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Loading-unloading shear behavior of rammed earth upon varying clay content and relative humidity conditions

机译:不同黏土含量和相对湿度条件下夯土的装卸剪切特性

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This paper investigates the impact of clay and moisture contents on the shear behavior of compacted earth taking into account loading-unloading cycles. Fine sand was added to a natural soil, thereby obtaining three different soils with clay contents of 35%, 26%, and 17%, respectively. A series of triaxial tests was conducted on samples previously equilibrated at three different values of relative humidity (RH). The evolution of failure strength f(c), Young's modulus E, and residual strain epsilon(res) was investigated according to the clay content and the RH, the last two parameters being measured during the loading-unloading cycles. Firstly, the relative humidity at which the samples were fabricated and conditioned was seen to have a strong impact on the mechanical characteristics of the earthen material. An increase in RH led to a decrease in both failure strength f(c) and Young's modulus E, and an increase in plastic strain. The tendencies were found to depend on the clay content of the samples. Secondly, with an increasing stress level, a progressive decrease in Young's modulus and an increase in residual strain epsilon(res) (after a loading-unloading cycle) appeared. Thirdly, within the range of the investigated clay contents, both failure strength f(c) and residual strain epsilon(res) increased with an increasing clay content at constant values of RH and confining pressure, the rate of this increase being a function of the RH. Young's modulus E was relatively insensitive to changes in the clay content, its variation being less than 20% for all cases. Finally, based on a particular definition of Bishop's effective stress, involving a specific functional form chi(s), the failure states of all the samples were observed to lie approximately on a unique failure line crossing the origin in the (p'-q) plane regardless of the matric suction and confining pressure. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:本文考虑了装卸循环,研究了粘土和水分含量对压实土的剪切特性的影响。将细砂添加到天然土壤中,从而获得三种不同的粘土含量分别为35%,26%和17%的土壤。对先前在三个不同的相对湿度(RH)值下平衡的样品进行了一系列的三轴测试。根据粘土含量和相对湿度研究了破坏强度f(c),杨氏模量E和残余应变ε(res)的演变,最后两个参数是在装卸循环中测量的。首先,可以看到制作和调节样品的相对湿度对土料的机械特性有很大的影响。 RH的增加导致破坏强度f(c)和杨氏模量E均下降,塑性应变增加。发现该趋势取决于样品的粘土含量。其次,随着应力水平的增加,出现了杨氏模量的逐渐降低和残余应变εres的增加(在加载-卸载循环之后)。第三,在研究的黏土含量范围内,在恒定的相对湿度和围压下,随着黏土含量的增加,破坏强度f(c)和残余应变epsilon(res)均增加,该增加的速率是黏土的函数。 RH。杨氏模量E对粘土含量的变化相对不敏感,在所有情况下其变化均小于20%。最后,根据Bishop有效应力的特定定义(包括特定的函数形式chi),观察到所有样品的破坏状态大致位于穿过(p'-q)起点的唯一破坏线上。平面与基质吸力和围压无关。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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