in the conditions have not been cracked.
机译:边坡事件通常在斜坡上土壤中的小裂缝发生之前。小裂缝变得深刻的裂缝,将是一个潜在的滑坡。如果潜在的滑坡平面越来越长,则斜坡将发生滑动。土壤中的小裂缝通常不可见,因此土壤仍被认为是完整的,而不是破裂。在土壤采样时在实验室和测试中的测试时,土壤被认为是完整的土壤而不是破裂。该研究旨在确定土壤中裂纹繁殖的影响,以防止实验室检测中的内聚力值和内部剪切角的变化。进行使用改性剪切测试装置的一系列实验室测试。使用改性剪切试验装置的直接剪切测试在高可塑性粘土土壤上进行。给出的裂纹传播为25%,50%,75%,抵抗标本的直径。结果表明,在土壤中发生的裂纹繁殖在内聚力上是非常有影响力的。在100%的裂缝条件下,土壤内聚力的值变为零。其他结果表明,裂纹扩展不影响内部剪切摩擦角。无论发生的裂缝的长度如何,内部摩擦角保持在尚未破裂的条件下。

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