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Compression and shear strength characteristics of compacted loess at high suctions

机译:高吸盘压实黄土压缩和剪切强度特性

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摘要

Compression and shear behavior of a loosely compacted loess is investigated via two series of saturated and unsaturated direct shear tests. The vapor transfer mechanism is used to modify a shear box device for control of suction at high range. In spite of significant volumetric strain upon wetting (up to 14%), suction-induced volumetric shrinkage is less than 2% for all suction levels considered because of the as-compacted moisture content at the dry side of the optimum value. During shearing, all unsaturated tests dried to high suctions indicate a strain-softening mode of failure associated with noticeable dilation. There is a continuous increase in peak strength with suction but at a reduced rate, which cannot be captured by the improved Bishop's effective stress model, as it underestimates the contribution of high suctions by approaching zero degree of saturation. Unsaturated tests at high suctions also show an increased rate of dilation with suction for both values of net stress, which cannot be predicted well by the classical stress-dilatancy models. It is shown that for suction values beyond 8 MPa, dilation angle increases by 2 degrees and 6 degrees per 100 MPa increase of suction under net stress of 50 and 200 kPa, respectively.
机译:通过两系列饱和和非饱和直剪试验,研究了松散压实黄土的压缩和剪切特性。蒸汽传输机构用于修改剪切箱装置,以控制高范围内的吸力。尽管湿化时存在显著的体积应变(高达14%),但由于最佳值干燥侧的压实含水量,对于所有考虑的吸力水平,吸力引起的体积收缩小于2%。在剪切过程中,所有干燥至高吸力的非饱和试验表明,与明显膨胀相关的应变软化失效模式。随着吸力的增加,峰值强度不断增加,但速度有所降低,这是改进的Bishop有效应力模型无法捕捉到的,因为它通过接近零饱和度低估了高吸力的贡献。高吸力下的非饱和试验还表明,两个净应力值的吸力膨胀率都有所增加,这是经典应力-剪胀模型无法很好预测的。结果表明,当吸力值超过8MPa时,在50和200kPa的净应力下,每增加100MPa吸力,膨胀角分别增加2度和6度。

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