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Mechanical properties of saturated and unsaturated cohesive soils with stress-induced anisotropy

机译:各向异性引起的饱和和不饱和粘性土的力学特性

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摘要

When anisotropic stress is applied to a soil, stress-induced anisotropy of mechanical properties develops. Using a hollow, cylindrical torsional shear apparatus, this study examined the effects of stress-induced anisotropy on the mechanical properties of saturated and unsaturated cohesive soils under different drainage conditions. Although strength anisotropy did not appear under a drained condition, it developed under undrained conditions in both saturated and unsaturated cohesive soils. The secant shear modulus exhibited a trend of becoming smaller as the angle between K consolidation and shearing became larger under both drained and undrained conditions. With regard to strength, the experimentally obtained results elucidated that the changes of excess pore water pressure and suction during shearing generated strength anisotropy. Using suction at the failure point reveals that the shear strength follows the failure criterion proposed by Fredlund and co-workers in 1978, even in a specimen with anisotropy of strength.
机译:当向土壤施加各向异性应力时,会产生应力诱导的机械性能各向异性。本研究使用空心圆柱形扭转剪切仪,研究了在不同排水条件下,应力各向异性对饱和和不饱和粘性土力学特性的影响。尽管强度各向异性在排水条件下没有出现,但在不排水条件下在饱和和不饱和粘性土中都出现了。在排水和不排水条件下,正割剪切模量均显示出随着K固结与剪切之间的夹角变大而变小的趋势。关于强度,实验获得的结果表明,剪切过程中多余的孔隙水压力和吸力的变化会产生强度各向异性。在破坏点处使用吸力表明,即使在强度各向异性的试样中,抗剪强度也遵循Fredlund及其同事在1978年提出的破坏准则。

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