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UNDRAINED SHEAR STRENGTH OF CEMENT-TREATED SOILS

机译:水泥处理过的土的抗剪强度

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References(42) Cited-By(4) In order to evaluate the effects of cementation on the mechanical properties of cement-treated soil, a series of isotropic consolidation and undrained triaxial compression shear tests were performed for cement-treated specimens of Ariake clay, Akita sand, Rokko Masado and Toyoura sand. This paper evaluates factors affecting the shear strength of these cement-treated soils. The following conclusions are obtained: 1) Cement-treated soil has a normally consolidated line in e-ln p' space which depends on the mixing cement content. The consolidation yield stress, p'y, of cement-treated soil increases with increasing cement content and initial specimen density. 2) Changes in cohesive strength due to cement-treatment can be represented by a tensile effective stress, p'r. Strength properties can then be normalized by the augmented consolidation stress, (p'c+p'r). 3) The shear strength properties of quasi-overconsolidated clay can be represented by the yield stress ratio, R=(p'y+p'r)/(p'c+p'r). 4) The undrained shear strength of cement-treated soils can be represented as a power law relation of the yield stress ratio, R, and the augmented consolidation stress.
机译:参考文献(42)Cited-By(4)为了评估胶结作用对水泥处理过的土的力学性能的影响,对水泥处理过的Ariake粘土试样进行了一系列各向同性固结和不排水的三轴压缩剪切试验,秋田沙,六甲昌都和丰浦沙。本文评估了影响这些水泥处理过的土的抗剪强度的因素。得到以下结论:1)水泥处理过的土壤在e-ln p'空间具有正常固结线,这取决于水泥的混合量。水泥处理过的土壤的固结屈服应力p'y随着水泥含量和初始试样密度的增加而增加。 2)水泥处理引起的内聚强度变化可以用拉伸有效应力p'r表示。然后可以通过增加的固结应力(p'c + p'r)对强度特性进行归一化。 3)准超固结粘土的抗剪强度特性可以用屈服应力比R =(p'y + p'r)/(p'c + p'r)表示。 4)水泥处理过的土壤的不排水剪切强度可以表示为屈服应力比R和固结应力增大的幂律关系。

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